1 //===- SjLjEHPrepare.cpp - Eliminate Invoke & Unwind instructions ---------===// 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 transformation is designed for use by code generators which use SjLj 10 // based exception handling. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "llvm/ADT/SetVector.h" 15 #include "llvm/ADT/SmallPtrSet.h" 16 #include "llvm/ADT/SmallVector.h" 17 #include "llvm/ADT/Statistic.h" 18 #include "llvm/CodeGen/Passes.h" 19 #include "llvm/IR/Constants.h" 20 #include "llvm/IR/DataLayout.h" 21 #include "llvm/IR/DerivedTypes.h" 22 #include "llvm/IR/IRBuilder.h" 23 #include "llvm/IR/Instructions.h" 24 #include "llvm/IR/Intrinsics.h" 25 #include "llvm/IR/Module.h" 26 #include "llvm/InitializePasses.h" 27 #include "llvm/Pass.h" 28 #include "llvm/Support/Debug.h" 29 #include "llvm/Support/raw_ostream.h" 30 #include "llvm/Transforms/Utils/Local.h" 31 using namespace llvm; 32 33 #define DEBUG_TYPE "sjljehprepare" 34 35 STATISTIC(NumInvokes, "Number of invokes replaced"); 36 STATISTIC(NumSpilled, "Number of registers live across unwind edges"); 37 38 namespace { 39 class SjLjEHPrepare : public FunctionPass { 40 Type *doubleUnderDataTy; 41 Type *doubleUnderJBufTy; 42 Type *FunctionContextTy; 43 FunctionCallee RegisterFn; 44 FunctionCallee UnregisterFn; 45 Function *BuiltinSetupDispatchFn; 46 Function *FrameAddrFn; 47 Function *StackAddrFn; 48 Function *StackRestoreFn; 49 Function *LSDAAddrFn; 50 Function *CallSiteFn; 51 Function *FuncCtxFn; 52 AllocaInst *FuncCtx; 53 54 public: 55 static char ID; // Pass identification, replacement for typeid 56 explicit SjLjEHPrepare() : FunctionPass(ID) {} 57 bool doInitialization(Module &M) override; 58 bool runOnFunction(Function &F) override; 59 60 void getAnalysisUsage(AnalysisUsage &AU) const override {} 61 StringRef getPassName() const override { 62 return "SJLJ Exception Handling preparation"; 63 } 64 65 private: 66 bool setupEntryBlockAndCallSites(Function &F); 67 void substituteLPadValues(LandingPadInst *LPI, Value *ExnVal, Value *SelVal); 68 Value *setupFunctionContext(Function &F, ArrayRef<LandingPadInst *> LPads); 69 void lowerIncomingArguments(Function &F); 70 void lowerAcrossUnwindEdges(Function &F, ArrayRef<InvokeInst *> Invokes); 71 void insertCallSiteStore(Instruction *I, int Number); 72 }; 73 } // end anonymous namespace 74 75 char SjLjEHPrepare::ID = 0; 76 INITIALIZE_PASS(SjLjEHPrepare, DEBUG_TYPE, "Prepare SjLj exceptions", 77 false, false) 78 79 // Public Interface To the SjLjEHPrepare pass. 80 FunctionPass *llvm::createSjLjEHPreparePass() { return new SjLjEHPrepare(); } 81 // doInitialization - Set up decalarations and types needed to process 82 // exceptions. 83 bool SjLjEHPrepare::doInitialization(Module &M) { 84 // Build the function context structure. 