11462faadSDan Gohman //===-- WebAssemblyRegStackify.cpp - Register Stackification --------------===// 21462faadSDan Gohman // 31462faadSDan Gohman // The LLVM Compiler Infrastructure 41462faadSDan Gohman // 51462faadSDan Gohman // This file is distributed under the University of Illinois Open Source 61462faadSDan Gohman // License. See LICENSE.TXT for details. 71462faadSDan Gohman // 81462faadSDan Gohman //===----------------------------------------------------------------------===// 91462faadSDan Gohman /// 101462faadSDan Gohman /// \file 111462faadSDan Gohman /// \brief This file implements a register stacking pass. 121462faadSDan Gohman /// 131462faadSDan Gohman /// This pass reorders instructions to put register uses and defs in an order 141462faadSDan Gohman /// such that they form single-use expression trees. Registers fitting this form 151462faadSDan Gohman /// are then marked as "stackified", meaning references to them are replaced by 16e040533eSDan Gohman /// "push" and "pop" from the value stack. 171462faadSDan Gohman /// 1831448f16SDan Gohman /// This is primarily a code size optimization, since temporary values on the 19e040533eSDan Gohman /// value stack don't need to be named. 201462faadSDan Gohman /// 211462faadSDan Gohman //===----------------------------------------------------------------------===// 221462faadSDan Gohman 231462faadSDan Gohman #include "WebAssembly.h" 244ba4816bSDan Gohman #include "MCTargetDesc/WebAssemblyMCTargetDesc.h" // for WebAssembly::ARGUMENT_* 257a6b9825SDan Gohman #include "WebAssemblyMachineFunctionInfo.h" 26b6fd39a3SDan Gohman #include "WebAssemblySubtarget.h" 274fc4e42dSDan Gohman #include "WebAssemblyUtilities.h" 2881719f85SDan Gohman #include "llvm/Analysis/AliasAnalysis.h" 298887d1faSDan Gohman #include "llvm/CodeGen/LiveIntervalAnalysis.h" 301462faadSDan Gohman #include "llvm/CodeGen/MachineBlockFrequencyInfo.h" 31adf28177SDan Gohman #include "llvm/CodeGen/MachineDominators.h" 32adf28177SDan Gohman #include "llvm/CodeGen/MachineInstrBuilder.h" 33*82607f56SDan Gohman #include "llvm/CodeGen/MachineModuleInfoImpls.h" 341462faadSDan Gohman #include "llvm/CodeGen/MachineRegisterInfo.h" 351462faadSDan Gohman #include "llvm/CodeGen/Passes.h" 361462faadSDan Gohman #include "llvm/Support/Debug.h" 371462faadSDan Gohman #include "llvm/Support/raw_ostream.h" 381462faadSDan Gohman using namespace llvm; 391462faadSDan Gohman 401462faadSDan Gohman #define DEBUG_TYPE "wasm-reg-stackify" 411462faadSDan Gohman 421462faadSDan Gohman namespace { 431462faadSDan Gohman class WebAssemblyRegStackify final : public MachineFunctionPass { 44117296c0SMehdi Amini StringRef getPassName() const override { 451462faadSDan Gohman return "WebAssembly Register Stackify"; 461462faadSDan Gohman } 471462faadSDan Gohman 481462faadSDan Gohman void getAnalysisUsage(AnalysisUsage &AU) const override { 491462faadSDan Gohman AU.setPreservesCFG(); 5081719f85SDan Gohman AU.addRequired<AAResultsWrapperPass>(); 51adf28177SDan Gohman AU.addRequired<MachineDominatorTree>(); 528887d1faSDan Gohman AU.addRequired<LiveIntervals>(); 531462faadSDan Gohman AU.addPreserved<MachineBlockFrequencyInfo>(); 548887d1faSDan Gohman AU.addPreserved<SlotIndexes>(); 558887d1faSDan Gohman AU.addPreserved<LiveIntervals>(); 568887d1faSDan Gohman AU.addPreservedID(LiveVariablesID); 57adf28177SDan Gohman AU.addPreserved<MachineDominatorTree>(); 581462faadSDan Gohman MachineFunctionPass::getAnalysisUsage(AU); 591462faadSDan Gohman } 601462faadSDan Gohman 611462faadSDan Gohman bool runOnMachineFunction(MachineFunction &MF) override; 621462faadSDan Gohman 631462faadSDan Gohman public: 641462faadSDan Gohman static char ID; // Pass identification, replacement for typeid 651462faadSDan Gohman WebAssemblyRegStackify() : MachineFunctionPass(ID) {} 661462faadSDan Gohman }; 671462faadSDan Gohman } // end anonymous namespace 681462faadSDan Gohman 691462faadSDan Gohman char WebAssemblyRegStackify::ID = 0; 701462faadSDan Gohman FunctionPass *llvm::createWebAssemblyRegStackify() { 711462faadSDan Gohman return new WebAssemblyRegStackify(); 721462faadSDan Gohman } 731462faadSDan Gohman 74b0992dafSDan Gohman // Decorate the given instruction with implicit operands that enforce the 758887d1faSDan Gohman // expression stack ordering constraints for an instruction which is on 768887d1faSDan Gohman // the expression stack. 778887d1faSDan Gohman static void ImposeStackOrdering(MachineInstr *MI) { 78e040533eSDan Gohman // Write the opaque VALUE_STACK register. 79e040533eSDan Gohman if (!MI->definesRegister(WebAssembly::VALUE_STACK)) 80e040533eSDan Gohman MI->addOperand(MachineOperand::CreateReg(WebAssembly::VALUE_STACK, 81b0992dafSDan Gohman /*isDef=*/true, 82b0992dafSDan Gohman /*isImp=*/true)); 834da4abd8SDan Gohman 84e040533eSDan Gohman // Also read the opaque VALUE_STACK register. 85e040533eSDan Gohman if (!MI->readsRegister(WebAssembly::VALUE_STACK)) 86e040533eSDan Gohman MI->addOperand(MachineOperand::CreateReg(WebAssembly::VALUE_STACK, 87b0992dafSDan Gohman /*isDef=*/false, 88b0992dafSDan Gohman /*isImp=*/true)); 89b0992dafSDan Gohman } 90b0992dafSDan Gohman 91e81021a5SDan Gohman // Convert an IMPLICIT_DEF instruction into an instruction which defines 92e81021a5SDan Gohman // a constant zero value. 93e81021a5SDan Gohman static void ConvertImplicitDefToConstZero(MachineInstr *MI, 94e81021a5SDan Gohman MachineRegisterInfo &MRI, 95e81021a5SDan Gohman const TargetInstrInfo *TII, 96e81021a5SDan Gohman MachineFunction &MF) { 97e81021a5SDan Gohman assert(MI->getOpcode() == TargetOpcode::IMPLICIT_DEF); 98e81021a5SDan Gohman 99e81021a5SDan Gohman const auto *RegClass = 100e81021a5SDan Gohman MRI.getRegClass(MI->getOperand(0).getReg()); 101e81021a5SDan Gohman if (RegClass == &WebAssembly::I32RegClass) { 102e81021a5SDan Gohman MI->setDesc(TII->get(WebAssembly::CONST_I32)); 103e81021a5SDan Gohman MI->addOperand(MachineOperand::CreateImm(0)); 104e81021a5SDan Gohman } else if (RegClass == &WebAssembly::I64RegClass) { 105e81021a5SDan Gohman MI->setDesc(TII->get(WebAssembly::CONST_I64)); 106e81021a5SDan Gohman MI->addOperand(MachineOperand::CreateImm(0)); 107e81021a5SDan Gohman } else if (RegClass == &WebAssembly::F32RegClass) { 108e81021a5SDan Gohman MI->setDesc(TII->get(WebAssembly::CONST_F32)); 109e81021a5SDan Gohman ConstantFP *Val = cast<ConstantFP>(Constant::getNullValue( 110e81021a5SDan Gohman Type::getFloatTy(MF.getFunction()->getContext()))); 111e81021a5SDan Gohman MI->addOperand(MachineOperand::CreateFPImm(Val)); 112e81021a5SDan Gohman } else if (RegClass == &WebAssembly::F64RegClass) { 113e81021a5SDan Gohman MI->setDesc(TII->get(WebAssembly::CONST_F64)); 114e81021a5SDan Gohman ConstantFP *Val = cast<ConstantFP>(Constant::getNullValue( 115e81021a5SDan Gohman Type::getDoubleTy(MF.getFunction()->getContext()))); 116e81021a5SDan Gohman MI->addOperand(MachineOperand::CreateFPImm(Val)); 117e81021a5SDan Gohman } else { 118e81021a5SDan Gohman llvm_unreachable("Unexpected reg class"); 119e81021a5SDan Gohman } 120e81021a5SDan Gohman } 121e81021a5SDan Gohman 1222644d74bSDan Gohman // Determine whether a call to the callee referenced by 1232644d74bSDan Gohman // MI->getOperand(CalleeOpNo) reads memory, writes memory, and/or has side 1242644d74bSDan Gohman // effects. 