1 //===- AMDGPUDisassembler.cpp - Disassembler for AMDGPU ISA ---------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 //
9 //===----------------------------------------------------------------------===//
10 //
11 /// \file
12 ///
13 /// This file contains definition for AMDGPU ISA disassembler
14 //
15 //===----------------------------------------------------------------------===//
16 
17 // ToDo: What to do with instruction suffixes (v_mov_b32 vs v_mov_b32_e32)?
18 
19 #include "Disassembler/AMDGPUDisassembler.h"
20 #include "AMDGPU.h"
21 #include "AMDGPURegisterInfo.h"
22 #include "MCTargetDesc/AMDGPUMCTargetDesc.h"
23 #include "SIDefines.h"
24 #include "TargetInfo/AMDGPUTargetInfo.h"
25 #include "Utils/AMDGPUBaseInfo.h"
26 #include "llvm-c/Disassembler.h"
27 #include "llvm/ADT/APInt.h"
28 #include "llvm/ADT/ArrayRef.h"
29 #include "llvm/ADT/Twine.h"
30 #include "llvm/BinaryFormat/ELF.h"
31 #include "llvm/MC/MCAsmInfo.h"
32 #include "llvm/MC/MCContext.h"
33 #include "llvm/MC/MCDisassembler/MCDisassembler.h"
34 #include "llvm/MC/MCExpr.h"
35 #include "llvm/MC/MCFixedLenDisassembler.h"
36 #include "llvm/MC/MCInst.h"
37 #include "llvm/MC/MCSubtargetInfo.h"
38 #include "llvm/Support/Endian.h"
39 #include "llvm/Support/ErrorHandling.h"
40 #include "llvm/Support/MathExtras.h"
41 #include "llvm/Support/TargetRegistry.h"
42 #include "llvm/Support/raw_ostream.h"
43 #include <algorithm>
44 #include <cassert>
45 #include <cstddef>
46 #include <cstdint>
47 #include <iterator>
48 #include <tuple>
49 #include <vector>
50 
51 using namespace llvm;
52 
53 #define DEBUG_TYPE "amdgpu-disassembler"
54 
55 #define SGPR_MAX (isGFX10() ? AMDGPU::EncValues::SGPR_MAX_GFX10 \
56                             : AMDGPU::EncValues::SGPR_MAX_SI)
57 
58 using DecodeStatus = llvm::MCDisassembler::DecodeStatus;
59 
60 AMDGPUDisassembler::AMDGPUDisassembler(const MCSubtargetInfo &STI,
61                                        MCContext &Ctx,
62                                        MCInstrInfo const *MCII) :
63   MCDisassembler(STI, Ctx), MCII(MCII), MRI(*Ctx.getRegisterInfo()),
64   TargetMaxInstBytes(Ctx.getAsmInfo()->getMaxInstLength(&STI)) {
65 
66   // ToDo: AMDGPUDisassembler supports only VI ISA.
67   if (!STI.getFeatureBits()[AMDGPU::FeatureGCN3Encoding] && !isGFX10())
68     report_fatal_error("Disassembly not yet supported for subtarget");
69 }
70 
71 inline static MCDisassembler::DecodeStatus
72 addOperand(MCInst &Inst, const MCOperand& Opnd) {
73   Inst.addOperand(Opnd);
74   return Opnd.isValid() ?
75     MCDisassembler::Success :
76     MCDisassembler::Fail;
77 }
78 
79 static int insertNamedMCOperand(MCInst &MI, const MCOperand &Op,
80                                 uint16_t NameIdx) {
81   int OpIdx = AMDGPU::getNamedOperandIdx(MI.getOpcode(), NameIdx);
82   if (OpIdx != -1) {
83     auto I = MI.begin();
84     std::advance(I, OpIdx);
85     MI.insert(I, Op);
86   }
87   return OpIdx;
88 }
89 
90 static DecodeStatus decodeSoppBrTarget(MCInst &Inst, unsigned Imm,
91                                        uint64_t Addr, const void *Decoder) {
92   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder);
93 
94   // Our branches take a simm16, but we need two extra bits to account for the
95   // factor of 4.
96   APInt SignedOffset(18, Imm * 4, true);
97   int64_t Offset = (SignedOffset.sext(64) + 4 + Addr).getSExtValue();
98 
99   if (DAsm->tryAddingSymbolicOperand(Inst, Offset, Addr, true, 2, 2))
100     return MCDisassembler::Success;
101   return addOperand(Inst, MCOperand::createImm(Imm));
102 }
103 
104 static DecodeStatus decodeBoolReg(MCInst &Inst, unsigned Val,
105                                   uint64_t Addr, const void *Decoder) {
106   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder);
107   return addOperand(Inst, DAsm->decodeBoolReg(Val));
108 }
109 
110 #define DECODE_OPERAND(StaticDecoderName, DecoderName) \
111 static DecodeStatus StaticDecoderName(MCInst &Inst, \
112                                        unsigned Imm, \
113                                        uint64_t /*Addr*/, \
114                                        const void *Decoder) { \
115   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder); \
116   return addOperand(Inst, DAsm->DecoderName(Imm)); \
117 }
118 
119 #define DECODE_OPERAND_REG(RegClass) \
120 DECODE_OPERAND(Decode##RegClass##RegisterClass, decodeOperand_##RegClass)
121 
122 DECODE_OPERAND_REG(VGPR_32)
123 DECODE_OPERAND_REG(VRegOrLds_32)
124 DECODE_OPERAND_REG(VS_32)
125 DECODE_OPERAND_REG(VS_64)
126 DECODE_OPERAND_REG(VS_128)
127 
128 DECODE_OPERAND_REG(VReg_64)
129 DECODE_OPERAND_REG(VReg_96)
130 DECODE_OPERAND_REG(VReg_128)
131 
132 DECODE_OPERAND_REG(SReg_32)
133 DECODE_OPERAND_REG(SReg_32_XM0_XEXEC)
134 DECODE_OPERAND_REG(SReg_32_XEXEC_HI)
135 DECODE_OPERAND_REG(SRegOrLds_32)
136 DECODE_OPERAND_REG(SReg_64)
137 DECODE_OPERAND_REG(SReg_64_XEXEC)
138 DECODE_OPERAND_REG(SReg_128)
139 DECODE_OPERAND_REG(SReg_256)
140 DECODE_OPERAND_REG(SReg_512)
141 
142 DECODE_OPERAND_REG(AGPR_32)
143 DECODE_OPERAND_REG(AReg_128)
144 DECODE_OPERAND_REG(AReg_512)
145 DECODE_OPERAND_REG(AReg_1024)
146 DECODE_OPERAND_REG(AV_32)
147 DECODE_OPERAND_REG(AV_64)
148 
149 static DecodeStatus decodeOperand_VSrc16(MCInst &Inst,
150                                          unsigned Imm,
151                                          uint64_t Addr,
152                                          const void *Decoder) {
153   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder);
154   return addOperand(Inst, DAsm->decodeOperand_VSrc16(Imm));
155 }
156 
157 static DecodeStatus decodeOperand_VSrcV216(MCInst &Inst,
158                                          unsigned Imm,
159                                          uint64_t Addr,
160                                          const void *Decoder) {
161   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder);
162   return addOperand(Inst, DAsm->decodeOperand_VSrcV216(Imm));
163 }
164 
165 static DecodeStatus decodeOperand_VS_16(MCInst &Inst,
166                                         unsigned Imm,
167                                         uint64_t Addr,
168                                         const void *Decoder) {