85 // builtin_setjmp uses a five word jbuf 86 Type *VoidPtrTy = Type::getInt8PtrTy(M.getContext()); 87 Type *Int32Ty = Type::getInt32Ty(M.getContext()); 88 doubleUnderDataTy = ArrayType::get(Int32Ty, 4); 89 doubleUnderJBufTy = ArrayType::get(VoidPtrTy, 5); 90 FunctionContextTy = StructType::get(VoidPtrTy, // __prev 91 Int32Ty, // call_site 92 doubleUnderDataTy, // __data 93 VoidPtrTy, // __personality 94 VoidPtrTy, // __lsda 95 doubleUnderJBufTy // __jbuf 96 ); 97 98 return true; 99 } 100 101 /// insertCallSiteStore - Insert a store of the call-site value to the 102 /// function context 103 void SjLjEHPrepare::insertCallSiteStore(Instruction *I, int Number) { 104 IRBuilder<> Builder(I); 105 106 // Get a reference to the call_site field. 107 Type *Int32Ty = Type::getInt32Ty(I->getContext()); 108 Value *Zero = ConstantInt::get(Int32Ty, 0); 109 Value *One = ConstantInt::get(Int32Ty, 1); 110 Value *Idxs[2] = { Zero, One }; 111 Value *CallSite = 112 Builder.CreateGEP(FunctionContextTy, FuncCtx, Idxs, "call_site"); 113 114 // Insert a store of the call-site number 115 ConstantInt *CallSiteNoC = 116 ConstantInt::get(Type::getInt32Ty(I->getContext()), Number); 117 Builder.CreateStore(CallSiteNoC, CallSite, true /*volatile*/); 118 } 119 120 /// MarkBlocksLiveIn - Insert BB and all of its predecessors into LiveBBs until 121 /// we reach blocks we've already seen. 122 static void MarkBlocksLiveIn(BasicBlock *BB, 123 SmallPtrSetImpl<BasicBlock *> &LiveBBs) { 124 if (!LiveBBs.insert(BB).second) 125 return; // already been here. 126 127 df_iterator_default_set<BasicBlock*> Visited; 128 129 for (BasicBlock *B : inverse_depth_first_ext(BB, Visited)) 130 LiveBBs.insert(B); 131 132 } 133 134 /// substituteLPadValues - Substitute the values returned by the landingpad 135 /// instruction with those returned by the personality function. 136 void SjLjEHPrepare::substituteLPadValues(LandingPadInst *LPI, Value *ExnVal, 137 Value *SelVal) { 138 SmallVector<Value *, 8> UseWorkList(LPI->user_begin(), LPI->user_end()); 139 while (!UseWorkList.empty()) { 140 Value *Val = UseWorkList.pop_back_val(); 141 auto *EVI = dyn_cast<ExtractValueInst>(Val); 142 if (!EVI) 143 continue; 144 if (EVI->getNumIndices() != 1) 145 continue; 146 if (*EVI->idx_begin() == 0) 147 EVI->replaceAllUsesWith(ExnVal); 148 else if (*EVI->idx_begin() == 1) 149 EVI->replaceAllUsesWith(SelVal); 150 if (EVI->use_empty()) 151 EVI->eraseFromParent(); 152 } 153 154 if (LPI->use_empty()) 155 return; 156 157 // There are still some uses of LPI. Construct an aggregate with the exception 158 // values and replace the LPI with that aggregate. 159 Type *LPadType = LPI->getType(); 160 Value *LPadVal = UndefValue::get(LPadType); 161 auto *SelI = cast<Instruction>(SelVal); 162 IRBuilder<> Builder(SelI->getParent(), std::next(SelI->getIterator())); 163 LPadVal = Builder.CreateInsertValue(LPadVal, ExnVal, 0, "lpad.val"); 164 LPadVal = Builder.CreateInsertValue(LPadVal, SelVal, 1, "lpad.val"); 165 166 LPI->replaceAllUsesWith(LPadVal); 167 } 168 169 /// setupFunctionContext - Allocate the function context on the stack and fill 170 /// it with all of the data that we know at this point. 