125500d0469SDuncan P. N. Exon Smith static void QueryCallee(const MachineInstr &MI, unsigned CalleeOpNo, bool &Read, 126500d0469SDuncan P. N. Exon Smith bool &Write, bool &Effects, bool &StackPointer) { 127d08cd15fSDan Gohman // All calls can use the stack pointer. 128d08cd15fSDan Gohman StackPointer = true; 129d08cd15fSDan Gohman 130500d0469SDuncan P. N. Exon Smith const MachineOperand &MO = MI.getOperand(CalleeOpNo); 1312644d74bSDan Gohman if (MO.isGlobal()) { 1322644d74bSDan Gohman const Constant *GV = MO.getGlobal(); 1332644d74bSDan Gohman if (const GlobalAlias *GA = dyn_cast<GlobalAlias>(GV)) 1342644d74bSDan Gohman if (!GA->isInterposable()) 1352644d74bSDan Gohman GV = GA->getAliasee(); 1362644d74bSDan Gohman 1372644d74bSDan Gohman if (const Function *F = dyn_cast<Function>(GV)) { 1382644d74bSDan Gohman if (!F->doesNotThrow()) 1392644d74bSDan Gohman Effects = true; 1402644d74bSDan Gohman if (F->doesNotAccessMemory()) 1412644d74bSDan Gohman return; 1422644d74bSDan Gohman if (F->onlyReadsMemory()) { 1432644d74bSDan Gohman Read = true; 1442644d74bSDan Gohman return; 1452644d74bSDan Gohman } 1462644d74bSDan Gohman } 1472644d74bSDan Gohman } 1482644d74bSDan Gohman 1492644d74bSDan Gohman // Assume the worst. 1502644d74bSDan Gohman Write = true; 1512644d74bSDan Gohman Read = true; 1522644d74bSDan Gohman Effects = true; 1532644d74bSDan Gohman } 1542644d74bSDan Gohman 155d08cd15fSDan Gohman // Determine whether MI reads memory, writes memory, has side effects, 156*82607f56SDan Gohman // and/or uses the stack pointer value. 157500d0469SDuncan P. N. Exon Smith static void Query(const MachineInstr &MI, AliasAnalysis &AA, bool &Read, 158500d0469SDuncan P. N. Exon Smith bool &Write, bool &Effects, bool &StackPointer) { 159500d0469SDuncan P. N. Exon Smith assert(!MI.isPosition()); 160500d0469SDuncan P. N. Exon Smith assert(!MI.isTerminator()); 1616c8f20d7SDan Gohman 162500d0469SDuncan P. N. Exon Smith if (MI.isDebugValue()) 1636c8f20d7SDan Gohman return; 1642644d74bSDan Gohman 1652644d74bSDan Gohman // Check for loads. 166d98cf00cSJustin Lebar if (MI.mayLoad() && !MI.isDereferenceableInvariantLoad(&AA)) 1672644d74bSDan Gohman Read = true; 1682644d74bSDan Gohman 1692644d74bSDan Gohman // Check for stores. 170500d0469SDuncan P. N. Exon Smith if (MI.mayStore()) { 1712644d74bSDan Gohman Write = true; 172d08cd15fSDan Gohman 173*82607f56SDan Gohman const MachineFunction &MF = *MI.getParent()->getParent(); 174*82607f56SDan Gohman if (MF.getSubtarget<WebAssemblySubtarget>() 175*82607f56SDan Gohman .getTargetTriple().isOSBinFormatELF()) { 176d08cd15fSDan Gohman // Check for stores to __stack_pointer. 177500d0469SDuncan P. N. Exon Smith for (auto MMO : MI.memoperands()) { 178d08cd15fSDan Gohman const MachinePointerInfo &MPI = MMO->getPointerInfo(); 179d08cd15fSDan Gohman if (MPI.V.is<const PseudoSourceValue *>()) { 180d08cd15fSDan Gohman auto PSV = MPI.V.get<const PseudoSourceValue *>(); 181d08cd15fSDan Gohman if (const ExternalSymbolPseudoSourceValue *EPSV = 182d08cd15fSDan Gohman dyn_cast<ExternalSymbolPseudoSourceValue>(PSV)) 183d08cd15fSDan Gohman if (StringRef(EPSV->getSymbol()) == "__stack_pointer") 184d08cd15fSDan Gohman StackPointer = true; 185d08cd15fSDan Gohman } 186d08cd15fSDan Gohman } 187*82607f56SDan Gohman } else { 188*82607f56SDan Gohman // Check for sets of the stack pointer. 189*82607f56SDan Gohman const MachineModuleInfoWasm &MMIW = 190*82607f56SDan Gohman MF.getMMI().getObjFileInfo<MachineModuleInfoWasm>(); 191*82607f56SDan Gohman if ((MI.getOpcode() == WebAssembly::SET_LOCAL_I32 || 192*82607f56SDan Gohman MI.getOpcode() == WebAssembly::SET_LOCAL_I64) && 193*82607f56SDan Gohman MI.getOperand(0).getImm() == MMIW.getStackPointerGlobal()) { 194*82607f56SDan Gohman StackPointer = true; 195*82607f56SDan Gohman } 196*82607f56SDan Gohman } 197500d0469SDuncan P. N. Exon Smith } else if (MI.hasOrderedMemoryRef()) { 198500d0469SDuncan P. N. Exon Smith switch (MI.getOpcode()) { 1992644d74bSDan Gohman case WebAssembly::DIV_S_I32: case WebAssembly::DIV_S_I64: 2002644d74bSDan Gohman case WebAssembly::REM_S_I32: case WebAssembly::REM_S_I64: 2012644d74bSDan Gohman case WebAssembly::DIV_U_I32: case WebAssembly::DIV_U_I64: 2022644d74bSDan Gohman case WebAssembly::REM_U_I32: case WebAssembly::REM_U_I64: 2032644d74bSDan Gohman case WebAssembly::I32_TRUNC_S_F32: case WebAssembly::I64_TRUNC_S_F32: 2042644d74bSDan Gohman case WebAssembly::I32_TRUNC_S_F64: case WebAssembly::I64_TRUNC_S_F64: 2052644d74bSDan Gohman case WebAssembly::I32_TRUNC_U_F32: case WebAssembly::I64_TRUNC_U_F32: 2062644d74bSDan Gohman case WebAssembly::I32_TRUNC_U_F64: case WebAssembly::I64_TRUNC_U_F64: 2072644d74bSDan Gohman // These instruction have hasUnmodeledSideEffects() returning true 2082644d74bSDan Gohman // because they trap on overflow and invalid so they can't be arbitrarily 2092644d74bSDan Gohman // moved, however hasOrderedMemoryRef() interprets this plus their lack 2102644d74bSDan Gohman // of memoperands as having a potential unknown memory reference. 2112644d74bSDan Gohman break; 2122644d74bSDan Gohman default: 2131054570aSDan Gohman // Record volatile accesses, unless it's a call, as calls are handled 2142644d74bSDan Gohman // specially below. 215500d0469SDuncan P. N. Exon Smith if (!MI.isCall()) { 2162644d74bSDan Gohman Write = true; 2171054570aSDan Gohman Effects = true; 2181054570aSDan Gohman } 2192644d74bSDan Gohman break; 2202644d74bSDan Gohman } 2212644d74bSDan Gohman } 2222644d74bSDan Gohman 2232644d74bSDan Gohman // Check for side effects. 