1*c8fbf6ffSEugene Zelenko //===- AMDGPUDisassembler.cpp - Disassembler for AMDGPU ISA ---------------===//
2e1818af8STom Stellard //
3e1818af8STom Stellard //                     The LLVM Compiler Infrastructure
4e1818af8STom Stellard //
5e1818af8STom Stellard // This file is distributed under the University of Illinois Open Source
6e1818af8STom Stellard // License. See LICENSE.TXT for details.
7e1818af8STom Stellard //
8e1818af8STom Stellard //===----------------------------------------------------------------------===//
9e1818af8STom Stellard //
10e1818af8STom Stellard //===----------------------------------------------------------------------===//
11e1818af8STom Stellard //
12e1818af8STom Stellard /// \file
13e1818af8STom Stellard ///
14e1818af8STom Stellard /// This file contains definition for AMDGPU ISA disassembler
15e1818af8STom Stellard //
16e1818af8STom Stellard //===----------------------------------------------------------------------===//
17e1818af8STom Stellard 
18e1818af8STom Stellard // ToDo: What to do with instruction suffixes (v_mov_b32 vs v_mov_b32_e32)?
19e1818af8STom Stellard 
20*c8fbf6ffSEugene Zelenko #include "Disassembler/AMDGPUDisassembler.h"
21e1818af8STom Stellard #include "AMDGPU.h"
22e1818af8STom Stellard #include "AMDGPURegisterInfo.h"
23212a251cSArtem Tamazov #include "SIDefines.h"
24e1818af8STom Stellard #include "Utils/AMDGPUBaseInfo.h"
25*c8fbf6ffSEugene Zelenko #include "llvm-c/Disassembler.h"
26*c8fbf6ffSEugene Zelenko #include "llvm/ADT/APInt.h"
27*c8fbf6ffSEugene Zelenko #include "llvm/ADT/ArrayRef.h"
28*c8fbf6ffSEugene Zelenko #include "llvm/ADT/Twine.h"
29264b5d9eSZachary Turner #include "llvm/BinaryFormat/ELF.h"
30ac106addSNikolay Haustov #include "llvm/MC/MCContext.h"
31*c8fbf6ffSEugene Zelenko #include "llvm/MC/MCDisassembler/MCDisassembler.h"
32*c8fbf6ffSEugene Zelenko #include "llvm/MC/MCExpr.h"
33e1818af8STom Stellard #include "llvm/MC/MCFixedLenDisassembler.h"
34e1818af8STom Stellard #include "llvm/MC/MCInst.h"
35e1818af8STom Stellard #include "llvm/MC/MCSubtargetInfo.h"
36ac106addSNikolay Haustov #include "llvm/Support/Endian.h"
37*c8fbf6ffSEugene Zelenko #include "llvm/Support/ErrorHandling.h"
38*c8fbf6ffSEugene Zelenko #include "llvm/Support/MathExtras.h"
39e1818af8STom Stellard #include "llvm/Support/TargetRegistry.h"
40*c8fbf6ffSEugene Zelenko #include "llvm/Support/raw_ostream.h"
41*c8fbf6ffSEugene Zelenko #include <algorithm>
42*c8fbf6ffSEugene Zelenko #include <cassert>
43*c8fbf6ffSEugene Zelenko #include <cstddef>
44*c8fbf6ffSEugene Zelenko #include <cstdint>
45*c8fbf6ffSEugene Zelenko #include <iterator>
46*c8fbf6ffSEugene Zelenko #include <tuple>
47*c8fbf6ffSEugene Zelenko #include <vector>
48e1818af8STom Stellard 
49e1818af8STom Stellard using namespace llvm;
50e1818af8STom Stellard 
51e1818af8STom Stellard #define DEBUG_TYPE "amdgpu-disassembler"
52e1818af8STom Stellard 
53*c8fbf6ffSEugene Zelenko using DecodeStatus = llvm::MCDisassembler::DecodeStatus;
54e1818af8STom Stellard 
55ac106addSNikolay Haustov inline static MCDisassembler::DecodeStatus
56ac106addSNikolay Haustov addOperand(MCInst &Inst, const MCOperand& Opnd) {
57ac106addSNikolay Haustov   Inst.addOperand(Opnd);
58ac106addSNikolay Haustov   return Opnd.isValid() ?
59ac106addSNikolay Haustov     MCDisassembler::Success :
60ac106addSNikolay Haustov     MCDisassembler::SoftFail;
61e1818af8STom Stellard }
62e1818af8STom Stellard 
63549c89d2SSam Kolton static int insertNamedMCOperand(MCInst &MI, const MCOperand &Op,
64549c89d2SSam Kolton                                 uint16_t NameIdx) {
65549c89d2SSam Kolton   int OpIdx = AMDGPU::getNamedOperandIdx(MI.getOpcode(), NameIdx);
66549c89d2SSam Kolton   if (OpIdx != -1) {
67549c89d2SSam Kolton     auto I = MI.begin();
68549c89d2SSam Kolton     std::advance(I, OpIdx);
69549c89d2SSam Kolton     MI.insert(I, Op);
70549c89d2SSam Kolton   }
71549c89d2SSam Kolton   return OpIdx;
72549c89d2SSam Kolton }
73549c89d2SSam Kolton 
743381d7a2SSam Kolton static DecodeStatus decodeSoppBrTarget(MCInst &Inst, unsigned Imm,
753381d7a2SSam Kolton                                        uint64_t Addr, const void *Decoder) {
763381d7a2SSam Kolton   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder);
773381d7a2SSam Kolton 
783381d7a2SSam Kolton   APInt SignedOffset(18, Imm * 4, true);
793381d7a2SSam Kolton   int64_t Offset = (SignedOffset.sext(64) + 4 + Addr).getSExtValue();
803381d7a2SSam Kolton 
813381d7a2SSam Kolton   if (DAsm->tryAddingSymbolicOperand(Inst, Offset, Addr, true, 2, 2))
823381d7a2SSam Kolton     return MCDisassembler::Success;
833381d7a2SSam Kolton   return addOperand(Inst, MCOperand::createImm(Imm));
843381d7a2SSam Kolton }
853381d7a2SSam Kolton 
86363f47a2SSam Kolton #define DECODE_OPERAND(StaticDecoderName, DecoderName) \
87363f47a2SSam Kolton static DecodeStatus StaticDecoderName(MCInst &Inst, \
88ac106addSNikolay Haustov                                        unsigned Imm, \
89ac106addSNikolay Haustov                                        uint64_t /*Addr*/, \
90ac106addSNikolay Haustov                                        const void *Decoder) { \
91ac106addSNikolay Haustov   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder); \
