1 //===-- ARMLoadStoreOptimizer.cpp - ARM load / store opt. pass ----*- C++ -*-=// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // This file contains a pass that performs load / store related peephole 11 // optimizations. This pass should be run after register allocation. 12 // 13 //===----------------------------------------------------------------------===// 14 15 #define DEBUG_TYPE "arm-ldst-opt" 16 #include "ARM.h" 17 #include "ARMAddressingModes.h" 18 #include "ARMMachineFunctionInfo.h" 19 #include "ARMRegisterInfo.h" 20 #include "llvm/DerivedTypes.h" 21 #include "llvm/CodeGen/MachineBasicBlock.h" 22 #include "llvm/CodeGen/MachineFunctionPass.h" 23 #include "llvm/CodeGen/MachineInstr.h" 24 #include "llvm/CodeGen/MachineInstrBuilder.h" 25 #include "llvm/CodeGen/MachineRegisterInfo.h" 26 #include "llvm/CodeGen/RegisterScavenging.h" 27 #include "llvm/Target/TargetData.h" 28 #include "llvm/Target/TargetInstrInfo.h" 29 #include "llvm/Target/TargetMachine.h" 30 #include "llvm/Target/TargetRegisterInfo.h" 31 #include "llvm/Support/Compiler.h" 32 #include "llvm/ADT/DenseMap.h" 33 #include "llvm/ADT/STLExtras.h" 34 #include "llvm/ADT/SmallPtrSet.h" 35 #include "llvm/ADT/SmallSet.h" 36 #include "llvm/ADT/SmallVector.h" 37 #include "llvm/ADT/Statistic.h" 38 using namespace llvm; 39 40 STATISTIC(NumLDMGened , "Number of ldm instructions generated"); 41 STATISTIC(NumSTMGened , "Number of stm instructions generated"); 42 STATISTIC(NumFLDMGened, "Number of fldm instructions generated"); 43 STATISTIC(NumFSTMGened, "Number of fstm instructions generated"); 44 STATISTIC(NumLdStMoved, "Number of load / store instructions moved"); 45 STATISTIC(NumLDRDFormed,"Number of ldrd created before allocation"); 46 STATISTIC(NumSTRDFormed,"Number of strd created before allocation"); 47 STATISTIC(NumLDRD2LDM, "Number of ldrd instructions turned back into ldm"); 48 STATISTIC(NumSTRD2STM, "Number of strd instructions turned back into stm"); 49 STATISTIC(NumLDRD2LDR, "Number of ldrd instructions turned back into ldr's"); 50 STATISTIC(NumSTRD2STR, "Number of strd instructions turned back into str's"); 51 52 /// ARMAllocLoadStoreOpt - Post- register allocation pass the combine 53 /// load / store instructions to form ldm / stm instructions. 54 55 namespace { 56 struct VISIBILITY_HIDDEN ARMLoadStoreOpt : public MachineFunctionPass { 57 static char ID; 58 ARMLoadStoreOpt() : MachineFunctionPass(&ID) {} 59 60 const TargetInstrInfo *TII; 61 const TargetRegisterInfo *TRI; 62 ARMFunctionInfo *AFI; 63 RegScavenger *RS; 64 65 virtual bool runOnMachineFunction(MachineFunction &Fn); 66 67 virtual const char *getPassName() const { 68 return "ARM load / store optimization pass"; 69 } 70 71 private: 72 struct MemOpQueueEntry { 73 int Offset; 74 unsigned Position; 75 MachineBasicBlock::iterator MBBI; 76 bool Merged; 77 MemOpQueueEntry(int o, int p, MachineBasicBlock::iterator i) 78 : Offset(o), Position(p), MBBI(i), Merged(false) {}; 79 }; 80 typedef SmallVector<MemOpQueueEntry,8> MemOpQueue; 81 typedef MemOpQueue::iterator MemOpQueueIter; 82 83 bool MergeOps(MachineBasicBlock &MBB, MachineBasicBlock::iterator MBBI, 84 int Offset, unsigned Base, bool BaseKill, int Opcode, 85 ARMCC::CondCodes Pred, unsigned PredReg, unsigned Scratch, 86 DebugLoc dl, SmallVector<std::pair<unsigned, bool>, 8> &Regs); 87 void MergeLDR_STR(MachineBasicBlock &MBB, unsigned SIndex, unsigned Base, 88 int Opcode, unsigned Size, 89 ARMCC::CondCodes Pred, unsigned PredReg, 90 unsigned Scratch, MemOpQueue &MemOps, 91 SmallVector<MachineBasicBlock::iterator, 4> &Merges); 92 93 void AdvanceRS(MachineBasicBlock &MBB, MemOpQueue &MemOps); 94 bool FixInvalidRegPairOp(MachineBasicBlock &MBB, 95 MachineBasicBlock::iterator &MBBI); 96 bool LoadStoreMultipleOpti(MachineBasicBlock &MBB); 97 bool MergeReturnIntoLDM(MachineBasicBlock &MBB); 98 }; 99 char ARMLoadStoreOpt::ID = 0; 100 } 101 102 static int getLoadStoreMultipleOpcode(int Opcode) { 103 switch (Opcode) { 104 case ARM::LDR: 105 NumLDMGened++; 106 return ARM::LDM; 107 case ARM::STR: 108 NumSTMGened++; 109 return ARM::STM; 110 case ARM::FLDS: 111 NumFLDMGened++; 112 return ARM::FLDMS; 113 case ARM::FSTS: 114 NumFSTMGened++; 115 return ARM::FSTMS; 116 case ARM::FLDD: 117 NumFLDMGened++; 118 return ARM::FLDMD; 119 case ARM::FSTD: 120 NumFSTMGened++; 121 return ARM::FSTMD; 122 default: abort(); 123 } 124 return 0; 125 } 126 127 /// MergeOps - Create and insert a LDM or STM with Base as base register and 128 /// registers in Regs as the register operands that would be loaded / stored. 129 /// It returns true if the transformation is done. 130 bool 131 ARMLoadStoreOpt::MergeOps(MachineBasicBlock &MBB, 132 MachineBasicBlock::iterator MBBI, 133 int Offset, unsigned Base, bool BaseKill, 134 int Opcode, ARMCC::CondCodes Pred, 135 unsigned PredReg, unsigned Scratch, DebugLoc dl, 136 SmallVector<std::pair<unsigned, bool>, 8> &Regs) { 137 // Only a single register to load / store. Don't bother. 138 unsigned NumRegs = Regs.size(); 139 if (NumRegs <= 1) 140 return false; 141 142 ARM_AM::AMSubMode Mode = ARM_AM::ia; 143 bool isAM4 = Opcode == ARM::LDR || Opcode == ARM::STR; 144 if (isAM4 && Offset == 4) 145 Mode = ARM_AM::ib; 146 else if (isAM4 && Offset == -4 * (int)NumRegs + 4) 147 Mode = ARM_AM::da; 148 else if (isAM4 && Offset == -4 * (int)NumRegs) 149 Mode = ARM_AM::db; 150 else if (Offset != 0) { 151 // If starting offset isn't zero, insert a MI to materialize a new base. 152 // But only do so if it is cost effective, i.e. merging more than two 153 // loads / stores. 