11b637458SDan Gohman //===-- WebAssemblyFixFunctionBitcasts.cpp - Fix function bitcasts --------===// 21b637458SDan Gohman // 3*2946cd70SChandler Carruth // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4*2946cd70SChandler Carruth // See https://llvm.org/LICENSE.txt for license information. 5*2946cd70SChandler Carruth // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 61b637458SDan Gohman // 71b637458SDan Gohman //===----------------------------------------------------------------------===// 81b637458SDan Gohman /// 91b637458SDan Gohman /// \file 105f8f34e4SAdrian Prantl /// Fix bitcasted functions. 111b637458SDan Gohman /// 121b637458SDan Gohman /// WebAssembly requires caller and callee signatures to match, however in LLVM, 131b637458SDan Gohman /// some amount of slop is vaguely permitted. Detect mismatch by looking for 141b637458SDan Gohman /// bitcasts of functions and rewrite them to use wrapper functions instead. 151b637458SDan Gohman /// 161b637458SDan Gohman /// This doesn't catch all cases, such as when a function's address is taken in 171b637458SDan Gohman /// one place and casted in another, but it works for many common cases. 181b637458SDan Gohman /// 191b637458SDan Gohman /// Note that LLVM already optimizes away function bitcasts in common cases by 201b637458SDan Gohman /// dropping arguments as needed, so this pass only ends up getting used in less 211b637458SDan Gohman /// common cases. 221b637458SDan Gohman /// 231b637458SDan Gohman //===----------------------------------------------------------------------===// 241b637458SDan Gohman 251b637458SDan Gohman #include "WebAssembly.h" 2637af00e7SJacob Gravelle #include "llvm/IR/CallSite.h" 271b637458SDan Gohman #include "llvm/IR/Constants.h" 281b637458SDan Gohman #include "llvm/IR/Instructions.h" 291b637458SDan Gohman #include "llvm/IR/Module.h" 301b637458SDan Gohman #include "llvm/IR/Operator.h" 311b637458SDan Gohman #include "llvm/Pass.h" 321b637458SDan Gohman #include "llvm/Support/Debug.h" 331b637458SDan Gohman #include "llvm/Support/raw_ostream.h" 341b637458SDan Gohman using namespace llvm; 351b637458SDan Gohman 361b637458SDan Gohman #define DEBUG_TYPE "wasm-fix-function-bitcasts" 371b637458SDan Gohman 385292d17eSSam Clegg static cl::opt<bool> 395292d17eSSam Clegg TemporaryWorkarounds("wasm-temporary-workarounds", 405292d17eSSam Clegg cl::desc("Apply certain temporary workarounds"), 415292d17eSSam Clegg cl::init(true), cl::Hidden); 425292d17eSSam Clegg 431b637458SDan Gohman namespace { 441b637458SDan Gohman class FixFunctionBitcasts final : public ModulePass { 451b637458SDan Gohman StringRef getPassName() const override { 461b637458SDan Gohman return "WebAssembly Fix Function Bitcasts"; 471b637458SDan Gohman } 481b637458SDan Gohman 491b637458SDan Gohman void getAnalysisUsage(AnalysisUsage &AU) const override { 501b637458SDan Gohman AU.setPreservesCFG(); 511b637458SDan Gohman ModulePass::getAnalysisUsage(AU); 521b637458SDan Gohman } 531b637458SDan Gohman 541b637458SDan Gohman bool runOnModule(Module &M) override; 551b637458SDan Gohman 561b637458SDan Gohman public: 571b637458SDan Gohman static char ID; 581b637458SDan Gohman FixFunctionBitcasts() : ModulePass(ID) {} 591b637458SDan Gohman }; 601b637458SDan Gohman } // End anonymous namespace 611b637458SDan Gohman 621b637458SDan Gohman char FixFunctionBitcasts::ID = 0; 6340926451SJacob Gravelle INITIALIZE_PASS(FixFunctionBitcasts, DEBUG_TYPE, 6440926451SJacob Gravelle "Fix mismatching bitcasts for WebAssembly", false, false) 6540926451SJacob