169   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder);
170   return addOperand(Inst, DAsm->decodeOperand_VSrc16(Imm));
171 }
172 
173 static DecodeStatus decodeOperand_VS_32(MCInst &Inst,
174                                         unsigned Imm,
175                                         uint64_t Addr,
176                                         const void *Decoder) {
177   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder);
178   return addOperand(Inst, DAsm->decodeOperand_VS_32(Imm));
179 }
180 
181 static DecodeStatus decodeOperand_AReg_128(MCInst &Inst,
182                                            unsigned Imm,
183                                            uint64_t Addr,
184                                            const void *Decoder) {
185   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder);
186   return addOperand(Inst, DAsm->decodeSrcOp(AMDGPUDisassembler::OPW128, Imm | 512));
187 }
188 
189 static DecodeStatus decodeOperand_AReg_512(MCInst &Inst,
190                                            unsigned Imm,
191                                            uint64_t Addr,
192                                            const void *Decoder) {
193   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder);
194   return addOperand(Inst, DAsm->decodeSrcOp(AMDGPUDisassembler::OPW512, Imm | 512));
195 }
196 
197 static DecodeStatus decodeOperand_AReg_1024(MCInst &Inst,
198                                             unsigned Imm,
199                                             uint64_t Addr,
200                                             const void *Decoder) {
201   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder);
202   return addOperand(Inst, DAsm->decodeSrcOp(AMDGPUDisassembler::OPW1024, Imm | 512));
203 }
204 
205 static DecodeStatus decodeOperand_SReg_32(MCInst &Inst,
206                                           unsigned Imm,
207                                           uint64_t Addr,
208                                           const void *Decoder) {
209   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder);
210   return addOperand(Inst, DAsm->decodeOperand_SReg_32(Imm));
211 }
212 
213 static DecodeStatus decodeOperand_VGPR_32(MCInst &Inst,
214                                          unsigned Imm,
215                                          uint64_t Addr,
216                                          const void *Decoder) {
217   auto DAsm = static_cast<const AMDGPUDisassembler*>(Decoder);
218   return addOperand(Inst, DAsm->decodeSrcOp(AMDGPUDisassembler::OPW32, Imm));
219 }
220 
221 #define DECODE_SDWA(DecName) \
222 DECODE_OPERAND(decodeSDWA##DecName, decodeSDWA##DecName)
223 
224 DECODE_SDWA(Src32)
225 DECODE_SDWA(Src16)
226 DECODE_SDWA(VopcDst)
227 
228 #include "AMDGPUGenDisassemblerTables.inc"
229 
230 //===----------------------------------------------------------------------===//
231 //
232 //===----------------------------------------------------------------------===//
233 
234 template <typename T> static inline T eatBytes(ArrayRef<uint8_t>& Bytes) {
235   assert(Bytes.size() >= sizeof(T));
236   const auto Res = support::endian::read<T, support::endianness::little>(Bytes.data());
237   Bytes = Bytes.slice(sizeof(T));
238   return Res;
239 }
240 
241 DecodeStatus AMDGPUDisassembler::tryDecodeInst(const uint8_t* Table,
242                                                MCInst &MI,
243                                                uint64_t Inst,
244                                                uint64_t Address) const {
245   assert(MI.getOpcode() == 0);
246   assert(MI.getNumOperands() == 0);
247   MCInst TmpInst;
248   HasLiteral = false;
249   const auto SavedBytes = Bytes;
250   if (decodeInstruction(Table, TmpInst, Inst, Address, this, STI)) {
251     MI = TmpInst;
252     return MCDisassembler::Success;
253   }
254   Bytes = SavedBytes;
255   return MCDisassembler::Fail;
256 }
257 
258 static bool isValidDPP8(const MCInst &MI) {
259   using namespace llvm::AMDGPU::DPP;
260   int FiIdx = AMDGPU::getNamedOperandIdx(MI.getOpcode(), AMDGPU::OpName::fi);
261   assert(FiIdx != -1);
262   if ((unsigned)FiIdx >= MI.getNumOperands())
263     return false;
264   unsigned Fi = MI.getOperand(FiIdx).getImm();
265   return Fi == DPP8_FI_0 || Fi == DPP8_FI_1;
266 }
267 
268 DecodeStatus AMDGPUDisassembler::getInstruction(MCInst &MI, uint64_t &Size,
269                                                 ArrayRef<uint8_t> Bytes_,
270                                                 uint64_t Address,
271                                                 raw_ostream &CS) const {
272   CommentStream = &CS;
273   bool IsSDWA = false;
274 
275   unsigned MaxInstBytesNum = std::min((size_t)TargetMaxInstBytes, Bytes_.size());
276   Bytes = Bytes_.slice(0, MaxInstBytesNum);
277 
278   DecodeStatus Res = MCDisassembler::Fail;
279   do {
280     // ToDo: better to switch encoding length using some bit predicate
281     // but it is unknown yet, so try all we can
282 
283     // Try to decode DPP and SDWA first to solve conflict with VOP1 and VOP2
284     // encodings
285     if (Bytes.size() >= 8) {
286       const uint64_t QW = eatBytes<uint64_t>(Bytes);
287 
288       Res = tryDecodeInst(DecoderTableDPP864, MI, QW, Address);
289       if (Res && convertDPP8Inst(MI) == MCDisassembler::Success)
290         break;
291 
292       MI = MCInst(); // clear
293 
294       Res = tryDecodeInst(DecoderTableDPP64, MI, QW, Address);
295       if (Res) break;
296 
297       Res = tryDecodeInst(DecoderTableSDWA64, MI, QW, Address);
298       if (Res) { IsSDWA = true;  break; }
299 
300       Res = tryDecodeInst(DecoderTableSDWA964, MI, QW, Address);
301       if (Res) { IsSDWA = true;  break; }
302 
303       Res = tryDecodeInst(DecoderTableSDWA1064, MI, QW, Address);
304       if (Res) { IsSDWA = true;  break; }
305 
306       if (STI.getFeatureBits()[AMDGPU::FeatureUnpackedD16VMem]) {
307         Res = tryDecodeInst(DecoderTableGFX80_UNPACKED64, MI, QW, Address);
308         if (Res)
309           break;
310       }
311 
312       // Some GFX9 subtargets repurposed the v_mad_mix_f32, v_mad_mixlo_f16 and
313       // v_mad_mixhi_f16 for FMA variants. Try to decode using this special
314       // table first so we print the correct name.