154 if (NumRegs <= 2) 155 return false; 156 157 unsigned NewBase; 158 if (Opcode == ARM::LDR) 159 // If it is a load, then just use one of the destination register to 160 // use as the new base. 161 NewBase = Regs[NumRegs-1].first; 162 else { 163 // Use the scratch register to use as a new base. 164 NewBase = Scratch; 165 if (NewBase == 0) 166 return false; 167 } 168 int BaseOpc = ARM::ADDri; 169 if (Offset < 0) { 170 BaseOpc = ARM::SUBri; 171 Offset = - Offset; 172 } 173 int ImmedOffset = ARM_AM::getSOImmVal(Offset); 174 if (ImmedOffset == -1) 175 return false; // Probably not worth it then. 176 177 BuildMI(MBB, MBBI, dl, TII->get(BaseOpc), NewBase) 178 .addReg(Base, getKillRegState(BaseKill)).addImm(ImmedOffset) 179 .addImm(Pred).addReg(PredReg).addReg(0); 180 Base = NewBase; 181 BaseKill = true; // New base is always killed right its use. 182 } 183 184 bool isDPR = Opcode == ARM::FLDD || Opcode == ARM::FSTD; 185 bool isDef = Opcode == ARM::LDR || Opcode == ARM::FLDS || Opcode == ARM::FLDD; 186 Opcode = getLoadStoreMultipleOpcode(Opcode); 187 MachineInstrBuilder MIB = (isAM4) 188 ? BuildMI(MBB, MBBI, dl, TII->get(Opcode)) 189 .addReg(Base, getKillRegState(BaseKill)) 190 .addImm(ARM_AM::getAM4ModeImm(Mode)).addImm(Pred).addReg(PredReg) 191 : BuildMI(MBB, MBBI, dl, TII->get(Opcode)) 192 .addReg(Base, getKillRegState(BaseKill)) 193 .addImm(ARM_AM::getAM5Opc(Mode, false, isDPR ? NumRegs<<1 : NumRegs)) 194 .addImm(Pred).addReg(PredReg); 195 for (unsigned i = 0; i != NumRegs; ++i) 196 MIB = MIB.addReg(Regs[i].first, getDefRegState(isDef) 197 | getKillRegState(Regs[i].second)); 198 199 return true; 200 } 201 202 /// MergeLDR_STR - Merge a number of load / store instructions into one or more 203 /// load / store multiple instructions. 204 void 205 ARMLoadStoreOpt::MergeLDR_STR(MachineBasicBlock &MBB, unsigned SIndex, 206 unsigned Base, int Opcode, unsigned Size, 207 ARMCC::CondCodes Pred, unsigned PredReg, 208 unsigned Scratch, MemOpQueue &MemOps, 209 SmallVector<MachineBasicBlock::iterator, 4> &Merges) { 210 bool isAM4 = Opcode == ARM::LDR || Opcode == ARM::STR; 211 int Offset = MemOps[SIndex].Offset; 212 int SOffset = Offset; 213 unsigned Pos = MemOps[SIndex].Position; 214 MachineBasicBlock::iterator Loc = MemOps[SIndex].MBBI; 215 DebugLoc dl = Loc->getDebugLoc(); 216 unsigned PReg = Loc->getOperand(0).getReg(); 217 unsigned PRegNum = ARMRegisterInfo::getRegisterNumbering(PReg); 218 bool isKill = Loc->getOperand(0).isKill(); 219 220 SmallVector<std::pair<unsigned,bool>, 8> Regs; 221 Regs.push_back(std::make_pair(PReg, isKill)); 222 for (unsigned i = SIndex+1, e = MemOps.size(); i != e; ++i) { 223 int NewOffset = MemOps[i].Offset; 224 unsigned Reg = MemOps[i].MBBI->getOperand(0).getReg(); 225 unsigned RegNum = ARMRegisterInfo::getRegisterNumbering(Reg); 226 isKill = MemOps[i].MBBI->getOperand(0).isKill(); 227 // AM4 - register numbers in ascending order. 228 // AM5 - consecutive register numbers in ascending order. 229 if (NewOffset == Offset + (int)Size && 230 ((isAM4 && RegNum > PRegNum) || RegNum == PRegNum+1)) { 231 Offset += Size; 232 Regs.push_back(std::make_pair(Reg, isKill)); 233 PRegNum = RegNum; 234 } else { 235 // Can't merge this in. Try merge the earlier ones first. 236 if (MergeOps(MBB, ++Loc, SOffset, Base, false, Opcode, Pred, PredReg, 237 Scratch, dl, Regs)) { 238 Merges.push_back(prior(Loc)); 239 for (unsigned j = SIndex; j < i; ++j) { 240 MBB.erase(MemOps[j].MBBI); 241 MemOps[j].Merged = true; 242 } 243 } 244 MergeLDR_STR(MBB, i, Base, Opcode, Size, Pred, PredReg, Scratch, 245 MemOps, Merges); 246 return; 247 } 248 249 if (MemOps[i].Position > Pos) { 250 Pos = MemOps[i].Position; 251 Loc = MemOps[i].MBBI; 252 } 253 } 254 255 bool BaseKill = Loc->findRegisterUseOperandIdx(Base, true) != -1; 256 if (MergeOps(MBB, ++Loc, SOffset, Base, BaseKill, Opcode, Pred, PredReg, 257 Scratch, dl, Regs)) { 258 Merges.push_back(prior(Loc)); 259 for (unsigned i = SIndex, e = MemOps.size(); i != e; ++i) { 260 MBB.erase(MemOps[i].MBBI); 261 MemOps[i].Merged = true; 262 } 263 } 264 265 return; 266 } 267 268 /// getInstrPredicate - If instruction is predicated, returns its predicate 269 /// condition, otherwise returns AL. It also returns the condition code 270 /// register by reference. 271 static ARMCC::CondCodes getInstrPredicate(MachineInstr *MI, unsigned &PredReg) { 272 int PIdx = MI->findFirstPredOperandIdx(); 273 if (PIdx == -1) { 274 PredReg = 0; 275 return ARMCC::AL; 276 } 277 278 PredReg = MI->getOperand(PIdx+1).getReg(); 279 return (ARMCC::CondCodes)MI->getOperand(PIdx).getImm(); 280 } 281 282 static inline bool isMatchingDecrement(MachineInstr *MI, unsigned Base, 283 unsigned Bytes, ARMCC::CondCodes Pred, 284 unsigned PredReg) { 285 unsigned MyPredReg = 0; 286 return (MI && MI->getOpcode() == ARM::SUBri && 287 MI->getOperand(0).getReg() == Base && 288 MI->getOperand(1).getReg() == Base && 289 ARM_AM::getAM2Offset(MI->getOperand(2).getImm()) == Bytes && 290 getInstrPredicate(MI, MyPredReg) == Pred && 291 MyPredReg == PredReg); 292 } 293 294 static inline bool isMatchingIncrement(MachineInstr *MI, unsigned Base, 295 unsigned Bytes, ARMCC::CondCodes Pred, 296 unsigned PredReg) { 297 unsigned MyPredReg = 0; 298 return (MI && MI->getOpcode() == ARM::ADDri && 299 MI->getOperand(0).getReg() == Base && 300 MI->getOperand(1).getReg() == Base && 301 ARM_AM::getAM2Offset(MI->getOperand(2).getImm()) == Bytes && 302 getInstrPredicate(MI, MyPredReg) == Pred && 303 MyPredReg == PredReg); 304 } 305 306 static inline unsigned getLSMultipleTransferSize(MachineInstr *MI) { 307 switch (MI->getOpcode()) { 