92363f47a2SSam Kolton   return addOperand(Inst, DAsm->DecoderName(Imm)); \
93e1818af8STom Stellard }
94e1818af8STom Stellard 
95363f47a2SSam Kolton #define DECODE_OPERAND_REG(RegClass) \
96363f47a2SSam Kolton DECODE_OPERAND(Decode##RegClass##RegisterClass, decodeOperand_##RegClass)
97e1818af8STom Stellard 
98363f47a2SSam Kolton DECODE_OPERAND_REG(VGPR_32)
99363f47a2SSam Kolton DECODE_OPERAND_REG(VS_32)
100363f47a2SSam Kolton DECODE_OPERAND_REG(VS_64)
10130fc5239SDmitry Preobrazhensky DECODE_OPERAND_REG(VS_128)
102e1818af8STom Stellard 
103363f47a2SSam Kolton DECODE_OPERAND_REG(VReg_64)
104363f47a2SSam Kolton DECODE_OPERAND_REG(VReg_96)
105363f47a2SSam Kolton DECODE_OPERAND_REG(VReg_128)
106e1818af8STom Stellard 
107363f47a2SSam Kolton DECODE_OPERAND_REG(SReg_32)
108363f47a2SSam Kolton DECODE_OPERAND_REG(SReg_32_XM0_XEXEC)
109ca7b0a17SMatt Arsenault DECODE_OPERAND_REG(SReg_32_XEXEC_HI)
110363f47a2SSam Kolton DECODE_OPERAND_REG(SReg_64)
111363f47a2SSam Kolton DECODE_OPERAND_REG(SReg_64_XEXEC)
112363f47a2SSam Kolton DECODE_OPERAND_REG(SReg_128)
113363f47a2SSam Kolton DECODE_OPERAND_REG(SReg_256)
114363f47a2SSam Kolton DECODE_OPERAND_REG(SReg_512)
115e1818af8STom Stellard 
1164bd72361SMatt Arsenault static DecodeStatus decodeOperand_VSrc16(MCInst &Inst,
1174bd72361SMatt Arsenault                                          unsigned Imm,
1184bd72361SMatt Arsenault                                          uint64_t Addr,
1194bd72361SMatt Arsenault                                          const void *Decoder) {
1204bd72361SMatt Arsenault   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder);
1214bd72361SMatt Arsenault   return addOperand(Inst, DAsm->decodeOperand_VSrc16(Imm));
1224bd72361SMatt Arsenault }
1234bd72361SMatt Arsenault 
1249be7b0d4SMatt Arsenault static DecodeStatus decodeOperand_VSrcV216(MCInst &Inst,
1259be7b0d4SMatt Arsenault                                          unsigned Imm,
1269be7b0d4SMatt Arsenault                                          uint64_t Addr,
1279be7b0d4SMatt Arsenault                                          const void *Decoder) {
1289be7b0d4SMatt Arsenault   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder);
1299be7b0d4SMatt Arsenault   return addOperand(Inst, DAsm->decodeOperand_VSrcV216(Imm));
1309be7b0d4SMatt Arsenault }
1319be7b0d4SMatt Arsenault 
132549c89d2SSam Kolton #define DECODE_SDWA(DecName) \
133549c89d2SSam Kolton DECODE_OPERAND(decodeSDWA##DecName, decodeSDWA##DecName)
134363f47a2SSam Kolton 
135549c89d2SSam Kolton DECODE_SDWA(Src32)
136549c89d2SSam Kolton DECODE_SDWA(Src16)
137549c89d2SSam Kolton DECODE_SDWA(VopcDst)
138363f47a2SSam Kolton 
139e1818af8STom Stellard #include "AMDGPUGenDisassemblerTables.inc"
140e1818af8STom Stellard 
141e1818af8STom Stellard //===----------------------------------------------------------------------===//
142e1818af8STom Stellard //
143e1818af8STom Stellard //===----------------------------------------------------------------------===//
144e1818af8STom Stellard 
1451048fb18SSam Kolton template <typename T> static inline T eatBytes(ArrayRef<uint8_t>& Bytes) {
1461048fb18SSam Kolton   assert(Bytes.size() >= sizeof(T));
1471048fb18SSam Kolton   const auto Res = support::endian::read<T, support::endianness::little>(Bytes.data());
1481048fb18SSam Kolton   Bytes = Bytes.slice(sizeof(T));
149ac106addSNikolay Haustov   return Res;
150ac106addSNikolay Haustov }
151ac106addSNikolay Haustov 
152ac106addSNikolay Haustov DecodeStatus AMDGPUDisassembler::tryDecodeInst(const uint8_t* Table,
153ac106addSNikolay Haustov                                                MCInst &MI,
154ac106addSNikolay Haustov                                                uint64_t Inst,
155ac106addSNikolay Haustov                                                uint64_t Address) const {
156ac106addSNikolay Haustov   assert(MI.getOpcode() == 0);
157ac106addSNikolay Haustov   assert(MI.getNumOperands() == 0);
158ac106addSNikolay Haustov   MCInst TmpInst;
159ce941c9cSDmitry Preobrazhensky   HasLiteral = false;
160ac106addSNikolay Haustov   const auto SavedBytes = Bytes;
161ac106addSNikolay Haustov   if (decodeInstruction(Table, TmpInst, Inst, Address, this, STI)) {
162ac106addSNikolay Haustov     MI = TmpInst;
163ac106addSNikolay Haustov     return MCDisassembler::Success;
164ac106addSNikolay Haustov   }
165ac106addSNikolay Haustov   Bytes = SavedBytes;
166ac106addSNikolay Haustov   return MCDisassembler::Fail;
167ac106addSNikolay Haustov }
168ac106addSNikolay Haustov 
169e1818af8STom Stellard DecodeStatus AMDGPUDisassembler::getInstruction(MCInst &MI, uint64_t &Size,
170ac106addSNikolay Haustov                                                 ArrayRef<uint8_t> Bytes_,
171e1818af8STom Stellard                                                 uint64_t Address,
172e1818af8STom Stellard                                                 raw_ostream &WS,
173e1818af8STom Stellard                                                 raw_ostream &CS) const {
174e1818af8STom Stellard   CommentStream = &CS;
175549c89d2SSam Kolton   bool IsSDWA = false;
176e1818af8STom Stellard 
177e1818af8STom Stellard   // ToDo: AMDGPUDisassembler supports only VI ISA.