171 Value *SjLjEHPrepare::setupFunctionContext(Function &F, 172 ArrayRef<LandingPadInst *> LPads) { 173 BasicBlock *EntryBB = &F.front(); 174 175 // Create an alloca for the incoming jump buffer ptr and the new jump buffer 176 // that needs to be restored on all exits from the function. This is an alloca 177 // because the value needs to be added to the global context list. 178 auto &DL = F.getParent()->getDataLayout(); 179 const Align Alignment(DL.getPrefTypeAlignment(FunctionContextTy)); 180 FuncCtx = new AllocaInst(FunctionContextTy, DL.getAllocaAddrSpace(), nullptr, 181 Alignment, "fn_context", &EntryBB->front()); 182 183 // Fill in the function context structure. 184 for (LandingPadInst *LPI : LPads) { 185 IRBuilder<> Builder(LPI->getParent(), 186 LPI->getParent()->getFirstInsertionPt()); 187 188 // Reference the __data field. 189 Value *FCData = 190 Builder.CreateConstGEP2_32(FunctionContextTy, FuncCtx, 0, 2, "__data"); 191 192 // The exception values come back in context->__data[0]. 193 Type *Int32Ty = Type::getInt32Ty(F.getContext()); 194 Value *ExceptionAddr = Builder.CreateConstGEP2_32(doubleUnderDataTy, FCData, 195 0, 0, "exception_gep"); 196 Value *ExnVal = Builder.CreateLoad(Int32Ty, ExceptionAddr, true, "exn_val"); 197 ExnVal = Builder.CreateIntToPtr(ExnVal, Builder.getInt8PtrTy()); 198 199 Value *SelectorAddr = Builder.CreateConstGEP2_32(doubleUnderDataTy, FCData, 200 0, 1, "exn_selector_gep"); 201 Value *SelVal = 202 Builder.CreateLoad(Int32Ty, SelectorAddr, true, "exn_selector_val"); 203 204 substituteLPadValues(LPI, ExnVal, SelVal); 205 } 206 207 // Personality function 208 IRBuilder<> Builder(EntryBB->getTerminator()); 209 Value *PersonalityFn = F.getPersonalityFn(); 210 Value *PersonalityFieldPtr = Builder.CreateConstGEP2_32( 211 FunctionContextTy, FuncCtx, 0, 3, "pers_fn_gep"); 212 Builder.CreateStore( 213 Builder.CreateBitCast(PersonalityFn, Builder.getInt8PtrTy()), 214 PersonalityFieldPtr, /*isVolatile=*/true); 215 216 // LSDA address 217 Value *LSDA = Builder.CreateCall(LSDAAddrFn, {}, "lsda_addr"); 218 Value *LSDAFieldPtr = 219 Builder.CreateConstGEP2_32(FunctionContextTy, FuncCtx, 0, 4, "lsda_gep"); 220 Builder.CreateStore(LSDA, LSDAFieldPtr, /*isVolatile=*/true); 221 222 return FuncCtx; 223 } 224 225 /// lowerIncomingArguments - To avoid having to handle incoming arguments 226 /// specially, we lower each arg to a copy instruction in the entry block. This 227 /// ensures that the argument value itself cannot be live out of the entry 228 /// block. 229 void SjLjEHPrepare::lowerIncomingArguments(Function &F) { 230 BasicBlock::iterator AfterAllocaInsPt = F.begin()->begin(); 231 while (isa<AllocaInst>(AfterAllocaInsPt) && 232 cast<AllocaInst>(AfterAllocaInsPt)->isStaticAlloca()) 233 ++AfterAllocaInsPt; 234 assert(AfterAllocaInsPt != F.front().end()); 235 236 for (auto &AI : F.args()) { 237 // Swift error really is a register that we model as memory -- instruction 238 // selection will perform mem-to-reg for us and spill/reload appropriately 239 // around calls that clobber it. There is no need to spill this 240 // value to the stack and doing so would not be allowed. 241 if (AI.isSwiftError()) 242 continue; 243 244 Type *Ty = AI.getType(); 245 246 // Use 'select i8 true, %arg, undef' to simulate a 'no-op' instruction. 