308 default: return 0; 309 case ARM::LDR: 310 case ARM::STR: 311 case ARM::FLDS: 312 case ARM::FSTS: 313 return 4; 314 case ARM::FLDD: 315 case ARM::FSTD: 316 return 8; 317 case ARM::LDM: 318 case ARM::STM: 319 return (MI->getNumOperands() - 4) * 4; 320 case ARM::FLDMS: 321 case ARM::FSTMS: 322 case ARM::FLDMD: 323 case ARM::FSTMD: 324 return ARM_AM::getAM5Offset(MI->getOperand(1).getImm()) * 4; 325 } 326 } 327 328 /// mergeBaseUpdateLSMultiple - Fold proceeding/trailing inc/dec of base 329 /// register into the LDM/STM/FLDM{D|S}/FSTM{D|S} op when possible: 330 /// 331 /// stmia rn, <ra, rb, rc> 332 /// rn := rn + 4 * 3; 333 /// => 334 /// stmia rn!, <ra, rb, rc> 335 /// 336 /// rn := rn - 4 * 3; 337 /// ldmia rn, <ra, rb, rc> 338 /// => 339 /// ldmdb rn!, <ra, rb, rc> 340 static bool mergeBaseUpdateLSMultiple(MachineBasicBlock &MBB, 341 MachineBasicBlock::iterator MBBI, 342 bool &Advance, 343 MachineBasicBlock::iterator &I) { 344 MachineInstr *MI = MBBI; 345 unsigned Base = MI->getOperand(0).getReg(); 346 unsigned Bytes = getLSMultipleTransferSize(MI); 347 unsigned PredReg = 0; 348 ARMCC::CondCodes Pred = getInstrPredicate(MI, PredReg); 349 int Opcode = MI->getOpcode(); 350 bool isAM4 = Opcode == ARM::LDM || Opcode == ARM::STM; 351 352 if (isAM4) { 353 if (ARM_AM::getAM4WBFlag(MI->getOperand(1).getImm())) 354 return false; 355 356 // Can't use the updating AM4 sub-mode if the base register is also a dest 357 // register. e.g. ldmdb r0!, {r0, r1, r2}. The behavior is undefined. 358 for (unsigned i = 3, e = MI->getNumOperands(); i != e; ++i) { 359 if (MI->getOperand(i).getReg() == Base) 360 return false; 361 } 362 363 ARM_AM::AMSubMode Mode = ARM_AM::getAM4SubMode(MI->getOperand(1).getImm()); 364 if (MBBI != MBB.begin()) { 365 MachineBasicBlock::iterator PrevMBBI = prior(MBBI); 366 if (Mode == ARM_AM::ia && 367 isMatchingDecrement(PrevMBBI, Base, Bytes, Pred, PredReg)) { 368 MI->getOperand(1).setImm(ARM_AM::getAM4ModeImm(ARM_AM::db, true)); 369 MBB.erase(PrevMBBI); 370 return true; 371 } else if (Mode == ARM_AM::ib && 372 isMatchingDecrement(PrevMBBI, Base, Bytes, Pred, PredReg)) { 373 MI->getOperand(1).setImm(ARM_AM::getAM4ModeImm(ARM_AM::da, true)); 374 MBB.erase(PrevMBBI); 375 return true; 376 } 377 } 378 379 if (MBBI != MBB.end()) { 380 MachineBasicBlock::iterator NextMBBI = next(MBBI); 381 if ((Mode == ARM_AM::ia || Mode == ARM_AM::ib) && 382 isMatchingIncrement(NextMBBI, Base, Bytes, Pred, PredReg)) { 383 MI->getOperand(1).setImm(ARM_AM::getAM4ModeImm(Mode, true)); 384 if (NextMBBI == I) { 385 Advance = true; 386 ++I; 387 } 388 MBB.erase(NextMBBI); 389 return true; 390 } else if ((Mode == ARM_AM::da || Mode == ARM_AM::db) && 391 isMatchingDecrement(NextMBBI, Base, Bytes, Pred, PredReg)) { 392 MI->getOperand(1).setImm(ARM_AM::getAM4ModeImm(Mode, true)); 393 if (NextMBBI == I) { 394 Advance = true; 395 ++I; 396 } 397 MBB.erase(NextMBBI); 398 return true; 399 } 400 } 401 } else { 402 // FLDM{D|S}, FSTM{D|S} addressing mode 5 ops. 403 if (ARM_AM::getAM5WBFlag(MI->getOperand(1).getImm())) 404 return false; 405 406 ARM_AM::AMSubMode Mode = ARM_AM::getAM5SubMode(MI->getOperand(1).getImm()); 407 unsigned Offset = ARM_AM::getAM5Offset(MI->getOperand(1).getImm()); 408 if (MBBI != MBB.begin()) { 409 MachineBasicBlock::iterator PrevMBBI = prior(MBBI); 410 if (Mode == ARM_AM::ia && 411 isMatchingDecrement(PrevMBBI, Base, Bytes, Pred, PredReg)) { 412 MI->getOperand(1).setImm(ARM_AM::getAM5Opc(ARM_AM::db, true, Offset)); 413 MBB.erase(PrevMBBI); 414 return true; 415 } 416 } 417 418 if (MBBI != MBB.end()) { 419 MachineBasicBlock::iterator NextMBBI = next(MBBI); 420 if (Mode == ARM_AM::ia && 421 isMatchingIncrement(NextMBBI, Base, Bytes, Pred, PredReg)) { 422 MI->getOperand(1).setImm(ARM_AM::getAM5Opc(ARM_AM::ia, true, Offset)); 423 if (NextMBBI == I) { 424 Advance = true; 425 ++I; 426 } 427 MBB.erase(NextMBBI); 428 } 429 return true; 430 } 431 } 432 433 return false; 434 } 435 436 static unsigned getPreIndexedLoadStoreOpcode(unsigned Opc) { 437 switch (Opc) { 438 case ARM::LDR: return ARM::LDR_PRE; 439 case ARM::STR: return ARM::STR_PRE; 440 case ARM::FLDS: return ARM::FLDMS; 441 case ARM::FLDD: return ARM::FLDMD; 442 case ARM::FSTS: return ARM::FSTMS; 443 case ARM::FSTD: return ARM::FSTMD; 444 default: abort(); 445 } 446 return 0; 447 } 448 449 static unsigned getPostIndexedLoadStoreOpcode(unsigned Opc) { 450 switch (Opc) { 451 case ARM::LDR: return ARM::LDR_POST; 452 case ARM::STR: return ARM::STR_POST; 453 case ARM::FLDS: return ARM::FLDMS; 454 case ARM::FLDD: return ARM::FLDMD; 455 case ARM::FSTS: return ARM::FSTMS; 456 case ARM::FSTD: return ARM::FSTMD; 457 default: abort(); 458 } 459 return 0; 460 } 461 462 /// mergeBaseUpdateLoadStore - Fold proceeding/trailing inc/dec of base 463 /// register into the LDR/STR/FLD{D|S}/FST{D|S} op when possible: 464 static bool mergeBaseUpdateLoadStore(MachineBasicBlock &MBB, 465 MachineBasicBlock::iterator MBBI, 466 const TargetInstrInfo *TII, 467 bool &Advance, 468 MachineBasicBlock::iterator &I) { 469 MachineInstr *MI = MBBI; 470 unsigned Base = MI->getOperand(1).getReg(); 471 bool BaseKill = MI->getOperand(1).isKill(); 472 unsigned Bytes = getLSMultipleTransferSize(MI); 473 int Opcode = MI->getOpcode(); 474 DebugLoc dl = MI->getDebugLoc(); 475 bool isAM2 = Opcode == ARM::LDR || Opcode == ARM::STR; 476 if ((isAM2 && ARM_AM::getAM2Offset(MI->getOperand(3).getImm()) != 0) || 477 (!isAM2 && ARM_AM::getAM5Offset(MI->getOperand(2).getImm()) != 0)) 478 return false; 479 480 bool isLd = Opcode == ARM::LDR || Opcode == ARM::FLDS || Opcode == ARM::FLDD; 481 // Can't do the merge if the destination register is the same as the would-be 482 // writeback register. 