224500d0469SDuncan P. N. Exon Smith if (MI.hasUnmodeledSideEffects()) { 225500d0469SDuncan P. N. Exon Smith switch (MI.getOpcode()) { 2262644d74bSDan Gohman case WebAssembly::DIV_S_I32: case WebAssembly::DIV_S_I64: 2272644d74bSDan Gohman case WebAssembly::REM_S_I32: case WebAssembly::REM_S_I64: 2282644d74bSDan Gohman case WebAssembly::DIV_U_I32: case WebAssembly::DIV_U_I64: 2292644d74bSDan Gohman case WebAssembly::REM_U_I32: case WebAssembly::REM_U_I64: 2302644d74bSDan Gohman case WebAssembly::I32_TRUNC_S_F32: case WebAssembly::I64_TRUNC_S_F32: 2312644d74bSDan Gohman case WebAssembly::I32_TRUNC_S_F64: case WebAssembly::I64_TRUNC_S_F64: 2322644d74bSDan Gohman case WebAssembly::I32_TRUNC_U_F32: case WebAssembly::I64_TRUNC_U_F32: 2332644d74bSDan Gohman case WebAssembly::I32_TRUNC_U_F64: case WebAssembly::I64_TRUNC_U_F64: 2342644d74bSDan Gohman // These instructions have hasUnmodeledSideEffects() returning true 2352644d74bSDan Gohman // because they trap on overflow and invalid so they can't be arbitrarily 2362644d74bSDan Gohman // moved, however in the specific case of register stackifying, it is safe 2372644d74bSDan Gohman // to move them because overflow and invalid are Undefined Behavior. 2382644d74bSDan Gohman break; 2392644d74bSDan Gohman default: 2402644d74bSDan Gohman Effects = true; 2412644d74bSDan Gohman break; 2422644d74bSDan Gohman } 2432644d74bSDan Gohman } 2442644d74bSDan Gohman 2452644d74bSDan Gohman // Analyze calls. 246500d0469SDuncan P. N. Exon Smith if (MI.isCall()) { 247500d0469SDuncan P. N. Exon Smith switch (MI.getOpcode()) { 2482644d74bSDan Gohman case WebAssembly::CALL_VOID: 2491054570aSDan Gohman case WebAssembly::CALL_INDIRECT_VOID: 250d08cd15fSDan Gohman QueryCallee(MI, 0, Read, Write, Effects, StackPointer); 2512644d74bSDan Gohman break; 2521054570aSDan Gohman case WebAssembly::CALL_I32: case WebAssembly::CALL_I64: 2531054570aSDan Gohman case WebAssembly::CALL_F32: case WebAssembly::CALL_F64: 2541054570aSDan Gohman case WebAssembly::CALL_INDIRECT_I32: case WebAssembly::CALL_INDIRECT_I64: 2551054570aSDan Gohman case WebAssembly::CALL_INDIRECT_F32: case WebAssembly::CALL_INDIRECT_F64: 256d08cd15fSDan Gohman QueryCallee(MI, 1, Read, Write, Effects, StackPointer); 2572644d74bSDan Gohman break; 2582644d74bSDan Gohman default: 2592644d74bSDan Gohman llvm_unreachable("unexpected call opcode"); 2602644d74bSDan Gohman } 2612644d74bSDan Gohman } 2622644d74bSDan Gohman } 2632644d74bSDan Gohman 2642644d74bSDan Gohman // Test whether Def is safe and profitable to rematerialize. 2659cfc75c2SDuncan P. N. Exon Smith static bool ShouldRematerialize(const MachineInstr &Def, AliasAnalysis &AA, 2662644d74bSDan Gohman const WebAssemblyInstrInfo *TII) { 2679cfc75c2SDuncan P. N. Exon Smith return Def.isAsCheapAsAMove() && TII->isTriviallyReMaterializable(Def, &AA); 2682644d74bSDan Gohman } 2692644d74bSDan Gohman 27012de0b91SDan Gohman // Identify the definition for this register at this point. This is a 27112de0b91SDan Gohman // generalization of MachineRegisterInfo::getUniqueVRegDef that uses 27212de0b91SDan Gohman // LiveIntervals to handle complex cases. 2732644d74bSDan Gohman static MachineInstr *GetVRegDef(unsigned Reg, const MachineInstr *Insert, 2742644d74bSDan Gohman const MachineRegisterInfo &MRI, 2752644d74bSDan Gohman const LiveIntervals &LIS) 2762644d74bSDan Gohman { 2772644d74bSDan Gohman // Most registers are in SSA form here so we try a quick MRI query first. 2782644d74bSDan Gohman if (MachineInstr *Def = MRI.getUniqueVRegDef(Reg)) 2792644d74bSDan Gohman return Def; 2802644d74bSDan Gohman 2812644d74bSDan Gohman // MRI doesn't know what the Def is. Try asking LIS. 2822644d74bSDan Gohman if (const VNInfo *ValNo = LIS.getInterval(Reg).getVNInfoBefore( 2832644d74bSDan Gohman LIS.getInstructionIndex(*Insert))) 2842644d74bSDan Gohman return LIS.getInstructionFromIndex(ValNo->def); 2852644d74bSDan Gohman 2862644d74bSDan Gohman return nullptr; 2872644d74bSDan Gohman } 2882644d74bSDan Gohman 28912de0b91SDan Gohman // Test whether Reg, as defined at Def, has exactly one use. This is a 29012de0b91SDan Gohman // generalization of MachineRegisterInfo::hasOneUse that uses LiveIntervals 29112de0b91SDan Gohman // to handle complex cases. 29212de0b91SDan Gohman static bool HasOneUse(unsigned Reg, MachineInstr *Def, 29312de0b91SDan Gohman MachineRegisterInfo &MRI, MachineDominatorTree &MDT, 29412de0b91SDan Gohman LiveIntervals &LIS) { 29512de0b91SDan Gohman // Most registers are in SSA form here so we try a quick MRI query first. 29612de0b91SDan Gohman if (MRI.hasOneUse(Reg)) 29712de0b91SDan Gohman return true; 29812de0b91SDan Gohman 29912de0b91SDan Gohman bool HasOne = false; 30012de0b91SDan Gohman const LiveInterval &LI = LIS.getInterval(Reg); 30112de0b91SDan Gohman const VNInfo *DefVNI = LI.getVNInfoAt( 30212de0b91SDan Gohman LIS.getInstructionIndex(*Def).getRegSlot()); 30312de0b91SDan Gohman assert(DefVNI); 304a8a63829SDominic Chen for (auto &I : MRI.use_nodbg_operands(Reg)) { 30512de0b91SDan Gohman const auto &Result = LI.Query(LIS.getInstructionIndex(*I.getParent())); 30612de0b91SDan Gohman if (Result.valueIn() == DefVNI) { 30712de0b91SDan Gohman if (!Result.isKill()) 30812de0b91SDan Gohman return false; 30912de0b91SDan Gohman if (HasOne) 31012de0b91SDan Gohman return false; 31112de0b91SDan Gohman HasOne = true; 31212de0b91SDan Gohman } 31312de0b91SDan Gohman } 31412de0b91SDan Gohman return HasOne; 31512de0b91SDan Gohman } 31612de0b91SDan Gohman 3178887d1faSDan Gohman // Test whether it's safe to move Def to just before Insert. 31881719f85SDan Gohman // TODO: Compute memory dependencies in a way that doesn't require always 31981719f85SDan Gohman // walking the block. 32081719f85SDan Gohman // TODO: Compute memory dependencies in a way that uses AliasAnalysis to be 32181719f85SDan Gohman // more precise. 32281719f85SDan Gohman static bool IsSafeToMove(const MachineInstr *Def, const MachineInstr *Insert, 323e9e6891bSDerek Schuff AliasAnalysis &AA, const MachineRegisterInfo &MRI) { 324391a98afSDan Gohman assert(Def->getParent() == Insert->getParent()); 3258887d1faSDan Gohman 3268887d1faSDan Gohman // Check for register dependencies. 