1 //===--- CGException.cpp - Emit LLVM Code for C++ exceptions ----*- C++ -*-===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This contains code dealing with C++ exception related code generation.
11 //
12 //===----------------------------------------------------------------------===//
13 
14 #include "CodeGenFunction.h"
15 #include "CGCXXABI.h"
16 #include "CGCleanup.h"
17 #include "CGObjCRuntime.h"
18 #include "TargetInfo.h"
19 #include "clang/AST/Mangle.h"
20 #include "clang/AST/StmtCXX.h"
21 #include "clang/AST/StmtObjC.h"
22 #include "clang/AST/StmtVisitor.h"
23 #include "clang/Basic/TargetBuiltins.h"
24 #include "llvm/IR/CallSite.h"
25 #include "llvm/IR/Intrinsics.h"
26 #include "llvm/IR/IntrinsicInst.h"
27 #include "llvm/Support/SaveAndRestore.h"
28 
29 using namespace clang;
30 using namespace CodeGen;
31 
32 static llvm::Constant *getFreeExceptionFn(CodeGenModule &CGM) {
33   // void __cxa_free_exception(void *thrown_exception);
34 
35   llvm::FunctionType *FTy =
36     llvm::FunctionType::get(CGM.VoidTy, CGM.Int8PtrTy, /*IsVarArgs=*/false);
37 
38   return CGM.CreateRuntimeFunction(FTy, "__cxa_free_exception");
39 }
40 
41 static llvm::Constant *getUnexpectedFn(CodeGenModule &CGM) {
42   // void __cxa_call_unexpected(void *thrown_exception);
43 
44   llvm::FunctionType *FTy =
45     llvm::FunctionType::get(CGM.VoidTy, CGM.Int8PtrTy, /*IsVarArgs=*/false);
46 
47   return CGM.CreateRuntimeFunction(FTy, "__cxa_call_unexpected");
48 }
49 
50 llvm::Constant *CodeGenModule::getTerminateFn() {
51   // void __terminate();
52 
53   llvm::FunctionType *FTy =
54     llvm::FunctionType::get(VoidTy, /*IsVarArgs=*/false);
55 
56   StringRef name;
57 
58   // In C++, use std::terminate().
59   if (getLangOpts().CPlusPlus &&
60       getTarget().getCXXABI().isItaniumFamily()) {
61     name = "_ZSt9terminatev";
62   } else if (getLangOpts().CPlusPlus &&
63              getTarget().getCXXABI().isMicrosoft()) {
64     if (getLangOpts().isCompatibleWithMSVC(LangOptions::MSVC2015))
65       name = "__std_terminate";
66     else
67       name = "\01?terminate@@YAXXZ";
68   } else if (getLangOpts().ObjC1 &&
69              getLangOpts().ObjCRuntime.hasTerminate())
70     name = "objc_terminate";
71   else
72     name = "abort";
73   return CreateRuntimeFunction(FTy, name);
74 }
75 
76 static llvm::Constant *getCatchallRethrowFn(CodeGenModule &CGM,
77                                             StringRef Name) {
78   llvm::FunctionType *FTy =
79     llvm::FunctionType::get(CGM.VoidTy, CGM.Int8PtrTy, /*IsVarArgs=*/false);
80 
81   return CGM.CreateRuntimeFunction(FTy, Name);
82 }
83 
84 const EHPersonality EHPersonality::GNU_C = { "__gcc_personality_v0", nullptr };
85 const EHPersonality
86 EHPersonality::GNU_C_SJLJ = { "__gcc_personality_sj0", nullptr };
87 const EHPersonality
88 EHPersonality::GNU_C_SEH = { "__gcc_personality_seh0", nullptr };
89 const EHPersonality
90 EHPersonality::NeXT_ObjC = { "__objc_personality_v0", nullptr };
91 const EHPersonality
92 EHPersonality::GNU_CPlusPlus = { "__gxx_personality_v0", nullptr };
93 const EHPersonality
94 EHPersonality::GNU_CPlusPlus_SJLJ = { "__gxx_personality_sj0", nullptr };
95 const EHPersonality
96 EHPersonality::GNU_CPlusPlus_SEH = { "__gxx_personality_seh0", nullptr };
97 const EHPersonality
98 EHPersonality::GNU_ObjC = {"__gnu_objc_personality_v0", "objc_exception_throw"};
99 const EHPersonality
100 EHPersonality::GNU_ObjCXX = { "__gnustep_objcxx_personality_v0", nullptr };
101 const EHPersonality
102 EHPersonality::GNUstep_ObjC = { "__gnustep_objc_personality_v0", nullptr };
103 const EHPersonality
104 EHPersonality::MSVC_except_handler = { "_except_handler3", nullptr };
105 const EHPersonality
106 EHPersonality::MSVC_C_specific_handler = { "__C_specific_handler", nullptr };
107 const EHPersonality
108 EHPersonality::MSVC_CxxFrameHandler3 = { "__CxxFrameHandler3", nullptr };
109 
110 /// On Win64, use libgcc's SEH personality function. We fall back to dwarf on
111 /// other platforms, unless the user asked for SjLj exceptions.
112 static bool useLibGCCSEHPersonality(const llvm::Triple &T) {
113   return T.isOSWindows() && T.getArch() == llvm::Triple::x86_64;
114 }
115 
116 static const EHPersonality &getCPersonality(const llvm::Triple &T,
117                                             const LangOptions &L) {
118   if (L.SjLjExceptions)
119     return EHPersonality::GNU_C_SJLJ;
120   else if (useLibGCCSEHPersonality(T))
121     return EHPersonality::GNU_C_SEH;
122   return EHPersonality::GNU_C;
123 }
124 
125 static const EHPersonality &getObjCPersonality(const llvm::Triple &T,
126                                                const LangOptions &L) {
127   switch (L.ObjCRuntime.getKind()) {
128   case ObjCRuntime::FragileMacOSX:
129     return getCPersonality(T, L);
130   case ObjCRuntime::MacOSX:
131   case ObjCRuntime::iOS:
132   case ObjCRuntime::WatchOS:
133     return EHPersonality::NeXT_ObjC;
134   case ObjCRuntime::GNUstep:
135     if (L.ObjCRuntime.getVersion() >= VersionTuple(1, 7))
136       return EHPersonality::GNUstep_ObjC;
137     // fallthrough
138   case ObjCRuntime::GCC:
139   case ObjCRuntime::ObjFW:
140     return EHPersonality::GNU_ObjC;
141   }
142   llvm_unreachable("bad runtime kind");
143 }
144 
145 static const EHPersonality &getCXXPersonality(const llvm::Triple &T,
146                                               const LangOptions &L) {
147   if (L.SjLjExceptions)
148     return EHPersonality::GNU_CPlusPlus_SJLJ;
149   else if (useLibGCCSEHPersonality(T))
150     return EHPersonality::GNU_CPlusPlus_SEH;
151   return EHPersonality::GNU_CPlusPlus;
152 }
153 
154 /// Determines the personality function to use when both C++
155 /// and Objective-C exceptions are being caught.
156 static const EHPersonality &getObjCXXPersonality(const llvm::Triple &T,
157                                                  const LangOptions &L) {
158   switch (L.ObjCRuntime.getKind()) {
159   // The ObjC personality defers to the C++ personality for non-ObjC
160   // handlers.  Unlike the C++ case, we use the same personality
161   // function on targets using (backend-driven) SJLJ EH.
162   case ObjCRuntime::MacOSX:
163   case ObjCRuntime::iOS:
164   case ObjCRuntime::WatchOS:
165     return EHPersonality::NeXT_ObjC;
166 
167   // In the fragile ABI, just use C++ exception handling and hope
168   // they're not doing crazy exception mixing.
169   case ObjCRuntime::FragileMacOSX:
170     return getCXXPersonality(T, L);
171 
172   // The GCC runtime's personality function inherently doesn't support
173   // mixed EH.  Use the C++ personality just to avoid returning null.
174   case ObjCRuntime::GCC:
175   case ObjCRuntime::ObjFW: // XXX: this will change soon
176     return EHPersonality::GNU_ObjC;
177   case ObjCRuntime::GNUstep:
178     return EHPersonality::GNU_ObjCXX;
179   }
180   llvm_unreachable("bad runtime kind");
181 }
182 
183 static const EHPersonality &getSEHPersonalityMSVC(const llvm::Triple &T) {
184   if (T.getArch() == llvm::Triple::x86)
185     return EHPersonality::MSVC_except_handler;
186   return EHPersonality::MSVC_C_specific_handler;
187 }
188 
189 const EHPersonality &EHPersonality::get(CodeGenModule &CGM,
190                                         const FunctionDecl *FD) {
191   const llvm::Triple &T = CGM.getTarget().getTriple();
192   const LangOptions &L = CGM.getLangOpts();
193 
194   // Functions using SEH get an SEH personality.
195   if (FD && FD->usesSEHTry())
196     return getSEHPersonalityMSVC(T);
197 
198   // Try to pick a personality function that is compatible with MSVC if we're
199   // not compiling Obj-C. Obj-C users better have an Obj-C runtime that supports
200   // the GCC-style personality function.
201   if (T.isWindowsMSVCEnvironment() && !L.ObjC1) {
202     if (L.SjLjExceptions)
203       return EHPersonality::GNU_CPlusPlus_SJLJ;
204     else
205       return EHPersonality::MSVC_CxxFrameHandler3;
206   }
207 
208   if (L.CPlusPlus && L.ObjC1)
209     return getObjCXXPersonality(T, L);
210   else if (L.CPlusPlus)
211     return getCXXPersonality(T, L);
212   else if (L.ObjC1)
213     return getObjCPersonality(T, L);
214   else
215     return getCPersonality(T, L);
216 }
217 
218 const EHPersonality &EHPersonality::get(CodeGenFunction &CGF) {
219   return get(CGF.CGM, dyn_cast_or_null<FunctionDecl>(CGF.CurCodeDecl));
220 }
221 
222 static llvm::Constant *getPersonalityFn(CodeGenModule &CGM,
223                                         const EHPersonality &Personality) {
224   llvm::Constant *Fn =
225     CGM.CreateRuntimeFunction(llvm::FunctionType::get(CGM.Int32Ty, true),
226                               Personality.PersonalityFn);
227   return Fn;
228 }
229 
230 static llvm::Constant *getOpaquePersonalityFn(CodeGenModule &CGM,
231                                         const EHPersonality &Personality) {
232   llvm::Constant *Fn = getPersonalityFn(CGM, Personality);
233   return llvm::ConstantExpr::getBitCast(Fn, CGM.Int8PtrTy);
234 }
235 
236 /// Check whether a landingpad instruction only uses C++ features.
237 static bool LandingPadHasOnlyCXXUses(llvm::LandingPadInst *LPI) {
238   for (unsigned I = 0, E = LPI->getNumClauses(); I != E; ++I) {
239     // Look for something that would've been returned by the ObjC
240     // runtime's GetEHType() method.
241     llvm::Value *Val = LPI->getClause(I)->stripPointerCasts();
242     if (LPI->isCatch(I)) {
243       // Check if the catch value has the ObjC prefix.
