1 //===-- llvm/CodeGen/MachineModuleInfo.cpp ----------------------*- C++ -*-===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include "llvm/CodeGen/MachineModuleInfo.h" 10 #include "llvm/ADT/ArrayRef.h" 11 #include "llvm/ADT/DenseMap.h" 12 #include "llvm/ADT/PostOrderIterator.h" 13 #include "llvm/ADT/StringRef.h" 14 #include "llvm/ADT/TinyPtrVector.h" 15 #include "llvm/CodeGen/MachineFunction.h" 16 #include "llvm/CodeGen/Passes.h" 17 #include "llvm/IR/BasicBlock.h" 18 #include "llvm/IR/DerivedTypes.h" 19 #include "llvm/IR/Instructions.h" 20 #include "llvm/IR/Module.h" 21 #include "llvm/IR/Value.h" 22 #include "llvm/IR/ValueHandle.h" 23 #include "llvm/InitializePasses.h" 24 #include "llvm/MC/MCContext.h" 25 #include "llvm/MC/MCSymbol.h" 26 #include "llvm/MC/MCSymbolXCOFF.h" 27 #include "llvm/Pass.h" 28 #include "llvm/Support/Casting.h" 29 #include "llvm/Support/ErrorHandling.h" 30 #include "llvm/Target/TargetLoweringObjectFile.h" 31 #include "llvm/Target/TargetMachine.h" 32 #include <algorithm> 33 #include <cassert> 34 #include <memory> 35 #include <utility> 36 #include <vector> 37 38 using namespace llvm; 39 using namespace llvm::dwarf; 40 41 // Out of line virtual method. 42 MachineModuleInfoImpl::~MachineModuleInfoImpl() = default; 43 44 namespace llvm { 45 46 class MMIAddrLabelMapCallbackPtr final : CallbackVH { 47 MMIAddrLabelMap *Map = nullptr; 48 49 public: 50 MMIAddrLabelMapCallbackPtr() = default; 51 MMIAddrLabelMapCallbackPtr(Value *V) : CallbackVH(V) {} 52 53 void setPtr(BasicBlock *BB) { 54 ValueHandleBase::operator=(BB); 55 } 56 57 void setMap(MMIAddrLabelMap *map) { Map = map; } 58 59 void deleted() override; 60 void allUsesReplacedWith(Value *V2) override; 61 }; 62 63 class MMIAddrLabelMap { 64 MCContext &Context; 65 struct AddrLabelSymEntry { 66 /// The symbols for the label. 67 TinyPtrVector<MCSymbol *> Symbols; 68 69 Function *Fn; // The containing function of the BasicBlock. 70 unsigned Index; // The index in BBCallbacks for the BasicBlock. 71 }; 72 73 DenseMap<AssertingVH<BasicBlock>, AddrLabelSymEntry> AddrLabelSymbols; 74 75 /// Callbacks for the BasicBlock's that we have entries for. We use this so 76 /// we get notified if a block is deleted or RAUWd. 77 std::vector<MMIAddrLabelMapCallbackPtr> BBCallbacks; 78 79 public: 80 MMIAddrLabelMap(MCContext &context) : Context(context) {} 81 82 ArrayRef<MCSymbol *> getAddrLabelSymbolToEmit(BasicBlock *BB); 83 84 void UpdateForDeletedBlock(BasicBlock *BB); 85 void UpdateForRAUWBlock(BasicBlock *Old, BasicBlock *New); 86 }; 87 88 } // end namespace llvm 89 90 ArrayRef<MCSymbol *> MMIAddrLabelMap::getAddrLabelSymbolToEmit(BasicBlock *BB) { 91 assert(BB->hasAddressTaken() && 92 "Shouldn't get label for block without address taken"); 93 AddrLabelSymEntry &Entry = AddrLabelSymbols[BB]; 94 95 // If we already had an entry for this block, just return it. 96 if (!Entry.Symbols.empty()) { 97 assert(BB->getParent() == Entry.Fn && "Parent changed"); 98 return Entry.Symbols; 99 } 100 101 // Otherwise, this is a new entry, create a new symbol for it and add an 102 // entry to BBCallbacks so we can be notified if the BB is deleted or RAUWd. 103 BBCallbacks.emplace_back(BB); 104 BBCallbacks.back().setMap(this); 105 Entry.Index = BBCallbacks.size() - 1; 106 Entry.Fn = BB->getParent(); 107 MCSymbol *Sym = Context.createTempSymbol(!BB->hasAddressTaken()); 108 Entry.Symbols.push_back(Sym); 109 return Entry.Symbols; 110 } 111 112 void MMIAddrLabelMap::UpdateForDeletedBlock(BasicBlock *BB) { 113 // If the block got deleted, there is no need for the symbol. If the symbol 114 // was already emitted, we can just forget about it, otherwise we need to 115 // queue it up for later emission when the function is output. 