1 //===- AMDGPUInstructionSelector.cpp ----------------------------*- C++ -*-==// 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 /// \file 9 /// This file implements the targeting of the InstructionSelector class for 10 /// AMDGPU. 11 /// \todo This should be generated by TableGen. 12 //===----------------------------------------------------------------------===// 13 14 #include "AMDGPUInstructionSelector.h" 15 #include "AMDGPU.h" 16 #include "AMDGPUGlobalISelUtils.h" 17 #include "AMDGPUInstrInfo.h" 18 #include "AMDGPURegisterBankInfo.h" 19 #include "AMDGPUTargetMachine.h" 20 #include "SIMachineFunctionInfo.h" 21 #include "llvm/CodeGen/GlobalISel/GISelKnownBits.h" 22 #include "llvm/CodeGen/GlobalISel/InstructionSelectorImpl.h" 23 #include "llvm/CodeGen/GlobalISel/MIPatternMatch.h" 24 #include "llvm/CodeGen/GlobalISel/MachineIRBuilder.h" 25 #include "llvm/IR/DiagnosticInfo.h" 26 27 #define DEBUG_TYPE "amdgpu-isel" 28 29 using namespace llvm; 30 using namespace MIPatternMatch; 31 32 static cl::opt<bool> AllowRiskySelect( 33 "amdgpu-global-isel-risky-select", 34 cl::desc("Allow GlobalISel to select cases that are likely to not work yet"), 35 cl::init(false), 36 cl::ReallyHidden); 37 38 #define GET_GLOBALISEL_IMPL 39 #define AMDGPUSubtarget GCNSubtarget 40 #include "AMDGPUGenGlobalISel.inc" 41 #undef GET_GLOBALISEL_IMPL 42 #undef AMDGPUSubtarget 43 44 AMDGPUInstructionSelector::AMDGPUInstructionSelector( 45 const GCNSubtarget &STI, const AMDGPURegisterBankInfo &RBI, 46 const AMDGPUTargetMachine &TM) 47 : InstructionSelector(), TII(*STI.getInstrInfo()), 48 TRI(*STI.getRegisterInfo()), RBI(RBI), TM(TM), 49 STI(STI), 50 EnableLateStructurizeCFG(AMDGPUTargetMachine::EnableLateStructurizeCFG), 51 #define GET_GLOBALISEL_PREDICATES_INIT 52 #include "AMDGPUGenGlobalISel.inc" 53 #undef GET_GLOBALISEL_PREDICATES_INIT 54 #define GET_GLOBALISEL_TEMPORARIES_INIT 55 #include "AMDGPUGenGlobalISel.inc" 56 #undef GET_GLOBALISEL_TEMPORARIES_INIT 57 { 58 } 59 60 const char *AMDGPUInstructionSelector::getName() { return DEBUG_TYPE; } 61 62 void AMDGPUInstructionSelector::setupMF(MachineFunction &MF, GISelKnownBits *KB, 63 CodeGenCoverage &CoverageInfo, 64 ProfileSummaryInfo *PSI, 65 BlockFrequencyInfo *BFI) { 66 MRI = &MF.getRegInfo(); 67 Subtarget = &MF.getSubtarget<GCNSubtarget>(); 68 InstructionSelector::setupMF(MF, KB, CoverageInfo, PSI, BFI); 69 } 70 71 bool AMDGPUInstructionSelector::isVCC(Register Reg, 72 const MachineRegisterInfo &MRI) const { 73 // The verifier is oblivious to s1 being a valid value for wavesize registers. 74 if (Reg.isPhysical()) 75 return false; 76 77 auto &RegClassOrBank = MRI.getRegClassOrRegBank(Reg); 78 const TargetRegisterClass *RC = 79 RegClassOrBank.dyn_cast<const TargetRegisterClass*>(); 80 if (RC) { 81 const LLT Ty = MRI.getType(Reg); 82 return RC->hasSuperClassEq(TRI.getBoolRC()) && 83 Ty.isValid() && Ty.getSizeInBits() == 1; 84 } 85 86 const RegisterBank *RB = RegClassOrBank.get<const RegisterBank *>(); 87 return RB->getID() == AMDGPU::VCCRegBankID; 88 } 89 90 bool AMDGPUInstructionSelector::constrainCopyLikeIntrin(MachineInstr &MI, 91 unsigned NewOpc) const { 92 MI.setDesc(TII.get(NewOpc)); 93 MI.RemoveOperand(1); // Remove intrinsic ID. 94 MI.addOperand(*MF, MachineOperand::CreateReg(AMDGPU::EXEC, false, true)); 95 96 MachineOperand &Dst = MI.getOperand(0); 97 MachineOperand &Src = MI.getOperand(1); 98 99 // TODO: This should be legalized to s32 if needed 100 if (MRI->getType(Dst.getReg()) == LLT::scalar(1)) 101 return false; 102 103 const TargetRegisterClass *DstRC 104 = TRI.getConstrainedRegClassForOperand(Dst, *MRI); 105 const TargetRegisterClass *SrcRC 106 = TRI.getConstrainedRegClassForOperand(Src, *MRI); 107 if (!DstRC || DstRC != SrcRC) 108 return false; 109 110 return RBI.constrainGenericRegister(Dst.getReg(), *DstRC, *MRI) && 111 RBI.constrainGenericRegister(Src.getReg(), *SrcRC, *MRI); 112 } 113 114 bool AMDGPUInstructionSelector::selectCOPY(MachineInstr &I) const { 115 const DebugLoc &DL = I.getDebugLoc(); 116 MachineBasicBlock *BB = I.getParent(); 117 I.setDesc(TII.get(TargetOpcode::COPY)); 118 119 const MachineOperand &Src = I.getOperand(1); 120 MachineOperand &Dst = I.getOperand(0); 121 Register DstReg = Dst.getReg(); 122 Register SrcReg = Src.getReg(); 123 124 if (isVCC(DstReg, *MRI)) { 125 if (SrcReg == AMDGPU::SCC) { 126 const TargetRegisterClass *RC 127 = TRI.getConstrainedRegClassForOperand(Dst, *MRI); 128 if (!RC) 129 return true; 130 return RBI.constrainGenericRegister(DstReg, *RC, *MRI); 131 } 132 133 if (!isVCC(SrcReg, *MRI)) { 134 // TODO: Should probably leave the copy and let copyPhysReg expand it. 135 if (!RBI.constrainGenericRegister(DstReg, *TRI.getBoolRC(), *MRI)) 136 return false; 137 138 const TargetRegisterClass *SrcRC 139 = TRI.getConstrainedRegClassForOperand(Src, *MRI); 140 141 Optional<ValueAndVReg> ConstVal = 142 getConstantVRegValWithLookThrough(SrcReg, *MRI, true, true); 143 if (ConstVal) { 144 unsigned MovOpc = 145 STI.isWave64() ? AMDGPU::S_MOV_B64 : AMDGPU::S_MOV_B32; 146 BuildMI(*BB, &I, DL, TII.get(MovOpc), DstReg) 147 .addImm(ConstVal->Value.getBoolValue() ? -1 : 0); 148 } else { 149 Register MaskedReg = MRI->createVirtualRegister(SrcRC); 150 151 // We can't trust the high bits at this point, so clear them. 152 153 // TODO: Skip masking high bits if def is known boolean. 154 155 unsigned AndOpc = 156 TRI.isSGPRClass(SrcRC) ? AMDGPU::S_AND_B32 : AMDGPU::V_AND_B32_e32; 157 BuildMI(*BB, &I, DL, TII.get(AndOpc), MaskedReg) 158 .addImm(1) 159 .addReg(SrcReg); 160 BuildMI(*BB, &I, DL, TII.get(AMDGPU::V_CMP_NE_U32_e64), DstReg) 161 .addImm(0) 162 .addReg(MaskedReg); 163 } 164 165 if (!MRI->getRegClassOrNull(SrcReg)) 166 MRI->setRegClass(SrcReg, SrcRC); 167 I.eraseFromParent(); 168 return true; 169 } 170 171 const TargetRegisterClass *RC = 172 TRI.getConstrainedRegClassForOperand(Dst, *MRI); 173 if (RC && !RBI.constrainGenericRegister(DstReg, *RC, *MRI)) 174 return false; 175 176 return true; 177 } 178 179 for (const MachineOperand &MO : I.operands()) { 180 if (MO.getReg().isPhysical()) 181 continue; 182 183 const TargetRegisterClass *RC = 184 TRI.getConstrainedRegClassForOperand(MO, *MRI); 185 if (!RC) 186 continue; 187 RBI.constrainGenericRegister(MO.getReg(), *RC, *MRI); 188 } 189 return true; 190 } 191 192 bool AMDGPUInstructionSelector::selectPHI(MachineInstr &I) const { 193 const Register DefReg = I.getOperand(0).getReg(); 194 const LLT DefTy = MRI->getType(DefReg); 195 if (DefTy == LLT::scalar(1)) { 196 if (!AllowRiskySelect) { 197 LLVM_DEBUG(dbgs() << "Skipping risky boolean phi\n"); 198 return false; 199 } 200 201 LLVM_DEBUG(dbgs() << "Selecting risky boolean phi\n"); 202 } 203 204 // TODO: Verify this doesn't have insane operands (i.e. VGPR to SGPR copy) 205 206 const RegClassOrRegBank &RegClassOrBank = 207 MRI->getRegClassOrRegBank(DefReg); 208 209 const TargetRegisterClass *DefRC 210 = RegClassOrBank.dyn_cast<const TargetRegisterClass *>(); 211 if (!DefRC) { 212 if (!DefTy.isValid()) { 213 LLVM_DEBUG(dbgs() << "PHI operand has no type, not a gvreg?\n"); 214 return false; 215 } 216 217 const RegisterBank &RB = *RegClassOrBank.get<const RegisterBank *>(); 218 DefRC = TRI.getRegClassForTypeOnBank(DefTy, RB, *MRI); 219 if (!DefRC) { 220 LLVM_DEBUG(dbgs() << "PHI operand has unexpected size/bank\n"); 221 return false; 222 } 223 } 224 225 // TODO: Verify that all registers have the same bank 226 I.setDesc(TII.get(TargetOpcode::PHI)); 227 return RBI.constrainGenericRegister(DefReg, *DefRC, *MRI); 228 } 229 230 MachineOperand 231 AMDGPUInstructionSelector::getSubOperand64(MachineOperand &MO, 232 const TargetRegisterClass &SubRC, 233 unsigned SubIdx) const { 234 235 MachineInstr *MI = MO.getParent(); 236 MachineBasicBlock *BB = MO.getParent()->getParent(); 237 Register DstReg = MRI->createVirtualRegister(&SubRC); 238 239 if (MO.isReg()) { 240 unsigned ComposedSubIdx = TRI.composeSubRegIndices(MO.getSubReg(), SubIdx); 241 Register Reg = MO.getReg(); 242 BuildMI(*BB, MI, MI->getDebugLoc(), TII.get(AMDGPU::COPY), DstReg) 243 .addReg(Reg, 0, ComposedSubIdx); 244 245 return MachineOperand::CreateReg(DstReg, MO.isDef(), MO.isImplicit(), 246 MO.isKill(), MO.isDead(), MO.isUndef(), 247 MO.isEarlyClobber(), 0, MO.isDebug(), 248 MO.isInternalRead()); 249 } 250 251 assert(MO.isImm()); 252 253 APInt Imm(64, MO.getImm()); 254 255 switch (SubIdx) { 256 default: 257 llvm_unreachable("do not know to split immediate with this sub index."); 258 case AMDGPU::sub0: 259 return MachineOperand::CreateImm(Imm.getLoBits(32).getSExtValue()); 260 case AMDGPU::sub1: 261 return MachineOperand::CreateImm(Imm.getHiBits(32).getSExtValue()); 262 } 263 } 264 265 static unsigned getLogicalBitOpcode(unsigned Opc, bool Is64) { 266 switch (Opc) { 267 case AMDGPU::G_AND: 268 return Is64 ? AMDGPU::S_AND_B64 : AMDGPU::S_AND_B32; 269 case AMDGPU::G_OR: 270 return Is64 ? AMDGPU::S_OR_B64 : AMDGPU::S_OR_B32; 271 case AMDGPU::G_XOR: 272 return Is64 ? AMDGPU::S_XOR_B64 : AMDGPU::S_XOR_B32; 273 default: 274 llvm_unreachable("not a bit op"); 275 } 276 } 277 278 bool AMDGPUInstructionSelector::selectG_AND_OR_XOR(MachineInstr &I) const { 279 Register DstReg = I.getOperand(0).getReg(); 280 unsigned Size = RBI.getSizeInBits(DstReg, *MRI, TRI); 281 282 const RegisterBank *DstRB = RBI.getRegBank(DstReg, *MRI, TRI); 283 if (DstRB->getID() != AMDGPU::SGPRRegBankID && 284 DstRB->getID() != AMDGPU::VCCRegBankID) 285 return false; 286 287 bool Is64 = Size > 32 || (DstRB->getID() == AMDGPU::VCCRegBankID && 288 STI.isWave64()); 289 I.setDesc(TII.get(getLogicalBitOpcode(I.getOpcode(), Is64))); 290 291 // Dead implicit-def of scc 292 I.addOperand(MachineOperand::CreateReg(AMDGPU::SCC, true, // isDef 293 true, // isImp 294 false, // isKill 295 true)); // isDead 296 return constrainSelectedInstRegOperands(I, TII, TRI, RBI); 297 } 298 299 bool AMDGPUInstructionSelector::selectG_ADD_SUB(MachineInstr &I) const { 300 MachineBasicBlock *BB = I.getParent(); 301 MachineFunction *MF = BB->getParent(); 302 Register DstReg = I.getOperand(0).getReg(); 303 const DebugLoc &DL = I.getDebugLoc(); 304 LLT Ty = MRI->getType(DstReg); 305 if (Ty.isVector()) 306 return false; 307 308 unsigned Size = Ty.getSizeInBits(); 309 const RegisterBank *DstRB = RBI.getRegBank(DstReg, *MRI, TRI); 310 const bool IsSALU = DstRB->getID() == AMDGPU::SGPRRegBankID; 311 const bool Sub = I.getOpcode() == TargetOpcode::G_SUB; 312 313 if (Size == 32) { 314 if (IsSALU) { 315 const unsigned Opc = Sub ? AMDGPU::S_SUB_U32 : AMDGPU::S_ADD_U32; 316 MachineInstr *Add = 317 BuildMI(*BB, &I, DL, TII.get(Opc), DstReg) 318 .add(I.getOperand(1)) 319 .add(I.getOperand(2)); 320 I.eraseFromParent(); 321 return constrainSelectedInstRegOperands(*Add, TII, TRI, RBI); 322 } 323 324 if (STI.hasAddNoCarry()) { 325 const unsigned Opc = Sub ? AMDGPU::V_SUB_U32_e64 : AMDGPU::V_ADD_U32_e64; 326 I.setDesc(TII.get(Opc)); 327 I.addOperand(*MF, MachineOperand::CreateImm(0)); 328 I.addOperand(*MF, MachineOperand::CreateReg(AMDGPU::EXEC, false, true)); 329 return constrainSelectedInstRegOperands(I, TII, TRI, RBI); 330 } 331 332 const unsigned Opc = Sub ? AMDGPU::V_SUB_CO_U32_e64 : AMDGPU::V_ADD_CO_U32_e64; 333 334 Register UnusedCarry = MRI->createVirtualRegister(TRI.getWaveMaskRegClass()); 335 MachineInstr *Add 336 = BuildMI(*BB, &I, DL, TII.get(Opc), DstReg) 337 .addDef(UnusedCarry, RegState::Dead) 338 .add(I.getOperand(1)) 339 .add(I.getOperand(2)) 340 .addImm(0); 341 I.eraseFromParent(); 342 return constrainSelectedInstRegOperands(*Add, TII, TRI, RBI); 343 } 344 345 assert(!Sub && "illegal sub should not reach here"); 346 347 const TargetRegisterClass &RC 348 = IsSALU ? AMDGPU::SReg_64_XEXECRegClass : AMDGPU::VReg_64RegClass; 349 const TargetRegisterClass &HalfRC 350 = IsSALU ? AMDGPU::SReg_32RegClass : AMDGPU::VGPR_32RegClass; 351 352 MachineOperand Lo1(getSubOperand64(I.getOperand(1), HalfRC, AMDGPU::sub0)); 353 MachineOperand Lo2(getSubOperand64(I.getOperand(2), HalfRC, AMDGPU::sub0)); 354 MachineOperand Hi1(getSubOperand64(I.getOperand(1), HalfRC, AMDGPU::sub1)); 355 MachineOperand Hi2(getSubOperand64(I.getOperand(2), HalfRC, AMDGPU::sub1)); 356 357 Register DstLo = MRI->createVirtualRegister(&HalfRC); 358 Register DstHi = MRI->createVirtualRegister(&HalfRC); 359 360 if (IsSALU) { 361 BuildMI(*BB, &I, DL, TII.get(AMDGPU::S_ADD_U32), DstLo) 362 .add(Lo1) 363 .add(Lo2); 364 BuildMI(*BB, &I, DL, TII.get(AMDGPU::S_ADDC_U32), DstHi) 365 .add(Hi1) 366 .add(Hi2); 367 } else { 368 const TargetRegisterClass *CarryRC = TRI.getWaveMaskRegClass(); 369 Register CarryReg = MRI->createVirtualRegister(CarryRC); 370 BuildMI(*BB, &I, DL, TII.get(AMDGPU::V_ADD_CO_U32_e64), DstLo) 371 .addDef(CarryReg) 372 .add(Lo1) 373 .add(Lo2) 374 .addImm(0); 375 MachineInstr *Addc = BuildMI(*BB, &I, DL, TII.get(AMDGPU::V_ADDC_U32_e64), DstHi) 376 .addDef(MRI->createVirtualRegister(CarryRC), RegState::Dead) 377 .add(Hi1) 378 .add(Hi2) 379 .addReg(CarryReg, RegState::Kill) 380 .addImm(0); 381 382 if (!constrainSelectedInstRegOperands(*Addc, TII, TRI, RBI)) 383 return false; 384 } 385 386 BuildMI(*BB, &I, DL, TII.get(AMDGPU::REG_SEQUENCE), DstReg) 387 .addReg(DstLo) 388 .addImm(AMDGPU::sub0) 389 .addReg(DstHi) 390 .addImm(AMDGPU::sub1); 391 392 393 if (!RBI.constrainGenericRegister(DstReg, RC, *MRI)) 394 return false; 395 396 I.eraseFromParent(); 397 return true; 398 } 399 400 bool AMDGPUInstructionSelector::selectG_UADDO_USUBO_UADDE_USUBE( 401 MachineInstr &I) const { 402 MachineBasicBlock *BB = I.getParent(); 403 MachineFunction *MF = BB->getParent(); 404 const DebugLoc &DL = I.getDebugLoc(); 405 Register Dst0Reg = I.getOperand(0).getReg(); 406 Register Dst1Reg = I.getOperand(1).getReg(); 407 const bool IsAdd = I.getOpcode() == AMDGPU::G_UADDO || 408 I.getOpcode() == AMDGPU::G_UADDE; 409 const bool HasCarryIn = I.getOpcode() == AMDGPU::G_UADDE || 410 I.getOpcode() == AMDGPU::G_USUBE; 411 412 if (isVCC(Dst1Reg, *MRI)) { 413 unsigned NoCarryOpc = 414 IsAdd ? AMDGPU::V_ADD_CO_U32_e64 : AMDGPU::V_SUB_CO_U32_e64; 415 unsigned CarryOpc = IsAdd ? AMDGPU::V_ADDC_U32_e64 : AMDGPU::V_SUBB_U32_e64; 416 I.setDesc(TII.get(HasCarryIn ? CarryOpc : NoCarryOpc)); 417 I.addOperand(*MF, MachineOperand::CreateReg(AMDGPU::EXEC, false, true)); 418 I.addOperand(*MF, MachineOperand::CreateImm(0)); 419 return constrainSelectedInstRegOperands(I, TII, TRI, RBI); 420 } 421 422 Register Src0Reg = I.getOperand(2).getReg(); 423 Register Src1Reg = I.getOperand(3).getReg(); 424 425 if (HasCarryIn) { 426 BuildMI(*BB, &I, DL, TII.get(AMDGPU::COPY), AMDGPU::SCC) 427 .addReg(I.getOperand(4).getReg()); 428 } 429 430 unsigned NoCarryOpc = IsAdd ? AMDGPU::S_ADD_U32 : AMDGPU::S_SUB_U32; 431 unsigned CarryOpc = IsAdd ? AMDGPU::S_ADDC_U32 : AMDGPU::S_SUBB_U32; 432 433 BuildMI(*BB, &I, DL, TII.get(HasCarryIn ? CarryOpc : NoCarryOpc), Dst0Reg) 434 .add(I.getOperand(2)) 435 .add(I.getOperand(3)); 436 BuildMI(*BB, &I, DL, TII.get(AMDGPU::COPY), Dst1Reg) 437 .addReg(AMDGPU::SCC); 438 439 if (!MRI->getRegClassOrNull(Dst1Reg)) 440 MRI->setRegClass(Dst1Reg, &AMDGPU::SReg_32RegClass); 441 442 if (!RBI.constrainGenericRegister(Dst0Reg, AMDGPU::SReg_32RegClass, *MRI) || 443 !RBI.constrainGenericRegister(Src0Reg, AMDGPU::SReg_32RegClass, *MRI) || 444 !RBI.constrainGenericRegister(Src1Reg, AMDGPU::SReg_32RegClass, *MRI)) 445 return false; 446 447 if (HasCarryIn && 448 !RBI.constrainGenericRegister(I.getOperand(4).getReg(), 449 AMDGPU::SReg_32RegClass, *MRI)) 450 return false; 451 452 I.eraseFromParent(); 453 return true; 454 } 455 456 // TODO: We should probably legalize these to only using 32-bit results. 457 bool AMDGPUInstructionSelector::selectG_EXTRACT(MachineInstr &I) const { 458 MachineBasicBlock *BB = I.getParent(); 459 Register DstReg = I.getOperand(0).getReg(); 460 Register SrcReg = I.getOperand(1).getReg(); 461 LLT DstTy = MRI->getType(DstReg); 462 LLT SrcTy = MRI->getType(SrcReg); 463 const unsigned SrcSize = SrcTy.getSizeInBits(); 464 unsigned DstSize = DstTy.getSizeInBits(); 465 466 // TODO: Should handle any multiple of 32 offset. 467 unsigned Offset = I.getOperand(2).getImm(); 468 if (Offset % 32 != 0 || DstSize > 128) 469 return false; 470 471 // 16-bit operations really use 32-bit registers. 472 // FIXME: Probably should not allow 16-bit G_EXTRACT results. 473 if (DstSize == 16) 474 DstSize = 32; 475 476 const TargetRegisterClass *DstRC = 477 TRI.getConstrainedRegClassForOperand(I.getOperand(0), *MRI); 478 if (!DstRC || !RBI.constrainGenericRegister(DstReg, *DstRC, *MRI)) 479 return false; 480 481 const RegisterBank *SrcBank = RBI.getRegBank(SrcReg, *MRI, TRI); 482 const TargetRegisterClass *SrcRC = 483 TRI.getRegClassForSizeOnBank(SrcSize, *SrcBank, *MRI); 484 if (!SrcRC) 485 return false; 486 unsigned SubReg = SIRegisterInfo::getSubRegFromChannel(Offset / 32, 487 DstSize / 32); 488 SrcRC = TRI.getSubClassWithSubReg(SrcRC, SubReg); 489 if (!SrcRC) 490 return false; 491 492 SrcReg = constrainOperandRegClass(*MF, TRI, *MRI, TII, RBI, I, 493 *SrcRC, I.getOperand(1)); 494 const DebugLoc &DL = I.getDebugLoc(); 495 BuildMI(*BB, &I, DL, TII.get(TargetOpcode::COPY), DstReg) 496 .addReg(SrcReg, 0, SubReg); 497 498 I.eraseFromParent(); 499 return true; 500 } 501 502 bool AMDGPUInstructionSelector::selectG_MERGE_VALUES(MachineInstr &MI) const { 503 MachineBasicBlock *BB = MI.getParent(); 504 Register DstReg = MI.getOperand(0).getReg(); 505 LLT DstTy = MRI->getType(DstReg); 506 LLT SrcTy = MRI->getType(MI.getOperand(1).getReg()); 507 508 const unsigned SrcSize = SrcTy.getSizeInBits(); 509 if (SrcSize < 32) 510 return selectImpl(MI, *CoverageInfo); 511 512 const DebugLoc &DL = MI.getDebugLoc(); 513 const RegisterBank *DstBank = RBI.getRegBank(DstReg, *MRI, TRI); 514 const unsigned DstSize = DstTy.getSizeInBits(); 515 const TargetRegisterClass *DstRC = 516 TRI.getRegClassForSizeOnBank(DstSize, *DstBank, *MRI); 517 if (!DstRC) 518 return false; 519 520 ArrayRef<int16_t> SubRegs = TRI.getRegSplitParts(DstRC, SrcSize / 8); 521 MachineInstrBuilder MIB = 522 BuildMI(*BB, &MI, DL, TII.get(TargetOpcode::REG_SEQUENCE), DstReg); 523 for (int I = 0, E = MI.getNumOperands() - 1; I != E; ++I) { 524 MachineOperand &Src = MI.getOperand(I + 1); 525 MIB.addReg(Src.getReg(), getUndefRegState(Src.isUndef())); 526 MIB.addImm(SubRegs[I]); 527 528 const TargetRegisterClass *SrcRC 529 = TRI.getConstrainedRegClassForOperand(Src, *MRI); 530 if (SrcRC && !RBI.constrainGenericRegister(Src.getReg(), *SrcRC, *MRI)) 531 return false; 532 } 533 534 if (!RBI.constrainGenericRegister(DstReg, *DstRC, *MRI)) 535 return false; 536 537 MI.eraseFromParent(); 538 return true; 539 } 540 541 bool AMDGPUInstructionSelector::selectG_UNMERGE_VALUES(MachineInstr &MI) const { 542 MachineBasicBlock *BB = MI.getParent(); 543 const int NumDst = MI.getNumOperands() - 1; 544 545 MachineOperand &Src = MI.getOperand(NumDst); 546 547 Register SrcReg = Src.getReg(); 548 Register DstReg0 = MI.getOperand(0).getReg(); 549 LLT DstTy = MRI->getType(DstReg0); 550 LLT SrcTy = MRI->getType(SrcReg); 551 552 const unsigned DstSize = DstTy.getSizeInBits(); 553 const unsigned SrcSize = SrcTy.getSizeInBits(); 554 const DebugLoc &DL = MI.getDebugLoc(); 555 const RegisterBank *SrcBank = RBI.getRegBank(SrcReg, *MRI, TRI); 556 557 const TargetRegisterClass *SrcRC = 558 TRI.getRegClassForSizeOnBank(SrcSize, *SrcBank, *MRI); 559 if (!SrcRC || !RBI.constrainGenericRegister(SrcReg, *SrcRC, *MRI)) 560 return false; 561 562 // Note we could have mixed SGPR and VGPR destination banks for an SGPR 563 // source, and this relies on the fact that the same subregister indices are 564 // used for both. 565 ArrayRef<int16_t> SubRegs = TRI.getRegSplitParts(SrcRC, DstSize / 8); 566 for (int I = 0, E = NumDst; I != E; ++I) { 567 MachineOperand &Dst = MI.getOperand(I); 568 BuildMI(*BB, &MI, DL, TII.get(TargetOpcode::COPY), Dst.getReg()) 569 .addReg(SrcReg, 0, SubRegs[I]); 570 571 // Make sure the subregister index is valid for the source register. 