13b11a16aSHongbin Zheng //===--- BlockGenerators.cpp - Generate code for statements -----*- C++ -*-===// 23b11a16aSHongbin Zheng // 33b11a16aSHongbin Zheng // The LLVM Compiler Infrastructure 43b11a16aSHongbin Zheng // 53b11a16aSHongbin Zheng // This file is distributed under the University of Illinois Open Source 63b11a16aSHongbin Zheng // License. See LICENSE.TXT for details. 73b11a16aSHongbin Zheng // 83b11a16aSHongbin Zheng //===----------------------------------------------------------------------===// 93b11a16aSHongbin Zheng // 103b11a16aSHongbin Zheng // This file implements the BlockGenerator and VectorBlockGenerator classes, 113b11a16aSHongbin Zheng // which generate sequential code and vectorized code for a polyhedral 123b11a16aSHongbin Zheng // statement, respectively. 133b11a16aSHongbin Zheng // 143b11a16aSHongbin Zheng //===----------------------------------------------------------------------===// 153b11a16aSHongbin Zheng 163b11a16aSHongbin Zheng #include "polly/ScopInfo.h" 178a846610SHongbin Zheng #include "polly/CodeGen/BlockGenerators.h" 1883628182STobias Grosser #include "polly/CodeGen/CodeGeneration.h" 19a63b2579SJohannes Doerfert #include "polly/CodeGen/IslExprBuilder.h" 20637bd631STobias Grosser #include "polly/Options.h" 213b11a16aSHongbin Zheng #include "polly/Support/GICHelper.h" 2297cb813cSSebastian Pop #include "polly/Support/SCEVValidator.h" 23ecfe21b7STobias Grosser #include "polly/Support/ScopHelper.h" 24e71c6ab5STobias Grosser #include "llvm/Analysis/LoopInfo.h" 25f32d651dSJohannes Doerfert #include "llvm/Analysis/RegionInfo.h" 26e71c6ab5STobias Grosser #include "llvm/Analysis/ScalarEvolution.h" 27030237d0STobias Grosser #include "llvm/IR/IntrinsicInst.h" 28c9895067STobias Grosser #include "llvm/IR/Module.h" 293b11a16aSHongbin Zheng #include "llvm/Transforms/Utils/BasicBlockUtils.h" 30f32d651dSJohannes Doerfert #include "isl/aff.h" 31f32d651dSJohannes Doerfert #include "isl/ast.h" 32f32d651dSJohannes Doerfert #include "isl/ast_build.h" 33ba0d0922STobias Grosser #include "isl/set.h" 34f32d651dSJohannes Doerfert #include <deque> 35f32d651dSJohannes Doerfert 363b11a16aSHongbin Zheng using namespace llvm; 373b11a16aSHongbin Zheng using namespace polly; 383b11a16aSHongbin Zheng 39878aba49STobias Grosser static cl::opt<bool> Aligned("enable-polly-aligned", 40878aba49STobias Grosser cl::desc("Assumed aligned memory accesses."), 41878aba49STobias Grosser cl::Hidden, cl::init(false), cl::ZeroOrMore, 42878aba49STobias Grosser cl::cat(PollyCategory)); 433b11a16aSHongbin Zheng 44dcc3b435STobias Grosser bool polly::canSynthesize(const Value *V, const llvm::LoopInfo *LI, 45ecfe21b7STobias Grosser ScalarEvolution *SE, const Region *R) { 46dcc3b435STobias Grosser if (!V || !SE->isSCEVable(V->getType())) 47ecfe21b7STobias Grosser return false; 48ecfe21b7STobias Grosser 49dcc3b435STobias Grosser if (const SCEV *Scev = SE->getSCEV(const_cast<Value *>(V))) 50ecfe21b7STobias Grosser if (!isa<SCEVCouldNotCompute>(Scev)) 51ecfe21b7STobias Grosser if (!hasScalarDepsInsideRegion(Scev, R)) 52ecfe21b7STobias Grosser return true; 53ecfe21b7STobias Grosser 54ecfe21b7STobias Grosser return false; 55ecfe21b7STobias Grosser } 56ecfe21b7STobias Grosser 579e3a5db0SJohannes Doerfert bool polly::isIgnoredIntrinsic(const Value *V) { 589e3a5db0SJohannes Doerfert if (auto *IT = dyn_cast<IntrinsicInst>(V)) { 599e3a5db0SJohannes Doerfert switch (IT->getIntrinsicID()) { 609e3a5db0SJohannes Doerfert // Lifetime markers are supported/ignored. 619e3a5db0SJohannes Doerfert case llvm::Intrinsic::lifetime_start: 629e3a5db0SJohannes Doerfert case llvm::Intrinsic::lifetime_end: 639e3a5db0SJohannes Doerfert // Invariant markers are supported/ignored. 649e3a5db0SJohannes Doerfert case llvm::Intrinsic::invariant_start: 659e3a5db0SJohannes Doerfert case llvm::Intrinsic::invariant_end: 669e3a5db0SJohannes Doerfert // Some misc annotations are supported/ignored. 679e3a5db0SJohannes Doerfert case llvm::Intrinsic::var_annotation: 689e3a5db0SJohannes Doerfert case llvm::Intrinsic::ptr_annotation: 699e3a5db0SJohannes Doerfert case llvm::Intrinsic::annotation: 709e3a5db0SJohannes Doerfert case llvm::Intrinsic::donothing: 719e3a5db0SJohannes Doerfert case llvm::Intrinsic::assume: 729e3a5db0SJohannes Doerfert case llvm::Intrinsic::expect: 739e3a5db0SJohannes Doerfert return true; 749e3a5db0SJohannes Doerfert default: 759e3a5db0SJohannes Doerfert break; 769e3a5db0SJohannes Doerfert } 779e3a5db0SJohannes Doerfert } 789e3a5db0SJohannes Doerfert return false; 799e3a5db0SJohannes Doerfert } 809e3a5db0SJohannes Doerfert 81b4f08eb6SJohannes Doerfert BlockGenerator::BlockGenerator(PollyIRBuilder &B, LoopInfo &LI, 82b4f08eb6SJohannes Doerfert ScalarEvolution &SE, DominatorTree &DT, 83ecff11dcSJohannes Doerfert ScalarAllocaMapTy &ScalarMap, 84ecff11dcSJohannes Doerfert ScalarAllocaMapTy &PHIOpMap, 85ecff11dcSJohannes Doerfert EscapeUsersAllocaMapTy &EscapeMap, 86b4f08eb6SJohannes Doerfert IslExprBuilder *ExprBuilder) 87ecff11dcSJohannes Doerfert : Builder(B), LI(LI), SE(SE), ExprBuilder(ExprBuilder), DT(DT), 88ecff11dcSJohannes Doerfert EntryBB(nullptr), PHIOpMap(PHIOpMap), ScalarMap(ScalarMap), 89ecff11dcSJohannes Doerfert EscapeMap(EscapeMap) {} 90e71c6ab5STobias Grosser 91be9c9117SJohannes Doerfert Value *BlockGenerator::getNewValue(ScopStmt &Stmt, const Value *Old, 92be9c9117SJohannes Doerfert ValueMapT &BBMap, ValueMapT &GlobalMap, 93be9c9117SJohannes Doerfert LoopToScevMapT <S, Loop *L) const { 943b11a16aSHongbin Zheng // We assume constants never change. 953b11a16aSHongbin Zheng // This avoids map lookups for many calls to this function. 963b11a16aSHongbin Zheng if (isa<Constant>(Old)) 973b11a16aSHongbin Zheng return const_cast<Value *>(Old); 983b11a16aSHongbin Zheng 99fe11e287SHongbin Zheng if (Value *New = GlobalMap.lookup(Old)) { 100c14582f2STobias Grosser if (Old->getType()->getScalarSizeInBits() < 101c14582f2STobias Grosser New->getType()->getScalarSizeInBits()) 1023b11a16aSHongbin Zheng New = Builder.CreateTruncOrBitCast(New, Old->getType()); 1033b11a16aSHongbin Zheng 1043b11a16aSHongbin Zheng return New; 1053b11a16aSHongbin Zheng } 1063b11a16aSHongbin Zheng 107fe11e287SHongbin Zheng if (Value *New = BBMap.lookup(Old)) 108fe11e287SHongbin Zheng return New; 1093b11a16aSHongbin Zheng 110683b8e44STobias Grosser if (SE.isSCEVable(Old->getType())) 111369430ffSTobias Grosser if (const SCEV *Scev = SE.getSCEVAtScope(const_cast<Value *>(Old), L)) { 112e71c6ab5STobias Grosser if (!isa<SCEVCouldNotCompute>(Scev)) { 113637b23dcSSebastian Pop const SCEV *NewScev = apply(Scev, LTS, SE); 114637b23dcSSebastian Pop ValueToValueMap VTV; 115637b23dcSSebastian Pop VTV.insert(BBMap.begin(), BBMap.end()); 116637b23dcSSebastian Pop VTV.insert(GlobalMap.begin(), GlobalMap.end()); 11747d4ee3eSSebastian Pop NewScev = SCEVParameterRewriter::rewrite(NewScev, SE, VTV); 118e69e1141SJohannes Doerfert 119e69e1141SJohannes Doerfert Scop &S = *Stmt.getParent(); 120e69e1141SJohannes Doerfert const DataLayout &DL = 121e69e1141SJohannes Doerfert S.getRegion().getEntry()->getParent()->getParent()->getDataLayout(); 122e69e1141SJohannes Doerfert auto IP = Builder.GetInsertPoint(); 123e69e1141SJohannes Doerfert 124e69e1141SJohannes Doerfert assert(IP != Builder.GetInsertBlock()->end() && 12545e7944bSTobias Grosser "Only instructions can be insert points for SCEVExpander"); 126e69e1141SJohannes Doerfert Value *Expanded = 127e69e1141SJohannes Doerfert expandCodeFor(S, SE, DL, "polly", NewScev, Old->getType(), IP); 128e71c6ab5STobias Grosser 129e71c6ab5STobias Grosser BBMap[Old] = Expanded; 130e71c6ab5STobias Grosser return Expanded; 131e71c6ab5STobias Grosser } 132369430ffSTobias Grosser } 133e71c6ab5STobias Grosser 13416371acdSTobias Grosser // A scop-constant value defined by a global or a function parameter. 13516371acdSTobias Grosser if (isa<GlobalValue>(Old) || isa<Argument>(Old)) 13616371acdSTobias Grosser return const_cast<Value *>(Old); 13716371acdSTobias Grosser 13816371acdSTobias Grosser // A scop-constant value defined by an instruction executed outside the scop. 13916371acdSTobias Grosser if (const Instruction *Inst = dyn_cast<Instruction>(Old)) 140be9c9117SJohannes Doerfert if (!Stmt.getParent()->getRegion().contains(Inst->getParent())) 14116371acdSTobias Grosser return const_cast<Value *>(Old); 14216371acdSTobias Grosser 14316371acdSTobias Grosser // The scalar dependence is neither available nor SCEVCodegenable. 1445b463ceaSHongbin Zheng llvm_unreachable("Unexpected scalar dependence in region!"); 1455a56cbf4STobias Grosser return nullptr; 1463b11a16aSHongbin Zheng } 1473b11a16aSHongbin Zheng 148be9c9117SJohannes Doerfert void BlockGenerator::copyInstScalar(ScopStmt &Stmt, const Instruction *Inst, 149be9c9117SJohannes Doerfert ValueMapT &BBMap, ValueMapT &GlobalMap, 150be9c9117SJohannes Doerfert LoopToScevMapT <S) { 151030237d0STobias Grosser // We do not generate debug intrinsics as we did not investigate how to 152030237d0STobias Grosser // copy them correctly. At the current state, they just crash the code 153030237d0STobias Grosser // generation as the meta-data operands are not correctly copied. 