315       if (STI.getFeatureBits()[AMDGPU::FeatureFmaMixInsts]) {
316         Res = tryDecodeInst(DecoderTableGFX9_DL64, MI, QW, Address);
317         if (Res)
318           break;
319       }
320     }
321 
322     // Reinitialize Bytes as DPP64 could have eaten too much
323     Bytes = Bytes_.slice(0, MaxInstBytesNum);
324 
325     // Try decode 32-bit instruction
326     if (Bytes.size() < 4) break;
327     const uint32_t DW = eatBytes<uint32_t>(Bytes);
328     Res = tryDecodeInst(DecoderTableGFX832, MI, DW, Address);
329     if (Res) break;
330 
331     Res = tryDecodeInst(DecoderTableAMDGPU32, MI, DW, Address);
332     if (Res) break;
333 
334     Res = tryDecodeInst(DecoderTableGFX932, MI, DW, Address);
335     if (Res) break;
336 
337     Res = tryDecodeInst(DecoderTableGFX1032, MI, DW, Address);
338     if (Res) break;
339 
340     if (Bytes.size() < 4) break;
341     const uint64_t QW = ((uint64_t)eatBytes<uint32_t>(Bytes) << 32) | DW;
342     Res = tryDecodeInst(DecoderTableGFX864, MI, QW, Address);
343     if (Res) break;
344 
345     Res = tryDecodeInst(DecoderTableAMDGPU64, MI, QW, Address);
346     if (Res) break;
347 
348     Res = tryDecodeInst(DecoderTableGFX964, MI, QW, Address);
349     if (Res) break;
350 
351     Res = tryDecodeInst(DecoderTableGFX1064, MI, QW, Address);
352   } while (false);
353 
354   if (Res && (MaxInstBytesNum - Bytes.size()) == 12 && (!HasLiteral ||
355         !(MCII->get(MI.getOpcode()).TSFlags & SIInstrFlags::VOP3))) {
356     MaxInstBytesNum = 8;
357     Bytes = Bytes_.slice(0, MaxInstBytesNum);
358     eatBytes<uint64_t>(Bytes);
359   }
360 
361   if (Res && (MI.getOpcode() == AMDGPU::V_MAC_F32_e64_vi ||
362               MI.getOpcode() == AMDGPU::V_MAC_F32_e64_gfx6_gfx7 ||
363               MI.getOpcode() == AMDGPU::V_MAC_F32_e64_gfx10 ||
364               MI.getOpcode() == AMDGPU::V_MAC_F16_e64_vi ||
365               MI.getOpcode() == AMDGPU::V_FMAC_F32_e64_vi ||
366               MI.getOpcode() == AMDGPU::V_FMAC_F32_e64_gfx10 ||
367               MI.getOpcode() == AMDGPU::V_FMAC_F16_e64_gfx10)) {
368     // Insert dummy unused src2_modifiers.
369     insertNamedMCOperand(MI, MCOperand::createImm(0),
370                          AMDGPU::OpName::src2_modifiers);
371   }
372 
373   if (Res && (MCII->get(MI.getOpcode()).TSFlags & SIInstrFlags::MIMG)) {
374     int VAddr0Idx =
375         AMDGPU::getNamedOperandIdx(MI.getOpcode(), AMDGPU::OpName::vaddr0);
376     int RsrcIdx =
377         AMDGPU::getNamedOperandIdx(MI.getOpcode(), AMDGPU::OpName::srsrc);
378     unsigned NSAArgs = RsrcIdx - VAddr0Idx - 1;
379     if (VAddr0Idx >= 0 && NSAArgs > 0) {
380       unsigned NSAWords = (NSAArgs + 3) / 4;
381       if (Bytes.size() < 4 * NSAWords) {
382         Res = MCDisassembler::Fail;
383       } else {
384         for (unsigned i = 0; i < NSAArgs; ++i) {
385           MI.insert(MI.begin() + VAddr0Idx + 1 + i,
386                     decodeOperand_VGPR_32(Bytes[i]));
387         }
388         Bytes = Bytes.slice(4 * NSAWords);
389       }
390     }
391 
392     if (Res)
393       Res = convertMIMGInst(MI);
394   }
395 
396   if (Res && IsSDWA)
397     Res = convertSDWAInst(MI);
398 
399   int VDstIn_Idx = AMDGPU::getNamedOperandIdx(MI.getOpcode(),
400                                               AMDGPU::OpName::vdst_in);
401   if (VDstIn_Idx != -1) {
402     int Tied = MCII->get(MI.getOpcode()).getOperandConstraint(VDstIn_Idx,
403                            MCOI::OperandConstraint::TIED_TO);
404     if (Tied != -1 && (MI.getNumOperands() <= (unsigned)VDstIn_Idx ||
405          !MI.getOperand(VDstIn_Idx).isReg() ||
406          MI.getOperand(VDstIn_Idx).getReg() != MI.getOperand(Tied).getReg())) {
407       if (MI.getNumOperands() > (unsigned)VDstIn_Idx)
408         MI.erase(&MI.getOperand(VDstIn_Idx));
409       insertNamedMCOperand(MI,
410         MCOperand::createReg(MI.getOperand(Tied).getReg()),
411         AMDGPU::OpName::vdst_in);
412     }
413   }
414 
415   // if the opcode was not recognized we'll assume a Size of 4 bytes
416   // (unless there are fewer bytes left)
417   Size = Res ? (MaxInstBytesNum - Bytes.size())
418              : std::min((size_t)4, Bytes_.size());
419   return Res;
420 }
421 
422 DecodeStatus AMDGPUDisassembler::convertSDWAInst(MCInst &MI) const {
423   if (STI.getFeatureBits()[AMDGPU::FeatureGFX9] ||
424       STI.getFeatureBits()[AMDGPU::FeatureGFX10]) {
425     if (AMDGPU::getNamedOperandIdx(MI.getOpcode(), AMDGPU::OpName::sdst) != -1)
426       // VOPC - insert clamp
427       insertNamedMCOperand(MI, MCOperand::createImm(0), AMDGPU::OpName::clamp);
428   } else if (STI.getFeatureBits()[AMDGPU::FeatureVolcanicIslands]) {
429     int SDst = AMDGPU::getNamedOperandIdx(MI.getOpcode(), AMDGPU::OpName::sdst);
430     if (SDst != -1) {
431       // VOPC - insert VCC register as sdst
432       insertNamedMCOperand(MI, createRegOperand(AMDGPU::VCC),
433                            AMDGPU::OpName::sdst);
434     } else {
435       // VOP1/2 - insert omod if present in instruction
436       insertNamedMCOperand(MI, MCOperand::createImm(0), AMDGPU::OpName::omod);
437     }
438   }
439   return MCDisassembler::Success;
440 }
441 
442 DecodeStatus AMDGPUDisassembler::convertDPP8Inst(MCInst &MI) const {
443   unsigned Opc = MI.getOpcode();
444   unsigned DescNumOps = MCII->get(Opc).getNumOperands();
445 
446   // Insert dummy unused src modifiers.
447   if (MI.getNumOperands() < DescNumOps &&
448       AMDGPU::getNamedOperandIdx(Opc, AMDGPU::OpName::src0_modifiers) != -1)
449     insertNamedMCOperand(MI, MCOperand::createImm(0),
450                          AMDGPU::OpName::src0_modifiers);
451 
452   if (MI.getNumOperands() < DescNumOps &&
453       AMDGPU::getNamedOperandIdx(Opc, AMDGPU::OpName::src1_modifiers) != -1)
454     insertNamedMCOperand(MI, MCOperand::createImm(0),
455                          AMDGPU::OpName::src1_modifiers);
456 
457   return isValidDPP8(MI) ? MCDisassembler::Success : MCDisassembler::SoftFail;
458 }
459 
460 // Note that before gfx10, the MIMG encoding provided no information about
461 // VADDR size. Consequently, decoded instructions always show address as if it
462 // has 1 dword, which could be not really so.