572 SrcRC = TRI.getSubClassWithSubReg(SrcRC, SubRegs[I]); 573 if (!SrcRC || !RBI.constrainGenericRegister(SrcReg, *SrcRC, *MRI)) 574 return false; 575 576 const TargetRegisterClass *DstRC = 577 TRI.getConstrainedRegClassForOperand(Dst, *MRI); 578 if (DstRC && !RBI.constrainGenericRegister(Dst.getReg(), *DstRC, *MRI)) 579 return false; 580 } 581 582 MI.eraseFromParent(); 583 return true; 584 } 585 586 bool AMDGPUInstructionSelector::selectG_BUILD_VECTOR_TRUNC( 587 MachineInstr &MI) const { 588 if (selectImpl(MI, *CoverageInfo)) 589 return true; 590 591 const LLT S32 = LLT::scalar(32); 592 const LLT V2S16 = LLT::vector(2, 16); 593 594 Register Dst = MI.getOperand(0).getReg(); 595 if (MRI->getType(Dst) != V2S16) 596 return false; 597 598 const RegisterBank *DstBank = RBI.getRegBank(Dst, *MRI, TRI); 599 if (DstBank->getID() != AMDGPU::SGPRRegBankID) 600 return false; 601 602 Register Src0 = MI.getOperand(1).getReg(); 603 Register Src1 = MI.getOperand(2).getReg(); 604 if (MRI->getType(Src0) != S32) 605 return false; 606 607 const DebugLoc &DL = MI.getDebugLoc(); 608 MachineBasicBlock *BB = MI.getParent(); 609 610 auto ConstSrc1 = 611 getConstantVRegValWithLookThrough(Src1, *MRI, true, true, true); 612 if (ConstSrc1) { 613 auto ConstSrc0 = 614 getConstantVRegValWithLookThrough(Src0, *MRI, true, true, true); 615 if (ConstSrc0) { 616 const int64_t K0 = ConstSrc0->Value.getSExtValue(); 617 const int64_t K1 = ConstSrc1->Value.getSExtValue(); 618 uint32_t Lo16 = static_cast<uint32_t>(K0) & 0xffff; 619 uint32_t Hi16 = static_cast<uint32_t>(K1) & 0xffff; 620 621 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::S_MOV_B32), Dst) 622 .addImm(Lo16 | (Hi16 << 16)); 623 MI.eraseFromParent(); 624 return RBI.constrainGenericRegister(Dst, AMDGPU::SReg_32RegClass, *MRI); 625 } 626 } 627 628 // TODO: This should probably be a combine somewhere 629 // (build_vector_trunc $src0, undef -> copy $src0 630 MachineInstr *Src1Def = getDefIgnoringCopies(Src1, *MRI); 631 if (Src1Def && Src1Def->getOpcode() == AMDGPU::G_IMPLICIT_DEF) { 632 MI.setDesc(TII.get(AMDGPU::COPY)); 633 MI.RemoveOperand(2); 634 return RBI.constrainGenericRegister(Dst, AMDGPU::SReg_32RegClass, *MRI) && 635 RBI.constrainGenericRegister(Src0, AMDGPU::SReg_32RegClass, *MRI); 636 } 637 638 Register ShiftSrc0; 639 Register ShiftSrc1; 640 641 // With multiple uses of the shift, this will duplicate the shift and 642 // increase register pressure. 643 // 644 // (build_vector_trunc (lshr_oneuse $src0, 16), (lshr_oneuse $src1, 16) 645 // => (S_PACK_HH_B32_B16 $src0, $src1) 646 // (build_vector_trunc $src0, (lshr_oneuse SReg_32:$src1, 16)) 647 // => (S_PACK_LH_B32_B16 $src0, $src1) 648 // (build_vector_trunc $src0, $src1) 649 // => (S_PACK_LL_B32_B16 $src0, $src1) 650 651 bool Shift0 = mi_match( 652 Src0, *MRI, m_OneUse(m_GLShr(m_Reg(ShiftSrc0), m_SpecificICst(16)))); 653 654 bool Shift1 = mi_match( 655 Src1, *MRI, m_OneUse(m_GLShr(m_Reg(ShiftSrc1), m_SpecificICst(16)))); 656 657 unsigned Opc = AMDGPU::S_PACK_LL_B32_B16; 658 if (Shift0 && Shift1) { 659 Opc = AMDGPU::S_PACK_HH_B32_B16; 660 MI.getOperand(1).setReg(ShiftSrc0); 661 MI.getOperand(2).setReg(ShiftSrc1); 662 } else if (Shift1) { 663 Opc = AMDGPU::S_PACK_LH_B32_B16; 664 MI.getOperand(2).setReg(ShiftSrc1); 665 } else if (Shift0 && ConstSrc1 && ConstSrc1->Value == 0) { 666 // build_vector_trunc (lshr $src0, 16), 0 -> s_lshr_b32 $src0, 16 667 auto MIB = BuildMI(*BB, &MI, DL, TII.get(AMDGPU::S_LSHR_B32), Dst) 668 .addReg(ShiftSrc0) 669 .addImm(16); 670 671 MI.eraseFromParent(); 672 return constrainSelectedInstRegOperands(*MIB, TII, TRI, RBI); 673 } 674 675 MI.setDesc(TII.get(Opc)); 676 return constrainSelectedInstRegOperands(MI, TII, TRI, RBI); 677 } 678 679 bool AMDGPUInstructionSelector::selectG_PTR_ADD(MachineInstr &I) const { 680 return selectG_ADD_SUB(I); 681 } 682 683 bool AMDGPUInstructionSelector::selectG_IMPLICIT_DEF(MachineInstr &I) const { 684 const MachineOperand &MO = I.getOperand(0); 685 686 // FIXME: Interface for getConstrainedRegClassForOperand needs work. The 687 // regbank check here is to know why getConstrainedRegClassForOperand failed. 688 const TargetRegisterClass *RC = TRI.getConstrainedRegClassForOperand(MO, *MRI); 689 if ((!RC && !MRI->getRegBankOrNull(MO.getReg())) || 690 (RC && RBI.constrainGenericRegister(MO.getReg(), *RC, *MRI))) { 691 I.setDesc(TII.get(TargetOpcode::IMPLICIT_DEF)); 692 return true; 693 } 694 695 return false; 696 } 697 698 bool AMDGPUInstructionSelector::selectG_INSERT(MachineInstr &I) const { 699 MachineBasicBlock *BB = I.getParent(); 700 701 Register DstReg = I.getOperand(0).getReg(); 702 Register Src0Reg = I.getOperand(1).getReg(); 703 Register Src1Reg = I.getOperand(2).getReg(); 704 LLT Src1Ty = MRI->getType(Src1Reg); 705 706 unsigned DstSize = MRI->getType(DstReg).getSizeInBits(); 707 unsigned InsSize = Src1Ty.getSizeInBits(); 708 709 int64_t Offset = I.getOperand(3).getImm(); 710 711 // FIXME: These cases should have been illegal and unnecessary to check here. 712 if (Offset % 32 != 0 || InsSize % 32 != 0) 713 return false; 714 715 // Currently not handled by getSubRegFromChannel. 716 if (InsSize > 128) 717 return false; 718 719 unsigned SubReg = TRI.getSubRegFromChannel(Offset / 32, InsSize / 32); 720 if (SubReg == AMDGPU::NoSubRegister) 721 return false; 722 723 const RegisterBank *DstBank = RBI.getRegBank(DstReg, *MRI, TRI); 724 const TargetRegisterClass *DstRC = 725 TRI.getRegClassForSizeOnBank(DstSize, *DstBank, *MRI); 726 if (!DstRC) 727 return false; 728 729 const RegisterBank *Src0Bank = RBI.getRegBank(Src0Reg, *MRI, TRI); 730 const RegisterBank *Src1Bank = RBI.getRegBank(Src1Reg, *MRI, TRI); 731 const TargetRegisterClass *Src0RC = 732 TRI.getRegClassForSizeOnBank(DstSize, *Src0Bank, *MRI); 733 const TargetRegisterClass *Src1RC = 734 TRI.getRegClassForSizeOnBank(InsSize, *Src1Bank, *MRI); 735 736 // Deal with weird cases where the class only partially supports the subreg 737 // index. 738 Src0RC = TRI.getSubClassWithSubReg(Src0RC, SubReg); 739 if (!Src0RC || !Src1RC) 740 return false; 741 742 if (!RBI.constrainGenericRegister(DstReg, *DstRC, *MRI) || 743 !RBI.constrainGenericRegister(Src0Reg, *Src0RC, *MRI) || 744 !RBI.constrainGenericRegister(Src1Reg, *Src1RC, *MRI)) 745 return false; 746 747 const DebugLoc &DL = I.getDebugLoc(); 748 BuildMI(*BB, &I, DL, TII.get(TargetOpcode::INSERT_SUBREG), DstReg) 749 .addReg(Src0Reg) 750 .addReg(Src1Reg) 751 .addImm(SubReg); 752 753 I.eraseFromParent(); 754 return true; 755 } 756 757 bool AMDGPUInstructionSelector::selectInterpP1F16(MachineInstr &MI) const { 758 if (STI.getLDSBankCount() != 16) 759 return selectImpl(MI, *CoverageInfo); 760 761 Register Dst = MI.getOperand(0).getReg(); 762 Register Src0 = MI.getOperand(2).getReg(); 763 Register M0Val = MI.getOperand(6).getReg(); 764 if (!RBI.constrainGenericRegister(M0Val, AMDGPU::SReg_32RegClass, *MRI) || 765 !RBI.constrainGenericRegister(Dst, AMDGPU::VGPR_32RegClass, *MRI) || 766 !RBI.constrainGenericRegister(Src0, AMDGPU::VGPR_32RegClass, *MRI)) 767 return false; 768 769 // This requires 2 instructions. It is possible to write a pattern to support 770 // this, but the generated isel emitter doesn't correctly deal with multiple 771 // output instructions using the same physical register input. The copy to m0 772 // is incorrectly placed before the second instruction. 773 // 774 // TODO: Match source modifiers. 775 776 Register InterpMov = MRI->createVirtualRegister(&AMDGPU::VGPR_32RegClass); 777 const DebugLoc &DL = MI.getDebugLoc(); 778 MachineBasicBlock *MBB = MI.getParent(); 779 780 BuildMI(*MBB, &MI, DL, TII.get(AMDGPU::COPY), AMDGPU::M0) 781 .addReg(M0Val); 782 BuildMI(*MBB, &MI, DL, TII.get(AMDGPU::V_INTERP_MOV_F32), InterpMov) 783 .addImm(2) 784 .addImm(MI.getOperand(4).getImm()) // $attr 785 .addImm(MI.getOperand(3).getImm()); // $attrchan 786 787 BuildMI(*MBB, &MI, DL, TII.get(AMDGPU::V_INTERP_P1LV_F16), Dst) 788 .addImm(0) // $src0_modifiers 789 .addReg(Src0) // $src0 790 .addImm(MI.getOperand(4).getImm()) // $attr 791 .addImm(MI.getOperand(3).getImm()) // $attrchan 792 .addImm(0) // $src2_modifiers 793 .addReg(InterpMov) // $src2 - 2 f16 values selected by high 794 .addImm(MI.getOperand(5).getImm()) // $high 795 .addImm(0) // $clamp 796 .addImm(0); // $omod 797 798 MI.eraseFromParent(); 799 return true; 800 } 801 802 // Writelane is special in that it can use SGPR and M0 (which would normally 803 // count as using the constant bus twice - but in this case it is allowed since 804 // the lane selector doesn't count as a use of the constant bus). However, it is 805 // still required to abide by the 1 SGPR rule. Fix this up if we might have 806 // multiple SGPRs. 807 bool AMDGPUInstructionSelector::selectWritelane(MachineInstr &MI) const { 808 // With a constant bus limit of at least 2, there's no issue. 809 if (STI.getConstantBusLimit(AMDGPU::V_WRITELANE_B32) > 1) 810 return selectImpl(MI, *CoverageInfo); 811 812 MachineBasicBlock *MBB = MI.getParent(); 813 const DebugLoc &DL = MI.getDebugLoc(); 814 Register VDst = MI.getOperand(0).getReg(); 815 Register Val = MI.getOperand(2).getReg(); 816 Register LaneSelect = MI.getOperand(3).getReg(); 817 Register VDstIn = MI.getOperand(4).getReg(); 818 819 auto MIB = BuildMI(*MBB, &MI, DL, TII.get(AMDGPU::V_WRITELANE_B32), VDst); 820 821 Optional<ValueAndVReg> ConstSelect = 822 getConstantVRegValWithLookThrough(LaneSelect, *MRI, true, true); 823 if (ConstSelect) { 824 // The selector has to be an inline immediate, so we can use whatever for 825 // the other operands. 826 MIB.addReg(Val); 827 MIB.addImm(ConstSelect->Value.getSExtValue() & 828 maskTrailingOnes<uint64_t>(STI.getWavefrontSizeLog2())); 829 } else { 830 Optional<ValueAndVReg> ConstVal = 831 getConstantVRegValWithLookThrough(Val, *MRI, true, true); 832 833 // If the value written is an inline immediate, we can get away without a 834 // copy to m0. 835 if (ConstVal && AMDGPU::isInlinableLiteral32(ConstVal->Value.getSExtValue(), 836 STI.hasInv2PiInlineImm())) { 837 MIB.addImm(ConstVal->Value.getSExtValue()); 838 MIB.addReg(LaneSelect); 839 } else { 840 MIB.addReg(Val); 841 842 // If the lane selector was originally in a VGPR and copied with 843 // readfirstlane, there's a hazard to read the same SGPR from the 844 // VALU. Constrain to a different SGPR to help avoid needing a nop later. 845 RBI.constrainGenericRegister(LaneSelect, AMDGPU::SReg_32_XM0RegClass, *MRI); 846 847 BuildMI(*MBB, *MIB, DL, TII.get(AMDGPU::COPY), AMDGPU::M0) 848 .addReg(LaneSelect); 849 MIB.addReg(AMDGPU::M0); 850 } 851 } 852 853 MIB.addReg(VDstIn); 854 855 MI.eraseFromParent(); 856 return constrainSelectedInstRegOperands(*MIB, TII, TRI, RBI); 857 } 858 859 // We need to handle this here because tablegen doesn't support matching 860 // instructions with multiple outputs. 861 bool AMDGPUInstructionSelector::selectDivScale(MachineInstr &MI) const { 862 Register Dst0 = MI.getOperand(0).getReg(); 863 Register Dst1 = MI.getOperand(1).getReg(); 864 865 LLT Ty = MRI->getType(Dst0); 866 unsigned Opc; 867 if (Ty == LLT::scalar(32)) 868 Opc = AMDGPU::V_DIV_SCALE_F32_e64; 869 else if (Ty == LLT::scalar(64)) 870 Opc = AMDGPU::V_DIV_SCALE_F64_e64; 871 else 872 return false; 873 874 // TODO: Match source modifiers. 875 876 const DebugLoc &DL = MI.getDebugLoc(); 877 MachineBasicBlock *MBB = MI.getParent(); 878 879 Register Numer = MI.getOperand(3).getReg(); 880 Register Denom = MI.getOperand(4).getReg(); 881 unsigned ChooseDenom = MI.getOperand(5).getImm(); 882 883 Register Src0 = ChooseDenom != 0 ? Numer : Denom; 884 885 auto MIB = BuildMI(*MBB, &MI, DL, TII.get(Opc), Dst0) 886 .addDef(Dst1) 887 .addImm(0) // $src0_modifiers 888 .addUse(Src0) // $src0 889 .addImm(0) // $src1_modifiers 890 .addUse(Denom) // $src1 891 .addImm(0) // $src2_modifiers 892 .addUse(Numer) // $src2 893 .addImm(0) // $clamp 894 .addImm(0); // $omod 895 896 MI.eraseFromParent(); 897 return constrainSelectedInstRegOperands(*MIB, TII, TRI, RBI); 898 } 899 900 bool AMDGPUInstructionSelector::selectG_INTRINSIC(MachineInstr &I) const { 901 unsigned IntrinsicID = I.getIntrinsicID(); 902 switch (IntrinsicID) { 903 case Intrinsic::amdgcn_if_break: { 904 MachineBasicBlock *BB = I.getParent(); 905 906 // FIXME: Manually selecting to avoid dealiing with the SReg_1 trick 907 // SelectionDAG uses for wave32 vs wave64. 908 BuildMI(*BB, &I, I.getDebugLoc(), TII.get(AMDGPU::SI_IF_BREAK)) 909 .add(I.getOperand(0)) 910 .add(I.getOperand(2)) 911 .add(I.getOperand(3)); 912 913 Register DstReg = I.getOperand(0).getReg(); 914 Register Src0Reg = I.getOperand(2).getReg(); 915 Register Src1Reg = I.getOperand(3).getReg(); 916 917 I.eraseFromParent(); 918 919 for (Register Reg : { DstReg, Src0Reg, Src1Reg }) 920 MRI->setRegClass(Reg, TRI.getWaveMaskRegClass()); 921 922 return true; 923 } 924 case Intrinsic::amdgcn_interp_p1_f16: 925 return selectInterpP1F16(I); 926 case Intrinsic::amdgcn_wqm: 927 return constrainCopyLikeIntrin(I, AMDGPU::WQM); 928 case Intrinsic::amdgcn_softwqm: 929 return constrainCopyLikeIntrin(I, AMDGPU::SOFT_WQM); 930 case Intrinsic::amdgcn_strict_wwm: 931 case Intrinsic::amdgcn_wwm: 932 return constrainCopyLikeIntrin(I, AMDGPU::STRICT_WWM); 933 case Intrinsic::amdgcn_strict_wqm: 934 return constrainCopyLikeIntrin(I, AMDGPU::STRICT_WQM); 935 case Intrinsic::amdgcn_writelane: 936 return selectWritelane(I); 937 case Intrinsic::amdgcn_div_scale: 938 return selectDivScale(I); 939 case Intrinsic::amdgcn_icmp: 940 return selectIntrinsicIcmp(I); 941 case Intrinsic::amdgcn_ballot: 942 return selectBallot(I); 943 case Intrinsic::amdgcn_reloc_constant: 944 return selectRelocConstant(I); 945 case Intrinsic::amdgcn_groupstaticsize: 946 return selectGroupStaticSize(I); 947 case Intrinsic::returnaddress: 948 return selectReturnAddress(I); 949 default: 950 return selectImpl(I, *CoverageInfo); 951 } 952 } 953 954 static int getV_CMPOpcode(CmpInst::Predicate P, unsigned Size) { 955 if (Size != 32 && Size != 64) 956 return -1; 957 switch (P) { 958 default: 959 llvm_unreachable("Unknown condition code!"); 960 case CmpInst::ICMP_NE: 961 return Size == 32 ? AMDGPU::V_CMP_NE_U32_e64 : AMDGPU::V_CMP_NE_U64_e64; 962 case CmpInst::ICMP_EQ: 963 return Size == 32 ? AMDGPU::V_CMP_EQ_U32_e64 : AMDGPU::V_CMP_EQ_U64_e64; 964 case CmpInst::ICMP_SGT: 965 return Size == 32 ? AMDGPU::V_CMP_GT_I32_e64 : AMDGPU::V_CMP_GT_I64_e64; 966 case CmpInst::ICMP_SGE: 967 return Size == 32 ? AMDGPU::V_CMP_GE_I32_e64 : AMDGPU::V_CMP_GE_I64_e64; 968 case CmpInst::ICMP_SLT: 969 return Size == 32 ? AMDGPU::V_CMP_LT_I32_e64 : AMDGPU::V_CMP_LT_I64_e64; 970 case CmpInst::ICMP_SLE: 971 return Size == 32 ? AMDGPU::V_CMP_LE_I32_e64 : AMDGPU::V_CMP_LE_I64_e64; 972 case CmpInst::ICMP_UGT: 973 return Size == 32 ? AMDGPU::V_CMP_GT_U32_e64 : AMDGPU::V_CMP_GT_U64_e64; 974 case CmpInst::ICMP_UGE: 975 return Size == 32 ? AMDGPU::V_CMP_GE_U32_e64 : AMDGPU::V_CMP_GE_U64_e64; 976 case CmpInst::ICMP_ULT: 977 return Size == 32 ? AMDGPU::V_CMP_LT_U32_e64 : AMDGPU::V_CMP_LT_U64_e64; 978 case CmpInst::ICMP_ULE: 979 return Size == 32 ? AMDGPU::V_CMP_LE_U32_e64 : AMDGPU::V_CMP_LE_U64_e64; 980 } 981 } 982 983 int AMDGPUInstructionSelector::getS_CMPOpcode(CmpInst::Predicate P, 984 unsigned Size) const { 985 if (Size == 64) { 986 if (!STI.hasScalarCompareEq64()) 987 return -1; 988 989 switch (P) { 990 case CmpInst::ICMP_NE: 991 return AMDGPU::S_CMP_LG_U64; 992 case CmpInst::ICMP_EQ: 993 return AMDGPU::S_CMP_EQ_U64; 994 default: 995 return -1; 996 } 997 } 998 999 if (Size != 32) 1000 return -1; 1001 1002 switch (P) { 1003 case CmpInst::ICMP_NE: 1004 return AMDGPU::S_CMP_LG_U32; 1005 case CmpInst::ICMP_EQ: 1006 return AMDGPU::S_CMP_EQ_U32; 1007 case CmpInst::ICMP_SGT: 1008 return AMDGPU::S_CMP_GT_I32; 1009 case CmpInst::ICMP_SGE: 1010 return AMDGPU::S_CMP_GE_I32; 1011 case CmpInst::ICMP_SLT: 1012 return AMDGPU::S_CMP_LT_I32; 1013 case CmpInst::ICMP_SLE: 1014 return AMDGPU::S_CMP_LE_I32; 1015 case CmpInst::ICMP_UGT: 1016 return AMDGPU::S_CMP_GT_U32; 1017 case CmpInst::ICMP_UGE: 1018 return AMDGPU::S_CMP_GE_U32; 1019 case CmpInst::ICMP_ULT: 1020 return AMDGPU::S_CMP_LT_U32; 1021 case CmpInst::ICMP_ULE: 1022 return AMDGPU::S_CMP_LE_U32; 1023 default: 1024 llvm_unreachable("Unknown condition code!"); 1025 } 1026 } 1027 1028 bool AMDGPUInstructionSelector::selectG_ICMP(MachineInstr &I) const { 1029 MachineBasicBlock *BB = I.getParent(); 1030 const DebugLoc &DL = I.getDebugLoc(); 1031 1032 Register SrcReg = I.getOperand(2).getReg(); 1033 unsigned Size = RBI.getSizeInBits(SrcReg, *MRI, TRI); 1034 1035 auto Pred = (CmpInst::Predicate)I.getOperand(1).getPredicate(); 1036 1037 Register CCReg = I.getOperand(0).getReg(); 1038 if (!isVCC(CCReg, *MRI)) { 1039 int Opcode = getS_CMPOpcode(Pred, Size); 1040 if (Opcode == -1) 1041 return false; 1042 MachineInstr *ICmp = BuildMI(*BB, &I, DL, TII.get(Opcode)) 1043 .add(I.getOperand(2)) 1044 .add(I.getOperand(3)); 1045 BuildMI(*BB, &I, DL, TII.get(AMDGPU::COPY), CCReg) 1046 .addReg(AMDGPU::SCC); 1047 bool Ret = 1048 constrainSelectedInstRegOperands(*ICmp, TII, TRI, RBI) && 1049 RBI.constrainGenericRegister(CCReg, AMDGPU::SReg_32RegClass, *MRI); 1050 I.eraseFromParent(); 1051 return Ret; 1052 } 1053 1054 int Opcode = getV_CMPOpcode(Pred, Size); 1055 if (Opcode == -1) 1056 return false; 1057 1058 MachineInstr *ICmp = BuildMI(*BB, &I, DL, TII.get(Opcode), 1059 I.getOperand(0).getReg()) 1060 .add(I.getOperand(2)) 1061 .add(I.getOperand(3)); 1062 RBI.constrainGenericRegister(ICmp->getOperand(0).getReg(), 1063 *TRI.getBoolRC(), *MRI); 1064 bool Ret = constrainSelectedInstRegOperands(*ICmp, TII, TRI, RBI); 1065 I.eraseFromParent(); 1066 return Ret; 1067 } 1068 1069 bool AMDGPUInstructionSelector::selectIntrinsicIcmp(MachineInstr &I) const { 1070 Register Dst = I.getOperand(0).getReg(); 1071 if (isVCC(Dst, *MRI)) 1072 return false; 1073 1074 if (MRI->getType(Dst).getSizeInBits() != STI.getWavefrontSize()) 1075 return false; 1076 1077 MachineBasicBlock *BB = I.getParent(); 1078 const DebugLoc &DL = I.getDebugLoc(); 1079 Register SrcReg = I.getOperand(2).getReg(); 1080 unsigned Size = RBI.getSizeInBits(SrcReg, *MRI, TRI); 1081 auto Pred = static_cast<CmpInst::Predicate>(I.getOperand(4).getImm()); 1082 1083 int Opcode = getV_CMPOpcode(Pred, Size); 1084 if (Opcode == -1) 1085 return false; 1086 1087 MachineInstr *ICmp = BuildMI(*BB, &I, DL, TII.get(Opcode), Dst) 1088 .add(I.getOperand(2)) 1089 .add(I.getOperand(3)); 1090 RBI.constrainGenericRegister(ICmp->getOperand(0).getReg(), *TRI.getBoolRC(), 1091 *MRI); 1092 bool Ret = constrainSelectedInstRegOperands(*ICmp, TII, TRI, RBI); 1093 I.eraseFromParent(); 1094 return Ret; 1095 } 1096 1097 bool AMDGPUInstructionSelector::selectBallot(MachineInstr &I) const { 1098 MachineBasicBlock *BB = I.getParent(); 1099 const DebugLoc &DL = I.getDebugLoc(); 1100 Register DstReg = I.getOperand(0).getReg(); 1101 const unsigned Size = MRI->getType(DstReg).getSizeInBits(); 1102 const bool Is64 = Size == 64; 1103 1104 if (Size != STI.getWavefrontSize()) 1105 return false; 1106 1107 Optional<ValueAndVReg> Arg = 1108 getConstantVRegValWithLookThrough(I.getOperand(2).getReg(), *MRI, true); 1109 1110 if (Arg.hasValue()) { 1111 const int64_t Value = Arg.getValue().Value.getSExtValue(); 1112 if (Value == 0) { 1113 unsigned Opcode = Is64 ? AMDGPU::S_MOV_B64 : AMDGPU::S_MOV_B32; 1114 BuildMI(*BB, &I, DL, TII.get(Opcode), DstReg).addImm(0); 1115 } else if (Value == -1) { // all ones 1116 Register SrcReg = Is64 ? AMDGPU::EXEC : AMDGPU::EXEC_LO; 1117 BuildMI(*BB, &I, DL, TII.get(AMDGPU::COPY), DstReg).addReg(SrcReg); 1118 } else 1119 return false; 1120 } else { 1121 Register SrcReg = I.getOperand(2).getReg(); 1122 BuildMI(*BB, &I, DL, TII.get(AMDGPU::COPY), DstReg).addReg(SrcReg); 1123 } 1124 1125 I.eraseFromParent(); 1126 return true; 1127 } 1128 1129 bool AMDGPUInstructionSelector::selectRelocConstant(MachineInstr &I) const { 1130 Register DstReg = I.getOperand(0).getReg(); 1131 const RegisterBank *DstBank = RBI.getRegBank(DstReg, *MRI, TRI); 1132 const TargetRegisterClass *DstRC = 1133 TRI.getRegClassForSizeOnBank(32, *DstBank, *MRI); 1134 if (!DstRC || !RBI.constrainGenericRegister(DstReg, *DstRC, *MRI)) 1135 return false; 1136 1137 const bool IsVALU = DstBank->getID() == AMDGPU::VGPRRegBankID; 1138 1139 Module *M = MF->getFunction().getParent(); 1140 const MDNode *Metadata = I.getOperand(2).getMetadata(); 1141 auto SymbolName = cast<MDString>(Metadata->getOperand(0))->getString(); 1142 auto RelocSymbol = cast<GlobalVariable>( 1143 M->getOrInsertGlobal(SymbolName, Type::getInt32Ty(M->getContext()))); 1144 1145 MachineBasicBlock *BB = I.getParent(); 1146 BuildMI(*BB, &I, I.getDebugLoc(), 1147 TII.get(IsVALU ? AMDGPU::V_MOV_B32_e32 : AMDGPU::S_MOV_B32), DstReg) 1148 .addGlobalAddress(RelocSymbol, 0, SIInstrInfo::MO_ABS32_LO); 1149 1150 I.eraseFromParent(); 1151 return true; 1152 } 1153 1154 bool AMDGPUInstructionSelector::selectGroupStaticSize(MachineInstr &I) const { 1155 Triple::OSType OS = MF->getTarget().getTargetTriple().getOS(); 1156 1157 Register DstReg = I.getOperand(0).getReg(); 1158 const RegisterBank *DstRB = RBI.getRegBank(DstReg, *MRI, TRI); 1159 unsigned Mov = DstRB->getID() == AMDGPU::SGPRRegBankID ? 