1 //===-- WebAssemblyFixFunctionBitcasts.cpp - Fix function bitcasts --------===// 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 /// \file 10 /// Fix bitcasted functions. 11 /// 12 /// WebAssembly requires caller and callee signatures to match, however in LLVM, 13 /// some amount of slop is vaguely permitted. Detect mismatch by looking for 14 /// bitcasts of functions and rewrite them to use wrapper functions instead. 15 /// 16 /// This doesn't catch all cases, such as when a function's address is taken in 17 /// one place and casted in another, but it works for many common cases. 18 /// 19 /// Note that LLVM already optimizes away function bitcasts in common cases by 20 /// dropping arguments as needed, so this pass only ends up getting used in less 21 /// common cases. 22 /// 23 //===----------------------------------------------------------------------===// 24 25 #include "WebAssembly.h" 26 #include "llvm/IR/CallSite.h" 27 #include "llvm/IR/Constants.h" 28 #include "llvm/IR/Instructions.h" 29 #include "llvm/IR/Module.h" 30 #include "llvm/IR/Operator.h" 31 #include "llvm/Pass.h" 32 #include "llvm/Support/Debug.h" 33 #include "llvm/Support/raw_ostream.h" 34 using namespace llvm; 35 36 #define DEBUG_TYPE "wasm-fix-function-bitcasts" 37 38 namespace { 39 class FixFunctionBitcasts final : public ModulePass { 40 StringRef getPassName() const override { 41 return "WebAssembly Fix Function Bitcasts"; 42 } 43 44 void getAnalysisUsage(AnalysisUsage &AU) const override { 45 AU.setPreservesCFG(); 46 ModulePass::getAnalysisUsage(AU); 47 } 48 49 bool runOnModule(Module &M) override; 50 51 public: 52 static char ID; 53 FixFunctionBitcasts() : ModulePass(ID) {} 54 }; 55 } // End anonymous namespace 56 57 char FixFunctionBitcasts::ID = 0; 58 INITIALIZE_PASS(FixFunctionBitcasts, DEBUG_TYPE, 59 "Fix mismatching bitcasts for WebAssembly", false, false) 60 61 ModulePass *llvm::createWebAssemblyFixFunctionBitcasts() { 62 return new FixFunctionBitcasts(); 63 } 64 65 // Recursively descend the def-use lists from V to find non-bitcast users of 66 // bitcasts of V. 67 static void findUses(Value *V, Function &F, 68 SmallVectorImpl<std::pair<Use *, Function *>> &Uses, 69 SmallPtrSetImpl<Constant *> &ConstantBCs) { 70 for (Use &U : V->uses()) { 71 if (auto *BC = dyn_cast<BitCastOperator>(U.getUser())) 72 findUses(BC, F, Uses, ConstantBCs); 73 else if (U.get()->getType() != F.getType()) { 74 CallSite CS(U.getUser()); 75 if (!CS) 76 // Skip uses that aren't immediately called 77 continue; 78 Value *Callee = CS.getCalledValue(); 79 if (Callee != V) 80 // Skip calls where the function isn't the callee 81 continue; 82 if (isa<Constant>(U.get())) { 83 // Only add constant bitcasts to the list once; they get RAUW'd 84 auto C = ConstantBCs.insert(cast<Constant>(U.get())); 85 if (!C.second) 86 continue; 87 } 88 Uses.push_back(std::make_pair(&U, &F)); 89 } 90 } 91 } 92 93 // Create a wrapper function with type Ty that calls F (which may have a 94 // different type). Attempt to support common bitcasted function idioms: 95 // - Call with more arguments than needed: arguments are dropped 96 // - Call with fewer arguments than needed: arguments are filled in with undef 97 // - Return value is not needed: drop it 98 // - Return value needed but not present: supply an undef 99 // 100 // If the all the argument types of trivially castable to one another (i.e. 101 // I32 vs pointer type) then we don't create a wrapper at all (return nullptr 102 // instead). 103 // 104 // If there is a type mismatch that we know would result in an invalid wasm 105 // module then generate wrapper that contains unreachable (i.e. abort at 106 // runtime). Such programs are deep into undefined behaviour territory, 107 // but we choose to fail at runtime rather than generate and invalid module 108 // or fail at compiler time. The reason we delay the error is that we want 109 // to support the CMake which expects to be able to compile and link programs 110 // that refer to functions with entirely incorrect signatures (this is how 111 // CMake detects the existence of a function in a toolchain). 