244       if (llvm::GlobalVariable *GV = dyn_cast<llvm::GlobalVariable>(Val))
245         // ObjC EH selector entries are always global variables with
246         // names starting like this.
247         if (GV->getName().startswith("OBJC_EHTYPE"))
248           return false;
249     } else {
250       // Check if any of the filter values have the ObjC prefix.
251       llvm::Constant *CVal = cast<llvm::Constant>(Val);
252       for (llvm::User::op_iterator
253               II = CVal->op_begin(), IE = CVal->op_end(); II != IE; ++II) {
254         if (llvm::GlobalVariable *GV =
255             cast<llvm::GlobalVariable>((*II)->stripPointerCasts()))
256           // ObjC EH selector entries are always global variables with
257           // names starting like this.
258           if (GV->getName().startswith("OBJC_EHTYPE"))
259             return false;
260       }
261     }
262   }
263   return true;
264 }
265 
266 /// Check whether a personality function could reasonably be swapped
267 /// for a C++ personality function.
268 static bool PersonalityHasOnlyCXXUses(llvm::Constant *Fn) {
269   for (llvm::User *U : Fn->users()) {
270     // Conditionally white-list bitcasts.
271     if (llvm::ConstantExpr *CE = dyn_cast<llvm::ConstantExpr>(U)) {
272       if (CE->getOpcode() != llvm::Instruction::BitCast) return false;
273       if (!PersonalityHasOnlyCXXUses(CE))
274         return false;
275       continue;
276     }
277 
278     // Otherwise it must be a function.
279     llvm::Function *F = dyn_cast<llvm::Function>(U);
280     if (!F) return false;
281 
282     for (auto BB = F->begin(), E = F->end(); BB != E; ++BB) {
283       if (BB->isLandingPad())
284         if (!LandingPadHasOnlyCXXUses(BB->getLandingPadInst()))
285           return false;
286     }
287   }
288 
289   return true;
290 }
291 
292 /// Try to use the C++ personality function in ObjC++.  Not doing this
293 /// can cause some incompatibilities with gcc, which is more
294 /// aggressive about only using the ObjC++ personality in a function
295 /// when it really needs it.
296 void CodeGenModule::SimplifyPersonality() {
297   // If we're not in ObjC++ -fexceptions, there's nothing to do.
298   if (!LangOpts.CPlusPlus || !LangOpts.ObjC1 || !LangOpts.Exceptions)
299     return;
300 
301   // Both the problem this endeavors to fix and the way the logic
302   // above works is specific to the NeXT runtime.
303   if (!LangOpts.ObjCRuntime.isNeXTFamily())
304     return;
305 
306   const EHPersonality &ObjCXX = EHPersonality::get(*this, /*FD=*/nullptr);
307   const EHPersonality &CXX =
308       getCXXPersonality(getTarget().getTriple(), LangOpts);
309   if (&ObjCXX == &CXX)
310     return;
311 
312   assert(std::strcmp(ObjCXX.PersonalityFn, CXX.PersonalityFn) != 0 &&
313          "Different EHPersonalities using the same personality function.");
314 
315   llvm::Function *Fn = getModule().getFunction(ObjCXX.PersonalityFn);
316 
317   // Nothing to do if it's unused.
318   if (!Fn || Fn->use_empty()) return;
319 
320   // Can't do the optimization if it has non-C++ uses.
321   if (!PersonalityHasOnlyCXXUses(Fn)) return;
322 
323   // Create the C++ personality function and kill off the old
324   // function.
325   llvm::Constant *CXXFn = getPersonalityFn(*this, CXX);
326 
327   // This can happen if the user is screwing with us.
328   if (Fn->getType() != CXXFn->getType()) return;
329 
330   Fn->replaceAllUsesWith(CXXFn);
331   Fn->eraseFromParent();
332 }
333 
334 /// Returns the value to inject into a selector to indicate the
335 /// presence of a catch-all.
336 static llvm::Constant *getCatchAllValue(CodeGenFunction &CGF) {
337   // Possibly we should use @llvm.eh.catch.all.value here.
338   return llvm::ConstantPointerNull::get(CGF.Int8PtrTy);
339 }
340 
341 namespace {
342   /// A cleanup to free the exception object if its initialization
343   /// throws.
344   struct FreeException final : EHScopeStack::Cleanup {
345     llvm::Value *exn;
346     FreeException(llvm::Value *exn) : exn(exn) {}
347     void Emit(CodeGenFunction &CGF, Flags flags) override {
348       CGF.EmitNounwindRuntimeCall(getFreeExceptionFn(CGF.CGM), exn);
349     }
350   };
351 } // end anonymous namespace
352 
353 // Emits an exception expression into the given location.  This
354 // differs from EmitAnyExprToMem only in that, if a final copy-ctor
355 // call is required, an exception within that copy ctor causes
356 // std::terminate to be invoked.
357 void CodeGenFunction::EmitAnyExprToExn(const Expr *e, Address addr) {
358   // Make sure the exception object is cleaned up if there's an
359   // exception during initialization.
360   pushFullExprCleanup<FreeException>(EHCleanup, addr.getPointer());
361   EHScopeStack::stable_iterator cleanup = EHStack.stable_begin();
362 
363   // __cxa_allocate_exception returns a void*;  we need to cast this
364   // to the appropriate type for the object.
365   llvm::Type *ty = ConvertTypeForMem(e->getType())->getPointerTo();
366   Address typedAddr = Builder.CreateBitCast(addr, ty);
367 
368   // FIXME: this isn't quite right!  If there's a final unelided call
369   // to a copy constructor, then according to [except.terminate]p1 we
370   // must call std::terminate() if that constructor throws, because
371   // technically that copy occurs after the exception expression is
372   // evaluated but before the exception is caught.  But the best way
373   // to handle that is to teach EmitAggExpr to do the final copy
374   // differently if it can't be elided.
375   EmitAnyExprToMem(e, typedAddr, e->getType().getQualifiers(),
376                    /*IsInit*/ true);
377 
378   // Deactivate the cleanup block.
379   DeactivateCleanupBlock(cleanup,
380                          cast<llvm::Instruction>(typedAddr.getPointer()));
381 }
382 
383 Address CodeGenFunction::getExceptionSlot() {
384   if (!ExceptionSlot)
385     ExceptionSlot = CreateTempAlloca(Int8PtrTy, "exn.slot");
386   return Address(ExceptionSlot, getPointerAlign());
387 }
388 
389 Address CodeGenFunction::getEHSelectorSlot() {
390   if (!EHSelectorSlot)
391     EHSelectorSlot = CreateTempAlloca(Int32Ty, "ehselector.slot");
392   return Address(EHSelectorSlot, CharUnits::fromQuantity(4));
393 }
394 
395 llvm::Value *CodeGenFunction::getExceptionFromSlot() {
396   return Builder.CreateLoad(getExceptionSlot(), "exn");
397 }
398 
399 llvm::Value *CodeGenFunction::getSelectorFromSlot() {
400   return Builder.CreateLoad(getEHSelectorSlot(), "sel");
401 }
402 
403 void CodeGenFunction::EmitCXXThrowExpr(const CXXThrowExpr *E,
404                                        bool KeepInsertionPoint) {
405   if (const Expr *SubExpr = E->getSubExpr()) {
406     QualType ThrowType = SubExpr->getType();
407     if (ThrowType->isObjCObjectPointerType()) {
408       const Stmt *ThrowStmt = E->getSubExpr();
409       const ObjCAtThrowStmt S(E->getExprLoc(), const_cast<Stmt *>(ThrowStmt));
410       CGM.getObjCRuntime().EmitThrowStmt(*this, S, false);
411     } else {
412       CGM.getCXXABI().emitThrow(*this, E);
413     }
414   } else {
415     CGM.getCXXABI().emitRethrow(*this, /*isNoReturn=*/true);
416   }
417 
418   // throw is an expression, and the expression emitters expect us
419   // to leave ourselves at a valid insertion point.
420   if (KeepInsertionPoint)
421     EmitBlock(createBasicBlock("throw.cont"));
422 }
423 
424 void CodeGenFunction::EmitStartEHSpec(const Decl *D) {
425   if (!CGM.getLangOpts().CXXExceptions)
426     return;
427 
428   const FunctionDecl* FD = dyn_cast_or_null<FunctionDecl>(D);
429   if (!FD) {
430     // Check if CapturedDecl is nothrow and create terminate scope for it.
431     if (const CapturedDecl* CD = dyn_cast_or_null<CapturedDecl>(D)) {
432       if (CD->isNothrow())
433         EHStack.pushTerminate();
434     }
435     return;
436   }
437   const FunctionProtoType *Proto = FD->getType()->getAs<FunctionProtoType>();
438   if (!Proto)
439     return;
440 
441   ExceptionSpecificationType EST = Proto->getExceptionSpecType();
442   if (isNoexceptExceptionSpec(EST)) {
443     if (Proto->getNoexceptSpec(getContext()) == FunctionProtoType::NR_Nothrow) {
444       // noexcept functions are simple terminate scopes.
445       EHStack.pushTerminate();
446     }
447   } else if (EST == EST_Dynamic || EST == EST_DynamicNone) {
448     // TODO: Revisit exception specifications for the MS ABI.  There is a way to
449     // encode these in an object file but MSVC doesn't do anything with it.
450     if (getTarget().getCXXABI().isMicrosoft())
451       return;
452     unsigned NumExceptions = Proto->getNumExceptions();
453     EHFilterScope *Filter = EHStack.pushFilter(NumExceptions);
454 
455     for (unsigned I = 0; I != NumExceptions; ++I) {
456       QualType Ty = Proto->getExceptionType(I);
457       QualType ExceptType = Ty.getNonReferenceType().getUnqualifiedType();
458       llvm::Value *EHType = CGM.GetAddrOfRTTIDescriptor(ExceptType,
459                                                         /*ForEH=*/true);
460       Filter->setFilter(I, EHType);
461     }
462   }
463 }
464 
465 /// Emit the dispatch block for a filter scope if necessary.
466 static void emitFilterDispatchBlock(CodeGenFunction &CGF,
467                                     EHFilterScope &filterScope) {
468   llvm::BasicBlock *dispatchBlock = filterScope.getCachedEHDispatchBlock();
469   if (!dispatchBlock) return;
470   if (dispatchBlock->use_empty()) {
471     delete dispatchBlock;
472     return;
473   }
474 
475   CGF.EmitBlockAfterUses(dispatchBlock);
476 
477   // If this isn't a catch-all filter, we need to check whether we got
478   // here because the filter triggered.
479   if (filterScope.getNumFilters()) {
480     // Load the selector value.
481     llvm::Value *selector = CGF.getSelectorFromSlot();
482     llvm::BasicBlock *unexpectedBB = CGF.createBasicBlock("ehspec.unexpected");
483 
484     llvm::Value *zero = CGF.Builder.getInt32(0);
485     llvm::Value *failsFilter =
486         CGF.Builder.CreateICmpSLT(selector, zero, "ehspec.fails");
487     CGF.Builder.CreateCondBr(failsFilter, unexpectedBB,
488                              CGF.getEHResumeBlock(false));
489 
490     CGF.EmitBlock(unexpectedBB);
491   }
492 
493   // Call __cxa_call_unexpected.  This doesn't need to be an invoke
494   // because __cxa_call_unexpected magically filters exceptions
495   // according to the last landing pad the exception was thrown
496   // into.  Seriously.