154030237d0STobias Grosser if (isa<DbgInfoIntrinsic>(Inst)) 155030237d0STobias Grosser return; 156030237d0STobias Grosser 1573b11a16aSHongbin Zheng Instruction *NewInst = Inst->clone(); 1583b11a16aSHongbin Zheng 1593b11a16aSHongbin Zheng // Replace old operands with the new ones. 16091f5b262STobias Grosser for (Value *OldOperand : Inst->operands()) { 161be9c9117SJohannes Doerfert Value *NewOperand = getNewValue(Stmt, OldOperand, BBMap, GlobalMap, LTS, 162be9c9117SJohannes Doerfert getLoopForInst(Inst)); 1633b11a16aSHongbin Zheng 1643b11a16aSHongbin Zheng if (!NewOperand) { 165c14582f2STobias Grosser assert(!isa<StoreInst>(NewInst) && 166c14582f2STobias Grosser "Store instructions are always needed!"); 1673b11a16aSHongbin Zheng delete NewInst; 1683b11a16aSHongbin Zheng return; 1693b11a16aSHongbin Zheng } 1703b11a16aSHongbin Zheng 1713b11a16aSHongbin Zheng NewInst->replaceUsesOfWith(OldOperand, NewOperand); 1723b11a16aSHongbin Zheng } 1733b11a16aSHongbin Zheng 1743b11a16aSHongbin Zheng Builder.Insert(NewInst); 1753b11a16aSHongbin Zheng BBMap[Inst] = NewInst; 1763b11a16aSHongbin Zheng 1773b11a16aSHongbin Zheng if (!NewInst->getType()->isVoidTy()) 1783b11a16aSHongbin Zheng NewInst->setName("p_" + Inst->getName()); 1793b11a16aSHongbin Zheng } 1803b11a16aSHongbin Zheng 181be9c9117SJohannes Doerfert Value *BlockGenerator::generateLocationAccessed( 182be9c9117SJohannes Doerfert ScopStmt &Stmt, const Instruction *Inst, const Value *Pointer, 1832d1ed0bfSTobias Grosser ValueMapT &BBMap, ValueMapT &GlobalMap, LoopToScevMapT <S, 1842d1ed0bfSTobias Grosser isl_id_to_ast_expr *NewAccesses) { 185be9c9117SJohannes Doerfert const MemoryAccess &MA = Stmt.getAccessFor(Inst); 1863b11a16aSHongbin Zheng 1872d1ed0bfSTobias Grosser isl_ast_expr *AccessExpr = isl_id_to_ast_expr_get(NewAccesses, MA.getId()); 1883b11a16aSHongbin Zheng 1892d1ed0bfSTobias Grosser if (AccessExpr) { 1902d1ed0bfSTobias Grosser AccessExpr = isl_ast_expr_address_of(AccessExpr); 1912d1ed0bfSTobias Grosser return ExprBuilder->create(AccessExpr); 1922d1ed0bfSTobias Grosser } 1932d1ed0bfSTobias Grosser 1942d1ed0bfSTobias Grosser return getNewValue(Stmt, Pointer, BBMap, GlobalMap, LTS, 1952d1ed0bfSTobias Grosser getLoopForInst(Inst)); 1963b11a16aSHongbin Zheng } 1973b11a16aSHongbin Zheng 1984d96c8d7STobias Grosser Loop *BlockGenerator::getLoopForInst(const llvm::Instruction *Inst) { 1992ef3f4fdSJohannes Doerfert return LI.getLoopFor(Inst->getParent()); 200369430ffSTobias Grosser } 201369430ffSTobias Grosser 202be9c9117SJohannes Doerfert Value *BlockGenerator::generateScalarLoad(ScopStmt &Stmt, const LoadInst *Load, 203e602a076STobias Grosser ValueMapT &BBMap, 204e602a076STobias Grosser ValueMapT &GlobalMap, 2052d1ed0bfSTobias Grosser LoopToScevMapT <S, 2062d1ed0bfSTobias Grosser isl_id_to_ast_expr *NewAccesses) { 2073b11a16aSHongbin Zheng const Value *Pointer = Load->getPointerOperand(); 2082d1ed0bfSTobias Grosser Value *NewPointer = generateLocationAccessed(Stmt, Load, Pointer, BBMap, 2092d1ed0bfSTobias Grosser GlobalMap, LTS, NewAccesses); 21087901453SJohannes Doerfert Value *ScalarLoad = Builder.CreateAlignedLoad( 21187901453SJohannes Doerfert NewPointer, Load->getAlignment(), Load->getName() + "_p_scalar_"); 2123b11a16aSHongbin Zheng return ScalarLoad; 2133b11a16aSHongbin Zheng } 2143b11a16aSHongbin Zheng 215c186ac7aSTobias Grosser void BlockGenerator::generateScalarStore(ScopStmt &Stmt, const StoreInst *Store, 216c186ac7aSTobias Grosser ValueMapT &BBMap, ValueMapT &GlobalMap, 2172d1ed0bfSTobias Grosser LoopToScevMapT <S, 2182d1ed0bfSTobias Grosser isl_id_to_ast_expr *NewAccesses) { 2193b11a16aSHongbin Zheng const Value *Pointer = Store->getPointerOperand(); 2202d1ed0bfSTobias Grosser Value *NewPointer = generateLocationAccessed(Stmt, Store, Pointer, BBMap, 2212d1ed0bfSTobias Grosser GlobalMap, LTS, NewAccesses); 222be9c9117SJohannes Doerfert Value *ValueOperand = getNewValue(Stmt, Store->getValueOperand(), BBMap, 223be9c9117SJohannes Doerfert GlobalMap, LTS, getLoopForInst(Store)); 2243b11a16aSHongbin Zheng 225c186ac7aSTobias Grosser Builder.CreateAlignedStore(ValueOperand, NewPointer, Store->getAlignment()); 2263b11a16aSHongbin Zheng } 2273b11a16aSHongbin Zheng 228be9c9117SJohannes Doerfert void BlockGenerator::copyInstruction(ScopStmt &Stmt, const Instruction *Inst, 229be9c9117SJohannes Doerfert ValueMapT &BBMap, ValueMapT &GlobalMap, 2302d1ed0bfSTobias Grosser LoopToScevMapT <S, 2312d1ed0bfSTobias Grosser isl_id_to_ast_expr *NewAccesses) { 232ecff11dcSJohannes Doerfert 233ecff11dcSJohannes Doerfert // First check for possible scalar dependences for this instruction. 234ecff11dcSJohannes Doerfert generateScalarLoads(Stmt, Inst, BBMap); 235ecff11dcSJohannes Doerfert 2363b11a16aSHongbin Zheng // Terminator instructions control the control flow. They are explicitly 2373b11a16aSHongbin Zheng // expressed in the clast and do not need to be copied. 2383b11a16aSHongbin Zheng if (Inst->isTerminator()) 2393b11a16aSHongbin Zheng return; 2403b11a16aSHongbin Zheng 241ecff11dcSJohannes Doerfert Loop *L = getLoopForInst(Inst); 242ecff11dcSJohannes Doerfert if ((Stmt.isBlockStmt() || !Stmt.getRegion()->contains(L)) && 243ecff11dcSJohannes Doerfert canSynthesize(Inst, &LI, &SE, &Stmt.getParent()->getRegion())) { 244ecff11dcSJohannes Doerfert Value *NewValue = getNewValue(Stmt, Inst, BBMap, GlobalMap, LTS, L); 245ecff11dcSJohannes Doerfert BBMap[Inst] = NewValue; 246e71c6ab5STobias Grosser return; 247ecff11dcSJohannes Doerfert } 248e71c6ab5STobias Grosser 2493b11a16aSHongbin Zheng if (const LoadInst *Load = dyn_cast<LoadInst>(Inst)) { 2502d1ed0bfSTobias Grosser Value *NewLoad = 2512d1ed0bfSTobias Grosser generateScalarLoad(Stmt, Load, BBMap, GlobalMap, LTS, NewAccesses); 2523d94fedfSSebastian Pop // Compute NewLoad before its insertion in BBMap to make the insertion 2533d94fedfSSebastian Pop // deterministic. 254753d43f9SSebastian Pop BBMap[Load] = NewLoad; 2553b11a16aSHongbin Zheng return; 2563b11a16aSHongbin Zheng } 2573b11a16aSHongbin Zheng 2583b11a16aSHongbin Zheng if (const StoreInst *Store = dyn_cast<StoreInst>(Inst)) { 2592d1ed0bfSTobias Grosser generateScalarStore(Stmt, Store, BBMap, GlobalMap, LTS, NewAccesses); 2603b11a16aSHongbin Zheng return; 2613b11a16aSHongbin Zheng } 2623b11a16aSHongbin Zheng 263ecff11dcSJohannes Doerfert if (const PHINode *PHI = dyn_cast<PHINode>(Inst)) { 264ecff11dcSJohannes Doerfert copyPHIInstruction(Stmt, PHI, BBMap, GlobalMap, LTS); 265ecff11dcSJohannes Doerfert return; 266ecff11dcSJohannes Doerfert } 267ecff11dcSJohannes Doerfert 2683f500fa2SJohannes Doerfert // Skip some special intrinsics for which we do not adjust the semantics to 2693f500fa2SJohannes Doerfert // the new schedule. All others are handled like every other instruction. 2703f500fa2SJohannes Doerfert if (auto *IT = dyn_cast<IntrinsicInst>(Inst)) { 2713f500fa2SJohannes Doerfert switch (IT->getIntrinsicID()) { 2723f500fa2SJohannes Doerfert // Lifetime markers are ignored. 2733f500fa2SJohannes Doerfert case llvm::Intrinsic::lifetime_start: 2743f500fa2SJohannes Doerfert case llvm::Intrinsic::lifetime_end: 2753f500fa2SJohannes Doerfert // Invariant markers are ignored. 2763f500fa2SJohannes Doerfert case llvm::Intrinsic::invariant_start: 2773f500fa2SJohannes Doerfert case llvm::Intrinsic::invariant_end: 2783f500fa2SJohannes Doerfert // Some misc annotations are ignored. 2793f500fa2SJohannes Doerfert case llvm::Intrinsic::var_annotation: 2803f500fa2SJohannes Doerfert case llvm::Intrinsic::ptr_annotation: 2813f500fa2SJohannes Doerfert case llvm::Intrinsic::annotation: 2823f500fa2SJohannes Doerfert case llvm::Intrinsic::donothing: 2833f500fa2SJohannes Doerfert case llvm::Intrinsic::assume: 2843f500fa2SJohannes Doerfert case llvm::Intrinsic::expect: 2853f500fa2SJohannes Doerfert return; 2863f500fa2SJohannes Doerfert default: 2873f500fa2SJohannes Doerfert // Other intrinsics are copied. 