463 DecodeStatus AMDGPUDisassembler::convertMIMGInst(MCInst &MI) const {
464 
465   int VDstIdx = AMDGPU::getNamedOperandIdx(MI.getOpcode(),
466                                            AMDGPU::OpName::vdst);
467 
468   int VDataIdx = AMDGPU::getNamedOperandIdx(MI.getOpcode(),
469                                             AMDGPU::OpName::vdata);
470   int VAddr0Idx =
471       AMDGPU::getNamedOperandIdx(MI.getOpcode(), AMDGPU::OpName::vaddr0);
472   int DMaskIdx = AMDGPU::getNamedOperandIdx(MI.getOpcode(),
473                                             AMDGPU::OpName::dmask);
474 
475   int TFEIdx   = AMDGPU::getNamedOperandIdx(MI.getOpcode(),
476                                             AMDGPU::OpName::tfe);
477   int D16Idx   = AMDGPU::getNamedOperandIdx(MI.getOpcode(),
478                                             AMDGPU::OpName::d16);
479 
480   assert(VDataIdx != -1);
481   assert(DMaskIdx != -1);
482   assert(TFEIdx != -1);
483 
484   const AMDGPU::MIMGInfo *Info = AMDGPU::getMIMGInfo(MI.getOpcode());
485   bool IsAtomic = (VDstIdx != -1);
486   bool IsGather4 = MCII->get(MI.getOpcode()).TSFlags & SIInstrFlags::Gather4;
487 
488   bool IsNSA = false;
489   unsigned AddrSize = Info->VAddrDwords;
490 
491   if (STI.getFeatureBits()[AMDGPU::FeatureGFX10]) {
492     unsigned DimIdx =
493         AMDGPU::getNamedOperandIdx(MI.getOpcode(), AMDGPU::OpName::dim);
494     const AMDGPU::MIMGBaseOpcodeInfo *BaseOpcode =
495         AMDGPU::getMIMGBaseOpcodeInfo(Info->BaseOpcode);
496     const AMDGPU::MIMGDimInfo *Dim =
497         AMDGPU::getMIMGDimInfoByEncoding(MI.getOperand(DimIdx).getImm());
498 
499     AddrSize = BaseOpcode->NumExtraArgs +
500                (BaseOpcode->Gradients ? Dim->NumGradients : 0) +
501                (BaseOpcode->Coordinates ? Dim->NumCoords : 0) +
502                (BaseOpcode->LodOrClampOrMip ? 1 : 0);
503     IsNSA = Info->MIMGEncoding == AMDGPU::MIMGEncGfx10NSA;
504     if (!IsNSA) {
505       if (AddrSize > 8)
506         AddrSize = 16;
507       else if (AddrSize > 4)
508         AddrSize = 8;
509     } else {
510       if (AddrSize > Info->VAddrDwords) {
511         // The NSA encoding does not contain enough operands for the combination
512         // of base opcode / dimension. Should this be an error?
513         return MCDisassembler::Success;
514       }
515     }
516   }
517 
518   unsigned DMask = MI.getOperand(DMaskIdx).getImm() & 0xf;
519   unsigned DstSize = IsGather4 ? 4 : std::max(countPopulation(DMask), 1u);
520 
521   bool D16 = D16Idx >= 0 && MI.getOperand(D16Idx).getImm();
522   if (D16 && AMDGPU::hasPackedD16(STI)) {
523     DstSize = (DstSize + 1) / 2;
524   }
525 
526   // FIXME: Add tfe support
527   if (MI.getOperand(TFEIdx).getImm())
528     return MCDisassembler::Success;
529 
530   if (DstSize == Info->VDataDwords && AddrSize == Info->VAddrDwords)
531     return MCDisassembler::Success;
532 
533   int NewOpcode =
534       AMDGPU::getMIMGOpcode(Info->BaseOpcode, Info->MIMGEncoding, DstSize, AddrSize);
535   if (NewOpcode == -1)
536     return MCDisassembler::Success;
537 
538   // Widen the register to the correct number of enabled channels.
539   unsigned NewVdata = AMDGPU::NoRegister;
540   if (DstSize != Info->VDataDwords) {
541     auto DataRCID = MCII->get(NewOpcode).OpInfo[VDataIdx].RegClass;
542 
543     // Get first subregister of VData
544     unsigned Vdata0 = MI.getOperand(VDataIdx).getReg();
545     unsigned VdataSub0 = MRI.getSubReg(Vdata0, AMDGPU::sub0);
546     Vdata0 = (VdataSub0 != 0)? VdataSub0 : Vdata0;
547 
548     NewVdata = MRI.getMatchingSuperReg(Vdata0, AMDGPU::sub0,
549                                        &MRI.getRegClass(DataRCID));
550     if (NewVdata == AMDGPU::NoRegister) {
551       // It's possible to encode this such that the low register + enabled
552       // components exceeds the register count.
553       return MCDisassembler::Success;
554     }
555   }
556 
557   unsigned NewVAddr0 = AMDGPU::NoRegister;
558   if (STI.getFeatureBits()[AMDGPU::FeatureGFX10] && !IsNSA &&
559       AddrSize != Info->VAddrDwords) {
560     unsigned VAddr0 = MI.getOperand(VAddr0Idx).getReg();
561     unsigned VAddrSub0 = MRI.getSubReg(VAddr0, AMDGPU::sub0);
562     VAddr0 = (VAddrSub0 != 0) ? VAddrSub0 : VAddr0;
563 
564     auto AddrRCID = MCII->get(NewOpcode).OpInfo[VAddr0Idx].RegClass;
565     NewVAddr0 = MRI.getMatchingSuperReg(VAddr0, AMDGPU::sub0,
566                                         &MRI.getRegClass(AddrRCID));
567     if (NewVAddr0 == AMDGPU::NoRegister)
568       return MCDisassembler::Success;
569   }
570 
571   MI.setOpcode(NewOpcode);
572 
573   if (NewVdata != AMDGPU::NoRegister) {
574     MI.getOperand(VDataIdx) = MCOperand::createReg(NewVdata);
575 
576     if (IsAtomic) {
577       // Atomic operations have an additional operand (a copy of data)
578       MI.getOperand(VDstIdx) = MCOperand::createReg(NewVdata);
579     }
580   }
581 
582   if (NewVAddr0 != AMDGPU::NoRegister) {
583     MI.getOperand(VAddr0Idx) = MCOperand::createReg(NewVAddr0);
584   } else if (IsNSA) {
585     assert(AddrSize <= Info->VAddrDwords);
586     MI.erase(MI.begin() + VAddr0Idx + AddrSize,
587              MI.begin() + VAddr0Idx + Info->VAddrDwords);
588   }
589 
590   return MCDisassembler::Success;
591 }
592 
593 const char* AMDGPUDisassembler::getRegClassName(unsigned RegClassID) const {
594   return getContext().getRegisterInfo()->
595     getRegClassName(&AMDGPUMCRegisterClasses[RegClassID]);
596 }
597 
598 inline
599 MCOperand AMDGPUDisassembler::errOperand(unsigned V,
600                                          const Twine& ErrMsg) const {
601   *CommentStream << "Error: " + ErrMsg;
602 
603   // ToDo: add support for error operands to MCInst.h
604   // return MCOperand::createError(V);
605   return MCOperand();
606 }
607 
608 inline
609 MCOperand AMDGPUDisassembler::createRegOperand(unsigned int RegId) const {
610   return MCOperand::createReg(AMDGPU::getMCReg(RegId, STI));
611 }
612 
613 inline
614 MCOperand AMDGPUDisassembler::createRegOperand(unsigned RegClassID,
615                                                unsigned Val) const {
616   const auto& RegCl = AMDGPUMCRegisterClasses[RegClassID];
617   if (Val >= RegCl.getNumRegs())
618     return errOperand(Val, Twine(getRegClassName(RegClassID)) +
619                            ": unknown register " + Twine(Val));
620   return createRegOperand(RegCl.getRegister(Val));
621 }
622 
623 inline
624 MCOperand AMDGPUDisassembler::createSRegOperand(unsigned SRegClassID,
625                                                 unsigned Val) const {
626   // ToDo: SI/CI have 104 SGPRs, VI - 102
627   // Valery: here we accepting as much as we can, let assembler sort it out
628   int shift = 0;
629   switch (SRegClassID) {
630   case AMDGPU::SGPR_32RegClassID:
631   case AMDGPU::TTMP_32RegClassID:
632     break;
633   case AMDGPU::SGPR_64RegClassID:
634   case AMDGPU::TTMP_64RegClassID:
635     shift = 1;
636     break;
637   case AMDGPU::SGPR_128RegClassID:
638   case AMDGPU::TTMP_128RegClassID:
639   // ToDo: unclear if s[100:104] is available on VI. Can we use VCC as SGPR in
640   // this bundle?