Gravelle 661b637458SDan Gohman ModulePass *llvm::createWebAssemblyFixFunctionBitcasts() { 671b637458SDan Gohman return new FixFunctionBitcasts(); 681b637458SDan Gohman } 691b637458SDan Gohman 701b637458SDan Gohman // Recursively descend the def-use lists from V to find non-bitcast users of 711b637458SDan Gohman // bitcasts of V. 721b637458SDan Gohman static void FindUses(Value *V, Function &F, 737acb42a4SDerek Schuff SmallVectorImpl<std::pair<Use *, Function *>> &Uses, 747acb42a4SDerek Schuff SmallPtrSetImpl<Constant *> &ConstantBCs) { 751b637458SDan Gohman for (Use &U : V->uses()) { 761b637458SDan Gohman if (BitCastOperator *BC = dyn_cast<BitCastOperator>(U.getUser())) 777acb42a4SDerek Schuff FindUses(BC, F, Uses, ConstantBCs); 787acb42a4SDerek Schuff else if (U.get()->getType() != F.getType()) { 7937af00e7SJacob Gravelle CallSite CS(U.getUser()); 8037af00e7SJacob Gravelle if (!CS) 8137af00e7SJacob Gravelle // Skip uses that aren't immediately called 8237af00e7SJacob Gravelle continue; 8337af00e7SJacob Gravelle Value *Callee = CS.getCalledValue(); 8437af00e7SJacob Gravelle if (Callee != V) 8537af00e7SJacob Gravelle // Skip calls where the function isn't the callee 8637af00e7SJacob Gravelle continue; 877acb42a4SDerek Schuff if (isa<Constant>(U.get())) { 887acb42a4SDerek Schuff // Only add constant bitcasts to the list once; they get RAUW'd 897acb42a4SDerek Schuff auto c = ConstantBCs.insert(cast<Constant>(U.get())); 9037af00e7SJacob Gravelle if (!c.second) 9137af00e7SJacob Gravelle continue; 927acb42a4SDerek Schuff } 931b637458SDan Gohman Uses.push_back(std::make_pair(&U, &F)); 941b637458SDan Gohman } 951b637458SDan Gohman } 967acb42a4SDerek Schuff } 971b637458SDan Gohman 981b637458SDan Gohman // Create a wrapper function with type Ty that calls F (which may have a 991b637458SDan Gohman // different type). Attempt to support common bitcasted function idioms: 1001b637458SDan Gohman // - Call with more arguments than needed: arguments are dropped 1011b637458SDan Gohman // - Call with fewer arguments than needed: arguments are filled in with undef 1021b637458SDan Gohman // - Return value is not needed: drop it 1031b637458SDan Gohman // - Return value needed but not present: supply an undef 1040e2ceb81SDan Gohman // 10541d7047dSSam Clegg // If the all the argument types of trivially castable to one another (i.e. 10641d7047dSSam Clegg // I32 vs pointer type) then we don't create a wrapper at all (return nullptr 10741d7047dSSam Clegg // instead). 10841d7047dSSam Clegg // 10988599bf6SSam Clegg // If there is a type mismatch that we know would result in an invalid wasm 11088599bf6SSam Clegg // module then generate wrapper that contains unreachable (i.e. abort at 11188599bf6SSam Clegg // runtime). Such programs are deep into undefined behaviour territory, 11241d7047dSSam Clegg // but we choose to fail at runtime rather than generate and invalid module 11341d7047dSSam Clegg // or fail at compiler time. The reason we delay the error is that we want 11441d7047dSSam Clegg // to support the CMake which expects to be able to compile and link programs 11541d7047dSSam Clegg // that refer to functions with entirely incorrect signatures (this is how 11641d7047dSSam Clegg // CMake detects the existence of a function in a toolchain). 11788599bf6SSam Clegg // 11888599bf6SSam Clegg // For bitcasts that involve struct types we don't know at this stage if they 11988599bf6SSam Clegg // would be equivalent at the wasm level and so we can't know if we need to 12088599bf6SSam Clegg // generate a wrapper. 