2883f500fa2SJohannes Doerfert break; 2893f500fa2SJohannes Doerfert } 2903f500fa2SJohannes Doerfert } 2913f500fa2SJohannes Doerfert 292be9c9117SJohannes Doerfert copyInstScalar(Stmt, Inst, BBMap, GlobalMap, LTS); 2933b11a16aSHongbin Zheng } 2943b11a16aSHongbin Zheng 295275a1756SJohannes Doerfert void BlockGenerator::copyStmt(ScopStmt &Stmt, ValueMapT &GlobalMap, 2962d1ed0bfSTobias Grosser LoopToScevMapT <S, 2972d1ed0bfSTobias Grosser isl_id_to_ast_expr *NewAccesses) { 298275a1756SJohannes Doerfert assert(Stmt.isBlockStmt() && 299275a1756SJohannes Doerfert "Only block statements can be copied by the block generator"); 300275a1756SJohannes Doerfert 301275a1756SJohannes Doerfert ValueMapT BBMap; 302275a1756SJohannes Doerfert 303be9c9117SJohannes Doerfert BasicBlock *BB = Stmt.getBasicBlock(); 3042d1ed0bfSTobias Grosser copyBB(Stmt, BB, BBMap, GlobalMap, LTS, NewAccesses); 305275a1756SJohannes Doerfert } 306275a1756SJohannes Doerfert 307514f6efaSJohannes Doerfert BasicBlock *BlockGenerator::splitBB(BasicBlock *BB) { 308c14582f2STobias Grosser BasicBlock *CopyBB = 309b4f08eb6SJohannes Doerfert SplitBlock(Builder.GetInsertBlock(), Builder.GetInsertPoint(), &DT, &LI); 3103b11a16aSHongbin Zheng CopyBB->setName("polly.stmt." + BB->getName()); 311514f6efaSJohannes Doerfert return CopyBB; 312514f6efaSJohannes Doerfert } 3133b11a16aSHongbin Zheng 314514f6efaSJohannes Doerfert BasicBlock *BlockGenerator::copyBB(ScopStmt &Stmt, BasicBlock *BB, 315514f6efaSJohannes Doerfert ValueMapT &BBMap, ValueMapT &GlobalMap, 3162d1ed0bfSTobias Grosser LoopToScevMapT <S, 3172d1ed0bfSTobias Grosser isl_id_to_ast_expr *NewAccesses) { 318514f6efaSJohannes Doerfert BasicBlock *CopyBB = splitBB(BB); 3192d1ed0bfSTobias Grosser copyBB(Stmt, BB, CopyBB, BBMap, GlobalMap, LTS, NewAccesses); 320514f6efaSJohannes Doerfert return CopyBB; 321514f6efaSJohannes Doerfert } 322514f6efaSJohannes Doerfert 323514f6efaSJohannes Doerfert void BlockGenerator::copyBB(ScopStmt &Stmt, BasicBlock *BB, BasicBlock *CopyBB, 324514f6efaSJohannes Doerfert ValueMapT &BBMap, ValueMapT &GlobalMap, 3252d1ed0bfSTobias Grosser LoopToScevMapT <S, 3262d1ed0bfSTobias Grosser isl_id_to_ast_expr *NewAccesses) { 327514f6efaSJohannes Doerfert Builder.SetInsertPoint(CopyBB->begin()); 328ecff11dcSJohannes Doerfert EntryBB = &CopyBB->getParent()->getEntryBlock(); 329ecff11dcSJohannes Doerfert 33091f5b262STobias Grosser for (Instruction &Inst : *BB) 3312d1ed0bfSTobias Grosser copyInstruction(Stmt, &Inst, BBMap, GlobalMap, LTS, NewAccesses); 332ecff11dcSJohannes Doerfert 333ecff11dcSJohannes Doerfert // After a basic block was copied store all scalars that escape this block 334ecff11dcSJohannes Doerfert // in their alloca. First the scalars that have dependences inside the SCoP, 335ecff11dcSJohannes Doerfert // then the ones that might escape the SCoP. 336ecff11dcSJohannes Doerfert generateScalarStores(Stmt, BB, BBMap, GlobalMap); 337ecff11dcSJohannes Doerfert 338ecff11dcSJohannes Doerfert const Region &R = Stmt.getParent()->getRegion(); 339ecff11dcSJohannes Doerfert for (Instruction &Inst : *BB) 340ecff11dcSJohannes Doerfert handleOutsideUsers(R, &Inst, BBMap[&Inst]); 341ecff11dcSJohannes Doerfert } 342ecff11dcSJohannes Doerfert 3430164b8ffSTobias Grosser AllocaInst *BlockGenerator::getOrCreateAlloca(Value *ScalarBase, 344ecff11dcSJohannes Doerfert ScalarAllocaMapTy &Map, 345*2985400aSTobias Grosser const char *NameExt) { 346ecff11dcSJohannes Doerfert // Check if an alloca was cached for the base instruction. 347ecff11dcSJohannes Doerfert AllocaInst *&Addr = Map[ScalarBase]; 348ecff11dcSJohannes Doerfert 349ecff11dcSJohannes Doerfert // If no alloca was found create one and insert it in the entry block. 350ecff11dcSJohannes Doerfert if (!Addr) { 351ecff11dcSJohannes Doerfert auto *Ty = ScalarBase->getType(); 352ecff11dcSJohannes Doerfert Addr = new AllocaInst(Ty, ScalarBase->getName() + NameExt); 353ecff11dcSJohannes Doerfert Addr->insertBefore(EntryBB->getFirstInsertionPt()); 354ecff11dcSJohannes Doerfert } 355ecff11dcSJohannes Doerfert 356ecff11dcSJohannes Doerfert return Addr; 357ecff11dcSJohannes Doerfert } 358ecff11dcSJohannes Doerfert 359f8d55f7eSTobias Grosser AllocaInst *BlockGenerator::getOrCreateAlloca(MemoryAccess &Access) { 360f8d55f7eSTobias Grosser if (Access.getScopArrayInfo()->isPHI()) 361f8d55f7eSTobias Grosser return getOrCreatePHIAlloca(Access.getBaseAddr()); 362f8d55f7eSTobias Grosser else 363f8d55f7eSTobias Grosser return getOrCreateScalarAlloca(Access.getBaseAddr()); 364f8d55f7eSTobias Grosser } 365f8d55f7eSTobias Grosser 366b79a67dfSTobias Grosser AllocaInst *BlockGenerator::getOrCreateScalarAlloca(Value *ScalarBase) { 367b79a67dfSTobias Grosser return getOrCreateAlloca(ScalarBase, ScalarMap, ".s2a"); 368b79a67dfSTobias Grosser } 369b79a67dfSTobias Grosser 370b79a67dfSTobias Grosser AllocaInst *BlockGenerator::getOrCreatePHIAlloca(Value *ScalarBase) { 371b79a67dfSTobias Grosser return getOrCreateAlloca(ScalarBase, PHIOpMap, ".phiops"); 372b79a67dfSTobias Grosser } 373b79a67dfSTobias Grosser 374ecff11dcSJohannes Doerfert void BlockGenerator::handleOutsideUsers(const Region &R, Instruction *Inst, 375ecff11dcSJohannes Doerfert Value *InstCopy) { 376*2985400aSTobias Grosser // If there are escape users we get the alloca for this instruction and put it 377*2985400aSTobias Grosser // in the EscapeMap for later finalization. Lastly, if the instruction was 378*2985400aSTobias Grosser // copied multiple times we already did this and can exit. 379acb6ade7SMichael Kruse if (EscapeMap.count(Inst)) 380acb6ade7SMichael Kruse return; 381e69e1141SJohannes Doerfert 382ecff11dcSJohannes Doerfert EscapeUserVectorTy EscapeUsers; 383ecff11dcSJohannes Doerfert for (User *U : Inst->users()) { 384ecff11dcSJohannes Doerfert 385ecff11dcSJohannes Doerfert // Non-instruction user will never escape. 386ecff11dcSJohannes Doerfert Instruction *UI = dyn_cast<Instruction>(U); 387ecff11dcSJohannes Doerfert if (!UI) 388ecff11dcSJohannes Doerfert continue; 389ecff11dcSJohannes Doerfert 390ddb83d0fSJohannes Doerfert if (R.contains(UI)) 391ecff11dcSJohannes Doerfert continue; 392ecff11dcSJohannes Doerfert 393ecff11dcSJohannes Doerfert EscapeUsers.push_back(UI); 394ecff11dcSJohannes Doerfert } 395ecff11dcSJohannes Doerfert 396ecff11dcSJohannes Doerfert // Exit if no escape uses were found. 397ecff11dcSJohannes Doerfert if (EscapeUsers.empty()) 398ecff11dcSJohannes Doerfert return; 399ecff11dcSJohannes Doerfert 400ecff11dcSJohannes Doerfert // Get or create an escape alloca for this instruction. 401*2985400aSTobias Grosser AllocaInst *ScalarAddr = getOrCreateScalarAlloca(Inst); 402ecff11dcSJohannes Doerfert 403ecff11dcSJohannes Doerfert // Remember that this instruction has escape uses and the escape alloca. 404ecff11dcSJohannes Doerfert EscapeMap[Inst] = std::make_pair(ScalarAddr, std::move(EscapeUsers)); 405ecff11dcSJohannes Doerfert } 406ecff11dcSJohannes Doerfert 407ecff11dcSJohannes Doerfert void BlockGenerator::generateScalarLoads(ScopStmt &Stmt, 408ecff11dcSJohannes Doerfert const Instruction *Inst, 409ecff11dcSJohannes Doerfert ValueMapT &BBMap) { 410d4dd6ec7STobias Grosser auto *MAL = Stmt.lookupAccessesFor(Inst); 411ecff11dcSJohannes Doerfert 412d4dd6ec7STobias Grosser if (!MAL) 413d4dd6ec7STobias Grosser return; 414d4dd6ec7STobias Grosser 415ecff11dcSJohannes Doerfert for (MemoryAccess &MA : *MAL) { 416d4dd6ec7STobias Grosser AllocaInst *Address; 417ecff11dcSJohannes Doerfert if (!MA.isScalar() || !MA.isRead()) 418ecff11dcSJohannes Doerfert continue; 419ecff11dcSJohannes Doerfert 420f8d55f7eSTobias Grosser Address = getOrCreateAlloca(MA); 421f8d55f7eSTobias Grosser BBMap[MA.getBaseAddr()] = 422f8d55f7eSTobias Grosser Builder.CreateLoad(Address, Address->getName() + ".reload"); 423ecff11dcSJohannes Doerfert } 424ecff11dcSJohannes Doerfert } 425ecff11dcSJohannes Doerfert 426ecff11dcSJohannes Doerfert Value *BlockGenerator::getNewScalarValue(Value *ScalarValue, const Region &R, 427ecff11dcSJohannes Doerfert ScalarAllocaMapTy &ReloadMap, 428ecff11dcSJohannes Doerfert ValueMapT &BBMap, 429ecff11dcSJohannes Doerfert ValueMapT &GlobalMap) { 430ecff11dcSJohannes Doerfert // If the value we want to store is an instruction we might have demoted it 431ecff11dcSJohannes Doerfert // in order to make it accessible here. In such a case a reload is 432ecff11dcSJohannes Doerfert // necessary. If it is no instruction it will always be a value that 433ecff11dcSJohannes Doerfert // dominates the current point and we can just use it. In total there are 4 434ecff11dcSJohannes Doerfert // options: 435ecff11dcSJohannes Doerfert // (1) The value is no instruction ==> use the value. 436ecff11dcSJohannes Doerfert // (2) The value is an instruction that was split out of the region prior to 437ecff11dcSJohannes Doerfert // code generation ==> use the instruction as it dominates the region. 438ecff11dcSJohannes Doerfert // (3) The value is an instruction: 439ecff11dcSJohannes Doerfert // (a) The value was defined in the current block, thus a copy is in 440ecff11dcSJohannes Doerfert // the BBMap ==> use the mapped value. 441ecff11dcSJohannes Doerfert // (b) The value was defined in a previous block, thus we demoted it 442ecff11dcSJohannes Doerfert // earlier ==> use the reloaded value. 