178d122abeaSMatt Arsenault   if (!STI.getFeatureBits()[AMDGPU::FeatureGCN3Encoding])
179d122abeaSMatt Arsenault     report_fatal_error("Disassembly not yet supported for subtarget");
180e1818af8STom Stellard 
181ac106addSNikolay Haustov   const unsigned MaxInstBytesNum = (std::min)((size_t)8, Bytes_.size());
182ac106addSNikolay Haustov   Bytes = Bytes_.slice(0, MaxInstBytesNum);
183161a158eSNikolay Haustov 
184ac106addSNikolay Haustov   DecodeStatus Res = MCDisassembler::Fail;
185ac106addSNikolay Haustov   do {
186824e804bSValery Pykhtin     // ToDo: better to switch encoding length using some bit predicate
187ac106addSNikolay Haustov     // but it is unknown yet, so try all we can
1881048fb18SSam Kolton 
189c9bdcb75SSam Kolton     // Try to decode DPP and SDWA first to solve conflict with VOP1 and VOP2
190c9bdcb75SSam Kolton     // encodings
1911048fb18SSam Kolton     if (Bytes.size() >= 8) {
1921048fb18SSam Kolton       const uint64_t QW = eatBytes<uint64_t>(Bytes);
1931048fb18SSam Kolton       Res = tryDecodeInst(DecoderTableDPP64, MI, QW, Address);
1941048fb18SSam Kolton       if (Res) break;
195c9bdcb75SSam Kolton 
196c9bdcb75SSam Kolton       Res = tryDecodeInst(DecoderTableSDWA64, MI, QW, Address);
197549c89d2SSam Kolton       if (Res) { IsSDWA = true;  break; }
198363f47a2SSam Kolton 
199363f47a2SSam Kolton       Res = tryDecodeInst(DecoderTableSDWA964, MI, QW, Address);
200549c89d2SSam Kolton       if (Res) { IsSDWA = true;  break; }
2011048fb18SSam Kolton     }
2021048fb18SSam Kolton 
2031048fb18SSam Kolton     // Reinitialize Bytes as DPP64 could have eaten too much
2041048fb18SSam Kolton     Bytes = Bytes_.slice(0, MaxInstBytesNum);
2051048fb18SSam Kolton 
2061048fb18SSam Kolton     // Try decode 32-bit instruction
207ac106addSNikolay Haustov     if (Bytes.size() < 4) break;
2081048fb18SSam Kolton     const uint32_t DW = eatBytes<uint32_t>(Bytes);
209ac106addSNikolay Haustov     Res = tryDecodeInst(DecoderTableVI32, MI, DW, Address);
210ac106addSNikolay Haustov     if (Res) break;
211e1818af8STom Stellard 
212ac106addSNikolay Haustov     Res = tryDecodeInst(DecoderTableAMDGPU32, MI, DW, Address);
213ac106addSNikolay Haustov     if (Res) break;
214ac106addSNikolay Haustov 
215ac106addSNikolay Haustov     if (Bytes.size() < 4) break;
2161048fb18SSam Kolton     const uint64_t QW = ((uint64_t)eatBytes<uint32_t>(Bytes) << 32) | DW;
217ac106addSNikolay Haustov     Res = tryDecodeInst(DecoderTableVI64, MI, QW, Address);
218ac106addSNikolay Haustov     if (Res) break;
219ac106addSNikolay Haustov 
220ac106addSNikolay Haustov     Res = tryDecodeInst(DecoderTableAMDGPU64, MI, QW, Address);
2211e32550dSDmitry Preobrazhensky     if (Res) break;
2221e32550dSDmitry Preobrazhensky 
2231e32550dSDmitry Preobrazhensky     Res = tryDecodeInst(DecoderTableGFX964, MI, QW, Address);
224ac106addSNikolay Haustov   } while (false);
225ac106addSNikolay Haustov 
226678e111eSMatt Arsenault   if (Res && (MI.getOpcode() == AMDGPU::V_MAC_F32_e64_vi ||
227678e111eSMatt Arsenault               MI.getOpcode() == AMDGPU::V_MAC_F32_e64_si ||
228678e111eSMatt Arsenault               MI.getOpcode() == AMDGPU::V_MAC_F16_e64_vi)) {
229678e111eSMatt Arsenault     // Insert dummy unused src2_modifiers.
230549c89d2SSam Kolton     insertNamedMCOperand(MI, MCOperand::createImm(0),
231678e111eSMatt Arsenault                          AMDGPU::OpName::src2_modifiers);
232678e111eSMatt Arsenault   }
233678e111eSMatt Arsenault 
234549c89d2SSam Kolton   if (Res && IsSDWA)
235549c89d2SSam Kolton     Res = convertSDWAInst(MI);
236549c89d2SSam Kolton 
237ac106addSNikolay Haustov   Size = Res ? (MaxInstBytesNum - Bytes.size()) : 0;
238ac106addSNikolay Haustov   return Res;
239161a158eSNikolay Haustov }
240e1818af8STom Stellard 
241549c89d2SSam Kolton DecodeStatus AMDGPUDisassembler::convertSDWAInst(MCInst &MI) const {
242549c89d2SSam Kolton   if (STI.getFeatureBits()[AMDGPU::FeatureGFX9]) {
243549c89d2SSam Kolton     if (AMDGPU::getNamedOperandIdx(MI.getOpcode(), AMDGPU::OpName::sdst) != -1)
244549c89d2SSam Kolton       // VOPC - insert clamp
245549c89d2SSam Kolton       insertNamedMCOperand(MI, MCOperand::createImm(0), AMDGPU::OpName::clamp);
246549c89d2SSam Kolton   } else if (STI.getFeatureBits()[AMDGPU::FeatureVolcanicIslands]) {
247549c89d2SSam Kolton     int SDst = AMDGPU::getNamedOperandIdx(MI.getOpcode(), AMDGPU::OpName::sdst);
248549c89d2SSam Kolton     if (SDst != -1) {
249549c89d2SSam Kolton       // VOPC - insert VCC register as sdst
250549c89d2SSam Kolton       insertNamedMCOperand(MI, MCOperand::createReg(AMDGPU::VCC),
251549c89d2SSam Kolton                            AMDGPU::OpName::sdst);
252549c89d2SSam Kolton     } else {
253549c89d2SSam Kolton       // VOP1/2 - insert omod if present in instruction
254549c89d2SSam Kolton       insertNamedMCOperand(MI, MCOperand::createImm(0), AMDGPU::OpName::omod);
255549c89d2SSam Kolton     }
256549c89d2SSam Kolton   }
257549c89d2SSam Kolton   return MCDisassembler::Success;
258549c89d2SSam Kolton }
259549c89d2SSam Kolton 
260ac106addSNikolay Haustov const char* AMDGPUDisassembler::getRegClassName(unsigned RegClassID) const {
261ac106addSNikolay Haustov   return getContext().getRegisterInfo()->
262ac106addSNikolay Haustov     getRegClassName(&AMDGPUMCRegisterClasses[RegClassID]);
263e1818af8STom Stellard }
264e1818af8STom Stellard 
265ac106addSNikolay Haustov inline
266ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::errOperand(unsigned V,
267ac106addSNikolay Haustov                                          const Twine& ErrMsg) const {
268ac106addSNikolay Haustov   *CommentStream << "Error: " + ErrMsg;
269ac106addSNikolay Haustov 
270ac106addSNikolay Haustov   // ToDo: add support for error operands to MCInst.h
271ac106addSNikolay Haustov   // return MCOperand::createError(V);
272ac106addSNikolay Haustov   return MCOperand();
273ac106addSNikolay Haustov }
274ac106addSNikolay Haustov 
275ac106addSNikolay Haustov inline
276ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::createRegOperand(unsigned int RegId) const {
277ac106addSNikolay Haustov   return MCOperand::createReg(RegId);
278ac106addSNikolay Haustov }
279ac106addSNikolay Haustov 
280ac106addSNikolay Haustov inline
281ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::createRegOperand(unsigned RegClassID,
282ac106addSNikolay Haustov                                                unsigned Val) const {
283ac106addSNikolay Haustov   const auto& RegCl = AMDGPUMCRegisterClasses[RegClassID];
284ac106addSNikolay Haustov   if (Val >= RegCl.getNumRegs())
285ac106addSNikolay Haustov     return errOperand(Val, Twine(getRegClassName(RegClassID)) +
286ac106addSNikolay Haustov                            ": unknown register " + Twine(Val));
287ac106addSNikolay Haustov   return createRegOperand(RegCl.getRegister(Val));
288ac106addSNikolay Haustov }
289ac106addSNikolay Haustov 
290ac106addSNikolay Haustov inline
291ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::createSRegOperand(unsigned SRegClassID,
292ac106addSNikolay Haustov                                                 unsigned Val) const {
293ac106addSNikolay Haustov   // ToDo: SI/CI have 104 SGPRs, VI - 102
294ac106addSNikolay Haustov   // Valery: here we accepting as much as we can, let assembler sort it out
295ac106addSNikolay Haustov   int shift = 0;
296ac106addSNikolay Haustov   switch (SRegClassID) {
297ac106addSNikolay Haustov   case AMDGPU::SGPR_32RegClassID:
298212a251cSArtem Tamazov   case AMDGPU::TTMP_32RegClassID:
299212a251cSArtem Tamazov     break;
300ac106addSNikolay Haustov   case AMDGPU::SGPR_64RegClassID:
301212a251cSArtem Tamazov   case AMDGPU::TTMP_64RegClassID:
302212a251cSArtem Tamazov     shift = 1;
303212a251cSArtem Tamazov     break;
304212a251cSArtem Tamazov   case AMDGPU::SGPR_128RegClassID:
305212a251cSArtem Tamazov   case AMDGPU::TTMP_128RegClassID:
306ac106addSNikolay Haustov   // ToDo: unclear if s[100:104] is available on VI. Can we use VCC as SGPR in
307ac106addSNikolay Haustov   // this bundle?
