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John McCalled1ae862011-01-28 11:13:47 +00001//===--- CGCleanup.cpp - Bookkeeping and code emission for cleanups -------===//
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 file contains code dealing with the IR generation for cleanups
11// and related information.
12//
13// A "cleanup" is a piece of code which needs to be executed whenever
14// control transfers out of a particular scope. This can be
15// conditionalized to occur only on exceptional control flow, only on
16// normal control flow, or both.
17//
18//===----------------------------------------------------------------------===//
19
John McCalled1ae862011-01-28 11:13:47 +000020#include "CGCleanup.h"
Reid Kleckner2da7fcd2013-06-09 16:56:53 +000021#include "CodeGenFunction.h"
John McCalled1ae862011-01-28 11:13:47 +000022
23using namespace clang;
24using namespace CodeGen;
25
26bool DominatingValue<RValue>::saved_type::needsSaving(RValue rv) {
27 if (rv.isScalar())
28 return DominatingLLVMValue::needsSaving(rv.getScalarVal());
29 if (rv.isAggregate())
30 return DominatingLLVMValue::needsSaving(rv.getAggregateAddr());
31 return true;
32}
33
34DominatingValue<RValue>::saved_type
35DominatingValue<RValue>::saved_type::save(CodeGenFunction &CGF, RValue rv) {
36 if (rv.isScalar()) {
37 llvm::Value *V = rv.getScalarVal();
38
39 // These automatically dominate and don't need to be saved.
40 if (!DominatingLLVMValue::needsSaving(V))
41 return saved_type(V, ScalarLiteral);
42
43 // Everything else needs an alloca.
44 llvm::Value *addr = CGF.CreateTempAlloca(V->getType(), "saved-rvalue");
45 CGF.Builder.CreateStore(V, addr);
46 return saved_type(addr, ScalarAddress);
47 }
48
49 if (rv.isComplex()) {
50 CodeGenFunction::ComplexPairTy V = rv.getComplexVal();
Chris Lattner2192fe52011-07-18 04:24:23 +000051 llvm::Type *ComplexTy =
Chris Lattner845511f2011-06-18 22:49:11 +000052 llvm::StructType::get(V.first->getType(), V.second->getType(),
Craig Topper8a13c412014-05-21 05:09:00 +000053 (void*) nullptr);
John McCalled1ae862011-01-28 11:13:47 +000054 llvm::Value *addr = CGF.CreateTempAlloca(ComplexTy, "saved-complex");
John McCall47fb9502013-03-07 21:37:08 +000055 CGF.Builder.CreateStore(V.first, CGF.Builder.CreateStructGEP(addr, 0));
56 CGF.Builder.CreateStore(V.second, CGF.Builder.CreateStructGEP(addr, 1));
John McCalled1ae862011-01-28 11:13:47 +000057 return saved_type(addr, ComplexAddress);
58 }
59
60 assert(rv.isAggregate());
61 llvm::Value *V = rv.getAggregateAddr(); // TODO: volatile?
62 if (!DominatingLLVMValue::needsSaving(V))
63 return saved_type(V, AggregateLiteral);
64
65 llvm::Value *addr = CGF.CreateTempAlloca(V->getType(), "saved-rvalue");
66 CGF.Builder.CreateStore(V, addr);
67 return saved_type(addr, AggregateAddress);
68}
69
70/// Given a saved r-value produced by SaveRValue, perform the code
71/// necessary to restore it to usability at the current insertion
72/// point.