116 AddrLabelSymEntry Entry = std::move(AddrLabelSymbols[BB]); 117 AddrLabelSymbols.erase(BB); 118 assert(!Entry.Symbols.empty() && "Didn't have a symbol, why a callback?"); 119 BBCallbacks[Entry.Index] = nullptr; // Clear the callback. 120 121 assert((BB->getParent() == nullptr || BB->getParent() == Entry.Fn) && 122 "Block/parent mismatch"); 123 124 assert(llvm::all_of(Entry.Symbols, [](MCSymbol *Sym) { 125 return Sym->isDefined(); })); 126 } 127 128 void MMIAddrLabelMap::UpdateForRAUWBlock(BasicBlock *Old, BasicBlock *New) { 129 // Get the entry for the RAUW'd block and remove it from our map. 130 AddrLabelSymEntry OldEntry = std::move(AddrLabelSymbols[Old]); 131 AddrLabelSymbols.erase(Old); 132 assert(!OldEntry.Symbols.empty() && "Didn't have a symbol, why a callback?"); 133 134 AddrLabelSymEntry &NewEntry = AddrLabelSymbols[New]; 135 136 // If New is not address taken, just move our symbol over to it. 137 if (NewEntry.Symbols.empty()) { 138 BBCallbacks[OldEntry.Index].setPtr(New); // Update the callback. 139 NewEntry = std::move(OldEntry); // Set New's entry. 140 return; 141 } 142 143 BBCallbacks[OldEntry.Index] = nullptr; // Update the callback. 144 145 // Otherwise, we need to add the old symbols to the new block's set. 146 NewEntry.Symbols.insert(NewEntry.Symbols.end(), OldEntry.Symbols.begin(), 147 OldEntry.Symbols.end()); 148 } 149 150 void MMIAddrLabelMapCallbackPtr::deleted() { 151 Map->UpdateForDeletedBlock(cast<BasicBlock>(getValPtr())); 152 } 153 154 void MMIAddrLabelMapCallbackPtr::allUsesReplacedWith(Value *V2) { 155 Map->UpdateForRAUWBlock(cast<BasicBlock>(getValPtr()), cast<BasicBlock>(V2)); 156 } 157 158 void MachineModuleInfo::initialize() { 159 ObjFileMMI = nullptr; 160 CurCallSite = 0; 161 UsesMSVCFloatingPoint = UsesMorestackAddr = false; 162 HasSplitStack = HasNosplitStack = false; 163 AddrLabelSymbols = nullptr; 164 } 165 166 void MachineModuleInfo::finalize() { 167 Personalities.clear(); 168 169 delete AddrLabelSymbols; 170 AddrLabelSymbols = nullptr; 171 172 Context.reset(); 173 174 delete ObjFileMMI; 175 ObjFileMMI = nullptr; 176 } 177 178 MachineModuleInfo::MachineModuleInfo(MachineModuleInfo &&MMI) 179 : TM(std::move(MMI.TM)), 180 Context(MMI.TM.getMCAsmInfo(), MMI.TM.getMCRegisterInfo(), 181 MMI.TM.getObjFileLowering(), nullptr, nullptr, false) { 182 ObjFileMMI = MMI.ObjFileMMI; 183 CurCallSite = MMI.CurCallSite; 184 UsesMSVCFloatingPoint = MMI.UsesMSVCFloatingPoint; 185 UsesMorestackAddr = MMI.UsesMorestackAddr; 186 HasSplitStack = MMI.HasSplitStack; 187 HasNosplitStack = MMI.HasNosplitStack; 188 AddrLabelSymbols = MMI.AddrLabelSymbols; 189 TheModule = MMI.TheModule; 190 } 191 192 MachineModuleInfo::MachineModuleInfo(const LLVMTargetMachine *TM) 193 : TM(*TM), Context(TM->getMCAsmInfo(), TM->getMCRegisterInfo(), 194 TM->getObjFileLowering(), nullptr, nullptr, false) { 195 initialize(); 196 } 197 198 MachineModuleInfo::~MachineModuleInfo() { finalize(); } 199 200 //===- Address of Block Management ----------------------------------------===// 201 202 ArrayRef<MCSymbol *> 203 MachineModuleInfo::getAddrLabelSymbolToEmit(const BasicBlock *BB) { 204 // Lazily create AddrLabelSymbols. 