1211b637458SDan Gohman static Function *CreateWrapper(Function *F, FunctionType *Ty) { 1221b637458SDan Gohman Module *M = F->getParent(); 1231b637458SDan Gohman 12441d7047dSSam Clegg Function *Wrapper = Function::Create(Ty, Function::PrivateLinkage, 12541d7047dSSam Clegg F->getName() + "_bitcast", M); 1261b637458SDan Gohman BasicBlock *BB = BasicBlock::Create(M->getContext(), "body", Wrapper); 12741d7047dSSam Clegg const DataLayout &DL = BB->getModule()->getDataLayout(); 1281b637458SDan Gohman 1291b637458SDan Gohman // Determine what arguments to pass. 1301b637458SDan Gohman SmallVector<Value *, 4> Args; 1311b637458SDan Gohman Function::arg_iterator AI = Wrapper->arg_begin(); 1322803bfafSDan Gohman Function::arg_iterator AE = Wrapper->arg_end(); 1331b637458SDan Gohman FunctionType::param_iterator PI = F->getFunctionType()->param_begin(); 1341b637458SDan Gohman FunctionType::param_iterator PE = F->getFunctionType()->param_end(); 13541d7047dSSam Clegg bool TypeMismatch = false; 13641d7047dSSam Clegg bool WrapperNeeded = false; 13741d7047dSSam Clegg 13888599bf6SSam Clegg Type *ExpectedRtnType = F->getFunctionType()->getReturnType(); 13988599bf6SSam Clegg Type *RtnType = Ty->getReturnType(); 14088599bf6SSam Clegg 14141d7047dSSam Clegg if ((F->getFunctionType()->getNumParams() != Ty->getNumParams()) || 14288599bf6SSam Clegg (F->getFunctionType()->isVarArg() != Ty->isVarArg()) || 14388599bf6SSam Clegg (ExpectedRtnType != RtnType)) 14441d7047dSSam Clegg WrapperNeeded = true; 14541d7047dSSam Clegg 1462803bfafSDan Gohman for (; AI != AE && PI != PE; ++AI, ++PI) { 14741d7047dSSam Clegg Type *ArgType = AI->getType(); 14841d7047dSSam Clegg Type *ParamType = *PI; 14941d7047dSSam Clegg 15041d7047dSSam Clegg if (ArgType == ParamType) { 1511b637458SDan Gohman Args.push_back(&*AI); 15241d7047dSSam Clegg } else { 15341d7047dSSam Clegg if (CastInst::isBitOrNoopPointerCastable(ArgType, ParamType, DL)) { 15441d7047dSSam Clegg Instruction *PtrCast = 15541d7047dSSam Clegg CastInst::CreateBitOrPointerCast(AI, ParamType, "cast"); 15641d7047dSSam Clegg BB->getInstList().push_back(PtrCast); 15741d7047dSSam Clegg Args.push_back(PtrCast); 15888599bf6SSam Clegg } else if (ArgType->isStructTy() || ParamType->isStructTy()) { 15988599bf6SSam Clegg LLVM_DEBUG(dbgs() << "CreateWrapper: struct param type in bitcast: " 16088599bf6SSam Clegg << F->getName() << "\n"); 16188599bf6SSam Clegg WrapperNeeded = false; 16241d7047dSSam Clegg } else { 16341d7047dSSam Clegg LLVM_DEBUG(dbgs() << "CreateWrapper: arg type mismatch calling: " 16441d7047dSSam Clegg << F->getName() << "\n"); 16541d7047dSSam Clegg LLVM_DEBUG(dbgs() << "Arg[" << Args.size() << "] Expected: " 16641d7047dSSam Clegg << *ParamType << " Got: " << *ArgType << "\n"); 16741d7047dSSam Clegg TypeMismatch = true; 16841d7047dSSam Clegg break; 1691b637458SDan Gohman } 17041d7047dSSam Clegg } 17141d7047dSSam Clegg } 17241d7047dSSam Clegg 17388599bf6SSam Clegg if (WrapperNeeded && !TypeMismatch) { 1741b637458SDan Gohman for (; PI != PE; ++PI) 1751b637458SDan Gohman Args.push_back(UndefValue::get(*PI)); 1762803bfafSDan Gohman if (F->isVarArg()) 1772803bfafSDan Gohman for (; AI != AE; ++AI) 1782803bfafSDan Gohman Args.push_back(&*AI); 1791b637458SDan Gohman 1801b637458SDan Gohman CallInst *Call = CallInst::Create(F, Args, "", BB); 1811b637458SDan Gohman 18241d7047dSSam Clegg Type *ExpectedRtnType = F->getFunctionType()->getReturnType(); 18341d7047dSSam Clegg Type *RtnType = Ty->getReturnType(); 1841b637458SDan Gohman // Determine what value to return. 