497   llvm::Value *exn = CGF.getExceptionFromSlot();
498   CGF.EmitRuntimeCall(getUnexpectedFn(CGF.CGM), exn)
499     ->setDoesNotReturn();
500   CGF.Builder.CreateUnreachable();
501 }
502 
503 void CodeGenFunction::EmitEndEHSpec(const Decl *D) {
504   if (!CGM.getLangOpts().CXXExceptions)
505     return;
506 
507   const FunctionDecl* FD = dyn_cast_or_null<FunctionDecl>(D);
508   if (!FD) {
509     // Check if CapturedDecl is nothrow and pop terminate scope for it.
510     if (const CapturedDecl* CD = dyn_cast_or_null<CapturedDecl>(D)) {
511       if (CD->isNothrow())
512         EHStack.popTerminate();
513     }
514     return;
515   }
516   const FunctionProtoType *Proto = FD->getType()->getAs<FunctionProtoType>();
517   if (!Proto)
518     return;
519 
520   ExceptionSpecificationType EST = Proto->getExceptionSpecType();
521   if (isNoexceptExceptionSpec(EST)) {
522     if (Proto->getNoexceptSpec(getContext()) == FunctionProtoType::NR_Nothrow) {
523       EHStack.popTerminate();
524     }
525   } else if (EST == EST_Dynamic || EST == EST_DynamicNone) {
526     // TODO: Revisit exception specifications for the MS ABI.  There is a way to
527     // encode these in an object file but MSVC doesn't do anything with it.
528     if (getTarget().getCXXABI().isMicrosoft())
529       return;
530     EHFilterScope &filterScope = cast<EHFilterScope>(*EHStack.begin());
531     emitFilterDispatchBlock(*this, filterScope);
532     EHStack.popFilter();
533   }
534 }
535 
536 void CodeGenFunction::EmitCXXTryStmt(const CXXTryStmt &S) {
537   EnterCXXTryStmt(S);
538   EmitStmt(S.getTryBlock());
539   ExitCXXTryStmt(S);
540 }
541 
542 void CodeGenFunction::EnterCXXTryStmt(const CXXTryStmt &S, bool IsFnTryBlock) {
543   unsigned NumHandlers = S.getNumHandlers();
544   EHCatchScope *CatchScope = EHStack.pushCatch(NumHandlers);
545 
546   for (unsigned I = 0; I != NumHandlers; ++I) {
547     const CXXCatchStmt *C = S.getHandler(I);
548 
549     llvm::BasicBlock *Handler = createBasicBlock("catch");
550     if (C->getExceptionDecl()) {
551       // FIXME: Dropping the reference type on the type into makes it
552       // impossible to correctly implement catch-by-reference
553       // semantics for pointers.  Unfortunately, this is what all
554       // existing compilers do, and it's not clear that the standard
555       // personality routine is capable of doing this right.  See C++ DR 388:
556       //   http://www.open-std.org/jtc1/sc22/wg21/docs/cwg_active.html#388
557       Qualifiers CaughtTypeQuals;
558       QualType CaughtType = CGM.getContext().getUnqualifiedArrayType(
559           C->getCaughtType().getNonReferenceType(), CaughtTypeQuals);
560 
561       CatchTypeInfo TypeInfo{nullptr, 0};
562       if (CaughtType->isObjCObjectPointerType())
563         TypeInfo.RTTI = CGM.getObjCRuntime().GetEHType(CaughtType);
564       else
565         TypeInfo = CGM.getCXXABI().getAddrOfCXXCatchHandlerType(
566             CaughtType, C->getCaughtType());
567       CatchScope->setHandler(I, TypeInfo, Handler);
568     } else {
569       // No exception decl indicates '...', a catch-all.
570       CatchScope->setHandler(I, CGM.getCXXABI().getCatchAllTypeInfo(), Handler);
571     }
572   }
573 }
574 
575 llvm::BasicBlock *
576 CodeGenFunction::getEHDispatchBlock(EHScopeStack::stable_iterator si) {
577   if (EHPersonality::get(*this).usesFuncletPads())
578     return getMSVCDispatchBlock(si);
579 
580   // The dispatch block for the end of the scope chain is a block that
581   // just resumes unwinding.
582   if (si == EHStack.stable_end())
583     return getEHResumeBlock(true);
584 
585   // Otherwise, we should look at the actual scope.
586   EHScope &scope = *EHStack.find(si);
587 
588   llvm::BasicBlock *dispatchBlock = scope.getCachedEHDispatchBlock();
589   if (!dispatchBlock) {
590     switch (scope.getKind()) {
591     case EHScope::Catch: {
592       // Apply a special case to a single catch-all.
593       EHCatchScope &catchScope = cast<EHCatchScope>(scope);
594       if (catchScope.getNumHandlers() == 1 &&
595           catchScope.getHandler(0).isCatchAll()) {
596         dispatchBlock = catchScope.getHandler(0).Block;
597 
598       // Otherwise, make a dispatch block.
599       } else {
600         dispatchBlock = createBasicBlock("catch.dispatch");
601       }
602       break;
603     }
604 
605     case EHScope::Cleanup:
606       dispatchBlock = createBasicBlock("ehcleanup");
607       break;
608 
609     case EHScope::Filter:
610       dispatchBlock = createBasicBlock("filter.dispatch");
611       break;
612 
613     case EHScope::Terminate:
614       dispatchBlock = getTerminateHandler();
615       break;
616 
617     case EHScope::PadEnd:
618       llvm_unreachable("PadEnd unnecessary for Itanium!");
619     }
620     scope.setCachedEHDispatchBlock(dispatchBlock);
621   }
622   return dispatchBlock;
623 }
624 
625 llvm::BasicBlock *
626 CodeGenFunction::getMSVCDispatchBlock(EHScopeStack::stable_iterator SI) {
627   // Returning nullptr indicates that the previous dispatch block should unwind
628   // to caller.
629   if (SI == EHStack.stable_end())
630     return nullptr;
631 
632   // Otherwise, we should look at the actual scope.
633   EHScope &EHS = *EHStack.find(SI);
634 
635   llvm::BasicBlock *DispatchBlock = EHS.getCachedEHDispatchBlock();
636   if (DispatchBlock)
637     return DispatchBlock;
638 
639   if (EHS.getKind() == EHScope::Terminate)
640     DispatchBlock = getTerminateHandler();
641   else
642     DispatchBlock = createBasicBlock();
643   CGBuilderTy Builder(*this, DispatchBlock);
644 
645   switch (EHS.getKind()) {
646   case EHScope::Catch:
647     DispatchBlock->setName("catch.dispatch");
648     break;
649 
650   case EHScope::Cleanup:
651     DispatchBlock->setName("ehcleanup");
652     break;
653 
654   case EHScope::Filter:
655     llvm_unreachable("exception specifications not handled yet!");
656 
657   case EHScope::Terminate:
658     DispatchBlock->setName("terminate");
659     break;
660 
661   case EHScope::PadEnd:
662     llvm_unreachable("PadEnd dispatch block missing!");
663   }
664   EHS.setCachedEHDispatchBlock(DispatchBlock);
665   return DispatchBlock;
666 }
667 
668 /// Check whether this is a non-EH scope, i.e. a scope which doesn't
669 /// affect exception handling.  Currently, the only non-EH scopes are
670 /// normal-only cleanup scopes.
671 static bool isNonEHScope(const EHScope &S) {
672   switch (S.getKind()) {
673   case EHScope::Cleanup:
674     return !cast<EHCleanupScope>(S).isEHCleanup();
675   case EHScope::Filter:
676   case EHScope::Catch:
677   case EHScope::Terminate:
678   case EHScope::PadEnd:
679     return false;
680   }
681 
682   llvm_unreachable("Invalid EHScope Kind!");
683 }
684 
685 llvm::BasicBlock *CodeGenFunction::getInvokeDestImpl() {
686   assert(EHStack.requiresLandingPad());
687   assert(!EHStack.empty());
688 
689   // If exceptions are disabled, there are usually no landingpads. However, when
690   // SEH is enabled, functions using SEH still get landingpads.
691   const LangOptions &LO = CGM.getLangOpts();
692   if (!LO.Exceptions) {
693     if (!LO.Borland && !LO.MicrosoftExt)
694       return nullptr;
695     if (!currentFunctionUsesSEHTry())
696       return nullptr;
697   }
698 
699   // Check the innermost scope for a cached landing pad.  If this is
700   // a non-EH cleanup, we'll check enclosing scopes in EmitLandingPad.
701   llvm::BasicBlock *LP = EHStack.begin()->getCachedLandingPad();
702   if (LP) return LP;
703 
704   const EHPersonality &Personality = EHPersonality::get(*this);
705 
706   if (!CurFn->hasPersonalityFn())
707     CurFn->setPersonalityFn(getOpaquePersonalityFn(CGM, Personality));
708 
709   if (Personality.usesFuncletPads()) {
710     // We don't need separate landing pads in the funclet model.
711     LP = getEHDispatchBlock(EHStack.getInnermostEHScope());
712   } else {
713     // Build the landing pad for this scope.
714     LP = EmitLandingPad();
715   }
716 
717   assert(LP);
718 
719   // Cache the landing pad on the innermost scope.  If this is a
720   // non-EH scope, cache the landing pad on the enclosing scope, too.
721   for (EHScopeStack::iterator ir = EHStack.begin(); true; ++ir) {
722     ir->setCachedLandingPad(LP);
723     if (!isNonEHScope(*ir)) break;
724   }
725 
726   return LP;
727 }
728 
729 llvm::BasicBlock *CodeGenFunction::EmitLandingPad() {
730   assert(EHStack.requiresLandingPad());
731 
732   EHScope &innermostEHScope = *EHStack.find(EHStack.getInnermostEHScope());
733   switch (innermostEHScope.getKind()) {
734   case EHScope::Terminate:
735     return getTerminateLandingPad();
736 
737   case EHScope::PadEnd:
738     llvm_unreachable("PadEnd unnecessary for Itanium!");
739 
740   case EHScope::Catch:
741   case EHScope::Cleanup:
742   case EHScope::Filter:
743     if (llvm::BasicBlock *lpad = innermostEHScope.getCachedLandingPad())
744       return lpad;
745   }
746 
747   // Save the current IR generation state.
748   CGBuilderTy::InsertPoint savedIP = Builder.saveAndClearIP();
749   auto DL = ApplyDebugLocation::CreateDefaultArtificial(*this, CurEHLocation);
750 
751   // Create and configure the landing pad.
752   llvm::BasicBlock *lpad = createBasicBlock("lpad");
753   EmitBlock(lpad);
754 
755   llvm::LandingPadInst *LPadInst = Builder.CreateLandingPad(
756       llvm::StructType::get(Int8PtrTy, Int32Ty, nullptr), 0);
757 
758   llvm::Value *LPadExn = Builder.CreateExtractValue(LPadInst, 0);
759   Builder.CreateStore(LPadExn, getExceptionSlot());
760   llvm::Value *LPadSel = Builder.CreateExtractValue(LPadInst, 1);
761   Builder.CreateStore(LPadSel, getEHSelectorSlot());
762 
763   // Save the exception pointer.  It's safe to use a single exception
764   // pointer per function because EH cleanups can never have nested
765   // try/catches.