641   case AMDGPU::SGPR_256RegClassID:
642   case AMDGPU::TTMP_256RegClassID:
643     // ToDo: unclear if s[96:104] is available on VI. Can we use VCC as SGPR in
644   // this bundle?
645   case AMDGPU::SGPR_512RegClassID:
646   case AMDGPU::TTMP_512RegClassID:
647     shift = 2;
648     break;
649   // ToDo: unclear if s[88:104] is available on VI. Can we use VCC as SGPR in
650   // this bundle?
651   default:
652     llvm_unreachable("unhandled register class");
653   }
654 
655   if (Val % (1 << shift)) {
656     *CommentStream << "Warning: " << getRegClassName(SRegClassID)
657                    << ": scalar reg isn't aligned " << Val;
658   }
659 
660   return createRegOperand(SRegClassID, Val >> shift);
661 }
662 
663 MCOperand AMDGPUDisassembler::decodeOperand_VS_32(unsigned Val) const {
664   return decodeSrcOp(OPW32, Val);
665 }
666 
667 MCOperand AMDGPUDisassembler::decodeOperand_VS_64(unsigned Val) const {
668   return decodeSrcOp(OPW64, Val);
669 }
670 
671 MCOperand AMDGPUDisassembler::decodeOperand_VS_128(unsigned Val) const {
672   return decodeSrcOp(OPW128, Val);
673 }
674 
675 MCOperand AMDGPUDisassembler::decodeOperand_VSrc16(unsigned Val) const {
676   return decodeSrcOp(OPW16, Val);
677 }
678 
679 MCOperand AMDGPUDisassembler::decodeOperand_VSrcV216(unsigned Val) const {
680   return decodeSrcOp(OPWV216, Val);
681 }
682 
683 MCOperand AMDGPUDisassembler::decodeOperand_VGPR_32(unsigned Val) const {
684   // Some instructions have operand restrictions beyond what the encoding
685   // allows. Some ordinarily VSrc_32 operands are VGPR_32, so clear the extra
686   // high bit.
687   Val &= 255;
688 
689   return createRegOperand(AMDGPU::VGPR_32RegClassID, Val);
690 }
691 
692 MCOperand AMDGPUDisassembler::decodeOperand_VRegOrLds_32(unsigned Val) const {
693   return decodeSrcOp(OPW32, Val);
694 }
695 
696 MCOperand AMDGPUDisassembler::decodeOperand_AGPR_32(unsigned Val) const {
697   return createRegOperand(AMDGPU::AGPR_32RegClassID, Val & 255);
698 }
699 
700 MCOperand AMDGPUDisassembler::decodeOperand_AReg_128(unsigned Val) const {
701   return createRegOperand(AMDGPU::AReg_128RegClassID, Val & 255);
702 }
703 
704 MCOperand AMDGPUDisassembler::decodeOperand_AReg_512(unsigned Val) const {
705   return createRegOperand(AMDGPU::AReg_512RegClassID, Val & 255);
706 }
707 
708 MCOperand AMDGPUDisassembler::decodeOperand_AReg_1024(unsigned Val) const {
709   return createRegOperand(AMDGPU::AReg_1024RegClassID, Val & 255);
710 }
711 
712 MCOperand AMDGPUDisassembler::decodeOperand_AV_32(unsigned Val) const {
713   return decodeSrcOp(OPW32, Val);
714 }
715 
716 MCOperand AMDGPUDisassembler::decodeOperand_AV_64(unsigned Val) const {
717   return decodeSrcOp(OPW64, Val);
718 }
719 
720 MCOperand AMDGPUDisassembler::decodeOperand_VReg_64(unsigned Val) const {
721   return createRegOperand(AMDGPU::VReg_64RegClassID, Val);
722 }
723 
724 MCOperand AMDGPUDisassembler::decodeOperand_VReg_96(unsigned Val) const {
725   return createRegOperand(AMDGPU::VReg_96RegClassID, Val);
726 }
727 
728 MCOperand AMDGPUDisassembler::decodeOperand_VReg_128(unsigned Val) const {
729   return createRegOperand(AMDGPU::VReg_128RegClassID, Val);
730 }
731 
732 MCOperand AMDGPUDisassembler::decodeOperand_VReg_256(unsigned Val) const {
733   return createRegOperand(AMDGPU::VReg_256RegClassID, Val);
734 }
735 
736 MCOperand AMDGPUDisassembler::decodeOperand_VReg_512(unsigned Val) const {
737   return createRegOperand(AMDGPU::VReg_512RegClassID, Val);
738 }
739 
740 MCOperand AMDGPUDisassembler::decodeOperand_SReg_32(unsigned Val) const {
741   // table-gen generated disassembler doesn't care about operand types
742   // leaving only registry class so SSrc_32 operand turns into SReg_32
743   // and therefore we accept immediates and literals here as well
744   return decodeSrcOp(OPW32, Val);
745 }
746 
747 MCOperand AMDGPUDisassembler::decodeOperand_SReg_32_XM0_XEXEC(
748   unsigned Val) const {
749   // SReg_32_XM0 is SReg_32 without M0 or EXEC_LO/EXEC_HI
750   return decodeOperand_SReg_32(Val);
751 }
752 
753 MCOperand AMDGPUDisassembler::decodeOperand_SReg_32_XEXEC_HI(
754   unsigned Val) const {
755   // SReg_32_XM0 is SReg_32 without EXEC_HI
756   return decodeOperand_SReg_32(Val);
757 }
758 
759 MCOperand AMDGPUDisassembler::decodeOperand_SRegOrLds_32(unsigned Val) const {
760   // table-gen generated disassembler doesn't care about operand types
761   // leaving only registry class so SSrc_32 operand turns into SReg_32
762   // and therefore we accept immediates and literals here as well
763   return decodeSrcOp(OPW32, Val);
764 }
765 
766 MCOperand AMDGPUDisassembler::decodeOperand_SReg_64(unsigned Val) const {
767   return decodeSrcOp(OPW64, Val);
768 }
769 
770 MCOperand AMDGPUDisassembler::decodeOperand_SReg_64_XEXEC(unsigned Val) const {
771   return decodeSrcOp(OPW64, Val);
772 }
773 
774 MCOperand AMDGPUDisassembler::decodeOperand_SReg_128(unsigned Val) const {
775   return decodeSrcOp(OPW128, Val);
776 }
777 
778 MCOperand AMDGPUDisassembler::decodeOperand_SReg_256(unsigned Val) const {
779   return decodeDstOp(OPW256, Val);
780 }
781 
782 MCOperand AMDGPUDisassembler::decodeOperand_SReg_512(unsigned Val) const {
783   return decodeDstOp(OPW512, Val);
784 }
785 
786 MCOperand AMDGPUDisassembler::decodeLiteralConstant() const {
787   // For now all literal constants are supposed to be unsigned integer
788   // ToDo: deal with signed/unsigned 64-bit integer constants
789   // ToDo: deal with float/double constants
790   if (!HasLiteral) {
791     if (Bytes.size() < 4) {
792       return errOperand(0, "cannot read literal, inst bytes left " +
793                         Twine(Bytes.size()));
794     }
795     HasLiteral = true;
796     Literal = eatBytes<uint32_t>(Bytes);
797   }
798   return MCOperand::createImm(Literal);
799 }
800 
801 MCOperand AMDGPUDisassembler::decodeIntImmed(unsigned Imm) {
802   using namespace AMDGPU::EncValues;
803 
804   assert(Imm >= INLINE_INTEGER_C_MIN && Imm <= INLINE_INTEGER_C_MAX);
805   return MCOperand::createImm((Imm <= INLINE_INTEGER_C_POSITIVE_MAX) ?