18541d7047dSSam Clegg if (RtnType->isVoidTy()) { 1861b637458SDan Gohman ReturnInst::Create(M->getContext(), BB); 18741d7047dSSam Clegg } else if (ExpectedRtnType->isVoidTy()) { 18888599bf6SSam Clegg LLVM_DEBUG(dbgs() << "Creating dummy return: " << *RtnType << "\n"); 18941d7047dSSam Clegg ReturnInst::Create(M->getContext(), UndefValue::get(RtnType), BB); 19041d7047dSSam Clegg } else if (RtnType == ExpectedRtnType) { 1911b637458SDan Gohman ReturnInst::Create(M->getContext(), Call, BB); 19241d7047dSSam Clegg } else if (CastInst::isBitOrNoopPointerCastable(ExpectedRtnType, RtnType, 19341d7047dSSam Clegg DL)) { 19441d7047dSSam Clegg Instruction *Cast = 19541d7047dSSam Clegg CastInst::CreateBitOrPointerCast(Call, RtnType, "cast"); 19641d7047dSSam Clegg BB->getInstList().push_back(Cast); 19741d7047dSSam Clegg ReturnInst::Create(M->getContext(), Cast, BB); 19888599bf6SSam Clegg } else if (RtnType->isStructTy() || ExpectedRtnType->isStructTy()) { 19988599bf6SSam Clegg LLVM_DEBUG(dbgs() << "CreateWrapper: struct return type in bitcast: " 20088599bf6SSam Clegg << F->getName() << "\n"); 20188599bf6SSam Clegg WrapperNeeded = false; 20241d7047dSSam Clegg } else { 20341d7047dSSam Clegg LLVM_DEBUG(dbgs() << "CreateWrapper: return type mismatch calling: " 20441d7047dSSam Clegg << F->getName() << "\n"); 20541d7047dSSam Clegg LLVM_DEBUG(dbgs() << "Expected: " << *ExpectedRtnType 20641d7047dSSam Clegg << " Got: " << *RtnType << "\n"); 20741d7047dSSam Clegg TypeMismatch = true; 20841d7047dSSam Clegg } 20941d7047dSSam Clegg } 21041d7047dSSam Clegg 21141d7047dSSam Clegg if (TypeMismatch) { 21288599bf6SSam Clegg // Create a new wrapper that simply contains `unreachable`. 21388599bf6SSam Clegg Wrapper->eraseFromParent(); 214f208f631SHeejin Ahn Wrapper = Function::Create(Ty, Function::PrivateLinkage, 215f208f631SHeejin Ahn F->getName() + "_bitcast_invalid", M); 21688599bf6SSam Clegg BasicBlock *BB = BasicBlock::Create(M->getContext(), "body", Wrapper); 21741d7047dSSam Clegg new UnreachableInst(M->getContext(), BB); 21841d7047dSSam Clegg Wrapper->setName(F->getName() + "_bitcast_invalid"); 21941d7047dSSam Clegg } else if (!WrapperNeeded) { 22041d7047dSSam Clegg LLVM_DEBUG(dbgs() << "CreateWrapper: no wrapper needed: " << F->getName() 22141d7047dSSam Clegg << "\n"); 2220e2ceb81SDan Gohman Wrapper->eraseFromParent(); 2230e2ceb81SDan Gohman return nullptr; 2240e2ceb81SDan Gohman } 22588599bf6SSam Clegg LLVM_DEBUG(dbgs() << "CreateWrapper: " << F->getName() << "\n"); 2261b637458SDan Gohman return Wrapper; 2271b637458SDan Gohman } 2281b637458SDan Gohman 2291b637458SDan Gohman bool FixFunctionBitcasts::runOnModule(Module &M) { 230569f0909SHeejin Ahn LLVM_DEBUG(dbgs() << "********** Fix Function Bitcasts **********\n"); 231569f0909SHeejin Ahn 2326736f590SDan Gohman Function *Main = nullptr; 2336736f590SDan Gohman CallInst *CallMain = nullptr; 234d5eda355SDan Gohman SmallVector<std::pair<Use *, Function *>, 0> Uses; 2357acb42a4SDerek Schuff SmallPtrSet<Constant *, 2> ConstantBCs; 236d5eda355SDan Gohman 2371b637458SDan Gohman // Collect all the places that need wrappers. 