73RValue DominatingValue<RValue>::saved_type::restore(CodeGenFunction &CGF) {
74 switch (K) {
75 case ScalarLiteral:
76 return RValue::get(Value);
77 case ScalarAddress:
78 return RValue::get(CGF.Builder.CreateLoad(Value));
79 case AggregateLiteral:
80 return RValue::getAggregate(Value);
81 case AggregateAddress:
82 return RValue::getAggregate(CGF.Builder.CreateLoad(Value));
John McCall47fb9502013-03-07 21:37:08 +000083 case ComplexAddress: {
84 llvm::Value *real =
85 CGF.Builder.CreateLoad(CGF.Builder.CreateStructGEP(Value, 0));
86 llvm::Value *imag =
87 CGF.Builder.CreateLoad(CGF.Builder.CreateStructGEP(Value, 1));
88 return RValue::getComplex(real, imag);
89 }
John McCalled1ae862011-01-28 11:13:47 +000090 }
91
92 llvm_unreachable("bad saved r-value kind");
John McCalled1ae862011-01-28 11:13:47 +000093}
94
95/// Push an entry of the given size onto this protected-scope stack.
96char *EHScopeStack::allocate(size_t Size) {
97 if (!StartOfBuffer) {
98 unsigned Capacity = 1024;
99 while (Capacity < Size) Capacity *= 2;
100 StartOfBuffer = new char[Capacity];
101 StartOfData = EndOfBuffer = StartOfBuffer + Capacity;
102 } else if (static_cast<size_t>(StartOfData - StartOfBuffer) < Size) {
103 unsigned CurrentCapacity = EndOfBuffer - StartOfBuffer;
104 unsigned UsedCapacity = CurrentCapacity - (StartOfData - StartOfBuffer);
105
106 unsigned NewCapacity = CurrentCapacity;
107 do {
108 NewCapacity *= 2;
109 } while (NewCapacity < UsedCapacity + Size);
110
111 char *NewStartOfBuffer = new char[NewCapacity];
112 char *NewEndOfBuffer = NewStartOfBuffer + NewCapacity;
113 char *NewStartOfData = NewEndOfBuffer - UsedCapacity;
114 memcpy(NewStartOfData, StartOfData, UsedCapacity);
115 delete [] StartOfBuffer;
116 StartOfBuffer = NewStartOfBuffer;
117 EndOfBuffer = NewEndOfBuffer;
118 StartOfData = NewStartOfData;
119 }
120
121 assert(StartOfBuffer + Size <= StartOfData);
122 StartOfData -= Size;
123 return StartOfData;
124}
125
126EHScopeStack::stable_iterator
John McCall8e4c74b2011-08-11 02:22:43 +0000127EHScopeStack::getInnermostActiveNormalCleanup() const {
128 for (stable_iterator si = getInnermostNormalCleanup(), se = stable_end();
129 si != se; ) {
130 EHCleanupScope &cleanup = cast<EHCleanupScope>(*find(si));
131 if (cleanup.isActive()) return si;
132 si = cleanup.getEnclosingNormalCleanup();
133 }
134 return stable_end();
135}
136
137EHScopeStack::stable_iterator EHScopeStack::getInnermostActiveEHScope() const {
138 for (stable_iterator si = getInnermostEHScope(), se = stable_end();
139 si != se; ) {
140 // Skip over inactive cleanups.
141 EHCleanupScope *cleanup = dyn_cast<EHCleanupScope>(&*find(si));
142 if (cleanup && !cleanup->isActive()) {
143 si = cleanup->getEnclosingEHScope();
144 continue;
John McCalled1ae862011-01-28 11:13:47 +0000145 }
John McCall8e4c74b2011-08-11 02:22:43 +0000146
147 // All other scopes are always active.