483 if (isLd && MI->getOperand(0).getReg() == Base) 484 return false; 485 486 unsigned PredReg = 0; 487 ARMCC::CondCodes Pred = getInstrPredicate(MI, PredReg); 488 bool DoMerge = false; 489 ARM_AM::AddrOpc AddSub = ARM_AM::add; 490 unsigned NewOpc = 0; 491 if (MBBI != MBB.begin()) { 492 MachineBasicBlock::iterator PrevMBBI = prior(MBBI); 493 if (isMatchingDecrement(PrevMBBI, Base, Bytes, Pred, PredReg)) { 494 DoMerge = true; 495 AddSub = ARM_AM::sub; 496 NewOpc = getPreIndexedLoadStoreOpcode(Opcode); 497 } else if (isAM2 && isMatchingIncrement(PrevMBBI, Base, Bytes, 498 Pred, PredReg)) { 499 DoMerge = true; 500 NewOpc = getPreIndexedLoadStoreOpcode(Opcode); 501 } 502 if (DoMerge) 503 MBB.erase(PrevMBBI); 504 } 505 506 if (!DoMerge && MBBI != MBB.end()) { 507 MachineBasicBlock::iterator NextMBBI = next(MBBI); 508 if (isAM2 && isMatchingDecrement(NextMBBI, Base, Bytes, Pred, PredReg)) { 509 DoMerge = true; 510 AddSub = ARM_AM::sub; 511 NewOpc = getPostIndexedLoadStoreOpcode(Opcode); 512 } else if (isMatchingIncrement(NextMBBI, Base, Bytes, Pred, PredReg)) { 513 DoMerge = true; 514 NewOpc = getPostIndexedLoadStoreOpcode(Opcode); 515 } 516 if (DoMerge) { 517 if (NextMBBI == I) { 518 Advance = true; 519 ++I; 520 } 521 MBB.erase(NextMBBI); 522 } 523 } 524 525 if (!DoMerge) 526 return false; 527 528 bool isDPR = NewOpc == ARM::FLDMD || NewOpc == ARM::FSTMD; 529 unsigned Offset = isAM2 ? ARM_AM::getAM2Opc(AddSub, Bytes, ARM_AM::no_shift) 530 : ARM_AM::getAM5Opc((AddSub == ARM_AM::sub) ? ARM_AM::db : ARM_AM::ia, 531 true, isDPR ? 2 : 1); 532 if (isLd) { 533 if (isAM2) 534 // LDR_PRE, LDR_POST; 535 BuildMI(MBB, MBBI, dl, TII->get(NewOpc), MI->getOperand(0).getReg()) 536 .addReg(Base, RegState::Define) 537 .addReg(Base).addReg(0).addImm(Offset).addImm(Pred).addReg(PredReg); 538 else 539 // FLDMS, FLDMD 540 BuildMI(MBB, MBBI, dl, TII->get(NewOpc)) 541 .addReg(Base, getKillRegState(BaseKill)) 542 .addImm(Offset).addImm(Pred).addReg(PredReg) 543 .addReg(MI->getOperand(0).getReg(), RegState::Define); 544 } else { 545 MachineOperand &MO = MI->getOperand(0); 546 if (isAM2) 547 // STR_PRE, STR_POST; 548 BuildMI(MBB, MBBI, dl, TII->get(NewOpc), Base) 549 .addReg(MO.getReg(), getKillRegState(MO.isKill())) 550 .addReg(Base).addReg(0).addImm(Offset).addImm(Pred).addReg(PredReg); 551 else 552 // FSTMS, FSTMD 553 BuildMI(MBB, MBBI, dl, TII->get(NewOpc)).addReg(Base).addImm(Offset) 554 .addImm(Pred).addReg(PredReg) 555 .addReg(MO.getReg(), getKillRegState(MO.isKill())); 556 } 557 MBB.erase(MBBI); 558 559 return true; 560 } 561 562 /// isMemoryOp - Returns true if instruction is a memory operations (that this 563 /// pass is capable of operating on). 564 static bool isMemoryOp(MachineInstr *MI) { 565 int Opcode = MI->getOpcode(); 566 switch (Opcode) { 567 default: break; 568 case ARM::LDR: 569 case ARM::STR: 570 return MI->getOperand(1).isReg() && MI->getOperand(2).getReg() == 0; 571 case ARM::FLDS: 572 case ARM::FSTS: 573 return MI->getOperand(1).isReg(); 574 case ARM::FLDD: 575 case ARM::FSTD: 576 return MI->getOperand(1).isReg(); 577 } 578 return false; 579 } 580 581 /// AdvanceRS - Advance register scavenger to just before the earliest memory 582 /// op that is being merged. 583 void ARMLoadStoreOpt::AdvanceRS(MachineBasicBlock &MBB, MemOpQueue &MemOps) { 584 MachineBasicBlock::iterator Loc = MemOps[0].MBBI; 585 unsigned Position = MemOps[0].Position; 586 for (unsigned i = 1, e = MemOps.size(); i != e; ++i) { 587 if (MemOps[i].Position < Position) { 588 Position = MemOps[i].Position; 589 Loc = MemOps[i].MBBI; 590 } 591 } 592 593 if (Loc != MBB.begin()) 594 RS->forward(prior(Loc)); 595 } 596 597 static int getMemoryOpOffset(const MachineInstr *MI) { 598 int Opcode = MI->getOpcode(); 599 bool isAM2 = Opcode == ARM::LDR || Opcode == ARM::STR; 600 bool isAM3 = Opcode == ARM::LDRD || Opcode == ARM::STRD; 601 unsigned NumOperands = MI->getDesc().getNumOperands(); 602 unsigned OffField = MI->getOperand(NumOperands-3).getImm(); 603 int Offset = isAM2 604 ? ARM_AM::getAM2Offset(OffField) 605 : (isAM3 ? ARM_AM::getAM3Offset(OffField) 606 : ARM_AM::getAM5Offset(OffField) * 4); 607 if (isAM2) { 608 if (ARM_AM::getAM2Op(OffField) == ARM_AM::sub) 609 Offset = -Offset; 610 } else if (isAM3) { 611 if (ARM_AM::getAM3Op(OffField) == ARM_AM::sub) 612 Offset = -Offset; 613 } else { 614 if (ARM_AM::getAM5Op(OffField) == ARM_AM::sub) 615 Offset = -Offset; 616 } 617 return Offset; 618 } 619 620 static void InsertLDR_STR(MachineBasicBlock &MBB, 621 MachineBasicBlock::iterator &MBBI, 622 int OffImm, bool isDef, 623 DebugLoc dl, unsigned NewOpc, 624 unsigned Reg, bool RegDeadKill, 625 unsigned BaseReg, bool BaseKill, 626 unsigned OffReg, bool OffKill, 627 ARMCC::CondCodes Pred, unsigned PredReg, 628 const TargetInstrInfo *TII) { 629 unsigned Offset; 630 if (OffImm < 0) 631 Offset = ARM_AM::getAM2Opc(ARM_AM::sub, -OffImm, ARM_AM::no_shift); 632 else 633 Offset = ARM_AM::getAM2Opc(ARM_AM::add, OffImm, ARM_AM::no_shift); 634 if (isDef) 635 BuildMI(MBB, MBBI, MBBI->getDebugLoc(), TII->get(NewOpc)) 636 .addReg(Reg, getDefRegState(true) | getDeadRegState(RegDeadKill)) 637 .addReg(BaseReg, getKillRegState(BaseKill)) 638 .addReg(OffReg, getKillRegState(OffKill)) 639 .addImm(Offset) 640 .addImm(Pred).addReg(PredReg); 641 else 642 BuildMI(MBB, MBBI, MBBI->getDebugLoc(), TII->get(NewOpc)) 643 .addReg(Reg, getKillRegState(RegDeadKill)) 644 .addReg(BaseReg, getKillRegState(BaseKill)) 645 .addReg(OffReg, getKillRegState(OffKill)) 646 .addImm(Offset) 647 .addImm(Pred).addReg(PredReg); 648 } 649 650 bool ARMLoadStoreOpt::FixInvalidRegPairOp(MachineBasicBlock &MBB, 651 MachineBasicBlock::iterator &MBBI) { 652 MachineInstr *MI = &*MBBI; 653 unsigned Opcode = MI->getOpcode(); 654 if (Opcode == ARM::LDRD || Opcode == ARM::STRD) { 655 unsigned EvenReg = MI->getOperand(0).getReg(); 656 unsigned OddReg = MI->getOperand(1).getReg(); 657 unsigned EvenRegNum = TRI->getDwarfRegNum(EvenReg, false); 658 unsigned OddRegNum = TRI->getDwarfRegNum(OddReg, false); 659 if ((EvenRegNum & 1) == 0 && (EvenRegNum + 1) == OddRegNum) 660 return false; 661 662 bool isLd = Opcode == ARM::LDRD; 663 bool EvenDeadKill = isLd ? 