247 Value *TrueValue = ConstantInt::getTrue(F.getContext()); 248 Value *UndefValue = UndefValue::get(Ty); 249 Instruction *SI = SelectInst::Create( 250 TrueValue, &AI, UndefValue, AI.getName() + ".tmp", &*AfterAllocaInsPt); 251 AI.replaceAllUsesWith(SI); 252 253 // Reset the operand, because it was clobbered by the RAUW above. 254 SI->setOperand(1, &AI); 255 } 256 } 257 258 /// lowerAcrossUnwindEdges - Find all variables which are alive across an unwind 259 /// edge and spill them. 260 void SjLjEHPrepare::lowerAcrossUnwindEdges(Function &F, 261 ArrayRef<InvokeInst *> Invokes) { 262 // Finally, scan the code looking for instructions with bad live ranges. 263 for (BasicBlock &BB : F) { 264 for (Instruction &Inst : BB) { 265 // Ignore obvious cases we don't have to handle. In particular, most 266 // instructions either have no uses or only have a single use inside the 267 // current block. Ignore them quickly. 268 if (Inst.use_empty()) 269 continue; 270 if (Inst.hasOneUse() && 271 cast<Instruction>(Inst.user_back())->getParent() == &BB && 272 !isa<PHINode>(Inst.user_back())) 273 continue; 274 275 // If this is an alloca in the entry block, it's not a real register 276 // value. 277 if (auto *AI = dyn_cast<AllocaInst>(&Inst)) 278 if (AI->isStaticAlloca()) 279 continue; 280 281 // Avoid iterator invalidation by copying users to a temporary vector. 282 SmallVector<Instruction *, 16> Users; 283 for (User *U : Inst.users()) { 284 Instruction *UI = cast<Instruction>(U); 285 if (UI->getParent() != &BB || isa<PHINode>(UI)) 286 Users.push_back(UI); 287 } 288 289 // Find all of the blocks that this value is live in. 290 SmallPtrSet<BasicBlock *, 32> LiveBBs; 291 LiveBBs.insert(&BB); 292 while (!Users.empty()) { 293 Instruction *U = Users.pop_back_val(); 294 295 if (!isa<PHINode>(U)) { 296 MarkBlocksLiveIn(U->getParent(), LiveBBs); 297 } else { 298 // Uses for a PHI node occur in their predecessor block. 299 PHINode *PN = cast<PHINode>(U); 300 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) 301 if (PN->getIncomingValue(i) == &Inst) 302 MarkBlocksLiveIn(PN->getIncomingBlock(i), LiveBBs); 303 } 304 } 305 306 // Now that we know all of the blocks that this thing is live in, see if 307 // it includes any of the unwind locations. 308 bool NeedsSpill = false; 309 for (InvokeInst *Invoke : Invokes) { 310 BasicBlock *UnwindBlock = Invoke->getUnwindDest(); 311 if (UnwindBlock != &BB && LiveBBs.count(UnwindBlock)) { 312 LLVM_DEBUG(dbgs() << "SJLJ Spill: " << Inst << " around " 313 << UnwindBlock->getName() << "\n"); 314 NeedsSpill = true; 315 break; 316 } 317 } 318 319 // If we decided we need a spill, do it. 320 // FIXME: Spilling this way is overkill, as it forces all uses of 321 // the value to be reloaded from the stack slot, even those that aren't 322 // in the unwind blocks. We should be more selective. 323 if (NeedsSpill) { 324 DemoteRegToStack(Inst, true); 325 ++NumSpilled; 326 } 327 } 328 } 329 330 // Go through the landing pads and remove any PHIs there. 331 for (InvokeInst *Invoke : Invokes) { 332 BasicBlock *UnwindBlock = Invoke->getUnwindDest(); 333 LandingPadInst *LPI = UnwindBlock->getLandingPadInst(); 334 335 // Place PHIs into a set to avoid invalidating the iterator. 