148 return si;
149 }
150
John McCalled1ae862011-01-28 11:13:47 +0000151 return stable_end();
152}
153
154
155void *EHScopeStack::pushCleanup(CleanupKind Kind, size_t Size) {
156 assert(((Size % sizeof(void*)) == 0) && "cleanup type is misaligned");
157 char *Buffer = allocate(EHCleanupScope::getSizeForCleanupSize(Size));
158 bool IsNormalCleanup = Kind & NormalCleanup;
159 bool IsEHCleanup = Kind & EHCleanup;
160 bool IsActive = !(Kind & InactiveCleanup);
161 EHCleanupScope *Scope =
162 new (Buffer) EHCleanupScope(IsNormalCleanup,
163 IsEHCleanup,
164 IsActive,
165 Size,
166 BranchFixups.size(),
167 InnermostNormalCleanup,
John McCall8e4c74b2011-08-11 02:22:43 +0000168 InnermostEHScope);
John McCalled1ae862011-01-28 11:13:47 +0000169 if (IsNormalCleanup)
170 InnermostNormalCleanup = stable_begin();
171 if (IsEHCleanup)
John McCall8e4c74b2011-08-11 02:22:43 +0000172 InnermostEHScope = stable_begin();
John McCalled1ae862011-01-28 11:13:47 +0000173
174 return Scope->getCleanupBuffer();
175}
176
177void EHScopeStack::popCleanup() {
178 assert(!empty() && "popping exception stack when not empty");
179
180 assert(isa<EHCleanupScope>(*begin()));
181 EHCleanupScope &Cleanup = cast<EHCleanupScope>(*begin());
182 InnermostNormalCleanup = Cleanup.getEnclosingNormalCleanup();
John McCall8e4c74b2011-08-11 02:22:43 +0000183 InnermostEHScope = Cleanup.getEnclosingEHScope();
John McCalled1ae862011-01-28 11:13:47 +0000184 StartOfData += Cleanup.getAllocatedSize();
185
John McCalled1ae862011-01-28 11:13:47 +0000186 // Destroy the cleanup.
Kostya Serebryanyb21aa762014-10-08 18:31:54 +0000187 Cleanup.Destroy();
John McCalled1ae862011-01-28 11:13:47 +0000188
189 // Check whether we can shrink the branch-fixups stack.
190 if (!BranchFixups.empty()) {
191 // If we no longer have any normal cleanups, all the fixups are
192 // complete.
193 if (!hasNormalCleanups())
194 BranchFixups.clear();
195
196 // Otherwise we can still trim out unnecessary nulls.
197 else
198 popNullFixups();
199 }
200}
201
John McCall8e4c74b2011-08-11 02:22:43 +0000202EHFilterScope *EHScopeStack::pushFilter(unsigned numFilters) {
203 assert(getInnermostEHScope() == stable_end());
204 char *buffer = allocate(EHFilterScope::getSizeForNumFilters(numFilters));
205 EHFilterScope *filter = new (buffer) EHFilterScope(numFilters);
206 InnermostEHScope = stable_begin();
207 return filter;
John McCalled1ae862011-01-28 11:13:47 +0000208}
209
210void EHScopeStack::popFilter() {
211 assert(!empty() && "popping exception stack when not empty");
212
John McCall8e4c74b2011-08-11 02:22:43 +0000213 EHFilterScope &filter = cast<EHFilterScope>(*begin());
214 StartOfData += EHFilterScope::getSizeForNumFilters(filter.getNumFilters());
John McCalled1ae862011-01-28 11:13:47 +0000215
John McCall8e4c74b2011-08-11 02:22:43 +0000216 InnermostEHScope = filter.getEnclosingEHScope();
John McCalled1ae862011-01-28 11:13:47 +0000217}
218
John McCall8e4c74b2011-08-11 02:22:43 +0000219EHCatchScope *EHScopeStack::pushCatch(unsigned numHandlers) {
220 char *buffer = allocate(EHCatchScope::getSizeForNumHandlers(numHandlers));
221 EHCatchScope *scope =
222 new (buffer) EHCatchScope(numHandlers, InnermostEHScope);
223 InnermostEHScope = stable_begin();
224 return scope;
John McCalled1ae862011-01-28 11:13:47 +0000225}
226
227void EHScopeStack::pushTerminate() {
228 char *Buffer = allocate(EHTerminateScope::getSize());
John McCall8e4c74b2011-08-11 02:22:43 +0000229 new (Buffer) EHTerminateScope(InnermostEHScope);
230 InnermostEHScope = stable_begin();
John McCalled1ae862011-01-28 11:13:47 +0000231}
232
233/// Remove any 'null' fixups on the stack. However, we can't pop more
234/// fixups than the fixup depth on the innermost normal cleanup, or
235/// else fixups that we try to add to that cleanup will end up in the
236/// wrong place. We *could* try to shrink fixup depths, but that's
237/// actually a lot of work for little benefit.