1160 AMDGPU::S_MOV_B32 : AMDGPU::V_MOV_B32_e32; 1161 1162 MachineBasicBlock *MBB = I.getParent(); 1163 const DebugLoc &DL = I.getDebugLoc(); 1164 1165 auto MIB = BuildMI(*MBB, &I, DL, TII.get(Mov), DstReg); 1166 1167 if (OS == Triple::AMDHSA || OS == Triple::AMDPAL) { 1168 const SIMachineFunctionInfo *MFI = MF->getInfo<SIMachineFunctionInfo>(); 1169 MIB.addImm(MFI->getLDSSize()); 1170 } else { 1171 Module *M = MF->getFunction().getParent(); 1172 const GlobalValue *GV 1173 = Intrinsic::getDeclaration(M, Intrinsic::amdgcn_groupstaticsize); 1174 MIB.addGlobalAddress(GV, 0, SIInstrInfo::MO_ABS32_LO); 1175 } 1176 1177 I.eraseFromParent(); 1178 return constrainSelectedInstRegOperands(*MIB, TII, TRI, RBI); 1179 } 1180 1181 bool AMDGPUInstructionSelector::selectReturnAddress(MachineInstr &I) const { 1182 MachineBasicBlock *MBB = I.getParent(); 1183 MachineFunction &MF = *MBB->getParent(); 1184 const DebugLoc &DL = I.getDebugLoc(); 1185 1186 MachineOperand &Dst = I.getOperand(0); 1187 Register DstReg = Dst.getReg(); 1188 unsigned Depth = I.getOperand(2).getImm(); 1189 1190 const TargetRegisterClass *RC 1191 = TRI.getConstrainedRegClassForOperand(Dst, *MRI); 1192 if (!RC->hasSubClassEq(&AMDGPU::SGPR_64RegClass) || 1193 !RBI.constrainGenericRegister(DstReg, *RC, *MRI)) 1194 return false; 1195 1196 // Check for kernel and shader functions 1197 if (Depth != 0 || 1198 MF.getInfo<SIMachineFunctionInfo>()->isEntryFunction()) { 1199 BuildMI(*MBB, &I, DL, TII.get(AMDGPU::S_MOV_B64), DstReg) 1200 .addImm(0); 1201 I.eraseFromParent(); 1202 return true; 1203 } 1204 1205 MachineFrameInfo &MFI = MF.getFrameInfo(); 1206 // There is a call to @llvm.returnaddress in this function 1207 MFI.setReturnAddressIsTaken(true); 1208 1209 // Get the return address reg and mark it as an implicit live-in 1210 Register ReturnAddrReg = TRI.getReturnAddressReg(MF); 1211 Register LiveIn = getFunctionLiveInPhysReg(MF, TII, ReturnAddrReg, 1212 AMDGPU::SReg_64RegClass); 1213 BuildMI(*MBB, &I, DL, TII.get(AMDGPU::COPY), DstReg) 1214 .addReg(LiveIn); 1215 I.eraseFromParent(); 1216 return true; 1217 } 1218 1219 bool AMDGPUInstructionSelector::selectEndCfIntrinsic(MachineInstr &MI) const { 1220 // FIXME: Manually selecting to avoid dealiing with the SReg_1 trick 1221 // SelectionDAG uses for wave32 vs wave64. 1222 MachineBasicBlock *BB = MI.getParent(); 1223 BuildMI(*BB, &MI, MI.getDebugLoc(), TII.get(AMDGPU::SI_END_CF)) 1224 .add(MI.getOperand(1)); 1225 1226 Register Reg = MI.getOperand(1).getReg(); 1227 MI.eraseFromParent(); 1228 1229 if (!MRI->getRegClassOrNull(Reg)) 1230 MRI->setRegClass(Reg, TRI.getWaveMaskRegClass()); 1231 return true; 1232 } 1233 1234 bool AMDGPUInstructionSelector::selectDSOrderedIntrinsic( 1235 MachineInstr &MI, Intrinsic::ID IntrID) const { 1236 MachineBasicBlock *MBB = MI.getParent(); 1237 MachineFunction *MF = MBB->getParent(); 1238 const DebugLoc &DL = MI.getDebugLoc(); 1239 1240 unsigned IndexOperand = MI.getOperand(7).getImm(); 1241 bool WaveRelease = MI.getOperand(8).getImm() != 0; 1242 bool WaveDone = MI.getOperand(9).getImm() != 0; 1243 1244 if (WaveDone && !WaveRelease) 1245 report_fatal_error("ds_ordered_count: wave_done requires wave_release"); 1246 1247 unsigned OrderedCountIndex = IndexOperand & 0x3f; 1248 IndexOperand &= ~0x3f; 1249 unsigned CountDw = 0; 1250 1251 if (STI.getGeneration() >= AMDGPUSubtarget::GFX10) { 1252 CountDw = (IndexOperand >> 24) & 0xf; 1253 IndexOperand &= ~(0xf << 24); 1254 1255 if (CountDw < 1 || CountDw > 4) { 1256 report_fatal_error( 1257 "ds_ordered_count: dword count must be between 1 and 4"); 1258 } 1259 } 1260 1261 if (IndexOperand) 1262 report_fatal_error("ds_ordered_count: bad index operand"); 1263 1264 unsigned Instruction = IntrID == Intrinsic::amdgcn_ds_ordered_add ? 0 : 1; 1265 unsigned ShaderType = SIInstrInfo::getDSShaderTypeValue(*MF); 1266 1267 unsigned Offset0 = OrderedCountIndex << 2; 1268 unsigned Offset1 = WaveRelease | (WaveDone << 1) | (ShaderType << 2) | 1269 (Instruction << 4); 1270 1271 if (STI.getGeneration() >= AMDGPUSubtarget::GFX10) 1272 Offset1 |= (CountDw - 1) << 6; 1273 1274 unsigned Offset = Offset0 | (Offset1 << 8); 1275 1276 Register M0Val = MI.getOperand(2).getReg(); 1277 BuildMI(*MBB, &MI, DL, TII.get(AMDGPU::COPY), AMDGPU::M0) 1278 .addReg(M0Val); 1279 1280 Register DstReg = MI.getOperand(0).getReg(); 1281 Register ValReg = MI.getOperand(3).getReg(); 1282 MachineInstrBuilder DS = 1283 BuildMI(*MBB, &MI, DL, TII.get(AMDGPU::DS_ORDERED_COUNT), DstReg) 1284 .addReg(ValReg) 1285 .addImm(Offset) 1286 .cloneMemRefs(MI); 1287 1288 if (!RBI.constrainGenericRegister(M0Val, AMDGPU::SReg_32RegClass, *MRI)) 1289 return false; 1290 1291 bool Ret = constrainSelectedInstRegOperands(*DS, TII, TRI, RBI); 1292 MI.eraseFromParent(); 1293 return Ret; 1294 } 1295 1296 static unsigned gwsIntrinToOpcode(unsigned IntrID) { 1297 switch (IntrID) { 1298 case Intrinsic::amdgcn_ds_gws_init: 1299 return AMDGPU::DS_GWS_INIT; 1300 case Intrinsic::amdgcn_ds_gws_barrier: 1301 return AMDGPU::DS_GWS_BARRIER; 1302 case Intrinsic::amdgcn_ds_gws_sema_v: 1303 return AMDGPU::DS_GWS_SEMA_V; 1304 case Intrinsic::amdgcn_ds_gws_sema_br: 1305 return AMDGPU::DS_GWS_SEMA_BR; 1306 case Intrinsic::amdgcn_ds_gws_sema_p: 1307 return AMDGPU::DS_GWS_SEMA_P; 1308 case Intrinsic::amdgcn_ds_gws_sema_release_all: 1309 return AMDGPU::DS_GWS_SEMA_RELEASE_ALL; 1310 default: 1311 llvm_unreachable("not a gws intrinsic"); 1312 } 1313 } 1314 1315 bool AMDGPUInstructionSelector::selectDSGWSIntrinsic(MachineInstr &MI, 1316 Intrinsic::ID IID) const { 1317 if (IID == Intrinsic::amdgcn_ds_gws_sema_release_all && 1318 !STI.hasGWSSemaReleaseAll()) 1319 return false; 1320 1321 // intrinsic ID, vsrc, offset 1322 const bool HasVSrc = MI.getNumOperands() == 3; 1323 assert(HasVSrc || MI.getNumOperands() == 2); 1324 1325 Register BaseOffset = MI.getOperand(HasVSrc ? 2 : 1).getReg(); 1326 const RegisterBank *OffsetRB = RBI.getRegBank(BaseOffset, *MRI, TRI); 1327 if (OffsetRB->getID() != AMDGPU::SGPRRegBankID) 1328 return false; 1329 1330 MachineInstr *OffsetDef = getDefIgnoringCopies(BaseOffset, *MRI); 1331 assert(OffsetDef); 1332 1333 unsigned ImmOffset; 1334 1335 MachineBasicBlock *MBB = MI.getParent(); 1336 const DebugLoc &DL = MI.getDebugLoc(); 1337 1338 MachineInstr *Readfirstlane = nullptr; 1339 1340 // If we legalized the VGPR input, strip out the readfirstlane to analyze the 1341 // incoming offset, in case there's an add of a constant. We'll have to put it 1342 // back later. 1343 if (OffsetDef->getOpcode() == AMDGPU::V_READFIRSTLANE_B32) { 1344 Readfirstlane = OffsetDef; 1345 BaseOffset = OffsetDef->getOperand(1).getReg(); 1346 OffsetDef = getDefIgnoringCopies(BaseOffset, *MRI); 1347 } 1348 1349 if (OffsetDef->getOpcode() == AMDGPU::G_CONSTANT) { 1350 // If we have a constant offset, try to use the 0 in m0 as the base. 1351 // TODO: Look into changing the default m0 initialization value. If the 1352 // default -1 only set the low 16-bits, we could leave it as-is and add 1 to 1353 // the immediate offset. 1354 1355 ImmOffset = OffsetDef->getOperand(1).getCImm()->getZExtValue(); 1356 BuildMI(*MBB, &MI, DL, TII.get(AMDGPU::S_MOV_B32), AMDGPU::M0) 1357 .addImm(0); 1358 } else { 1359 std::tie(BaseOffset, ImmOffset) = 1360 AMDGPU::getBaseWithConstantOffset(*MRI, BaseOffset); 1361 1362 if (Readfirstlane) { 1363 // We have the constant offset now, so put the readfirstlane back on the 1364 // variable component. 1365 if (!RBI.constrainGenericRegister(BaseOffset, AMDGPU::VGPR_32RegClass, *MRI)) 1366 return false; 1367 1368 Readfirstlane->getOperand(1).setReg(BaseOffset); 1369 BaseOffset = Readfirstlane->getOperand(0).getReg(); 1370 } else { 1371 if (!RBI.constrainGenericRegister(BaseOffset, 1372 AMDGPU::SReg_32RegClass, *MRI)) 1373 return false; 1374 } 1375 1376 Register M0Base = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass); 1377 BuildMI(*MBB, &MI, DL, TII.get(AMDGPU::S_LSHL_B32), M0Base) 1378 .addReg(BaseOffset) 1379 .addImm(16); 1380 1381 BuildMI(*MBB, &MI, DL, TII.get(AMDGPU::COPY), AMDGPU::M0) 1382 .addReg(M0Base); 1383 } 1384 1385 // The resource id offset is computed as (<isa opaque base> + M0[21:16] + 1386 // offset field) % 64. Some versions of the programming guide omit the m0 1387 // part, or claim it's from offset 0. 1388 auto MIB = BuildMI(*MBB, &MI, DL, TII.get(gwsIntrinToOpcode(IID))); 1389 1390 if (HasVSrc) { 1391 Register VSrc = MI.getOperand(1).getReg(); 1392 MIB.addReg(VSrc); 1393 if (!RBI.constrainGenericRegister(VSrc, AMDGPU::VGPR_32RegClass, *MRI)) 1394 return false; 1395 } 1396 1397 MIB.addImm(ImmOffset) 1398 .cloneMemRefs(MI); 1399 1400 MI.eraseFromParent(); 1401 return true; 1402 } 1403 1404 bool AMDGPUInstructionSelector::selectDSAppendConsume(MachineInstr &MI, 1405 bool IsAppend) const { 1406 Register PtrBase = MI.getOperand(2).getReg(); 1407 LLT PtrTy = MRI->getType(PtrBase); 1408 bool IsGDS = PtrTy.getAddressSpace() == AMDGPUAS::REGION_ADDRESS; 1409 1410 unsigned Offset; 1411 std::tie(PtrBase, Offset) = selectDS1Addr1OffsetImpl(MI.getOperand(2)); 1412 1413 // TODO: Should this try to look through readfirstlane like GWS? 1414 if (!isDSOffsetLegal(PtrBase, Offset)) { 1415 PtrBase = MI.getOperand(2).getReg(); 1416 Offset = 0; 1417 } 1418 1419 MachineBasicBlock *MBB = MI.getParent(); 1420 const DebugLoc &DL = MI.getDebugLoc(); 1421 const unsigned Opc = IsAppend ? AMDGPU::DS_APPEND : AMDGPU::DS_CONSUME; 1422 1423 BuildMI(*MBB, &MI, DL, TII.get(AMDGPU::COPY), AMDGPU::M0) 1424 .addReg(PtrBase); 1425 if (!RBI.constrainGenericRegister(PtrBase, AMDGPU::SReg_32RegClass, *MRI)) 1426 return false; 1427 1428 auto MIB = BuildMI(*MBB, &MI, DL, TII.get(Opc), MI.getOperand(0).getReg()) 1429 .addImm(Offset) 1430 .addImm(IsGDS ? -1 : 0) 1431 .cloneMemRefs(MI); 1432 MI.eraseFromParent(); 1433 return constrainSelectedInstRegOperands(*MIB, TII, TRI, RBI); 1434 } 1435 1436 bool AMDGPUInstructionSelector::selectSBarrier(MachineInstr &MI) const { 1437 if (TM.getOptLevel() > CodeGenOpt::None) { 1438 unsigned WGSize = STI.getFlatWorkGroupSizes(MF->getFunction()).second; 1439 if (WGSize <= STI.getWavefrontSize()) { 1440 MachineBasicBlock *MBB = MI.getParent(); 1441 const DebugLoc &DL = MI.getDebugLoc(); 1442 BuildMI(*MBB, &MI, DL, TII.get(AMDGPU::WAVE_BARRIER)); 1443 MI.eraseFromParent(); 1444 return true; 1445 } 1446 } 1447 return selectImpl(MI, *CoverageInfo); 1448 } 1449 1450 static bool parseTexFail(uint64_t TexFailCtrl, bool &TFE, bool &LWE, 1451 bool &IsTexFail) { 1452 if (TexFailCtrl) 1453 IsTexFail = true; 1454 1455 TFE = (TexFailCtrl & 0x1) ? 1 : 0; 1456 TexFailCtrl &= ~(uint64_t)0x1; 1457 LWE = (TexFailCtrl & 0x2) ? 1 : 0; 1458 TexFailCtrl &= ~(uint64_t)0x2; 1459 1460 return TexFailCtrl == 0; 1461 } 1462 1463 static bool parseCachePolicy(uint64_t Value, 1464 bool *GLC, bool *SLC, bool *DLC, bool *SCC) { 1465 if (GLC) { 1466 *GLC = (Value & 0x1) ? 1 : 0; 1467 Value &= ~(uint64_t)0x1; 1468 } 1469 if (SLC) { 1470 *SLC = (Value & 0x2) ? 1 : 0; 1471 Value &= ~(uint64_t)0x2; 1472 } 1473 if (DLC) { 1474 *DLC = (Value & 0x4) ? 1 : 0; 1475 Value &= ~(uint64_t)0x4; 1476 } 1477 if (SCC) { 1478 *SCC = (Value & 0x10) ? 1 : 0; 1479 Value &= ~(uint64_t)0x10; 1480 } 1481 1482 return Value == 0; 1483 } 1484 1485 bool AMDGPUInstructionSelector::selectImageIntrinsic( 1486 MachineInstr &MI, const AMDGPU::ImageDimIntrinsicInfo *Intr) const { 1487 MachineBasicBlock *MBB = MI.getParent(); 1488 const DebugLoc &DL = MI.getDebugLoc(); 1489 1490 const AMDGPU::MIMGBaseOpcodeInfo *BaseOpcode = 1491 AMDGPU::getMIMGBaseOpcodeInfo(Intr->BaseOpcode); 1492 1493 const AMDGPU::MIMGDimInfo *DimInfo = AMDGPU::getMIMGDimInfo(Intr->Dim); 1494 const AMDGPU::MIMGLZMappingInfo *LZMappingInfo = 1495 AMDGPU::getMIMGLZMappingInfo(Intr->BaseOpcode); 1496 const AMDGPU::MIMGMIPMappingInfo *MIPMappingInfo = 1497 AMDGPU::getMIMGMIPMappingInfo(Intr->BaseOpcode); 1498 unsigned IntrOpcode = Intr->BaseOpcode; 1499 const bool IsGFX10Plus = AMDGPU::isGFX10Plus(STI); 1500 1501 const unsigned ArgOffset = MI.getNumExplicitDefs() + 1; 1502 1503 Register VDataIn, VDataOut; 1504 LLT VDataTy; 1505 int NumVDataDwords = -1; 1506 bool IsD16 = false; 1507 1508 bool Unorm; 1509 if (!BaseOpcode->Sampler) 1510 Unorm = true; 1511 else 1512 Unorm = MI.getOperand(ArgOffset + Intr->UnormIndex).getImm() != 0; 1513 1514 bool TFE; 1515 bool LWE; 1516 bool IsTexFail = false; 1517 if (!parseTexFail(MI.getOperand(ArgOffset + Intr->TexFailCtrlIndex).getImm(), 1518 TFE, LWE, IsTexFail)) 1519 return false; 1520 1521 const int Flags = MI.getOperand(ArgOffset + Intr->NumArgs).getImm(); 1522 const bool IsA16 = (Flags & 1) != 0; 1523 const bool IsG16 = (Flags & 2) != 0; 1524 1525 // A16 implies 16 bit gradients 1526 if (IsA16 && !IsG16) 1527 return false; 1528 1529 unsigned DMask = 0; 1530 unsigned DMaskLanes = 0; 1531 1532 if (BaseOpcode->Atomic) { 1533 VDataOut = MI.getOperand(0).getReg(); 1534 VDataIn = MI.getOperand(2).getReg(); 1535 LLT Ty = MRI->getType(VDataIn); 1536 1537 // Be careful to allow atomic swap on 16-bit element vectors. 1538 const bool Is64Bit = BaseOpcode->AtomicX2 ? 1539 Ty.getSizeInBits() == 128 : 1540 Ty.getSizeInBits() == 64; 1541 1542 if (BaseOpcode->AtomicX2) { 1543 assert(MI.getOperand(3).getReg() == AMDGPU::NoRegister); 1544 1545 DMask = Is64Bit ? 0xf : 0x3; 1546 NumVDataDwords = Is64Bit ? 4 : 2; 1547 } else { 1548 DMask = Is64Bit ? 0x3 : 0x1; 1549 NumVDataDwords = Is64Bit ? 2 : 1; 1550 } 1551 } else { 1552 DMask = MI.getOperand(ArgOffset + Intr->DMaskIndex).getImm(); 1553 DMaskLanes = BaseOpcode->Gather4 ? 4 : countPopulation(DMask); 1554 1555 // One memoperand is mandatory, except for getresinfo. 1556 // FIXME: Check this in verifier. 1557 if (!MI.memoperands_empty()) { 1558 const MachineMemOperand *MMO = *MI.memoperands_begin(); 1559 1560 // Infer d16 from the memory size, as the register type will be mangled by 1561 // unpacked subtargets, or by TFE. 1562 IsD16 = ((8 * MMO->getSize()) / DMaskLanes) < 32; 1563 } 1564 1565 if (BaseOpcode->Store) { 1566 VDataIn = MI.getOperand(1).getReg(); 1567 VDataTy = MRI->getType(VDataIn); 1568 NumVDataDwords = (VDataTy.getSizeInBits() + 31) / 32; 1569 } else { 1570 VDataOut = MI.getOperand(0).getReg(); 1571 VDataTy = MRI->getType(VDataOut); 1572 NumVDataDwords = DMaskLanes; 1573 1574 if (IsD16 && !STI.hasUnpackedD16VMem()) 1575 NumVDataDwords = (DMaskLanes + 1) / 2; 1576 } 1577 } 1578 1579 // Optimize _L to _LZ when _L is zero 1580 if (LZMappingInfo) { 1581 // The legalizer replaced the register with an immediate 0 if we need to 1582 // change the opcode. 1583 const MachineOperand &Lod = MI.getOperand(ArgOffset + Intr->LodIndex); 1584 if (Lod.isImm()) { 1585 assert(Lod.getImm() == 0); 1586 IntrOpcode = LZMappingInfo->LZ; // set new opcode to _lz variant of _l 1587 } 1588 } 1589 1590 // Optimize _mip away, when 'lod' is zero 1591 if (MIPMappingInfo) { 1592 const MachineOperand &Lod = MI.getOperand(ArgOffset + Intr->MipIndex); 1593 if (Lod.isImm()) { 1594 assert(Lod.getImm() == 0); 1595 IntrOpcode = MIPMappingInfo->NONMIP; // set new opcode to variant without _mip 1596 } 1597 } 1598 1599 // Set G16 opcode 1600 if (IsG16 && !IsA16) { 1601 const AMDGPU::MIMGG16MappingInfo *G16MappingInfo = 1602 AMDGPU::getMIMGG16MappingInfo(Intr->BaseOpcode); 1603 assert(G16MappingInfo); 1604 IntrOpcode = G16MappingInfo->G16; // set opcode to variant with _g16 1605 } 1606 1607 // TODO: Check this in verifier. 1608 assert((!IsTexFail || DMaskLanes >= 1) && "should have legalized this"); 1609 1610 bool GLC = false; 1611 bool SLC = false; 1612 bool DLC = false; 1613 bool SCC = false; 1614 if (BaseOpcode->Atomic) { 1615 GLC = true; // TODO no-return optimization 1616 if (!parseCachePolicy( 1617 MI.getOperand(ArgOffset + Intr->CachePolicyIndex).getImm(), nullptr, 1618 &SLC, IsGFX10Plus ? &DLC : nullptr, &SCC)) 1619 return false; 1620 } else { 1621 if (!parseCachePolicy( 1622 MI.getOperand(ArgOffset + Intr->CachePolicyIndex).getImm(), &GLC, 1623 &SLC, IsGFX10Plus ? &DLC : nullptr, &SCC)) 1624 return false; 1625 } 1626 1627 int NumVAddrRegs = 0; 1628 int NumVAddrDwords = 0; 1629 for (unsigned I = Intr->VAddrStart; I < Intr->VAddrEnd; I++) { 1630 // Skip the $noregs and 0s inserted during legalization. 1631 MachineOperand &AddrOp = MI.getOperand(ArgOffset + I); 1632 if (!AddrOp.isReg()) 1633 continue; // XXX - Break? 