327e9e6891bSDerek Schuff SmallVector<unsigned, 4> MutableRegisters; 3288887d1faSDan Gohman for (const MachineOperand &MO : Def->operands()) { 3298887d1faSDan Gohman if (!MO.isReg() || MO.isUndef()) 3308887d1faSDan Gohman continue; 3318887d1faSDan Gohman unsigned Reg = MO.getReg(); 3328887d1faSDan Gohman 3338887d1faSDan Gohman // If the register is dead here and at Insert, ignore it. 3348887d1faSDan Gohman if (MO.isDead() && Insert->definesRegister(Reg) && 3358887d1faSDan Gohman !Insert->readsRegister(Reg)) 3368887d1faSDan Gohman continue; 3378887d1faSDan Gohman 3388887d1faSDan Gohman if (TargetRegisterInfo::isPhysicalRegister(Reg)) { 3390cfb5f85SDan Gohman // Ignore ARGUMENTS; it's just used to keep the ARGUMENT_* instructions 3400cfb5f85SDan Gohman // from moving down, and we've already checked for that. 3410cfb5f85SDan Gohman if (Reg == WebAssembly::ARGUMENTS) 3420cfb5f85SDan Gohman continue; 3438887d1faSDan Gohman // If the physical register is never modified, ignore it. 3448887d1faSDan Gohman if (!MRI.isPhysRegModified(Reg)) 3458887d1faSDan Gohman continue; 3468887d1faSDan Gohman // Otherwise, it's a physical register with unknown liveness. 3478887d1faSDan Gohman return false; 3488887d1faSDan Gohman } 3498887d1faSDan Gohman 350e9e6891bSDerek Schuff // If one of the operands isn't in SSA form, it has different values at 351e9e6891bSDerek Schuff // different times, and we need to make sure we don't move our use across 352e9e6891bSDerek Schuff // a different def. 353e9e6891bSDerek Schuff if (!MO.isDef() && !MRI.hasOneDef(Reg)) 354e9e6891bSDerek Schuff MutableRegisters.push_back(Reg); 3558887d1faSDan Gohman } 3568887d1faSDan Gohman 357d08cd15fSDan Gohman bool Read = false, Write = false, Effects = false, StackPointer = false; 358500d0469SDuncan P. N. Exon Smith Query(*Def, AA, Read, Write, Effects, StackPointer); 3592644d74bSDan Gohman 3602644d74bSDan Gohman // If the instruction does not access memory and has no side effects, it has 3612644d74bSDan Gohman // no additional dependencies. 362e9e6891bSDerek Schuff bool HasMutableRegisters = !MutableRegisters.empty(); 363e9e6891bSDerek Schuff if (!Read && !Write && !Effects && !StackPointer && !HasMutableRegisters) 3642644d74bSDan Gohman return true; 3652644d74bSDan Gohman 3662644d74bSDan Gohman // Scan through the intervening instructions between Def and Insert. 3672644d74bSDan Gohman MachineBasicBlock::const_iterator D(Def), I(Insert); 3682644d74bSDan Gohman for (--I; I != D; --I) { 3692644d74bSDan Gohman bool InterveningRead = false; 3702644d74bSDan Gohman bool InterveningWrite = false; 3712644d74bSDan Gohman bool InterveningEffects = false; 372d08cd15fSDan Gohman bool InterveningStackPointer = false; 373500d0469SDuncan P. N. Exon Smith Query(*I, AA, InterveningRead, InterveningWrite, InterveningEffects, 374d08cd15fSDan Gohman InterveningStackPointer); 3752644d74bSDan Gohman if (Effects && InterveningEffects) 3762644d74bSDan Gohman return false; 3772644d74bSDan Gohman if (Read && InterveningWrite) 3782644d74bSDan Gohman return false; 3792644d74bSDan Gohman if (Write && (InterveningRead || InterveningWrite)) 3802644d74bSDan Gohman return false; 381d08cd15fSDan Gohman if (StackPointer && InterveningStackPointer) 382d08cd15fSDan Gohman return false; 383e9e6891bSDerek Schuff 384e9e6891bSDerek Schuff for (unsigned Reg : MutableRegisters) 385e9e6891bSDerek Schuff for (const MachineOperand &MO : I->operands()) 386e9e6891bSDerek Schuff if (MO.isReg() && MO.isDef() && MO.getReg() == Reg) 387e9e6891bSDerek Schuff return false; 3882644d74bSDan Gohman } 3892644d74bSDan Gohman 3902644d74bSDan Gohman return true; 39181719f85SDan Gohman } 39281719f85SDan Gohman 393adf28177SDan Gohman /// Test whether OneUse, a use of Reg, dominates all of Reg's other uses. 394adf28177SDan Gohman static bool OneUseDominatesOtherUses(unsigned Reg, const MachineOperand &OneUse, 395adf28177SDan Gohman const MachineBasicBlock &MBB, 396adf28177SDan Gohman const MachineRegisterInfo &MRI, 3970cfb5f85SDan Gohman const MachineDominatorTree &MDT, 3981054570aSDan Gohman LiveIntervals &LIS, 3991054570aSDan Gohman WebAssemblyFunctionInfo &MFI) { 4000cfb5f85SDan Gohman const LiveInterval &LI = LIS.getInterval(Reg); 4010cfb5f85SDan Gohman 4020cfb5f85SDan Gohman const MachineInstr *OneUseInst = OneUse.getParent(); 4030cfb5f85SDan Gohman VNInfo *OneUseVNI = LI.getVNInfoBefore(LIS.getInstructionIndex(*OneUseInst)); 4040cfb5f85SDan Gohman 405a8a63829SDominic Chen for (const MachineOperand &Use : MRI.use_nodbg_operands(Reg)) { 406adf28177SDan Gohman if (&Use == &OneUse) 407adf28177SDan Gohman continue; 4080cfb5f85SDan Gohman 409adf28177SDan Gohman const MachineInstr *UseInst = Use.getParent(); 4100cfb5f85SDan Gohman VNInfo *UseVNI = LI.getVNInfoBefore(LIS.getInstructionIndex(*UseInst)); 4110cfb5f85SDan Gohman 4120cfb5f85SDan Gohman if (UseVNI != OneUseVNI) 4130cfb5f85SDan Gohman continue; 4140cfb5f85SDan Gohman 415adf28177SDan Gohman const MachineInstr *OneUseInst = OneUse.getParent(); 41612de0b91SDan Gohman if (UseInst == OneUseInst) { 417adf28177SDan Gohman // Another use in the same instruction. We need to ensure that the one 418adf28177SDan Gohman // selected use happens "before" it. 419adf28177SDan Gohman if (&OneUse > &Use) 420adf28177SDan Gohman return false; 421adf28177SDan Gohman } else { 422adf28177SDan Gohman // Test that the use is dominated by the one selected use. 4231054570aSDan Gohman while (!MDT.dominates(OneUseInst, UseInst)) { 4241054570aSDan Gohman // Actually, dominating is over-conservative. Test that the use would 4251054570aSDan Gohman // happen after the one selected use in the stack evaluation order. 4261054570aSDan Gohman // 4271054570aSDan Gohman // This is needed as a consequence of using implicit get_locals for 4281054570aSDan Gohman // uses and implicit set_locals for defs. 4291054570aSDan Gohman if (UseInst->getDesc().getNumDefs() == 0) 430adf28177SDan Gohman return false; 4311054570aSDan Gohman const MachineOperand &MO = UseInst->getOperand(0); 4321054570aSDan Gohman if (!MO.isReg()) 4331054570aSDan Gohman return false; 4341054570aSDan Gohman unsigned DefReg = MO.getReg(); 4351054570aSDan Gohman if (!TargetRegisterInfo::isVirtualRegister(DefReg) || 4361054570aSDan Gohman !MFI.isVRegStackified(DefReg)) 4371054570aSDan Gohman return false; 4381054570aSDan Gohman assert(MRI.hasOneUse(DefReg)); 4391054570aSDan Gohman const MachineOperand &NewUse = *MRI.use_begin(DefReg); 4401054570aSDan Gohman const MachineInstr *NewUseInst = NewUse.getParent(); 4411054570aSDan Gohman if (NewUseInst == OneUseInst) { 4421054570aSDan Gohman if (&OneUse > &NewUse) 4431054570aSDan Gohman return false; 4441054570aSDan Gohman break; 4451054570aSDan Gohman } 4461054570aSDan Gohman UseInst = NewUseInst; 4471054570aSDan Gohman } 448adf28177SDan Gohman } 449adf28177SDan Gohman } 450adf28177SDan Gohman return true; 451adf28177SDan Gohman } 452adf28177SDan Gohman 4534fc4e42dSDan Gohman /// Get the appropriate tee opcode for the given register class. 