766   // Build the landingpad instruction.
767 
768   // Accumulate all the handlers in scope.
769   bool hasCatchAll = false;
770   bool hasCleanup = false;
771   bool hasFilter = false;
772   SmallVector<llvm::Value*, 4> filterTypes;
773   llvm::SmallPtrSet<llvm::Value*, 4> catchTypes;
774   for (EHScopeStack::iterator I = EHStack.begin(), E = EHStack.end(); I != E;
775        ++I) {
776 
777     switch (I->getKind()) {
778     case EHScope::Cleanup:
779       // If we have a cleanup, remember that.
780       hasCleanup = (hasCleanup || cast<EHCleanupScope>(*I).isEHCleanup());
781       continue;
782 
783     case EHScope::Filter: {
784       assert(I.next() == EHStack.end() && "EH filter is not end of EH stack");
785       assert(!hasCatchAll && "EH filter reached after catch-all");
786 
787       // Filter scopes get added to the landingpad in weird ways.
788       EHFilterScope &filter = cast<EHFilterScope>(*I);
789       hasFilter = true;
790 
791       // Add all the filter values.
792       for (unsigned i = 0, e = filter.getNumFilters(); i != e; ++i)
793         filterTypes.push_back(filter.getFilter(i));
794       goto done;
795     }
796 
797     case EHScope::Terminate:
798       // Terminate scopes are basically catch-alls.
799       assert(!hasCatchAll);
800       hasCatchAll = true;
801       goto done;
802 
803     case EHScope::Catch:
804       break;
805 
806     case EHScope::PadEnd:
807       llvm_unreachable("PadEnd unnecessary for Itanium!");
808     }
809 
810     EHCatchScope &catchScope = cast<EHCatchScope>(*I);
811     for (unsigned hi = 0, he = catchScope.getNumHandlers(); hi != he; ++hi) {
812       EHCatchScope::Handler handler = catchScope.getHandler(hi);
813       assert(handler.Type.Flags == 0 &&
814              "landingpads do not support catch handler flags");
815 
816       // If this is a catch-all, register that and abort.
817       if (!handler.Type.RTTI) {
818         assert(!hasCatchAll);
819         hasCatchAll = true;
820         goto done;
821       }
822 
823       // Check whether we already have a handler for this type.
824       if (catchTypes.insert(handler.Type.RTTI).second)
825         // If not, add it directly to the landingpad.
826         LPadInst->addClause(handler.Type.RTTI);
827     }
828   }
829 
830  done:
831   // If we have a catch-all, add null to the landingpad.
832   assert(!(hasCatchAll && hasFilter));
833   if (hasCatchAll) {
834     LPadInst->addClause(getCatchAllValue(*this));
835 
836   // If we have an EH filter, we need to add those handlers in the
837   // right place in the landingpad, which is to say, at the end.
838   } else if (hasFilter) {
839     // Create a filter expression: a constant array indicating which filter
840     // types there are. The personality routine only lands here if the filter
841     // doesn't match.
842     SmallVector<llvm::Constant*, 8> Filters;
843     llvm::ArrayType *AType =
844       llvm::ArrayType::get(!filterTypes.empty() ?
845                              filterTypes[0]->getType() : Int8PtrTy,
846                            filterTypes.size());
847 
848     for (unsigned i = 0, e = filterTypes.size(); i != e; ++i)
849       Filters.push_back(cast<llvm::Constant>(filterTypes[i]));
850     llvm::Constant *FilterArray = llvm::ConstantArray::get(AType, Filters);
851     LPadInst->addClause(FilterArray);
852 
853     // Also check whether we need a cleanup.
854     if (hasCleanup)
855       LPadInst->setCleanup(true);
856 
857   // Otherwise, signal that we at least have cleanups.
858   } else if (hasCleanup) {
859     LPadInst->setCleanup(true);
860   }
861 
862   assert((LPadInst->getNumClauses() > 0 || LPadInst->isCleanup()) &&
863          "landingpad instruction has no clauses!");
864 
865   // Tell the backend how to generate the landing pad.
866   Builder.CreateBr(getEHDispatchBlock(EHStack.getInnermostEHScope()));
867 
868   // Restore the old IR generation state.
869   Builder.restoreIP(savedIP);
870 
871   return lpad;
872 }
873 
874 static llvm::BasicBlock *emitCatchPadBlock(CodeGenFunction &CGF,
875                                            EHCatchScope &CatchScope) {
876   llvm::BasicBlock *DispatchBlock = CatchScope.getCachedEHDispatchBlock();
877   assert(DispatchBlock);
878 
879   CGBuilderTy::InsertPoint SavedIP = CGF.Builder.saveIP();
880   CGF.EmitBlockAfterUses(DispatchBlock);
881 
882   // Figure out the next block.
883   llvm::BasicBlock *NextBlock = nullptr;
884 
885   // Test against each of the exception types we claim to catch.
886   for (unsigned I = 0, E = CatchScope.getNumHandlers(); I < E; ++I) {
887     const EHCatchScope::Handler &Handler = CatchScope.getHandler(I);
888 
889     CatchTypeInfo TypeInfo = Handler.Type;
890     if (!TypeInfo.RTTI)
891       TypeInfo.RTTI = llvm::Constant::getNullValue(CGF.VoidPtrTy);
892 
893     // If this is the last handler, we're at the end, and the next
894     // block is the block for the enclosing EH scope.
895     if (I + 1 == E) {
896       NextBlock = CGF.createBasicBlock("catchendblock");
897       CGBuilderTy(CGF, NextBlock).CreateCatchEndPad(
898           CGF.getEHDispatchBlock(CatchScope.getEnclosingEHScope()));
899     } else {
900       NextBlock = CGF.createBasicBlock("catch.dispatch");
901     }
902 
903     if (EHPersonality::get(CGF).isMSVCXXPersonality()) {
904       CGF.Builder.CreateCatchPad(Handler.Block, NextBlock,
905                                  {TypeInfo.RTTI,
906                                   CGF.Builder.getInt32(TypeInfo.Flags),
907                                   llvm::Constant::getNullValue(CGF.VoidPtrTy)});
908     } else {
909       CGF.Builder.CreateCatchPad(Handler.Block, NextBlock, {TypeInfo.RTTI});
910     }
911 
912     // Otherwise we need to emit and continue at that block.
913     CGF.EmitBlock(NextBlock);
914   }
915   CGF.Builder.restoreIP(SavedIP);
916 
917   return NextBlock;
918 }
919 
920 /// Emit the structure of the dispatch block for the given catch scope.
921 /// It is an invariant that the dispatch block already exists.
922 /// If the catchblock instructions are used for EH dispatch, then the basic
923 /// block holding the final catchendblock instruction is returned.
924 static llvm::BasicBlock *emitCatchDispatchBlock(CodeGenFunction &CGF,
925                                                 EHCatchScope &catchScope) {
926   if (EHPersonality::get(CGF).usesFuncletPads())
927     return emitCatchPadBlock(CGF, catchScope);
928 
929   llvm::BasicBlock *dispatchBlock = catchScope.getCachedEHDispatchBlock();
930   assert(dispatchBlock);
931 
932   // If there's only a single catch-all, getEHDispatchBlock returned
933   // that catch-all as the dispatch block.
934   if (catchScope.getNumHandlers() == 1 &&
935       catchScope.getHandler(0).isCatchAll()) {
936     assert(dispatchBlock == catchScope.getHandler(0).Block);
937     return nullptr;
938   }
939 
940   CGBuilderTy::InsertPoint savedIP = CGF.Builder.saveIP();
941   CGF.EmitBlockAfterUses(dispatchBlock);
942 
943   // Select the right handler.
944   llvm::Value *llvm_eh_typeid_for =
945     CGF.CGM.getIntrinsic(llvm::Intrinsic::eh_typeid_for);
946 
947   // Load the selector value.
948   llvm::Value *selector = CGF.getSelectorFromSlot();
949 
950   // Test against each of the exception types we claim to catch.
951   for (unsigned i = 0, e = catchScope.getNumHandlers(); ; ++i) {
952     assert(i < e && "ran off end of handlers!");
953     const EHCatchScope::Handler &handler = catchScope.getHandler(i);
954 
955     llvm::Value *typeValue = handler.Type.RTTI;
956     assert(handler.Type.Flags == 0 &&
957            "landingpads do not support catch handler flags");
958     assert(typeValue && "fell into catch-all case!");
959     typeValue = CGF.Builder.CreateBitCast(typeValue, CGF.Int8PtrTy);
960 
961     // Figure out the next block.
962     bool nextIsEnd;
963     llvm::BasicBlock *nextBlock;
964 
965     // If this is the last handler, we're at the end, and the next
966     // block is the block for the enclosing EH scope.
967     if (i + 1 == e) {
968       nextBlock = CGF.getEHDispatchBlock(catchScope.getEnclosingEHScope());
969       nextIsEnd = true;
970 
971     // If the next handler is a catch-all, we're at the end, and the
972     // next block is that handler.
973     } else if (catchScope.getHandler(i+1).isCatchAll()) {
974       nextBlock = catchScope.getHandler(i+1).Block;
975       nextIsEnd = true;
976 
977     // Otherwise, we're not at the end and we need a new block.
978     } else {
979       nextBlock = CGF.createBasicBlock("catch.fallthrough");
980       nextIsEnd = false;
981     }
982 
983     // Figure out the catch type's index in the LSDA's type table.
984     llvm::CallInst *typeIndex =
985       CGF.Builder.CreateCall(llvm_eh_typeid_for, typeValue);
986     typeIndex->setDoesNotThrow();
987 
988     llvm::Value *matchesTypeIndex =
989       CGF.Builder.CreateICmpEQ(selector, typeIndex, "matches");
990     CGF.Builder.CreateCondBr(matchesTypeIndex, handler.Block, nextBlock);
991 
992     // If the next handler is a catch-all, we're completely done.
993     if (nextIsEnd) {
994       CGF.Builder.restoreIP(savedIP);
995       return nullptr;
996     }
997     // Otherwise we need to emit and continue at that block.
998     CGF.EmitBlock(nextBlock);
999   }
1000   return nullptr;
1001 }
1002 
1003 void CodeGenFunction::popCatchScope() {
1004   EHCatchScope &catchScope = cast<EHCatchScope>(*EHStack.begin());
1005   if (catchScope.hasEHBranches())
1006     emitCatchDispatchBlock(*this, catchScope);
1007   EHStack.popCatch();
1008 }
1009 
1010 void CodeGenFunction::ExitCXXTryStmt(const CXXTryStmt &S, bool IsFnTryBlock) {
1011   unsigned NumHandlers = S.getNumHandlers();
1012   EHCatchScope &CatchScope = cast<EHCatchScope>(*EHStack.begin());
1013   assert(CatchScope.getNumHandlers() == NumHandlers);
1014 
1015   // If the catch was not required, bail out now.
