1 //===--- InterpFrame.cpp - Call Frame implementation for the VM -*- 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 "InterpFrame.h" 10 #include "Boolean.h" 11 #include "Floating.h" 12 #include "Function.h" 13 #include "InterpStack.h" 14 #include "InterpState.h" 15 #include "MemberPointer.h" 16 #include "Pointer.h" 17 #include "PrimType.h" 18 #include "Program.h" 19 #include "clang/AST/ASTContext.h" 20 #include "clang/AST/DeclCXX.h" 21 22 using namespace clang; 23 using namespace clang::interp; 24 25 InterpFrame::InterpFrame(InterpState &S, const Function *Func, 26 InterpFrame *Caller, CodePtr RetPC, unsigned ArgSize) 27 : Caller(Caller), S(S), Depth(Caller ? Caller->Depth + 1 : 0), Func(Func), 28 RetPC(RetPC), ArgSize(ArgSize), Args(static_cast<char *>(S.Stk.top())), 29 FrameOffset(S.Stk.size()) { 30 if (!Func) 31 return; 32 33 unsigned FrameSize = Func->getFrameSize(); 34 if (FrameSize == 0) 35 return; 36 37 Locals = std::make_unique<char[]>(FrameSize); 38 for (auto &Scope : Func->scopes()) { 39 for (auto &Local : Scope.locals()) { 40 Block *B = 41 new (localBlock(Local.Offset)) Block(S.Ctx.getEvalID(), Local.Desc); 42 B->invokeCtor(); 43 new (localInlineDesc(Local.Offset)) InlineDescriptor(Local.Desc); 44 } 45 } 46 } 47 48 InterpFrame::InterpFrame(InterpState &S, const Function *Func, CodePtr RetPC, 49 unsigned VarArgSize) 50 : InterpFrame(S, Func, S.Current, RetPC, Func->getArgSize() + VarArgSize) { 51 // As per our calling convention, the this pointer is 52 // part of the ArgSize. 53 // If the function has RVO, the RVO pointer is first. 54 // If the fuction has a This pointer, that one is next. 55 // Then follow the actual arguments (but those are handled 56 // in getParamPointer()). 57 if (Func->hasRVO()) 58 RVOPtr = stackRef<Pointer>(0); 59 60 if (Func->hasThisPointer()) { 61 if (Func->hasRVO()) 62 This = stackRef<Pointer>(sizeof(Pointer)); 63 else 64 This = stackRef<Pointer>(0); 65 } 66 } 67 68 InterpFrame::~InterpFrame() { 69 for (auto &Param : Params) 70 S.deallocate(reinterpret_cast<Block *>(Param.second.get())); 71 72 // When destroying the InterpFrame, call the Dtor for all block 73 // that haven't been destroyed via a destroy() op yet. 74 // This happens when the execution is interruped midway-through. 75 if (Func) { 76 for (auto &Scope : Func->scopes()) { 77 for (auto &Local : Scope.locals()) { 78 Block *B = localBlock(Local.Offset); 79 if (B->isInitialized()) 80 B->invokeDtor(); 81 } 82 } 83 } 84 } 85 86 void InterpFrame::destroy(unsigned Idx) { 87 for (auto &Local : Func->getScope(Idx).locals()) { 88 S.deallocate(localBlock(Local.Offset)); 89 } 90 } 91 92 void InterpFrame::popArgs() { 93 for (PrimType Ty : Func->args_reverse()) 94 TYPE_SWITCH(Ty, S.Stk.discard<T>()); 95 } 96 97 template <typename T> 98 static void print(llvm::raw_ostream &OS, const T &V, ASTContext &, QualType) { 99 OS << V; 100 } 101 102 template <> 103 void print(llvm::raw_ostream &OS, const Pointer &P, ASTContext &Ctx, 104 QualType Ty) { 105 if (P.isZero()) { 106 OS << "nullptr"; 107 return; 108 } 109 110 auto printDesc = [&OS, &Ctx](const Descriptor *Desc) { 111 if (const auto *D = Desc->asDecl()) { 112 // Subfields or named values. 113 if (const auto *VD = dyn_cast<ValueDecl>(D)) { 114 OS << *VD; 115 return; 116 } 117 // Base classes. 118 if (isa<RecordDecl>(D)) 119 return; 120 } 121 // Temporary expression. 122 if (const auto *E = Desc->asExpr()) { 123 E->printPretty(OS, nullptr, Ctx.getPrintingPolicy()); 124 return; 125 } 126 llvm_unreachable("Invalid descriptor type"); 127 }; 128 129 if (!Ty->isReferenceType()) 130 OS << "&"; 131 llvm::SmallVector<Pointer, 2> Levels; 132 for (Pointer F = P; !F.isRoot(); ) { 133 Levels.push_back(F); 134 F = F.isArrayElement() ? F.getArray().expand() : F.getBase(); 135 } 136 137 // Drop the first pointer since we print it unconditionally anyway. 