1634 1635 Register Addr = AddrOp.getReg(); 1636 if (!Addr) 1637 break; 1638 1639 ++NumVAddrRegs; 1640 NumVAddrDwords += (MRI->getType(Addr).getSizeInBits() + 31) / 32; 1641 } 1642 1643 // The legalizer preprocessed the intrinsic arguments. If we aren't using 1644 // NSA, these should have beeen packed into a single value in the first 1645 // address register 1646 const bool UseNSA = NumVAddrRegs != 1 && NumVAddrDwords == NumVAddrRegs; 1647 if (UseNSA && !STI.hasFeature(AMDGPU::FeatureNSAEncoding)) { 1648 LLVM_DEBUG(dbgs() << "Trying to use NSA on non-NSA target\n"); 1649 return false; 1650 } 1651 1652 if (IsTexFail) 1653 ++NumVDataDwords; 1654 1655 int Opcode = -1; 1656 if (IsGFX10Plus) { 1657 Opcode = AMDGPU::getMIMGOpcode(IntrOpcode, 1658 UseNSA ? AMDGPU::MIMGEncGfx10NSA 1659 : AMDGPU::MIMGEncGfx10Default, 1660 NumVDataDwords, NumVAddrDwords); 1661 } else { 1662 if (STI.getGeneration() >= AMDGPUSubtarget::VOLCANIC_ISLANDS) 1663 Opcode = AMDGPU::getMIMGOpcode(IntrOpcode, AMDGPU::MIMGEncGfx8, 1664 NumVDataDwords, NumVAddrDwords); 1665 if (Opcode == -1) 1666 Opcode = AMDGPU::getMIMGOpcode(IntrOpcode, AMDGPU::MIMGEncGfx6, 1667 NumVDataDwords, NumVAddrDwords); 1668 } 1669 assert(Opcode != -1); 1670 1671 auto MIB = BuildMI(*MBB, &MI, DL, TII.get(Opcode)) 1672 .cloneMemRefs(MI); 1673 1674 if (VDataOut) { 1675 if (BaseOpcode->AtomicX2) { 1676 const bool Is64 = MRI->getType(VDataOut).getSizeInBits() == 64; 1677 1678 Register TmpReg = MRI->createVirtualRegister( 1679 Is64 ? &AMDGPU::VReg_128RegClass : &AMDGPU::VReg_64RegClass); 1680 unsigned SubReg = Is64 ? AMDGPU::sub0_sub1 : AMDGPU::sub0; 1681 1682 MIB.addDef(TmpReg); 1683 BuildMI(*MBB, &MI, DL, TII.get(AMDGPU::COPY), VDataOut) 1684 .addReg(TmpReg, RegState::Kill, SubReg); 1685 1686 } else { 1687 MIB.addDef(VDataOut); // vdata output 1688 } 1689 } 1690 1691 if (VDataIn) 1692 MIB.addReg(VDataIn); // vdata input 1693 1694 for (int I = 0; I != NumVAddrRegs; ++I) { 1695 MachineOperand &SrcOp = MI.getOperand(ArgOffset + Intr->VAddrStart + I); 1696 if (SrcOp.isReg()) { 1697 assert(SrcOp.getReg() != 0); 1698 MIB.addReg(SrcOp.getReg()); 1699 } 1700 } 1701 1702 MIB.addReg(MI.getOperand(ArgOffset + Intr->RsrcIndex).getReg()); 1703 if (BaseOpcode->Sampler) 1704 MIB.addReg(MI.getOperand(ArgOffset + Intr->SampIndex).getReg()); 1705 1706 MIB.addImm(DMask); // dmask 1707 1708 if (IsGFX10Plus) 1709 MIB.addImm(DimInfo->Encoding); 1710 MIB.addImm(Unorm); 1711 if (IsGFX10Plus) 1712 MIB.addImm(DLC); 1713 else 1714 MIB.addImm(SCC); 1715 1716 MIB.addImm(GLC); 1717 MIB.addImm(SLC); 1718 MIB.addImm(IsA16 && // a16 or r128 1719 STI.hasFeature(AMDGPU::FeatureR128A16) ? -1 : 0); 1720 if (IsGFX10Plus) 1721 MIB.addImm(IsA16 ? -1 : 0); 1722 1723 MIB.addImm(TFE); // tfe 1724 MIB.addImm(LWE); // lwe 1725 if (!IsGFX10Plus) 1726 MIB.addImm(DimInfo->DA ? -1 : 0); 1727 if (BaseOpcode->HasD16) 1728 MIB.addImm(IsD16 ? -1 : 0); 1729 1730 MI.eraseFromParent(); 1731 return constrainSelectedInstRegOperands(*MIB, TII, TRI, RBI); 1732 } 1733 1734 bool AMDGPUInstructionSelector::selectG_INTRINSIC_W_SIDE_EFFECTS( 1735 MachineInstr &I) const { 1736 unsigned IntrinsicID = I.getIntrinsicID(); 1737 switch (IntrinsicID) { 1738 case Intrinsic::amdgcn_end_cf: 1739 return selectEndCfIntrinsic(I); 1740 case Intrinsic::amdgcn_ds_ordered_add: 1741 case Intrinsic::amdgcn_ds_ordered_swap: 1742 return selectDSOrderedIntrinsic(I, IntrinsicID); 1743 case Intrinsic::amdgcn_ds_gws_init: 1744 case Intrinsic::amdgcn_ds_gws_barrier: 1745 case Intrinsic::amdgcn_ds_gws_sema_v: 1746 case Intrinsic::amdgcn_ds_gws_sema_br: 1747 case Intrinsic::amdgcn_ds_gws_sema_p: 1748 case Intrinsic::amdgcn_ds_gws_sema_release_all: 1749 return selectDSGWSIntrinsic(I, IntrinsicID); 1750 case Intrinsic::amdgcn_ds_append: 1751 return selectDSAppendConsume(I, true); 1752 case Intrinsic::amdgcn_ds_consume: 1753 return selectDSAppendConsume(I, false); 1754 case Intrinsic::amdgcn_s_barrier: 1755 return selectSBarrier(I); 1756 case Intrinsic::amdgcn_global_atomic_fadd: 1757 return selectGlobalAtomicFaddIntrinsic(I); 1758 default: { 1759 return selectImpl(I, *CoverageInfo); 1760 } 1761 } 1762 } 1763 1764 bool AMDGPUInstructionSelector::selectG_SELECT(MachineInstr &I) const { 1765 if (selectImpl(I, *CoverageInfo)) 1766 return true; 1767 1768 MachineBasicBlock *BB = I.getParent(); 1769 const DebugLoc &DL = I.getDebugLoc(); 1770 1771 Register DstReg = I.getOperand(0).getReg(); 1772 unsigned Size = RBI.getSizeInBits(DstReg, *MRI, TRI); 1773 assert(Size <= 32 || Size == 64); 1774 const MachineOperand &CCOp = I.getOperand(1); 1775 Register CCReg = CCOp.getReg(); 1776 if (!isVCC(CCReg, *MRI)) { 1777 unsigned SelectOpcode = Size == 64 ? AMDGPU::S_CSELECT_B64 : 1778 AMDGPU::S_CSELECT_B32; 1779 MachineInstr *CopySCC = BuildMI(*BB, &I, DL, TII.get(AMDGPU::COPY), AMDGPU::SCC) 1780 .addReg(CCReg); 1781 1782 // The generic constrainSelectedInstRegOperands doesn't work for the scc register 1783 // bank, because it does not cover the register class that we used to represent 1784 // for it. So we need to manually set the register class here. 1785 if (!MRI->getRegClassOrNull(CCReg)) 1786 MRI->setRegClass(CCReg, TRI.getConstrainedRegClassForOperand(CCOp, *MRI)); 1787 MachineInstr *Select = BuildMI(*BB, &I, DL, TII.get(SelectOpcode), DstReg) 1788 .add(I.getOperand(2)) 1789 .add(I.getOperand(3)); 1790 1791 bool Ret = constrainSelectedInstRegOperands(*Select, TII, TRI, RBI) | 1792 constrainSelectedInstRegOperands(*CopySCC, TII, TRI, RBI); 1793 I.eraseFromParent(); 1794 return Ret; 1795 } 1796 1797 // Wide VGPR select should have been split in RegBankSelect. 1798 if (Size > 32) 1799 return false; 1800 1801 MachineInstr *Select = 1802 BuildMI(*BB, &I, DL, TII.get(AMDGPU::V_CNDMASK_B32_e64), DstReg) 1803 .addImm(0) 1804 .add(I.getOperand(3)) 1805 .addImm(0) 1806 .add(I.getOperand(2)) 1807 .add(I.getOperand(1)); 1808 1809 bool Ret = constrainSelectedInstRegOperands(*Select, TII, TRI, RBI); 1810 I.eraseFromParent(); 1811 return Ret; 1812 } 1813 1814 static int sizeToSubRegIndex(unsigned Size) { 1815 switch (Size) { 1816 case 32: 1817 return AMDGPU::sub0; 1818 case 64: 1819 return AMDGPU::sub0_sub1; 1820 case 96: 1821 return AMDGPU::sub0_sub1_sub2; 1822 case 128: 1823 return AMDGPU::sub0_sub1_sub2_sub3; 1824 case 256: 1825 return AMDGPU::sub0_sub1_sub2_sub3_sub4_sub5_sub6_sub7; 1826 default: 1827 if (Size < 32) 1828 return AMDGPU::sub0; 1829 if (Size > 256) 1830 return -1; 1831 return sizeToSubRegIndex(PowerOf2Ceil(Size)); 1832 } 1833 } 1834 1835 bool AMDGPUInstructionSelector::selectG_TRUNC(MachineInstr &I) const { 1836 Register DstReg = I.getOperand(0).getReg(); 1837 Register SrcReg = I.getOperand(1).getReg(); 1838 const LLT DstTy = MRI->getType(DstReg); 1839 const LLT SrcTy = MRI->getType(SrcReg); 1840 const LLT S1 = LLT::scalar(1); 1841 1842 const RegisterBank *SrcRB = RBI.getRegBank(SrcReg, *MRI, TRI); 1843 const RegisterBank *DstRB; 1844 if (DstTy == S1) { 1845 // This is a special case. We don't treat s1 for legalization artifacts as 1846 // vcc booleans. 1847 DstRB = SrcRB; 1848 } else { 1849 DstRB = RBI.getRegBank(DstReg, *MRI, TRI); 1850 if (SrcRB != DstRB) 1851 return false; 1852 } 1853 1854 const bool IsVALU = DstRB->getID() == AMDGPU::VGPRRegBankID; 1855 1856 unsigned DstSize = DstTy.getSizeInBits(); 1857 unsigned SrcSize = SrcTy.getSizeInBits(); 1858 1859 const TargetRegisterClass *SrcRC 1860 = TRI.getRegClassForSizeOnBank(SrcSize, *SrcRB, *MRI); 1861 const TargetRegisterClass *DstRC 1862 = TRI.getRegClassForSizeOnBank(DstSize, *DstRB, *MRI); 1863 if (!SrcRC || !DstRC) 1864 return false; 1865 1866 if (!RBI.constrainGenericRegister(SrcReg, *SrcRC, *MRI) || 1867 !RBI.constrainGenericRegister(DstReg, *DstRC, *MRI)) { 1868 LLVM_DEBUG(dbgs() << "Failed to constrain G_TRUNC\n"); 1869 return false; 1870 } 1871 1872 if (DstTy == LLT::vector(2, 16) && SrcTy == LLT::vector(2, 32)) { 1873 MachineBasicBlock *MBB = I.getParent(); 1874 const DebugLoc &DL = I.getDebugLoc(); 1875 1876 Register LoReg = MRI->createVirtualRegister(DstRC); 1877 Register HiReg = MRI->createVirtualRegister(DstRC); 1878 BuildMI(*MBB, I, DL, TII.get(AMDGPU::COPY), LoReg) 1879 .addReg(SrcReg, 0, AMDGPU::sub0); 1880 BuildMI(*MBB, I, DL, TII.get(AMDGPU::COPY), HiReg) 1881 .addReg(SrcReg, 0, AMDGPU::sub1); 1882 1883 if (IsVALU && STI.hasSDWA()) { 1884 // Write the low 16-bits of the high element into the high 16-bits of the 1885 // low element. 1886 MachineInstr *MovSDWA = 1887 BuildMI(*MBB, I, DL, TII.get(AMDGPU::V_MOV_B32_sdwa), DstReg) 1888 .addImm(0) // $src0_modifiers 1889 .addReg(HiReg) // $src0 1890 .addImm(0) // $clamp 1891 .addImm(AMDGPU::SDWA::WORD_1) // $dst_sel 1892 .addImm(AMDGPU::SDWA::UNUSED_PRESERVE) // $dst_unused 1893 .addImm(AMDGPU::SDWA::WORD_0) // $src0_sel 1894 .addReg(LoReg, RegState::Implicit); 1895 MovSDWA->tieOperands(0, MovSDWA->getNumOperands() - 1); 1896 } else { 1897 Register TmpReg0 = MRI->createVirtualRegister(DstRC); 1898 Register TmpReg1 = MRI->createVirtualRegister(DstRC); 1899 Register ImmReg = MRI->createVirtualRegister(DstRC); 1900 if (IsVALU) { 1901 BuildMI(*MBB, I, DL, TII.get(AMDGPU::V_LSHLREV_B32_e64), TmpReg0) 1902 .addImm(16) 1903 .addReg(HiReg); 1904 } else { 1905 BuildMI(*MBB, I, DL, TII.get(AMDGPU::S_LSHL_B32), TmpReg0) 1906 .addReg(HiReg) 1907 .addImm(16); 1908 } 1909 1910 unsigned MovOpc = IsVALU ? AMDGPU::V_MOV_B32_e32 : AMDGPU::S_MOV_B32; 1911 unsigned AndOpc = IsVALU ? AMDGPU::V_AND_B32_e64 : AMDGPU::S_AND_B32; 1912 unsigned OrOpc = IsVALU ? AMDGPU::V_OR_B32_e64 : AMDGPU::S_OR_B32; 1913 1914 BuildMI(*MBB, I, DL, TII.get(MovOpc), ImmReg) 1915 .addImm(0xffff); 1916 BuildMI(*MBB, I, DL, TII.get(AndOpc), TmpReg1) 1917 .addReg(LoReg) 1918 .addReg(ImmReg); 1919 BuildMI(*MBB, I, DL, TII.get(OrOpc), DstReg) 1920 .addReg(TmpReg0) 1921 .addReg(TmpReg1); 1922 } 1923 1924 I.eraseFromParent(); 1925 return true; 1926 } 1927 1928 if (!DstTy.isScalar()) 1929 return false; 1930 1931 if (SrcSize > 32) { 1932 int SubRegIdx = sizeToSubRegIndex(DstSize); 1933 if (SubRegIdx == -1) 1934 return false; 1935 1936 // Deal with weird cases where the class only partially supports the subreg 1937 // index. 1938 const TargetRegisterClass *SrcWithSubRC 1939 = TRI.getSubClassWithSubReg(SrcRC, SubRegIdx); 1940 if (!SrcWithSubRC) 1941 return false; 1942 1943 if (SrcWithSubRC != SrcRC) { 1944 if (!RBI.constrainGenericRegister(SrcReg, *SrcWithSubRC, *MRI)) 1945 return false; 1946 } 1947 1948 I.getOperand(1).setSubReg(SubRegIdx); 1949 } 1950 1951 I.setDesc(TII.get(TargetOpcode::COPY)); 1952 return true; 1953 } 1954 1955 /// \returns true if a bitmask for \p Size bits will be an inline immediate. 1956 static bool shouldUseAndMask(unsigned Size, unsigned &Mask) { 1957 Mask = maskTrailingOnes<unsigned>(Size); 1958 int SignedMask = static_cast<int>(Mask); 1959 return SignedMask >= -16 && SignedMask <= 64; 1960 } 1961 1962 // Like RegisterBankInfo::getRegBank, but don't assume vcc for s1. 1963 const RegisterBank *AMDGPUInstructionSelector::getArtifactRegBank( 1964 Register Reg, const MachineRegisterInfo &MRI, 1965 const TargetRegisterInfo &TRI) const { 1966 const RegClassOrRegBank &RegClassOrBank = MRI.getRegClassOrRegBank(Reg); 1967 if (auto *RB = RegClassOrBank.dyn_cast<const RegisterBank *>()) 1968 return RB; 1969 1970 // Ignore the type, since we don't use vcc in artifacts. 1971 if (auto *RC = RegClassOrBank.dyn_cast<const TargetRegisterClass *>()) 1972 return &RBI.getRegBankFromRegClass(*RC, LLT()); 1973 return nullptr; 1974 } 1975 1976 bool AMDGPUInstructionSelector::selectG_SZA_EXT(MachineInstr &I) const { 1977 bool InReg = I.getOpcode() == AMDGPU::G_SEXT_INREG; 1978 bool Signed = I.getOpcode() == AMDGPU::G_SEXT || InReg; 1979 const DebugLoc &DL = I.getDebugLoc(); 1980 MachineBasicBlock &MBB = *I.getParent(); 1981 const Register DstReg = I.getOperand(0).getReg(); 1982 const Register SrcReg = I.getOperand(1).getReg(); 1983 1984 const LLT DstTy = MRI->getType(DstReg); 1985 const LLT SrcTy = MRI->getType(SrcReg); 1986 const unsigned SrcSize = I.getOpcode() == AMDGPU::G_SEXT_INREG ? 1987 I.getOperand(2).getImm() : SrcTy.getSizeInBits(); 1988 const unsigned DstSize = DstTy.getSizeInBits(); 1989 if (!DstTy.isScalar()) 1990 return false; 1991 1992 // Artifact casts should never use vcc. 1993 const RegisterBank *SrcBank = getArtifactRegBank(SrcReg, *MRI, TRI); 1994 1995 // FIXME: This should probably be illegal and split earlier. 1996 if (I.getOpcode() == AMDGPU::G_ANYEXT) { 1997 if (DstSize <= 32) 1998 return selectCOPY(I); 1999 2000 const TargetRegisterClass *SrcRC = 2001 TRI.getRegClassForTypeOnBank(SrcTy, *SrcBank, *MRI); 2002 const RegisterBank *DstBank = RBI.getRegBank(DstReg, *MRI, TRI); 2003 const TargetRegisterClass *DstRC = 2004 TRI.getRegClassForSizeOnBank(DstSize, *DstBank, *MRI); 2005 2006 Register UndefReg = MRI->createVirtualRegister(SrcRC); 2007 BuildMI(MBB, I, DL, TII.get(AMDGPU::IMPLICIT_DEF), UndefReg); 2008 BuildMI(MBB, I, DL, TII.get(AMDGPU::REG_SEQUENCE), DstReg) 2009 .addReg(SrcReg) 2010 .addImm(AMDGPU::sub0) 2011 .addReg(UndefReg) 2012 .addImm(AMDGPU::sub1); 2013 I.eraseFromParent(); 2014 2015 return RBI.constrainGenericRegister(DstReg, *DstRC, *MRI) && 2016 RBI.constrainGenericRegister(SrcReg, *SrcRC, *MRI); 2017 } 2018 2019 if (SrcBank->getID() == AMDGPU::VGPRRegBankID && DstSize <= 32) { 2020 // 64-bit should have been split up in RegBankSelect 2021 2022 // Try to use an and with a mask if it will save code size. 2023 unsigned Mask; 2024 if (!Signed && shouldUseAndMask(SrcSize, Mask)) { 2025 MachineInstr *ExtI = 2026 BuildMI(MBB, I, DL, TII.get(AMDGPU::V_AND_B32_e32), DstReg) 2027 .addImm(Mask) 2028 .addReg(SrcReg); 2029 I.eraseFromParent(); 2030 return constrainSelectedInstRegOperands(*ExtI, TII, TRI, RBI); 2031 } 2032 2033 const unsigned BFE = Signed ? AMDGPU::V_BFE_I32_e64 : AMDGPU::V_BFE_U32_e64; 2034 MachineInstr *ExtI = 2035 BuildMI(MBB, I, DL, TII.get(BFE), DstReg) 2036 .addReg(SrcReg) 2037 .addImm(0) // Offset 2038 .addImm(SrcSize); // Width 2039 I.eraseFromParent(); 2040 return constrainSelectedInstRegOperands(*ExtI, TII, TRI, RBI); 2041 } 2042 2043 if (SrcBank->getID() == AMDGPU::SGPRRegBankID && DstSize <= 64) { 2044 const TargetRegisterClass &SrcRC = InReg && DstSize > 32 ? 2045 AMDGPU::SReg_64RegClass : AMDGPU::SReg_32RegClass; 2046 if (!RBI.constrainGenericRegister(SrcReg, SrcRC, *MRI)) 2047 return false; 2048 2049 if (Signed && DstSize == 32 && (SrcSize == 8 || SrcSize == 16)) { 2050 const unsigned SextOpc = SrcSize == 8 ? 2051 AMDGPU::S_SEXT_I32_I8 : AMDGPU::S_SEXT_I32_I16; 2052 BuildMI(MBB, I, DL, TII.get(SextOpc), DstReg) 2053 .addReg(SrcReg); 2054 I.eraseFromParent(); 2055 return RBI.constrainGenericRegister(DstReg, AMDGPU::SReg_32RegClass, *MRI); 2056 } 2057 2058 const unsigned BFE64 = Signed ? AMDGPU::S_BFE_I64 : AMDGPU::S_BFE_U64; 2059 const unsigned BFE32 = Signed ? AMDGPU::S_BFE_I32 : AMDGPU::S_BFE_U32; 2060 2061 // Scalar BFE is encoded as S1[5:0] = offset, S1[22:16]= width. 2062 if (DstSize > 32 && (SrcSize <= 32 || InReg)) { 2063 // We need a 64-bit register source, but the high bits don't matter. 2064 Register ExtReg = MRI->createVirtualRegister(&AMDGPU::SReg_64RegClass); 2065 Register UndefReg = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass); 2066 unsigned SubReg = InReg ? AMDGPU::sub0 : 0; 2067 2068 BuildMI(MBB, I, DL, TII.get(AMDGPU::IMPLICIT_DEF), UndefReg); 2069 BuildMI(MBB, I, DL, TII.get(AMDGPU::REG_SEQUENCE), ExtReg) 2070 .addReg(SrcReg, 0, SubReg) 2071 .addImm(AMDGPU::sub0) 2072 .addReg(UndefReg) 2073 .addImm(AMDGPU::sub1); 2074 2075 BuildMI(MBB, I, DL, TII.get(BFE64), DstReg) 2076 .addReg(ExtReg) 2077 .addImm(SrcSize << 16); 2078 2079 I.eraseFromParent(); 2080 return RBI.constrainGenericRegister(DstReg, AMDGPU::SReg_64RegClass, *MRI); 2081 } 2082 2083 unsigned Mask; 2084 if (!Signed && shouldUseAndMask(SrcSize, Mask)) { 2085 BuildMI(MBB, I, DL, TII.get(AMDGPU::S_AND_B32), DstReg) 2086 .addReg(SrcReg) 2087 .addImm(Mask); 2088 } else { 2089 BuildMI(MBB, I, DL, TII.get(BFE32), DstReg) 2090 .addReg(SrcReg) 2091 .addImm(SrcSize << 16); 2092 } 2093 2094 I.eraseFromParent(); 2095 return RBI.constrainGenericRegister(DstReg, AMDGPU::SReg_32RegClass, *MRI); 2096 } 2097 2098 return false; 2099 } 2100 2101 bool AMDGPUInstructionSelector::selectG_CONSTANT(MachineInstr &I) const { 2102 MachineBasicBlock *BB = I.getParent(); 2103 MachineOperand &ImmOp = I.getOperand(1); 2104 Register DstReg = I.getOperand(0).getReg(); 2105 unsigned Size = MRI->getType(DstReg).getSizeInBits(); 2106 2107 // The AMDGPU backend only supports Imm operands and not CImm or FPImm. 2108 if (ImmOp.isFPImm()) { 2109 const APInt &Imm = ImmOp.getFPImm()->getValueAPF().bitcastToAPInt(); 2110 ImmOp.ChangeToImmediate(Imm.getZExtValue()); 2111 } else if (ImmOp.isCImm()) { 2112 ImmOp.ChangeToImmediate(ImmOp.getCImm()->getSExtValue()); 2113 } else { 2114 llvm_unreachable("Not supported by g_constants"); 2115 } 2116 2117 const RegisterBank *DstRB = RBI.getRegBank(DstReg, *MRI, TRI); 2118 const bool IsSgpr = DstRB->getID() == AMDGPU::SGPRRegBankID; 2119 2120 unsigned Opcode; 2121 if (DstRB->getID() == AMDGPU::VCCRegBankID) { 2122 Opcode = STI.isWave32() ? AMDGPU::S_MOV_B32 : AMDGPU::S_MOV_B64; 2123 } else { 2124 Opcode = IsSgpr ? AMDGPU::S_MOV_B32 : AMDGPU::V_MOV_B32_e32; 2125 2126 // We should never produce s1 values on banks other than VCC. If the user of 2127 // this already constrained the register, we may incorrectly think it's VCC 2128 // if it wasn't originally. 2129 if (Size == 1) 2130 return false; 2131 } 2132 2133 if (Size != 64) { 2134 I.setDesc(TII.get(Opcode)); 2135 I.addImplicitDefUseOperands(*MF); 2136 return constrainSelectedInstRegOperands(I, TII, TRI, RBI); 2137 } 2138 2139 const DebugLoc &DL = I.getDebugLoc(); 2140 2141 APInt Imm(Size, I.getOperand(1).getImm()); 2142 2143 MachineInstr *ResInst; 2144 if (IsSgpr && TII.isInlineConstant(Imm)) { 2145 ResInst = BuildMI(*BB, &I, DL, TII.get(AMDGPU::S_MOV_B64), DstReg) 2146 .addImm(I.getOperand(1).getImm()); 2147 } else { 2148 const TargetRegisterClass *RC = IsSgpr ? 2149 &AMDGPU::SReg_32RegClass : &AMDGPU::VGPR_32RegClass; 2150 Register LoReg = MRI->createVirtualRegister(RC); 2151 Register HiReg = MRI->createVirtualRegister(RC); 2152 2153 BuildMI(*BB, &I, DL, TII.get(Opcode), LoReg) 2154 .addImm(Imm.trunc(32).getZExtValue()); 2155 2156 BuildMI(*BB, &I, DL, TII.get(Opcode), HiReg) 2157 .addImm(Imm.ashr(32).getZExtValue()); 2158 2159 ResInst = BuildMI(*BB, &I, DL, TII.get(AMDGPU::REG_SEQUENCE), DstReg) 2160 .addReg(LoReg) 2161 .addImm(AMDGPU::sub0) 2162 .addReg(HiReg) 2163 .addImm(AMDGPU::sub1); 2164 } 2165 2166 // We can't call constrainSelectedInstRegOperands here, because it doesn't 2167 // work for target independent opcodes 2168 I.eraseFromParent(); 2169 const TargetRegisterClass *DstRC = 2170 TRI.getConstrainedRegClassForOperand(ResInst->getOperand(0), *MRI); 2171 if (!DstRC) 2172 return true; 2173 return RBI.constrainGenericRegister(DstReg, *DstRC, *MRI); 2174 } 2175 2176 bool AMDGPUInstructionSelector::selectG_FNEG(MachineInstr &MI) const { 2177 // Only manually handle the f64 SGPR case. 2178 // 2179 // FIXME: This is a workaround for 2.5 different tablegen problems. Because 2180 // the bit ops theoretically have a second result due to the implicit def of 2181 // SCC, the GlobalISelEmitter is overly conservative and rejects it. Fixing 2182 // that is easy by disabling the check. The result works, but uses a 2183 // nonsensical sreg32orlds_and_sreg_1 regclass. 2184 // 2185 // The DAG emitter is more problematic, and incorrectly adds both S_XOR_B32 to 2186 // the variadic REG_SEQUENCE operands. 