1016   if (!CatchScope.hasEHBranches()) {
1017     CatchScope.clearHandlerBlocks();
1018     EHStack.popCatch();
1019     return;
1020   }
1021 
1022   // Emit the structure of the EH dispatch for this catch.
1023   llvm::BasicBlock *CatchEndBlockBB = emitCatchDispatchBlock(*this, CatchScope);
1024 
1025   // Copy the handler blocks off before we pop the EH stack.  Emitting
1026   // the handlers might scribble on this memory.
1027   SmallVector<EHCatchScope::Handler, 8> Handlers(
1028       CatchScope.begin(), CatchScope.begin() + NumHandlers);
1029 
1030   EHStack.popCatch();
1031 
1032   // The fall-through block.
1033   llvm::BasicBlock *ContBB = createBasicBlock("try.cont");
1034 
1035   // We just emitted the body of the try; jump to the continue block.
1036   if (HaveInsertPoint())
1037     Builder.CreateBr(ContBB);
1038 
1039   // Determine if we need an implicit rethrow for all these catch handlers;
1040   // see the comment below.
1041   bool doImplicitRethrow = false;
1042   if (IsFnTryBlock)
1043     doImplicitRethrow = isa<CXXDestructorDecl>(CurCodeDecl) ||
1044                         isa<CXXConstructorDecl>(CurCodeDecl);
1045 
1046   if (CatchEndBlockBB)
1047     EHStack.pushPadEnd(CatchEndBlockBB);
1048 
1049   // Perversely, we emit the handlers backwards precisely because we
1050   // want them to appear in source order.  In all of these cases, the
1051   // catch block will have exactly one predecessor, which will be a
1052   // particular block in the catch dispatch.  However, in the case of
1053   // a catch-all, one of the dispatch blocks will branch to two
1054   // different handlers, and EmitBlockAfterUses will cause the second
1055   // handler to be moved before the first.
1056   for (unsigned I = NumHandlers; I != 0; --I) {
1057     llvm::BasicBlock *CatchBlock = Handlers[I-1].Block;
1058     EmitBlockAfterUses(CatchBlock);
1059 
1060     // Catch the exception if this isn't a catch-all.
1061     const CXXCatchStmt *C = S.getHandler(I-1);
1062 
1063     // Enter a cleanup scope, including the catch variable and the
1064     // end-catch.
1065     RunCleanupsScope CatchScope(*this);
1066 
1067     // Initialize the catch variable and set up the cleanups.
1068     CGM.getCXXABI().emitBeginCatch(*this, C);
1069 
1070     // Emit the PGO counter increment.
1071     incrementProfileCounter(C);
1072 
1073     // Perform the body of the catch.
1074     EmitStmt(C->getHandlerBlock());
1075 
1076     // [except.handle]p11:
1077     //   The currently handled exception is rethrown if control
1078     //   reaches the end of a handler of the function-try-block of a
1079     //   constructor or destructor.
1080 
1081     // It is important that we only do this on fallthrough and not on
1082     // return.  Note that it's illegal to put a return in a
1083     // constructor function-try-block's catch handler (p14), so this
1084     // really only applies to destructors.
1085     if (doImplicitRethrow && HaveInsertPoint()) {
1086       CGM.getCXXABI().emitRethrow(*this, /*isNoReturn*/false);
1087       Builder.CreateUnreachable();
1088       Builder.ClearInsertionPoint();
1089     }
1090 
1091     // Fall out through the catch cleanups.
1092     CatchScope.ForceCleanup();
1093 
1094     // Branch out of the try.
1095     if (HaveInsertPoint())
1096       Builder.CreateBr(ContBB);
1097   }
1098 
1099   EmitBlock(ContBB);
1100   incrementProfileCounter(&S);
1101   if (CatchEndBlockBB)
1102     EHStack.popPadEnd();
1103 }
1104 
1105 namespace {
1106   struct CallEndCatchForFinally final : EHScopeStack::Cleanup {
1107     llvm::Value *ForEHVar;
1108     llvm::Value *EndCatchFn;
1109     CallEndCatchForFinally(llvm::Value *ForEHVar, llvm::Value *EndCatchFn)
1110       : ForEHVar(ForEHVar), EndCatchFn(EndCatchFn) {}
1111 
1112     void Emit(CodeGenFunction &CGF, Flags flags) override {
1113       llvm::BasicBlock *EndCatchBB = CGF.createBasicBlock("finally.endcatch");
1114       llvm::BasicBlock *CleanupContBB =
1115         CGF.createBasicBlock("finally.cleanup.cont");
1116 
1117       llvm::Value *ShouldEndCatch =
1118         CGF.Builder.CreateFlagLoad(ForEHVar, "finally.endcatch");
1119       CGF.Builder.CreateCondBr(ShouldEndCatch, EndCatchBB, CleanupContBB);
1120       CGF.EmitBlock(EndCatchBB);
1121       CGF.EmitRuntimeCallOrInvoke(EndCatchFn); // catch-all, so might throw
1122       CGF.EmitBlock(CleanupContBB);
1123     }
1124   };
1125 
1126   struct PerformFinally final : EHScopeStack::Cleanup {
1127     const Stmt *Body;
1128     llvm::Value *ForEHVar;
1129     llvm::Value *EndCatchFn;
1130     llvm::Value *RethrowFn;
1131     llvm::Value *SavedExnVar;
1132 
1133     PerformFinally(const Stmt *Body, llvm::Value *ForEHVar,
1134                    llvm::Value *EndCatchFn,
1135                    llvm::Value *RethrowFn, llvm::Value *SavedExnVar)
1136       : Body(Body), ForEHVar(ForEHVar), EndCatchFn(EndCatchFn),
1137         RethrowFn(RethrowFn), SavedExnVar(SavedExnVar) {}
1138 
1139     void Emit(CodeGenFunction &CGF, Flags flags) override {
1140       // Enter a cleanup to call the end-catch function if one was provided.
1141       if (EndCatchFn)
1142         CGF.EHStack.pushCleanup<CallEndCatchForFinally>(NormalAndEHCleanup,
1143                                                         ForEHVar, EndCatchFn);
1144 
1145       // Save the current cleanup destination in case there are
1146       // cleanups in the finally block.
1147       llvm::Value *SavedCleanupDest =
1148         CGF.Builder.CreateLoad(CGF.getNormalCleanupDestSlot(),
1149                                "cleanup.dest.saved");
1150 
1151       // Emit the finally block.
1152       CGF.EmitStmt(Body);
1153 
1154       // If the end of the finally is reachable, check whether this was
1155       // for EH.  If so, rethrow.
1156       if (CGF.HaveInsertPoint()) {
1157         llvm::BasicBlock *RethrowBB = CGF.createBasicBlock("finally.rethrow");
1158         llvm::BasicBlock *ContBB = CGF.createBasicBlock("finally.cont");
1159 
1160         llvm::Value *ShouldRethrow =
1161           CGF.Builder.CreateFlagLoad(ForEHVar, "finally.shouldthrow");
1162         CGF.Builder.CreateCondBr(ShouldRethrow, RethrowBB, ContBB);
1163 
1164         CGF.EmitBlock(RethrowBB);
1165         if (SavedExnVar) {
1166           CGF.EmitRuntimeCallOrInvoke(RethrowFn,
1167             CGF.Builder.CreateAlignedLoad(SavedExnVar, CGF.getPointerAlign()));
1168         } else {
1169           CGF.EmitRuntimeCallOrInvoke(RethrowFn);
1170         }
1171         CGF.Builder.CreateUnreachable();
1172 
1173         CGF.EmitBlock(ContBB);
1174 
1175         // Restore the cleanup destination.
1176         CGF.Builder.CreateStore(SavedCleanupDest,
1177                                 CGF.getNormalCleanupDestSlot());
1178       }
1179 
1180       // Leave the end-catch cleanup.  As an optimization, pretend that
1181       // the fallthrough path was inaccessible; we've dynamically proven
1182       // that we're not in the EH case along that path.
1183       if (EndCatchFn) {
1184         CGBuilderTy::InsertPoint SavedIP = CGF.Builder.saveAndClearIP();
1185         CGF.PopCleanupBlock();
1186         CGF.Builder.restoreIP(SavedIP);
1187       }
1188 
1189       // Now make sure we actually have an insertion point or the
1190       // cleanup gods will hate us.
1191       CGF.EnsureInsertPoint();
1192     }
1193   };
1194 } // end anonymous namespace
1195 
1196 /// Enters a finally block for an implementation using zero-cost
1197 /// exceptions.  This is mostly general, but hard-codes some
1198 /// language/ABI-specific behavior in the catch-all sections.
1199 void CodeGenFunction::FinallyInfo::enter(CodeGenFunction &CGF,
1200                                          const Stmt *body,
1201                                          llvm::Constant *beginCatchFn,
1202                                          llvm::Constant *endCatchFn,
1203                                          llvm::Constant *rethrowFn) {
1204   assert((beginCatchFn != nullptr) == (endCatchFn != nullptr) &&
1205          "begin/end catch functions not paired");
1206   assert(rethrowFn && "rethrow function is required");
1207 
1208   BeginCatchFn = beginCatchFn;
1209 
1210   // The rethrow function has one of the following two types:
1211   //   void (*)()
1212   //   void (*)(void*)
1213   // In the latter case we need to pass it the exception object.
1214   // But we can't use the exception slot because the @finally might
1215   // have a landing pad (which would overwrite the exception slot).
1216   llvm::FunctionType *rethrowFnTy =
1217     cast<llvm::FunctionType>(
1218       cast<llvm::PointerType>(rethrowFn->getType())->getElementType());
1219   SavedExnVar = nullptr;
1220   if (rethrowFnTy->getNumParams())
1221     SavedExnVar = CGF.CreateTempAlloca(CGF.Int8PtrTy, "finally.exn");
1222 
1223   // A finally block is a statement which must be executed on any edge
1224   // out of a given scope.  Unlike a cleanup, the finally block may
1225   // contain arbitrary control flow leading out of itself.  In
1226   // addition, finally blocks should always be executed, even if there
1227   // are no catch handlers higher on the stack.  Therefore, we
1228   // surround the protected scope with a combination of a normal
1229   // cleanup (to catch attempts to break out of the block via normal
1230   // control flow) and an EH catch-all (semantically "outside" any try
1231   // statement to which the finally block might have been attached).
1232   // The finally block itself is generated in the context of a cleanup
1233   // which conditionally leaves the catch-all.
1234 
1235   // Jump destination for performing the finally block on an exception
1236   // edge.  We'll never actually reach this block, so unreachable is
1237   // fine.
1238   RethrowDest = CGF.getJumpDestInCurrentScope(CGF.getUnreachableBlock());
1239 
1240   // Whether the finally block is being executed for EH purposes.
1241   ForEHVar = CGF.CreateTempAlloca(CGF.Builder.getInt1Ty(), "finally.for-eh");
1242   CGF.Builder.CreateFlagStore(false, ForEHVar);
1243 
1244   // Enter a normal cleanup which will perform the @finally block.