443ecff11dcSJohannes Doerfert Instruction *ScalarValueInst = dyn_cast<Instruction>(ScalarValue); 444ecff11dcSJohannes Doerfert if (!ScalarValueInst) 445ecff11dcSJohannes Doerfert return ScalarValue; 446ecff11dcSJohannes Doerfert 447ecff11dcSJohannes Doerfert if (!R.contains(ScalarValueInst)) { 448ecff11dcSJohannes Doerfert if (Value *ScalarValueCopy = GlobalMap.lookup(ScalarValueInst)) 449ecff11dcSJohannes Doerfert return /* Case (3a) */ ScalarValueCopy; 450ecff11dcSJohannes Doerfert else 451ecff11dcSJohannes Doerfert return /* Case 2 */ ScalarValue; 452ecff11dcSJohannes Doerfert } 453ecff11dcSJohannes Doerfert 454ecff11dcSJohannes Doerfert if (Value *ScalarValueCopy = BBMap.lookup(ScalarValueInst)) 455ecff11dcSJohannes Doerfert return /* Case (3a) */ ScalarValueCopy; 456ecff11dcSJohannes Doerfert 457ecff11dcSJohannes Doerfert // Case (3b) 458e1fa6da3SJohannes Doerfert Value *ReloadAddr = getOrCreateAlloca(ScalarValueInst, ReloadMap, ".s2a"); 459ecff11dcSJohannes Doerfert ScalarValue = 460ecff11dcSJohannes Doerfert Builder.CreateLoad(ReloadAddr, ReloadAddr->getName() + ".reload"); 461ecff11dcSJohannes Doerfert 462ecff11dcSJohannes Doerfert return ScalarValue; 463ecff11dcSJohannes Doerfert } 464ecff11dcSJohannes Doerfert 465ecff11dcSJohannes Doerfert void BlockGenerator::generateScalarStores(ScopStmt &Stmt, BasicBlock *BB, 466ecff11dcSJohannes Doerfert ValueMapT &BBMap, 467ecff11dcSJohannes Doerfert ValueMapT &GlobalMap) { 468ecff11dcSJohannes Doerfert const Region &R = Stmt.getParent()->getRegion(); 469ecff11dcSJohannes Doerfert 470ecff11dcSJohannes Doerfert assert(Stmt.isBlockStmt() && BB == Stmt.getBasicBlock() && 471ecff11dcSJohannes Doerfert "Region statements need to use the generateScalarStores() " 472ecff11dcSJohannes Doerfert "function in the RegionGenerator"); 473ecff11dcSJohannes Doerfert 474ecff11dcSJohannes Doerfert for (MemoryAccess *MA : Stmt) { 475ecff11dcSJohannes Doerfert if (!MA->isScalar() || MA->isRead()) 476ecff11dcSJohannes Doerfert continue; 477ecff11dcSJohannes Doerfert 478d86f2157SJohannes Doerfert Value *Val = MA->getAccessValue(); 479f8d55f7eSTobias Grosser auto *Address = getOrCreateAlloca(*MA); 480d86f2157SJohannes Doerfert 48192245228STobias Grosser Val = getNewScalarValue(Val, R, ScalarMap, BBMap, GlobalMap); 48292245228STobias Grosser Builder.CreateStore(Val, Address); 483ecff11dcSJohannes Doerfert } 484ecff11dcSJohannes Doerfert } 485ecff11dcSJohannes Doerfert 486ecff11dcSJohannes Doerfert void BlockGenerator::createScalarInitialization(Region &R, 487ecff11dcSJohannes Doerfert ValueMapT &GlobalMap) { 488ecff11dcSJohannes Doerfert // The split block __just before__ the region and optimized region. 489ecff11dcSJohannes Doerfert BasicBlock *SplitBB = R.getEnteringBlock(); 490ecff11dcSJohannes Doerfert BranchInst *SplitBBTerm = cast<BranchInst>(SplitBB->getTerminator()); 491ecff11dcSJohannes Doerfert assert(SplitBBTerm->getNumSuccessors() == 2 && "Bad region entering block!"); 492ecff11dcSJohannes Doerfert 493ecff11dcSJohannes Doerfert // Get the start block of the __optimized__ region. 494ecff11dcSJohannes Doerfert BasicBlock *StartBB = SplitBBTerm->getSuccessor(0); 495ecff11dcSJohannes Doerfert if (StartBB == R.getEntry()) 496ecff11dcSJohannes Doerfert StartBB = SplitBBTerm->getSuccessor(1); 497ecff11dcSJohannes Doerfert 498ecff11dcSJohannes Doerfert // For each PHI predecessor outside the region store the incoming operand 499ecff11dcSJohannes Doerfert // value prior to entering the optimized region. 500ecff11dcSJohannes Doerfert Builder.SetInsertPoint(StartBB->getTerminator()); 501ecff11dcSJohannes Doerfert 502ecff11dcSJohannes Doerfert ScalarAllocaMapTy EmptyMap; 503ecff11dcSJohannes Doerfert for (const auto &PHIOpMapping : PHIOpMap) { 504ecff11dcSJohannes Doerfert const PHINode *PHI = cast<PHINode>(PHIOpMapping.getFirst()); 505ecff11dcSJohannes Doerfert 506ecff11dcSJohannes Doerfert // Check if this PHI has the split block as predecessor (that is the only 507ecff11dcSJohannes Doerfert // possible predecessor outside the SCoP). 508ecff11dcSJohannes Doerfert int idx = PHI->getBasicBlockIndex(SplitBB); 509ecff11dcSJohannes Doerfert if (idx < 0) 510ecff11dcSJohannes Doerfert continue; 511ecff11dcSJohannes Doerfert 512ecff11dcSJohannes Doerfert Value *ScalarValue = PHI->getIncomingValue(idx); 513ecff11dcSJohannes Doerfert ScalarValue = 514ecff11dcSJohannes Doerfert getNewScalarValue(ScalarValue, R, EmptyMap, GlobalMap, GlobalMap); 515ecff11dcSJohannes Doerfert 516ecff11dcSJohannes Doerfert // If the split block is the predecessor initialize the PHI operator alloca. 517ecff11dcSJohannes Doerfert Builder.CreateStore(ScalarValue, PHIOpMapping.getSecond()); 518ecff11dcSJohannes Doerfert } 519ecff11dcSJohannes Doerfert } 520ecff11dcSJohannes Doerfert 521ecff11dcSJohannes Doerfert void BlockGenerator::createScalarFinalization(Region &R) { 522ecff11dcSJohannes Doerfert // The exit block of the __unoptimized__ region. 523ecff11dcSJohannes Doerfert BasicBlock *ExitBB = R.getExitingBlock(); 524ecff11dcSJohannes Doerfert // The merge block __just after__ the region and the optimized region. 525ecff11dcSJohannes Doerfert BasicBlock *MergeBB = R.getExit(); 526ecff11dcSJohannes Doerfert 527ecff11dcSJohannes Doerfert // The exit block of the __optimized__ region. 528ecff11dcSJohannes Doerfert BasicBlock *OptExitBB = *(pred_begin(MergeBB)); 529ecff11dcSJohannes Doerfert if (OptExitBB == ExitBB) 530ecff11dcSJohannes Doerfert OptExitBB = *(++pred_begin(MergeBB)); 531ecff11dcSJohannes Doerfert 532ecff11dcSJohannes Doerfert Builder.SetInsertPoint(OptExitBB->getTerminator()); 533ecff11dcSJohannes Doerfert for (const auto &EscapeMapping : EscapeMap) { 534ecff11dcSJohannes Doerfert // Extract the escaping instruction and the escaping users as well as the 535ecff11dcSJohannes Doerfert // alloca the instruction was demoted to. 536ecff11dcSJohannes Doerfert Instruction *EscapeInst = EscapeMapping.getFirst(); 537ecff11dcSJohannes Doerfert const auto &EscapeMappingValue = EscapeMapping.getSecond(); 538ecff11dcSJohannes Doerfert const EscapeUserVectorTy &EscapeUsers = EscapeMappingValue.second; 539ecff11dcSJohannes Doerfert AllocaInst *ScalarAddr = EscapeMappingValue.first; 540ecff11dcSJohannes Doerfert 541ecff11dcSJohannes Doerfert // Reload the demoted instruction in the optimized version of the SCoP. 542ecff11dcSJohannes Doerfert Instruction *EscapeInstReload = 543ecff11dcSJohannes Doerfert Builder.CreateLoad(ScalarAddr, EscapeInst->getName() + ".final_reload"); 544ecff11dcSJohannes Doerfert 545ecff11dcSJohannes Doerfert // Create the merge PHI that merges the optimized and unoptimized version. 546ecff11dcSJohannes Doerfert PHINode *MergePHI = PHINode::Create(EscapeInst->getType(), 2, 547ecff11dcSJohannes Doerfert EscapeInst->getName() + ".merge"); 548ecff11dcSJohannes Doerfert MergePHI->insertBefore(MergeBB->getFirstInsertionPt()); 549ecff11dcSJohannes Doerfert 550ecff11dcSJohannes Doerfert // Add the respective values to the merge PHI. 551ecff11dcSJohannes Doerfert MergePHI->addIncoming(EscapeInstReload, OptExitBB); 552ecff11dcSJohannes Doerfert MergePHI->addIncoming(EscapeInst, ExitBB); 553ecff11dcSJohannes Doerfert 554ecff11dcSJohannes Doerfert // The information of scalar evolution about the escaping instruction needs 555ecff11dcSJohannes Doerfert // to be revoked so the new merged instruction will be used. 556ecff11dcSJohannes Doerfert if (SE.isSCEVable(EscapeInst->getType())) 557ecff11dcSJohannes Doerfert SE.forgetValue(EscapeInst); 558ecff11dcSJohannes Doerfert 559ecff11dcSJohannes Doerfert // Replace all uses of the demoted instruction with the merge PHI. 560ecff11dcSJohannes Doerfert for (Instruction *EUser : EscapeUsers) 561ecff11dcSJohannes Doerfert EUser->replaceUsesOfWith(EscapeInst, MergePHI); 562ecff11dcSJohannes Doerfert } 563ecff11dcSJohannes Doerfert } 564ecff11dcSJohannes Doerfert 565ecff11dcSJohannes Doerfert void BlockGenerator::finalizeSCoP(Scop &S, ValueMapT &GlobalMap) { 566ecff11dcSJohannes Doerfert createScalarInitialization(S.getRegion(), GlobalMap); 567ecff11dcSJohannes Doerfert createScalarFinalization(S.getRegion()); 5683b11a16aSHongbin Zheng } 5693b11a16aSHongbin Zheng 570be9c9117SJohannes Doerfert VectorBlockGenerator::VectorBlockGenerator(BlockGenerator &BlockGen, 571be9c9117SJohannes Doerfert VectorValueMapT &GlobalMaps, 572be9c9117SJohannes Doerfert std::vector<LoopToScevMapT> &VLTS, 573be9c9117SJohannes Doerfert isl_map *Schedule) 574be9c9117SJohannes Doerfert : BlockGenerator(BlockGen), GlobalMaps(GlobalMaps), VLTS(VLTS), 575be9c9117SJohannes Doerfert Schedule(Schedule) { 5763b11a16aSHongbin Zheng assert(GlobalMaps.size() > 1 && "Only one vector lane found"); 577a00a0291SSebastian Pop assert(Schedule && "No statement domain provided"); 5783b11a16aSHongbin Zheng } 5793b11a16aSHongbin Zheng 580be9c9117SJohannes Doerfert Value *VectorBlockGenerator::getVectorValue(ScopStmt &Stmt, const Value *Old, 581e602a076STobias Grosser ValueMapT &VectorMap, 582e602a076STobias Grosser VectorValueMapT &ScalarMaps, 583e602a076STobias Grosser Loop *L) { 584fe11e287SHongbin Zheng if (Value *NewValue = VectorMap.lookup(Old)) 585fe11e287SHongbin Zheng return NewValue; 5863b11a16aSHongbin