4544fc4e42dSDan Gohman static unsigned GetTeeOpcode(const TargetRegisterClass *RC) { 455adf28177SDan Gohman if (RC == &WebAssembly::I32RegClass) 4564fc4e42dSDan Gohman return WebAssembly::TEE_I32; 457adf28177SDan Gohman if (RC == &WebAssembly::I64RegClass) 4584fc4e42dSDan Gohman return WebAssembly::TEE_I64; 459adf28177SDan Gohman if (RC == &WebAssembly::F32RegClass) 4604fc4e42dSDan Gohman return WebAssembly::TEE_F32; 461adf28177SDan Gohman if (RC == &WebAssembly::F64RegClass) 4624fc4e42dSDan Gohman return WebAssembly::TEE_F64; 46339bf39f3SDerek Schuff if (RC == &WebAssembly::V128RegClass) 4644fc4e42dSDan Gohman return WebAssembly::TEE_V128; 465adf28177SDan Gohman llvm_unreachable("Unexpected register class"); 466adf28177SDan Gohman } 467adf28177SDan Gohman 4682644d74bSDan Gohman // Shrink LI to its uses, cleaning up LI. 4692644d74bSDan Gohman static void ShrinkToUses(LiveInterval &LI, LiveIntervals &LIS) { 4702644d74bSDan Gohman if (LIS.shrinkToUses(&LI)) { 4712644d74bSDan Gohman SmallVector<LiveInterval*, 4> SplitLIs; 4722644d74bSDan Gohman LIS.splitSeparateComponents(LI, SplitLIs); 4732644d74bSDan Gohman } 4742644d74bSDan Gohman } 4752644d74bSDan Gohman 476adf28177SDan Gohman /// A single-use def in the same block with no intervening memory or register 477adf28177SDan Gohman /// dependencies; move the def down and nest it with the current instruction. 4780cfb5f85SDan Gohman static MachineInstr *MoveForSingleUse(unsigned Reg, MachineOperand& Op, 4790cfb5f85SDan Gohman MachineInstr *Def, 480adf28177SDan Gohman MachineBasicBlock &MBB, 481adf28177SDan Gohman MachineInstr *Insert, LiveIntervals &LIS, 4820cfb5f85SDan Gohman WebAssemblyFunctionInfo &MFI, 4830cfb5f85SDan Gohman MachineRegisterInfo &MRI) { 4842644d74bSDan Gohman DEBUG(dbgs() << "Move for single use: "; Def->dump()); 4852644d74bSDan Gohman 486adf28177SDan Gohman MBB.splice(Insert, &MBB, Def); 4871afd1e2bSJF Bastien LIS.handleMove(*Def); 4880cfb5f85SDan Gohman 48912de0b91SDan Gohman if (MRI.hasOneDef(Reg) && MRI.hasOneUse(Reg)) { 49012de0b91SDan Gohman // No one else is using this register for anything so we can just stackify 49112de0b91SDan Gohman // it in place. 492adf28177SDan Gohman MFI.stackifyVReg(Reg); 4930cfb5f85SDan Gohman } else { 49412de0b91SDan Gohman // The register may have unrelated uses or defs; create a new register for 49512de0b91SDan Gohman // just our one def and use so that we can stackify it. 4960cfb5f85SDan Gohman unsigned NewReg = MRI.createVirtualRegister(MRI.getRegClass(Reg)); 4970cfb5f85SDan Gohman Def->getOperand(0).setReg(NewReg); 4980cfb5f85SDan Gohman Op.setReg(NewReg); 4990cfb5f85SDan Gohman 5000cfb5f85SDan Gohman // Tell LiveIntervals about the new register. 5010cfb5f85SDan Gohman LIS.createAndComputeVirtRegInterval(NewReg); 5020cfb5f85SDan Gohman 5030cfb5f85SDan Gohman // Tell LiveIntervals about the changes to the old register. 5040cfb5f85SDan Gohman LiveInterval &LI = LIS.getInterval(Reg); 5056c8f20d7SDan Gohman LI.removeSegment(LIS.getInstructionIndex(*Def).getRegSlot(), 5066c8f20d7SDan Gohman LIS.getInstructionIndex(*Op.getParent()).getRegSlot(), 5076c8f20d7SDan Gohman /*RemoveDeadValNo=*/true); 5080cfb5f85SDan Gohman 5090cfb5f85SDan Gohman MFI.stackifyVReg(NewReg); 5102644d74bSDan Gohman 5112644d74bSDan Gohman DEBUG(dbgs() << " - Replaced register: "; Def->dump()); 5120cfb5f85SDan Gohman } 5130cfb5f85SDan Gohman 514adf28177SDan Gohman ImposeStackOrdering(Def); 515adf28177SDan Gohman return Def; 516adf28177SDan Gohman } 517adf28177SDan Gohman 518adf28177SDan Gohman /// A trivially cloneable instruction; clone it and nest the new copy with the 519adf28177SDan Gohman /// current instruction. 5209cfc75c2SDuncan P. N. Exon Smith static MachineInstr *RematerializeCheapDef( 5219cfc75c2SDuncan P. N. Exon Smith unsigned Reg, MachineOperand &Op, MachineInstr &Def, MachineBasicBlock &MBB, 5229cfc75c2SDuncan P. N. Exon Smith MachineBasicBlock::instr_iterator Insert, LiveIntervals &LIS, 5239cfc75c2SDuncan P. N. Exon Smith WebAssemblyFunctionInfo &MFI, MachineRegisterInfo &MRI, 5249cfc75c2SDuncan P. N. Exon Smith const WebAssemblyInstrInfo *TII, const WebAssemblyRegisterInfo *TRI) { 5259cfc75c2SDuncan P. N. Exon Smith DEBUG(dbgs() << "Rematerializing cheap def: "; Def.dump()); 5262644d74bSDan Gohman DEBUG(dbgs() << " - for use in "; Op.getParent()->dump()); 5272644d74bSDan Gohman 528adf28177SDan Gohman unsigned NewReg = MRI.createVirtualRegister(MRI.getRegClass(Reg)); 529adf28177SDan Gohman TII->reMaterialize(MBB, Insert, NewReg, 0, Def, *TRI); 530adf28177SDan Gohman Op.setReg(NewReg); 5319cfc75c2SDuncan P. N. Exon Smith MachineInstr *Clone = &*std::prev(Insert); 53213d3b9b7SJF Bastien LIS.InsertMachineInstrInMaps(*Clone); 533adf28177SDan Gohman LIS.createAndComputeVirtRegInterval(NewReg); 534adf28177SDan Gohman MFI.stackifyVReg(NewReg); 535adf28177SDan Gohman ImposeStackOrdering(Clone); 536adf28177SDan Gohman 5372644d74bSDan Gohman DEBUG(dbgs() << " - Cloned to "; Clone->dump()); 5382644d74bSDan Gohman 5390cfb5f85SDan Gohman // Shrink the interval. 5400cfb5f85SDan Gohman bool IsDead = MRI.use_empty(Reg); 5410cfb5f85SDan Gohman if (!IsDead) { 5420cfb5f85SDan Gohman LiveInterval &LI = LIS.getInterval(Reg); 5432644d74bSDan Gohman ShrinkToUses(LI, LIS); 5449cfc75c2SDuncan P. N. Exon Smith IsDead = !LI.liveAt(LIS.getInstructionIndex(Def).getDeadSlot()); 5450cfb5f85SDan Gohman } 5460cfb5f85SDan Gohman 547adf28177SDan Gohman // If that was the last use of the original, delete the original. 5480cfb5f85SDan Gohman if (IsDead) { 5492644d74bSDan Gohman DEBUG(dbgs() << " - Deleting original\n"); 5509cfc75c2SDuncan P. N. Exon Smith SlotIndex Idx = LIS.getInstructionIndex(Def).getRegSlot(); 551adf28177SDan Gohman LIS.removePhysRegDefAt(WebAssembly::ARGUMENTS, Idx); 552adf28177SDan Gohman LIS.removeInterval(Reg); 5539cfc75c2SDuncan P. N. Exon Smith LIS.RemoveMachineInstrFromMaps(Def); 5549cfc75c2SDuncan P. N. Exon Smith Def.eraseFromParent(); 555adf28177SDan Gohman } 5560cfb5f85SDan Gohman 557adf28177SDan Gohman return Clone; 558adf28177SDan Gohman } 559adf28177SDan Gohman 560adf28177SDan Gohman /// A multiple-use def in the same block with no intervening memory or register 561adf28177SDan Gohman /// dependencies; move the def down, nest it with the current instruction, and 5624fc4e42dSDan Gohman /// insert a tee to satisfy the rest of the uses. As an illustration, rewrite 5634fc4e42dSDan Gohman /// this: 564adf28177SDan Gohman /// 565adf28177SDan Gohman /// Reg = INST ... // Def 566adf28177SDan Gohman /// INST ..., Reg, ... // Insert 567adf28177SDan Gohman /// INST ..., Reg, ... 