112 // 113 // For bitcasts that involve struct types we don't know at this stage if they 114 // would be equivalent at the wasm level and so we can't know if we need to 115 // generate a wrapper. 116 static Function *createWrapper(Function *F, FunctionType *Ty) { 117 Module *M = F->getParent(); 118 119 Function *Wrapper = Function::Create(Ty, Function::PrivateLinkage, 120 F->getName() + "_bitcast", M); 121 BasicBlock *BB = BasicBlock::Create(M->getContext(), "body", Wrapper); 122 const DataLayout &DL = BB->getModule()->getDataLayout(); 123 124 // Determine what arguments to pass. 125 SmallVector<Value *, 4> Args; 126 Function::arg_iterator AI = Wrapper->arg_begin(); 127 Function::arg_iterator AE = Wrapper->arg_end(); 128 FunctionType::param_iterator PI = F->getFunctionType()->param_begin(); 129 FunctionType::param_iterator PE = F->getFunctionType()->param_end(); 130 bool TypeMismatch = false; 131 bool WrapperNeeded = false; 132 133 Type *ExpectedRtnType = F->getFunctionType()->getReturnType(); 134 Type *RtnType = Ty->getReturnType(); 135 136 if ((F->getFunctionType()->getNumParams() != Ty->getNumParams()) || 137 (F->getFunctionType()->isVarArg() != Ty->isVarArg()) || 138 (ExpectedRtnType != RtnType)) 139 WrapperNeeded = true; 140 141 for (; AI != AE && PI != PE; ++AI, ++PI) { 142 Type *ArgType = AI->getType(); 143 Type *ParamType = *PI; 144 145 if (ArgType == ParamType) { 146 Args.push_back(&*AI); 147 } else { 148 if (CastInst::isBitOrNoopPointerCastable(ArgType, ParamType, DL)) { 149 Instruction *PtrCast = 150 CastInst::CreateBitOrPointerCast(AI, ParamType, "cast"); 151 BB->getInstList().push_back(PtrCast); 152 Args.push_back(PtrCast); 153 } else if (ArgType->isStructTy() || ParamType->isStructTy()) { 154 LLVM_DEBUG(dbgs() << "createWrapper: struct param type in bitcast: " 155 << F->getName() << "\n"); 156 WrapperNeeded = false; 157 } else { 158 LLVM_DEBUG(dbgs() << "createWrapper: arg type mismatch calling: " 159 << F->getName() << "\n"); 160 LLVM_DEBUG(dbgs() << "Arg[" << Args.size() << "] Expected: " 161 << *ParamType << " Got: " << *ArgType << "\n"); 162 TypeMismatch = true; 163 break; 164 } 165 } 166 } 167 168 if (WrapperNeeded && !TypeMismatch) { 169 for (; PI != PE; ++PI) 170 Args.push_back(UndefValue::get(*PI)); 171 if (F->isVarArg()) 172 for (; AI != AE; ++AI) 173 Args.push_back(&*AI); 174 175 CallInst *Call = CallInst::Create(F, Args, "", BB); 176 177 Type *ExpectedRtnType = F->getFunctionType()->getReturnType(); 178 Type *RtnType = Ty->getReturnType(); 179 // Determine what value to return. 180 if (RtnType->isVoidTy()) { 181 ReturnInst::Create(M->getContext(), BB); 182 } else if (ExpectedRtnType->isVoidTy()) { 183 LLVM_DEBUG(dbgs() << "Creating dummy return: " << *RtnType << "\n"); 184 ReturnInst::Create(M->getContext(), UndefValue::get(RtnType), BB); 185 } else if (RtnType == ExpectedRtnType) { 186 ReturnInst::Create(M->getContext(), Call, BB); 187 } else if (CastInst::isBitOrNoopPointerCastable(ExpectedRtnType, RtnType, 188 DL)) { 189 Instruction *Cast = 190 CastInst::CreateBitOrPointerCast(Call, RtnType, "cast"); 191 BB->getInstList().push_back(Cast); 192 ReturnInst::Create(M->getContext(), Cast, BB); 193 } else if (RtnType->isStructTy() || ExpectedRtnType->isStructTy()) { 194 LLVM_DEBUG(dbgs() << "createWrapper: struct return type in bitcast: " 195 << F->getName() << "\n"); 196 WrapperNeeded = false; 197 } else { 198 LLVM_DEBUG(dbgs() << "createWrapper: return type mismatch calling: " 199 << F->getName() << "\n"); 200 LLVM_DEBUG(dbgs() << "Expected: " << *ExpectedRtnType 201 << " Got: " << *RtnType << "\n"); 202 TypeMismatch = true; 203 } 204 } 205 206 if (TypeMismatch) { 207 // Create a new wrapper that simply contains `unreachable`. 