1 //===- LLVMContextImpl.cpp - Implement LLVMContextImpl --------------------===// 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 // This file implements the opaque LLVMContextImpl. 10 // 11 //===----------------------------------------------------------------------===// 12 13 #include "LLVMContextImpl.h" 14 #include "llvm/ADT/SetVector.h" 15 #include "llvm/IR/Module.h" 16 #include "llvm/IR/OptBisect.h" 17 #include "llvm/IR/Type.h" 18 #include "llvm/Support/ManagedStatic.h" 19 #include <cassert> 20 #include <utility> 21 22 using namespace llvm; 23 24 LLVMContextImpl::LLVMContextImpl(LLVMContext &C) 25 : DiagHandler(std::make_unique<DiagnosticHandler>()), 26 VoidTy(C, Type::VoidTyID), 27 LabelTy(C, Type::LabelTyID), 28 HalfTy(C, Type::HalfTyID), 29 BFloatTy(C, Type::BFloatTyID), 30 FloatTy(C, Type::FloatTyID), 31 DoubleTy(C, Type::DoubleTyID), 32 MetadataTy(C, Type::MetadataTyID), 33 TokenTy(C, Type::TokenTyID), 34 X86_FP80Ty(C, Type::X86_FP80TyID), 35 FP128Ty(C, Type::FP128TyID), 36 PPC_FP128Ty(C, Type::PPC_FP128TyID), 37 X86_MMXTy(C, Type::X86_MMXTyID), 38 Int1Ty(C, 1), 39 Int8Ty(C, 8), 40 Int16Ty(C, 16), 41 Int32Ty(C, 32), 42 Int64Ty(C, 64), 43 Int128Ty(C, 128) {} 44 45 LLVMContextImpl::~LLVMContextImpl() { 46 // NOTE: We need to delete the contents of OwnedModules, but Module's dtor 47 // will call LLVMContextImpl::removeModule, thus invalidating iterators into 48 // the container. Avoid iterators during this operation: 49 while (!OwnedModules.empty()) 50 delete *OwnedModules.begin(); 51 52 #ifndef NDEBUG 53 // Check for metadata references from leaked Values. 54 for (auto &Pair : ValueMetadata) 55 Pair.first->dump(); 56 assert(ValueMetadata.empty() && "Values with metadata have been leaked"); 57 #endif 58 59 // Drop references for MDNodes. Do this before Values get deleted to avoid 60 // unnecessary RAUW when nodes are still unresolved. 61 for (auto *I : DistinctMDNodes) 62 I->dropAllReferences(); 63 #define HANDLE_MDNODE_LEAF_UNIQUABLE(CLASS) \ 64 for (auto *I : CLASS##s) \ 65 I->dropAllReferences(); 66 #include "llvm/IR/Metadata.def" 67 68 // Also drop references that come from the Value bridges. 69 for (auto &Pair : ValuesAsMetadata) 70 Pair.second->dropUsers(); 71 for (auto &Pair : MetadataAsValues) 72 Pair.second->dropUse(); 73 74 // Destroy MDNodes. 75 for (MDNode *I : DistinctMDNodes) 76 I->deleteAsSubclass(); 77 #define HANDLE_MDNODE_LEAF_UNIQUABLE(CLASS) \ 78 for (CLASS * I : CLASS##s) \ 79 delete I; 80 #include "llvm/IR/Metadata.def" 81 82 // Free the constants. 83 for (auto *I : ExprConstants) 84 I->dropAllReferences(); 85 for (auto *I : ArrayConstants) 86 I->dropAllReferences(); 87 for (auto *I : StructConstants) 88 I->dropAllReferences(); 89 for (auto *I : VectorConstants) 90 I->dropAllReferences(); 91 ExprConstants.freeConstants(); 92 ArrayConstants.freeConstants(); 93 StructConstants.freeConstants(); 94 VectorConstants.freeConstants(); 95 InlineAsms.freeConstants(); 96 97 CAZConstants.clear(); 98 CPNConstants.clear(); 99 UVConstants.clear(); 100 IntConstants.clear(); 101 FPConstants.clear(); 102 103 for (auto &CDSConstant : CDSConstants) 104 delete CDSConstant.second; 105 CDSConstants.clear(); 106 107 // Destroy attribute node lists. 108 for (FoldingSetIterator<AttributeSetNode> I = AttrsSetNodes.begin(), 109 E = AttrsSetNodes.end(); I != E; ) { 110 FoldingSetIterator<AttributeSetNode> Elem = I++; 111 delete &*Elem; 112 } 113 114 // Destroy MetadataAsValues. 115 { 116 SmallVector<MetadataAsValue *, 8> MDVs; 117 MDVs.reserve(MetadataAsValues.size()); 118 for (auto &Pair : MetadataAsValues) 119 MDVs.push_back(Pair.second); 120 MetadataAsValues.clear(); 121 for (auto *V : MDVs) 122 delete V; 123 } 124 125 // Destroy ValuesAsMetadata. 