2386736f590SDan Gohman for (Function &F : M) { 2396736f590SDan Gohman FindUses(&F, F, Uses, ConstantBCs); 2406736f590SDan Gohman 2416736f590SDan Gohman // If we have a "main" function, and its type isn't 2426736f590SDan Gohman // "int main(int argc, char *argv[])", create an artificial call with it 2436736f590SDan Gohman // bitcasted to that type so that we generate a wrapper for it, so that 2446736f590SDan Gohman // the C runtime can call it. 2455292d17eSSam Clegg if (!TemporaryWorkarounds && !F.isDeclaration() && F.getName() == "main") { 2466736f590SDan Gohman Main = &F; 2476736f590SDan Gohman LLVMContext &C = M.getContext(); 24879c054f6SSam Clegg Type *MainArgTys[] = {Type::getInt32Ty(C), 24979c054f6SSam Clegg PointerType::get(Type::getInt8PtrTy(C), 0)}; 2506736f590SDan Gohman FunctionType *MainTy = FunctionType::get(Type::getInt32Ty(C), MainArgTys, 2516736f590SDan Gohman /*isVarArg=*/false); 2526736f590SDan Gohman if (F.getFunctionType() != MainTy) { 25379c054f6SSam Clegg LLVM_DEBUG(dbgs() << "Found `main` function with incorrect type: " 25479c054f6SSam Clegg << *F.getFunctionType() << "\n"); 255f208f631SHeejin Ahn Value *Args[] = {UndefValue::get(MainArgTys[0]), 256f208f631SHeejin Ahn UndefValue::get(MainArgTys[1])}; 257f208f631SHeejin Ahn Value *Casted = 258f208f631SHeejin Ahn ConstantExpr::getBitCast(Main, PointerType::get(MainTy, 0)); 2596736f590SDan Gohman CallMain = CallInst::Create(Casted, Args, "call_main"); 2606736f590SDan Gohman Use *UseMain = &CallMain->getOperandUse(2); 2616736f590SDan Gohman Uses.push_back(std::make_pair(UseMain, &F)); 2626736f590SDan Gohman } 2636736f590SDan Gohman } 2646736f590SDan Gohman } 2651b637458SDan Gohman 2661b637458SDan Gohman DenseMap<std::pair<Function *, FunctionType *>, Function *> Wrappers; 2671b637458SDan Gohman 2681b637458SDan Gohman for (auto &UseFunc : Uses) { 2691b637458SDan Gohman Use *U = UseFunc.first; 2701b637458SDan Gohman Function *F = UseFunc.second; 2711b637458SDan Gohman PointerType *PTy = cast<PointerType>(U->get()->getType()); 2721b637458SDan Gohman FunctionType *Ty = dyn_cast<FunctionType>(PTy->getElementType()); 2731b637458SDan Gohman 2741b637458SDan Gohman // If the function is casted to something like i8* as a "generic pointer" 2751b637458SDan Gohman // to be later casted to something else, we can't generate a wrapper for it. 2761b637458SDan Gohman // Just ignore such casts for now. 2771b637458SDan Gohman if (!Ty) 2781b637458SDan Gohman continue; 2791b637458SDan Gohman 2801b637458SDan Gohman auto Pair = Wrappers.insert(std::make_pair(std::make_pair(F, Ty), nullptr)); 2811b637458SDan Gohman if (Pair.second) 2821b637458SDan Gohman Pair.first->second = CreateWrapper(F, Ty); 2831b637458SDan Gohman 2840e2ceb81SDan Gohman Function *Wrapper = Pair.first->second; 2850e2ceb81SDan Gohman if (!Wrapper) 2860e2ceb81SDan Gohman continue; 2870e2ceb81SDan Gohman 2881b637458SDan Gohman if (isa<Constant>(U->get())) 2890e2ceb81SDan Gohman U->get()->replaceAllUsesWith(Wrapper); 2901b637458SDan Gohman else 2910e2ceb81SDan Gohman U->set(Wrapper); 2921b637458SDan Gohman } 2931b637458SDan Gohman 2946736f590SDan Gohman // If we created a wrapper for main, rename the wrapper so that it's the 2956736f590SDan Gohman // one that gets called from startup. 2966736f590SDan Gohman if (CallMain) { 2976736f590SDan Gohman Main->setName("__original_main"); 2986736f590SDan Gohman Function *MainWrapper = 2996736f590SDan Gohman cast<Function>(CallMain->getCalledValue()->stripPointerCasts()); 3006736f590SDan Gohman MainWrapper->setName("main"); 3016736f590SDan Gohman MainWrapper->setLinkage(Main->getLinkage()); 3026736f590SDan Gohman MainWrapper->setVisibility(Main->getVisibility()); 3036736f590SDan Gohman Main->setLinkage(Function::PrivateLinkage); 3046736f590SDan Gohman Main->setVisibility(Function::DefaultVisibility); 3056736f590SDan Gohman delete CallMain; 3066736f590SDan Gohman } 3076736f590SDan Gohman 3081b637458SDan Gohman return true; 3091b637458SDan Gohman } 310