664 MI->getOperand(0).isDead() : MI->getOperand(0).isKill(); 665 bool OddDeadKill = isLd ? 666 MI->getOperand(1).isDead() : MI->getOperand(1).isKill(); 667 const MachineOperand &BaseOp = MI->getOperand(2); 668 unsigned BaseReg = BaseOp.getReg(); 669 bool BaseKill = BaseOp.isKill(); 670 const MachineOperand &OffOp = MI->getOperand(3); 671 unsigned OffReg = OffOp.getReg(); 672 bool OffKill = OffOp.isKill(); 673 int OffImm = getMemoryOpOffset(MI); 674 unsigned PredReg = 0; 675 ARMCC::CondCodes Pred = getInstrPredicate(MI, PredReg); 676 677 if (OddRegNum > EvenRegNum && OffReg == 0 && OffImm == 0) { 678 // Ascending register numbers and no offset. It's safe to change it to a 679 // ldm or stm. 680 unsigned NewOpc = (Opcode == ARM::LDRD) ? ARM::LDM : ARM::STM; 681 if (isLd) { 682 BuildMI(MBB, MBBI, MBBI->getDebugLoc(), TII->get(NewOpc)) 683 .addReg(BaseReg, getKillRegState(BaseKill)) 684 .addImm(ARM_AM::getAM4ModeImm(ARM_AM::ia)) 685 .addImm(Pred).addReg(PredReg) 686 .addReg(EvenReg, getDefRegState(isLd) | getDeadRegState(EvenDeadKill)) 687 .addReg(OddReg, getDefRegState(isLd) | getDeadRegState(OddDeadKill)); 688 ++NumLDRD2LDM; 689 } else { 690 BuildMI(MBB, MBBI, MBBI->getDebugLoc(), TII->get(NewOpc)) 691 .addReg(BaseReg, getKillRegState(BaseKill)) 692 .addImm(ARM_AM::getAM4ModeImm(ARM_AM::ia)) 693 .addImm(Pred).addReg(PredReg) 694 .addReg(EvenReg, getKillRegState(EvenDeadKill)) 695 .addReg(OddReg, getKillRegState(OddDeadKill)); 696 ++NumSTRD2STM; 697 } 698 } else { 699 // Split into two instructions. 700 unsigned NewOpc = (Opcode == ARM::LDRD) ? ARM::LDR : ARM::STR; 701 DebugLoc dl = MBBI->getDebugLoc(); 702 // If this is a load and base register is killed, it may have been 703 // re-defed by the load, make sure the first load does not clobber it. 704 if (isLd && 705 (BaseKill || OffKill) && 706 (TRI->regsOverlap(EvenReg, BaseReg) || 707 (OffReg && TRI->regsOverlap(EvenReg, OffReg)))) { 708 assert(!TRI->regsOverlap(OddReg, BaseReg) && 709 (!OffReg || !TRI->regsOverlap(OddReg, OffReg))); 710 InsertLDR_STR(MBB, MBBI, OffImm+4, isLd, dl, NewOpc, OddReg, OddDeadKill, 711 BaseReg, false, OffReg, false, Pred, PredReg, TII); 712 InsertLDR_STR(MBB, MBBI, OffImm, isLd, dl, NewOpc, EvenReg, EvenDeadKill, 713 BaseReg, BaseKill, OffReg, OffKill, Pred, PredReg, TII); 714 } else { 715 InsertLDR_STR(MBB, MBBI, OffImm, isLd, dl, NewOpc, 716 EvenReg, EvenDeadKill, BaseReg, false, OffReg, false, 717 Pred, PredReg, TII); 718 InsertLDR_STR(MBB, MBBI, OffImm+4, isLd, dl, NewOpc, 719 OddReg, OddDeadKill, BaseReg, BaseKill, OffReg, OffKill, 720 Pred, PredReg, TII); 721 } 722 if (isLd) 723 ++NumLDRD2LDR; 724 else 725 ++NumSTRD2STR; 726 } 727 728 MBBI = prior(MBBI); 729 MBB.erase(MI); 730 } 731 return false; 732 } 733 734 /// LoadStoreMultipleOpti - An optimization pass to turn multiple LDR / STR 735 /// ops of the same base and incrementing offset into LDM / STM ops. 736 bool ARMLoadStoreOpt::LoadStoreMultipleOpti(MachineBasicBlock &MBB) { 737 unsigned NumMerges = 0; 738 unsigned NumMemOps = 0; 739 MemOpQueue MemOps; 740 unsigned CurrBase = 0; 741 int CurrOpc = -1; 742 unsigned CurrSize = 0; 743 ARMCC::CondCodes CurrPred = ARMCC::AL; 744 unsigned CurrPredReg = 0; 745 unsigned Position = 0; 746 SmallVector<MachineBasicBlock::iterator,4> Merges; 747 748 RS->enterBasicBlock(&MBB); 749 MachineBasicBlock::iterator MBBI = MBB.begin(), E = MBB.end(); 750 while (MBBI != E) { 751 if (FixInvalidRegPairOp(MBB, MBBI)) 752 continue; 753 754 bool Advance = false; 755 bool TryMerge = false; 756 bool Clobber = false; 757 758 bool isMemOp = isMemoryOp(MBBI); 759 if (isMemOp) { 760 int Opcode = MBBI->getOpcode(); 761 unsigned Size = getLSMultipleTransferSize(MBBI); 762 unsigned Base = MBBI->getOperand(1).getReg(); 763 unsigned PredReg = 0; 764 ARMCC::CondCodes Pred = getInstrPredicate(MBBI, PredReg); 765 int Offset = getMemoryOpOffset(MBBI); 766 // Watch out for: 767 // r4 := ldr [r5] 768 // r5 := ldr [r5, #4] 769 // r6 := ldr [r5, #8] 770 // 771 // The second ldr has effectively broken the chain even though it 772 // looks like the later ldr(s) use the same base register. Try to 773 // merge the ldr's so far, including this one. But don't try to 774 // combine the following ldr(s). 775 Clobber = (Opcode == ARM::LDR && Base == MBBI->getOperand(0).getReg()); 776 if (CurrBase == 0 && !Clobber) { 777 // Start of a new chain. 778 CurrBase = Base; 779 CurrOpc = Opcode; 780 CurrSize = Size; 781 CurrPred = Pred; 782 CurrPredReg = PredReg; 783 MemOps.push_back(MemOpQueueEntry(Offset, Position, MBBI)); 784 NumMemOps++; 785 Advance = true; 786 } else { 787 if (Clobber) { 788 TryMerge = true; 789 Advance = true; 790 } 791 792 if (CurrOpc == Opcode && CurrBase == Base && CurrPred == Pred) { 793 // No need to match PredReg. 794 // Continue adding to the queue. 