1245   CGF.EHStack.pushCleanup<PerformFinally>(NormalCleanup, body,
1246                                           ForEHVar, endCatchFn,
1247                                           rethrowFn, SavedExnVar);
1248 
1249   // Enter a catch-all scope.
1250   llvm::BasicBlock *catchBB = CGF.createBasicBlock("finally.catchall");
1251   EHCatchScope *catchScope = CGF.EHStack.pushCatch(1);
1252   catchScope->setCatchAllHandler(0, catchBB);
1253 }
1254 
1255 void CodeGenFunction::FinallyInfo::exit(CodeGenFunction &CGF) {
1256   // Leave the finally catch-all.
1257   EHCatchScope &catchScope = cast<EHCatchScope>(*CGF.EHStack.begin());
1258   llvm::BasicBlock *catchBB = catchScope.getHandler(0).Block;
1259 
1260   CGF.popCatchScope();
1261 
1262   // If there are any references to the catch-all block, emit it.
1263   if (catchBB->use_empty()) {
1264     delete catchBB;
1265   } else {
1266     CGBuilderTy::InsertPoint savedIP = CGF.Builder.saveAndClearIP();
1267     CGF.EmitBlock(catchBB);
1268 
1269     llvm::Value *exn = nullptr;
1270 
1271     // If there's a begin-catch function, call it.
1272     if (BeginCatchFn) {
1273       exn = CGF.getExceptionFromSlot();
1274       CGF.EmitNounwindRuntimeCall(BeginCatchFn, exn);
1275     }
1276 
1277     // If we need to remember the exception pointer to rethrow later, do so.
1278     if (SavedExnVar) {
1279       if (!exn) exn = CGF.getExceptionFromSlot();
1280       CGF.Builder.CreateAlignedStore(exn, SavedExnVar, CGF.getPointerAlign());
1281     }
1282 
1283     // Tell the cleanups in the finally block that we're do this for EH.
1284     CGF.Builder.CreateFlagStore(true, ForEHVar);
1285 
1286     // Thread a jump through the finally cleanup.
1287     CGF.EmitBranchThroughCleanup(RethrowDest);
1288 
1289     CGF.Builder.restoreIP(savedIP);
1290   }
1291 
1292   // Finally, leave the @finally cleanup.
1293   CGF.PopCleanupBlock();
1294 }
1295 
1296 llvm::BasicBlock *CodeGenFunction::getTerminateLandingPad() {
1297   if (TerminateLandingPad)
1298     return TerminateLandingPad;
1299 
1300   CGBuilderTy::InsertPoint SavedIP = Builder.saveAndClearIP();
1301 
1302   // This will get inserted at the end of the function.
1303   TerminateLandingPad = createBasicBlock("terminate.lpad");
1304   Builder.SetInsertPoint(TerminateLandingPad);
1305 
1306   // Tell the backend that this is a landing pad.
1307   const EHPersonality &Personality = EHPersonality::get(*this);
1308 
1309   if (!CurFn->hasPersonalityFn())
1310     CurFn->setPersonalityFn(getOpaquePersonalityFn(CGM, Personality));
1311 
1312   llvm::LandingPadInst *LPadInst = Builder.CreateLandingPad(
1313       llvm::StructType::get(Int8PtrTy, Int32Ty, nullptr), 0);
1314   LPadInst->addClause(getCatchAllValue(*this));
1315 
1316   llvm::Value *Exn = nullptr;
1317   if (getLangOpts().CPlusPlus)
1318     Exn = Builder.CreateExtractValue(LPadInst, 0);
1319   llvm::CallInst *terminateCall =
1320       CGM.getCXXABI().emitTerminateForUnexpectedException(*this, Exn);
1321   terminateCall->setDoesNotReturn();
1322   Builder.CreateUnreachable();
1323 
1324   // Restore the saved insertion state.
1325   Builder.restoreIP(SavedIP);
1326 
1327   return TerminateLandingPad;
1328 }
1329 
1330 llvm::BasicBlock *CodeGenFunction::getTerminateHandler() {
1331   if (TerminateHandler)
1332     return TerminateHandler;
1333 
1334   CGBuilderTy::InsertPoint SavedIP = Builder.saveAndClearIP();
1335 
1336   // Set up the terminate handler.  This block is inserted at the very
1337   // end of the function by FinishFunction.
1338   TerminateHandler = createBasicBlock("terminate.handler");
1339   Builder.SetInsertPoint(TerminateHandler);
1340   if (EHPersonality::get(*this).usesFuncletPads()) {
1341     Builder.CreateTerminatePad(/*UnwindBB=*/nullptr, CGM.getTerminateFn());
1342   } else {
1343     llvm::Value *Exn = nullptr;
1344     if (getLangOpts().CPlusPlus)
1345       Exn = getExceptionFromSlot();
1346     llvm::CallInst *terminateCall =
1347         CGM.getCXXABI().emitTerminateForUnexpectedException(*this, Exn);
1348     terminateCall->setDoesNotReturn();
1349     Builder.CreateUnreachable();
1350   }
1351 
1352   // Restore the saved insertion state.
1353   Builder.restoreIP(SavedIP);
1354 
1355   return TerminateHandler;
1356 }
1357 
1358 llvm::BasicBlock *CodeGenFunction::getEHResumeBlock(bool isCleanup) {
1359   if (EHResumeBlock) return EHResumeBlock;
1360 
1361   CGBuilderTy::InsertPoint SavedIP = Builder.saveIP();
1362 
1363   // We emit a jump to a notional label at the outermost unwind state.
1364   EHResumeBlock = createBasicBlock("eh.resume");
1365   Builder.SetInsertPoint(EHResumeBlock);
1366 
1367   const EHPersonality &Personality = EHPersonality::get(*this);
1368 
1369   // This can always be a call because we necessarily didn't find
1370   // anything on the EH stack which needs our help.
1371   const char *RethrowName = Personality.CatchallRethrowFn;
1372   if (RethrowName != nullptr && !isCleanup) {
1373     EmitRuntimeCall(getCatchallRethrowFn(CGM, RethrowName),
1374                     getExceptionFromSlot())->setDoesNotReturn();
1375     Builder.CreateUnreachable();
1376     Builder.restoreIP(SavedIP);
1377     return EHResumeBlock;
1378   }
1379 
1380   // Recreate the landingpad's return value for the 'resume' instruction.
1381   llvm::Value *Exn = getExceptionFromSlot();
1382   llvm::Value *Sel = getSelectorFromSlot();
1383 
1384   llvm::Type *LPadType = llvm::StructType::get(Exn->getType(),
1385                                                Sel->getType(), nullptr);
1386   llvm::Value *LPadVal = llvm::UndefValue::get(LPadType);
1387   LPadVal = Builder.CreateInsertValue(LPadVal, Exn, 0, "lpad.val");
1388   LPadVal = Builder.CreateInsertValue(LPadVal, Sel, 1, "lpad.val");
1389 
1390   Builder.CreateResume(LPadVal);
1391   Builder.restoreIP(SavedIP);
1392   return EHResumeBlock;
1393 }
1394 
1395 void CodeGenFunction::EmitSEHTryStmt(const SEHTryStmt &S) {
1396   EnterSEHTryStmt(S);
1397   {
1398     JumpDest TryExit = getJumpDestInCurrentScope("__try.__leave");
1399 
1400     SEHTryEpilogueStack.push_back(&TryExit);
1401     EmitStmt(S.getTryBlock());
1402     SEHTryEpilogueStack.pop_back();
1403 
1404     if (!TryExit.getBlock()->use_empty())
1405       EmitBlock(TryExit.getBlock(), /*IsFinished=*/true);
1406     else
1407       delete TryExit.getBlock();
1408   }
1409   ExitSEHTryStmt(S);
1410 }
1411 
1412 namespace {
1413 struct PerformSEHFinally final : EHScopeStack::Cleanup {
1414   llvm::Function *OutlinedFinally;
1415   PerformSEHFinally(llvm::Function *OutlinedFinally)
1416       : OutlinedFinally(OutlinedFinally) {}
1417 
1418   void Emit(CodeGenFunction &CGF, Flags F) override {
1419     ASTContext &Context = CGF.getContext();
1420     CodeGenModule &CGM = CGF.CGM;
1421 
1422     CallArgList Args;
1423 
1424     // Compute the two argument values.
1425     QualType ArgTys[2] = {Context.UnsignedCharTy, Context.VoidPtrTy};
1426     llvm::Value *LocalAddrFn = CGM.getIntrinsic(llvm::Intrinsic::localaddress);
1427     llvm::Value *FP = CGF.Builder.CreateCall(LocalAddrFn);
1428     llvm::Value *IsForEH =
1429         llvm::ConstantInt::get(CGF.ConvertType(ArgTys[0]), F.isForEHCleanup());
1430     Args.add(RValue::get(IsForEH), ArgTys[0]);
1431     Args.add(RValue::get(FP), ArgTys[1]);
1432 
1433     // Arrange a two-arg function info and type.
1434     FunctionProtoType::ExtProtoInfo EPI;
1435     const auto *FPT = cast<FunctionProtoType>(
1436         Context.getFunctionType(Context.VoidTy, ArgTys, EPI));
1437     const CGFunctionInfo &FnInfo =
1438         CGM.getTypes().arrangeFreeFunctionCall(Args, FPT,
1439                                                /*chainCall=*/false);
1440 
1441     CGF.EmitCall(FnInfo, OutlinedFinally, ReturnValueSlot(), Args);
1442   }
1443 };
1444 } // end anonymous namespace
1445 
1446 namespace {
1447 /// Find all local variable captures in the statement.
1448 struct CaptureFinder : ConstStmtVisitor<CaptureFinder> {
1449   CodeGenFunction &ParentCGF;
1450   const VarDecl *ParentThis;
1451   llvm::SmallSetVector<const VarDecl *, 4> Captures;
1452   Address SEHCodeSlot = Address::invalid();
1453   CaptureFinder(CodeGenFunction &ParentCGF, const VarDecl *ParentThis)
1454       : ParentCGF(ParentCGF), ParentThis(ParentThis) {}
1455 
1456   // Return true if we need to do any capturing work.
1457   bool foundCaptures() {
1458     return !Captures.empty() || SEHCodeSlot.isValid();
1459   }
1460 
1461   void Visit(const Stmt *S) {
1462     // See if this is a capture, then recurse.
1463     ConstStmtVisitor<CaptureFinder>::Visit(S);
1464     for (const Stmt *Child : S->children())
1465       if (Child)
1466         Visit(Child);
1467   }
1468 
1469   void VisitDeclRefExpr(const DeclRefExpr *E) {
1470     // If this is already a capture, just make sure we capture 'this'.
1471     if (E->refersToEnclosingVariableOrCapture()) {
1472       Captures.insert(ParentThis);
1473       return;
1474     }
1475 
1476     const auto *D = dyn_cast<VarDecl>(E->getDecl());
1477     if (D && D->isLocalVarDeclOrParm() && D->hasLocalStorage())
1478       Captures.insert(D);
1479   }
1480 
1481   void VisitCXXThisExpr(const CXXThisExpr *E) {
1482     Captures.insert(ParentThis);
1483   }
1484 
1485   void VisitCallExpr(const CallExpr *E) {
1486     // We only need to add parent frame allocations for these builtins in x86.