Zheng 5873b11a16aSHongbin Zheng int Width = getVectorWidth(); 5883b11a16aSHongbin Zheng 5893b11a16aSHongbin Zheng Value *Vector = UndefValue::get(VectorType::get(Old->getType(), Width)); 5903b11a16aSHongbin Zheng 5913b11a16aSHongbin Zheng for (int Lane = 0; Lane < Width; Lane++) 592c14582f2STobias Grosser Vector = Builder.CreateInsertElement( 593be9c9117SJohannes Doerfert Vector, getNewValue(Stmt, Old, ScalarMaps[Lane], GlobalMaps[Lane], 594be9c9117SJohannes Doerfert VLTS[Lane], L), 5957242ad92STobias Grosser Builder.getInt32(Lane)); 5963b11a16aSHongbin Zheng 5973b11a16aSHongbin Zheng VectorMap[Old] = Vector; 5983b11a16aSHongbin Zheng 5993b11a16aSHongbin Zheng return Vector; 6003b11a16aSHongbin Zheng } 6013b11a16aSHongbin Zheng 6023b11a16aSHongbin Zheng Type *VectorBlockGenerator::getVectorPtrTy(const Value *Val, int Width) { 6033b11a16aSHongbin Zheng PointerType *PointerTy = dyn_cast<PointerType>(Val->getType()); 6043b11a16aSHongbin Zheng assert(PointerTy && "PointerType expected"); 6053b11a16aSHongbin Zheng 6063b11a16aSHongbin Zheng Type *ScalarType = PointerTy->getElementType(); 6073b11a16aSHongbin Zheng VectorType *VectorType = VectorType::get(ScalarType, Width); 6083b11a16aSHongbin Zheng 6093b11a16aSHongbin Zheng return PointerType::getUnqual(VectorType); 6103b11a16aSHongbin Zheng } 6113b11a16aSHongbin Zheng 612be9c9117SJohannes Doerfert Value *VectorBlockGenerator::generateStrideOneLoad( 613be9c9117SJohannes Doerfert ScopStmt &Stmt, const LoadInst *Load, VectorValueMapT &ScalarMaps, 6142d1ed0bfSTobias Grosser __isl_keep isl_id_to_ast_expr *NewAccesses, bool NegativeStride = false) { 6150dd463faSTobias Grosser unsigned VectorWidth = getVectorWidth(); 6163b11a16aSHongbin Zheng const Value *Pointer = Load->getPointerOperand(); 6170dd463faSTobias Grosser Type *VectorPtrType = getVectorPtrTy(Pointer, VectorWidth); 6180dd463faSTobias Grosser unsigned Offset = NegativeStride ? VectorWidth - 1 : 0; 6190dd463faSTobias Grosser 6205a56cbf4STobias Grosser Value *NewPointer = nullptr; 6212d1ed0bfSTobias Grosser NewPointer = 6222d1ed0bfSTobias Grosser generateLocationAccessed(Stmt, Load, Pointer, ScalarMaps[Offset], 6232d1ed0bfSTobias Grosser GlobalMaps[Offset], VLTS[Offset], NewAccesses); 624c14582f2STobias Grosser Value *VectorPtr = 625c14582f2STobias Grosser Builder.CreateBitCast(NewPointer, VectorPtrType, "vector_ptr"); 626c14582f2STobias Grosser LoadInst *VecLoad = 627c14582f2STobias Grosser Builder.CreateLoad(VectorPtr, Load->getName() + "_p_vec_full"); 6283b11a16aSHongbin Zheng if (!Aligned) 6293b11a16aSHongbin Zheng VecLoad->setAlignment(8); 6303b11a16aSHongbin Zheng 6310dd463faSTobias Grosser if (NegativeStride) { 6320dd463faSTobias Grosser SmallVector<Constant *, 16> Indices; 6330dd463faSTobias Grosser for (int i = VectorWidth - 1; i >= 0; i--) 6340dd463faSTobias Grosser Indices.push_back(ConstantInt::get(Builder.getInt32Ty(), i)); 6350dd463faSTobias Grosser Constant *SV = llvm::ConstantVector::get(Indices); 6360dd463faSTobias Grosser Value *RevVecLoad = Builder.CreateShuffleVector( 6370dd463faSTobias Grosser VecLoad, VecLoad, SV, Load->getName() + "_reverse"); 6380dd463faSTobias Grosser return RevVecLoad; 6390dd463faSTobias Grosser } 6400dd463faSTobias Grosser 6413b11a16aSHongbin Zheng return VecLoad; 6423b11a16aSHongbin Zheng } 6433b11a16aSHongbin Zheng 6442d1ed0bfSTobias Grosser Value *VectorBlockGenerator::generateStrideZeroLoad( 6452d1ed0bfSTobias Grosser ScopStmt &Stmt, const LoadInst *Load, ValueMapT &BBMap, 6462d1ed0bfSTobias Grosser __isl_keep isl_id_to_ast_expr *NewAccesses) { 6473b11a16aSHongbin Zheng const Value *Pointer = Load->getPointerOperand(); 6483b11a16aSHongbin Zheng Type *VectorPtrType = getVectorPtrTy(Pointer, 1); 6492d1ed0bfSTobias Grosser Value *NewPointer = generateLocationAccessed( 6502d1ed0bfSTobias Grosser Stmt, Load, Pointer, BBMap, GlobalMaps[0], VLTS[0], NewAccesses); 6513b11a16aSHongbin Zheng Value *VectorPtr = Builder.CreateBitCast(NewPointer, VectorPtrType, 6523b11a16aSHongbin Zheng Load->getName() + "_p_vec_p"); 653c14582f2STobias Grosser LoadInst *ScalarLoad = 654c14582f2STobias Grosser Builder.CreateLoad(VectorPtr, Load->getName() + "_p_splat_one"); 6553b11a16aSHongbin Zheng 6563b11a16aSHongbin Zheng if (!Aligned) 6573b11a16aSHongbin Zheng ScalarLoad->setAlignment(8); 6583b11a16aSHongbin Zheng 659c14582f2STobias Grosser Constant *SplatVector = Constant::getNullValue( 660c14582f2STobias Grosser VectorType::get(Builder.getInt32Ty(), getVectorWidth())); 6613b11a16aSHongbin Zheng 662c14582f2STobias Grosser Value *VectorLoad = Builder.CreateShuffleVector( 663c14582f2STobias Grosser ScalarLoad, ScalarLoad, SplatVector, Load->getName() + "_p_splat"); 6643b11a16aSHongbin Zheng return VectorLoad; 6653b11a16aSHongbin Zheng } 6663b11a16aSHongbin Zheng 667be9c9117SJohannes Doerfert Value *VectorBlockGenerator::generateUnknownStrideLoad( 6682d1ed0bfSTobias Grosser ScopStmt &Stmt, const LoadInst *Load, VectorValueMapT &ScalarMaps, 6692d1ed0bfSTobias Grosser __isl_keep isl_id_to_ast_expr *NewAccesses 6702d1ed0bfSTobias Grosser 6712d1ed0bfSTobias Grosser ) { 6723b11a16aSHongbin Zheng int VectorWidth = getVectorWidth(); 6733b11a16aSHongbin Zheng const Value *Pointer = Load->getPointerOperand(); 6743b11a16aSHongbin Zheng VectorType *VectorType = VectorType::get( 6753b11a16aSHongbin Zheng dyn_cast<PointerType>(Pointer->getType())->getElementType(), VectorWidth); 6763b11a16aSHongbin Zheng 6773b11a16aSHongbin Zheng Value *Vector = UndefValue::get(VectorType); 6783b11a16aSHongbin Zheng 6793b11a16aSHongbin Zheng for (int i = 0; i < VectorWidth; i++) { 6802d1ed0bfSTobias Grosser Value *NewPointer = 6812d1ed0bfSTobias Grosser generateLocationAccessed(Stmt, Load, Pointer, ScalarMaps[i], 6822d1ed0bfSTobias Grosser GlobalMaps[i], VLTS[i], NewAccesses); 683c14582f2STobias Grosser Value *ScalarLoad = 684c14582f2STobias Grosser Builder.CreateLoad(NewPointer, Load->getName() + "_p_scalar_"); 685c14582f2STobias Grosser Vector = Builder.CreateInsertElement( 686c14582f2STobias Grosser Vector, ScalarLoad, Builder.getInt32(i), Load->getName() + "_p_vec_"); 6873b11a16aSHongbin Zheng } 6883b11a16aSHongbin Zheng 6893b11a16aSHongbin Zheng return Vector; 6903b11a16aSHongbin Zheng } 6913b11a16aSHongbin Zheng 6922d1ed0bfSTobias Grosser void VectorBlockGenerator::generateLoad( 6932d1ed0bfSTobias Grosser ScopStmt &Stmt, const LoadInst *Load, ValueMapT &VectorMap, 6942d1ed0bfSTobias Grosser VectorValueMapT &ScalarMaps, __isl_keep isl_id_to_ast_expr *NewAccesses) { 6952873645cSTobias Grosser if (!VectorType::isValidElementType(Load->getType())) { 6963b11a16aSHongbin Zheng for (int i = 0; i < getVectorWidth(); i++) 6972d1ed0bfSTobias Grosser ScalarMaps[i][Load] = generateScalarLoad( 6982d1ed0bfSTobias Grosser Stmt, Load, ScalarMaps[i], GlobalMaps[i], VLTS[i], NewAccesses); 6993b11a16aSHongbin Zheng return; 7003b11a16aSHongbin Zheng } 7013b11a16aSHongbin Zheng 702be9c9117SJohannes Doerfert const MemoryAccess &Access = Stmt.getAccessFor(Load); 7033b11a16aSHongbin Zheng 70495493984STobias Grosser // Make sure we have scalar values available to access the pointer to 70595493984STobias Grosser // the data location. 70695493984STobias Grosser extractScalarValues(Load, VectorMap, ScalarMaps); 70795493984STobias Grosser 7083b11a16aSHongbin Zheng Value *NewLoad; 709a00a0291SSebastian Pop if (Access.isStrideZero(isl_map_copy(Schedule))) 7102d1ed0bfSTobias Grosser NewLoad = generateStrideZeroLoad(Stmt, Load, ScalarMaps[0], NewAccesses); 711a00a0291SSebastian Pop else if (Access.isStrideOne(isl_map_copy(Schedule))) 7122d1ed0bfSTobias Grosser NewLoad = generateStrideOneLoad(Stmt, Load, ScalarMaps, NewAccesses); 7130dd463faSTobias Grosser else if (Access.isStrideX(isl_map_copy(Schedule), -1)) 7142d1ed0bfSTobias Grosser NewLoad = generateStrideOneLoad(Stmt, Load, ScalarMaps, NewAccesses, true); 7153b11a16aSHongbin Zheng else 7162d1ed0bfSTobias Grosser NewLoad = generateUnknownStrideLoad(Stmt, Load, ScalarMaps, NewAccesses); 7173b11a16aSHongbin Zheng 7183b11a16aSHongbin Zheng VectorMap[Load] = NewLoad; 7193b11a16aSHongbin Zheng } 7203b11a16aSHongbin Zheng 721be9c9117SJohannes Doerfert void VectorBlockGenerator::copyUnaryInst(ScopStmt &Stmt, 722be9c9117SJohannes Doerfert const UnaryInstruction *Inst, 7233b11a16aSHongbin Zheng ValueMapT &VectorMap, 7243b11a16aSHongbin Zheng VectorValueMapT &ScalarMaps) { 7253b11a16aSHongbin Zheng int VectorWidth = getVectorWidth(); 726be9c9117SJohannes Doerfert Value *NewOperand = getVectorValue(Stmt, Inst->getOperand(0), VectorMap, 727be9c9117SJohannes Doerfert ScalarMaps, getLoopForInst(Inst)); 7283b11a16aSHongbin Zheng 7293b11a16aSHongbin Zheng assert(isa<CastInst>(Inst) && "Can not generate vector code for instruction"); 7303b11a16aSHongbin Zheng 7313b11a16aSHongbin Zheng const CastInst *Cast = dyn_cast<CastInst>(Inst); 7323b11a16aSHongbin Zheng VectorType *DestType = VectorType::get(Inst->getType(), VectorWidth); 7333b11a16aSHongbin Zheng VectorMap[Inst] = Builder.CreateCast(Cast->getOpcode(), NewOperand, DestType); 7343b11a16aSHongbin Zheng } 7353b11a16aSHongbin Zheng 736be9c9117SJohannes Doerfert void VectorBlockGenerator::copyBinaryInst(ScopStmt &Stmt, 737be9c9117SJohannes Doerfert const BinaryOperator *Inst, 7383b11a16aSHongbin Zheng ValueMapT &VectorMap, 7393b11a16aSHongbin Zheng VectorValueMapT &ScalarMaps) { 740369430ffSTobias Grosser Loop *L = getLoopForInst(Inst); 7413b11a16aSHongbin Zheng Value *OpZero = Inst->getOperand(0); 7423b11a16aSHongbin Zheng Value *OpOne = Inst->getOperand(1); 7433b11a16aSHongbin Zheng 7443b11a16aSHongbin Zheng Value *NewOpZero, *NewOpOne; 745be9c9117SJohannes Doerfert NewOpZero = getVectorValue(Stmt, OpZero, VectorMap, ScalarMaps, L); 746be9c9117SJohannes Doerfert NewOpOne = getVectorValue(Stmt, OpOne, VectorMap, ScalarMaps, L); 7473b11a16aSHongbin Zheng 7481bb59b0dSTobias Grosser Value *NewInst = Builder.CreateBinOp(Inst->getOpcode(), NewOpZero, NewOpOne, 7493b11a16aSHongbin Zheng Inst->getName() + "p_vec"); 7503b11a16aSHongbin Zheng VectorMap[Inst] = NewInst; 7513b11a16aSHongbin Zheng } 7523b11a16aSHongbin Zheng 7532d1ed0bfSTobias Grosser void VectorBlockGenerator::copyStore( 7542d1ed0bfSTobias Grosser ScopStmt &Stmt, const StoreInst *Store, ValueMapT &VectorMap, 7552d1ed0bfSTobias Grosser VectorValueMapT &ScalarMaps, __isl_keep isl_id_to_ast_expr *NewAccesses) { 756be9c9117SJohannes Doerfert const MemoryAccess &Access = Stmt.getAccessFor(Store); 7573b11a16aSHongbin Zheng 7583b11a16aSHongbin Zheng const Value *Pointer = Store->getPointerOperand(); 759be9c9117SJohannes Doerfert Value *Vector = getVectorValue(Stmt, Store->getValueOperand(), VectorMap, 760369430ffSTobias Grosser ScalarMaps, getLoopForInst(Store)); 7613b11a16aSHongbin Zheng 76250fd7010STobias Grosser // Make sure we have scalar values available to access the pointer to 76350fd7010STobias Grosser // the data location. 76450fd7010STobias Grosser extractScalarValues(Store, VectorMap, ScalarMaps); 76550fd7010STobias Grosser 766a00a0291SSebastian Pop if (Access.isStrideOne(isl_map_copy(Schedule))) { 7671947f863SJohannes Doerfert Type *VectorPtrType = getVectorPtrTy(Pointer, getVectorWidth()); 7682d1ed0bfSTobias Grosser Value *NewPointer = 7692d1ed0bfSTobias Grosser generateLocationAccessed(Stmt, Store, Pointer, ScalarMaps[0], 7702d1ed0bfSTobias Grosser GlobalMaps[0], VLTS[0], NewAccesses); 7713b11a16aSHongbin Zheng 772c14582f2STobias Grosser Value *VectorPtr = 773c14582f2STobias Grosser Builder.CreateBitCast(NewPointer, VectorPtrType, "vector_ptr"); 7743b11a16aSHongbin Zheng StoreInst *Store = Builder.CreateStore(Vector, VectorPtr); 7753b11a16aSHongbin Zheng 7763b11a16aSHongbin Zheng if (!Aligned) 7773b11a16aSHongbin Zheng Store->setAlignment(8); 7783b11a16aSHongbin Zheng } else { 7793b11a16aSHongbin Zheng for (unsigned i = 0; i < ScalarMaps.size(); i++) { 7801bb59b0dSTobias Grosser Value *Scalar = Builder.CreateExtractElement(Vector, Builder.getInt32(i)); 7812d1ed0bfSTobias Grosser Value *NewPointer = 7822d1ed0bfSTobias Grosser generateLocationAccessed(Stmt, Store, Pointer, ScalarMaps[i], 7832d1ed0bfSTobias Grosser GlobalMaps[i], VLTS[i], NewAccesses); 7843b11a16aSHongbin Zheng Builder.CreateStore(Scalar, NewPointer); 7853b11a16aSHongbin Zheng } 7863b11a16aSHongbin Zheng } 7873b11a16aSHongbin Zheng } 7883b11a16aSHongbin Zheng 7893b11a16aSHongbin Zheng bool VectorBlockGenerator::hasVectorOperands(const Instruction *Inst, 7903b11a16aSHongbin Zheng ValueMapT &VectorMap) { 79191f5b262STobias Grosser for (Value *Operand : Inst->operands()) 79291f5b262STobias Grosser if (VectorMap.count(Operand)) 7933b11a16aSHongbin Zheng return true; 7943b11a16aSHongbin Zheng return false; 7953b11a16aSHongbin Zheng } 7963b11a16aSHongbin Zheng 7973b11a16aSHongbin Zheng bool VectorBlockGenerator::extractScalarValues(const Instruction *Inst, 7983b11a16aSHongbin Zheng ValueMapT &VectorMap, 7993b11a16aSHongbin Zheng VectorValueMapT &ScalarMaps) { 8003b11a16aSHongbin Zheng bool HasVectorOperand = false; 8013b11a16aSHongbin Zheng int VectorWidth = getVectorWidth(); 8023b11a16aSHongbin Zheng 80391f5b262STobias Grosser for (Value *Operand : Inst->operands()) { 80491f5b262STobias Grosser ValueMapT::iterator VecOp = VectorMap.find(Operand); 8053b11a16aSHongbin Zheng 8063b11a16aSHongbin Zheng if (VecOp == VectorMap.end()) 8073b11a16aSHongbin Zheng continue; 8083b11a16aSHongbin Zheng 8093b11a16aSHongbin Zheng HasVectorOperand = true; 8103b11a16aSHongbin Zheng Value *NewVector = VecOp->second; 8113b11a16aSHongbin Zheng 8123b11a16aSHongbin Zheng for (int i = 0; i < VectorWidth; ++i) { 8133b11a16aSHongbin Zheng ValueMapT &SM = ScalarMaps[i]; 8143b11a16aSHongbin Zheng 8153b11a16aSHongbin Zheng // If there is one scalar extracted, all scalar elements should have 8163b11a16aSHongbin Zheng // already been extracted by the code here. So no need to check for the 8173b11a16aSHongbin Zheng // existance of all of them. 81891f5b262STobias Grosser if (SM.count(Operand)) 8193b11a16aSHongbin Zheng break; 8203b11a16aSHongbin Zheng 82191f5b262STobias Grosser SM[Operand] = 82291f5b262STobias Grosser Builder.CreateExtractElement(NewVector, Builder.getInt32(i)); 8233b11a16aSHongbin Zheng } 8243b11a16aSHongbin Zheng } 8253b11a16aSHongbin Zheng 8263b11a16aSHongbin Zheng return HasVectorOperand; 8273b11a16aSHongbin Zheng } 8283b11a16aSHongbin Zheng 8292d1ed0bfSTobias Grosser void VectorBlockGenerator::copyInstScalarized( 8302d1ed0bfSTobias Grosser ScopStmt &Stmt, const Instruction *Inst, ValueMapT &VectorMap, 8312d1ed0bfSTobias Grosser VectorValueMapT &ScalarMaps, __isl_keep isl_id_to_ast_expr *NewAccesses) { 8323b11a16aSHongbin Zheng bool HasVectorOperand; 8333b11a16aSHongbin Zheng int VectorWidth = getVectorWidth(); 8343b11a16aSHongbin Zheng 8353b11a16aSHongbin Zheng HasVectorOperand = extractScalarValues(Inst, VectorMap, ScalarMaps); 8363b11a16aSHongbin Zheng 8373b11a16aSHongbin Zheng for (int VectorLane = 0; VectorLane < getVectorWidth(); VectorLane++) 838be9c9117SJohannes Doerfert BlockGenerator::copyInstruction(Stmt, Inst, ScalarMaps[VectorLane], 8392d1ed0bfSTobias Grosser GlobalMaps[VectorLane], VLTS[VectorLane], 8402d1ed0bfSTobias Grosser NewAccesses); 8413b11a16aSHongbin Zheng 8423b11a16aSHongbin Zheng if (!VectorType::isValidElementType(Inst->getType()) || !HasVectorOperand) 8433b11a16aSHongbin Zheng return; 8443b11a16aSHongbin Zheng 8453b11a16aSHongbin Zheng // Make the result available as vector value. 8463b11a16aSHongbin Zheng VectorType *VectorType = VectorType::get(Inst->getType(), VectorWidth); 8473b11a16aSHongbin Zheng Value *Vector = UndefValue::get(VectorType); 8483b11a16aSHongbin Zheng 8493b11a16aSHongbin Zheng for (int i = 0; i < VectorWidth; i++) 8503b11a16aSHongbin Zheng Vector = Builder.CreateInsertElement(Vector, ScalarMaps[i][Inst], 8513b11a16aSHongbin Zheng Builder.getInt32(i)); 8523b11a16aSHongbin Zheng 8533b11a16aSHongbin Zheng VectorMap[Inst] = Vector; 8543b11a16aSHongbin Zheng } 8553b11a16aSHongbin Zheng 856c14582f2STobias Grosser int VectorBlockGenerator::getVectorWidth() { return GlobalMaps.size(); } 8573b11a16aSHongbin Zheng 8582d1ed0bfSTobias Grosser void VectorBlockGenerator::copyInstruction( 8592d1ed0bfSTobias Grosser ScopStmt &Stmt, const Instruction *Inst, ValueMapT &VectorMap, 8602d1ed0bfSTobias Grosser VectorValueMapT &ScalarMaps, __isl_keep isl_id_to_ast_expr *NewAccesses) { 8613b11a16aSHongbin Zheng // Terminator instructions control the control flow. They are explicitly 8623b11a16aSHongbin Zheng // expressed in the clast and do not need to be copied. 