568adf28177SDan Gohman /// INST ..., Reg, ... 569adf28177SDan Gohman /// 570adf28177SDan Gohman /// to this: 571adf28177SDan Gohman /// 5728aa237c3SDan Gohman /// DefReg = INST ... // Def (to become the new Insert) 5734fc4e42dSDan Gohman /// TeeReg, Reg = TEE_... DefReg 574adf28177SDan Gohman /// INST ..., TeeReg, ... // Insert 5756c8f20d7SDan Gohman /// INST ..., Reg, ... 5766c8f20d7SDan Gohman /// INST ..., Reg, ... 577adf28177SDan Gohman /// 5788aa237c3SDan Gohman /// with DefReg and TeeReg stackified. This eliminates a get_local from the 579adf28177SDan Gohman /// resulting code. 580adf28177SDan Gohman static MachineInstr *MoveAndTeeForMultiUse( 581adf28177SDan Gohman unsigned Reg, MachineOperand &Op, MachineInstr *Def, MachineBasicBlock &MBB, 582adf28177SDan Gohman MachineInstr *Insert, LiveIntervals &LIS, WebAssemblyFunctionInfo &MFI, 583adf28177SDan Gohman MachineRegisterInfo &MRI, const WebAssemblyInstrInfo *TII) { 5842644d74bSDan Gohman DEBUG(dbgs() << "Move and tee for multi-use:"; Def->dump()); 5852644d74bSDan Gohman 58612de0b91SDan Gohman // Move Def into place. 587adf28177SDan Gohman MBB.splice(Insert, &MBB, Def); 5881afd1e2bSJF Bastien LIS.handleMove(*Def); 58912de0b91SDan Gohman 59012de0b91SDan Gohman // Create the Tee and attach the registers. 591adf28177SDan Gohman const auto *RegClass = MRI.getRegClass(Reg); 592adf28177SDan Gohman unsigned TeeReg = MRI.createVirtualRegister(RegClass); 5938aa237c3SDan Gohman unsigned DefReg = MRI.createVirtualRegister(RegClass); 59433e694a8SDan Gohman MachineOperand &DefMO = Def->getOperand(0); 595adf28177SDan Gohman MachineInstr *Tee = BuildMI(MBB, Insert, Insert->getDebugLoc(), 5964fc4e42dSDan Gohman TII->get(GetTeeOpcode(RegClass)), TeeReg) 59712de0b91SDan Gohman .addReg(Reg, RegState::Define) 59833e694a8SDan Gohman .addReg(DefReg, getUndefRegState(DefMO.isDead())); 599adf28177SDan Gohman Op.setReg(TeeReg); 60033e694a8SDan Gohman DefMO.setReg(DefReg); 60112de0b91SDan Gohman SlotIndex TeeIdx = LIS.InsertMachineInstrInMaps(*Tee).getRegSlot(); 60212de0b91SDan Gohman SlotIndex DefIdx = LIS.getInstructionIndex(*Def).getRegSlot(); 60312de0b91SDan Gohman 60412de0b91SDan Gohman // Tell LiveIntervals we moved the original vreg def from Def to Tee. 60512de0b91SDan Gohman LiveInterval &LI = LIS.getInterval(Reg); 60612de0b91SDan Gohman LiveInterval::iterator I = LI.FindSegmentContaining(DefIdx); 60712de0b91SDan Gohman VNInfo *ValNo = LI.getVNInfoAt(DefIdx); 60812de0b91SDan Gohman I->start = TeeIdx; 60912de0b91SDan Gohman ValNo->def = TeeIdx; 61012de0b91SDan Gohman ShrinkToUses(LI, LIS); 61112de0b91SDan Gohman 61212de0b91SDan Gohman // Finish stackifying the new regs. 613adf28177SDan Gohman LIS.createAndComputeVirtRegInterval(TeeReg); 6148aa237c3SDan Gohman LIS.createAndComputeVirtRegInterval(DefReg); 6158aa237c3SDan Gohman MFI.stackifyVReg(DefReg); 616adf28177SDan Gohman MFI.stackifyVReg(TeeReg); 617adf28177SDan Gohman ImposeStackOrdering(Def); 618adf28177SDan Gohman ImposeStackOrdering(Tee); 61912de0b91SDan Gohman 62012de0b91SDan Gohman DEBUG(dbgs() << " - Replaced register: "; Def->dump()); 62112de0b91SDan Gohman DEBUG(dbgs() << " - Tee instruction: "; Tee->dump()); 622adf28177SDan Gohman return Def; 623adf28177SDan Gohman } 624adf28177SDan Gohman 625adf28177SDan Gohman namespace { 626adf28177SDan Gohman /// A stack for walking the tree of instructions being built, visiting the 627adf28177SDan Gohman /// MachineOperands in DFS order. 628adf28177SDan Gohman class TreeWalkerState { 629adf28177SDan Gohman typedef MachineInstr::mop_iterator mop_iterator; 630adf28177SDan Gohman typedef std::reverse_iterator<mop_iterator> mop_reverse_iterator; 631adf28177SDan Gohman typedef iterator_range<mop_reverse_iterator> RangeTy; 632adf28177SDan Gohman SmallVector<RangeTy, 4> Worklist; 633adf28177SDan Gohman 634adf28177SDan Gohman public: 635adf28177SDan Gohman explicit TreeWalkerState(MachineInstr *Insert) { 636adf28177SDan Gohman const iterator_range<mop_iterator> &Range = Insert->explicit_uses(); 637adf28177SDan Gohman if (Range.begin() != Range.end()) 638adf28177SDan Gohman Worklist.push_back(reverse(Range)); 639adf28177SDan Gohman } 640adf28177SDan Gohman 641adf28177SDan Gohman bool Done() const { return Worklist.empty(); } 642adf28177SDan Gohman 643adf28177SDan Gohman MachineOperand &Pop() { 644adf28177SDan Gohman RangeTy &Range = Worklist.back(); 645adf28177SDan Gohman MachineOperand &Op = *Range.begin(); 646adf28177SDan Gohman Range = drop_begin(Range, 1); 647adf28177SDan Gohman if (Range.begin() == Range.end()) 648adf28177SDan Gohman Worklist.pop_back(); 649adf28177SDan Gohman assert((Worklist.empty() || 650adf28177SDan Gohman Worklist.back().begin() != Worklist.back().end()) && 651adf28177SDan Gohman "Empty ranges shouldn't remain in the worklist"); 652adf28177SDan Gohman return Op; 653adf28177SDan Gohman } 654adf28177SDan Gohman 655adf28177SDan Gohman /// Push Instr's operands onto the stack to be visited. 656adf28177SDan Gohman void PushOperands(MachineInstr *Instr) { 657adf28177SDan Gohman const iterator_range<mop_iterator> &Range(Instr->explicit_uses()); 658adf28177SDan Gohman if (Range.begin() != Range.end()) 659adf28177SDan Gohman Worklist.push_back(reverse(Range)); 660adf28177SDan Gohman } 661adf28177SDan Gohman 662adf28177SDan Gohman /// Some of Instr's operands are on the top of the stack; remove them and 663adf28177SDan Gohman /// re-insert them starting from the beginning (because we've commuted them). 664adf28177SDan Gohman void ResetTopOperands(MachineInstr *Instr) { 665adf28177SDan Gohman assert(HasRemainingOperands(Instr) && 666adf28177SDan Gohman "Reseting operands should only be done when the instruction has " 667adf28177SDan Gohman "an operand still on the stack"); 668adf28177SDan Gohman Worklist.back() = reverse(Instr->explicit_uses()); 669adf28177SDan Gohman } 670adf28177SDan Gohman 671adf28177SDan Gohman /// Test whether Instr has operands remaining to be visited at the top of 672adf28177SDan Gohman /// the stack. 673adf28177SDan Gohman bool HasRemainingOperands(const MachineInstr *Instr) const { 674adf28177SDan Gohman if (Worklist.empty()) 675adf28177SDan Gohman return false; 676adf28177SDan Gohman const RangeTy &Range = Worklist.back(); 677adf28177SDan Gohman return Range.begin() != Range.end() && Range.begin()->getParent() == Instr; 678adf28177SDan Gohman } 679fbfe5ec4SDan Gohman 680fbfe5ec4SDan Gohman /// Test whether the given register is present on the stack, indicating an 681fbfe5ec4SDan Gohman /// operand in the tree that we haven't visited yet. Moving a definition of 682fbfe5ec4SDan Gohman /// Reg to a point in the tree after that would change its value. 