11b637458SDan Gohman //===-- WebAssemblyFixFunctionBitcasts.cpp - Fix function bitcasts --------===//
21b637458SDan Gohman //
31b637458SDan Gohman //                     The LLVM Compiler Infrastructure
41b637458SDan Gohman //
51b637458SDan Gohman // This file is distributed under the University of Illinois Open Source
61b637458SDan Gohman // License. See LICENSE.TXT for details.
71b637458SDan Gohman //
81b637458SDan Gohman //===----------------------------------------------------------------------===//
91b637458SDan Gohman ///
101b637458SDan Gohman /// \file
11*5f8f34e4SAdrian Prantl /// Fix bitcasted functions.
121b637458SDan Gohman ///
131b637458SDan Gohman /// WebAssembly requires caller and callee signatures to match, however in LLVM,
141b637458SDan Gohman /// some amount of slop is vaguely permitted. Detect mismatch by looking for
151b637458SDan Gohman /// bitcasts of functions and rewrite them to use wrapper functions instead.
161b637458SDan Gohman ///
171b637458SDan Gohman /// This doesn't catch all cases, such as when a function's address is taken in
181b637458SDan Gohman /// one place and casted in another, but it works for many common cases.
191b637458SDan Gohman ///
201b637458SDan Gohman /// Note that LLVM already optimizes away function bitcasts in common cases by
211b637458SDan Gohman /// dropping arguments as needed, so this pass only ends up getting used in less
221b637458SDan Gohman /// common cases.
231b637458SDan Gohman ///
241b637458SDan Gohman //===----------------------------------------------------------------------===//
251b637458SDan Gohman 
261b637458SDan Gohman #include "WebAssembly.h"
2737af00e7SJacob Gravelle #include "llvm/IR/CallSite.h"
281b637458SDan Gohman #include "llvm/IR/Constants.h"
291b637458SDan Gohman #include "llvm/IR/Instructions.h"
301b637458SDan Gohman #include "llvm/IR/Module.h"
311b637458SDan Gohman #include "llvm/IR/Operator.h"
321b637458SDan Gohman #include "llvm/Pass.h"
331b637458SDan Gohman #include "llvm/Support/Debug.h"
341b637458SDan Gohman #include "llvm/Support/raw_ostream.h"
351b637458SDan Gohman using namespace llvm;
361b637458SDan Gohman 
371b637458SDan Gohman #define DEBUG_TYPE "wasm-fix-function-bitcasts"
381b637458SDan Gohman 
396736f590SDan Gohman static cl::opt<bool> TemporaryWorkarounds(
406736f590SDan Gohman   "wasm-temporary-workarounds",
416736f590SDan Gohman   cl::desc("Apply certain temporary workarounds"),
426736f590SDan Gohman   cl::init(true), cl::Hidden);
436736f590SDan Gohman 
441b637458SDan Gohman namespace {
451b637458SDan Gohman class FixFunctionBitcasts final : public ModulePass {
461b637458SDan Gohman   StringRef getPassName() const override {
471b637458SDan Gohman     return "WebAssembly Fix Function Bitcasts";
481b637458SDan Gohman   }
491b637458SDan Gohman 
501b637458SDan Gohman   void getAnalysisUsage(AnalysisUsage &AU) const override {
511b637458SDan Gohman     AU.setPreservesCFG();
521b637458SDan Gohman     ModulePass::getAnalysisUsage(AU);
531b637458SDan Gohman   }
541b637458SDan Gohman 
551b637458SDan Gohman   bool runOnModule(Module &M) override;
561b637458SDan Gohman 
571b637458SDan Gohman public:
581b637458SDan Gohman   static char ID;
591b637458SDan Gohman   FixFunctionBitcasts() : ModulePass(ID) {}
601b637458SDan Gohman };
611b637458SDan Gohman } // End anonymous namespace
621b637458SDan Gohman 
631b637458SDan Gohman char FixFunctionBitcasts::ID = 0;
6440926451SJacob Gravelle INITIALIZE_PASS(FixFunctionBitcasts, DEBUG_TYPE,
6540926451SJacob Gravelle                 "Fix mismatching bitcasts for WebAssembly", false, false)
6640926451SJacob Gravelle 
671b637458SDan Gohman ModulePass *llvm::createWebAssemblyFixFunctionBitcasts() {
681b637458SDan Gohman   return new FixFunctionBitcasts();
691b637458SDan Gohman }
701b637458SDan Gohman 
711b637458SDan Gohman // Recursively descend the def-use lists from V to find non-bitcast users of
721b637458SDan Gohman // bitcasts of V.