336 SmallPtrSet<PHINode *, 8> PHIsToDemote; 337 for (BasicBlock::iterator PN = UnwindBlock->begin(); isa<PHINode>(PN); ++PN) 338 PHIsToDemote.insert(cast<PHINode>(PN)); 339 if (PHIsToDemote.empty()) 340 continue; 341 342 // Demote the PHIs to the stack. 343 for (PHINode *PN : PHIsToDemote) 344 DemotePHIToStack(PN); 345 346 // Move the landingpad instruction back to the top of the landing pad block. 347 LPI->moveBefore(&UnwindBlock->front()); 348 } 349 } 350 351 /// setupEntryBlockAndCallSites - Setup the entry block by creating and filling 352 /// the function context and marking the call sites with the appropriate 353 /// values. These values are used by the DWARF EH emitter. 354 bool SjLjEHPrepare::setupEntryBlockAndCallSites(Function &F) { 355 SmallVector<ReturnInst *, 16> Returns; 356 SmallVector<InvokeInst *, 16> Invokes; 357 SmallSetVector<LandingPadInst *, 16> LPads; 358 359 // Look through the terminators of the basic blocks to find invokes. 360 for (BasicBlock &BB : F) 361 if (auto *II = dyn_cast<InvokeInst>(BB.getTerminator())) { 362 if (Function *Callee = II->getCalledFunction()) 363 if (Callee->getIntrinsicID() == Intrinsic::donothing) { 364 // Remove the NOP invoke. 365 BranchInst::Create(II->getNormalDest(), II); 366 II->eraseFromParent(); 367 continue; 368 } 369 370 Invokes.push_back(II); 371 LPads.insert(II->getUnwindDest()->getLandingPadInst()); 372 } else if (auto *RI = dyn_cast<ReturnInst>(BB.getTerminator())) { 373 Returns.push_back(RI); 374 } 375 376 if (Invokes.empty()) 377 return false; 378 379 NumInvokes += Invokes.size(); 380 381 lowerIncomingArguments(F); 382 lowerAcrossUnwindEdges(F, Invokes); 383 384 Value *FuncCtx = 385 setupFunctionContext(F, makeArrayRef(LPads.begin(), LPads.end())); 386 BasicBlock *EntryBB = &F.front(); 387 IRBuilder<> Builder(EntryBB->getTerminator()); 388 389 // Get a reference to the jump buffer. 390 Value *JBufPtr = 391 Builder.CreateConstGEP2_32(FunctionContextTy, FuncCtx, 0, 5, "jbuf_gep"); 392 393 // Save the frame pointer. 394 Value *FramePtr = Builder.CreateConstGEP2_32(doubleUnderJBufTy, JBufPtr, 0, 0, 395 "jbuf_fp_gep"); 396 397 Value *Val = Builder.CreateCall(FrameAddrFn, Builder.getInt32(0), "fp"); 398 Builder.CreateStore(Val, FramePtr, /*isVolatile=*/true); 399 400 // Save the stack pointer. 401 Value *StackPtr = Builder.CreateConstGEP2_32(doubleUnderJBufTy, JBufPtr, 0, 2, 402 "jbuf_sp_gep"); 403 404 Val = Builder.CreateCall(StackAddrFn, {}, "sp"); 405 Builder.CreateStore(Val, StackPtr, /*isVolatile=*/true); 406 407 // Call the setup_dispatch instrinsic. It fills in the rest of the jmpbuf. 408 Builder.CreateCall(BuiltinSetupDispatchFn, {}); 409 410 // Store a pointer to the function context so that the back-end will know 411 // where to look for it. 412 Value *FuncCtxArg = Builder.CreateBitCast(FuncCtx, Builder.getInt8PtrTy()); 413 Builder.CreateCall(FuncCtxFn, FuncCtxArg); 414 415 // At this point, we are all set up, update the invoke instructions to mark 416 // their call_site values. 