308ac106addSNikolay Haustov   case AMDGPU::SReg_256RegClassID:
309ac106addSNikolay Haustov   // ToDo: unclear if s[96:104] is available on VI. Can we use VCC as SGPR in
310ac106addSNikolay Haustov   // this bundle?
311212a251cSArtem Tamazov   case AMDGPU::SReg_512RegClassID:
312212a251cSArtem Tamazov     shift = 2;
313212a251cSArtem Tamazov     break;
314ac106addSNikolay Haustov   // ToDo: unclear if s[88:104] is available on VI. Can we use VCC as SGPR in
315ac106addSNikolay Haustov   // this bundle?
316212a251cSArtem Tamazov   default:
31792b355b1SMatt Arsenault     llvm_unreachable("unhandled register class");
318ac106addSNikolay Haustov   }
31992b355b1SMatt Arsenault 
32092b355b1SMatt Arsenault   if (Val % (1 << shift)) {
321ac106addSNikolay Haustov     *CommentStream << "Warning: " << getRegClassName(SRegClassID)
322ac106addSNikolay Haustov                    << ": scalar reg isn't aligned " << Val;
32392b355b1SMatt Arsenault   }
32492b355b1SMatt Arsenault 
325ac106addSNikolay Haustov   return createRegOperand(SRegClassID, Val >> shift);
326ac106addSNikolay Haustov }
327ac106addSNikolay Haustov 
328ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeOperand_VS_32(unsigned Val) const {
329212a251cSArtem Tamazov   return decodeSrcOp(OPW32, Val);
330ac106addSNikolay Haustov }
331ac106addSNikolay Haustov 
332ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeOperand_VS_64(unsigned Val) const {
333212a251cSArtem Tamazov   return decodeSrcOp(OPW64, Val);
334ac106addSNikolay Haustov }
335ac106addSNikolay Haustov 
33630fc5239SDmitry Preobrazhensky MCOperand AMDGPUDisassembler::decodeOperand_VS_128(unsigned Val) const {
33730fc5239SDmitry Preobrazhensky   return decodeSrcOp(OPW128, Val);
33830fc5239SDmitry Preobrazhensky }
33930fc5239SDmitry Preobrazhensky 
3404bd72361SMatt Arsenault MCOperand AMDGPUDisassembler::decodeOperand_VSrc16(unsigned Val) const {
3414bd72361SMatt Arsenault   return decodeSrcOp(OPW16, Val);
3424bd72361SMatt Arsenault }
3434bd72361SMatt Arsenault 
3449be7b0d4SMatt Arsenault MCOperand AMDGPUDisassembler::decodeOperand_VSrcV216(unsigned Val) const {
3459be7b0d4SMatt Arsenault   return decodeSrcOp(OPWV216, Val);
3469be7b0d4SMatt Arsenault }
3479be7b0d4SMatt Arsenault 
348ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeOperand_VGPR_32(unsigned Val) const {
349cb540bc0SMatt Arsenault   // Some instructions have operand restrictions beyond what the encoding
350cb540bc0SMatt Arsenault   // allows. Some ordinarily VSrc_32 operands are VGPR_32, so clear the extra
351cb540bc0SMatt Arsenault   // high bit.