731b637458SDan Gohman static void FindUses(Value *V, Function &F,
747acb42a4SDerek Schuff                      SmallVectorImpl<std::pair<Use *, Function *>> &Uses,
757acb42a4SDerek Schuff                      SmallPtrSetImpl<Constant *> &ConstantBCs) {
761b637458SDan Gohman   for (Use &U : V->uses()) {
771b637458SDan Gohman     if (BitCastOperator *BC = dyn_cast<BitCastOperator>(U.getUser()))
787acb42a4SDerek Schuff       FindUses(BC, F, Uses, ConstantBCs);
797acb42a4SDerek Schuff     else if (U.get()->getType() != F.getType()) {
8037af00e7SJacob Gravelle       CallSite CS(U.getUser());
8137af00e7SJacob Gravelle       if (!CS)
8237af00e7SJacob Gravelle         // Skip uses that aren't immediately called
8337af00e7SJacob Gravelle         continue;
8437af00e7SJacob Gravelle       Value *Callee = CS.getCalledValue();
8537af00e7SJacob Gravelle       if (Callee != V)
8637af00e7SJacob Gravelle         // Skip calls where the function isn't the callee
8737af00e7SJacob Gravelle         continue;
887acb42a4SDerek Schuff       if (isa<Constant>(U.get())) {
897acb42a4SDerek Schuff         // Only add constant bitcasts to the list once; they get RAUW'd
907acb42a4SDerek Schuff         auto c = ConstantBCs.insert(cast<Constant>(U.get()));
9137af00e7SJacob Gravelle         if (!c.second)
9237af00e7SJacob Gravelle           continue;
937acb42a4SDerek Schuff       }
941b637458SDan Gohman       Uses.push_back(std::make_pair(&U, &F));
951b637458SDan Gohman     }
961b637458SDan Gohman   }
977acb42a4SDerek Schuff }
981b637458SDan Gohman 
991b637458SDan Gohman // Create a wrapper function with type Ty that calls F (which may have a
1001b637458SDan Gohman // different type). Attempt to support common bitcasted function idioms:
1011b637458SDan Gohman //  - Call with more arguments than needed: arguments are dropped
1021b637458SDan Gohman //  - Call with fewer arguments than needed: arguments are filled in with undef
1031b637458SDan Gohman //  - Return value is not needed: drop it
1041b637458SDan Gohman //  - Return value needed but not present: supply an undef
1050e2ceb81SDan Gohman //
1060e2ceb81SDan Gohman // For now, return nullptr without creating a wrapper if the wrapper cannot
1070e2ceb81SDan Gohman // be generated due to incompatible types.
1081b637458SDan Gohman static Function *CreateWrapper(Function *F, FunctionType *Ty) {
1091b637458SDan Gohman   Module *M = F->getParent();
1101b637458SDan Gohman 
1111b637458SDan Gohman   Function *Wrapper =
1121b637458SDan Gohman       Function::Create(Ty, Function::PrivateLinkage, "bitcast", M);
1131b637458SDan Gohman   BasicBlock *BB = BasicBlock::Create(M->getContext(), "body", Wrapper);
1141b637458SDan Gohman 
1151b637458SDan Gohman   // Determine what arguments to pass.