795 if (Offset > MemOps.back().Offset) { 796 MemOps.push_back(MemOpQueueEntry(Offset, Position, MBBI)); 797 NumMemOps++; 798 Advance = true; 799 } else { 800 for (MemOpQueueIter I = MemOps.begin(), E = MemOps.end(); 801 I != E; ++I) { 802 if (Offset < I->Offset) { 803 MemOps.insert(I, MemOpQueueEntry(Offset, Position, MBBI)); 804 NumMemOps++; 805 Advance = true; 806 break; 807 } else if (Offset == I->Offset) { 808 // Collision! This can't be merged! 809 break; 810 } 811 } 812 } 813 } 814 } 815 } 816 817 if (Advance) { 818 ++Position; 819 ++MBBI; 820 } else 821 TryMerge = true; 822 823 if (TryMerge) { 824 if (NumMemOps > 1) { 825 // Try to find a free register to use as a new base in case it's needed. 826 // First advance to the instruction just before the start of the chain. 827 AdvanceRS(MBB, MemOps); 828 // Find a scratch register. Make sure it's a call clobbered register or 829 // a spilled callee-saved register. 830 unsigned Scratch = RS->FindUnusedReg(&ARM::GPRRegClass, true); 831 if (!Scratch) 832 Scratch = RS->FindUnusedReg(&ARM::GPRRegClass, 833 AFI->getSpilledCSRegisters()); 834 // Process the load / store instructions. 835 RS->forward(prior(MBBI)); 836 837 // Merge ops. 838 Merges.clear(); 839 MergeLDR_STR(MBB, 0, CurrBase, CurrOpc, CurrSize, 840 CurrPred, CurrPredReg, Scratch, MemOps, Merges); 841 842 // Try folding preceeding/trailing base inc/dec into the generated 843 // LDM/STM ops. 844 for (unsigned i = 0, e = Merges.size(); i < e; ++i) 845 if (mergeBaseUpdateLSMultiple(MBB, Merges[i], Advance, MBBI)) 846 ++NumMerges; 847 NumMerges += Merges.size(); 848 849 // Try folding preceeding/trailing base inc/dec into those load/store 850 // that were not merged to form LDM/STM ops. 851 for (unsigned i = 0; i != NumMemOps; ++i) 852 if (!MemOps[i].Merged) 853 if (mergeBaseUpdateLoadStore(MBB, MemOps[i].MBBI, TII,Advance,MBBI)) 854 ++NumMerges; 855 856 // RS may be pointing to an instruction that's deleted. 857 RS->skipTo(prior(MBBI)); 858 } else if (NumMemOps == 1) { 859 // Try folding preceeding/trailing base inc/dec into the single 860 // load/store. 861 if (mergeBaseUpdateLoadStore(MBB, MemOps[0].MBBI, TII, Advance, MBBI)) { 862 ++NumMerges; 863 RS->forward(prior(MBBI)); 864 } 865 } 866 867 CurrBase = 0; 868 CurrOpc = -1; 869 CurrSize = 0; 870 CurrPred = ARMCC::AL; 871 CurrPredReg = 0; 872 if (NumMemOps) { 873 MemOps.clear(); 874 NumMemOps = 0; 875 } 876 877 // If iterator hasn't been advanced and this is not a memory op, skip it. 878 // It can't start a new chain anyway. 879 if (!Advance && !isMemOp && MBBI != E) { 880 ++Position; 881 ++MBBI; 882 } 883 } 884 } 885 return NumMerges > 0; 886 } 887 888 namespace { 889 struct OffsetCompare { 890 bool operator()(const MachineInstr *LHS, const MachineInstr *RHS) const { 891 int LOffset = getMemoryOpOffset(LHS); 892 int ROffset = getMemoryOpOffset(RHS); 893 assert(LHS == RHS || LOffset != ROffset); 894 return LOffset > ROffset; 895 } 896 }; 897 } 898 899 /// MergeReturnIntoLDM - If this is a exit BB, try merging the return op 900 /// (bx lr) into the preceeding stack restore so it directly restore the value 901 /// of LR into pc. 902 /// ldmfd sp!, {r7, lr} 903 /// bx lr 904 /// => 905 /// ldmfd sp!, {r7, pc} 906 bool ARMLoadStoreOpt::MergeReturnIntoLDM(MachineBasicBlock &MBB) { 907 if (MBB.empty()) return false; 908 909 MachineBasicBlock::iterator MBBI = prior(MBB.end()); 910 if (MBBI->getOpcode() == ARM::BX_RET && MBBI != MBB.begin()) { 911 MachineInstr *PrevMI = prior(MBBI); 912 if (PrevMI->getOpcode() == ARM::LDM) { 913 MachineOperand &MO = PrevMI->getOperand(PrevMI->getNumOperands()-1); 914 if (MO.getReg() == ARM::LR) { 915 PrevMI->setDesc(TII->get(ARM::LDM_RET)); 916 MO.setReg(ARM::PC); 917 MBB.erase(MBBI); 918 return true; 919 } 920 } 921 } 922 return false; 923 } 924 925 bool ARMLoadStoreOpt::runOnMachineFunction(MachineFunction &Fn) { 926 const TargetMachine &TM = Fn.getTarget(); 927 AFI = Fn.getInfo<ARMFunctionInfo>(); 928 TII = TM.getInstrInfo(); 929 TRI = TM.getRegisterInfo(); 930 RS = new RegScavenger(); 931 932 bool Modified = false; 933 for (MachineFunction::iterator MFI = Fn.begin(), E = Fn.end(); MFI != E; 934 ++MFI) { 935 MachineBasicBlock &MBB = *MFI; 936 Modified |= LoadStoreMultipleOpti(MBB); 937 Modified |= MergeReturnIntoLDM(MBB); 938 } 939 940 delete RS; 941 return Modified; 942 } 943 944 945 /// ARMPreAllocLoadStoreOpt - Pre- register allocation pass that move 946 /// load / stores from consecutive locations close to make it more 947 /// likely they will be combined later. 948 949 namespace { 950 struct VISIBILITY_HIDDEN ARMPreAllocLoadStoreOpt : public MachineFunctionPass{ 951 static char ID; 952 ARMPreAllocLoadStoreOpt() : MachineFunctionPass(&ID) {} 953 954 const TargetData *TD; 955 const TargetInstrInfo *TII; 956 const TargetRegisterInfo *TRI; 957 const ARMSubtarget *STI; 958 MachineRegisterInfo *MRI; 959 960 virtual bool runOnMachineFunction(MachineFunction &Fn); 961 962 virtual const char *getPassName() const { 963 return "ARM pre- register allocation load / store optimization pass"; 964 } 965 966 private: 967 bool CanFormLdStDWord(MachineInstr *Op0, MachineInstr *Op1, DebugLoc &dl, 968 unsigned &NewOpc, unsigned &EvenReg, 969 unsigned &OddReg, unsigned &BaseReg, 970 unsigned &OffReg, unsigned &Offset, 971 unsigned &PredReg, ARMCC::CondCodes &Pred); 972 bool RescheduleOps(MachineBasicBlock *MBB, 973 SmallVector<MachineInstr*, 4> &Ops, 974 unsigned Base, bool isLd, 975 DenseMap<MachineInstr*, unsigned> &MI2LocMap); 976 bool RescheduleLoadStoreInstrs(MachineBasicBlock *MBB); 977 }; 978 char ARMPreAllocLoadStoreOpt::ID = 0; 979 } 980 981 bool