1 //===-- GlobalMerge.cpp - Internal globals merging -----------------------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // This pass merges globals with internal linkage into one. This way all the 10 // globals which were merged into a biggest one can be addressed using offsets 11 // from the same base pointer (no need for separate base pointer for each of the 12 // global). Such a transformation can significantly reduce the register pressure 13 // when many globals are involved. 14 // 15 // For example, consider the code which touches several global variables at 16 // once: 17 // 18 // static int foo[N], bar[N], baz[N]; 19 // 20 // for (i = 0; i < N; ++i) { 21 // foo[i] = bar[i] * baz[i]; 22 // } 23 // 24 // On ARM the addresses of 3 arrays should be kept in the registers, thus 25 // this code has quite large register pressure (loop body): 26 // 27 // ldr r1, [r5], #4 28 // ldr r2, [r6], #4 29 // mul r1, r2, r1 30 // str r1, [r0], #4 31 // 32 // Pass converts the code to something like: 33 // 34 // static struct { 35 // int foo[N]; 36 // int bar[N]; 37 // int baz[N]; 38 // } merged; 39 // 40 // for (i = 0; i < N; ++i) { 41 // merged.foo[i] = merged.bar[i] * merged.baz[i]; 42 // } 43 // 44 // and in ARM code this becomes: 45 // 46 // ldr r0, [r5, #40] 47 // ldr r1, [r5, #80] 48 // mul r0, r1, r0 49 // str r0, [r5], #4 50 // 51 // note that we saved 2 registers here almostly "for free". 52 // ===---------------------------------------------------------------------===// 53 54 #include "llvm/Transforms/Scalar.h" 55 #include "llvm/ADT/SmallPtrSet.h" 56 #include "llvm/ADT/Statistic.h" 57 #include "llvm/IR/Attributes.h" 58 #include "llvm/IR/Constants.h" 59 #include "llvm/IR/DataLayout.h" 60 #include "llvm/IR/DerivedTypes.h" 61 #include "llvm/IR/Function.h" 62 #include "llvm/IR/GlobalVariable.h" 63 #include "llvm/IR/Instructions.h" 64 #include "llvm/IR/Intrinsics.h" 65 #include "llvm/IR/Module.h" 66 #include "llvm/Pass.h" 67 #include "llvm/CodeGen/Passes.h" 68 #include "llvm/Support/CommandLine.h" 69 #include "llvm/Target/TargetLowering.h" 70 #include "llvm/Target/TargetLoweringObjectFile.h" 71 using namespace llvm; 72 73 #define DEBUG_TYPE "global-merge" 74 75 static cl::opt<bool> 76 EnableGlobalMerge("enable-global-merge", cl::Hidden, 77 cl::desc("Enable global merge pass"), 78 cl::init(true)); 79 80 static cl::opt<bool> 81 EnableGlobalMergeOnConst("global-merge-on-const", cl::Hidden, 82 cl::desc("Enable global merge pass on constants"), 83 cl::init(false)); 84 85 // FIXME: this could be a transitional option, and we probably need to remove 86 // it if only we are sure this optimization could always benefit all targets. 87 static cl::opt<bool> 88 EnableGlobalMergeOnExternal("global-merge-on-external", cl::Hidden, 89 cl::desc("Enable global merge pass on external linkage"), 90 cl::init(false)); 91 92 STATISTIC(NumMerged , "Number of globals merged"); 93 namespace { 94 class GlobalMerge : public FunctionPass { 95 const TargetMachine *TM; 96 97 bool doMerge(SmallVectorImpl<GlobalVariable*> &Globals, 98 Module &M, bool isConst, unsigned AddrSpace) const; 99 100 /// \brief Check if the given variable has been identified as must keep 101 /// \pre setMustKeepGlobalVariables must have been called on the Module that 102 /// contains GV 103 bool isMustKeepGlobalVariable(const GlobalVariable *GV) const { 104 return MustKeepGlobalVariables.count(GV); 105 } 106 107 /// Collect every variables marked as "used" or used in a landing pad 108 /// instruction for this Module. 109 void setMustKeepGlobalVariables(Module &M); 110 111 /// Collect every variables marked as "used" 112 void collectUsedGlobalVariables(Module &M); 113 114 /// Keep track of the GlobalVariable that must not be merged away 115 SmallPtrSet<const GlobalVariable *, 16> MustKeepGlobalVariables; 116 117 public: 118 static char ID; // Pass identification, replacement for typeid. 