238void EHScopeStack::popNullFixups() {
239 // We expect this to only be called when there's still an innermost
240 // normal cleanup; otherwise there really shouldn't be any fixups.
241 assert(hasNormalCleanups());
242
243 EHScopeStack::iterator it = find(InnermostNormalCleanup);
244 unsigned MinSize = cast<EHCleanupScope>(*it).getFixupDepth();
245 assert(BranchFixups.size() >= MinSize && "fixup stack out of order");
246
247 while (BranchFixups.size() > MinSize &&
Craig Topper8a13c412014-05-21 05:09:00 +0000248 BranchFixups.back().Destination == nullptr)
John McCalled1ae862011-01-28 11:13:47 +0000249 BranchFixups.pop_back();
250}
251
252void CodeGenFunction::initFullExprCleanup() {
253 // Create a variable to decide whether the cleanup needs to be run.
254 llvm::AllocaInst *active
255 = CreateTempAlloca(Builder.getInt1Ty(), "cleanup.cond");
256
257 // Initialize it to false at a site that's guaranteed to be run
258 // before each evaluation.
John McCallf4beacd2011-11-10 10:43:54 +0000259 setBeforeOutermostConditional(Builder.getFalse(), active);
John McCalled1ae862011-01-28 11:13:47 +0000260
261 // Initialize it to true at the current location.
262 Builder.CreateStore(Builder.getTrue(), active);
263
264 // Set that as the active flag in the cleanup.
265 EHCleanupScope &cleanup = cast<EHCleanupScope>(*EHStack.begin());
Craig Topper8a13c412014-05-21 05:09:00 +0000266 assert(!cleanup.getActiveFlag() && "cleanup already has active flag?");
John McCalled1ae862011-01-28 11:13:47 +0000267 cleanup.setActiveFlag(active);
268
269 if (cleanup.isNormalCleanup()) cleanup.setTestFlagInNormalCleanup();
270 if (cleanup.isEHCleanup()) cleanup.setTestFlagInEHCleanup();
271}
272
John McCall5fcf8da2011-07-12 00:15:30 +0000273void EHScopeStack::Cleanup::anchor() {}
John McCalled1ae862011-01-28 11:13:47 +0000274
275/// All the branch fixups on the EH stack have propagated out past the
276/// outermost normal cleanup; resolve them all by adding cases to the
277/// given switch instruction.
278static void ResolveAllBranchFixups(CodeGenFunction &CGF,
279 llvm::SwitchInst *Switch,
280 llvm::BasicBlock *CleanupEntry) {
281 llvm::SmallPtrSet<llvm::BasicBlock*, 4> CasesAdded;
282
283 for (unsigned I = 0, E = CGF.EHStack.getNumBranchFixups(); I != E; ++I) {
284 // Skip this fixup if its destination isn't set.
285 BranchFixup &Fixup = CGF.EHStack.getBranchFixup(I);
Craig Topper8a13c412014-05-21 05:09:00 +0000286 if (Fixup.Destination == nullptr) continue;
John McCalled1ae862011-01-28 11:13:47 +0000287
288 // If there isn't an OptimisticBranchBlock, then InitialBranch is
289 // still pointing directly to its destination; forward it to the
290 // appropriate cleanup entry. This is required in the specific
291 // case of
292 // { std::string s; goto lbl; }
293 // lbl:
294 // i.e. where there's an unresolved fixup inside a single cleanup
295 // entry which we're currently popping.
Craig Topper8a13c412014-05-21 05:09:00 +0000296 if (Fixup.OptimisticBranchBlock == nullptr) {
John McCalled1ae862011-01-28 11:13:47 +0000297 new llvm::StoreInst(CGF.Builder.getInt32(Fixup.DestinationIndex),
298 CGF.getNormalCleanupDestSlot(),
299 Fixup.InitialBranch);
300 Fixup.InitialBranch->setSuccessor(0, CleanupEntry);
301 }
302
303 // Don't add this case to the switch statement twice.