126 for (auto &Pair : ValuesAsMetadata) 127 delete Pair.second; 128 } 129 130 void LLVMContextImpl::dropTriviallyDeadConstantArrays() { 131 SmallSetVector<ConstantArray *, 4> WorkList; 132 133 // When ArrayConstants are of substantial size and only a few in them are 134 // dead, starting WorkList with all elements of ArrayConstants can be 135 // wasteful. Instead, starting WorkList with only elements that have empty 136 // uses. 137 for (ConstantArray *C : ArrayConstants) 138 if (C->use_empty()) 139 WorkList.insert(C); 140 141 while (!WorkList.empty()) { 142 ConstantArray *C = WorkList.pop_back_val(); 143 if (C->use_empty()) { 144 for (const Use &Op : C->operands()) { 145 if (auto *COp = dyn_cast<ConstantArray>(Op)) 146 WorkList.insert(COp); 147 } 148 C->destroyConstant(); 149 } 150 } 151 } 152 153 void Module::dropTriviallyDeadConstantArrays() { 154 Context.pImpl->dropTriviallyDeadConstantArrays(); 155 } 156 157 namespace llvm { 158 159 /// Make MDOperand transparent for hashing. 160 /// 161 /// This overload of an implementation detail of the hashing library makes 162 /// MDOperand hash to the same value as a \a Metadata pointer. 163 /// 164 /// Note that overloading \a hash_value() as follows: 165 /// 166 /// \code 167 /// size_t hash_value(const MDOperand &X) { return hash_value(X.get()); } 168 /// \endcode 169 /// 170 /// does not cause MDOperand to be transparent. In particular, a bare pointer 171 /// doesn't get hashed before it's combined, whereas \a MDOperand would. 172 static const Metadata *get_hashable_data(const MDOperand &X) { return X.get(); } 173 174 } // end namespace llvm 175 176 unsigned MDNodeOpsKey::calculateHash(MDNode *N, unsigned Offset) { 177 unsigned Hash = hash_combine_range(N->op_begin() + Offset, N->op_end()); 178 #ifndef NDEBUG 179 { 180 SmallVector<Metadata *, 8> MDs(N->op_begin() + Offset, N->op_end()); 181 unsigned RawHash = calculateHash(MDs); 182 assert(Hash == RawHash && 183 "Expected hash of MDOperand to equal hash of Metadata*"); 184 } 185 #endif 186 return Hash; 187 } 188 189 unsigned MDNodeOpsKey::calculateHash(ArrayRef<Metadata *> Ops) { 190 return hash_combine_range(Ops.begin(), Ops.end()); 191 } 192 193 StringMapEntry<uint32_t> *LLVMContextImpl::getOrInsertBundleTag(StringRef Tag) { 194 uint32_t NewIdx = BundleTagCache.size(); 195 return &*(BundleTagCache.insert(std::make_pair(Tag, NewIdx)).first); 196 } 197 198 void LLVMContextImpl::getOperandBundleTags(SmallVectorImpl<StringRef> &Tags) const { 199 Tags.resize(BundleTagCache.size()); 200 for (const auto &T : BundleTagCache) 201 Tags[T.second] = T.first(); 202 } 203 204 uint32_t LLVMContextImpl::getOperandBundleTagID(StringRef Tag) const { 205 auto I = BundleTagCache.find(Tag); 206 assert(I != BundleTagCache.end() && "Unknown tag!"); 207 return I->second; 208 } 209 210 SyncScope::ID LLVMContextImpl::getOrInsertSyncScopeID(StringRef SSN) { 211 auto NewSSID = SSC.size(); 212 assert(NewSSID < std::numeric_limits<SyncScope::ID>::max() && 213 "Hit the maximum number of synchronization scopes allowed!"); 214 return SSC.insert(std::make_pair(SSN, SyncScope::ID(NewSSID))).first->second; 215 } 216 217 void LLVMContextImpl::getSyncScopeNames( 218 SmallVectorImpl<StringRef> &SSNs) const { 219 SSNs.resize(SSC.size()); 220 for (const auto &SSE : SSC) 221 SSNs[SSE.second] = SSE.first(); 222 } 223 224 /// Singleton instance of the OptBisect class. 225 /// 226 /// This singleton is accessed via the LLVMContext::getOptPassGate() function. 227 /// It provides a mechanism to disable passes and individual optimizations at 228 /// compile time based on a command line option (-opt-bisect-limit) in order to 229 /// perform a bisecting search for optimization-related problems. 230 /// 231 /// Even if multiple LLVMContext objects are created, they will all return the 232 /// same instance of OptBisect in order to provide a single bisect count. Any 233 /// code that uses the OptBisect object should be serialized when bisection is 234 /// enabled in order to enable a consistent bisect count. 235 static ManagedStatic<OptBisect> OptBisector; 236 237 OptPassGate &LLVMContextImpl::getOptPassGate() const { 238 if (!OPG) 239 OPG = &(*OptBisector); 240 return *OPG; 241 } 242 243 void LLVMContextImpl::setOptPassGate(OptPassGate& OPG) { 244 this->OPG = &OPG; 245 } 246