352cb540bc0SMatt Arsenault   Val &= 255;
353cb540bc0SMatt Arsenault 
354ac106addSNikolay Haustov   return createRegOperand(AMDGPU::VGPR_32RegClassID, Val);
355ac106addSNikolay Haustov }
356ac106addSNikolay Haustov 
357ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeOperand_VReg_64(unsigned Val) const {
358ac106addSNikolay Haustov   return createRegOperand(AMDGPU::VReg_64RegClassID, Val);
359ac106addSNikolay Haustov }
360ac106addSNikolay Haustov 
361ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeOperand_VReg_96(unsigned Val) const {
362ac106addSNikolay Haustov   return createRegOperand(AMDGPU::VReg_96RegClassID, Val);
363ac106addSNikolay Haustov }
364ac106addSNikolay Haustov 
365ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeOperand_VReg_128(unsigned Val) const {
366ac106addSNikolay Haustov   return createRegOperand(AMDGPU::VReg_128RegClassID, Val);
367ac106addSNikolay Haustov }
368ac106addSNikolay Haustov 
369ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeOperand_SReg_32(unsigned Val) const {
370ac106addSNikolay Haustov   // table-gen generated disassembler doesn't care about operand types
371ac106addSNikolay Haustov   // leaving only registry class so SSrc_32 operand turns into SReg_32
372ac106addSNikolay Haustov   // and therefore we accept immediates and literals here as well
373212a251cSArtem Tamazov   return decodeSrcOp(OPW32, Val);
374ac106addSNikolay Haustov }
375ac106addSNikolay Haustov 
376640c44b8SMatt Arsenault MCOperand AMDGPUDisassembler::decodeOperand_SReg_32_XM0_XEXEC(
377640c44b8SMatt Arsenault   unsigned Val) const {
378640c44b8SMatt Arsenault   // SReg_32_XM0 is SReg_32 without M0 or EXEC_LO/EXEC_HI
37938e496b1SArtem Tamazov   return decodeOperand_SReg_32(Val);
38038e496b1SArtem Tamazov }
38138e496b1SArtem Tamazov 
382ca7b0a17SMatt Arsenault MCOperand AMDGPUDisassembler::decodeOperand_SReg_32_XEXEC_HI(
383ca7b0a17SMatt Arsenault   unsigned Val) const {
384ca7b0a17SMatt Arsenault   // SReg_32_XM0 is SReg_32 without EXEC_HI
385ca7b0a17SMatt Arsenault   return decodeOperand_SReg_32(Val);
386ca7b0a17SMatt Arsenault }
387ca7b0a17SMatt Arsenault 
388ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeOperand_SReg_64(unsigned Val) const {
389640c44b8SMatt Arsenault   return decodeSrcOp(OPW64, Val);
390640c44b8SMatt Arsenault }
391640c44b8SMatt Arsenault 
392640c44b8SMatt Arsenault MCOperand AMDGPUDisassembler::decodeOperand_SReg_64_XEXEC(unsigned Val) const {
393212a251cSArtem Tamazov   return decodeSrcOp(OPW64, Val);
394ac106addSNikolay Haustov }
395ac106addSNikolay Haustov 
396ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeOperand_SReg_128(unsigned Val) const {
397212a251cSArtem Tamazov   return decodeSrcOp(OPW128, Val);
398ac106addSNikolay Haustov }
399ac106addSNikolay Haustov 
400ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeOperand_SReg_256(unsigned Val) const {
401ac106addSNikolay Haustov   return createSRegOperand(AMDGPU::SReg_256RegClassID, Val);
402ac106addSNikolay Haustov }
403ac106addSNikolay Haustov 
404ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeOperand_SReg_512(unsigned Val) const {
405ac106addSNikolay Haustov   return createSRegOperand(AMDGPU::SReg_512RegClassID, Val);
406ac106addSNikolay Haustov }
407ac106addSNikolay Haustov 
408ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeLiteralConstant() const {
409ac106addSNikolay Haustov   // For now all literal constants are supposed to be unsigned integer
410ac106addSNikolay Haustov   // ToDo: deal with signed/unsigned 64-bit integer constants
411ac106addSNikolay Haustov   // ToDo: deal with float/double constants
412ce941c9cSDmitry Preobrazhensky   if (!HasLiteral) {
413ce941c9cSDmitry Preobrazhensky     if (Bytes.size() < 4) {
414ac106addSNikolay Haustov       return errOperand(0, "cannot read literal, inst bytes left " +
415ac106addSNikolay Haustov                         Twine(Bytes.size()));
416ce941c9cSDmitry Preobrazhensky     }
417ce941c9cSDmitry Preobrazhensky     HasLiteral = true;
418ce941c9cSDmitry Preobrazhensky     Literal = eatBytes<uint32_t>(Bytes);
419ce941c9cSDmitry Preobrazhensky   }
420ce941c9cSDmitry Preobrazhensky   return MCOperand::createImm(Literal);
421ac106addSNikolay Haustov }
422ac106addSNikolay Haustov 
423ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeIntImmed(unsigned Imm) {
424212a251cSArtem Tamazov   using namespace AMDGPU::EncValues;
425*c8fbf6ffSEugene Zelenko 
426212a251cSArtem Tamazov   assert(Imm >= INLINE_INTEGER_C_MIN && Imm <= INLINE_INTEGER_C_MAX);
427212a251cSArtem Tamazov   return MCOperand::createImm((Imm <= INLINE_INTEGER_C_POSITIVE_MAX) ?
428212a251cSArtem Tamazov     (static_cast<int64_t>(Imm) - INLINE_INTEGER_C_MIN) :
429212a251cSArtem Tamazov     (INLINE_INTEGER_C_POSITIVE_MAX - static_cast<int64_t>(Imm)));
430212a251cSArtem Tamazov       // Cast prevents negative overflow.
431ac106addSNikolay Haustov }
432ac106addSNikolay Haustov 
4334bd72361SMatt Arsenault static int64_t getInlineImmVal32(unsigned Imm) {
4344bd72361SMatt Arsenault   switch (Imm) {
4354bd72361SMatt Arsenault   case 240:
4364bd72361SMatt Arsenault     return FloatToBits(0.5f);
4374bd72361SMatt Arsenault   case 241:
4384bd72361SMatt Arsenault     return FloatToBits(-0.5f);
4394bd72361SMatt Arsenault   case 242:
4404bd72361SMatt Arsenault     return FloatToBits(1.0f);
4414bd72361SMatt Arsenault   case 243:
4424bd72361SMatt Arsenault     return FloatToBits(-1.0f);
4434bd72361SMatt Arsenault   case 244:
4444bd72361SMatt Arsenault     return FloatToBits(2.0f);
4454bd72361SMatt Arsenault   case 245:
4464bd72361SMatt Arsenault     return FloatToBits(-2.0f);
4474bd72361SMatt Arsenault   case 246:
4484bd72361SMatt Arsenault     return FloatToBits(4.0f);
4494bd72361SMatt Arsenault   case 247:
4504bd72361SMatt Arsenault     return FloatToBits(-4.0f);
4514bd72361SMatt Arsenault   case 248: // 1 / (2 * PI)
4524bd72361SMatt Arsenault     return 0x3e22f983;
4534bd72361SMatt Arsenault   default:
4544bd72361SMatt Arsenault     llvm_unreachable("invalid fp inline imm");
4554bd72361SMatt Arsenault   }
4564bd72361SMatt Arsenault }
4574bd72361SMatt Arsenault 
4584bd72361SMatt Arsenault static int64_t getInlineImmVal64(unsigned Imm) {