2187 2188 Register Dst = MI.getOperand(0).getReg(); 2189 const RegisterBank *DstRB = RBI.getRegBank(Dst, *MRI, TRI); 2190 if (DstRB->getID() != AMDGPU::SGPRRegBankID || 2191 MRI->getType(Dst) != LLT::scalar(64)) 2192 return false; 2193 2194 Register Src = MI.getOperand(1).getReg(); 2195 MachineInstr *Fabs = getOpcodeDef(TargetOpcode::G_FABS, Src, *MRI); 2196 if (Fabs) 2197 Src = Fabs->getOperand(1).getReg(); 2198 2199 if (!RBI.constrainGenericRegister(Src, AMDGPU::SReg_64RegClass, *MRI) || 2200 !RBI.constrainGenericRegister(Dst, AMDGPU::SReg_64RegClass, *MRI)) 2201 return false; 2202 2203 MachineBasicBlock *BB = MI.getParent(); 2204 const DebugLoc &DL = MI.getDebugLoc(); 2205 Register LoReg = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass); 2206 Register HiReg = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass); 2207 Register ConstReg = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass); 2208 Register OpReg = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass); 2209 2210 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::COPY), LoReg) 2211 .addReg(Src, 0, AMDGPU::sub0); 2212 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::COPY), HiReg) 2213 .addReg(Src, 0, AMDGPU::sub1); 2214 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::S_MOV_B32), ConstReg) 2215 .addImm(0x80000000); 2216 2217 // Set or toggle sign bit. 2218 unsigned Opc = Fabs ? AMDGPU::S_OR_B32 : AMDGPU::S_XOR_B32; 2219 BuildMI(*BB, &MI, DL, TII.get(Opc), OpReg) 2220 .addReg(HiReg) 2221 .addReg(ConstReg); 2222 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::REG_SEQUENCE), Dst) 2223 .addReg(LoReg) 2224 .addImm(AMDGPU::sub0) 2225 .addReg(OpReg) 2226 .addImm(AMDGPU::sub1); 2227 MI.eraseFromParent(); 2228 return true; 2229 } 2230 2231 // FIXME: This is a workaround for the same tablegen problems as G_FNEG 2232 bool AMDGPUInstructionSelector::selectG_FABS(MachineInstr &MI) const { 2233 Register Dst = MI.getOperand(0).getReg(); 2234 const RegisterBank *DstRB = RBI.getRegBank(Dst, *MRI, TRI); 2235 if (DstRB->getID() != AMDGPU::SGPRRegBankID || 2236 MRI->getType(Dst) != LLT::scalar(64)) 2237 return false; 2238 2239 Register Src = MI.getOperand(1).getReg(); 2240 MachineBasicBlock *BB = MI.getParent(); 2241 const DebugLoc &DL = MI.getDebugLoc(); 2242 Register LoReg = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass); 2243 Register HiReg = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass); 2244 Register ConstReg = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass); 2245 Register OpReg = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass); 2246 2247 if (!RBI.constrainGenericRegister(Src, AMDGPU::SReg_64RegClass, *MRI) || 2248 !RBI.constrainGenericRegister(Dst, AMDGPU::SReg_64RegClass, *MRI)) 2249 return false; 2250 2251 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::COPY), LoReg) 2252 .addReg(Src, 0, AMDGPU::sub0); 2253 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::COPY), HiReg) 2254 .addReg(Src, 0, AMDGPU::sub1); 2255 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::S_MOV_B32), ConstReg) 2256 .addImm(0x7fffffff); 2257 2258 // Clear sign bit. 2259 // TODO: Should this used S_BITSET0_*? 2260 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::S_AND_B32), OpReg) 2261 .addReg(HiReg) 2262 .addReg(ConstReg); 2263 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::REG_SEQUENCE), Dst) 2264 .addReg(LoReg) 2265 .addImm(AMDGPU::sub0) 2266 .addReg(OpReg) 2267 .addImm(AMDGPU::sub1); 2268 2269 MI.eraseFromParent(); 2270 return true; 2271 } 2272 2273 static bool isConstant(const MachineInstr &MI) { 2274 return MI.getOpcode() == TargetOpcode::G_CONSTANT; 2275 } 2276 2277 void AMDGPUInstructionSelector::getAddrModeInfo(const MachineInstr &Load, 2278 const MachineRegisterInfo &MRI, SmallVectorImpl<GEPInfo> &AddrInfo) const { 2279 2280 const MachineInstr *PtrMI = MRI.getUniqueVRegDef(Load.getOperand(1).getReg()); 2281 2282 assert(PtrMI); 2283 2284 if (PtrMI->getOpcode() != TargetOpcode::G_PTR_ADD) 2285 return; 2286 2287 GEPInfo GEPInfo(*PtrMI); 2288 2289 for (unsigned i = 1; i != 3; ++i) { 2290 const MachineOperand &GEPOp = PtrMI->getOperand(i); 2291 const MachineInstr *OpDef = MRI.getUniqueVRegDef(GEPOp.getReg()); 2292 assert(OpDef); 2293 if (i == 2 && isConstant(*OpDef)) { 2294 // TODO: Could handle constant base + variable offset, but a combine 2295 // probably should have commuted it. 2296 assert(GEPInfo.Imm == 0); 2297 GEPInfo.Imm = OpDef->getOperand(1).getCImm()->getSExtValue(); 2298 continue; 2299 } 2300 const RegisterBank *OpBank = RBI.getRegBank(GEPOp.getReg(), MRI, TRI); 2301 if (OpBank->getID() == AMDGPU::SGPRRegBankID) 2302 GEPInfo.SgprParts.push_back(GEPOp.getReg()); 2303 else 2304 GEPInfo.VgprParts.push_back(GEPOp.getReg()); 2305 } 2306 2307 AddrInfo.push_back(GEPInfo); 2308 getAddrModeInfo(*PtrMI, MRI, AddrInfo); 2309 } 2310 2311 bool AMDGPUInstructionSelector::isSGPR(Register Reg) const { 2312 return RBI.getRegBank(Reg, *MRI, TRI)->getID() == AMDGPU::SGPRRegBankID; 2313 } 2314 2315 bool AMDGPUInstructionSelector::isInstrUniform(const MachineInstr &MI) const { 2316 if (!MI.hasOneMemOperand()) 2317 return false; 2318 2319 const MachineMemOperand *MMO = *MI.memoperands_begin(); 2320 const Value *Ptr = MMO->getValue(); 2321 2322 // UndefValue means this is a load of a kernel input. These are uniform. 2323 // Sometimes LDS instructions have constant pointers. 2324 // If Ptr is null, then that means this mem operand contains a 2325 // PseudoSourceValue like GOT. 2326 if (!Ptr || isa<UndefValue>(Ptr) || isa<Argument>(Ptr) || 2327 isa<Constant>(Ptr) || isa<GlobalValue>(Ptr)) 2328 return true; 2329 2330 if (MMO->getAddrSpace() == AMDGPUAS::CONSTANT_ADDRESS_32BIT) 2331 return true; 2332 2333 const Instruction *I = dyn_cast<Instruction>(Ptr); 2334 return I && I->getMetadata("amdgpu.uniform"); 2335 } 2336 2337 bool AMDGPUInstructionSelector::hasVgprParts(ArrayRef<GEPInfo> AddrInfo) const { 2338 for (const GEPInfo &GEPInfo : AddrInfo) { 2339 if (!GEPInfo.VgprParts.empty()) 2340 return true; 2341 } 2342 return false; 2343 } 2344 2345 void AMDGPUInstructionSelector::initM0(MachineInstr &I) const { 2346 const LLT PtrTy = MRI->getType(I.getOperand(1).getReg()); 2347 unsigned AS = PtrTy.getAddressSpace(); 2348 if ((AS == AMDGPUAS::LOCAL_ADDRESS || AS == AMDGPUAS::REGION_ADDRESS) && 2349 STI.ldsRequiresM0Init()) { 2350 MachineBasicBlock *BB = I.getParent(); 2351 2352 // If DS instructions require M0 initializtion, insert it before selecting. 2353 BuildMI(*BB, &I, I.getDebugLoc(), TII.get(AMDGPU::S_MOV_B32), AMDGPU::M0) 2354 .addImm(-1); 2355 } 2356 } 2357 2358 bool AMDGPUInstructionSelector::selectG_LOAD_STORE_ATOMICRMW( 2359 MachineInstr &I) const { 2360 initM0(I); 2361 return selectImpl(I, *CoverageInfo); 2362 } 2363 2364 // TODO: No rtn optimization. 2365 bool AMDGPUInstructionSelector::selectG_AMDGPU_ATOMIC_CMPXCHG( 2366 MachineInstr &MI) const { 2367 Register PtrReg = MI.getOperand(1).getReg(); 2368 const LLT PtrTy = MRI->getType(PtrReg); 2369 if (PtrTy.getAddressSpace() == AMDGPUAS::FLAT_ADDRESS || 2370 STI.useFlatForGlobal()) 2371 return selectImpl(MI, *CoverageInfo); 2372 2373 Register DstReg = MI.getOperand(0).getReg(); 2374 const LLT Ty = MRI->getType(DstReg); 2375 const bool Is64 = Ty.getSizeInBits() == 64; 2376 const unsigned SubReg = Is64 ? AMDGPU::sub0_sub1 : AMDGPU::sub0; 2377 Register TmpReg = MRI->createVirtualRegister( 2378 Is64 ? &AMDGPU::VReg_128RegClass : &AMDGPU::VReg_64RegClass); 2379 2380 const DebugLoc &DL = MI.getDebugLoc(); 2381 MachineBasicBlock *BB = MI.getParent(); 2382 2383 Register VAddr, RSrcReg, SOffset; 2384 int64_t Offset = 0; 2385 2386 unsigned Opcode; 2387 if (selectMUBUFOffsetImpl(MI.getOperand(1), RSrcReg, SOffset, Offset)) { 2388 Opcode = Is64 ? AMDGPU::BUFFER_ATOMIC_CMPSWAP_X2_OFFSET_RTN : 2389 AMDGPU::BUFFER_ATOMIC_CMPSWAP_OFFSET_RTN; 2390 } else if (selectMUBUFAddr64Impl(MI.getOperand(1), VAddr, 2391 RSrcReg, SOffset, Offset)) { 2392 Opcode = Is64 ? AMDGPU::BUFFER_ATOMIC_CMPSWAP_X2_ADDR64_RTN : 2393 AMDGPU::BUFFER_ATOMIC_CMPSWAP_ADDR64_RTN; 2394 } else 2395 return selectImpl(MI, *CoverageInfo); 2396 2397 auto MIB = BuildMI(*BB, &MI, DL, TII.get(Opcode), TmpReg) 2398 .addReg(MI.getOperand(2).getReg()); 2399 2400 if (VAddr) 2401 MIB.addReg(VAddr); 2402 2403 MIB.addReg(RSrcReg); 2404 if (SOffset) 2405 MIB.addReg(SOffset); 2406 else 2407 MIB.addImm(0); 2408 2409 MIB.addImm(Offset); 2410 MIB.addImm(1); // glc 2411 MIB.addImm(0); // slc 2412 MIB.cloneMemRefs(MI); 2413 2414 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::COPY), DstReg) 2415 .addReg(TmpReg, RegState::Kill, SubReg); 2416 2417 MI.eraseFromParent(); 2418 2419 MRI->setRegClass( 2420 DstReg, Is64 ? &AMDGPU::VReg_64RegClass : &AMDGPU::VGPR_32RegClass); 2421 return constrainSelectedInstRegOperands(*MIB, TII, TRI, RBI); 2422 } 2423 2424 bool AMDGPUInstructionSelector::selectG_BRCOND(MachineInstr &I) const { 2425 MachineBasicBlock *BB = I.getParent(); 2426 MachineOperand &CondOp = I.getOperand(0); 2427 Register CondReg = CondOp.getReg(); 2428 const DebugLoc &DL = I.getDebugLoc(); 2429 2430 unsigned BrOpcode; 2431 Register CondPhysReg; 2432 const TargetRegisterClass *ConstrainRC; 2433 2434 // In SelectionDAG, we inspect the IR block for uniformity metadata to decide 2435 // whether the branch is uniform when selecting the instruction. In 2436 // GlobalISel, we should push that decision into RegBankSelect. Assume for now 2437 // RegBankSelect knows what it's doing if the branch condition is scc, even 2438 // though it currently does not. 2439 if (!isVCC(CondReg, *MRI)) { 2440 if (MRI->getType(CondReg) != LLT::scalar(32)) 2441 return false; 2442 2443 CondPhysReg = AMDGPU::SCC; 2444 BrOpcode = AMDGPU::S_CBRANCH_SCC1; 2445 ConstrainRC = &AMDGPU::SReg_32RegClass; 2446 } else { 2447 // FIXME: Do we have to insert an and with exec here, like in SelectionDAG? 2448 // We sort of know that a VCC producer based on the register bank, that ands 2449 // inactive lanes with 0. What if there was a logical operation with vcc 2450 // producers in different blocks/with different exec masks? 2451 // FIXME: Should scc->vcc copies and with exec? 2452 CondPhysReg = TRI.getVCC(); 2453 BrOpcode = AMDGPU::S_CBRANCH_VCCNZ; 2454 ConstrainRC = TRI.getBoolRC(); 2455 } 2456 2457 if (!MRI->getRegClassOrNull(CondReg)) 2458 MRI->setRegClass(CondReg, ConstrainRC); 2459 2460 BuildMI(*BB, &I, DL, TII.get(AMDGPU::COPY), CondPhysReg) 2461 .addReg(CondReg); 2462 BuildMI(*BB, &I, DL, TII.get(BrOpcode)) 2463 .addMBB(I.getOperand(1).getMBB()); 2464 2465 I.eraseFromParent(); 2466 return true; 2467 } 2468 2469 bool AMDGPUInstructionSelector::selectG_GLOBAL_VALUE( 2470 MachineInstr &I) const { 2471 Register DstReg = I.getOperand(0).getReg(); 2472 const RegisterBank *DstRB = RBI.getRegBank(DstReg, *MRI, TRI); 2473 const bool IsVGPR = DstRB->getID() == AMDGPU::VGPRRegBankID; 2474 I.setDesc(TII.get(IsVGPR ? AMDGPU::V_MOV_B32_e32 : AMDGPU::S_MOV_B32)); 2475 if (IsVGPR) 2476 I.addOperand(*MF, MachineOperand::CreateReg(AMDGPU::EXEC, false, true)); 2477 2478 return RBI.constrainGenericRegister( 2479 DstReg, IsVGPR ? AMDGPU::VGPR_32RegClass : AMDGPU::SReg_32RegClass, *MRI); 2480 } 2481 2482 bool AMDGPUInstructionSelector::selectG_PTRMASK(MachineInstr &I) const { 2483 Register DstReg = I.getOperand(0).getReg(); 2484 Register SrcReg = I.getOperand(1).getReg(); 2485 Register MaskReg = I.getOperand(2).getReg(); 2486 LLT Ty = MRI->getType(DstReg); 2487 LLT MaskTy = MRI->getType(MaskReg); 2488 2489 const RegisterBank *DstRB = RBI.getRegBank(DstReg, *MRI, TRI); 2490 const RegisterBank *SrcRB = RBI.getRegBank(SrcReg, *MRI, TRI); 2491 const RegisterBank *MaskRB = RBI.getRegBank(MaskReg, *MRI, TRI); 2492 const bool IsVGPR = DstRB->getID() == AMDGPU::VGPRRegBankID; 2493 if (DstRB != SrcRB) // Should only happen for hand written MIR. 2494 return false; 2495 2496 unsigned NewOpc = IsVGPR ? AMDGPU::V_AND_B32_e64 : AMDGPU::S_AND_B32; 2497 const TargetRegisterClass &RegRC 2498 = IsVGPR ? AMDGPU::VGPR_32RegClass : AMDGPU::SReg_32RegClass; 2499 2500 const TargetRegisterClass *DstRC = TRI.getRegClassForTypeOnBank(Ty, *DstRB, 2501 *MRI); 2502 const TargetRegisterClass *SrcRC = TRI.getRegClassForTypeOnBank(Ty, *SrcRB, 2503 *MRI); 2504 const TargetRegisterClass *MaskRC = 2505 TRI.getRegClassForTypeOnBank(MaskTy, *MaskRB, *MRI); 2506 2507 if (!RBI.constrainGenericRegister(DstReg, *DstRC, *MRI) || 2508 !RBI.constrainGenericRegister(SrcReg, *SrcRC, *MRI) || 2509 !RBI.constrainGenericRegister(MaskReg, *MaskRC, *MRI)) 2510 return false; 2511 2512 MachineBasicBlock *BB = I.getParent(); 2513 const DebugLoc &DL = I.getDebugLoc(); 2514 if (Ty.getSizeInBits() == 32) { 2515 assert(MaskTy.getSizeInBits() == 32 && 2516 "ptrmask should have been narrowed during legalize"); 2517 2518 BuildMI(*BB, &I, DL, TII.get(NewOpc), DstReg) 2519 .addReg(SrcReg) 2520 .addReg(MaskReg); 2521 I.eraseFromParent(); 2522 return true; 2523 } 2524 2525 Register HiReg = MRI->createVirtualRegister(&RegRC); 2526 Register LoReg = MRI->createVirtualRegister(&RegRC); 2527 2528 // Extract the subregisters from the source pointer. 2529 BuildMI(*BB, &I, DL, TII.get(AMDGPU::COPY), LoReg) 2530 .addReg(SrcReg, 0, AMDGPU::sub0); 2531 BuildMI(*BB, &I, DL, TII.get(AMDGPU::COPY), HiReg) 2532 .addReg(SrcReg, 0, AMDGPU::sub1); 2533 2534 Register MaskedLo, MaskedHi; 2535 2536 // Try to avoid emitting a bit operation when we only need to touch half of 2537 // the 64-bit pointer. 2538 APInt MaskOnes = KnownBits->getKnownOnes(MaskReg).zextOrSelf(64); 2539 2540 const APInt MaskHi32 = APInt::getHighBitsSet(64, 32); 2541 const APInt MaskLo32 = APInt::getLowBitsSet(64, 32); 2542 if ((MaskOnes & MaskLo32) == MaskLo32) { 2543 // If all the bits in the low half are 1, we only need a copy for it. 2544 MaskedLo = LoReg; 2545 } else { 2546 // Extract the mask subregister and apply the and. 2547 Register MaskLo = MRI->createVirtualRegister(&RegRC); 2548 MaskedLo = MRI->createVirtualRegister(&RegRC); 2549 2550 BuildMI(*BB, &I, DL, TII.get(AMDGPU::COPY), MaskLo) 2551 .addReg(MaskReg, 0, AMDGPU::sub0); 2552 BuildMI(*BB, &I, DL, TII.get(NewOpc), MaskedLo) 2553 .addReg(LoReg) 2554 .addReg(MaskLo); 2555 } 2556 2557 if ((MaskOnes & MaskHi32) == MaskHi32) { 2558 // If all the bits in the high half are 1, we only need a copy for it. 2559 MaskedHi = HiReg; 2560 } else { 2561 Register MaskHi = MRI->createVirtualRegister(&RegRC); 2562 MaskedHi = MRI->createVirtualRegister(&RegRC); 2563 2564 BuildMI(*BB, &I, DL, TII.get(AMDGPU::COPY), MaskHi) 2565 .addReg(MaskReg, 0, AMDGPU::sub1); 2566 BuildMI(*BB, &I, DL, TII.get(NewOpc), MaskedHi) 2567 .addReg(HiReg) 2568 .addReg(MaskHi); 2569 } 2570 2571 BuildMI(*BB, &I, DL, TII.get(AMDGPU::REG_SEQUENCE), DstReg) 2572 .addReg(MaskedLo) 2573 .addImm(AMDGPU::sub0) 2574 .addReg(MaskedHi) 2575 .addImm(AMDGPU::sub1); 2576 I.eraseFromParent(); 2577 return true; 2578 } 2579 2580 /// Return the register to use for the index value, and the subregister to use 2581 /// for the indirectly accessed register. 2582 static std::pair<Register, unsigned> 2583 computeIndirectRegIndex(MachineRegisterInfo &MRI, 2584 const SIRegisterInfo &TRI, 2585 const TargetRegisterClass *SuperRC, 2586 Register IdxReg, 2587 unsigned EltSize) { 2588 Register IdxBaseReg; 2589 int Offset; 2590 2591 std::tie(IdxBaseReg, Offset) = AMDGPU::getBaseWithConstantOffset(MRI, IdxReg); 2592 if (IdxBaseReg == AMDGPU::NoRegister) { 2593 // This will happen if the index is a known constant. This should ordinarily 2594 // be legalized out, but handle it as a register just in case. 2595 assert(Offset == 0); 2596 IdxBaseReg = IdxReg; 2597 } 2598 2599 ArrayRef<int16_t> SubRegs = TRI.getRegSplitParts(SuperRC, EltSize); 2600 2601 // Skip out of bounds offsets, or else we would end up using an undefined 2602 // register. 2603 if (static_cast<unsigned>(Offset) >= SubRegs.size()) 2604 return std::make_pair(IdxReg, SubRegs[0]); 2605 return std::make_pair(IdxBaseReg, SubRegs[Offset]); 2606 } 2607 2608 bool AMDGPUInstructionSelector::selectG_EXTRACT_VECTOR_ELT( 2609 MachineInstr &MI) const { 2610 Register DstReg = MI.getOperand(0).getReg(); 2611 Register SrcReg = MI.getOperand(1).getReg(); 2612 Register IdxReg = MI.getOperand(2).getReg(); 2613 2614 LLT DstTy = MRI->getType(DstReg); 2615 LLT SrcTy = MRI->getType(SrcReg); 2616 2617 const RegisterBank *DstRB = RBI.getRegBank(DstReg, *MRI, TRI); 2618 const RegisterBank *SrcRB = RBI.getRegBank(SrcReg, *MRI, TRI); 2619 const RegisterBank *IdxRB = RBI.getRegBank(IdxReg, *MRI, TRI); 2620 2621 // The index must be scalar. If it wasn't RegBankSelect should have moved this 2622 // into a waterfall loop. 2623 if (IdxRB->getID() != AMDGPU::SGPRRegBankID) 2624 return false; 2625 2626 const TargetRegisterClass *SrcRC = TRI.getRegClassForTypeOnBank(SrcTy, *SrcRB, 2627 *MRI); 2628 const TargetRegisterClass *DstRC = TRI.getRegClassForTypeOnBank(DstTy, *DstRB, 2629 *MRI); 2630 if (!SrcRC || !DstRC) 2631 return false; 2632 if (!RBI.constrainGenericRegister(SrcReg, *SrcRC, *MRI) || 2633 !RBI.constrainGenericRegister(DstReg, *DstRC, *MRI) || 2634 !RBI.constrainGenericRegister(IdxReg, AMDGPU::SReg_32RegClass, *MRI)) 2635 return false; 2636 2637 MachineBasicBlock *BB = MI.getParent(); 2638 const DebugLoc &DL = MI.getDebugLoc(); 2639 const bool Is64 = DstTy.getSizeInBits() == 64; 2640 2641 unsigned SubReg; 2642 std::tie(IdxReg, SubReg) = computeIndirectRegIndex(*MRI, TRI, SrcRC, IdxReg, 2643 DstTy.getSizeInBits() / 8); 2644 2645 if (SrcRB->getID() == AMDGPU::SGPRRegBankID) { 2646 if (DstTy.getSizeInBits() != 32 && !Is64) 2647 return false; 2648 2649 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::COPY), AMDGPU::M0) 2650 .addReg(IdxReg); 2651 2652 unsigned Opc = Is64 ? AMDGPU::S_MOVRELS_B64 : AMDGPU::S_MOVRELS_B32; 2653 BuildMI(*BB, &MI, DL, TII.get(Opc), DstReg) 2654 .addReg(SrcReg, 0, SubReg) 2655 .addReg(SrcReg, RegState::Implicit); 2656 MI.eraseFromParent(); 2657 return true; 2658 } 2659 2660 if (SrcRB->getID() != AMDGPU::VGPRRegBankID || DstTy.getSizeInBits() != 32) 2661 return false; 2662 2663 if (!STI.useVGPRIndexMode()) { 2664 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::COPY), AMDGPU::M0) 2665 .addReg(IdxReg); 2666 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::V_MOVRELS_B32_e32), DstReg) 2667 .addReg(SrcReg, 0, SubReg) 2668 .addReg(SrcReg, RegState::Implicit); 2669 MI.eraseFromParent(); 2670 return true; 2671 } 2672 2673 const MCInstrDesc &GPRIDXDesc = 2674 TII.getIndirectGPRIDXPseudo(TRI.getRegSizeInBits(*SrcRC), true); 2675 BuildMI(*BB, MI, DL, GPRIDXDesc, DstReg) 2676 .addReg(SrcReg) 2677 .addReg(IdxReg) 2678 .addImm(SubReg); 2679 2680 MI.eraseFromParent(); 2681 return true; 2682 } 2683 2684 // TODO: Fold insert_vector_elt (extract_vector_elt) into movrelsd 2685 bool AMDGPUInstructionSelector::selectG_INSERT_VECTOR_ELT( 2686 MachineInstr &MI) const { 2687 Register DstReg = MI.getOperand(0).getReg(); 2688 Register VecReg = MI.getOperand(1).getReg(); 2689 Register ValReg = MI.getOperand(2).getReg(); 2690 Register IdxReg = MI.getOperand(3).getReg(); 2691 2692 LLT VecTy = MRI->getType(DstReg); 2693 LLT ValTy = MRI->getType(ValReg); 2694 unsigned VecSize = VecTy.getSizeInBits(); 2695 unsigned ValSize = ValTy.getSizeInBits(); 2696 2697 const RegisterBank *VecRB = RBI.getRegBank(VecReg, *MRI, TRI); 2698 const RegisterBank *ValRB = RBI.getRegBank(ValReg, *MRI, TRI); 2699 const RegisterBank *IdxRB = RBI.getRegBank(IdxReg, *MRI, TRI); 2700 2701 assert(VecTy.getElementType() == ValTy); 2702 2703 // The index must be scalar. If it wasn't RegBankSelect should have moved this 2704 // into a waterfall loop. 2705 if (IdxRB->getID() != AMDGPU::SGPRRegBankID) 2706 return false; 2707 2708 const TargetRegisterClass *VecRC = TRI.getRegClassForTypeOnBank(VecTy, *VecRB, 2709 *MRI); 2710 const TargetRegisterClass *ValRC = TRI.getRegClassForTypeOnBank(ValTy, *ValRB, 2711 *MRI); 2712 2713 if (!RBI.constrainGenericRegister(VecReg, *VecRC, *MRI) || 2714 !RBI.constrainGenericRegister(DstReg, *VecRC, *MRI) || 2715 !RBI.constrainGenericRegister(ValReg, *ValRC, *MRI) || 2716 !RBI.constrainGenericRegister(IdxReg, AMDGPU::SReg_32RegClass, *MRI)) 2717 return false; 2718 2719 if (VecRB->getID() == AMDGPU::VGPRRegBankID && ValSize != 32) 2720 return false; 2721 2722 unsigned SubReg; 2723 std::tie(IdxReg, SubReg) = computeIndirectRegIndex(*MRI, TRI, VecRC, IdxReg, 2724 ValSize / 8); 2725 2726 const bool IndexMode = VecRB->getID() == AMDGPU::VGPRRegBankID && 2727 STI.useVGPRIndexMode(); 2728 2729 MachineBasicBlock *BB = MI.getParent(); 2730 const DebugLoc &DL = MI.getDebugLoc(); 2731 2732 if (!IndexMode) { 2733 BuildMI(*BB, &MI, DL, TII.get(AMDGPU::COPY), AMDGPU::M0) 2734 .addReg(IdxReg); 2735 2736 const MCInstrDesc &RegWriteOp = TII.getIndirectRegWriteMovRelPseudo( 2737 VecSize, ValSize, VecRB->getID() == AMDGPU::SGPRRegBankID); 2738 BuildMI(*BB, MI, DL, RegWriteOp, DstReg) 2739 .addReg(VecReg) 2740 .addReg(ValReg) 2741 .addImm(SubReg); 2742 MI.eraseFromParent(); 2743 return true; 2744 } 2745 2746 const MCInstrDesc &GPRIDXDesc = 2747 TII.getIndirectGPRIDXPseudo(TRI.getRegSizeInBits(*VecRC), false); 2748 BuildMI(*BB, MI, DL, GPRIDXDesc, DstReg) 2749 .addReg(VecReg) 2750 .addReg(ValReg) 2751 .addReg(IdxReg) 2752 .addImm(SubReg); 2753 2754 MI.eraseFromParent(); 2755 return true; 2756 } 2757 2758 static bool isZeroOrUndef(int X) { 2759 return X == 0 || X == -1; 2760 } 2761 2762 static bool isOneOrUndef(int X) { 2763 return X == 1 || X == -1; 2764 } 2765 2766 static bool isZeroOrOneOrUndef(int X) { 2767 return X == 0 || X == 1 || X == -1; 2768 } 2769 2770 // Normalize a VOP3P shuffle mask to refer to the low/high half of a single 2771 // 32-bit register. 