205 if (!AddrLabelSymbols) 206 AddrLabelSymbols = new MMIAddrLabelMap(Context); 207 return AddrLabelSymbols->getAddrLabelSymbolToEmit(const_cast<BasicBlock*>(BB)); 208 } 209 210 /// \name Exception Handling 211 /// \{ 212 213 void MachineModuleInfo::addPersonality(const Function *Personality) { 214 for (unsigned i = 0; i < Personalities.size(); ++i) 215 if (Personalities[i] == Personality) 216 return; 217 Personalities.push_back(Personality); 218 } 219 220 /// \} 221 222 MachineFunction * 223 MachineModuleInfo::getMachineFunction(const Function &F) const { 224 auto I = MachineFunctions.find(&F); 225 return I != MachineFunctions.end() ? I->second.get() : nullptr; 226 } 227 228 MachineFunction &MachineModuleInfo::getOrCreateMachineFunction(Function &F) { 229 // Shortcut for the common case where a sequence of MachineFunctionPasses 230 // all query for the same Function. 231 if (LastRequest == &F) 232 return *LastResult; 233 234 auto I = MachineFunctions.insert( 235 std::make_pair(&F, std::unique_ptr<MachineFunction>())); 236 MachineFunction *MF; 237 if (I.second) { 238 // No pre-existing machine function, create a new one. 239 const TargetSubtargetInfo &STI = *TM.getSubtargetImpl(F); 240 MF = new MachineFunction(F, TM, STI, NextFnNum++, *this); 241 // Update the set entry. 242 I.first->second.reset(MF); 243 } else { 244 MF = I.first->second.get(); 245 } 246 247 LastRequest = &F; 248 LastResult = MF; 249 return *MF; 250 } 251 252 void MachineModuleInfo::deleteMachineFunctionFor(Function &F) { 253 MachineFunctions.erase(&F); 254 LastRequest = nullptr; 255 LastResult = nullptr; 256 } 257 258 namespace { 259 260 /// This pass frees the MachineFunction object associated with a Function. 261 class FreeMachineFunction : public FunctionPass { 262 public: 263 static char ID; 264 265 FreeMachineFunction() : FunctionPass(ID) {} 266 267 void getAnalysisUsage(AnalysisUsage &AU) const override { 268 AU.addRequired<MachineModuleInfoWrapperPass>(); 269 AU.addPreserved<MachineModuleInfoWrapperPass>(); 270 } 271 272 bool runOnFunction(Function &F) override { 273 MachineModuleInfo &MMI = 274 getAnalysis<MachineModuleInfoWrapperPass>().getMMI(); 275 MMI.deleteMachineFunctionFor(F); 276 return true; 277 } 278 279 StringRef getPassName() const override { 280 return "Free MachineFunction"; 281 } 282 }; 283 284 } // end anonymous namespace 285 286 char FreeMachineFunction::ID; 287 288 FunctionPass *llvm::createFreeMachineFunctionPass() { 289 return new FreeMachineFunction(); 290 } 291 292 MachineModuleInfoWrapperPass::MachineModuleInfoWrapperPass( 293 const LLVMTargetMachine *TM) 294 : ImmutablePass(ID), MMI(TM) { 295 initializeMachineModuleInfoWrapperPassPass(*PassRegistry::getPassRegistry()); 296 } 297 298 // Handle the Pass registration stuff necessary to use DataLayout's. 299 INITIALIZE_PASS(MachineModuleInfoWrapperPass, "machinemoduleinfo", 300 "Machine Module Information", false, false) 301 char MachineModuleInfoWrapperPass::ID = 0; 302 303 bool MachineModuleInfoWrapperPass::doInitialization(Module &M) { 304 MMI.initialize(); 305 MMI.TheModule = &M; 306 MMI.DbgInfoAvailable = !M.debug_compile_units().empty(); 307 return false; 308 } 309 310 bool MachineModuleInfoWrapperPass::doFinalization(Module &M) { 311 MMI.finalize(); 312 return false; 313 } 314 315 AnalysisKey MachineModuleAnalysis::Key; 316 317 MachineModuleInfo MachineModuleAnalysis::run(Module &M, 318 ModuleAnalysisManager &) { 319 MachineModuleInfo MMI(TM); 320 MMI.TheModule = &M; 321 MMI.DbgInfoAvailable = !M.debug_compile_units().empty(); 322 return MMI; 323 } 324