David Blaikie82e95a32014-11-19 07:49:47 +0000304 if (!CasesAdded.insert(Fixup.Destination).second)
305 continue;
John McCalled1ae862011-01-28 11:13:47 +0000306
307 Switch->addCase(CGF.Builder.getInt32(Fixup.DestinationIndex),
308 Fixup.Destination);
309 }
310
311 CGF.EHStack.clearFixups();
312}
313
314/// Transitions the terminator of the given exit-block of a cleanup to
315/// be a cleanup switch.
316static llvm::SwitchInst *TransitionToCleanupSwitch(CodeGenFunction &CGF,
317 llvm::BasicBlock *Block) {
318 // If it's a branch, turn it into a switch whose default
319 // destination is its original target.
320 llvm::TerminatorInst *Term = Block->getTerminator();
321 assert(Term && "can't transition block without terminator");
322
323 if (llvm::BranchInst *Br = dyn_cast<llvm::BranchInst>(Term)) {
324 assert(Br->isUnconditional());
325 llvm::LoadInst *Load =
326 new llvm::LoadInst(CGF.getNormalCleanupDestSlot(), "cleanup.dest", Term);
327 llvm::SwitchInst *Switch =
328 llvm::SwitchInst::Create(Load, Br->getSuccessor(0), 4, Block);
329 Br->eraseFromParent();
330 return Switch;
331 } else {
332 return cast<llvm::SwitchInst>(Term);
333 }
334}
335
336void CodeGenFunction::ResolveBranchFixups(llvm::BasicBlock *Block) {
337 assert(Block && "resolving a null target block");
338 if (!EHStack.getNumBranchFixups()) return;
339
340 assert(EHStack.hasNormalCleanups() &&
341 "branch fixups exist with no normal cleanups on stack");
342
343 llvm::SmallPtrSet<llvm::BasicBlock*, 4> ModifiedOptimisticBlocks;
344 bool ResolvedAny = false;
345
346 for (unsigned I = 0, E = EHStack.getNumBranchFixups(); I != E; ++I) {
347 // Skip this fixup if its destination doesn't match.
348 BranchFixup &Fixup = EHStack.getBranchFixup(I);
349 if (Fixup.Destination != Block) continue;
350
Craig Topper8a13c412014-05-21 05:09:00 +0000351 Fixup.Destination = nullptr;
John McCalled1ae862011-01-28 11:13:47 +0000352 ResolvedAny = true;
353
354 // If it doesn't have an optimistic branch block, LatestBranch is
355 // already pointing to the right place.
356 llvm::BasicBlock *BranchBB = Fixup.OptimisticBranchBlock;
357 if (!BranchBB)
358 continue;
359
360 // Don't process the same optimistic branch block twice.
David Blaikie82e95a32014-11-19 07:49:47 +0000361 if (!ModifiedOptimisticBlocks.insert(BranchBB).second)
John McCalled1ae862011-01-28 11:13:47 +0000362 continue;
363
364 llvm::SwitchInst *Switch = TransitionToCleanupSwitch(*this, BranchBB);
365
366 // Add a case to the switch.
367 Switch->addCase(Builder.getInt32(Fixup.DestinationIndex), Block);
368 }
369
370 if (ResolvedAny)
371 EHStack.popNullFixups();
372}
373
374/// Pops cleanup blocks until the given savepoint is reached.
Adrian Prantldc237b52013-05-16 00:41:26 +0000375void CodeGenFunction::PopCleanupBlocks(EHScopeStack::stable_iterator Old) {
John McCalled1ae862011-01-28 11:13:47 +0000376 assert(Old.isValid());
377
378 while (EHStack.stable_begin() != Old) {
379 EHCleanupScope &Scope = cast<EHCleanupScope>(*EHStack.begin());
380
381 // As long as Old strictly encloses the scope's enclosing normal
382 // cleanup, we're going to emit another normal cleanup which
383 // fallthrough can propagate through.