208 Wrapper->eraseFromParent(); 209 Wrapper = Function::Create(Ty, Function::PrivateLinkage, 210 F->getName() + "_bitcast_invalid", M); 211 BasicBlock *BB = BasicBlock::Create(M->getContext(), "body", Wrapper); 212 new UnreachableInst(M->getContext(), BB); 213 Wrapper->setName(F->getName() + "_bitcast_invalid"); 214 } else if (!WrapperNeeded) { 215 LLVM_DEBUG(dbgs() << "createWrapper: no wrapper needed: " << F->getName() 216 << "\n"); 217 Wrapper->eraseFromParent(); 218 return nullptr; 219 } 220 LLVM_DEBUG(dbgs() << "createWrapper: " << F->getName() << "\n"); 221 return Wrapper; 222 } 223 224 // Test whether a main function with type FuncTy should be rewritten to have 225 // type MainTy. 226 static bool shouldFixMainFunction(FunctionType *FuncTy, FunctionType *MainTy) { 227 // Only fix the main function if it's the standard zero-arg form. That way, 228 // the standard cases will work as expected, and users will see signature 229 // mismatches from the linker for non-standard cases. 230 return FuncTy->getReturnType() == MainTy->getReturnType() && 231 FuncTy->getNumParams() == 0 && 232 !FuncTy->isVarArg(); 233 } 234 235 bool FixFunctionBitcasts::runOnModule(Module &M) { 236 LLVM_DEBUG(dbgs() << "********** Fix Function Bitcasts **********\n"); 237 238 Function *Main = nullptr; 239 CallInst *CallMain = nullptr; 240 SmallVector<std::pair<Use *, Function *>, 0> Uses; 241 SmallPtrSet<Constant *, 2> ConstantBCs; 242 243 // Collect all the places that need wrappers. 244 for (Function &F : M) { 245 findUses(&F, F, Uses, ConstantBCs); 246 247 // If we have a "main" function, and its type isn't 248 // "int main(int argc, char *argv[])", create an artificial call with it 249 // bitcasted to that type so that we generate a wrapper for it, so that 250 // the C runtime can call it. 251 if (F.getName() == "main") { 252 Main = &F; 253 LLVMContext &C = M.getContext(); 254 Type *MainArgTys[] = {Type::getInt32Ty(C), 255 PointerType::get(Type::getInt8PtrTy(C), 0)}; 256 FunctionType *MainTy = FunctionType::get(Type::getInt32Ty(C), MainArgTys, 257 /*isVarArg=*/false); 258 if (shouldFixMainFunction(F.getFunctionType(), MainTy)) { 259 LLVM_DEBUG(dbgs() << "Found `main` function with incorrect type: " 260 << *F.getFunctionType() << "\n"); 261 Value *Args[] = {UndefValue::get(MainArgTys[0]), 262 UndefValue::get(MainArgTys[1])}; 263 Value *Casted = 264 ConstantExpr::getBitCast(Main, PointerType::get(MainTy, 0)); 265 CallMain = CallInst::Create(MainTy, Casted, Args, "call_main"); 266 Use *UseMain = &CallMain->getOperandUse(2); 267 Uses.push_back(std::make_pair(UseMain, &F)); 268 } 269 } 270 } 271 272 DenseMap<std::pair<Function *, FunctionType *>, Function *> Wrappers; 273 274 for (auto &UseFunc : Uses) { 275 Use *U = UseFunc.first; 276 Function *F = UseFunc.second; 277 auto *PTy = cast<PointerType>(U->get()->getType()); 278 auto *Ty = dyn_cast<FunctionType>(PTy->getElementType()); 279 280 // If the function is casted to something like i8* as a "generic pointer" 281 // to be later casted to something else, we can't generate a wrapper for it. 282 // Just ignore such casts for now. 283 if (!Ty) 284 continue; 285 286 auto Pair = Wrappers.insert(std::make_pair(std::make_pair(F, Ty), nullptr)); 287 if (Pair.second) 288 Pair.first->second = createWrapper(F, Ty); 289 290 Function *Wrapper = Pair.first->second; 291 if (!Wrapper) 292 continue; 293 294 if (isa<Constant>(U->get())) 295 U->get()->replaceAllUsesWith(Wrapper); 296 else 297 U->set(Wrapper); 298 } 299 300 // If we created a wrapper for main, rename the wrapper so that it's the 301 // one that gets called from startup. 302 if (CallMain) { 303 Main->setName("__original_main"); 304 auto *MainWrapper = 305 cast<Function>(CallMain->getCalledValue()->stripPointerCasts()); 306 delete CallMain; 307 if (Main->isDeclaration()) { 308 // The wrapper is not needed in this case as we don't need to export 309 // it to anyone else. 310 MainWrapper->eraseFromParent(); 311 } else { 312 // Otherwise give the wrapper the same linkage as the original main 313 // function, so that it can be called from the same places. 314 MainWrapper->setName("main"); 315 MainWrapper->setLinkage(Main->getLinkage()); 316 MainWrapper->setVisibility(Main->getVisibility()); 317 } 318 } 319 320 return true; 321 } 322