2772 static Register normalizeVOP3PMask(int NewMask[2], Register Src0, Register Src1, 2773 ArrayRef<int> Mask) { 2774 NewMask[0] = Mask[0]; 2775 NewMask[1] = Mask[1]; 2776 if (isZeroOrOneOrUndef(Mask[0]) && isZeroOrOneOrUndef(Mask[1])) 2777 return Src0; 2778 2779 assert(NewMask[0] == 2 || NewMask[0] == 3 || NewMask[0] == -1); 2780 assert(NewMask[1] == 2 || NewMask[1] == 3 || NewMask[1] == -1); 2781 2782 // Shift the mask inputs to be 0/1; 2783 NewMask[0] = NewMask[0] == -1 ? -1 : NewMask[0] - 2; 2784 NewMask[1] = NewMask[1] == -1 ? -1 : NewMask[1] - 2; 2785 return Src1; 2786 } 2787 2788 // This is only legal with VOP3P instructions as an aid to op_sel matching. 2789 bool AMDGPUInstructionSelector::selectG_SHUFFLE_VECTOR( 2790 MachineInstr &MI) const { 2791 Register DstReg = MI.getOperand(0).getReg(); 2792 Register Src0Reg = MI.getOperand(1).getReg(); 2793 Register Src1Reg = MI.getOperand(2).getReg(); 2794 ArrayRef<int> ShufMask = MI.getOperand(3).getShuffleMask(); 2795 2796 const LLT V2S16 = LLT::vector(2, 16); 2797 if (MRI->getType(DstReg) != V2S16 || MRI->getType(Src0Reg) != V2S16) 2798 return false; 2799 2800 if (!AMDGPU::isLegalVOP3PShuffleMask(ShufMask)) 2801 return false; 2802 2803 assert(ShufMask.size() == 2); 2804 assert(STI.hasSDWA() && "no target has VOP3P but not SDWA"); 2805 2806 MachineBasicBlock *MBB = MI.getParent(); 2807 const DebugLoc &DL = MI.getDebugLoc(); 2808 2809 const RegisterBank *DstRB = RBI.getRegBank(DstReg, *MRI, TRI); 2810 const bool IsVALU = DstRB->getID() == AMDGPU::VGPRRegBankID; 2811 const TargetRegisterClass &RC = IsVALU ? 2812 AMDGPU::VGPR_32RegClass : AMDGPU::SReg_32RegClass; 2813 2814 // Handle the degenerate case which should have folded out. 2815 if (ShufMask[0] == -1 && ShufMask[1] == -1) { 2816 BuildMI(*MBB, MI, DL, TII.get(AMDGPU::IMPLICIT_DEF), DstReg); 2817 2818 MI.eraseFromParent(); 2819 return RBI.constrainGenericRegister(DstReg, RC, *MRI); 2820 } 2821 2822 // A legal VOP3P mask only reads one of the sources. 2823 int Mask[2]; 2824 Register SrcVec = normalizeVOP3PMask(Mask, Src0Reg, Src1Reg, ShufMask); 2825 2826 if (!RBI.constrainGenericRegister(DstReg, RC, *MRI) || 2827 !RBI.constrainGenericRegister(SrcVec, RC, *MRI)) 2828 return false; 2829 2830 // TODO: This also should have been folded out 2831 if (isZeroOrUndef(Mask[0]) && isOneOrUndef(Mask[1])) { 2832 BuildMI(*MBB, MI, DL, TII.get(AMDGPU::COPY), DstReg) 2833 .addReg(SrcVec); 2834 2835 MI.eraseFromParent(); 2836 return true; 2837 } 2838 2839 if (Mask[0] == 1 && Mask[1] == -1) { 2840 if (IsVALU) { 2841 BuildMI(*MBB, MI, DL, TII.get(AMDGPU::V_LSHRREV_B32_e64), DstReg) 2842 .addImm(16) 2843 .addReg(SrcVec); 2844 } else { 2845 BuildMI(*MBB, MI, DL, TII.get(AMDGPU::S_LSHR_B32), DstReg) 2846 .addReg(SrcVec) 2847 .addImm(16); 2848 } 2849 } else if (Mask[0] == -1 && Mask[1] == 0) { 2850 if (IsVALU) { 2851 BuildMI(*MBB, MI, DL, TII.get(AMDGPU::V_LSHLREV_B32_e64), DstReg) 2852 .addImm(16) 2853 .addReg(SrcVec); 2854 } else { 2855 BuildMI(*MBB, MI, DL, TII.get(AMDGPU::S_LSHL_B32), DstReg) 2856 .addReg(SrcVec) 2857 .addImm(16); 2858 } 2859 } else if (Mask[0] == 0 && Mask[1] == 0) { 2860 if (IsVALU) { 2861 // Write low half of the register into the high half. 2862 MachineInstr *MovSDWA = 2863 BuildMI(*MBB, MI, DL, TII.get(AMDGPU::V_MOV_B32_sdwa), DstReg) 2864 .addImm(0) // $src0_modifiers 2865 .addReg(SrcVec) // $src0 2866 .addImm(0) // $clamp 2867 .addImm(AMDGPU::SDWA::WORD_1) // $dst_sel 2868 .addImm(AMDGPU::SDWA::UNUSED_PRESERVE) // $dst_unused 2869 .addImm(AMDGPU::SDWA::WORD_0) // $src0_sel 2870 .addReg(SrcVec, RegState::Implicit); 2871 MovSDWA->tieOperands(0, MovSDWA->getNumOperands() - 1); 2872 } else { 2873 BuildMI(*MBB, MI, DL, TII.get(AMDGPU::S_PACK_LL_B32_B16), DstReg) 2874 .addReg(SrcVec) 2875 .addReg(SrcVec); 2876 } 2877 } else if (Mask[0] == 1 && Mask[1] == 1) { 2878 if (IsVALU) { 2879 // Write high half of the register into the low half. 2880 MachineInstr *MovSDWA = 2881 BuildMI(*MBB, MI, DL, TII.get(AMDGPU::V_MOV_B32_sdwa), DstReg) 2882 .addImm(0) // $src0_modifiers 2883 .addReg(SrcVec) // $src0 2884 .addImm(0) // $clamp 2885 .addImm(AMDGPU::SDWA::WORD_0) // $dst_sel 2886 .addImm(AMDGPU::SDWA::UNUSED_PRESERVE) // $dst_unused 2887 .addImm(AMDGPU::SDWA::WORD_1) // $src0_sel 2888 .addReg(SrcVec, RegState::Implicit); 2889 MovSDWA->tieOperands(0, MovSDWA->getNumOperands() - 1); 2890 } else { 2891 BuildMI(*MBB, MI, DL, TII.get(AMDGPU::S_PACK_HH_B32_B16), DstReg) 2892 .addReg(SrcVec) 2893 .addReg(SrcVec); 2894 } 2895 } else if (Mask[0] == 1 && Mask[1] == 0) { 2896 if (IsVALU) { 2897 BuildMI(*MBB, MI, DL, TII.get(AMDGPU::V_ALIGNBIT_B32_e64), DstReg) 2898 .addReg(SrcVec) 2899 .addReg(SrcVec) 2900 .addImm(16); 2901 } else { 2902 Register TmpReg = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass); 2903 BuildMI(*MBB, MI, DL, TII.get(AMDGPU::S_LSHR_B32), TmpReg) 2904 .addReg(SrcVec) 2905 .addImm(16); 2906 BuildMI(*MBB, MI, DL, TII.get(AMDGPU::S_PACK_LL_B32_B16), DstReg) 2907 .addReg(TmpReg) 2908 .addReg(SrcVec); 2909 } 2910 } else 2911 llvm_unreachable("all shuffle masks should be handled"); 2912 2913 MI.eraseFromParent(); 2914 return true; 2915 } 2916 2917 bool AMDGPUInstructionSelector::selectAMDGPU_BUFFER_ATOMIC_FADD( 2918 MachineInstr &MI) const { 2919 if (STI.hasGFX90AInsts()) 2920 return selectImpl(MI, *CoverageInfo); 2921 2922 MachineBasicBlock *MBB = MI.getParent(); 2923 const DebugLoc &DL = MI.getDebugLoc(); 2924 2925 if (!MRI->use_nodbg_empty(MI.getOperand(0).getReg())) { 2926 Function &F = MBB->getParent()->getFunction(); 2927 DiagnosticInfoUnsupported 2928 NoFpRet(F, "return versions of fp atomics not supported", 2929 MI.getDebugLoc(), DS_Error); 2930 F.getContext().diagnose(NoFpRet); 2931 return false; 2932 } 2933 2934 // FIXME: This is only needed because tablegen requires number of dst operands 2935 // in match and replace pattern to be the same. Otherwise patterns can be 2936 // exported from SDag path. 2937 MachineOperand &VDataIn = MI.getOperand(1); 2938 MachineOperand &VIndex = MI.getOperand(3); 2939 MachineOperand &VOffset = MI.getOperand(4); 2940 MachineOperand &SOffset = MI.getOperand(5); 2941 int16_t Offset = MI.getOperand(6).getImm(); 2942 2943 bool HasVOffset = !isOperandImmEqual(VOffset, 0, *MRI); 2944 bool HasVIndex = !isOperandImmEqual(VIndex, 0, *MRI); 2945 2946 unsigned Opcode; 2947 if (HasVOffset) { 2948 Opcode = HasVIndex ? AMDGPU::BUFFER_ATOMIC_ADD_F32_BOTHEN 2949 : AMDGPU::BUFFER_ATOMIC_ADD_F32_OFFEN; 2950 } else { 2951 Opcode = HasVIndex ? AMDGPU::BUFFER_ATOMIC_ADD_F32_IDXEN 2952 : AMDGPU::BUFFER_ATOMIC_ADD_F32_OFFSET; 2953 } 2954 2955 if (MRI->getType(VDataIn.getReg()).isVector()) { 2956 switch (Opcode) { 2957 case AMDGPU::BUFFER_ATOMIC_ADD_F32_BOTHEN: 2958 Opcode = AMDGPU::BUFFER_ATOMIC_PK_ADD_F16_BOTHEN; 2959 break; 2960 case AMDGPU::BUFFER_ATOMIC_ADD_F32_OFFEN: 2961 Opcode = AMDGPU::BUFFER_ATOMIC_PK_ADD_F16_OFFEN; 2962 break; 2963 case AMDGPU::BUFFER_ATOMIC_ADD_F32_IDXEN: 2964 Opcode = AMDGPU::BUFFER_ATOMIC_PK_ADD_F16_IDXEN; 2965 break; 2966 case AMDGPU::BUFFER_ATOMIC_ADD_F32_OFFSET: 2967 Opcode = AMDGPU::BUFFER_ATOMIC_PK_ADD_F16_OFFSET; 2968 break; 2969 } 2970 } 2971 2972 auto I = BuildMI(*MBB, MI, DL, TII.get(Opcode)); 2973 I.add(VDataIn); 2974 2975 if (Opcode == AMDGPU::BUFFER_ATOMIC_ADD_F32_BOTHEN || 2976 Opcode == AMDGPU::BUFFER_ATOMIC_PK_ADD_F16_BOTHEN) { 2977 Register IdxReg = MRI->createVirtualRegister(TRI.getVGPR64Class()); 2978 BuildMI(*MBB, &*I, DL, TII.get(AMDGPU::REG_SEQUENCE), IdxReg) 2979 .addReg(VIndex.getReg()) 2980 .addImm(AMDGPU::sub0) 2981 .addReg(VOffset.getReg()) 2982 .addImm(AMDGPU::sub1); 2983 2984 I.addReg(IdxReg); 2985 } else if (HasVIndex) { 2986 I.add(VIndex); 2987 } else if (HasVOffset) { 2988 I.add(VOffset); 2989 } 2990 2991 I.add(MI.getOperand(2)); // rsrc 2992 I.add(SOffset); 2993 I.addImm(Offset); 2994 renderExtractSLC(I, MI, 7); 2995 I.cloneMemRefs(MI); 2996 2997 MI.eraseFromParent(); 2998 2999 return true; 3000 } 3001 3002 bool AMDGPUInstructionSelector::selectGlobalAtomicFaddIntrinsic( 3003 MachineInstr &MI) const{ 3004 3005 if (STI.hasGFX90AInsts()) 3006 return selectImpl(MI, *CoverageInfo); 3007 3008 MachineBasicBlock *MBB = MI.getParent(); 3009 const DebugLoc &DL = MI.getDebugLoc(); 3010 3011 if (!MRI->use_nodbg_empty(MI.getOperand(0).getReg())) { 3012 Function &F = MBB->getParent()->getFunction(); 3013 DiagnosticInfoUnsupported 3014 NoFpRet(F, "return versions of fp atomics not supported", 3015 MI.getDebugLoc(), DS_Error); 3016 F.getContext().diagnose(NoFpRet); 3017 return false; 3018 } 3019 3020 // FIXME: This is only needed because tablegen requires number of dst operands 3021 // in match and replace pattern to be the same. Otherwise patterns can be 3022 // exported from SDag path. 3023 auto Addr = selectFlatOffsetImpl<true>(MI.getOperand(2)); 3024 3025 Register Data = MI.getOperand(3).getReg(); 3026 const unsigned Opc = MRI->getType(Data).isVector() ? 3027 AMDGPU::GLOBAL_ATOMIC_PK_ADD_F16 : AMDGPU::GLOBAL_ATOMIC_ADD_F32; 3028 auto MIB = BuildMI(*MBB, &MI, DL, TII.get(Opc)) 3029 .addReg(Addr.first) 3030 .addReg(Data) 3031 .addImm(Addr.second) 3032 .addImm(0) // SLC 3033 .addImm(0) // SSCB 3034 .cloneMemRefs(MI); 3035 3036 MI.eraseFromParent(); 3037 return constrainSelectedInstRegOperands(*MIB, TII, TRI, RBI); 3038 } 3039 3040 bool AMDGPUInstructionSelector::selectBVHIntrinsic(MachineInstr &MI) const{ 3041 MI.setDesc(TII.get(MI.getOperand(1).getImm())); 3042 MI.RemoveOperand(1); 3043 MI.addImplicitDefUseOperands(*MI.getParent()->getParent()); 3044 return true; 3045 } 3046 3047 bool AMDGPUInstructionSelector::select(MachineInstr &I) { 3048 if (I.isPHI()) 3049 return selectPHI(I); 3050 3051 if (!I.isPreISelOpcode()) { 3052 if (I.isCopy()) 3053 return selectCOPY(I); 3054 return true; 3055 } 3056 3057 switch (I.getOpcode()) { 3058 case TargetOpcode::G_AND: 3059 case TargetOpcode::G_OR: 3060 case TargetOpcode::G_XOR: 3061 if (selectImpl(I, *CoverageInfo)) 3062 return true; 3063 return selectG_AND_OR_XOR(I); 3064 case TargetOpcode::G_ADD: 3065 case TargetOpcode::G_SUB: 3066 if (selectImpl(I, *CoverageInfo)) 3067 return true; 3068 return selectG_ADD_SUB(I); 3069 case TargetOpcode::G_UADDO: 3070 case TargetOpcode::G_USUBO: 3071 case TargetOpcode::G_UADDE: 3072 case TargetOpcode::G_USUBE: 3073 return selectG_UADDO_USUBO_UADDE_USUBE(I); 3074 case TargetOpcode::G_INTTOPTR: 3075 case TargetOpcode::G_BITCAST: 3076 case TargetOpcode::G_PTRTOINT: 3077 return selectCOPY(I); 3078 case TargetOpcode::G_CONSTANT: 3079 case TargetOpcode::G_FCONSTANT: 3080 return selectG_CONSTANT(I); 3081 case TargetOpcode::G_FNEG: 3082 if (selectImpl(I, *CoverageInfo)) 3083 return true; 3084 return selectG_FNEG(I); 3085 case TargetOpcode::G_FABS: 3086 if (selectImpl(I, *CoverageInfo)) 3087 return true; 3088 return selectG_FABS(I); 3089 case TargetOpcode::G_EXTRACT: 3090 return selectG_EXTRACT(I); 3091 case TargetOpcode::G_MERGE_VALUES: 3092 case TargetOpcode::G_BUILD_VECTOR: 3093 case TargetOpcode::G_CONCAT_VECTORS: 3094 return selectG_MERGE_VALUES(I); 3095 case TargetOpcode::G_UNMERGE_VALUES: 3096 return selectG_UNMERGE_VALUES(I); 3097 case TargetOpcode::G_BUILD_VECTOR_TRUNC: 3098 return selectG_BUILD_VECTOR_TRUNC(I); 3099 case TargetOpcode::G_PTR_ADD: 3100 return selectG_PTR_ADD(I); 3101 case TargetOpcode::G_IMPLICIT_DEF: 3102 return selectG_IMPLICIT_DEF(I); 3103 case TargetOpcode::G_FREEZE: 3104 return selectCOPY(I); 3105 case TargetOpcode::G_INSERT: 3106 return selectG_INSERT(I); 3107 case TargetOpcode::G_INTRINSIC: 3108 return selectG_INTRINSIC(I); 3109 case TargetOpcode::G_INTRINSIC_W_SIDE_EFFECTS: 3110 return selectG_INTRINSIC_W_SIDE_EFFECTS(I); 3111 case TargetOpcode::G_ICMP: 3112 if (selectG_ICMP(I)) 3113 return true; 3114 return selectImpl(I, *CoverageInfo); 3115 case TargetOpcode::G_LOAD: 3116 case TargetOpcode::G_STORE: 3117 case TargetOpcode::G_ATOMIC_CMPXCHG: 3118 case TargetOpcode::G_ATOMICRMW_XCHG: 3119 case TargetOpcode::G_ATOMICRMW_ADD: 3120 case TargetOpcode::G_ATOMICRMW_SUB: 3121 case TargetOpcode::G_ATOMICRMW_AND: 3122 case TargetOpcode::G_ATOMICRMW_OR: 3123 case TargetOpcode::G_ATOMICRMW_XOR: 3124 case TargetOpcode::G_ATOMICRMW_MIN: 3125 case TargetOpcode::G_ATOMICRMW_MAX: 3126 case TargetOpcode::G_ATOMICRMW_UMIN: 3127 case TargetOpcode::G_ATOMICRMW_UMAX: 3128 case TargetOpcode::G_ATOMICRMW_FADD: 3129 case AMDGPU::G_AMDGPU_ATOMIC_INC: 3130 case AMDGPU::G_AMDGPU_ATOMIC_DEC: 3131 case AMDGPU::G_AMDGPU_ATOMIC_FMIN: 3132 case AMDGPU::G_AMDGPU_ATOMIC_FMAX: 3133 return selectG_LOAD_STORE_ATOMICRMW(I); 3134 case AMDGPU::G_AMDGPU_ATOMIC_CMPXCHG: 3135 return selectG_AMDGPU_ATOMIC_CMPXCHG(I); 3136 case TargetOpcode::G_SELECT: 3137 return selectG_SELECT(I); 3138 case TargetOpcode::G_TRUNC: 3139 return selectG_TRUNC(I); 3140 case TargetOpcode::G_SEXT: 3141 case TargetOpcode::G_ZEXT: 3142 case TargetOpcode::G_ANYEXT: 3143 case TargetOpcode::G_SEXT_INREG: 3144 if (selectImpl(I, *CoverageInfo)) 3145 return true; 3146 return selectG_SZA_EXT(I); 3147 case TargetOpcode::G_BRCOND: 3148 return selectG_BRCOND(I); 3149 case TargetOpcode::G_GLOBAL_VALUE: 3150 return selectG_GLOBAL_VALUE(I); 3151 case TargetOpcode::G_PTRMASK: 3152 return selectG_PTRMASK(I); 3153 case TargetOpcode::G_EXTRACT_VECTOR_ELT: 3154 return selectG_EXTRACT_VECTOR_ELT(I); 3155 case TargetOpcode::G_INSERT_VECTOR_ELT: 3156 return selectG_INSERT_VECTOR_ELT(I); 3157 case TargetOpcode::G_SHUFFLE_VECTOR: 3158 return selectG_SHUFFLE_VECTOR(I); 3159 case AMDGPU::G_AMDGPU_INTRIN_IMAGE_LOAD: 3160 case AMDGPU::G_AMDGPU_INTRIN_IMAGE_STORE: { 3161 const AMDGPU::ImageDimIntrinsicInfo *Intr 3162 = AMDGPU::getImageDimIntrinsicInfo(I.getIntrinsicID()); 3163 assert(Intr && "not an image intrinsic with image pseudo"); 3164 return selectImageIntrinsic(I, Intr); 3165 } 3166 case AMDGPU::G_AMDGPU_INTRIN_BVH_INTERSECT_RAY: 3167 return selectBVHIntrinsic(I); 3168 case AMDGPU::G_AMDGPU_BUFFER_ATOMIC_FADD: 3169 return selectAMDGPU_BUFFER_ATOMIC_FADD(I); 3170 default: 3171 return selectImpl(I, *CoverageInfo); 3172 } 3173 return false; 3174 } 3175 3176 InstructionSelector::ComplexRendererFns 3177 AMDGPUInstructionSelector::selectVCSRC(MachineOperand &Root) const { 3178 return {{ 3179 [=](MachineInstrBuilder &MIB) { MIB.add(Root); } 3180 }}; 3181 3182 } 3183 3184 std::pair<Register, unsigned> 3185 AMDGPUInstructionSelector::selectVOP3ModsImpl(MachineOperand &Root, 3186 bool AllowAbs) const { 3187 Register Src = Root.getReg(); 3188 Register OrigSrc = Src; 3189 unsigned Mods = 0; 3190 MachineInstr *MI = getDefIgnoringCopies(Src, *MRI); 3191 3192 if (MI && MI->getOpcode() == AMDGPU::G_FNEG) { 3193 Src = MI->getOperand(1).getReg(); 3194 Mods |= SISrcMods::NEG; 3195 MI = getDefIgnoringCopies(Src, *MRI); 3196 } 3197 3198 if (AllowAbs && MI && MI->getOpcode() == AMDGPU::G_FABS) { 3199 Src = MI->getOperand(1).getReg(); 3200 Mods |= SISrcMods::ABS; 3201 } 3202 3203 if (Mods != 0 && 3204 RBI.getRegBank(Src, *MRI, TRI)->getID() != AMDGPU::VGPRRegBankID) { 3205 MachineInstr *UseMI = Root.getParent(); 3206 3207 // If we looked through copies to find source modifiers on an SGPR operand, 3208 // we now have an SGPR register source. To avoid potentially violating the 3209 // constant bus restriction, we need to insert a copy to a VGPR. 3210 Register VGPRSrc = MRI->cloneVirtualRegister(OrigSrc); 3211 BuildMI(*UseMI->getParent(), UseMI, UseMI->getDebugLoc(), 3212 TII.get(AMDGPU::COPY), VGPRSrc) 3213 .addReg(Src); 3214 Src = VGPRSrc; 3215 } 3216 3217 return std::make_pair(Src, Mods); 3218 } 3219 3220 /// 3221 /// This will select either an SGPR or VGPR operand and will save us from 3222 /// having to write an extra tablegen pattern. 