ARMPreAllocLoadStoreOpt::runOnMachineFunction(MachineFunction &Fn) { 982 TD = Fn.getTarget().getTargetData(); 983 TII = Fn.getTarget().getInstrInfo(); 984 TRI = Fn.getTarget().getRegisterInfo(); 985 STI = &Fn.getTarget().getSubtarget<ARMSubtarget>(); 986 MRI = &Fn.getRegInfo(); 987 988 bool Modified = false; 989 for (MachineFunction::iterator MFI = Fn.begin(), E = Fn.end(); MFI != E; 990 ++MFI) 991 Modified |= RescheduleLoadStoreInstrs(MFI); 992 993 return Modified; 994 } 995 996 static bool IsSafeAndProfitableToMove(bool isLd, unsigned Base, 997 MachineBasicBlock::iterator I, 998 MachineBasicBlock::iterator E, 999 SmallPtrSet<MachineInstr*, 4> &MemOps, 1000 SmallSet<unsigned, 4> &MemRegs, 1001 const TargetRegisterInfo *TRI) { 1002 // Are there stores / loads / calls between them? 1003 // FIXME: This is overly conservative. We should make use of alias information 1004 // some day. 1005 SmallSet<unsigned, 4> AddedRegPressure; 1006 while (++I != E) { 1007 if (MemOps.count(&*I)) 1008 continue; 1009 const TargetInstrDesc &TID = I->getDesc(); 1010 if (TID.isCall() || TID.isTerminator() || TID.hasUnmodeledSideEffects()) 1011 return false; 1012 if (isLd && TID.mayStore()) 1013 return false; 1014 if (!isLd) { 1015 if (TID.mayLoad()) 1016 return false; 1017 // It's not safe to move the first 'str' down. 1018 // str r1, [r0] 1019 // strh r5, [r0] 1020 // str r4, [r0, #+4] 1021 if (TID.mayStore()) 1022 return false; 1023 } 1024 for (unsigned j = 0, NumOps = I->getNumOperands(); j != NumOps; ++j) { 1025 MachineOperand &MO = I->getOperand(j); 1026 if (!MO.isReg()) 1027 continue; 1028 unsigned Reg = MO.getReg(); 1029 if (MO.isDef() && TRI->regsOverlap(Reg, Base)) 1030 return false; 1031 if (Reg != Base && !MemRegs.count(Reg)) 1032 AddedRegPressure.insert(Reg); 1033 } 1034 } 1035 1036 // Estimate register pressure increase due to the transformation. 1037 if (MemRegs.size() <= 4) 1038 // Ok if we are moving small number of instructions. 1039 return true; 1040 return AddedRegPressure.size() <= MemRegs.size() * 2; 1041 } 1042 1043 bool 1044 ARMPreAllocLoadStoreOpt::CanFormLdStDWord(MachineInstr *Op0, MachineInstr *Op1, 1045 DebugLoc &dl, 1046 unsigned &NewOpc, unsigned &EvenReg, 1047 unsigned &OddReg, unsigned &BaseReg, 1048 unsigned &OffReg, unsigned &Offset, 1049 unsigned &PredReg, 1050 ARMCC::CondCodes &Pred) { 1051 // FIXME: FLDS / FSTS -> FLDD / FSTD 1052 unsigned Opcode = Op0->getOpcode(); 1053 if (Opcode == ARM::LDR) 1054 NewOpc = ARM::LDRD; 1055 else if (Opcode == ARM::STR) 1056 NewOpc = ARM::STRD; 1057 else 1058 return 0; 1059 1060 // Must sure the base address satisfies i64 ld / st alignment requirement. 1061 if (!Op0->hasOneMemOperand() || 1062 !Op0->memoperands_begin()->getValue() || 1063 Op0->memoperands_begin()->isVolatile()) 1064 return false; 1065 1066 unsigned Align = Op0->memoperands_begin()->getAlignment(); 1067 unsigned ReqAlign = STI->hasV6Ops() 1068 ? TD->getPrefTypeAlignment(Type::Int64Ty) : 8; // Pre-v6 need 8-byte align 1069 if (Align < ReqAlign) 1070 return false; 1071 1072 // Then make sure the immediate offset fits. 1073 int OffImm = getMemoryOpOffset(Op0); 1074 ARM_AM::AddrOpc AddSub = ARM_AM::add; 1075 if (OffImm < 0) { 1076 AddSub = ARM_AM::sub; 1077 OffImm = - OffImm; 1078 } 1079 if (OffImm >= 256) // 8 bits 1080 return false; 1081 Offset = ARM_AM::getAM3Opc(AddSub, OffImm); 1082 1083 EvenReg = Op0->getOperand(0).getReg(); 1084 OddReg = Op1->getOperand(0).getReg(); 1085 if (EvenReg == OddReg) 1086 return false; 1087 BaseReg = Op0->getOperand(1).getReg(); 1088 OffReg = Op0->getOperand(2).getReg(); 1089 Pred = getInstrPredicate(Op0, PredReg); 1090 dl = Op0->getDebugLoc(); 1091 return true; 1092 } 1093 1094 bool ARMPreAllocLoadStoreOpt::RescheduleOps(MachineBasicBlock *MBB, 1095 SmallVector<MachineInstr*, 4> &Ops, 1096 unsigned Base, bool isLd, 1097 DenseMap<MachineInstr*, unsigned> &MI2LocMap) { 1098 bool RetVal = false; 1099 1100 // Sort by offset (in reverse order). 1101 std::sort(Ops.begin(), Ops.end(), OffsetCompare()); 1102 1103 // The loads / stores of the same base are in order. Scan them from first to 1104 // last and check for the followins: 1105 // 1. Any def of base. 1106 // 2. Any gaps. 1107 while (Ops.size() > 1) { 1108 unsigned FirstLoc = ~0U; 1109 unsigned LastLoc = 0; 1110 MachineInstr *FirstOp = 0; 1111 MachineInstr *LastOp = 0; 1112 int LastOffset = 0; 1113 unsigned LastOpcode = 0; 1114 unsigned LastBytes = 0; 1115 unsigned NumMove = 0; 1116 for (int i = Ops.size() - 1; i >= 0; --i) { 1117 MachineInstr *Op = Ops[i]; 1118 unsigned Loc = MI2LocMap[Op]; 1119 if (Loc <= FirstLoc) { 1120 FirstLoc = Loc; 1121 FirstOp = Op; 1122 } 1123 if (Loc >= LastLoc) { 1124 LastLoc = Loc; 1125 LastOp = Op; 1126 } 1127 1128 unsigned Opcode = Op->getOpcode(); 1129 if (LastOpcode && Opcode != LastOpcode) 1130 break; 1131 1132 int Offset = getMemoryOpOffset(Op); 1133 unsigned Bytes = getLSMultipleTransferSize(Op); 1134 if (LastBytes) { 1135 if (Bytes != LastBytes || Offset != (LastOffset + (int)Bytes)) 1136 break; 1137 } 1138 LastOffset = Offset; 1139 LastBytes = Bytes; 1140 LastOpcode = Opcode; 1141 if (++NumMove == 8) // FIXME: Tune 1142 break; 1143 } 1144 1145 if (NumMove <= 1) 1146 Ops.pop_back(); 1147 else { 1148 SmallPtrSet<MachineInstr*, 4> MemOps; 1149 SmallSet<unsigned, 4> MemRegs; 1150 for (int i = NumMove-1; i >= 0; --i) { 1151 MemOps.insert(Ops[i]); 1152 MemRegs.insert(Ops[i]->getOperand(0).getReg()); 1153 } 1154 1155 // Be conservative, if the instructions are too far apart, don't 1156 // move them. We want to limit the increase of register pressure. 