806     (static_cast<int64_t>(Imm) - INLINE_INTEGER_C_MIN) :
807     (INLINE_INTEGER_C_POSITIVE_MAX - static_cast<int64_t>(Imm)));
808       // Cast prevents negative overflow.
809 }
810 
811 static int64_t getInlineImmVal32(unsigned Imm) {
812   switch (Imm) {
813   case 240:
814     return FloatToBits(0.5f);
815   case 241:
816     return FloatToBits(-0.5f);
817   case 242:
818     return FloatToBits(1.0f);
819   case 243:
820     return FloatToBits(-1.0f);
821   case 244:
822     return FloatToBits(2.0f);
823   case 245:
824     return FloatToBits(-2.0f);
825   case 246:
826     return FloatToBits(4.0f);
827   case 247:
828     return FloatToBits(-4.0f);
829   case 248: // 1 / (2 * PI)
830     return 0x3e22f983;
831   default:
832     llvm_unreachable("invalid fp inline imm");
833   }
834 }
835 
836 static int64_t getInlineImmVal64(unsigned Imm) {
837   switch (Imm) {
838   case 240:
839     return DoubleToBits(0.5);
840   case 241:
841     return DoubleToBits(-0.5);
842   case 242:
843     return DoubleToBits(1.0);
844   case 243:
845     return DoubleToBits(-1.0);
846   case 244:
847     return DoubleToBits(2.0);
848   case 245:
849     return DoubleToBits(-2.0);
850   case 246:
851     return DoubleToBits(4.0);
852   case 247:
853     return DoubleToBits(-4.0);
854   case 248: // 1 / (2 * PI)
855     return 0x3fc45f306dc9c882;
856   default:
857     llvm_unreachable("invalid fp inline imm");
858   }
859 }
860 
861 static int64_t getInlineImmVal16(unsigned Imm) {
862   switch (Imm) {
863   case 240:
864     return 0x3800;
865   case 241:
866     return 0xB800;
867   case 242:
868     return 0x3C00;
869   case 243:
870     return 0xBC00;
871   case 244:
872     return 0x4000;
873   case 245:
874     return 0xC000;
875   case 246:
876     return 0x4400;
877   case 247:
878     return 0xC400;
879   case 248: // 1 / (2 * PI)
880     return 0x3118;
881   default:
882     llvm_unreachable("invalid fp inline imm");
883   }
884 }
885 
886 MCOperand AMDGPUDisassembler::decodeFPImmed(OpWidthTy Width, unsigned Imm) {
887   assert(Imm >= AMDGPU::EncValues::INLINE_FLOATING_C_MIN
888       && Imm <= AMDGPU::EncValues::INLINE_FLOATING_C_MAX);
889 
890   // ToDo: case 248: 1/(2*PI) - is allowed only on VI
891   switch (Width) {
892   case OPW32:
893   case OPW128: // splat constants
894   case OPW512:
895   case OPW1024:
896     return MCOperand::createImm(getInlineImmVal32(Imm));
897   case OPW64:
898     return MCOperand::createImm(getInlineImmVal64(Imm));
899   case OPW16:
900   case OPWV216:
901     return MCOperand::createImm(getInlineImmVal16(Imm));
902   default:
903     llvm_unreachable("implement me");
904   }
905 }
906 
907 unsigned AMDGPUDisassembler::getVgprClassId(const OpWidthTy Width) const {
908   using namespace AMDGPU;
909 
910   assert(OPW_FIRST_ <= Width && Width < OPW_LAST_);
911   switch (Width) {
912   default: // fall
913   case OPW32:
914   case OPW16:
915   case OPWV216:
916     return VGPR_32RegClassID;
917   case OPW64: return VReg_64RegClassID;
918   case OPW128: return VReg_128RegClassID;
919   }
920 }
921 
922 unsigned AMDGPUDisassembler::getAgprClassId(const OpWidthTy Width) const {
923   using namespace AMDGPU;
924 
925   assert(OPW_FIRST_ <= Width && Width < OPW_LAST_);
926   switch (Width) {
927   default: // fall
928   case OPW32:
929   case OPW16:
930   case OPWV216:
931     return AGPR_32RegClassID;
932   case OPW64: return AReg_64RegClassID;
933   case OPW128: return AReg_128RegClassID;
934   case OPW512: return AReg_512RegClassID;
935   case OPW1024: return AReg_1024RegClassID;
936   }
937 }
938 
939 
940 unsigned AMDGPUDisassembler::getSgprClassId(const OpWidthTy Width) const {
941   using namespace AMDGPU;
942 
943   assert(OPW_FIRST_ <= Width && Width < OPW_LAST_);
944   switch (Width) {
945   default: // fall
946   case OPW32:
947   case OPW16:
948   case OPWV216:
949     return SGPR_32RegClassID;
950   case OPW64: return SGPR_64RegClassID;
951   case OPW128: return SGPR_128RegClassID;
952   case OPW256: return SGPR_256RegClassID;
953   case OPW512: return SGPR_512RegClassID;
954   }
955 }
956 
957 unsigned AMDGPUDisassembler::getTtmpClassId(const OpWidthTy Width) const {
958   using namespace AMDGPU;
959 
960   assert(OPW_FIRST_ <= Width && Width < OPW_LAST_);
961   switch (Width) {
962   default: // fall
963   case OPW32:
964   case OPW16:
965   case OPWV216:
966     return TTMP_32RegClassID;
967   case OPW64: return TTMP_64RegClassID;
968   case OPW128: return TTMP_128RegClassID;
969   case OPW256: return TTMP_256RegClassID;
970   case OPW512: return TTMP_512RegClassID;
971   }
972 }
973 
974 int AMDGPUDisassembler::getTTmpIdx(unsigned Val) const {
975   using namespace AMDGPU::EncValues;
976 
977   unsigned TTmpMin =
978       (isGFX9() || isGFX10()) ? TTMP_GFX9_GFX10_MIN : TTMP_VI_MIN;
979   unsigned TTmpMax =
980       (isGFX9() || isGFX10()) ? TTMP_GFX9_GFX10_MAX : TTMP_VI_MAX;
981 
982   return (TTmpMin <= Val && Val <= TTmpMax)? Val - TTmpMin : -1;
983 }
984 
985 MCOperand AMDGPUDisassembler::decodeSrcOp(const OpWidthTy Width, unsigned Val) const {
986   using namespace AMDGPU::EncValues;
987 
988   assert(Val < 1024); // enum10
989 
990   bool IsAGPR = Val & 512;
991   Val &= 511;
992 
993   if (VGPR_MIN <= Val && Val <= VGPR_MAX) {
994     return createRegOperand(IsAGPR ? getAgprClassId(Width)
995                                    : getVgprClassId(Width), Val - VGPR_MIN);
996   }
997   if (Val <= SGPR_MAX) {
998     assert(SGPR_MIN == 0); // "SGPR_MIN <= Val" is always true and causes compilation warning.