6831054570aSDan Gohman /// 6841054570aSDan Gohman /// This is needed as a consequence of using implicit get_locals for 6851054570aSDan Gohman /// uses and implicit set_locals for defs. 686fbfe5ec4SDan Gohman bool IsOnStack(unsigned Reg) const { 687fbfe5ec4SDan Gohman for (const RangeTy &Range : Worklist) 688fbfe5ec4SDan Gohman for (const MachineOperand &MO : Range) 689fbfe5ec4SDan Gohman if (MO.isReg() && MO.getReg() == Reg) 690fbfe5ec4SDan Gohman return true; 691fbfe5ec4SDan Gohman return false; 692fbfe5ec4SDan Gohman } 693adf28177SDan Gohman }; 694adf28177SDan Gohman 695adf28177SDan Gohman /// State to keep track of whether commuting is in flight or whether it's been 696adf28177SDan Gohman /// tried for the current instruction and didn't work. 697adf28177SDan Gohman class CommutingState { 698adf28177SDan Gohman /// There are effectively three states: the initial state where we haven't 699adf28177SDan Gohman /// started commuting anything and we don't know anything yet, the tenative 700adf28177SDan Gohman /// state where we've commuted the operands of the current instruction and are 701adf28177SDan Gohman /// revisting it, and the declined state where we've reverted the operands 702adf28177SDan Gohman /// back to their original order and will no longer commute it further. 703adf28177SDan Gohman bool TentativelyCommuting; 704adf28177SDan Gohman bool Declined; 705adf28177SDan Gohman 706adf28177SDan Gohman /// During the tentative state, these hold the operand indices of the commuted 707adf28177SDan Gohman /// operands. 708adf28177SDan Gohman unsigned Operand0, Operand1; 709adf28177SDan Gohman 710adf28177SDan Gohman public: 711adf28177SDan Gohman CommutingState() : TentativelyCommuting(false), Declined(false) {} 712adf28177SDan Gohman 713adf28177SDan Gohman /// Stackification for an operand was not successful due to ordering 714adf28177SDan Gohman /// constraints. If possible, and if we haven't already tried it and declined 715adf28177SDan Gohman /// it, commute Insert's operands and prepare to revisit it. 716adf28177SDan Gohman void MaybeCommute(MachineInstr *Insert, TreeWalkerState &TreeWalker, 717adf28177SDan Gohman const WebAssemblyInstrInfo *TII) { 718adf28177SDan Gohman if (TentativelyCommuting) { 719adf28177SDan Gohman assert(!Declined && 720adf28177SDan Gohman "Don't decline commuting until you've finished trying it"); 721adf28177SDan Gohman // Commuting didn't help. Revert it. 7229cfc75c2SDuncan P. N. Exon Smith TII->commuteInstruction(*Insert, /*NewMI=*/false, Operand0, Operand1); 723adf28177SDan Gohman TentativelyCommuting = false; 724adf28177SDan Gohman Declined = true; 725adf28177SDan Gohman } else if (!Declined && TreeWalker.HasRemainingOperands(Insert)) { 726adf28177SDan Gohman Operand0 = TargetInstrInfo::CommuteAnyOperandIndex; 727adf28177SDan Gohman Operand1 = TargetInstrInfo::CommuteAnyOperandIndex; 7289cfc75c2SDuncan P. N. Exon Smith if (TII->findCommutedOpIndices(*Insert, Operand0, Operand1)) { 729adf28177SDan Gohman // Tentatively commute the operands and try again. 7309cfc75c2SDuncan P. N. Exon Smith TII->commuteInstruction(*Insert, /*NewMI=*/false, Operand0, Operand1); 731adf28177SDan Gohman TreeWalker.ResetTopOperands(Insert); 732adf28177SDan Gohman TentativelyCommuting = true; 733adf28177SDan Gohman Declined = false; 734adf28177SDan Gohman } 735adf28177SDan Gohman } 736adf28177SDan Gohman } 737adf28177SDan Gohman 738adf28177SDan Gohman /// Stackification for some operand was successful. Reset to the default 739adf28177SDan Gohman /// state. 740adf28177SDan Gohman void Reset() { 741adf28177SDan Gohman TentativelyCommuting = false; 742adf28177SDan Gohman Declined = false; 743adf28177SDan Gohman } 744adf28177SDan Gohman }; 745adf28177SDan Gohman } // end anonymous namespace 746adf28177SDan Gohman 7471462faadSDan Gohman bool WebAssemblyRegStackify::runOnMachineFunction(MachineFunction &MF) { 7481462faadSDan Gohman DEBUG(dbgs() << "********** Register Stackifying **********\n" 7491462faadSDan Gohman "********** Function: " 7501462faadSDan Gohman << MF.getName() << '\n'); 7511462faadSDan Gohman 7521462faadSDan Gohman bool Changed = false; 7531462faadSDan Gohman MachineRegisterInfo &MRI = MF.getRegInfo(); 7541462faadSDan Gohman WebAssemblyFunctionInfo &MFI = *MF.getInfo<WebAssemblyFunctionInfo>(); 755b6fd39a3SDan Gohman const auto *TII = MF.getSubtarget<WebAssemblySubtarget>().getInstrInfo(); 756b6fd39a3SDan Gohman const auto *TRI = MF.getSubtarget<WebAssemblySubtarget>().getRegisterInfo(); 75781719f85SDan Gohman AliasAnalysis &AA = getAnalysis<AAResultsWrapperPass>().getAAResults(); 758adf28177SDan Gohman MachineDominatorTree &MDT = getAnalysis<MachineDominatorTree>(); 7598887d1faSDan Gohman LiveIntervals &LIS = getAnalysis<LiveIntervals>(); 760d70e5907SDan Gohman 7611462faadSDan Gohman // Walk the instructions from the bottom up. Currently we don't look past 7621462faadSDan Gohman // block boundaries, and the blocks aren't ordered so the block visitation 7631462faadSDan Gohman // order isn't significant, but we may want to change this in the future. 7641462faadSDan Gohman for (MachineBasicBlock &MBB : MF) { 7658f59cf75SDan Gohman // Don't use a range-based for loop, because we modify the list as we're 7668f59cf75SDan Gohman // iterating over it and the end iterator may change. 7678f59cf75SDan Gohman for (auto MII = MBB.rbegin(); MII != MBB.rend(); ++MII) { 7688f59cf75SDan Gohman MachineInstr *Insert = &*MII; 76981719f85SDan Gohman // Don't nest anything inside an inline asm, because we don't have 77081719f85SDan Gohman // constraints for $push inputs. 77181719f85SDan Gohman if (Insert->getOpcode() == TargetOpcode::INLINEASM) 772595e8ab2SDan Gohman continue; 773595e8ab2SDan Gohman 774595e8ab2SDan Gohman // Ignore debugging intrinsics. 775595e8ab2SDan Gohman if (Insert->getOpcode() == TargetOpcode::DBG_VALUE) 776595e8ab2SDan Gohman continue; 77781719f85SDan Gohman 7781462faadSDan Gohman // Iterate through the inputs in reverse order, since we'll be pulling 77953d13997SDan Gohman // operands off the stack in LIFO order. 