1487     if (ParentCGF.getTarget().getTriple().getArch() != llvm::Triple::x86)
1488       return;
1489 
1490     unsigned ID = E->getBuiltinCallee();
1491     switch (ID) {
1492     case Builtin::BI__exception_code:
1493     case Builtin::BI_exception_code:
1494       // This is the simple case where we are the outermost finally. All we
1495       // have to do here is make sure we escape this and recover it in the
1496       // outlined handler.
1497       if (!SEHCodeSlot.isValid())
1498         SEHCodeSlot = ParentCGF.SEHCodeSlotStack.back();
1499       break;
1500     }
1501   }
1502 };
1503 } // end anonymous namespace
1504 
1505 Address CodeGenFunction::recoverAddrOfEscapedLocal(
1506     CodeGenFunction &ParentCGF, Address ParentVar, llvm::Value *ParentFP) {
1507   llvm::CallInst *RecoverCall = nullptr;
1508   CGBuilderTy Builder(*this, AllocaInsertPt);
1509   if (auto *ParentAlloca = dyn_cast<llvm::AllocaInst>(ParentVar.getPointer())) {
1510     // Mark the variable escaped if nobody else referenced it and compute the
1511     // localescape index.
1512     auto InsertPair = ParentCGF.EscapedLocals.insert(
1513         std::make_pair(ParentAlloca, ParentCGF.EscapedLocals.size()));
1514     int FrameEscapeIdx = InsertPair.first->second;
1515     // call i8* @llvm.localrecover(i8* bitcast(@parentFn), i8* %fp, i32 N)
1516     llvm::Function *FrameRecoverFn = llvm::Intrinsic::getDeclaration(
1517         &CGM.getModule(), llvm::Intrinsic::localrecover);
1518     llvm::Constant *ParentI8Fn =
1519         llvm::ConstantExpr::getBitCast(ParentCGF.CurFn, Int8PtrTy);
1520     RecoverCall = Builder.CreateCall(
1521         FrameRecoverFn, {ParentI8Fn, ParentFP,
1522                          llvm::ConstantInt::get(Int32Ty, FrameEscapeIdx)});
1523 
1524   } else {
1525     // If the parent didn't have an alloca, we're doing some nested outlining.
1526     // Just clone the existing localrecover call, but tweak the FP argument to
1527     // use our FP value. All other arguments are constants.
1528     auto *ParentRecover =
1529         cast<llvm::IntrinsicInst>(ParentVar.getPointer()->stripPointerCasts());
1530     assert(ParentRecover->getIntrinsicID() == llvm::Intrinsic::localrecover &&
1531            "expected alloca or localrecover in parent LocalDeclMap");
1532     RecoverCall = cast<llvm::CallInst>(ParentRecover->clone());
1533     RecoverCall->setArgOperand(1, ParentFP);
1534     RecoverCall->insertBefore(AllocaInsertPt);
1535   }
1536 
1537   // Bitcast the variable, rename it, and insert it in the local decl map.
1538   llvm::Value *ChildVar =
1539       Builder.CreateBitCast(RecoverCall, ParentVar.getType());
1540   ChildVar->setName(ParentVar.getName());
1541   return Address(ChildVar, ParentVar.getAlignment());
1542 }
1543 
1544 void CodeGenFunction::EmitCapturedLocals(CodeGenFunction &ParentCGF,
1545                                          const Stmt *OutlinedStmt,
1546                                          bool IsFilter) {
1547   // Find all captures in the Stmt.
1548   CaptureFinder Finder(ParentCGF, ParentCGF.CXXABIThisDecl);
1549   Finder.Visit(OutlinedStmt);
1550 
1551   // We can exit early on x86_64 when there are no captures. We just have to
1552   // save the exception code in filters so that __exception_code() works.
1553   if (!Finder.foundCaptures() &&
1554       CGM.getTarget().getTriple().getArch() != llvm::Triple::x86) {
1555     if (IsFilter)
1556       EmitSEHExceptionCodeSave(ParentCGF, nullptr, nullptr);
1557     return;
1558   }
1559 
1560   llvm::Value *EntryEBP = nullptr;
1561   llvm::Value *ParentFP;
1562   if (IsFilter && CGM.getTarget().getTriple().getArch() == llvm::Triple::x86) {
1563     // 32-bit SEH filters need to be careful about FP recovery.  The end of the
1564     // EH registration is passed in as the EBP physical register.  We can
1565     // recover that with llvm.frameaddress(1), and adjust that to recover the
1566     // parent's true frame pointer.
1567     CGBuilderTy Builder(CGM, AllocaInsertPt);
1568     EntryEBP = Builder.CreateCall(
1569         CGM.getIntrinsic(llvm::Intrinsic::frameaddress), {Builder.getInt32(1)});
1570     llvm::Function *RecoverFPIntrin =
1571         CGM.getIntrinsic(llvm::Intrinsic::x86_seh_recoverfp);
1572     llvm::Constant *ParentI8Fn =
1573         llvm::ConstantExpr::getBitCast(ParentCGF.CurFn, Int8PtrTy);
1574     ParentFP = Builder.CreateCall(RecoverFPIntrin, {ParentI8Fn, EntryEBP});
1575   } else {
1576     // Otherwise, for x64 and 32-bit finally functions, the parent FP is the
1577     // second parameter.
1578     auto AI = CurFn->arg_begin();
1579     ++AI;
1580     ParentFP = &*AI;
1581   }
1582 
1583   // Create llvm.localrecover calls for all captures.
1584   for (const VarDecl *VD : Finder.Captures) {
1585     if (isa<ImplicitParamDecl>(VD)) {
1586       CGM.ErrorUnsupported(VD, "'this' captured by SEH");
1587       CXXThisValue = llvm::UndefValue::get(ConvertTypeForMem(VD->getType()));
1588       continue;
1589     }
1590     if (VD->getType()->isVariablyModifiedType()) {
1591       CGM.ErrorUnsupported(VD, "VLA captured by SEH");
1592       continue;
1593     }
1594     assert((isa<ImplicitParamDecl>(VD) || VD->isLocalVarDeclOrParm()) &&
1595            "captured non-local variable");
1596 
1597     // If this decl hasn't been declared yet, it will be declared in the
1598     // OutlinedStmt.
1599     auto I = ParentCGF.LocalDeclMap.find(VD);
1600     if (I == ParentCGF.LocalDeclMap.end())
1601       continue;
1602 
1603     Address ParentVar = I->second;
1604     setAddrOfLocalVar(VD,
1605                   recoverAddrOfEscapedLocal(ParentCGF, ParentVar, ParentFP));
1606   }
1607 
1608   if (Finder.SEHCodeSlot.isValid()) {
1609     SEHCodeSlotStack.push_back(
1610         recoverAddrOfEscapedLocal(ParentCGF, Finder.SEHCodeSlot, ParentFP));
1611   }
1612 
1613   if (IsFilter)
1614     EmitSEHExceptionCodeSave(ParentCGF, ParentFP, EntryEBP);
1615 }
1616 
1617 /// Arrange a function prototype that can be called by Windows exception
1618 /// handling personalities. On Win64, the prototype looks like:
1619 /// RetTy func(void *EHPtrs, void *ParentFP);
1620 void CodeGenFunction::startOutlinedSEHHelper(CodeGenFunction &ParentCGF,
1621                                              bool IsFilter,
1622                                              const Stmt *OutlinedStmt) {
1623   SourceLocation StartLoc = OutlinedStmt->getLocStart();
1624 
1625   // Get the mangled function name.
1626   SmallString<128> Name;
1627   {
1628     llvm::raw_svector_ostream OS(Name);
1629     const Decl *ParentCodeDecl = ParentCGF.CurCodeDecl;
1630     const NamedDecl *Parent = dyn_cast_or_null<NamedDecl>(ParentCodeDecl);
1631     assert(Parent && "FIXME: handle unnamed decls (lambdas, blocks) with SEH");
1632     MangleContext &Mangler = CGM.getCXXABI().getMangleContext();
1633     if (IsFilter)
1634       Mangler.mangleSEHFilterExpression(Parent, OS);
1635     else
1636       Mangler.mangleSEHFinallyBlock(Parent, OS);
1637   }
1638 
1639   FunctionArgList Args;
1640   if (CGM.getTarget().getTriple().getArch() != llvm::Triple::x86 || !IsFilter) {
1641     // All SEH finally functions take two parameters. Win64 filters take two
1642     // parameters. Win32 filters take no parameters.
1643     if (IsFilter) {
1644       Args.push_back(ImplicitParamDecl::Create(
1645           getContext(), nullptr, StartLoc,
1646           &getContext().Idents.get("exception_pointers"),
1647           getContext().VoidPtrTy));
1648     } else {
1649       Args.push_back(ImplicitParamDecl::Create(
1650           getContext(), nullptr, StartLoc,
1651           &getContext().Idents.get("abnormal_termination"),
1652           getContext().UnsignedCharTy));
1653     }
1654     Args.push_back(ImplicitParamDecl::Create(
1655         getContext(), nullptr, StartLoc,
1656         &getContext().Idents.get("frame_pointer"), getContext().VoidPtrTy));
1657   }
1658 
1659   QualType RetTy = IsFilter ? getContext().LongTy : getContext().VoidTy;
1660 
1661   llvm::Function *ParentFn = ParentCGF.CurFn;
1662   const CGFunctionInfo &FnInfo = CGM.getTypes().arrangeFreeFunctionDeclaration(
1663       RetTy, Args, FunctionType::ExtInfo(), /*isVariadic=*/false);
1664 
1665   llvm::FunctionType *FnTy = CGM.getTypes().GetFunctionType(FnInfo);
1666   llvm::Function *Fn = llvm::Function::Create(
1667       FnTy, llvm::GlobalValue::InternalLinkage, Name.str(), &CGM.getModule());
1668   // The filter is either in the same comdat as the function, or it's internal.
1669   if (llvm::Comdat *C = ParentFn->getComdat()) {
1670     Fn->setComdat(C);
1671   } else if (ParentFn->hasWeakLinkage() || ParentFn->hasLinkOnceLinkage()) {
1672     llvm::Comdat *C = CGM.getModule().getOrInsertComdat(ParentFn->getName());
1673     ParentFn->setComdat(C);
1674     Fn->setComdat(C);
1675   } else {
1676     Fn->setLinkage(llvm::GlobalValue::InternalLinkage);
1677   }
1678 
1679   IsOutlinedSEHHelper = true;
1680 
1681   StartFunction(GlobalDecl(), RetTy, Fn, FnInfo, Args,
1682                 OutlinedStmt->getLocStart(), OutlinedStmt->getLocStart());
1683 
1684   CGM.SetLLVMFunctionAttributes(nullptr, FnInfo, CurFn);
1685   EmitCapturedLocals(ParentCGF, OutlinedStmt, IsFilter);
1686 }
1687 
1688 /// Create a stub filter function that will ultimately hold the code of the
1689 /// filter expression. The EH preparation passes in LLVM will outline the code
1690 /// from the main function body into this stub.