999     return createSRegOperand(getSgprClassId(Width), Val - SGPR_MIN);
1000   }
1001 
1002   int TTmpIdx = getTTmpIdx(Val);
1003   if (TTmpIdx >= 0) {
1004     return createSRegOperand(getTtmpClassId(Width), TTmpIdx);
1005   }
1006 
1007   if (INLINE_INTEGER_C_MIN <= Val && Val <= INLINE_INTEGER_C_MAX)
1008     return decodeIntImmed(Val);
1009 
1010   if (INLINE_FLOATING_C_MIN <= Val && Val <= INLINE_FLOATING_C_MAX)
1011     return decodeFPImmed(Width, Val);
1012 
1013   if (Val == LITERAL_CONST)
1014     return decodeLiteralConstant();
1015 
1016   switch (Width) {
1017   case OPW32:
1018   case OPW16:
1019   case OPWV216:
1020     return decodeSpecialReg32(Val);
1021   case OPW64:
1022     return decodeSpecialReg64(Val);
1023   default:
1024     llvm_unreachable("unexpected immediate type");
1025   }
1026 }
1027 
1028 MCOperand AMDGPUDisassembler::decodeDstOp(const OpWidthTy Width, unsigned Val) const {
1029   using namespace AMDGPU::EncValues;
1030 
1031   assert(Val < 128);
1032   assert(Width == OPW256 || Width == OPW512);
1033 
1034   if (Val <= SGPR_MAX) {
1035     assert(SGPR_MIN == 0); // "SGPR_MIN <= Val" is always true and causes compilation warning.
1036     return createSRegOperand(getSgprClassId(Width), Val - SGPR_MIN);
1037   }
1038 
1039   int TTmpIdx = getTTmpIdx(Val);
1040   if (TTmpIdx >= 0) {
1041     return createSRegOperand(getTtmpClassId(Width), TTmpIdx);
1042   }
1043 
1044   llvm_unreachable("unknown dst register");
1045 }
1046 
1047 MCOperand AMDGPUDisassembler::decodeSpecialReg32(unsigned Val) const {
1048   using namespace AMDGPU;
1049 
1050   switch (Val) {
1051   case 102: return createRegOperand(FLAT_SCR_LO);
1052   case 103: return createRegOperand(FLAT_SCR_HI);
1053   case 104: return createRegOperand(XNACK_MASK_LO);
1054   case 105: return createRegOperand(XNACK_MASK_HI);
1055   case 106: return createRegOperand(VCC_LO);
1056   case 107: return createRegOperand(VCC_HI);
1057   case 108: return createRegOperand(TBA_LO);
1058   case 109: return createRegOperand(TBA_HI);
1059   case 110: return createRegOperand(TMA_LO);
1060   case 111: return createRegOperand(TMA_HI);
1061   case 124: return createRegOperand(M0);
1062   case 125: return createRegOperand(SGPR_NULL);
1063   case 126: return createRegOperand(EXEC_LO);
1064   case 127: return createRegOperand(EXEC_HI);
1065   case 235: return createRegOperand(SRC_SHARED_BASE);
1066   case 236: return createRegOperand(SRC_SHARED_LIMIT);
1067   case 237: return createRegOperand(SRC_PRIVATE_BASE);
1068   case 238: return createRegOperand(SRC_PRIVATE_LIMIT);
1069   case 239: return createRegOperand(SRC_POPS_EXITING_WAVE_ID);
1070   case 251: return createRegOperand(SRC_VCCZ);
1071   case 252: return createRegOperand(SRC_EXECZ);
1072   case 253: return createRegOperand(SRC_SCC);
1073   case 254: return createRegOperand(LDS_DIRECT);
1074   default: break;
1075   }
1076   return errOperand(Val, "unknown operand encoding " + Twine(Val));
1077 }
1078 
1079 MCOperand AMDGPUDisassembler::decodeSpecialReg64(unsigned Val) const {
1080   using namespace AMDGPU;
1081 
1082   switch (Val) {
1083   case 102: return createRegOperand(FLAT_SCR);
1084   case 104: return createRegOperand(XNACK_MASK);
1085   case 106: return createRegOperand(VCC);
1086   case 108: return createRegOperand(TBA);
1087   case 110: return createRegOperand(TMA);
1088   case 125: return createRegOperand(SGPR_NULL);
1089   case 126: return createRegOperand(EXEC);
1090   case 235: return createRegOperand(SRC_SHARED_BASE);
1091   case 236: return createRegOperand(SRC_SHARED_LIMIT);
1092   case 237: return createRegOperand(SRC_PRIVATE_BASE);
1093   case 238: return createRegOperand(SRC_PRIVATE_LIMIT);
1094   case 239: return createRegOperand(SRC_POPS_EXITING_WAVE_ID);
1095   case 251: return createRegOperand(SRC_VCCZ);
1096   case 252: return createRegOperand(SRC_EXECZ);
1097   case 253: return createRegOperand(SRC_SCC);
1098   default: break;
1099   }
1100   return errOperand(Val, "unknown operand encoding " + Twine(Val));
1101 }
1102 
1103 MCOperand AMDGPUDisassembler::decodeSDWASrc(const OpWidthTy Width,
1104                                             const unsigned Val) const {
1105   using namespace AMDGPU::SDWA;
1106   using namespace AMDGPU::EncValues;
1107 
1108   if (STI.getFeatureBits()[AMDGPU::FeatureGFX9] ||
1109       STI.getFeatureBits()[AMDGPU::FeatureGFX10]) {
1110     // XXX: cast to int is needed to avoid stupid warning:
1111     // compare with unsigned is always true
1112     if (int(SDWA9EncValues::SRC_VGPR_MIN) <= int(Val) &&
1113         Val <= SDWA9EncValues::SRC_VGPR_MAX) {
1114       return createRegOperand(getVgprClassId(Width),
1115                               Val - SDWA9EncValues::SRC_VGPR_MIN);
1116     }
1117     if (SDWA9EncValues::SRC_SGPR_MIN <= Val &&
1118         Val <= (isGFX10() ? SDWA9EncValues::SRC_SGPR_MAX_GFX10
1119                           : SDWA9EncValues::SRC_SGPR_MAX_SI)) {
1120       return createSRegOperand(getSgprClassId(Width),
1121                                Val - SDWA9EncValues::SRC_SGPR_MIN);
1122     }
1123     if (SDWA9EncValues::SRC_TTMP_MIN <= Val &&
1124         Val <= SDWA9EncValues::SRC_TTMP_MAX) {
1125       return createSRegOperand(getTtmpClassId(Width),
1126                                Val - SDWA9EncValues::SRC_TTMP_MIN);
1127     }
1128 
1129     const unsigned SVal = Val - SDWA9EncValues::SRC_SGPR_MIN;
1130 
1131     if (INLINE_INTEGER_C_MIN <= SVal && SVal <= INLINE_INTEGER_C_MAX)