8633b11a16aSHongbin Zheng if (Inst->isTerminator()) 8643b11a16aSHongbin Zheng return; 8653b11a16aSHongbin Zheng 8661ef52333SJohannes Doerfert if (canSynthesize(Inst, &LI, &SE, &Stmt.getParent()->getRegion())) 867e71c6ab5STobias Grosser return; 868e71c6ab5STobias Grosser 8693b11a16aSHongbin Zheng if (const LoadInst *Load = dyn_cast<LoadInst>(Inst)) { 8702d1ed0bfSTobias Grosser generateLoad(Stmt, Load, VectorMap, ScalarMaps, NewAccesses); 8713b11a16aSHongbin Zheng return; 8723b11a16aSHongbin Zheng } 8733b11a16aSHongbin Zheng 8743b11a16aSHongbin Zheng if (hasVectorOperands(Inst, VectorMap)) { 8753b11a16aSHongbin Zheng if (const StoreInst *Store = dyn_cast<StoreInst>(Inst)) { 8762d1ed0bfSTobias Grosser copyStore(Stmt, Store, VectorMap, ScalarMaps, NewAccesses); 8773b11a16aSHongbin Zheng return; 8783b11a16aSHongbin Zheng } 8793b11a16aSHongbin Zheng 8803b11a16aSHongbin Zheng if (const UnaryInstruction *Unary = dyn_cast<UnaryInstruction>(Inst)) { 881be9c9117SJohannes Doerfert copyUnaryInst(Stmt, Unary, VectorMap, ScalarMaps); 8823b11a16aSHongbin Zheng return; 8833b11a16aSHongbin Zheng } 8843b11a16aSHongbin Zheng 8853b11a16aSHongbin Zheng if (const BinaryOperator *Binary = dyn_cast<BinaryOperator>(Inst)) { 886be9c9117SJohannes Doerfert copyBinaryInst(Stmt, Binary, VectorMap, ScalarMaps); 8873b11a16aSHongbin Zheng return; 8883b11a16aSHongbin Zheng } 8893b11a16aSHongbin Zheng 8903b11a16aSHongbin Zheng // Falltrough: We generate scalar instructions, if we don't know how to 8913b11a16aSHongbin Zheng // generate vector code. 8923b11a16aSHongbin Zheng } 8933b11a16aSHongbin Zheng 8942d1ed0bfSTobias Grosser copyInstScalarized(Stmt, Inst, VectorMap, ScalarMaps, NewAccesses); 8953b11a16aSHongbin Zheng } 8963b11a16aSHongbin Zheng 8972d1ed0bfSTobias Grosser void VectorBlockGenerator::copyStmt( 8982d1ed0bfSTobias Grosser ScopStmt &Stmt, __isl_keep isl_id_to_ast_expr *NewAccesses) { 899275a1756SJohannes Doerfert assert(Stmt.isBlockStmt() && "TODO: Only block statements can be copied by " 900275a1756SJohannes Doerfert "the vector block generator"); 901275a1756SJohannes Doerfert 902be9c9117SJohannes Doerfert BasicBlock *BB = Stmt.getBasicBlock(); 903c14582f2STobias Grosser BasicBlock *CopyBB = 904b4f08eb6SJohannes Doerfert SplitBlock(Builder.GetInsertBlock(), Builder.GetInsertPoint(), &DT, &LI); 9053b11a16aSHongbin Zheng CopyBB->setName("polly.stmt." + BB->getName()); 9063b11a16aSHongbin Zheng Builder.SetInsertPoint(CopyBB->begin()); 9073b11a16aSHongbin Zheng 9083b11a16aSHongbin Zheng // Create two maps that store the mapping from the original instructions of 9093b11a16aSHongbin Zheng // the old basic block to their copies in the new basic block. Those maps 9103b11a16aSHongbin Zheng // are basic block local. 9113b11a16aSHongbin Zheng // 9123b11a16aSHongbin Zheng // As vector code generation is supported there is one map for scalar values 9133b11a16aSHongbin Zheng // and one for vector values. 9143b11a16aSHongbin Zheng // 9153b11a16aSHongbin Zheng // In case we just do scalar code generation, the vectorMap is not used and 9163b11a16aSHongbin Zheng // the scalarMap has just one dimension, which contains the mapping. 9173b11a16aSHongbin Zheng // 9183b11a16aSHongbin Zheng // In case vector code generation is done, an instruction may either appear 9193b11a16aSHongbin Zheng // in the vector map once (as it is calculating >vectorwidth< values at a 9203b11a16aSHongbin Zheng // time. Or (if the values are calculated using scalar operations), it 9213b11a16aSHongbin Zheng // appears once in every dimension of the scalarMap. 9223b11a16aSHongbin Zheng VectorValueMapT ScalarBlockMap(getVectorWidth()); 9233b11a16aSHongbin Zheng ValueMapT VectorBlockMap; 9243b11a16aSHongbin Zheng 92591f5b262STobias Grosser for (Instruction &Inst : *BB) 9262d1ed0bfSTobias Grosser copyInstruction(Stmt, &Inst, VectorBlockMap, ScalarBlockMap, NewAccesses); 9273b11a16aSHongbin Zheng } 928275a1756SJohannes Doerfert 929ecff11dcSJohannes Doerfert BasicBlock *RegionGenerator::repairDominance(BasicBlock *BB, 930ecff11dcSJohannes Doerfert BasicBlock *BBCopy) { 931514f6efaSJohannes Doerfert 932514f6efaSJohannes Doerfert BasicBlock *BBIDom = DT.getNode(BB)->getIDom()->getBlock(); 933514f6efaSJohannes Doerfert BasicBlock *BBCopyIDom = BlockMap.lookup(BBIDom); 934514f6efaSJohannes Doerfert 935514f6efaSJohannes Doerfert if (BBCopyIDom) 936514f6efaSJohannes Doerfert DT.changeImmediateDominator(BBCopy, BBCopyIDom); 937514f6efaSJohannes Doerfert 938514f6efaSJohannes Doerfert return BBCopyIDom; 939514f6efaSJohannes Doerfert } 940514f6efaSJohannes Doerfert 941275a1756SJohannes Doerfert void RegionGenerator::copyStmt(ScopStmt &Stmt, ValueMapT &GlobalMap, 9422d1ed0bfSTobias Grosser LoopToScevMapT <S, 9432d1ed0bfSTobias Grosser isl_id_to_ast_expr *IdToAstExp) { 944275a1756SJohannes Doerfert assert(Stmt.isRegionStmt() && 945d3f21833STobias Grosser "Only region statements can be copied by the region generator"); 946275a1756SJohannes Doerfert 947ecff11dcSJohannes Doerfert // Forget all old mappings. 948ecff11dcSJohannes Doerfert BlockMap.clear(); 949ecff11dcSJohannes Doerfert RegionMaps.clear(); 950ecff11dcSJohannes Doerfert IncompletePHINodeMap.clear(); 951ecff11dcSJohannes Doerfert 952275a1756SJohannes Doerfert // The region represented by the statement. 953275a1756SJohannes Doerfert Region *R = Stmt.getRegion(); 954275a1756SJohannes Doerfert 955ecff11dcSJohannes Doerfert // Create a dedicated entry for the region where we can reload all demoted 956ecff11dcSJohannes Doerfert // inputs. 957ecff11dcSJohannes Doerfert BasicBlock *EntryBB = R->getEntry(); 958ecff11dcSJohannes Doerfert BasicBlock *EntryBBCopy = 959ecff11dcSJohannes Doerfert SplitBlock(Builder.GetInsertBlock(), Builder.GetInsertPoint(), &DT, &LI); 960ecff11dcSJohannes Doerfert EntryBBCopy->setName("polly.stmt." + EntryBB->getName() + ".entry"); 961ecff11dcSJohannes Doerfert Builder.SetInsertPoint(EntryBBCopy->begin()); 962514f6efaSJohannes Doerfert 963ecff11dcSJohannes Doerfert for (auto PI = pred_begin(EntryBB), PE = pred_end(EntryBB); PI != PE; ++PI) 964ecff11dcSJohannes Doerfert if (!R->contains(*PI)) 965ecff11dcSJohannes Doerfert BlockMap[*PI] = EntryBBCopy; 966275a1756SJohannes Doerfert 967275a1756SJohannes Doerfert // Iterate over all blocks in the region in a breadth-first search. 968275a1756SJohannes Doerfert std::deque<BasicBlock *> Blocks; 969275a1756SJohannes Doerfert SmallPtrSet<BasicBlock *, 8> SeenBlocks; 970ecff11dcSJohannes Doerfert Blocks.push_back(EntryBB); 971ecff11dcSJohannes Doerfert SeenBlocks.insert(EntryBB); 972275a1756SJohannes Doerfert 973275a1756SJohannes Doerfert while (!Blocks.empty()) { 974275a1756SJohannes Doerfert BasicBlock *BB = Blocks.front(); 975275a1756SJohannes Doerfert Blocks.pop_front(); 976275a1756SJohannes Doerfert 977514f6efaSJohannes Doerfert // First split the block and update dominance information. 978514f6efaSJohannes Doerfert BasicBlock *BBCopy = splitBB(BB); 979ecff11dcSJohannes Doerfert BasicBlock *BBCopyIDom = repairDominance(BB, BBCopy); 980ecff11dcSJohannes Doerfert 981ecff11dcSJohannes Doerfert // In order to remap PHI nodes we store also basic block mappings. 982ecff11dcSJohannes Doerfert BlockMap[BB] = BBCopy; 983514f6efaSJohannes Doerfert 984514f6efaSJohannes Doerfert // Get the mapping for this block and initialize it with the mapping 985514f6efaSJohannes Doerfert // available at its immediate dominator (in the new region). 986514f6efaSJohannes Doerfert ValueMapT &RegionMap = RegionMaps[BBCopy]; 987514f6efaSJohannes Doerfert RegionMap = RegionMaps[BBCopyIDom]; 988514f6efaSJohannes Doerfert 989275a1756SJohannes Doerfert // Copy the block with the BlockGenerator. 9902d1ed0bfSTobias Grosser copyBB(Stmt, BB, BBCopy, RegionMap, GlobalMap, LTS, IdToAstExp); 991275a1756SJohannes Doerfert 992ecff11dcSJohannes Doerfert // In order to remap PHI nodes we store also basic block mappings. 993ecff11dcSJohannes Doerfert BlockMap[BB] = BBCopy; 994ecff11dcSJohannes Doerfert 995ecff11dcSJohannes Doerfert // Add values to incomplete PHI nodes waiting for this block to be copied. 996ecff11dcSJohannes Doerfert for (const PHINodePairTy &PHINodePair : IncompletePHINodeMap[BB]) 997ecff11dcSJohannes Doerfert addOperandToPHI(Stmt, PHINodePair.first, PHINodePair.second, BB, 998ecff11dcSJohannes Doerfert GlobalMap, LTS); 999ecff11dcSJohannes Doerfert IncompletePHINodeMap[BB].clear(); 1000ecff11dcSJohannes Doerfert 1001275a1756SJohannes Doerfert // And continue with new successors inside the region. 1002275a1756SJohannes Doerfert for (auto SI = succ_begin(BB), SE = succ_end(BB); SI != SE; SI++) 1003275a1756SJohannes Doerfert if (R->contains(*SI) && SeenBlocks.insert(*SI).second) 1004275a1756SJohannes Doerfert Blocks.push_back(*SI); 1005275a1756SJohannes Doerfert } 1006275a1756SJohannes Doerfert 1007275a1756SJohannes Doerfert // Now create a new dedicated region exit block and add it to the region map. 1008514f6efaSJohannes Doerfert BasicBlock *ExitBBCopy = 1009275a1756SJohannes Doerfert SplitBlock(Builder.GetInsertBlock(), Builder.GetInsertPoint(), &DT, &LI); 1010ecff11dcSJohannes Doerfert ExitBBCopy->setName("polly.stmt." + R->getExit()->getName() + ".exit"); 1011514f6efaSJohannes Doerfert BlockMap[R->getExit()] = ExitBBCopy; 1012514f6efaSJohannes Doerfert 1013ecff11dcSJohannes Doerfert repairDominance(R->getExit(), ExitBBCopy); 1014275a1756SJohannes Doerfert 1015275a1756SJohannes Doerfert // As the block generator doesn't handle control flow we need to add the 1016275a1756SJohannes Doerfert // region control flow by hand after all blocks have been copied. 