384 bool FallThroughIsBranchThrough =
385 Old.strictlyEncloses(Scope.getEnclosingNormalCleanup());
386
Adrian Prantldc237b52013-05-16 00:41:26 +0000387 PopCleanupBlock(FallThroughIsBranchThrough);
John McCalled1ae862011-01-28 11:13:47 +0000388 }
389}
390
Nick Lewycky5d1159e2014-10-10 04:05:00 +0000391/// Pops cleanup blocks until the given savepoint is reached, then add the
392/// cleanups from the given savepoint in the lifetime-extended cleanups stack.
Richard Smith736a9472013-06-12 20:42:33 +0000393void
Nick Lewycky5d1159e2014-10-10 04:05:00 +0000394CodeGenFunction::PopCleanupBlocks(EHScopeStack::stable_iterator Old,
395 size_t OldLifetimeExtendedSize) {
396 PopCleanupBlocks(Old);
397
398 // Move our deferred cleanups onto the EH stack.
Richard Smith736a9472013-06-12 20:42:33 +0000399 for (size_t I = OldLifetimeExtendedSize,
400 E = LifetimeExtendedCleanupStack.size(); I != E; /**/) {
401 // Alignment should be guaranteed by the vptrs in the individual cleanups.
402 assert((I % llvm::alignOf<LifetimeExtendedCleanupHeader>() == 0) &&
403 "misaligned cleanup stack entry");
404
405 LifetimeExtendedCleanupHeader &Header =
406 reinterpret_cast<LifetimeExtendedCleanupHeader&>(
407 LifetimeExtendedCleanupStack[I]);
408 I += sizeof(Header);
409
410 EHStack.pushCopyOfCleanup(Header.getKind(),
411 &LifetimeExtendedCleanupStack[I],
412 Header.getSize());
413 I += Header.getSize();
414 }
415 LifetimeExtendedCleanupStack.resize(OldLifetimeExtendedSize);
416}
417
John McCalled1ae862011-01-28 11:13:47 +0000418static llvm::BasicBlock *CreateNormalEntry(CodeGenFunction &CGF,
419 EHCleanupScope &Scope) {
420 assert(Scope.isNormalCleanup());
421 llvm::BasicBlock *Entry = Scope.getNormalBlock();
422 if (!Entry) {
423 Entry = CGF.createBasicBlock("cleanup");
424 Scope.setNormalBlock(Entry);
425 }
426 return Entry;
427}
428
John McCalled1ae862011-01-28 11:13:47 +0000429/// Attempts to reduce a cleanup's entry block to a fallthrough. This
430/// is basically llvm::MergeBlockIntoPredecessor, except
431/// simplified/optimized for the tighter constraints on cleanup blocks.
432///
433/// Returns the new block, whatever it is.
434static llvm::BasicBlock *SimplifyCleanupEntry(CodeGenFunction &CGF,
435 llvm::BasicBlock *Entry) {
436 llvm::BasicBlock *Pred = Entry->getSinglePredecessor();
437 if (!Pred) return Entry;
438
439 llvm::BranchInst *Br = dyn_cast<llvm::BranchInst>(Pred->getTerminator());
440 if (!Br || Br->isConditional()) return Entry;
441 assert(Br->getSuccessor(0) == Entry);
442
443 // If we were previously inserting at the end of the cleanup entry
444 // block, we'll need to continue inserting at the end of the
445 // predecessor.
446 bool WasInsertBlock = CGF.Builder.GetInsertBlock() == Entry;
447 assert(!WasInsertBlock || CGF.Builder.GetInsertPoint() == Entry->end());
448
449 // Kill the branch.
450 Br->eraseFromParent();
451
John McCalled1ae862011-01-28 11:13:47 +0000452 // Replace all uses of the entry with the predecessor, in case there
453 // are phis in the cleanup.