1132       return decodeIntImmed(SVal);
1133 
1134     if (INLINE_FLOATING_C_MIN <= SVal && SVal <= INLINE_FLOATING_C_MAX)
1135       return decodeFPImmed(Width, SVal);
1136 
1137     return decodeSpecialReg32(SVal);
1138   } else if (STI.getFeatureBits()[AMDGPU::FeatureVolcanicIslands]) {
1139     return createRegOperand(getVgprClassId(Width), Val);
1140   }
1141   llvm_unreachable("unsupported target");
1142 }
1143 
1144 MCOperand AMDGPUDisassembler::decodeSDWASrc16(unsigned Val) const {
1145   return decodeSDWASrc(OPW16, Val);
1146 }
1147 
1148 MCOperand AMDGPUDisassembler::decodeSDWASrc32(unsigned Val) const {
1149   return decodeSDWASrc(OPW32, Val);
1150 }
1151 
1152 MCOperand AMDGPUDisassembler::decodeSDWAVopcDst(unsigned Val) const {
1153   using namespace AMDGPU::SDWA;
1154 
1155   assert((STI.getFeatureBits()[AMDGPU::FeatureGFX9] ||
1156           STI.getFeatureBits()[AMDGPU::FeatureGFX10]) &&
1157          "SDWAVopcDst should be present only on GFX9+");
1158 
1159   bool IsWave64 = STI.getFeatureBits()[AMDGPU::FeatureWavefrontSize64];
1160 
1161   if (Val & SDWA9EncValues::VOPC_DST_VCC_MASK) {
1162     Val &= SDWA9EncValues::VOPC_DST_SGPR_MASK;
1163 
1164     int TTmpIdx = getTTmpIdx(Val);
1165     if (TTmpIdx >= 0) {
1166       auto TTmpClsId = getTtmpClassId(IsWave64 ? OPW64 : OPW32);
1167       return createSRegOperand(TTmpClsId, TTmpIdx);
1168     } else if (Val > SGPR_MAX) {
1169       return IsWave64 ? decodeSpecialReg64(Val)
1170                       : decodeSpecialReg32(Val);
1171     } else {
1172       return createSRegOperand(getSgprClassId(IsWave64 ? OPW64 : OPW32), Val);
1173     }
1174   } else {
1175     return createRegOperand(IsWave64 ? AMDGPU::VCC : AMDGPU::VCC_LO);
1176   }
1177 }
1178 
1179 MCOperand AMDGPUDisassembler::decodeBoolReg(unsigned Val) const {
1180   return STI.getFeatureBits()[AMDGPU::FeatureWavefrontSize64] ?
1181     decodeOperand_SReg_64(Val) : decodeOperand_SReg_32(Val);
1182 }
1183 
1184 bool AMDGPUDisassembler::isVI() const {
1185   return STI.getFeatureBits()[AMDGPU::FeatureVolcanicIslands];
1186 }
1187 
1188 bool AMDGPUDisassembler::isGFX9() const {
1189   return STI.getFeatureBits()[AMDGPU::FeatureGFX9];
1190 }
1191 
1192 bool AMDGPUDisassembler::isGFX10() const {
1193   return STI.getFeatureBits()[AMDGPU::FeatureGFX10];
1194 }
1195 
1196 //===----------------------------------------------------------------------===//
1197 // AMDGPUSymbolizer
1198 //===----------------------------------------------------------------------===//
1199 
1200 // Try to find symbol name for specified label
1201 bool AMDGPUSymbolizer::tryAddingSymbolicOperand(MCInst &Inst,
1202                                 raw_ostream &/*cStream*/, int64_t Value,
1203                                 uint64_t /*Address*/, bool IsBranch,
1204                                 uint64_t /*Offset*/, uint64_t /*InstSize*/) {
1205   using SymbolInfoTy = std::tuple<uint64_t, StringRef, uint8_t>;
1206   using SectionSymbolsTy = std::vector<SymbolInfoTy>;
1207 
1208   if (!IsBranch) {
1209     return false;
1210   }
1211 
1212   auto *Symbols = static_cast<SectionSymbolsTy *>(DisInfo);
1213   if (!Symbols)
1214     return false;
1215 
1216   auto Result = std::find_if(Symbols->begin(), Symbols->end(),
1217                              [Value](const SymbolInfoTy& Val) {
1218                                 return std::get<0>(Val) == static_cast<uint64_t>(Value)
1219                                     && std::get<2>(Val) == ELF::STT_NOTYPE;
1220                              });
1221   if (Result != Symbols->end()) {
1222     auto *Sym = Ctx.getOrCreateSymbol(std::get<1>(*Result));
1223     const auto *Add = MCSymbolRefExpr::create(Sym, Ctx);
1224     Inst.addOperand(MCOperand::createExpr(Add));
1225     return true;
1226   }
1227   return false;
1228 }
1229 
1230 void AMDGPUSymbolizer::tryAddingPcLoadReferenceComment(raw_ostream &cStream,
1231                                                        int64_t Value,
1232                                                        uint64_t Address) {
1233   llvm_unreachable("unimplemented");
1234 }
1235 
1236 //===----------------------------------------------------------------------===//
1237 // Initialization
1238 //===----------------------------------------------------------------------===//
1239 
1240 static MCSymbolizer *createAMDGPUSymbolizer(const Triple &/*TT*/,
1241                               LLVMOpInfoCallback /*GetOpInfo*/,
1242                               LLVMSymbolLookupCallback /*SymbolLookUp*/,
1243                               void *DisInfo,
1244                               MCContext *Ctx,
1245                               std::unique_ptr<MCRelocationInfo> &&RelInfo) {
1246   return new AMDGPUSymbolizer(*Ctx, std::move(RelInfo), DisInfo);
1247 }
1248 
1249 static MCDisassembler *createAMDGPUDisassembler(const Target &T,
1250                                                 const MCSubtargetInfo &STI,
1251                                                 MCContext &Ctx) {
1252   return new AMDGPUDisassembler(STI, Ctx, T.createMCInstrInfo());
1253 }
1254 
1255 extern "C" LLVM_EXTERNAL_VISIBILITY void LLVMInitializeAMDGPUDisassembler() {
1256   TargetRegistry::RegisterMCDisassembler(getTheGCNTarget(),
1257                                          createAMDGPUDisassembler);
1258   TargetRegistry::RegisterMCSymbolizer(getTheGCNTarget(),
1259                                        createAMDGPUSymbolizer);
1260 }
1261