119 explicit GlobalMerge(const TargetMachine *TM = nullptr) 120 : FunctionPass(ID), TM(TM) { 121 initializeGlobalMergePass(*PassRegistry::getPassRegistry()); 122 } 123 124 bool doInitialization(Module &M) override; 125 bool runOnFunction(Function &F) override; 126 bool doFinalization(Module &M) override; 127 128 const char *getPassName() const override { 129 return "Merge internal globals"; 130 } 131 132 void getAnalysisUsage(AnalysisUsage &AU) const override { 133 AU.setPreservesCFG(); 134 FunctionPass::getAnalysisUsage(AU); 135 } 136 }; 137 } // end anonymous namespace 138 139 char GlobalMerge::ID = 0; 140 INITIALIZE_TM_PASS(GlobalMerge, "global-merge", "Merge global variables", 141 false, false) 142 143 bool GlobalMerge::doMerge(SmallVectorImpl<GlobalVariable*> &Globals, 144 Module &M, bool isConst, unsigned AddrSpace) const { 145 const TargetLowering *TLI = TM->getTargetLowering(); 146 const DataLayout *DL = TLI->getDataLayout(); 147 148 // FIXME: Infer the maximum possible offset depending on the actual users 149 // (these max offsets are different for the users inside Thumb or ARM 150 // functions) 151 unsigned MaxOffset = TLI->getMaximalGlobalOffset(); 152 153 // FIXME: Find better heuristics 154 std::stable_sort(Globals.begin(), Globals.end(), 155 [DL](const GlobalVariable *GV1, const GlobalVariable *GV2) { 156 Type *Ty1 = cast<PointerType>(GV1->getType())->getElementType(); 157 Type *Ty2 = cast<PointerType>(GV2->getType())->getElementType(); 158 159 return (DL->getTypeAllocSize(Ty1) < DL->getTypeAllocSize(Ty2)); 160 }); 161 162 Type *Int32Ty = Type::getInt32Ty(M.getContext()); 163 164 assert(Globals.size() > 1); 165 166 // FIXME: This simple solution merges globals all together as maximum as 167 // possible. However, with this solution it would be hard to remove dead 168 // global symbols at link-time. An alternative solution could be checking 169 // global symbols references function by function, and make the symbols 170 // being referred in the same function merged and we would probably need 171 // to introduce heuristic algorithm to solve the merge conflict from 172 // different functions. 173 for (size_t i = 0, e = Globals.size(); i != e; ) { 174 size_t j = 0; 175 uint64_t MergedSize = 0; 176 std::vector<Type*> Tys; 177 std::vector<Constant*> Inits; 178 179 bool HasExternal = false; 180 GlobalVariable *TheFirstExternal = 0; 181 for (j = i; j != e; ++j) { 182 Type *Ty = Globals[j]->getType()->getElementType(); 183 MergedSize += DL->getTypeAllocSize(Ty); 184 if (MergedSize > MaxOffset) { 185 break; 186 } 187 Tys.push_back(Ty); 188 Inits.push_back(Globals[j]->getInitializer()); 189 190 if (Globals[j]->hasExternalLinkage() && !HasExternal) { 191 HasExternal = true; 192 TheFirstExternal = Globals[j]; 193 } 194 } 195 196 // If merged variables doesn't have external linkage, we needn't to expose 197 // the symbol after merging. 198 GlobalValue::LinkageTypes Linkage = HasExternal 199 ? GlobalValue::ExternalLinkage 200 : GlobalValue::InternalLinkage; 201 202 // If merged variables have external linkage, we use symbol name of the 203 // first variable merged as the suffix of global symbol name. This would 204 // be able to avoid the link-time naming conflict for globalm symbols. 205 Twine MergedGVName = HasExternal 206 ? "_MergedGlobals_" + TheFirstExternal->getName() 207 : "_MergedGlobals"; 208 209 StructType *MergedTy = StructType::get(M.getContext(), Tys); 210 Constant *MergedInit = ConstantStruct::get(MergedTy, Inits); 211 212 GlobalVariable *MergedGV = new GlobalVariable( 213 M, MergedTy, isConst, Linkage, MergedInit, MergedGVName, nullptr, 214 GlobalVariable::NotThreadLocal, AddrSpace); 215 216 for (size_t k = i; k < j; ++k) { 217 GlobalValue::LinkageTypes Linkage = Globals[k]->getLinkage(); 218 std::string Name = Globals[k]->getName(); 219 220 Constant *Idx[2] = { 221 ConstantInt::get(Int32Ty, 0), 222 ConstantInt::get(Int32Ty, k-i) 223 }; 224 Constant *GEP = ConstantExpr::getInBoundsGetElementPtr(MergedGV, Idx); 225 Globals[k]->replaceAllUsesWith(GEP); 226 Globals[k]->eraseFromParent(); 227 228 if (Linkage != GlobalValue::InternalLinkage) { 229 // Generate a new alias... 230 auto *PTy = cast<PointerType>(GEP->getType()); 231 GlobalAlias::create(PTy->getElementType(), PTy->getAddressSpace(), 232 Linkage, Name, GEP, &M); 233 } 234 235 NumMerged++; 236 } 237 i = j; 238 } 239 240 return true; 241 } 242 243 void GlobalMerge::collectUsedGlobalVariables(Module &M) { 244 // Extract global variables from llvm.used array 245 const GlobalVariable *GV = M.getGlobalVariable("llvm.used"); 246 if (!GV || !GV->hasInitializer()) return; 247 248 // Should be an array of 'i8*'. 