454 Entry->replaceAllUsesWith(Pred);
455
Jay Foade03c05c2011-06-20 14:38:01 +0000456 // Merge the blocks.
457 Pred->getInstList().splice(Pred->end(), Entry->getInstList());
458
John McCalled1ae862011-01-28 11:13:47 +0000459 // Kill the entry block.
460 Entry->eraseFromParent();
461
462 if (WasInsertBlock)
463 CGF.Builder.SetInsertPoint(Pred);
464
465 return Pred;
466}
467
468static void EmitCleanup(CodeGenFunction &CGF,
469 EHScopeStack::Cleanup *Fn,
John McCall30317fd2011-07-12 20:27:29 +0000470 EHScopeStack::Cleanup::Flags flags,
John McCalled1ae862011-01-28 11:13:47 +0000471 llvm::Value *ActiveFlag) {
472 // EH cleanups always occur within a terminate scope.
John McCall30317fd2011-07-12 20:27:29 +0000473 if (flags.isForEHCleanup()) CGF.EHStack.pushTerminate();
John McCalled1ae862011-01-28 11:13:47 +0000474
475 // If there's an active flag, load it and skip the cleanup if it's
476 // false.
Craig Topper8a13c412014-05-21 05:09:00 +0000477 llvm::BasicBlock *ContBB = nullptr;
John McCalled1ae862011-01-28 11:13:47 +0000478 if (ActiveFlag) {
479 ContBB = CGF.createBasicBlock("cleanup.done");
480 llvm::BasicBlock *CleanupBB = CGF.createBasicBlock("cleanup.action");
481 llvm::Value *IsActive
482 = CGF.Builder.CreateLoad(ActiveFlag, "cleanup.is_active");
483 CGF.Builder.CreateCondBr(IsActive, CleanupBB, ContBB);
484 CGF.EmitBlock(CleanupBB);
485 }
486
487 // Ask the cleanup to emit itself.
John McCall30317fd2011-07-12 20:27:29 +0000488 Fn->Emit(CGF, flags);
John McCalled1ae862011-01-28 11:13:47 +0000489 assert(CGF.HaveInsertPoint() && "cleanup ended with no insertion point?");
490
491 // Emit the continuation block if there was an active flag.
492 if (ActiveFlag)
493 CGF.EmitBlock(ContBB);
494
495 // Leave the terminate scope.
John McCall30317fd2011-07-12 20:27:29 +0000496 if (flags.isForEHCleanup()) CGF.EHStack.popTerminate();
John McCalled1ae862011-01-28 11:13:47 +0000497}
498
499static void ForwardPrebranchedFallthrough(llvm::BasicBlock *Exit,
500 llvm::BasicBlock *From,
501 llvm::BasicBlock *To) {
502 // Exit is the exit block of a cleanup, so it always terminates in
503 // an unconditional branch or a switch.
504 llvm::TerminatorInst *Term = Exit->getTerminator();
505
506 if (llvm::BranchInst *Br = dyn_cast<llvm::BranchInst>(Term)) {
507 assert(Br->isUnconditional() && Br->getSuccessor(0) == From);
508 Br->setSuccessor(0, To);
509 } else {
510 llvm::SwitchInst *Switch = cast<llvm::SwitchInst>(Term);
511 for (unsigned I = 0, E = Switch->getNumSuccessors(); I != E; ++I)
512 if (Switch->getSuccessor(I) == From)
513 Switch->setSuccessor(I, To);
514 }
515}
516
John McCallf82bdf62011-08-06 06:53:52 +0000517/// We don't need a normal entry block for the given cleanup.
518/// Optimistic fixup branches can cause these blocks to come into
519/// existence anyway; if so, destroy it.
520///
521/// The validity of this transformation is very much specific to the
522/// exact ways in which we form branches to cleanup entries.
523static void destroyOptimisticNormalEntry(CodeGenFunction &CGF,
524 EHCleanupScope &scope) {
525 llvm::BasicBlock *entry = scope.getNormalBlock();
526 if (!entry) return;
527
528 // Replace all the uses with unreachable.