780adf28177SDan Gohman CommutingState Commuting; 781adf28177SDan Gohman TreeWalkerState TreeWalker(Insert); 782adf28177SDan Gohman while (!TreeWalker.Done()) { 783adf28177SDan Gohman MachineOperand &Op = TreeWalker.Pop(); 784adf28177SDan Gohman 7851462faadSDan Gohman // We're only interested in explicit virtual register operands. 786adf28177SDan Gohman if (!Op.isReg()) 7871462faadSDan Gohman continue; 7881462faadSDan Gohman 7891462faadSDan Gohman unsigned Reg = Op.getReg(); 790adf28177SDan Gohman assert(Op.isUse() && "explicit_uses() should only iterate over uses"); 791adf28177SDan Gohman assert(!Op.isImplicit() && 792adf28177SDan Gohman "explicit_uses() should only iterate over explicit operands"); 793adf28177SDan Gohman if (TargetRegisterInfo::isPhysicalRegister(Reg)) 794adf28177SDan Gohman continue; 7951462faadSDan Gohman 796ffc184bbSDan Gohman // Identify the definition for this register at this point. 7972644d74bSDan Gohman MachineInstr *Def = GetVRegDef(Reg, Insert, MRI, LIS); 7981462faadSDan Gohman if (!Def) 7991462faadSDan Gohman continue; 8001462faadSDan Gohman 80181719f85SDan Gohman // Don't nest an INLINE_ASM def into anything, because we don't have 80281719f85SDan Gohman // constraints for $pop outputs. 80381719f85SDan Gohman if (Def->getOpcode() == TargetOpcode::INLINEASM) 80481719f85SDan Gohman continue; 80581719f85SDan Gohman 8064ba4816bSDan Gohman // Argument instructions represent live-in registers and not real 8074ba4816bSDan Gohman // instructions. 8084fc4e42dSDan Gohman if (WebAssembly::isArgument(*Def)) 8094ba4816bSDan Gohman continue; 8104ba4816bSDan Gohman 811adf28177SDan Gohman // Decide which strategy to take. Prefer to move a single-use value 8124fc4e42dSDan Gohman // over cloning it, and prefer cloning over introducing a tee. 813adf28177SDan Gohman // For moving, we require the def to be in the same block as the use; 814adf28177SDan Gohman // this makes things simpler (LiveIntervals' handleMove function only 815adf28177SDan Gohman // supports intra-block moves) and it's MachineSink's job to catch all 816adf28177SDan Gohman // the sinking opportunities anyway. 817adf28177SDan Gohman bool SameBlock = Def->getParent() == &MBB; 818e9e6891bSDerek Schuff bool CanMove = SameBlock && IsSafeToMove(Def, Insert, AA, MRI) && 819fbfe5ec4SDan Gohman !TreeWalker.IsOnStack(Reg); 82012de0b91SDan Gohman if (CanMove && HasOneUse(Reg, Def, MRI, MDT, LIS)) { 8210cfb5f85SDan Gohman Insert = MoveForSingleUse(Reg, Op, Def, MBB, Insert, LIS, MFI, MRI); 8229cfc75c2SDuncan P. N. Exon Smith } else if (ShouldRematerialize(*Def, AA, TII)) { 8239cfc75c2SDuncan P. N. Exon Smith Insert = 8249cfc75c2SDuncan P. N. Exon Smith RematerializeCheapDef(Reg, Op, *Def, MBB, Insert->getIterator(), 8259cfc75c2SDuncan P. N. Exon Smith LIS, MFI, MRI, TII, TRI); 826adf28177SDan Gohman } else if (CanMove && 8271054570aSDan Gohman OneUseDominatesOtherUses(Reg, Op, MBB, MRI, MDT, LIS, MFI)) { 828adf28177SDan Gohman Insert = MoveAndTeeForMultiUse(Reg, Op, Def, MBB, Insert, LIS, MFI, 829adf28177SDan Gohman MRI, TII); 830b6fd39a3SDan Gohman } else { 831adf28177SDan Gohman // We failed to stackify the operand. If the problem was ordering 832adf28177SDan Gohman // constraints, Commuting may be able to help. 833adf28177SDan Gohman if (!CanMove && SameBlock) 834adf28177SDan Gohman Commuting.MaybeCommute(Insert, TreeWalker, TII); 835adf28177SDan Gohman // Proceed to the next operand. 836adf28177SDan Gohman continue; 837b6fd39a3SDan Gohman } 838adf28177SDan Gohman 839e81021a5SDan Gohman // If the instruction we just stackified is an IMPLICIT_DEF, convert it 840e81021a5SDan Gohman // to a constant 0 so that the def is explicit, and the push/pop 841e81021a5SDan Gohman // correspondence is maintained. 842e81021a5SDan Gohman if (Insert->getOpcode() == TargetOpcode::IMPLICIT_DEF) 843e81021a5SDan Gohman ConvertImplicitDefToConstZero(Insert, MRI, TII, MF); 844e81021a5SDan Gohman 845adf28177SDan Gohman // We stackified an operand. Add the defining instruction's operands to 846adf28177SDan Gohman // the worklist stack now to continue to build an ever deeper tree. 847adf28177SDan Gohman Commuting.Reset(); 848adf28177SDan Gohman TreeWalker.PushOperands(Insert); 849b6fd39a3SDan Gohman } 850adf28177SDan Gohman 851adf28177SDan Gohman // If we stackified any operands, skip over the tree to start looking for 852adf28177SDan Gohman // the next instruction we can build a tree on. 853adf28177SDan Gohman if (Insert != &*MII) { 8548f59cf75SDan Gohman ImposeStackOrdering(&*MII); 855c7e5a9ceSEric Liu MII = MachineBasicBlock::iterator(Insert).getReverse(); 856adf28177SDan Gohman Changed = true; 857adf28177SDan Gohman } 8581462faadSDan Gohman } 8591462faadSDan Gohman } 8601462faadSDan Gohman 861e040533eSDan Gohman // If we used VALUE_STACK anywhere, add it to the live-in sets everywhere so 862adf28177SDan Gohman // that it never looks like a use-before-def. 863b0992dafSDan Gohman if (Changed) { 864e040533eSDan Gohman MF.getRegInfo().addLiveIn(WebAssembly::VALUE_STACK); 865b0992dafSDan Gohman for (MachineBasicBlock &MBB : MF) 866e040533eSDan Gohman MBB.addLiveIn(WebAssembly::VALUE_STACK); 867b0992dafSDan Gohman } 868b0992dafSDan Gohman 8697bafa0eaSDan Gohman #ifndef NDEBUG 870b6fd39a3SDan Gohman // Verify that pushes and pops are performed in LIFO order. 8717bafa0eaSDan Gohman SmallVector<unsigned, 0> Stack; 8727bafa0eaSDan Gohman for (MachineBasicBlock &MBB : MF) { 8737bafa0eaSDan Gohman for (MachineInstr &MI : MBB) { 8740cfb5f85SDan Gohman if (MI.isDebugValue()) 8750cfb5f85SDan Gohman continue; 8767bafa0eaSDan Gohman for (MachineOperand &MO : reverse(MI.explicit_operands())) { 8777a6b9825SDan Gohman if (!MO.isReg()) 8787a6b9825SDan Gohman continue; 879adf28177SDan Gohman unsigned Reg = MO.getReg(); 8807bafa0eaSDan Gohman 881adf28177SDan Gohman if (MFI.isVRegStackified(Reg)) { 8827bafa0eaSDan Gohman if (MO.isDef()) 883adf28177SDan Gohman Stack.push_back(Reg); 8847bafa0eaSDan Gohman else 885adf28177SDan Gohman assert(Stack.pop_back_val() == Reg && 886adf28177SDan Gohman "Register stack pop should be paired with a push"); 8877bafa0eaSDan Gohman } 8887bafa0eaSDan Gohman } 8897bafa0eaSDan Gohman } 8907bafa0eaSDan Gohman // TODO: Generalize this code to support keeping values on the stack across 8917bafa0eaSDan Gohman // basic block boundaries. 892adf28177SDan Gohman assert(Stack.empty() && 893adf28177SDan Gohman "Register stack pushes and pops should be balanced"); 8947bafa0eaSDan Gohman } 8957bafa0eaSDan Gohman #endif 8967bafa0eaSDan Gohman 8971462faadSDan Gohman return Changed; 8981462faadSDan Gohman } 899