417 for (unsigned I = 0, E = Invokes.size(); I != E; ++I) { 418 insertCallSiteStore(Invokes[I], I + 1); 419 420 ConstantInt *CallSiteNum = 421 ConstantInt::get(Type::getInt32Ty(F.getContext()), I + 1); 422 423 // Record the call site value for the back end so it stays associated with 424 // the invoke. 425 CallInst::Create(CallSiteFn, CallSiteNum, "", Invokes[I]); 426 } 427 428 // Mark call instructions that aren't nounwind as no-action (call_site == 429 // -1). Skip the entry block, as prior to then, no function context has been 430 // created for this function and any unexpected exceptions thrown will go 431 // directly to the caller's context, which is what we want anyway, so no need 432 // to do anything here. 433 for (BasicBlock &BB : F) { 434 if (&BB == &F.front()) 435 continue; 436 for (Instruction &I : BB) 437 if (I.mayThrow()) 438 insertCallSiteStore(&I, -1); 439 } 440 441 // Register the function context and make sure it's known to not throw 442 CallInst *Register = 443 CallInst::Create(RegisterFn, FuncCtx, "", EntryBB->getTerminator()); 444 Register->setDoesNotThrow(); 445 446 // Following any allocas not in the entry block, update the saved SP in the 447 // jmpbuf to the new value. 448 for (BasicBlock &BB : F) { 449 if (&BB == &F.front()) 450 continue; 451 for (Instruction &I : BB) { 452 if (auto *CI = dyn_cast<CallInst>(&I)) { 453 if (CI->getCalledFunction() != StackRestoreFn) 454 continue; 455 } else if (!isa<AllocaInst>(&I)) { 456 continue; 457 } 458 Instruction *StackAddr = CallInst::Create(StackAddrFn, "sp"); 459 StackAddr->insertAfter(&I); 460 Instruction *StoreStackAddr = new StoreInst(StackAddr, StackPtr, true); 461 StoreStackAddr->insertAfter(StackAddr); 462 } 463 } 464 465 // Finally, for any returns from this function, if this function contains an 466 // invoke, add a call to unregister the function context. 467 for (ReturnInst *Return : Returns) 468 CallInst::Create(UnregisterFn, FuncCtx, "", Return); 469 470 return true; 471 } 472 473 bool SjLjEHPrepare::runOnFunction(Function &F) { 474 Module &M = *F.getParent(); 475 RegisterFn = M.getOrInsertFunction( 476 "_Unwind_SjLj_Register", Type::getVoidTy(M.getContext()), 477 PointerType::getUnqual(FunctionContextTy)); 478 UnregisterFn = M.getOrInsertFunction( 479 "_Unwind_SjLj_Unregister", Type::getVoidTy(M.getContext()), 480 PointerType::getUnqual(FunctionContextTy)); 481 FrameAddrFn = Intrinsic::getDeclaration( 482 &M, Intrinsic::frameaddress, 483 {Type::getInt8PtrTy(M.getContext(), 484 M.getDataLayout().getAllocaAddrSpace())}); 485 StackAddrFn = Intrinsic::getDeclaration(&M, Intrinsic::stacksave); 486 StackRestoreFn = Intrinsic::getDeclaration(&M, Intrinsic::stackrestore); 487 BuiltinSetupDispatchFn = 488 Intrinsic::getDeclaration(&M, Intrinsic::eh_sjlj_setup_dispatch); 489 LSDAAddrFn = Intrinsic::getDeclaration(&M, Intrinsic::eh_sjlj_lsda); 490 CallSiteFn = Intrinsic::getDeclaration(&M, Intrinsic::eh_sjlj_callsite); 491 FuncCtxFn = Intrinsic::getDeclaration(&M, Intrinsic::eh_sjlj_functioncontext); 492 493 bool Res = setupEntryBlockAndCallSites(F); 494 return Res; 495 } 496