4594bd72361SMatt Arsenault   switch (Imm) {
4604bd72361SMatt Arsenault   case 240:
4614bd72361SMatt Arsenault     return DoubleToBits(0.5);
4624bd72361SMatt Arsenault   case 241:
4634bd72361SMatt Arsenault     return DoubleToBits(-0.5);
4644bd72361SMatt Arsenault   case 242:
4654bd72361SMatt Arsenault     return DoubleToBits(1.0);
4664bd72361SMatt Arsenault   case 243:
4674bd72361SMatt Arsenault     return DoubleToBits(-1.0);
4684bd72361SMatt Arsenault   case 244:
4694bd72361SMatt Arsenault     return DoubleToBits(2.0);
4704bd72361SMatt Arsenault   case 245:
4714bd72361SMatt Arsenault     return DoubleToBits(-2.0);
4724bd72361SMatt Arsenault   case 246:
4734bd72361SMatt Arsenault     return DoubleToBits(4.0);
4744bd72361SMatt Arsenault   case 247:
4754bd72361SMatt Arsenault     return DoubleToBits(-4.0);
4764bd72361SMatt Arsenault   case 248: // 1 / (2 * PI)
4774bd72361SMatt Arsenault     return 0x3fc45f306dc9c882;
4784bd72361SMatt Arsenault   default:
4794bd72361SMatt Arsenault     llvm_unreachable("invalid fp inline imm");
4804bd72361SMatt Arsenault   }
4814bd72361SMatt Arsenault }
4824bd72361SMatt Arsenault 
4834bd72361SMatt Arsenault static int64_t getInlineImmVal16(unsigned Imm) {
4844bd72361SMatt Arsenault   switch (Imm) {
4854bd72361SMatt Arsenault   case 240:
4864bd72361SMatt Arsenault     return 0x3800;
4874bd72361SMatt Arsenault   case 241:
4884bd72361SMatt Arsenault     return 0xB800;
4894bd72361SMatt Arsenault   case 242:
4904bd72361SMatt Arsenault     return 0x3C00;
4914bd72361SMatt Arsenault   case 243:
4924bd72361SMatt Arsenault     return 0xBC00;
4934bd72361SMatt Arsenault   case 244:
4944bd72361SMatt Arsenault     return 0x4000;
4954bd72361SMatt Arsenault   case 245:
4964bd72361SMatt Arsenault     return 0xC000;
4974bd72361SMatt Arsenault   case 246:
4984bd72361SMatt Arsenault     return 0x4400;
4994bd72361SMatt Arsenault   case 247:
5004bd72361SMatt Arsenault     return 0xC400;
5014bd72361SMatt Arsenault   case 248: // 1 / (2 * PI)
5024bd72361SMatt Arsenault     return 0x3118;
5034bd72361SMatt Arsenault   default:
5044bd72361SMatt Arsenault     llvm_unreachable("invalid fp inline imm");
5054bd72361SMatt Arsenault   }
5064bd72361SMatt Arsenault }
5074bd72361SMatt Arsenault 
5084bd72361SMatt Arsenault MCOperand AMDGPUDisassembler::decodeFPImmed(OpWidthTy Width, unsigned Imm) {
509212a251cSArtem Tamazov   assert(Imm >= AMDGPU::EncValues::INLINE_FLOATING_C_MIN
510212a251cSArtem Tamazov       && Imm <= AMDGPU::EncValues::INLINE_FLOATING_C_MAX);
5114bd72361SMatt Arsenault 
512e1818af8STom Stellard   // ToDo: case 248: 1/(2*PI) - is allowed only on VI
5134bd72361SMatt Arsenault   switch (Width) {
5144bd72361SMatt Arsenault   case OPW32:
5154bd72361SMatt Arsenault     return MCOperand::createImm(getInlineImmVal32(Imm));
5164bd72361SMatt Arsenault   case OPW64:
5174bd72361SMatt Arsenault     return MCOperand::createImm(getInlineImmVal64(Imm));
5184bd72361SMatt Arsenault   case OPW16:
5199be7b0d4SMatt Arsenault   case OPWV216:
5204bd72361SMatt Arsenault     return MCOperand::createImm(getInlineImmVal16(Imm));
5214bd72361SMatt Arsenault   default:
5224bd72361SMatt Arsenault     llvm_unreachable("implement me");
523e1818af8STom Stellard   }
524e1818af8STom Stellard }
525e1818af8STom Stellard 
526212a251cSArtem Tamazov unsigned AMDGPUDisassembler::getVgprClassId(const OpWidthTy Width) const {
527e1818af8STom Stellard   using namespace AMDGPU;
528*c8fbf6ffSEugene Zelenko 
529212a251cSArtem Tamazov   assert(OPW_FIRST_ <= Width && Width < OPW_LAST_);
530212a251cSArtem Tamazov   switch (Width) {
531212a251cSArtem Tamazov   default: // fall
5324bd72361SMatt Arsenault   case OPW32:
5334bd72361SMatt Arsenault   case OPW16:
5349be7b0d4SMatt Arsenault   case OPWV216:
5354bd72361SMatt Arsenault     return VGPR_32RegClassID;
536212a251cSArtem Tamazov   case OPW64: return VReg_64RegClassID;
537212a251cSArtem Tamazov   case OPW128: return VReg_128RegClassID;
538212a251cSArtem Tamazov   }
539212a251cSArtem Tamazov }
540212a251cSArtem Tamazov 
541212a251cSArtem Tamazov unsigned AMDGPUDisassembler::getSgprClassId(const OpWidthTy Width) const {
542212a251cSArtem Tamazov   using namespace AMDGPU;
543*c8fbf6ffSEugene Zelenko 
544212a251cSArtem Tamazov   assert(OPW_FIRST_ <= Width && Width < OPW_LAST_);
545212a251cSArtem Tamazov   switch (Width) {
546212a251cSArtem Tamazov   default: // fall
5474bd72361SMatt Arsenault   case OPW32:
5484bd72361SMatt Arsenault   case OPW16:
5499be7b0d4SMatt Arsenault   case OPWV216:
5504bd72361SMatt Arsenault     return SGPR_32RegClassID;
551212a251cSArtem Tamazov   case OPW64: return SGPR_64RegClassID;
552212a251cSArtem Tamazov   case OPW128: return SGPR_128RegClassID;
553212a251cSArtem Tamazov   }
554212a251cSArtem Tamazov }
555212a251cSArtem Tamazov 
556212a251cSArtem Tamazov unsigned AMDGPUDisassembler::getTtmpClassId(const OpWidthTy Width) const {
557212a251cSArtem Tamazov   using namespace AMDGPU;
558*c8fbf6ffSEugene Zelenko 
559212a251cSArtem Tamazov   assert(OPW_FIRST_ <= Width && Width < OPW_LAST_);
560212a251cSArtem Tamazov   switch (Width) {
561212a251cSArtem Tamazov   default: // fall
5624bd72361SMatt Arsenault   case OPW32:
5634bd72361SMatt Arsenault   case OPW16:
5649be7b0d4SMatt Arsenault   case OPWV216:
5654bd72361SMatt Arsenault     return TTMP_32RegClassID;
566212a251cSArtem Tamazov   case OPW64: return TTMP_64RegClassID;
567212a251cSArtem Tamazov   case OPW128: return TTMP_128RegClassID;
568212a251cSArtem Tamazov   }
569212a251cSArtem Tamazov }
570212a251cSArtem Tamazov 
571212a251cSArtem Tamazov MCOperand AMDGPUDisassembler::decodeSrcOp(const OpWidthTy Width, unsigned Val) const {
572212a251cSArtem Tamazov   using namespace AMDGPU::EncValues;
573*c8fbf6ffSEugene Zelenko 
574ac106addSNikolay Haustov   assert(Val < 512); // enum9
575ac106addSNikolay Haustov 
576212a251cSArtem Tamazov   if (VGPR_MIN <= Val && Val <= VGPR_MAX) {
577212a251cSArtem Tamazov     return createRegOperand(getVgprClassId(Width), Val - VGPR_MIN);
578212a251cSArtem Tamazov   }
579b49c3361SArtem Tamazov   if (Val <= SGPR_MAX) {
580b49c3361SArtem Tamazov     assert(SGPR_MIN == 0); // "SGPR_MIN <= Val" is always true and causes compilation warning.