1017275a1756SJohannes Doerfert for (BasicBlock *BB : SeenBlocks) { 1018275a1756SJohannes Doerfert 1019275a1756SJohannes Doerfert BranchInst *BI = cast<BranchInst>(BB->getTerminator()); 1020275a1756SJohannes Doerfert 1021514f6efaSJohannes Doerfert BasicBlock *BBCopy = BlockMap[BB]; 1022275a1756SJohannes Doerfert Instruction *BICopy = BBCopy->getTerminator(); 1023275a1756SJohannes Doerfert 1024514f6efaSJohannes Doerfert ValueMapT &RegionMap = RegionMaps[BBCopy]; 1025514f6efaSJohannes Doerfert RegionMap.insert(BlockMap.begin(), BlockMap.end()); 1026514f6efaSJohannes Doerfert 102745e7944bSTobias Grosser Builder.SetInsertPoint(BICopy); 1028275a1756SJohannes Doerfert copyInstScalar(Stmt, BI, RegionMap, GlobalMap, LTS); 1029275a1756SJohannes Doerfert BICopy->eraseFromParent(); 1030275a1756SJohannes Doerfert } 1031275a1756SJohannes Doerfert 1032ecff11dcSJohannes Doerfert // Add counting PHI nodes to all loops in the region that can be used as 1033ecff11dcSJohannes Doerfert // replacement for SCEVs refering to the old loop. 1034ecff11dcSJohannes Doerfert for (BasicBlock *BB : SeenBlocks) { 1035ecff11dcSJohannes Doerfert Loop *L = LI.getLoopFor(BB); 1036ecff11dcSJohannes Doerfert if (L == nullptr || L->getHeader() != BB) 1037ecff11dcSJohannes Doerfert continue; 1038ecff11dcSJohannes Doerfert 1039ecff11dcSJohannes Doerfert BasicBlock *BBCopy = BlockMap[BB]; 1040ecff11dcSJohannes Doerfert Value *NullVal = Builder.getInt32(0); 1041ecff11dcSJohannes Doerfert PHINode *LoopPHI = 1042ecff11dcSJohannes Doerfert PHINode::Create(Builder.getInt32Ty(), 2, "polly.subregion.iv"); 1043ecff11dcSJohannes Doerfert Instruction *LoopPHIInc = BinaryOperator::CreateAdd( 1044ecff11dcSJohannes Doerfert LoopPHI, Builder.getInt32(1), "polly.subregion.iv.inc"); 1045ecff11dcSJohannes Doerfert LoopPHI->insertBefore(BBCopy->begin()); 1046ecff11dcSJohannes Doerfert LoopPHIInc->insertBefore(BBCopy->getTerminator()); 1047ecff11dcSJohannes Doerfert 1048ecff11dcSJohannes Doerfert for (auto *PredBB : make_range(pred_begin(BB), pred_end(BB))) { 1049ecff11dcSJohannes Doerfert if (!R->contains(PredBB)) 1050ecff11dcSJohannes Doerfert continue; 1051ecff11dcSJohannes Doerfert if (L->contains(PredBB)) 1052ecff11dcSJohannes Doerfert LoopPHI->addIncoming(LoopPHIInc, BlockMap[PredBB]); 1053ecff11dcSJohannes Doerfert else 1054ecff11dcSJohannes Doerfert LoopPHI->addIncoming(NullVal, BlockMap[PredBB]); 1055ecff11dcSJohannes Doerfert } 1056ecff11dcSJohannes Doerfert 1057ecff11dcSJohannes Doerfert for (auto *PredBBCopy : make_range(pred_begin(BBCopy), pred_end(BBCopy))) 1058ecff11dcSJohannes Doerfert if (LoopPHI->getBasicBlockIndex(PredBBCopy) < 0) 1059ecff11dcSJohannes Doerfert LoopPHI->addIncoming(NullVal, PredBBCopy); 1060ecff11dcSJohannes Doerfert 1061ecff11dcSJohannes Doerfert LTS[L] = SE.getUnknown(LoopPHI); 1062ecff11dcSJohannes Doerfert } 1063ecff11dcSJohannes Doerfert 1064ecff11dcSJohannes Doerfert // Add all mappings from the region to the global map so outside uses will use 1065ecff11dcSJohannes Doerfert // the copied instructions. 1066ecff11dcSJohannes Doerfert for (auto &BBMap : RegionMaps) 1067ecff11dcSJohannes Doerfert GlobalMap.insert(BBMap.second.begin(), BBMap.second.end()); 1068ecff11dcSJohannes Doerfert 1069275a1756SJohannes Doerfert // Reset the old insert point for the build. 1070514f6efaSJohannes Doerfert Builder.SetInsertPoint(ExitBBCopy->begin()); 1071275a1756SJohannes Doerfert } 1072ecff11dcSJohannes Doerfert 1073ecff11dcSJohannes Doerfert void RegionGenerator::generateScalarLoads(ScopStmt &Stmt, 1074ecff11dcSJohannes Doerfert const Instruction *Inst, 1075ecff11dcSJohannes Doerfert ValueMapT &BBMap) { 1076ecff11dcSJohannes Doerfert 1077ecff11dcSJohannes Doerfert // Inside a non-affine region PHI nodes are copied not demoted. Once the 1078ecff11dcSJohannes Doerfert // phi is copied it will reload all inputs from outside the region, hence 1079ecff11dcSJohannes Doerfert // we do not need to generate code for the read access of the operands of a 1080ecff11dcSJohannes Doerfert // PHI. 1081ecff11dcSJohannes Doerfert if (isa<PHINode>(Inst)) 1082ecff11dcSJohannes Doerfert return; 1083ecff11dcSJohannes Doerfert 1084ecff11dcSJohannes Doerfert return BlockGenerator::generateScalarLoads(Stmt, Inst, BBMap); 1085ecff11dcSJohannes Doerfert } 1086ecff11dcSJohannes Doerfert 1087ecff11dcSJohannes Doerfert void RegionGenerator::generateScalarStores(ScopStmt &Stmt, BasicBlock *BB, 1088ecff11dcSJohannes Doerfert ValueMapT &BBMap, 1089ecff11dcSJohannes Doerfert ValueMapT &GlobalMap) { 1090ecff11dcSJohannes Doerfert const Region &R = Stmt.getParent()->getRegion(); 1091ecff11dcSJohannes Doerfert 109275296901STobias Grosser assert(Stmt.getRegion() && 109375296901STobias Grosser "Block statements need to use the generateScalarStores() " 1094ecff11dcSJohannes Doerfert "function in the BlockGenerator"); 1095ecff11dcSJohannes Doerfert 1096ecff11dcSJohannes Doerfert for (MemoryAccess *MA : Stmt) { 1097ecff11dcSJohannes Doerfert 1098ecff11dcSJohannes Doerfert if (!MA->isScalar() || MA->isRead()) 1099ecff11dcSJohannes Doerfert continue; 1100ecff11dcSJohannes Doerfert 1101ecff11dcSJohannes Doerfert Instruction *ScalarInst = MA->getAccessInstruction(); 1102ecff11dcSJohannes Doerfert 110362139132STobias Grosser // Only generate accesses that belong to this basic block. 110462139132STobias Grosser if (ScalarInst->getParent() != BB) 110562139132STobias Grosser continue; 110662139132STobias Grosser 1107d86f2157SJohannes Doerfert Value *Val = MA->getAccessValue(); 1108ecff11dcSJohannes Doerfert 1109f8d55f7eSTobias Grosser auto Address = getOrCreateAlloca(*MA); 1110ecff11dcSJohannes Doerfert 111192245228STobias Grosser Val = getNewScalarValue(Val, R, ScalarMap, BBMap, GlobalMap); 1112f8d55f7eSTobias Grosser Builder.CreateStore(Val, Address); 1113ecff11dcSJohannes Doerfert } 1114ecff11dcSJohannes Doerfert } 1115ecff11dcSJohannes Doerfert 1116ecff11dcSJohannes Doerfert void RegionGenerator::addOperandToPHI(ScopStmt &Stmt, const PHINode *PHI, 1117ecff11dcSJohannes Doerfert PHINode *PHICopy, BasicBlock *IncomingBB, 1118ecff11dcSJohannes Doerfert ValueMapT &GlobalMap, 1119ecff11dcSJohannes Doerfert LoopToScevMapT <S) { 1120ecff11dcSJohannes Doerfert Region *StmtR = Stmt.getRegion(); 1121ecff11dcSJohannes Doerfert 1122ecff11dcSJohannes Doerfert // If the incoming block was not yet copied mark this PHI as incomplete. 1123ecff11dcSJohannes Doerfert // Once the block will be copied the incoming value will be added. 1124ecff11dcSJohannes Doerfert BasicBlock *BBCopy = BlockMap[IncomingBB]; 1125ecff11dcSJohannes Doerfert if (!BBCopy) { 1126ecff11dcSJohannes Doerfert assert(StmtR->contains(IncomingBB) && 1127ecff11dcSJohannes Doerfert "Bad incoming block for PHI in non-affine region"); 1128ecff11dcSJohannes Doerfert IncompletePHINodeMap[IncomingBB].push_back(std::make_pair(PHI, PHICopy)); 1129ecff11dcSJohannes Doerfert return; 1130ecff11dcSJohannes Doerfert } 1131ecff11dcSJohannes Doerfert 1132ecff11dcSJohannes Doerfert Value *OpCopy = nullptr; 1133ecff11dcSJohannes Doerfert if (StmtR->contains(IncomingBB)) { 1134ecff11dcSJohannes Doerfert assert(RegionMaps.count(BBCopy) && 1135ecff11dcSJohannes Doerfert "Incoming PHI block did not have a BBMap"); 1136ecff11dcSJohannes Doerfert ValueMapT &BBCopyMap = RegionMaps[BBCopy]; 1137ecff11dcSJohannes Doerfert 1138ecff11dcSJohannes Doerfert Value *Op = PHI->getIncomingValueForBlock(IncomingBB); 1139ecff11dcSJohannes Doerfert OpCopy = 1140ecff11dcSJohannes Doerfert getNewValue(Stmt, Op, BBCopyMap, GlobalMap, LTS, getLoopForInst(PHI)); 1141ecff11dcSJohannes Doerfert } else { 1142ecff11dcSJohannes Doerfert 1143ecff11dcSJohannes Doerfert if (PHICopy->getBasicBlockIndex(BBCopy) >= 0) 1144ecff11dcSJohannes Doerfert return; 1145ecff11dcSJohannes Doerfert 1146b79a67dfSTobias Grosser AllocaInst *PHIOpAddr = getOrCreatePHIAlloca(const_cast<PHINode *>(PHI)); 1147ecff11dcSJohannes Doerfert OpCopy = new LoadInst(PHIOpAddr, PHIOpAddr->getName() + ".reload", 1148ecff11dcSJohannes Doerfert BlockMap[IncomingBB]->getTerminator()); 1149ecff11dcSJohannes Doerfert } 1150ecff11dcSJohannes Doerfert 1151ecff11dcSJohannes Doerfert assert(OpCopy && "Incoming PHI value was not copied properly"); 1152ecff11dcSJohannes Doerfert assert(BBCopy && "Incoming PHI block was not copied properly"); 1153ecff11dcSJohannes Doerfert PHICopy->addIncoming(OpCopy, BBCopy); 1154ecff11dcSJohannes Doerfert } 1155ecff11dcSJohannes Doerfert 1156ecff11dcSJohannes Doerfert Value *RegionGenerator::copyPHIInstruction(ScopStmt &Stmt, const PHINode *PHI, 1157ecff11dcSJohannes Doerfert ValueMapT &BBMap, 1158ecff11dcSJohannes Doerfert ValueMapT &GlobalMap, 1159ecff11dcSJohannes Doerfert LoopToScevMapT <S) { 1160ecff11dcSJohannes Doerfert unsigned NumIncoming = PHI->getNumIncomingValues(); 1161ecff11dcSJohannes Doerfert PHINode *PHICopy = 1162ecff11dcSJohannes Doerfert Builder.CreatePHI(PHI->getType(), NumIncoming, "polly." + PHI->getName()); 1163ecff11dcSJohannes Doerfert PHICopy->moveBefore(PHICopy->getParent()->getFirstNonPHI()); 1164ecff11dcSJohannes Doerfert BBMap[PHI] = PHICopy; 1165ecff11dcSJohannes Doerfert 1166ecff11dcSJohannes Doerfert for (unsigned u = 0; u < NumIncoming; u++) 1167ecff11dcSJohannes Doerfert addOperandToPHI(Stmt, PHI, PHICopy, PHI->getIncomingBlock(u), GlobalMap, 1168ecff11dcSJohannes Doerfert LTS); 1169ecff11dcSJohannes Doerfert return PHICopy; 1170ecff11dcSJohannes Doerfert } 1171