249 const ConstantArray *InitList = cast<ConstantArray>(GV->getInitializer()); 250 251 for (unsigned i = 0, e = InitList->getNumOperands(); i != e; ++i) 252 if (const GlobalVariable *G = 253 dyn_cast<GlobalVariable>(InitList->getOperand(i)->stripPointerCasts())) 254 MustKeepGlobalVariables.insert(G); 255 } 256 257 void GlobalMerge::setMustKeepGlobalVariables(Module &M) { 258 collectUsedGlobalVariables(M); 259 260 for (Module::iterator IFn = M.begin(), IEndFn = M.end(); IFn != IEndFn; 261 ++IFn) { 262 for (Function::iterator IBB = IFn->begin(), IEndBB = IFn->end(); 263 IBB != IEndBB; ++IBB) { 264 // Follow the invoke link to find the landing pad instruction 265 const InvokeInst *II = dyn_cast<InvokeInst>(IBB->getTerminator()); 266 if (!II) continue; 267 268 const LandingPadInst *LPInst = II->getUnwindDest()->getLandingPadInst(); 269 // Look for globals in the clauses of the landing pad instruction 270 for (unsigned Idx = 0, NumClauses = LPInst->getNumClauses(); 271 Idx != NumClauses; ++Idx) 272 if (const GlobalVariable *GV = 273 dyn_cast<GlobalVariable>(LPInst->getClause(Idx) 274 ->stripPointerCasts())) 275 MustKeepGlobalVariables.insert(GV); 276 } 277 } 278 } 279 280 bool GlobalMerge::doInitialization(Module &M) { 281 if (!EnableGlobalMerge) 282 return false; 283 284 DenseMap<unsigned, SmallVector<GlobalVariable*, 16> > Globals, ConstGlobals, 285 BSSGlobals; 286 const TargetLowering *TLI = TM->getTargetLowering(); 287 const DataLayout *DL = TLI->getDataLayout(); 288 unsigned MaxOffset = TLI->getMaximalGlobalOffset(); 289 bool Changed = false; 290 setMustKeepGlobalVariables(M); 291 292 // Grab all non-const globals. 293 for (Module::global_iterator I = M.global_begin(), 294 E = M.global_end(); I != E; ++I) { 295 // Merge is safe for "normal" internal or external globals only 296 if (I->isDeclaration() || I->isThreadLocal() || I->hasSection()) 297 continue; 298 299 if (!(EnableGlobalMergeOnExternal && I->hasExternalLinkage()) && 300 !I->hasInternalLinkage()) 301 continue; 302 303 PointerType *PT = dyn_cast<PointerType>(I->getType()); 304 assert(PT && "Global variable is not a pointer!"); 305 306 unsigned AddressSpace = PT->getAddressSpace(); 307 308 // Ignore fancy-aligned globals for now. 309 unsigned Alignment = DL->getPreferredAlignment(I); 310 Type *Ty = I->getType()->getElementType(); 311 if (Alignment > DL->getABITypeAlignment(Ty)) 312 continue; 313 314 // Ignore all 'special' globals. 315 if (I->getName().startswith("llvm.") || 316 I->getName().startswith(".llvm.")) 317 continue; 318 319 // Ignore all "required" globals: 320 if (isMustKeepGlobalVariable(I)) 321 continue; 322 323 if (DL->getTypeAllocSize(Ty) < MaxOffset) { 324 if (TargetLoweringObjectFile::getKindForGlobal(I, *TM).isBSSLocal()) 325 BSSGlobals[AddressSpace].push_back(I); 326 else if (I->isConstant()) 327 ConstGlobals[AddressSpace].push_back(I); 328 else 329 Globals[AddressSpace].push_back(I); 330 } 331 } 332 333 for (DenseMap<unsigned, SmallVector<GlobalVariable*, 16> >::iterator 334 I = Globals.begin(), E = Globals.end(); I != E; ++I) 335 if (I->second.size() > 1) 336 Changed |= doMerge(I->second, M, false, I->first); 337 338 for (DenseMap<unsigned, SmallVector<GlobalVariable*, 16> >::iterator 339 I = BSSGlobals.begin(), E = BSSGlobals.end(); I != E; ++I) 340 if (I->second.size() > 1) 341 Changed |= doMerge(I->second, M, false, I->first); 342 343 if (EnableGlobalMergeOnConst) 344 for (DenseMap<unsigned, SmallVector<GlobalVariable*, 16> >::iterator 345 I = ConstGlobals.begin(), E = ConstGlobals.end(); I != E; ++I) 346 if (I->second.size() > 1) 347 Changed |= doMerge(I->second, M, true, I->first); 348 349 return Changed; 350 } 351 352 bool GlobalMerge::runOnFunction(Function &F) { 353 return false; 354 } 355 356 bool GlobalMerge::doFinalization(Module &M) { 357 MustKeepGlobalVariables.clear(); 358 return false; 359 } 360 361 Pass *llvm::createGlobalMergePass(const TargetMachine *TM) { 362 return new GlobalMerge(TM); 363 } 364