581212a251cSArtem Tamazov     return createSRegOperand(getSgprClassId(Width), Val - SGPR_MIN);
582212a251cSArtem Tamazov   }
583212a251cSArtem Tamazov   if (TTMP_MIN <= Val && Val <= TTMP_MAX) {
584212a251cSArtem Tamazov     return createSRegOperand(getTtmpClassId(Width), Val - TTMP_MIN);
585212a251cSArtem Tamazov   }
586ac106addSNikolay Haustov 
587212a251cSArtem Tamazov   if (INLINE_INTEGER_C_MIN <= Val && Val <= INLINE_INTEGER_C_MAX)
588ac106addSNikolay Haustov     return decodeIntImmed(Val);
589ac106addSNikolay Haustov 
590212a251cSArtem Tamazov   if (INLINE_FLOATING_C_MIN <= Val && Val <= INLINE_FLOATING_C_MAX)
5914bd72361SMatt Arsenault     return decodeFPImmed(Width, Val);
592ac106addSNikolay Haustov 
593212a251cSArtem Tamazov   if (Val == LITERAL_CONST)
594ac106addSNikolay Haustov     return decodeLiteralConstant();
595ac106addSNikolay Haustov 
5964bd72361SMatt Arsenault   switch (Width) {
5974bd72361SMatt Arsenault   case OPW32:
5984bd72361SMatt Arsenault   case OPW16:
5999be7b0d4SMatt Arsenault   case OPWV216:
6004bd72361SMatt Arsenault     return decodeSpecialReg32(Val);
6014bd72361SMatt Arsenault   case OPW64:
6024bd72361SMatt Arsenault     return decodeSpecialReg64(Val);
6034bd72361SMatt Arsenault   default:
6044bd72361SMatt Arsenault     llvm_unreachable("unexpected immediate type");
6054bd72361SMatt Arsenault   }
606ac106addSNikolay Haustov }
607ac106addSNikolay Haustov 
608ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeSpecialReg32(unsigned Val) const {
609ac106addSNikolay Haustov   using namespace AMDGPU;
610*c8fbf6ffSEugene Zelenko 
611e1818af8STom Stellard   switch (Val) {
612ac106addSNikolay Haustov   case 102: return createRegOperand(getMCReg(FLAT_SCR_LO, STI));
613ac106addSNikolay Haustov   case 103: return createRegOperand(getMCReg(FLAT_SCR_HI, STI));
614e1818af8STom Stellard     // ToDo: no support for xnack_mask_lo/_hi register
615e1818af8STom Stellard   case 104:
616ac106addSNikolay Haustov   case 105: break;
617ac106addSNikolay Haustov   case 106: return createRegOperand(VCC_LO);
618ac106addSNikolay Haustov   case 107: return createRegOperand(VCC_HI);
619212a251cSArtem Tamazov   case 108: return createRegOperand(TBA_LO);
620212a251cSArtem Tamazov   case 109: return createRegOperand(TBA_HI);
621212a251cSArtem Tamazov   case 110: return createRegOperand(TMA_LO);
622212a251cSArtem Tamazov   case 111: return createRegOperand(TMA_HI);
623ac106addSNikolay Haustov   case 124: return createRegOperand(M0);
624ac106addSNikolay Haustov   case 126: return createRegOperand(EXEC_LO);
625ac106addSNikolay Haustov   case 127: return createRegOperand(EXEC_HI);
626a3b3b489SMatt Arsenault   case 235: return createRegOperand(SRC_SHARED_BASE);
627a3b3b489SMatt Arsenault   case 236: return createRegOperand(SRC_SHARED_LIMIT);
628a3b3b489SMatt Arsenault   case 237: return createRegOperand(SRC_PRIVATE_BASE);
629a3b3b489SMatt Arsenault   case 238: return createRegOperand(SRC_PRIVATE_LIMIT);
630a3b3b489SMatt Arsenault     // TODO: SRC_POPS_EXITING_WAVE_ID
631e1818af8STom Stellard     // ToDo: no support for vccz register
632ac106addSNikolay Haustov   case 251: break;
633e1818af8STom Stellard     // ToDo: no support for execz register
634ac106addSNikolay Haustov   case 252: break;
635ac106addSNikolay Haustov   case 253: return createRegOperand(SCC);
636ac106addSNikolay Haustov   default: break;
637e1818af8STom Stellard   }
638ac106addSNikolay Haustov   return errOperand(Val, "unknown operand encoding " + Twine(Val));
639e1818af8STom Stellard }
640e1818af8STom Stellard 
641ac106addSNikolay Haustov MCOperand AMDGPUDisassembler::decodeSpecialReg64(unsigned Val) const {
642161a158eSNikolay Haustov   using namespace AMDGPU;
643*c8fbf6ffSEugene Zelenko 
644161a158eSNikolay Haustov   switch (Val) {
645ac106addSNikolay Haustov   case 102: return createRegOperand(getMCReg(FLAT_SCR, STI));
646ac106addSNikolay Haustov   case 106: return createRegOperand(VCC);
647212a251cSArtem Tamazov   case 108: return createRegOperand(TBA);
648212a251cSArtem Tamazov   case 110: return createRegOperand(TMA);
649ac106addSNikolay Haustov   case 126: return createRegOperand(EXEC);
650ac106addSNikolay Haustov   default: break;
651161a158eSNikolay Haustov   }
652ac106addSNikolay Haustov   return errOperand(Val, "unknown operand encoding " + Twine(Val));
653161a158eSNikolay Haustov }
654161a158eSNikolay Haustov 
655549c89d2SSam Kolton MCOperand AMDGPUDisassembler::decodeSDWASrc(const OpWidthTy Width,
656363f47a2SSam Kolton                                             unsigned Val) const {
657363f47a2SSam Kolton   using namespace AMDGPU::SDWA;
658363f47a2SSam Kolton 
659549c89d2SSam Kolton   if (STI.getFeatureBits()[AMDGPU::FeatureGFX9]) {
660a179d25bSSam Kolton     // XXX: static_cast<int> is needed to avoid stupid warning:
661a179d25bSSam Kolton     // compare with unsigned is always true
662a179d25bSSam Kolton     if (SDWA9EncValues::SRC_VGPR_MIN <= static_cast<int>(Val) &&
663363f47a2SSam Kolton         Val <= SDWA9EncValues::SRC_VGPR_MAX) {
664363f47a2SSam Kolton       return createRegOperand(getVgprClassId(Width),
665363f47a2SSam Kolton                               Val - SDWA9EncValues::SRC_VGPR_MIN);
666363f47a2SSam Kolton     }
667363f47a2SSam Kolton     if (SDWA9EncValues::SRC_SGPR_MIN <= Val &&
668363f47a2SSam Kolton         Val <= SDWA9EncValues::SRC_SGPR_MAX) {
669363f47a2SSam Kolton       return createSRegOperand(getSgprClassId(Width),
670363f47a2SSam Kolton                                Val - SDWA9EncValues::SRC_SGPR_MIN);
671363f47a2SSam Kolton     }
672363f47a2SSam Kolton 
673363f47a2SSam Kolton     return decodeSpecialReg32(Val - SDWA9EncValues::SRC_SGPR_MIN);
674549c89d2SSam Kolton   } else if (STI.getFeatureBits()[AMDGPU::FeatureVolcanicIslands]) {