3223 InstructionSelector::ComplexRendererFns 3224 AMDGPUInstructionSelector::selectVSRC0(MachineOperand &Root) const { 3225 return {{ 3226 [=](MachineInstrBuilder &MIB) { MIB.add(Root); } 3227 }}; 3228 } 3229 3230 InstructionSelector::ComplexRendererFns 3231 AMDGPUInstructionSelector::selectVOP3Mods0(MachineOperand &Root) const { 3232 Register Src; 3233 unsigned Mods; 3234 std::tie(Src, Mods) = selectVOP3ModsImpl(Root); 3235 3236 return {{ 3237 [=](MachineInstrBuilder &MIB) { MIB.addReg(Src); }, 3238 [=](MachineInstrBuilder &MIB) { MIB.addImm(Mods); }, // src0_mods 3239 [=](MachineInstrBuilder &MIB) { MIB.addImm(0); }, // clamp 3240 [=](MachineInstrBuilder &MIB) { MIB.addImm(0); } // omod 3241 }}; 3242 } 3243 3244 InstructionSelector::ComplexRendererFns 3245 AMDGPUInstructionSelector::selectVOP3BMods0(MachineOperand &Root) const { 3246 Register Src; 3247 unsigned Mods; 3248 std::tie(Src, Mods) = selectVOP3ModsImpl(Root, /* AllowAbs */ false); 3249 3250 return {{ 3251 [=](MachineInstrBuilder &MIB) { MIB.addReg(Src); }, 3252 [=](MachineInstrBuilder &MIB) { MIB.addImm(Mods); }, // src0_mods 3253 [=](MachineInstrBuilder &MIB) { MIB.addImm(0); }, // clamp 3254 [=](MachineInstrBuilder &MIB) { MIB.addImm(0); } // omod 3255 }}; 3256 } 3257 3258 InstructionSelector::ComplexRendererFns 3259 AMDGPUInstructionSelector::selectVOP3OMods(MachineOperand &Root) const { 3260 return {{ 3261 [=](MachineInstrBuilder &MIB) { MIB.add(Root); }, 3262 [=](MachineInstrBuilder &MIB) { MIB.addImm(0); }, // clamp 3263 [=](MachineInstrBuilder &MIB) { MIB.addImm(0); } // omod 3264 }}; 3265 } 3266 3267 InstructionSelector::ComplexRendererFns 3268 AMDGPUInstructionSelector::selectVOP3Mods(MachineOperand &Root) const { 3269 Register Src; 3270 unsigned Mods; 3271 std::tie(Src, Mods) = selectVOP3ModsImpl(Root); 3272 3273 return {{ 3274 [=](MachineInstrBuilder &MIB) { MIB.addReg(Src); }, 3275 [=](MachineInstrBuilder &MIB) { MIB.addImm(Mods); } // src_mods 3276 }}; 3277 } 3278 3279 InstructionSelector::ComplexRendererFns 3280 AMDGPUInstructionSelector::selectVOP3BMods(MachineOperand &Root) const { 3281 Register Src; 3282 unsigned Mods; 3283 std::tie(Src, Mods) = selectVOP3ModsImpl(Root, /* AllowAbs */ false); 3284 3285 return {{ 3286 [=](MachineInstrBuilder &MIB) { MIB.addReg(Src); }, 3287 [=](MachineInstrBuilder &MIB) { MIB.addImm(Mods); } // src_mods 3288 }}; 3289 } 3290 3291 InstructionSelector::ComplexRendererFns 3292 AMDGPUInstructionSelector::selectVOP3NoMods(MachineOperand &Root) const { 3293 Register Reg = Root.getReg(); 3294 const MachineInstr *Def = getDefIgnoringCopies(Reg, *MRI); 3295 if (Def && (Def->getOpcode() == AMDGPU::G_FNEG || 3296 Def->getOpcode() == AMDGPU::G_FABS)) 3297 return {}; 3298 return {{ 3299 [=](MachineInstrBuilder &MIB) { MIB.addReg(Reg); }, 3300 }}; 3301 } 3302 3303 std::pair<Register, unsigned> 3304 AMDGPUInstructionSelector::selectVOP3PModsImpl( 3305 Register Src, const MachineRegisterInfo &MRI) const { 3306 unsigned Mods = 0; 3307 MachineInstr *MI = MRI.getVRegDef(Src); 3308 3309 if (MI && MI->getOpcode() == AMDGPU::G_FNEG && 3310 // It's possible to see an f32 fneg here, but unlikely. 3311 // TODO: Treat f32 fneg as only high bit. 3312 MRI.getType(Src) == LLT::vector(2, 16)) { 3313 Mods ^= (SISrcMods::NEG | SISrcMods::NEG_HI); 3314 Src = MI->getOperand(1).getReg(); 3315 MI = MRI.getVRegDef(Src); 3316 } 3317 3318 // TODO: Match op_sel through g_build_vector_trunc and g_shuffle_vector. 3319 3320 // Packed instructions do not have abs modifiers. 3321 Mods |= SISrcMods::OP_SEL_1; 3322 3323 return std::make_pair(Src, Mods); 3324 } 3325 3326 InstructionSelector::ComplexRendererFns 3327 AMDGPUInstructionSelector::selectVOP3PMods(MachineOperand &Root) const { 3328 MachineRegisterInfo &MRI 3329 = Root.getParent()->getParent()->getParent()->getRegInfo(); 3330 3331 Register Src; 3332 unsigned Mods; 3333 std::tie(Src, Mods) = selectVOP3PModsImpl(Root.getReg(), MRI); 3334 3335 return {{ 3336 [=](MachineInstrBuilder &MIB) { MIB.addReg(Src); }, 3337 [=](MachineInstrBuilder &MIB) { MIB.addImm(Mods); } // src_mods 3338 }}; 3339 } 3340 3341 InstructionSelector::ComplexRendererFns 3342 AMDGPUInstructionSelector::selectVOP3Mods_nnan(MachineOperand &Root) const { 3343 Register Src; 3344 unsigned Mods; 3345 std::tie(Src, Mods) = selectVOP3ModsImpl(Root); 3346 if (!isKnownNeverNaN(Src, *MRI)) 3347 return None; 3348 3349 return {{ 3350 [=](MachineInstrBuilder &MIB) { MIB.addReg(Src); }, 3351 [=](MachineInstrBuilder &MIB) { MIB.addImm(Mods); } // src_mods 3352 }}; 3353 } 3354 3355 InstructionSelector::ComplexRendererFns 3356 AMDGPUInstructionSelector::selectVOP3OpSelMods(MachineOperand &Root) const { 3357 // FIXME: Handle op_sel 3358 return {{ 3359 [=](MachineInstrBuilder &MIB) { MIB.addReg(Root.getReg()); }, 3360 [=](MachineInstrBuilder &MIB) { MIB.addImm(0); } // src_mods 3361 }}; 3362 } 3363 3364 InstructionSelector::ComplexRendererFns 3365 AMDGPUInstructionSelector::selectSmrdImm(MachineOperand &Root) const { 3366 SmallVector<GEPInfo, 4> AddrInfo; 3367 getAddrModeInfo(*Root.getParent(), *MRI, AddrInfo); 3368 3369 if (AddrInfo.empty() || AddrInfo[0].SgprParts.size() != 1) 3370 return None; 3371 3372 const GEPInfo &GEPInfo = AddrInfo[0]; 3373 Optional<int64_t> EncodedImm = 3374 AMDGPU::getSMRDEncodedOffset(STI, GEPInfo.Imm, false); 3375 if (!EncodedImm) 3376 return None; 3377 3378 unsigned PtrReg = GEPInfo.SgprParts[0]; 3379 return {{ 3380 [=](MachineInstrBuilder &MIB) { MIB.addReg(PtrReg); }, 3381 [=](MachineInstrBuilder &MIB) { MIB.addImm(*EncodedImm); } 3382 }}; 3383 } 3384 3385 InstructionSelector::ComplexRendererFns 3386 AMDGPUInstructionSelector::selectSmrdImm32(MachineOperand &Root) const { 3387 SmallVector<GEPInfo, 4> AddrInfo; 3388 getAddrModeInfo(*Root.getParent(), *MRI, AddrInfo); 3389 3390 if (AddrInfo.empty() || AddrInfo[0].SgprParts.size() != 1) 3391 return None; 3392 3393 const GEPInfo &GEPInfo = AddrInfo[0]; 3394 Register PtrReg = GEPInfo.SgprParts[0]; 3395 Optional<int64_t> EncodedImm = 3396 AMDGPU::getSMRDEncodedLiteralOffset32(STI, GEPInfo.Imm); 3397 if (!EncodedImm) 3398 return None; 3399 3400 return {{ 3401 [=](MachineInstrBuilder &MIB) { MIB.addReg(PtrReg); }, 3402 [=](MachineInstrBuilder &MIB) { MIB.addImm(*EncodedImm); } 3403 }}; 3404 } 3405 3406 InstructionSelector::ComplexRendererFns 3407 AMDGPUInstructionSelector::selectSmrdSgpr(MachineOperand &Root) const { 3408 MachineInstr *MI = Root.getParent(); 3409 MachineBasicBlock *MBB = MI->getParent(); 3410 3411 SmallVector<GEPInfo, 4> AddrInfo; 3412 getAddrModeInfo(*MI, *MRI, AddrInfo); 3413 3414 // FIXME: We should shrink the GEP if the offset is known to be <= 32-bits, 3415 // then we can select all ptr + 32-bit offsets not just immediate offsets. 3416 if (AddrInfo.empty() || AddrInfo[0].SgprParts.size() != 1) 3417 return None; 3418 3419 const GEPInfo &GEPInfo = AddrInfo[0]; 3420 // SGPR offset is unsigned. 3421 if (!GEPInfo.Imm || GEPInfo.Imm < 0 || !isUInt<32>(GEPInfo.Imm)) 3422 return None; 3423 3424 // If we make it this far we have a load with an 32-bit immediate offset. 3425 // It is OK to select this using a sgpr offset, because we have already 3426 // failed trying to select this load into one of the _IMM variants since 3427 // the _IMM Patterns are considered before the _SGPR patterns. 3428 Register PtrReg = GEPInfo.SgprParts[0]; 3429 Register OffsetReg = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass); 3430 BuildMI(*MBB, MI, MI->getDebugLoc(), TII.get(AMDGPU::S_MOV_B32), OffsetReg) 3431 .addImm(GEPInfo.Imm); 3432 return {{ 3433 [=](MachineInstrBuilder &MIB) { MIB.addReg(PtrReg); }, 3434 [=](MachineInstrBuilder &MIB) { MIB.addReg(OffsetReg); } 3435 }}; 3436 } 3437 3438 template <bool Signed> 3439 std::pair<Register, int> 3440 AMDGPUInstructionSelector::selectFlatOffsetImpl(MachineOperand &Root) const { 3441 MachineInstr *MI = Root.getParent(); 3442 3443 auto Default = std::make_pair(Root.getReg(), 0); 3444 3445 if (!STI.hasFlatInstOffsets()) 3446 return Default; 3447 3448 Register PtrBase; 3449 int64_t ConstOffset; 3450 std::tie(PtrBase, ConstOffset) = 3451 getPtrBaseWithConstantOffset(Root.getReg(), *MRI); 3452 if (ConstOffset == 0) 3453 return Default; 3454 3455 unsigned AddrSpace = (*MI->memoperands_begin())->getAddrSpace(); 3456 if (!TII.isLegalFLATOffset(ConstOffset, AddrSpace, Signed)) 3457 return Default; 3458 3459 return std::make_pair(PtrBase, ConstOffset); 3460 } 3461 3462 InstructionSelector::ComplexRendererFns 3463 AMDGPUInstructionSelector::selectFlatOffset(MachineOperand &Root) const { 3464 auto PtrWithOffset = selectFlatOffsetImpl<false>(Root); 3465 3466 return {{ 3467 [=](MachineInstrBuilder &MIB) { MIB.addReg(PtrWithOffset.first); }, 3468 [=](MachineInstrBuilder &MIB) { MIB.addImm(PtrWithOffset.second); }, 3469 }}; 3470 } 3471 3472 InstructionSelector::ComplexRendererFns 3473 AMDGPUInstructionSelector::selectFlatOffsetSigned(MachineOperand &Root) const { 3474 auto PtrWithOffset = selectFlatOffsetImpl<true>(Root); 3475 3476 return {{ 3477 [=](MachineInstrBuilder &MIB) { MIB.addReg(PtrWithOffset.first); }, 3478 [=](MachineInstrBuilder &MIB) { MIB.addImm(PtrWithOffset.second); }, 3479 }}; 3480 } 3481 3482 /// Match a zero extend from a 32-bit value to 64-bits. 3483 static Register matchZeroExtendFromS32(MachineRegisterInfo &MRI, Register Reg) { 3484 Register ZExtSrc; 3485 if (mi_match(Reg, MRI, m_GZExt(m_Reg(ZExtSrc)))) 3486 return MRI.getType(ZExtSrc) == LLT::scalar(32) ? ZExtSrc : Register(); 3487 3488 // Match legalized form %zext = G_MERGE_VALUES (s32 %x), (s32 0) 3489 const MachineInstr *Def = getDefIgnoringCopies(Reg, MRI); 3490 if (Def->getOpcode() != AMDGPU::G_MERGE_VALUES) 3491 return false; 3492 3493 if (mi_match(Def->getOperand(2).getReg(), MRI, m_ZeroInt())) { 3494 return Def->getOperand(1).getReg(); 3495 } 3496 3497 return Register(); 3498 } 3499 3500 // Match (64-bit SGPR base) + (zext vgpr offset) + sext(imm offset) 3501 InstructionSelector::ComplexRendererFns 3502 AMDGPUInstructionSelector::selectGlobalSAddr(MachineOperand &Root) const { 3503 Register Addr = Root.getReg(); 3504 Register PtrBase; 3505 int64_t ConstOffset; 3506 int64_t ImmOffset = 0; 3507 3508 // Match the immediate offset first, which canonically is moved as low as 3509 // possible. 3510 std::tie(PtrBase, ConstOffset) = getPtrBaseWithConstantOffset(Addr, *MRI); 3511 3512 if (ConstOffset != 0) { 3513 if (TII.isLegalFLATOffset(ConstOffset, AMDGPUAS::GLOBAL_ADDRESS, true)) { 3514 Addr = PtrBase; 3515 ImmOffset = ConstOffset; 3516 } else if (ConstOffset > 0) { 3517 auto PtrBaseDef = getDefSrcRegIgnoringCopies(PtrBase, *MRI); 3518 if (!PtrBaseDef) 3519 return None; 3520 3521 if (isSGPR(PtrBaseDef->Reg)) { 3522 // Offset is too large. 3523 // 3524 // saddr + large_offset -> saddr + (voffset = large_offset & ~MaxOffset) 3525 // + (large_offset & MaxOffset); 3526 int64_t SplitImmOffset, RemainderOffset; 3527 std::tie(SplitImmOffset, RemainderOffset) 3528 = TII.splitFlatOffset(ConstOffset, AMDGPUAS::GLOBAL_ADDRESS, true); 3529 3530 if (isUInt<32>(RemainderOffset)) { 3531 MachineInstr *MI = Root.getParent(); 3532 MachineBasicBlock *MBB = MI->getParent(); 3533 Register HighBits 3534 = MRI->createVirtualRegister(&AMDGPU::VGPR_32RegClass); 3535 3536 BuildMI(*MBB, MI, MI->getDebugLoc(), TII.get(AMDGPU::V_MOV_B32_e32), 3537 HighBits) 3538 .addImm(RemainderOffset); 3539 3540 return {{ 3541 [=](MachineInstrBuilder &MIB) { MIB.addReg(PtrBase); }, // saddr 3542 [=](MachineInstrBuilder &MIB) { MIB.addReg(HighBits); }, // voffset 3543 [=](MachineInstrBuilder &MIB) { MIB.addImm(SplitImmOffset); }, 3544 }}; 3545 } 3546 } 3547 } 3548 } 3549 3550 auto AddrDef = getDefSrcRegIgnoringCopies(Addr, *MRI); 3551 if (!AddrDef) 3552 return None; 3553 3554 // Match the variable offset. 3555 if (AddrDef->MI->getOpcode() != AMDGPU::G_PTR_ADD) { 3556 // FIXME: We should probably have folded COPY (G_IMPLICIT_DEF) earlier, and 3557 // drop this. 3558 if (AddrDef->MI->getOpcode() == AMDGPU::G_IMPLICIT_DEF || 3559 AddrDef->MI->getOpcode() == AMDGPU::G_CONSTANT) 3560 return None; 3561 3562 // It's cheaper to materialize a single 32-bit zero for vaddr than the two 3563 // moves required to copy a 64-bit SGPR to VGPR. 3564 const Register SAddr = AddrDef->Reg; 3565 if (!isSGPR(SAddr)) 3566 return None; 3567 3568 MachineInstr *MI = Root.getParent(); 3569 MachineBasicBlock *MBB = MI->getParent(); 3570 Register VOffset = MRI->createVirtualRegister(&AMDGPU::VGPR_32RegClass); 3571 3572 BuildMI(*MBB, MI, MI->getDebugLoc(), TII.get(AMDGPU::V_MOV_B32_e32), 3573 VOffset) 3574 .addImm(0); 3575 3576 return {{ 3577 [=](MachineInstrBuilder &MIB) { MIB.addReg(SAddr); }, // saddr 3578 [=](MachineInstrBuilder &MIB) { MIB.addReg(VOffset); }, // voffset 3579 [=](MachineInstrBuilder &MIB) { MIB.addImm(ImmOffset); } // offset 3580 }}; 3581 } 3582 3583 // Look through the SGPR->VGPR copy. 3584 Register SAddr = 3585 getSrcRegIgnoringCopies(AddrDef->MI->getOperand(1).getReg(), *MRI); 3586 if (!SAddr || !isSGPR(SAddr)) 3587 return None; 3588 3589 Register PtrBaseOffset = AddrDef->MI->getOperand(2).getReg(); 3590 3591 // It's possible voffset is an SGPR here, but the copy to VGPR will be 3592 // inserted later. 3593 Register VOffset = matchZeroExtendFromS32(*MRI, PtrBaseOffset); 3594 if (!VOffset) 3595 return None; 3596 3597 return {{[=](MachineInstrBuilder &MIB) { // saddr 3598 MIB.addReg(SAddr); 3599 }, 3600 [=](MachineInstrBuilder &MIB) { // voffset 3601 MIB.addReg(VOffset); 3602 }, 3603 [=](MachineInstrBuilder &MIB) { // offset 3604 MIB.addImm(ImmOffset); 3605 }}}; 3606 } 3607 3608 InstructionSelector::ComplexRendererFns 3609 AMDGPUInstructionSelector::selectScratchSAddr(MachineOperand &Root) const { 3610 Register Addr = Root.getReg(); 3611 Register PtrBase; 3612 int64_t ConstOffset; 3613 int64_t ImmOffset = 0; 3614 3615 // Match the immediate offset first, which canonically is moved as low as 3616 // possible. 3617 std::tie(PtrBase, ConstOffset) = getPtrBaseWithConstantOffset(Addr, *MRI); 3618 3619 if (ConstOffset != 0 && 3620 TII.isLegalFLATOffset(ConstOffset, AMDGPUAS::PRIVATE_ADDRESS, true)) { 3621 Addr = PtrBase; 3622 ImmOffset = ConstOffset; 3623 } 3624 3625 auto AddrDef = getDefSrcRegIgnoringCopies(Addr, *MRI); 3626 if (!AddrDef) 3627 return None; 3628 3629 if (AddrDef->MI->getOpcode() == AMDGPU::G_FRAME_INDEX) { 3630 int FI = AddrDef->MI->getOperand(1).getIndex(); 3631 return {{ 3632 [=](MachineInstrBuilder &MIB) { MIB.addFrameIndex(FI); }, // saddr 3633 [=](MachineInstrBuilder &MIB) { MIB.addImm(ImmOffset); } // offset 3634 }}; 3635 } 3636 3637 Register SAddr = AddrDef->Reg; 3638 3639 if (AddrDef->MI->getOpcode() == AMDGPU::G_PTR_ADD) { 3640 Register LHS = AddrDef->MI->getOperand(1).getReg(); 3641 Register RHS = AddrDef->MI->getOperand(2).getReg(); 3642 auto LHSDef = getDefSrcRegIgnoringCopies(LHS, *MRI); 3643 auto RHSDef = getDefSrcRegIgnoringCopies(RHS, *MRI); 3644 3645 if (LHSDef && RHSDef && 3646 LHSDef->MI->getOpcode() == AMDGPU::G_FRAME_INDEX && 3647 isSGPR(RHSDef->Reg)) { 3648 int FI = LHSDef->MI->getOperand(1).getIndex(); 3649 MachineInstr &I = *Root.getParent(); 3650 MachineBasicBlock *BB = I.getParent(); 3651 const DebugLoc &DL = I.getDebugLoc(); 3652 SAddr = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass); 3653 3654 BuildMI(*BB, &I, DL, TII.get(AMDGPU::S_ADD_U32), SAddr) 3655 .addFrameIndex(FI) 3656 .addReg(RHSDef->Reg); 3657 } 3658 } 3659 3660 if (!isSGPR(SAddr)) 3661 return None; 3662 3663 return {{ 3664 [=](MachineInstrBuilder &MIB) { MIB.addReg(SAddr); }, // saddr 3665 [=](MachineInstrBuilder &MIB) { MIB.addImm(ImmOffset); } // offset 3666 }}; 3667 } 3668 3669 static bool isStackPtrRelative(const MachinePointerInfo &PtrInfo) { 3670 auto PSV = PtrInfo.V.dyn_cast<const PseudoSourceValue *>(); 3671 return PSV && PSV->isStack(); 3672 } 3673 3674 InstructionSelector::ComplexRendererFns 3675 AMDGPUInstructionSelector::selectMUBUFScratchOffen(MachineOperand &Root) const { 3676 MachineInstr *MI = Root.getParent(); 3677 MachineBasicBlock *MBB = MI->getParent(); 3678 MachineFunction *MF = MBB->getParent(); 3679 const SIMachineFunctionInfo *Info = MF->getInfo<SIMachineFunctionInfo>(); 3680 3681 int64_t Offset = 0; 3682 if (mi_match(Root.getReg(), *MRI, m_ICst(Offset)) && 3683 Offset != TM.getNullPointerValue(AMDGPUAS::PRIVATE_ADDRESS)) { 3684 Register HighBits = MRI->createVirtualRegister(&AMDGPU::VGPR_32RegClass); 3685 3686 // TODO: Should this be inside the render function? The iterator seems to 3687 // move. 3688 BuildMI(*MBB, MI, MI->getDebugLoc(), TII.get(AMDGPU::V_MOV_B32_e32), 3689 HighBits) 3690 .addImm(Offset & ~4095); 3691 3692 return {{[=](MachineInstrBuilder &MIB) { // rsrc 3693 MIB.addReg(Info->getScratchRSrcReg()); 3694 }, 3695 [=](MachineInstrBuilder &MIB) { // vaddr 3696 MIB.addReg(HighBits); 3697 }, 3698 [=](MachineInstrBuilder &MIB) { // soffset 3699 // Use constant zero for soffset and rely on eliminateFrameIndex 3700 // to choose the appropriate frame register if need be. 3701 MIB.addImm(0); 3702 }, 3703 [=](MachineInstrBuilder &MIB) { // offset 3704 MIB.addImm(Offset & 4095); 3705 }}}; 3706 } 3707 3708 assert(Offset == 0 || Offset == -1); 3709 3710 // Try to fold a frame index directly into the MUBUF vaddr field, and any 3711 // offsets. 3712 Optional<int> FI; 3713 Register VAddr = Root.getReg(); 3714 if (const MachineInstr *RootDef = MRI->getVRegDef(Root.getReg())) { 3715 if (isBaseWithConstantOffset(Root, *MRI)) { 3716 const MachineOperand &LHS = RootDef->getOperand(1); 3717 const MachineOperand &RHS = RootDef->getOperand(2); 3718 const MachineInstr *LHSDef = MRI->getVRegDef(LHS.getReg()); 3719 const MachineInstr *RHSDef = MRI->getVRegDef(RHS.getReg()); 3720 if (LHSDef && RHSDef) { 3721 int64_t PossibleOffset = 3722 RHSDef->getOperand(1).getCImm()->getSExtValue(); 3723 if (SIInstrInfo::isLegalMUBUFImmOffset(PossibleOffset) && 3724 (!STI.privateMemoryResourceIsRangeChecked() || 3725 KnownBits->signBitIsZero(LHS.getReg()))) { 3726 if (LHSDef->getOpcode() == AMDGPU::G_FRAME_INDEX) 3727 FI = LHSDef->getOperand(1).getIndex(); 3728 else 3729 VAddr = LHS.getReg(); 3730 Offset = PossibleOffset; 3731 } 3732 } 3733 } else if (RootDef->getOpcode() == AMDGPU::G_FRAME_INDEX) { 3734 FI = RootDef->getOperand(1).getIndex(); 3735 } 3736 } 3737 3738 return {{[=](MachineInstrBuilder &MIB) { // rsrc 3739 MIB.addReg(Info->getScratchRSrcReg()); 3740 }, 3741 [=](MachineInstrBuilder &MIB) { // vaddr 3742 if (FI.hasValue()) 3743 MIB.addFrameIndex(FI.getValue()); 3744 else 3745 MIB.addReg(VAddr); 3746 }, 3747 [=](MachineInstrBuilder &MIB) { // soffset 3748 // Use constant zero for soffset and rely on eliminateFrameIndex 3749 // to choose the appropriate frame register if need be. 3750 MIB.addImm(0); 3751 }, 3752 [=](MachineInstrBuilder &MIB) { // offset 3753 MIB.addImm(Offset); 3754 }}}; 3755 } 3756 3757 bool AMDGPUInstructionSelector::isDSOffsetLegal(Register Base, 3758 int64_t Offset) const { 3759 if (!isUInt<16>(Offset)) 3760 return false; 3761 3762 if (STI.hasUsableDSOffset() || STI.unsafeDSOffsetFoldingEnabled()) 3763 return true; 3764 3765 // On Southern Islands instruction with a negative base value and an offset 3766 // don't seem to work. 3767 return KnownBits->signBitIsZero(Base); 3768 } 3769 3770 bool AMDGPUInstructionSelector::isDSOffset2Legal(Register Base, int64_t Offset0, 3771 int64_t Offset1, 3772 unsigned Size) const { 3773 if (Offset0 % Size != 0 || Offset1 % Size != 0) 3774 return false; 3775 if (!isUInt<8>(Offset0 / Size) || !isUInt<8>(Offset1 / Size)) 3776 return false; 3777 3778 if (STI.hasUsableDSOffset() || STI.unsafeDSOffsetFoldingEnabled()) 3779 return true; 3780 3781 // On Southern Islands instruction with a negative base value and an offset 3782 // don't seem to work. 3783 return KnownBits->signBitIsZero(Base); 3784 } 3785 3786 InstructionSelector::ComplexRendererFns 3787 AMDGPUInstructionSelector::selectMUBUFScratchOffset( 3788 MachineOperand &Root) const { 3789 MachineInstr *MI = Root.getParent(); 3790 MachineBasicBlock *MBB = MI->getParent(); 3791 3792 int64_t Offset = 0; 3793 if (!mi_match(Root.getReg(), *MRI, m_ICst(Offset)) || 3794 !SIInstrInfo::isLegalMUBUFImmOffset(Offset)) 3795 return {}; 3796 3797 const MachineFunction *MF = MBB->getParent(); 3798 const SIMachineFunctionInfo *Info = MF->getInfo<SIMachineFunctionInfo>(); 3799 const MachineMemOperand *MMO = *MI->memoperands_begin(); 3800 const MachinePointerInfo &PtrInfo = MMO->getPointerInfo(); 3801 3802 return {{ 3803 [=](MachineInstrBuilder &MIB) { // rsrc 3804 MIB.addReg(Info->getScratchRSrcReg()); 3805 }, 3806 [=](MachineInstrBuilder &MIB) { // soffset 3807 if (isStackPtrRelative(PtrInfo)) 3808 MIB.addReg(Info->getStackPtrOffsetReg()); 3809 else 3810 MIB.addImm(0); 3811 }, 3812 [=](MachineInstrBuilder &MIB) { MIB.addImm(Offset); } // offset 3813 }}; 3814 } 3815 3816 std::pair<Register, unsigned> 3817 AMDGPUInstructionSelector::selectDS1Addr1OffsetImpl(MachineOperand &Root) const { 3818 const MachineInstr *RootDef = MRI->getVRegDef(Root.getReg()); 3819 if (!RootDef) 3820 return std::make_pair(Root.getReg(), 0); 3821 3822 int64_t ConstAddr = 0; 3823 3824 Register PtrBase; 3825 int64_t Offset; 3826 std::tie(PtrBase, Offset) = 3827 getPtrBaseWithConstantOffset(Root.getReg(), *MRI); 3828 3829 if (Offset) { 3830 if (isDSOffsetLegal(PtrBase, Offset)) { 3831 // (add n0, c0) 3832 return std::make_pair(PtrBase, Offset); 3833 } 3834 } else if (RootDef->getOpcode() == AMDGPU::G_SUB) { 3835 // TODO 3836 3837 3838 } else if (mi_match(Root.getReg(), *MRI, m_ICst(ConstAddr))) { 3839 // TODO 3840 3841 } 3842 3843 return std::make_pair(Root.getReg(), 0); 3844 } 3845 3846 InstructionSelector::ComplexRendererFns 3847 AMDGPUInstructionSelector::selectDS1Addr1Offset(MachineOperand &Root) const { 3848 Register Reg; 3849 unsigned Offset; 3850 std::tie(Reg, Offset) = selectDS1Addr1OffsetImpl(Root); 3851 return {{ 3852 [=](MachineInstrBuilder &MIB) { MIB.addReg(Reg); }, 3853 [=](MachineInstrBuilder &MIB) { MIB.addImm(Offset); } 3854 }}; 3855 } 3856 3857 InstructionSelector::ComplexRendererFns 3858 AMDGPUInstructionSelector::selectDS64Bit4ByteAligned(MachineOperand &Root) const { 3859 return selectDSReadWrite2(Root, 4); 3860 } 3861 3862 InstructionSelector::ComplexRendererFns 3863 AMDGPUInstructionSelector::selectDS128Bit8ByteAligned(MachineOperand &Root) const { 3864 return selectDSReadWrite2(Root, 8); 3865 } 3866 3867 InstructionSelector::ComplexRendererFns 3868 AMDGPUInstructionSelector::selectDSReadWrite2(MachineOperand &Root, 3869 unsigned Size) const { 3870 Register Reg; 3871 unsigned Offset; 3872 std::tie(Reg, Offset) = selectDSReadWrite2Impl(Root, Size); 3873 return {{ 3874 [=](MachineInstrBuilder &MIB) { MIB.addReg(Reg); }, 3875 [=](MachineInstrBuilder &MIB) { MIB.addImm(Offset); }, 3876 [=](MachineInstrBuilder &MIB) { MIB.addImm(Offset+1); } 3877 }}; 3878 } 3879 3880 std::pair<Register, unsigned> 3881 AMDGPUInstructionSelector::selectDSReadWrite2Impl(MachineOperand &Root, 3882 unsigned Size) const { 3883 const MachineInstr *RootDef = MRI->getVRegDef(Root.getReg()); 3884 if (!RootDef) 3885 return std::make_pair(Root.getReg(), 0); 3886 3887 int64_t ConstAddr = 0; 3888 3889 Register PtrBase; 3890 int64_t Offset; 3891 std::tie(PtrBase, Offset) = 3892 getPtrBaseWithConstantOffset(Root.getReg(), *MRI); 3893 3894 if (Offset) { 3895 int64_t OffsetValue0 = Offset; 3896 int64_t OffsetValue1 = Offset + Size; 3897 if (isDSOffset2Legal(PtrBase, OffsetValue0, OffsetValue1, Size)) { 3898 // (add n0, c0) 3899 return std::make_pair(PtrBase, OffsetValue0 / Size); 3900 } 3901 } else if (RootDef->getOpcode() == AMDGPU::G_SUB) { 3902 // TODO 3903 3904 } else if (mi_match(Root.getReg(), *MRI, m_ICst(ConstAddr))) { 3905 // TODO 3906 3907 } 3908 3909 return std::make_pair(Root.getReg(), 0); 3910 } 3911 3912 /// If \p Root is a G_PTR_ADD with a G_CONSTANT on the right hand side, return 3913 /// the base value with the constant offset. There may be intervening copies 3914 /// between \p Root and the identified constant. Returns \p Root, 0 if this does 3915 /// not match the pattern. 3916 std::pair<Register, int64_t> 3917 AMDGPUInstructionSelector::getPtrBaseWithConstantOffset( 3918 Register Root, const MachineRegisterInfo &MRI) const { 3919 MachineInstr *RootI = getDefIgnoringCopies(Root, MRI); 3920 if (RootI->getOpcode() != TargetOpcode::G_PTR_ADD) 3921 return {Root, 0}; 3922 3923 MachineOperand &RHS = RootI->getOperand(2); 3924 Optional<ValueAndVReg> MaybeOffset 3925 = getConstantVRegValWithLookThrough(RHS.getReg(), MRI, true); 3926 if (!MaybeOffset) 3927 return {Root, 0}; 3928 return {RootI->getOperand(1).getReg(), MaybeOffset->Value.getSExtValue()}; 3929 } 3930 3931 static void addZeroImm(MachineInstrBuilder &MIB) { 3932 MIB.addImm(0); 3933 } 3934 3935 /// Return a resource descriptor for use with an arbitrary 64-bit pointer. If \p 3936 /// BasePtr is not valid, a null base pointer will be used. 3937 static Register buildRSRC(MachineIRBuilder &B, MachineRegisterInfo &MRI, 3938 uint32_t FormatLo, uint32_t FormatHi, 3939 Register BasePtr) { 3940 Register RSrc2 = MRI.createVirtualRegister(&AMDGPU::SReg_32RegClass); 3941 Register RSrc3 = MRI.createVirtualRegister(&AMDGPU::SReg_32RegClass); 3942 Register RSrcHi = MRI.createVirtualRegister(&AMDGPU::SReg_64RegClass); 3943 Register RSrc = MRI.createVirtualRegister(&AMDGPU::SGPR_128RegClass); 3944 3945 B.buildInstr(AMDGPU::S_MOV_B32) 3946 .addDef(RSrc2) 3947 .addImm(FormatLo); 3948 B.buildInstr(AMDGPU::S_MOV_B32) 3949 .addDef(RSrc3) 3950 .addImm(FormatHi); 3951 3952 // Build the half of the subregister with the constants before building the 3953 // full 128-bit register. If we are building multiple resource descriptors, 3954 // this will allow CSEing of the 2-component register. 3955 B.buildInstr(AMDGPU::REG_SEQUENCE) 3956 .addDef(RSrcHi) 3957 .addReg(RSrc2) 3958 .addImm(AMDGPU::sub0) 3959 .addReg(RSrc3) 3960 .addImm(AMDGPU::sub1); 3961 3962 Register RSrcLo = BasePtr; 3963 if (!BasePtr) { 3964 RSrcLo = MRI.createVirtualRegister(&AMDGPU::SReg_64RegClass); 3965 B.buildInstr(AMDGPU::S_MOV_B64) 3966 .addDef(RSrcLo) 3967 .addImm(0); 3968 } 3969 3970 B.buildInstr(AMDGPU::REG_SEQUENCE) 3971 .addDef(RSrc) 3972 .addReg(RSrcLo) 3973 .addImm(AMDGPU::sub0_sub1) 3974 .addReg(RSrcHi) 3975 .addImm(AMDGPU::sub2_sub3); 3976 3977 return RSrc; 3978 } 3979 3980 static Register buildAddr64RSrc(MachineIRBuilder &B, MachineRegisterInfo &MRI, 3981 const SIInstrInfo &TII, Register BasePtr) { 3982 uint64_t DefaultFormat = TII.getDefaultRsrcDataFormat(); 3983 3984 // FIXME: Why are half the "default" bits ignored based on the addressing 3985 // mode? 3986 return buildRSRC(B, MRI, 0, Hi_32(DefaultFormat), BasePtr); 3987 } 3988 3989 static Register buildOffsetSrc(MachineIRBuilder &B, MachineRegisterInfo &MRI, 3990 const SIInstrInfo &TII, Register BasePtr) { 3991 uint64_t DefaultFormat = TII.getDefaultRsrcDataFormat(); 3992 3993 // FIXME: Why are half the "default" bits ignored based on the addressing 3994 // mode? 3995 return buildRSRC(B, MRI, -1, Hi_32(DefaultFormat), BasePtr); 3996 } 3997 3998 AMDGPUInstructionSelector::MUBUFAddressData 3999 AMDGPUInstructionSelector::parseMUBUFAddress(Register Src) const { 4000 MUBUFAddressData Data; 4001 Data.N0 = Src; 4002 4003 Register PtrBase; 4004 int64_t Offset; 4005 4006 std::tie(PtrBase, Offset) = getPtrBaseWithConstantOffset(Src, *MRI); 4007 if (isUInt<32>(Offset)) { 4008 Data.N0 = PtrBase; 4009 Data.Offset = Offset; 4010 } 4011 4012 if (MachineInstr *InputAdd 4013 = getOpcodeDef(TargetOpcode::G_PTR_ADD, Data.N0, *MRI)) { 4014 Data.N2 = InputAdd->getOperand(1).getReg(); 4015 Data.N3 = InputAdd->getOperand(2).getReg(); 4016 4017 // FIXME: Need to fix extra SGPR->VGPRcopies inserted 4018 // FIXME: Don't know this was defined by operand 0 4019 // 4020 // TODO: Remove this when we have copy folding optimizations after 4021 // RegBankSelect. 4022 Data.N2 = getDefIgnoringCopies(Data.N2, *MRI)->getOperand(0).getReg(); 4023 Data.N3 = getDefIgnoringCopies(Data.N3, *MRI)->getOperand(0).getReg(); 4024 } 4025 4026 return Data; 4027 } 4028 4029 /// Return if the addr64 mubuf mode should be used for the given address. 4030 bool AMDGPUInstructionSelector::shouldUseAddr64(MUBUFAddressData Addr) const { 4031 // (ptr_add N2, N3) -> addr64, or 4032 // (ptr_add (ptr_add N2, N3), C1) -> addr64 4033 if (Addr.N2) 4034 return true; 4035 4036 const RegisterBank *N0Bank = RBI.getRegBank(Addr.N0, *MRI, TRI); 4037 return N0Bank->getID() == AMDGPU::VGPRRegBankID; 4038 } 4039 4040 /// Split an immediate offset \p ImmOffset depending on whether it fits in the 4041 /// immediate field. Modifies \p ImmOffset and sets \p SOffset to the variable 4042 /// component. 4043 void AMDGPUInstructionSelector::splitIllegalMUBUFOffset( 4044 MachineIRBuilder &B, Register &SOffset, int64_t &ImmOffset) const { 4045 if (SIInstrInfo::isLegalMUBUFImmOffset(ImmOffset)) 4046 return; 4047 4048 // Illegal offset, store it in soffset. 4049 SOffset = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass); 4050 B.buildInstr(AMDGPU::S_MOV_B32) 4051 .addDef(SOffset) 4052 .addImm(ImmOffset); 4053 ImmOffset = 0; 4054 } 4055 4056 bool AMDGPUInstructionSelector::selectMUBUFAddr64Impl( 4057 MachineOperand &Root, Register &VAddr, Register &RSrcReg, 4058 Register &SOffset, int64_t &Offset) const { 4059 // FIXME: Predicates should stop this from reaching here. 4060 // addr64 bit was removed for volcanic islands. 4061 if (!STI.hasAddr64() || STI.useFlatForGlobal()) 4062 return false; 4063 4064 MUBUFAddressData AddrData = parseMUBUFAddress(Root.getReg()); 4065 if (!shouldUseAddr64(AddrData)) 4066 return false; 4067 4068 Register N0 = AddrData.N0; 4069 Register N2 = AddrData.N2; 4070 Register N3 = AddrData.N3; 4071 Offset = AddrData.Offset; 4072 4073 // Base pointer for the SRD. 4074 Register SRDPtr; 4075 4076 if (N2) { 4077 if (RBI.getRegBank(N2, *MRI, TRI)->getID() == AMDGPU::VGPRRegBankID) { 4078 assert(N3); 4079 if (RBI.getRegBank(N3, *MRI, TRI)->getID() == AMDGPU::VGPRRegBankID) { 4080 // Both N2 and N3 are divergent. Use N0 (the result of the add) as the 4081 // addr64, and construct the default resource from a 0 address. 4082 VAddr = N0; 4083 } else { 4084 SRDPtr = N3; 4085 VAddr = N2; 4086 } 4087 } else { 4088 // N2 is not divergent. 4089 SRDPtr = N2; 4090 VAddr = N3; 4091 } 4092 } else if (RBI.getRegBank(N0, *MRI, TRI)->getID() == AMDGPU::VGPRRegBankID) { 4093 // Use the default null pointer in the resource 4094 VAddr = N0; 4095 } else { 4096 // N0 -> offset, or 4097 // (N0 + C1) -> offset 4098 SRDPtr = N0; 4099 } 4100 4101 MachineIRBuilder B(*Root.getParent()); 4102 RSrcReg = buildAddr64RSrc(B, *MRI, TII, SRDPtr); 4103 splitIllegalMUBUFOffset(B, SOffset, Offset); 4104 return true; 4105 } 4106 4107 bool AMDGPUInstructionSelector::selectMUBUFOffsetImpl( 4108 MachineOperand &Root, Register &RSrcReg, Register &SOffset, 4109 int64_t &Offset) const { 4110 4111 // FIXME: Pattern should not reach here. 4112 if (STI.useFlatForGlobal()) 4113 return false; 4114 4115 MUBUFAddressData AddrData = parseMUBUFAddress(Root.getReg()); 4116 if (shouldUseAddr64(AddrData)) 4117 return false; 4118 4119 // N0 -> offset, or 4120 // (N0 + C1) -> offset 4121 Register SRDPtr = AddrData.N0; 4122 Offset = AddrData.Offset; 4123 4124 // TODO: Look through extensions for 32-bit soffset. 4125 MachineIRBuilder B(*Root.getParent()); 4126 4127 RSrcReg = buildOffsetSrc(B, *MRI, TII, SRDPtr); 4128 splitIllegalMUBUFOffset(B, SOffset, Offset); 4129 return true; 4130 } 4131 4132 InstructionSelector::ComplexRendererFns 4133 AMDGPUInstructionSelector::selectMUBUFAddr64(MachineOperand &Root) const { 4134 Register VAddr; 4135 Register RSrcReg; 4136 Register SOffset; 4137 int64_t Offset = 0; 4138 4139 if (!selectMUBUFAddr64Impl(Root, VAddr, RSrcReg, SOffset, Offset)) 4140 return {}; 4141 4142 // FIXME: Use defaulted operands for trailing 0s and remove from the complex 4143 // pattern. 4144 return {{ 4145 [=](MachineInstrBuilder &MIB) { // rsrc 4146 MIB.addReg(RSrcReg); 4147 }, 4148 [=](MachineInstrBuilder &MIB) { // vaddr 4149 MIB.addReg(VAddr); 4150 }, 4151 [=](MachineInstrBuilder &MIB) { // soffset 4152 if (SOffset) 4153 MIB.addReg(SOffset); 4154 else 4155 MIB.addImm(0); 4156 }, 4157 [=](MachineInstrBuilder &MIB) { // offset 4158 MIB.addImm(Offset); 4159 }, 4160 addZeroImm, // glc 4161 addZeroImm, // slc 4162 addZeroImm, // tfe 4163 addZeroImm, // dlc 4164 addZeroImm, // swz 4165 addZeroImm // scc 4166 }}; 4167 } 4168 4169 InstructionSelector::ComplexRendererFns 4170 AMDGPUInstructionSelector::selectMUBUFOffset(MachineOperand &Root) const { 4171 Register RSrcReg; 4172 Register SOffset; 4173 int64_t Offset = 0; 4174 4175 if (!selectMUBUFOffsetImpl(Root, RSrcReg, SOffset, Offset)) 4176 return {}; 4177 4178 return {{ 4179 [=](MachineInstrBuilder &MIB) { // rsrc 4180 MIB.addReg(RSrcReg); 4181 }, 4182 [=](MachineInstrBuilder &MIB) { // soffset 4183 if (SOffset) 4184 MIB.addReg(SOffset); 4185 else 4186 MIB.addImm(0); 4187 }, 4188 [=](MachineInstrBuilder &MIB) { MIB.addImm(Offset); }, // offset 4189 addZeroImm, // glc 4190 addZeroImm, // slc 4191 addZeroImm, // tfe 4192 addZeroImm, // dlc 4193 addZeroImm, // swz 4194 addZeroImm // scc 4195 }}; 4196 } 4197 4198 InstructionSelector::ComplexRendererFns 4199 AMDGPUInstructionSelector::selectMUBUFAddr64Atomic(MachineOperand &Root) const { 4200 Register VAddr; 4201 Register RSrcReg; 4202 Register SOffset; 4203 int64_t Offset = 0; 4204 4205 if (!selectMUBUFAddr64Impl(Root, VAddr, RSrcReg, SOffset, Offset)) 4206 return {}; 4207 4208 // FIXME: Use defaulted operands for trailing 0s and remove from the complex 4209 // pattern. 4210 return {{ 4211 [=](MachineInstrBuilder &MIB) { // rsrc 4212 MIB.addReg(RSrcReg); 4213 }, 4214 [=](MachineInstrBuilder &MIB) { // vaddr 4215 MIB.addReg(VAddr); 4216 }, 4217 [=](MachineInstrBuilder &MIB) { // soffset 4218 if (SOffset) 4219 MIB.addReg(SOffset); 4220 else 4221 MIB.addImm(0); 4222 }, 4223 [=](MachineInstrBuilder &MIB) { // offset 4224 MIB.addImm(Offset); 4225 }, 4226 addZeroImm // slc 4227 }}; 4228 } 4229 4230 InstructionSelector::ComplexRendererFns 4231 AMDGPUInstructionSelector::selectMUBUFOffsetAtomic(MachineOperand &Root) const { 4232 Register RSrcReg; 4233 Register SOffset; 4234 int64_t Offset = 0; 4235 4236 if (!selectMUBUFOffsetImpl(Root, RSrcReg, SOffset, Offset)) 4237 return {}; 4238 4239 return {{ 4240 [=](MachineInstrBuilder &MIB) { // rsrc 4241 MIB.addReg(RSrcReg); 4242 }, 4243 [=](MachineInstrBuilder &MIB) { // soffset 4244 if (SOffset) 4245 MIB.addReg(SOffset); 4246 else 4247 MIB.addImm(0); 4248 }, 4249 [=](MachineInstrBuilder &MIB) { MIB.addImm(Offset); }, // offset 4250 addZeroImm // slc 4251 }}; 4252 } 4253 4254 /// Get an immediate that must be 32-bits, and treated as zero extended. 4255 static Optional<uint64_t> getConstantZext32Val(Register Reg, 4256 const MachineRegisterInfo &MRI) { 4257 // getConstantVRegVal sexts any values, so see if that matters. 4258 Optional<int64_t> OffsetVal = getConstantVRegSExtVal(Reg, MRI); 4259 if (!OffsetVal || !isInt<32>(*OffsetVal)) 4260 return None; 4261 return Lo_32(*OffsetVal); 4262 } 4263 4264 InstructionSelector::ComplexRendererFns 4265 AMDGPUInstructionSelector::selectSMRDBufferImm(MachineOperand &Root) const { 4266 Optional<uint64_t> OffsetVal = getConstantZext32Val(Root.getReg(), *MRI); 4267 if (!OffsetVal) 4268 return {}; 4269 4270 Optional<int64_t> EncodedImm = 4271 AMDGPU::getSMRDEncodedOffset(STI, *OffsetVal, true); 4272 if (!EncodedImm) 4273 return {}; 4274 4275 return {{ [=](MachineInstrBuilder &MIB) { MIB.addImm(*EncodedImm); } }}; 4276 } 4277 4278 InstructionSelector::ComplexRendererFns 4279 AMDGPUInstructionSelector::selectSMRDBufferImm32(MachineOperand &Root) const { 4280 assert(STI.getGeneration() == AMDGPUSubtarget::SEA_ISLANDS); 4281 4282 Optional<uint64_t> OffsetVal = getConstantZext32Val(Root.getReg(), *MRI); 4283 if (!OffsetVal) 4284 return {}; 4285 4286 Optional<int64_t> EncodedImm 4287 = AMDGPU::getSMRDEncodedLiteralOffset32(STI, *OffsetVal); 4288 if (!EncodedImm) 4289 return {}; 4290 4291 return {{ [=](MachineInstrBuilder &MIB) { MIB.addImm(*EncodedImm); } }}; 4292 } 4293 4294 void AMDGPUInstructionSelector::renderTruncImm32(MachineInstrBuilder &MIB, 4295 const MachineInstr &MI, 4296 int OpIdx) const { 4297 assert(MI.getOpcode() == TargetOpcode::G_CONSTANT && OpIdx == -1 && 4298 "Expected G_CONSTANT"); 4299 MIB.addImm(MI.getOperand(1).getCImm()->getSExtValue()); 4300 } 4301 4302 void AMDGPUInstructionSelector::renderNegateImm(MachineInstrBuilder &MIB, 4303 const MachineInstr &MI, 4304 int OpIdx) const { 4305 assert(MI.getOpcode() == TargetOpcode::G_CONSTANT && OpIdx == -1 && 4306 "Expected G_CONSTANT"); 4307 MIB.addImm(-MI.getOperand(1).getCImm()->getSExtValue()); 4308 } 4309 4310 void AMDGPUInstructionSelector::renderBitcastImm(MachineInstrBuilder &MIB, 4311 const MachineInstr &MI, 4312 int OpIdx) const { 4313 assert(OpIdx == -1); 4314 4315 const MachineOperand &Op = MI.getOperand(1); 4316 if (MI.getOpcode() == TargetOpcode::G_FCONSTANT) 4317 MIB.addImm(Op.getFPImm()->getValueAPF().bitcastToAPInt().getZExtValue()); 4318 else { 4319 assert(MI.getOpcode() == TargetOpcode::G_CONSTANT && "Expected G_CONSTANT"); 4320 MIB.addImm(Op.getCImm()->getSExtValue()); 4321 } 4322 } 4323 4324 void AMDGPUInstructionSelector::renderPopcntImm(MachineInstrBuilder &MIB, 4325 const MachineInstr &MI, 4326 int OpIdx) const { 4327 assert(MI.getOpcode() == TargetOpcode::G_CONSTANT && OpIdx == -1 && 4328 "Expected G_CONSTANT"); 4329 MIB.addImm(MI.getOperand(1).getCImm()->getValue().countPopulation()); 4330 } 4331 4332 /// This only really exists to satisfy DAG type checking machinery, so is a 4333 /// no-op here. 4334 void AMDGPUInstructionSelector::renderTruncTImm(MachineInstrBuilder &MIB, 4335 const MachineInstr &MI, 4336 int OpIdx) const { 4337 MIB.addImm(MI.getOperand(OpIdx).getImm()); 4338 } 4339 4340 void AMDGPUInstructionSelector::renderExtractGLC(MachineInstrBuilder &MIB, 4341 const MachineInstr &MI, 4342 int OpIdx) const { 4343 assert(OpIdx >= 0 && "expected to match an immediate operand"); 4344 MIB.addImm(MI.getOperand(OpIdx).getImm() & 1); 4345 } 4346 4347 void AMDGPUInstructionSelector::renderExtractSLC(MachineInstrBuilder &MIB, 4348 const MachineInstr &MI, 4349 int OpIdx) const { 4350 assert(OpIdx >= 0 && "expected to match an immediate operand"); 4351 MIB.addImm((MI.getOperand(OpIdx).getImm() >> 1) & 1); 4352 } 4353 4354 void AMDGPUInstructionSelector::renderExtractDLC(MachineInstrBuilder &MIB, 4355 const MachineInstr &MI, 4356 int OpIdx) const { 4357 assert(OpIdx >= 0 && "expected to match an immediate operand"); 4358 MIB.addImm((MI.getOperand(OpIdx).getImm() >> 2) & 1); 4359 } 4360 4361 void AMDGPUInstructionSelector::renderExtractSWZ(MachineInstrBuilder &MIB, 4362 const MachineInstr &MI, 4363 int OpIdx) const { 4364 assert(OpIdx >= 0 && "expected to match an immediate operand"); 4365 MIB.addImm((MI.getOperand(OpIdx).getImm() >> 3) & 1); 4366 } 4367 4368 void AMDGPUInstructionSelector::renderExtractSCCB(MachineInstrBuilder &MIB, 4369 const MachineInstr &MI, 4370 int OpIdx) const { 4371 assert(OpIdx >= 0 && "expected to match an immediate operand"); 4372 MIB.addImm((MI.getOperand(OpIdx).getImm() >> 4) & 1); 4373 } 4374 4375 void AMDGPUInstructionSelector::renderFrameIndex(MachineInstrBuilder &MIB, 4376 const MachineInstr &MI, 4377 int OpIdx) const { 4378 MIB.addFrameIndex((MI.getOperand(1).getIndex())); 4379 } 4380 4381 bool AMDGPUInstructionSelector::isInlineImmediate16(int64_t Imm) const { 4382 return AMDGPU::isInlinableLiteral16(Imm, STI.hasInv2PiInlineImm()); 4383 } 4384 4385 bool AMDGPUInstructionSelector::isInlineImmediate32(int64_t Imm) const { 4386 return AMDGPU::isInlinableLiteral32(Imm, STI.hasInv2PiInlineImm()); 4387 } 4388 4389 bool AMDGPUInstructionSelector::isInlineImmediate64(int64_t Imm) const { 4390 return AMDGPU::isInlinableLiteral64(Imm, STI.hasInv2PiInlineImm()); 4391 } 4392 4393 bool AMDGPUInstructionSelector::isInlineImmediate(const APFloat &Imm) const { 4394 return TII.isInlineConstant(Imm); 4395 } 4396