1161b637458SDan Gohman   SmallVector<Value *, 4> Args;
1171b637458SDan Gohman   Function::arg_iterator AI = Wrapper->arg_begin();
1182803bfafSDan Gohman   Function::arg_iterator AE = Wrapper->arg_end();
1191b637458SDan Gohman   FunctionType::param_iterator PI = F->getFunctionType()->param_begin();
1201b637458SDan Gohman   FunctionType::param_iterator PE = F->getFunctionType()->param_end();
1212803bfafSDan Gohman   for (; AI != AE && PI != PE; ++AI, ++PI) {
1220e2ceb81SDan Gohman     if (AI->getType() != *PI) {
1230e2ceb81SDan Gohman       Wrapper->eraseFromParent();
1240e2ceb81SDan Gohman       return nullptr;
1250e2ceb81SDan Gohman     }
1261b637458SDan Gohman     Args.push_back(&*AI);
1271b637458SDan Gohman   }
1281b637458SDan Gohman   for (; PI != PE; ++PI)
1291b637458SDan Gohman     Args.push_back(UndefValue::get(*PI));
1302803bfafSDan Gohman   if (F->isVarArg())
1312803bfafSDan Gohman     for (; AI != AE; ++AI)
1322803bfafSDan Gohman       Args.push_back(&*AI);
1331b637458SDan Gohman 
1341b637458SDan Gohman   CallInst *Call = CallInst::Create(F, Args, "", BB);
1351b637458SDan Gohman 
1361b637458SDan Gohman   // Determine what value to return.
1371b637458SDan Gohman   if (Ty->getReturnType()->isVoidTy())
1381b637458SDan Gohman     ReturnInst::Create(M->getContext(), BB);
1391b637458SDan Gohman   else if (F->getFunctionType()->getReturnType()->isVoidTy())
1401b637458SDan Gohman     ReturnInst::Create(M->getContext(), UndefValue::get(Ty->getReturnType()),
1411b637458SDan Gohman                        BB);
1421b637458SDan Gohman   else if (F->getFunctionType()->getReturnType() == Ty->getReturnType())
1431b637458SDan Gohman     ReturnInst::Create(M->getContext(), Call, BB);
1440e2ceb81SDan Gohman   else {
1450e2ceb81SDan Gohman     Wrapper->eraseFromParent();
1460e2ceb81SDan Gohman     return nullptr;
1470e2ceb81SDan Gohman   }
1481b637458SDan Gohman 
1491b637458SDan Gohman   return Wrapper;
1501b637458SDan Gohman }
1511b637458SDan Gohman 
1521b637458SDan Gohman bool FixFunctionBitcasts::runOnModule(Module &M) {
1536736f590SDan Gohman   Function *Main = nullptr;
1546736f590SDan Gohman   CallInst *CallMain = nullptr;
155d5eda355SDan Gohman   SmallVector<std::pair<Use *, Function *>, 0> Uses;
1567acb42a4SDerek Schuff   SmallPtrSet<Constant *, 2> ConstantBCs;
157d5eda355SDan Gohman 
1581b637458SDan Gohman   // Collect all the places that need wrappers.
1596736f590SDan Gohman   for (Function &F : M) {
1606736f590SDan Gohman     FindUses(&F, F, Uses, ConstantBCs);
1616736f590SDan Gohman 
1626736f590SDan Gohman     // If we have a "main" function, and its type isn't
1636736f590SDan Gohman     // "int main(int argc, char *argv[])", create an artificial call with it
1646736f590SDan Gohman     // bitcasted to that type so that we generate a wrapper for it, so that
1656736f590SDan Gohman     // the C runtime can call it.