675549c89d2SSam Kolton     return createRegOperand(getVgprClassId(Width), Val);
676549c89d2SSam Kolton   }
677549c89d2SSam Kolton   llvm_unreachable("unsupported target");
678363f47a2SSam Kolton }
679363f47a2SSam Kolton 
680549c89d2SSam Kolton MCOperand AMDGPUDisassembler::decodeSDWASrc16(unsigned Val) const {
681549c89d2SSam Kolton   return decodeSDWASrc(OPW16, Val);
682363f47a2SSam Kolton }
683363f47a2SSam Kolton 
684549c89d2SSam Kolton MCOperand AMDGPUDisassembler::decodeSDWASrc32(unsigned Val) const {
685549c89d2SSam Kolton   return decodeSDWASrc(OPW32, Val);
686363f47a2SSam Kolton }
687363f47a2SSam Kolton 
688549c89d2SSam Kolton MCOperand AMDGPUDisassembler::decodeSDWAVopcDst(unsigned Val) const {
689363f47a2SSam Kolton   using namespace AMDGPU::SDWA;
690363f47a2SSam Kolton 
691549c89d2SSam Kolton   assert(STI.getFeatureBits()[AMDGPU::FeatureGFX9] &&
692549c89d2SSam Kolton          "SDWAVopcDst should be present only on GFX9");
693363f47a2SSam Kolton   if (Val & SDWA9EncValues::VOPC_DST_VCC_MASK) {
694363f47a2SSam Kolton     Val &= SDWA9EncValues::VOPC_DST_SGPR_MASK;
695363f47a2SSam Kolton     if (Val > AMDGPU::EncValues::SGPR_MAX) {
696363f47a2SSam Kolton       return decodeSpecialReg64(Val);
697363f47a2SSam Kolton     } else {
698363f47a2SSam Kolton       return createSRegOperand(getSgprClassId(OPW64), Val);
699363f47a2SSam Kolton     }
700363f47a2SSam Kolton   } else {
701363f47a2SSam Kolton     return createRegOperand(AMDGPU::VCC);
702363f47a2SSam Kolton   }
703363f47a2SSam Kolton }
704363f47a2SSam Kolton 
7053381d7a2SSam Kolton //===----------------------------------------------------------------------===//
7063381d7a2SSam Kolton // AMDGPUSymbolizer
7073381d7a2SSam Kolton //===----------------------------------------------------------------------===//
7083381d7a2SSam Kolton 
7093381d7a2SSam Kolton // Try to find symbol name for specified label
7103381d7a2SSam Kolton bool AMDGPUSymbolizer::tryAddingSymbolicOperand(MCInst &Inst,
7113381d7a2SSam Kolton                                 raw_ostream &/*cStream*/, int64_t Value,
7123381d7a2SSam Kolton                                 uint64_t /*Address*/, bool IsBranch,
7133381d7a2SSam Kolton                                 uint64_t /*Offset*/, uint64_t /*InstSize*/) {
714*c8fbf6ffSEugene Zelenko   using SymbolInfoTy = std::tuple<uint64_t, StringRef, uint8_t>;
715*c8fbf6ffSEugene Zelenko   using SectionSymbolsTy = std::vector<SymbolInfoTy>;
7163381d7a2SSam Kolton 
7173381d7a2SSam Kolton   if (!IsBranch) {
7183381d7a2SSam Kolton     return false;
7193381d7a2SSam Kolton   }
7203381d7a2SSam Kolton 
7213381d7a2SSam Kolton   auto *Symbols = static_cast<SectionSymbolsTy *>(DisInfo);
7223381d7a2SSam Kolton   auto Result = std::find_if(Symbols->begin(), Symbols->end(),
7233381d7a2SSam Kolton                              [Value](const SymbolInfoTy& Val) {
7243381d7a2SSam Kolton                                 return std::get<0>(Val) == static_cast<uint64_t>(Value)
7253381d7a2SSam Kolton                                     && std::get<2>(Val) == ELF::STT_NOTYPE;
7263381d7a2SSam Kolton                              });
7273381d7a2SSam Kolton   if (Result != Symbols->end()) {
7283381d7a2SSam Kolton     auto *Sym = Ctx.getOrCreateSymbol(std::get<1>(*Result));
7293381d7a2SSam Kolton     const auto *Add = MCSymbolRefExpr::create(Sym, Ctx);
7303381d7a2SSam Kolton     Inst.addOperand(MCOperand::createExpr(Add));
7313381d7a2SSam Kolton     return true;
7323381d7a2SSam Kolton   }
7333381d7a2SSam Kolton   return false;
7343381d7a2SSam Kolton }
7353381d7a2SSam Kolton 
73692b355b1SMatt Arsenault void AMDGPUSymbolizer::tryAddingPcLoadReferenceComment(raw_ostream &cStream,
73792b355b1SMatt Arsenault                                                        int64_t Value,
73892b355b1SMatt Arsenault                                                        uint64_t Address) {
73992b355b1SMatt Arsenault   llvm_unreachable("unimplemented");
74092b355b1SMatt Arsenault }
74192b355b1SMatt Arsenault 
7423381d7a2SSam Kolton //===----------------------------------------------------------------------===//
7433381d7a2SSam Kolton // Initialization
7443381d7a2SSam Kolton //===----------------------------------------------------------------------===//
7453381d7a2SSam Kolton 
7463381d7a2SSam Kolton static MCSymbolizer *createAMDGPUSymbolizer(const Triple &/*TT*/,
7473381d7a2SSam Kolton                               LLVMOpInfoCallback /*GetOpInfo*/,
7483381d7a2SSam Kolton                               LLVMSymbolLookupCallback /*SymbolLookUp*/,
7493381d7a2SSam Kolton                               void *DisInfo,
7503381d7a2SSam Kolton                               MCContext *Ctx,
7513381d7a2SSam Kolton                               std::unique_ptr<MCRelocationInfo> &&RelInfo) {
7523381d7a2SSam Kolton   return new AMDGPUSymbolizer(*Ctx, std::move(RelInfo), DisInfo);
7533381d7a2SSam Kolton }
7543381d7a2SSam Kolton 
755e1818af8STom Stellard static MCDisassembler *createAMDGPUDisassembler(const Target &T,
756e1818af8STom Stellard                                                 const MCSubtargetInfo &STI,
757e1818af8STom Stellard                                                 MCContext &Ctx) {
758e1818af8STom Stellard   return new AMDGPUDisassembler(STI, Ctx);
759e1818af8STom Stellard }
760e1818af8STom Stellard 
761e1818af8STom Stellard extern "C" void LLVMInitializeAMDGPUDisassembler() {
762f42454b9SMehdi Amini   TargetRegistry::RegisterMCDisassembler(getTheGCNTarget(),
763f42454b9SMehdi Amini                                          createAMDGPUDisassembler);
764f42454b9SMehdi Amini   TargetRegistry::RegisterMCSymbolizer(getTheGCNTarget(),
765f42454b9SMehdi Amini                                        createAMDGPUSymbolizer);
766e1818af8STom Stellard }
767