1157 bool DoMove = (LastLoc - FirstLoc) <= NumMove*4; // FIXME: Tune this. 1158 if (DoMove) 1159 DoMove = IsSafeAndProfitableToMove(isLd, Base, FirstOp, LastOp, 1160 MemOps, MemRegs, TRI); 1161 if (!DoMove) { 1162 for (unsigned i = 0; i != NumMove; ++i) 1163 Ops.pop_back(); 1164 } else { 1165 // This is the new location for the loads / stores. 1166 MachineBasicBlock::iterator InsertPos = isLd ? FirstOp : LastOp; 1167 while (InsertPos != MBB->end() && MemOps.count(InsertPos)) 1168 ++InsertPos; 1169 1170 // If we are moving a pair of loads / stores, see if it makes sense 1171 // to try to allocate a pair of registers that can form register pairs. 1172 MachineInstr *Op0 = Ops.back(); 1173 MachineInstr *Op1 = Ops[Ops.size()-2]; 1174 unsigned EvenReg = 0, OddReg = 0; 1175 unsigned BaseReg = 0, OffReg = 0, PredReg = 0; 1176 ARMCC::CondCodes Pred = ARMCC::AL; 1177 unsigned NewOpc = 0; 1178 unsigned Offset = 0; 1179 DebugLoc dl; 1180 if (NumMove == 2 && CanFormLdStDWord(Op0, Op1, dl, NewOpc, 1181 EvenReg, OddReg, BaseReg, OffReg, 1182 Offset, PredReg, Pred)) { 1183 Ops.pop_back(); 1184 Ops.pop_back(); 1185 1186 // Form the pair instruction. 1187 if (isLd) { 1188 BuildMI(*MBB, InsertPos, dl, TII->get(NewOpc)) 1189 .addReg(EvenReg, RegState::Define) 1190 .addReg(OddReg, RegState::Define) 1191 .addReg(BaseReg).addReg(0).addImm(Offset) 1192 .addImm(Pred).addReg(PredReg); 1193 ++NumLDRDFormed; 1194 } else { 1195 BuildMI(*MBB, InsertPos, dl, TII->get(NewOpc)) 1196 .addReg(EvenReg) 1197 .addReg(OddReg) 1198 .addReg(BaseReg).addReg(0).addImm(Offset) 1199 .addImm(Pred).addReg(PredReg); 1200 ++NumSTRDFormed; 1201 } 1202 MBB->erase(Op0); 1203 MBB->erase(Op1); 1204 1205 // Add register allocation hints to form register pairs. 1206 MRI->setRegAllocationHint(EvenReg, ARMRI::RegPairEven, OddReg); 1207 MRI->setRegAllocationHint(OddReg, ARMRI::RegPairOdd, EvenReg); 1208 } else { 1209 for (unsigned i = 0; i != NumMove; ++i) { 1210 MachineInstr *Op = Ops.back(); 1211 Ops.pop_back(); 1212 MBB->splice(InsertPos, MBB, Op); 1213 } 1214 } 1215 1216 NumLdStMoved += NumMove; 1217 RetVal = true; 1218 } 1219 } 1220 } 1221 1222 return RetVal; 1223 } 1224 1225 bool 1226 ARMPreAllocLoadStoreOpt::RescheduleLoadStoreInstrs(MachineBasicBlock *MBB) { 1227 bool RetVal = false; 1228 1229 DenseMap<MachineInstr*, unsigned> MI2LocMap; 1230 DenseMap<unsigned, SmallVector<MachineInstr*, 4> > Base2LdsMap; 1231 DenseMap<unsigned, SmallVector<MachineInstr*, 4> > Base2StsMap; 1232 SmallVector<unsigned, 4> LdBases; 1233 SmallVector<unsigned, 4> StBases; 1234 1235 unsigned Loc = 0; 1236 MachineBasicBlock::iterator MBBI = MBB->begin(); 1237 MachineBasicBlock::iterator E = MBB->end(); 1238 while (MBBI != E) { 1239 for (; MBBI != E; ++MBBI) { 1240 MachineInstr *MI = MBBI; 1241 const TargetInstrDesc &TID = MI->getDesc(); 1242 if (TID.isCall() || TID.isTerminator()) { 1243 // Stop at barriers. 1244 ++MBBI; 1245 break; 1246 } 1247 1248 MI2LocMap[MI] = Loc++; 1249 if (!isMemoryOp(MI)) 1250 continue; 1251 unsigned PredReg = 0; 1252 if (getInstrPredicate(MI, PredReg) != ARMCC::AL) 1253 continue; 1254 1255 int Opcode = MI->getOpcode(); 1256 bool isLd = Opcode == ARM::LDR || 1257 Opcode == ARM::FLDS || Opcode == ARM::FLDD; 1258 unsigned Base = MI->getOperand(1).getReg(); 1259 int Offset = getMemoryOpOffset(MI); 1260 1261 bool StopHere = false; 1262 if (isLd) { 1263 DenseMap<unsigned, SmallVector<MachineInstr*, 4> >::iterator BI = 1264 Base2LdsMap.find(Base); 1265 if (BI != Base2LdsMap.end()) { 1266 for (unsigned i = 0, e = BI->second.size(); i != e; ++i) { 1267 if (Offset == getMemoryOpOffset(BI->second[i])) { 1268 StopHere = true; 1269 break; 1270 } 1271 } 1272 if (!StopHere) 1273 BI->second.push_back(MI); 1274 } else { 1275 SmallVector<MachineInstr*, 4> MIs; 1276 MIs.push_back(MI); 1277 Base2LdsMap[Base] = MIs; 1278 LdBases.push_back(Base); 1279 } 1280 } else { 1281 DenseMap<unsigned, SmallVector<MachineInstr*, 4> >::iterator BI = 1282 Base2StsMap.find(Base); 1283 if (BI != Base2StsMap.end()) { 1284 for (unsigned i = 0, e = BI->second.size(); i != e; ++i) { 1285 if (Offset == getMemoryOpOffset(BI->second[i])) { 1286 StopHere = true; 1287 break; 1288 } 1289 } 1290 if (!StopHere) 1291 BI->second.push_back(MI); 1292 } else { 1293 SmallVector<MachineInstr*, 4> MIs; 1294 MIs.push_back(MI); 1295 Base2StsMap[Base] = MIs; 1296 StBases.push_back(Base); 1297 } 1298 } 1299 1300 if (StopHere) { 1301 // Found a duplicate (a base+offset combination that's seen earlier). 1302 // Backtrack. 1303 --Loc; 1304 break; 1305 } 1306 } 1307 1308 // Re-schedule loads. 1309 for (unsigned i = 0, e = LdBases.size(); i != e; ++i) { 1310 unsigned Base = LdBases[i]; 1311 SmallVector<MachineInstr*, 4> &Lds = Base2LdsMap[Base]; 1312 if (Lds.size() > 1) 1313 RetVal |= RescheduleOps(MBB, Lds, Base, true, MI2LocMap); 1314 } 1315 1316 // Re-schedule stores. 1317 for (unsigned i = 0, e = StBases.size(); i != e; ++i) { 1318 unsigned Base = StBases[i]; 1319 SmallVector<MachineInstr*, 4> &Sts = Base2StsMap[Base]; 1320 if (Sts.size() > 1) 1321 RetVal |= RescheduleOps(MBB, Sts, Base, false, MI2LocMap); 1322 } 1323 1324 if (MBBI != E) { 1325 Base2LdsMap.clear(); 1326 Base2StsMap.clear(); 1327 LdBases.clear(); 1328 StBases.clear(); 1329 } 1330 } 1331 1332 return RetVal; 1333 } 1334 1335 1336 /// createARMLoadStoreOptimizationPass - returns an instance of the load / store 1337 /// optimization pass. 1338 FunctionPass *llvm::createARMLoadStoreOptimizationPass(bool PreAlloc) { 1339 if (PreAlloc) 1340 return new ARMPreAllocLoadStoreOpt(); 1341 return new ARMLoadStoreOpt(); 1342 } 1343