1691 llvm::Function *
1692 CodeGenFunction::GenerateSEHFilterFunction(CodeGenFunction &ParentCGF,
1693                                            const SEHExceptStmt &Except) {
1694   const Expr *FilterExpr = Except.getFilterExpr();
1695   startOutlinedSEHHelper(ParentCGF, true, FilterExpr);
1696 
1697   // Emit the original filter expression, convert to i32, and return.
1698   llvm::Value *R = EmitScalarExpr(FilterExpr);
1699   R = Builder.CreateIntCast(R, ConvertType(getContext().LongTy),
1700                             FilterExpr->getType()->isSignedIntegerType());
1701   Builder.CreateStore(R, ReturnValue);
1702 
1703   FinishFunction(FilterExpr->getLocEnd());
1704 
1705   return CurFn;
1706 }
1707 
1708 llvm::Function *
1709 CodeGenFunction::GenerateSEHFinallyFunction(CodeGenFunction &ParentCGF,
1710                                             const SEHFinallyStmt &Finally) {
1711   const Stmt *FinallyBlock = Finally.getBlock();
1712   startOutlinedSEHHelper(ParentCGF, false, FinallyBlock);
1713 
1714   // Mark finally block calls as nounwind and noinline to make LLVM's job a
1715   // little easier.
1716   // FIXME: Remove these restrictions in the future.
1717   CurFn->addFnAttr(llvm::Attribute::NoUnwind);
1718   CurFn->addFnAttr(llvm::Attribute::NoInline);
1719 
1720   // Emit the original filter expression, convert to i32, and return.
1721   EmitStmt(FinallyBlock);
1722 
1723   FinishFunction(FinallyBlock->getLocEnd());
1724 
1725   return CurFn;
1726 }
1727 
1728 void CodeGenFunction::EmitSEHExceptionCodeSave(CodeGenFunction &ParentCGF,
1729                                                llvm::Value *ParentFP,
1730                                                llvm::Value *EntryEBP) {
1731   // Get the pointer to the EXCEPTION_POINTERS struct. This is returned by the
1732   // __exception_info intrinsic.
1733   if (CGM.getTarget().getTriple().getArch() != llvm::Triple::x86) {
1734     // On Win64, the info is passed as the first parameter to the filter.
1735     SEHInfo = &*CurFn->arg_begin();
1736     SEHCodeSlotStack.push_back(
1737         CreateMemTemp(getContext().IntTy, "__exception_code"));
1738   } else {
1739     // On Win32, the EBP on entry to the filter points to the end of an
1740     // exception registration object. It contains 6 32-bit fields, and the info
1741     // pointer is stored in the second field. So, GEP 20 bytes backwards and
1742     // load the pointer.
1743     SEHInfo = Builder.CreateConstInBoundsGEP1_32(Int8Ty, EntryEBP, -20);
1744     SEHInfo = Builder.CreateBitCast(SEHInfo, Int8PtrTy->getPointerTo());
1745     SEHInfo = Builder.CreateAlignedLoad(Int8PtrTy, SEHInfo, getPointerAlign());
1746     SEHCodeSlotStack.push_back(recoverAddrOfEscapedLocal(
1747         ParentCGF, ParentCGF.SEHCodeSlotStack.back(), ParentFP));
1748   }
1749 
1750   // Save the exception code in the exception slot to unify exception access in
1751   // the filter function and the landing pad.
1752   // struct EXCEPTION_POINTERS {
1753   //   EXCEPTION_RECORD *ExceptionRecord;
1754   //   CONTEXT *ContextRecord;
1755   // };
1756   // int exceptioncode = exception_pointers->ExceptionRecord->ExceptionCode;
1757   llvm::Type *RecordTy = CGM.Int32Ty->getPointerTo();
1758   llvm::Type *PtrsTy = llvm::StructType::get(RecordTy, CGM.VoidPtrTy, nullptr);
1759   llvm::Value *Ptrs = Builder.CreateBitCast(SEHInfo, PtrsTy->getPointerTo());
1760   llvm::Value *Rec = Builder.CreateStructGEP(PtrsTy, Ptrs, 0);
1761   Rec = Builder.CreateAlignedLoad(Rec, getPointerAlign());
1762   llvm::Value *Code = Builder.CreateAlignedLoad(Rec, getIntAlign());
1763   assert(!SEHCodeSlotStack.empty() && "emitting EH code outside of __except");
1764   Builder.CreateStore(Code, SEHCodeSlotStack.back());
1765 }
1766 
1767 llvm::Value *CodeGenFunction::EmitSEHExceptionInfo() {
1768   // Sema should diagnose calling this builtin outside of a filter context, but
1769   // don't crash if we screw up.
1770   if (!SEHInfo)
1771     return llvm::UndefValue::get(Int8PtrTy);
1772   assert(SEHInfo->getType() == Int8PtrTy);
1773   return SEHInfo;
1774 }
1775 
1776 llvm::Value *CodeGenFunction::EmitSEHExceptionCode() {
1777   assert(!SEHCodeSlotStack.empty() && "emitting EH code outside of __except");
1778   return Builder.CreateLoad(SEHCodeSlotStack.back());
1779 }
1780 
1781 llvm::Value *CodeGenFunction::EmitSEHAbnormalTermination() {
1782   // Abnormal termination is just the first parameter to the outlined finally
1783   // helper.
1784   auto AI = CurFn->arg_begin();
1785   return Builder.CreateZExt(&*AI, Int32Ty);
1786 }
1787 
1788 void CodeGenFunction::EnterSEHTryStmt(const SEHTryStmt &S) {
1789   CodeGenFunction HelperCGF(CGM, /*suppressNewContext=*/true);
1790   if (const SEHFinallyStmt *Finally = S.getFinallyHandler()) {
1791     // Outline the finally block.
1792     llvm::Function *FinallyFunc =
1793         HelperCGF.GenerateSEHFinallyFunction(*this, *Finally);
1794 
1795     // Push a cleanup for __finally blocks.
1796     EHStack.pushCleanup<PerformSEHFinally>(NormalAndEHCleanup, FinallyFunc);
1797     return;
1798   }
1799 
1800   // Otherwise, we must have an __except block.
1801   const SEHExceptStmt *Except = S.getExceptHandler();
1802   assert(Except);
1803   EHCatchScope *CatchScope = EHStack.pushCatch(1);
1804   SEHCodeSlotStack.push_back(
1805       CreateMemTemp(getContext().IntTy, "__exception_code"));
1806 
1807   // If the filter is known to evaluate to 1, then we can use the clause
1808   // "catch i8* null". We can't do this on x86 because the filter has to save
1809   // the exception code.
1810   llvm::Constant *C =
1811       CGM.EmitConstantExpr(Except->getFilterExpr(), getContext().IntTy, this);
1812   if (CGM.getTarget().getTriple().getArch() != llvm::Triple::x86 && C &&
1813       C->isOneValue()) {
1814     CatchScope->setCatchAllHandler(0, createBasicBlock("__except"));
1815     return;
1816   }
1817 
1818   // In general, we have to emit an outlined filter function. Use the function
1819   // in place of the RTTI typeinfo global that C++ EH uses.
1820   llvm::Function *FilterFunc =
1821       HelperCGF.GenerateSEHFilterFunction(*this, *Except);
1822   llvm::Constant *OpaqueFunc =
1823       llvm::ConstantExpr::getBitCast(FilterFunc, Int8PtrTy);
1824   CatchScope->setHandler(0, OpaqueFunc, createBasicBlock("__except.ret"));
1825 }
1826 
1827 void CodeGenFunction::ExitSEHTryStmt(const SEHTryStmt &S) {
1828   // Just pop the cleanup if it's a __finally block.
1829   if (S.getFinallyHandler()) {
1830     PopCleanupBlock();
1831     return;
1832   }
1833 
1834   // Otherwise, we must have an __except block.
1835   const SEHExceptStmt *Except = S.getExceptHandler();
1836   assert(Except && "__try must have __finally xor __except");
1837   EHCatchScope &CatchScope = cast<EHCatchScope>(*EHStack.begin());
1838 
1839   // Don't emit the __except block if the __try block lacked invokes.
1840   // TODO: Model unwind edges from instructions, either with iload / istore or
1841   // a try body function.
1842   if (!CatchScope.hasEHBranches()) {
1843     CatchScope.clearHandlerBlocks();
1844     EHStack.popCatch();
1845     SEHCodeSlotStack.pop_back();
1846     return;
1847   }
1848 
1849   // The fall-through block.
1850   llvm::BasicBlock *ContBB = createBasicBlock("__try.cont");
1851 
1852   // We just emitted the body of the __try; jump to the continue block.
1853   if (HaveInsertPoint())
1854     Builder.CreateBr(ContBB);
1855 
1856   // Check if our filter function returned true.
1857   emitCatchDispatchBlock(*this, CatchScope);
1858 
1859   // Grab the block before we pop the handler.
1860   llvm::BasicBlock *ExceptBB = CatchScope.getHandler(0).Block;
1861   EHStack.popCatch();
1862 
1863   EmitBlockAfterUses(ExceptBB);
1864 
1865   // __except blocks don't get outlined into funclets, so immediately do a
1866   // catchret.
1867   llvm::BasicBlock *CatchPadBB = ExceptBB->getSinglePredecessor();
1868   assert(CatchPadBB && "only ExceptBB pred should be catchpad");
1869   llvm::CatchPadInst *CPI =
1870       cast<llvm::CatchPadInst>(CatchPadBB->getFirstNonPHI());
1871   ExceptBB = createBasicBlock("__except");
1872   Builder.CreateCatchRet(CPI, ExceptBB);
1873   EmitBlock(ExceptBB);
1874 
1875   // On Win64, the exception code is returned in EAX. Copy it into the slot.
1876   if (CGM.getTarget().getTriple().getArch() != llvm::Triple::x86) {
1877     llvm::Function *SEHCodeIntrin =
1878         CGM.getIntrinsic(llvm::Intrinsic::eh_exceptioncode);
1879     llvm::Value *Code = Builder.CreateCall(SEHCodeIntrin, {CPI});
1880     Builder.CreateStore(Code, SEHCodeSlotStack.back());
1881   }
1882 
1883   // Emit the __except body.
1884   EmitStmt(Except->getBlock());
1885 
1886   // End the lifetime of the exception code.
1887   SEHCodeSlotStack.pop_back();
1888 
1889   if (HaveInsertPoint())
1890     Builder.CreateBr(ContBB);
1891 
1892   EmitBlock(ContBB);
1893 }
1894 
1895 void CodeGenFunction::EmitSEHLeaveStmt(const SEHLeaveStmt &S) {
1896   // If this code is reachable then emit a stop point (if generating
1897   // debug info). We have to do this ourselves because we are on the
1898   // "simple" statement path.
1899   if (HaveInsertPoint())
1900     EmitStopPoint(&S);
1901 
1902   // This must be a __leave from a __finally block, which we warn on and is UB.
1903   // Just emit unreachable.
1904   if (!isSEHTryScope()) {
1905     Builder.CreateUnreachable();
1906     Builder.ClearInsertionPoint();
1907     return;
1908   }
1909 
1910   EmitBranchThroughCleanup(*SEHTryEpilogueStack.back());
1911 }
1912