138 if (!Levels.empty()) 139 Levels.erase(Levels.begin()); 140 141 printDesc(P.getDeclDesc()); 142 for (const auto &It : Levels) { 143 if (It.inArray()) { 144 OS << "[" << It.expand().getIndex() << "]"; 145 continue; 146 } 147 if (auto Index = It.getIndex()) { 148 OS << " + " << Index; 149 continue; 150 } 151 OS << "."; 152 printDesc(It.getFieldDesc()); 153 } 154 } 155 156 void InterpFrame::describe(llvm::raw_ostream &OS) const { 157 // We create frames for builtin functions as well, but we can't reliably 158 // diagnose them. The 'in call to' diagnostics for them add no value to the 159 // user _and_ it doesn't generally work since the argument types don't always 160 // match the function prototype. Just ignore them. 161 // Similarly, for lambda static invokers, we would just print __invoke(). 162 if (const auto *F = getFunction(); 163 F && (F->isBuiltin() || F->isLambdaStaticInvoker())) 164 return; 165 166 const FunctionDecl *F = getCallee(); 167 if (const auto *M = dyn_cast<CXXMethodDecl>(F); 168 M && M->isInstance() && !isa<CXXConstructorDecl>(F)) { 169 print(OS, This, S.getCtx(), S.getCtx().getRecordType(M->getParent())); 170 OS << "->"; 171 } 172 173 F->getNameForDiagnostic(OS, S.getCtx().getPrintingPolicy(), 174 /*Qualified=*/false); 175 OS << '('; 176 unsigned Off = 0; 177 178 Off += Func->hasRVO() ? primSize(PT_Ptr) : 0; 179 Off += Func->hasThisPointer() ? primSize(PT_Ptr) : 0; 180 181 for (unsigned I = 0, N = F->getNumParams(); I < N; ++I) { 182 QualType Ty = F->getParamDecl(I)->getType(); 183 184 PrimType PrimTy = S.Ctx.classify(Ty).value_or(PT_Ptr); 185 186 TYPE_SWITCH(PrimTy, print(OS, stackRef<T>(Off), S.getCtx(), Ty)); 187 Off += align(primSize(PrimTy)); 188 if (I + 1 != N) 189 OS << ", "; 190 } 191 OS << ")"; 192 } 193 194 Frame *InterpFrame::getCaller() const { 195 if (Caller->Caller) 196 return Caller; 197 return S.getSplitFrame(); 198 } 199 200 SourceRange InterpFrame::getCallRange() const { 201 if (!Caller->Func) { 202 if (SourceRange NullRange = S.getRange(nullptr, {}); NullRange.isValid()) 203 return NullRange; 204 return S.EvalLocation; 205 } 206 return S.getRange(Caller->Func, RetPC - sizeof(uintptr_t)); 207 } 208 209 const FunctionDecl *InterpFrame::getCallee() const { 210 if (!Func) 211 return nullptr; 212 return Func->getDecl(); 213 } 214 215 Pointer InterpFrame::getLocalPointer(unsigned Offset) const { 216 assert(Offset < Func->getFrameSize() && "Invalid local offset."); 217 return Pointer(localBlock(Offset)); 218 } 219 220 Pointer InterpFrame::getParamPointer(unsigned Off) { 221 // Return the block if it was created previously. 222 if (auto Pt = Params.find(Off); Pt != Params.end()) 223 return Pointer(reinterpret_cast<Block *>(Pt->second.get())); 224 225 // Allocate memory to store the parameter and the block metadata. 226 const auto &Desc = Func->getParamDescriptor(Off); 227 size_t BlockSize = sizeof(Block) + Desc.second->getAllocSize(); 228 auto Memory = std::make_unique<char[]>(BlockSize); 229 auto *B = new (Memory.get()) Block(S.Ctx.getEvalID(), Desc.second); 230 B->invokeCtor(); 231 232 // Copy the initial value. 233 TYPE_SWITCH(Desc.first, new (B->data()) T(stackRef<T>(Off))); 234 235 // Record the param. 236 Params.insert({Off, std::move(Memory)}); 237 return Pointer(B); 238 } 239 240 SourceInfo InterpFrame::getSource(CodePtr PC) const { 241 // Implicitly created functions don't have any code we could point at, 242 // so return the call site. 243 if (Func && (!Func->hasBody() || Func->getDecl()->isImplicit()) && Caller) 244 return Caller->getSource(RetPC); 245 246 return S.getSource(Func, PC); 247 } 248 249 const Expr *InterpFrame::getExpr(CodePtr PC) const { 250 if (Func && (!Func->hasBody() || Func->getDecl()->isImplicit()) && Caller) 251 return Caller->getExpr(RetPC); 252 253 return S.getExpr(Func, PC); 254 } 255 256 SourceLocation InterpFrame::getLocation(CodePtr PC) const { 257 if (Func && (!Func->hasBody() || Func->getDecl()->isImplicit()) && Caller) 258 return Caller->getLocation(RetPC); 259 260 return S.getLocation(Func, PC); 261 } 262 263 SourceRange InterpFrame::getRange(CodePtr PC) const { 264 if (Func && (!Func->hasBody() || Func->getDecl()->isImplicit()) && Caller) 265 return Caller->getRange(RetPC); 266 267 return S.getRange(Func, PC); 268 } 269