1666736f590SDan Gohman     if (!TemporaryWorkarounds && !F.isDeclaration() && F.getName() == "main") {
1676736f590SDan Gohman       Main = &F;
1686736f590SDan Gohman       LLVMContext &C = M.getContext();
1696736f590SDan Gohman       Type *MainArgTys[] = {
1706736f590SDan Gohman         PointerType::get(Type::getInt8PtrTy(C), 0),
1716736f590SDan Gohman         Type::getInt32Ty(C)
1726736f590SDan Gohman       };
1736736f590SDan Gohman       FunctionType *MainTy = FunctionType::get(Type::getInt32Ty(C), MainArgTys,
1746736f590SDan Gohman                                                /*isVarArg=*/false);
1756736f590SDan Gohman       if (F.getFunctionType() != MainTy) {
1766736f590SDan Gohman         Value *Args[] = {
1776736f590SDan Gohman           UndefValue::get(MainArgTys[0]),
1786736f590SDan Gohman           UndefValue::get(MainArgTys[1])
1796736f590SDan Gohman         };
1806736f590SDan Gohman         Value *Casted = ConstantExpr::getBitCast(Main,
1816736f590SDan Gohman                                                  PointerType::get(MainTy, 0));
1826736f590SDan Gohman         CallMain = CallInst::Create(Casted, Args, "call_main");
1836736f590SDan Gohman         Use *UseMain = &CallMain->getOperandUse(2);
1846736f590SDan Gohman         Uses.push_back(std::make_pair(UseMain, &F));
1856736f590SDan Gohman       }
1866736f590SDan Gohman     }
1876736f590SDan Gohman   }
1881b637458SDan Gohman 
1891b637458SDan Gohman   DenseMap<std::pair<Function *, FunctionType *>, Function *> Wrappers;
1901b637458SDan Gohman 
1911b637458SDan Gohman   for (auto &UseFunc : Uses) {
1921b637458SDan Gohman     Use *U = UseFunc.first;
1931b637458SDan Gohman     Function *F = UseFunc.second;
1941b637458SDan Gohman     PointerType *PTy = cast<PointerType>(U->get()->getType());
1951b637458SDan Gohman     FunctionType *Ty = dyn_cast<FunctionType>(PTy->getElementType());
1961b637458SDan Gohman 
1971b637458SDan Gohman     // If the function is casted to something like i8* as a "generic pointer"
1981b637458SDan Gohman     // to be later casted to something else, we can't generate a wrapper for it.
1991b637458SDan Gohman     // Just ignore such casts for now.
2001b637458SDan Gohman     if (!Ty)
2011b637458SDan Gohman       continue;
2021b637458SDan Gohman 
20378c19d60SDan Gohman     // Bitcasted vararg functions occur in Emscripten's implementation of
20478c19d60SDan Gohman     // EM_ASM, so suppress wrappers for them for now.
2053a762bf9SDan Gohman     if (TemporaryWorkarounds && (Ty->isVarArg() || F->isVarArg()))
20678c19d60SDan Gohman       continue;
20778c19d60SDan Gohman 
2081b637458SDan Gohman     auto Pair = Wrappers.insert(std::make_pair(std::make_pair(F, Ty), nullptr));
2091b637458SDan Gohman     if (Pair.second)
2101b637458SDan Gohman       Pair.first->second = CreateWrapper(F, Ty);
2111b637458SDan Gohman 
2120e2ceb81SDan Gohman     Function *Wrapper = Pair.first->second;
2130e2ceb81SDan Gohman     if (!Wrapper)
2140e2ceb81SDan Gohman       continue;
2150e2ceb81SDan Gohman 
2161b637458SDan Gohman     if (isa<Constant>(U->get()))
2170e2ceb81SDan Gohman       U->get()->replaceAllUsesWith(Wrapper);
2181b637458SDan Gohman     else
2190e2ceb81SDan Gohman       U->set(Wrapper);
2201b637458SDan Gohman   }
2211b637458SDan Gohman 
2226736f590SDan Gohman   // If we created a wrapper for main, rename the wrapper so that it's the
2236736f590SDan Gohman   // one that gets called from startup.
2246736f590SDan Gohman   if (CallMain) {
2256736f590SDan Gohman     Main->setName("__original_main");
2266736f590SDan Gohman     Function *MainWrapper =
2276736f590SDan Gohman         cast<Function>(CallMain->getCalledValue()->stripPointerCasts());
2286736f590SDan Gohman     MainWrapper->setName("main");
2296736f590SDan Gohman     MainWrapper->setLinkage(Main->getLinkage());
2306736f590SDan Gohman     MainWrapper->setVisibility(Main->getVisibility());
2316736f590SDan Gohman     Main->setLinkage(Function::PrivateLinkage);
2326736f590SDan Gohman     Main->setVisibility(Function::DefaultVisibility);
2336736f590SDan Gohman     delete CallMain;
2346736f590SDan Gohman   }
2356736f590SDan Gohman 
2361b637458SDan Gohman   return true;
2371b637458SDan Gohman }
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