529 llvm::BasicBlock *unreachableBB = CGF.getUnreachableBlock();
530 for (llvm::BasicBlock::use_iterator
531 i = entry->use_begin(), e = entry->use_end(); i != e; ) {
Chandler Carruth4d01fff2014-03-09 03:16:50 +0000532 llvm::Use &use = *i;
John McCallf82bdf62011-08-06 06:53:52 +0000533 ++i;
534
535 use.set(unreachableBB);
536
537 // The only uses should be fixup switches.
538 llvm::SwitchInst *si = cast<llvm::SwitchInst>(use.getUser());
Stepan Dyatkovskiy5fecf5442012-02-01 07:50:21 +0000539 if (si->getNumCases() == 1 && si->getDefaultDest() == unreachableBB) {
John McCallf82bdf62011-08-06 06:53:52 +0000540 // Replace the switch with a branch.
Stepan Dyatkovskiyfe3b0692012-03-11 06:09:37 +0000541 llvm::BranchInst::Create(si->case_begin().getCaseSuccessor(), si);
John McCallf82bdf62011-08-06 06:53:52 +0000542
543 // The switch operand is a load from the cleanup-dest alloca.
544 llvm::LoadInst *condition = cast<llvm::LoadInst>(si->getCondition());
545
546 // Destroy the switch.
547 si->eraseFromParent();
548
549 // Destroy the load.
550 assert(condition->getOperand(0) == CGF.NormalCleanupDest);
551 assert(condition->use_empty());
552 condition->eraseFromParent();
553 }
554 }
555
556 assert(entry->use_empty());
557 delete entry;
558}
559
John McCalled1ae862011-01-28 11:13:47 +0000560/// Pops a cleanup block. If the block includes a normal cleanup, the
561/// current insertion point is threaded through the cleanup, as are
562/// any branch fixups on the cleanup.
Adrian Prantldc237b52013-05-16 00:41:26 +0000563void CodeGenFunction::PopCleanupBlock(bool FallthroughIsBranchThrough) {
John McCalled1ae862011-01-28 11:13:47 +0000564 assert(!EHStack.empty() && "cleanup stack is empty!");
565 assert(isa<EHCleanupScope>(*EHStack.begin()) && "top not a cleanup!");
566 EHCleanupScope &Scope = cast<EHCleanupScope>(*EHStack.begin());
567 assert(Scope.getFixupDepth() <= EHStack.getNumBranchFixups());
568
569 // Remember activation information.
570 bool IsActive = Scope.isActive();
571 llvm::Value *NormalActiveFlag =
Craig Topper8a13c412014-05-21 05:09:00 +0000572 Scope.shouldTestFlagInNormalCleanup() ? Scope.getActiveFlag() : nullptr;
John McCalled1ae862011-01-28 11:13:47 +0000573 llvm::Value *EHActiveFlag =
Craig Topper8a13c412014-05-21 05:09:00 +0000574 Scope.shouldTestFlagInEHCleanup() ? Scope.getActiveFlag() : nullptr;
John McCalled1ae862011-01-28 11:13:47 +0000575
576 // Check whether we need an EH cleanup. This is only true if we've
577 // generated a lazy EH cleanup block.
John McCall8e4c74b2011-08-11 02:22:43 +0000578 llvm::BasicBlock *EHEntry = Scope.getCachedEHDispatchBlock();
Craig Topper8a13c412014-05-21 05:09:00 +0000579 assert(Scope.hasEHBranches() == (EHEntry != nullptr));
580 bool RequiresEHCleanup = (EHEntry != nullptr);
John McCall8e4c74b2011-08-11 02:22:43 +0000581 EHScopeStack::stable_iterator EHParent = Scope.getEnclosingEHScope();
John McCalled1ae862011-01-28 11:13:47 +0000582
583 // Check the three conditions which might require a normal cleanup:
584
585 // - whether there are branch fix-ups through this cleanup
586 unsigned FixupDepth = Scope.getFixupDepth();
587 bool HasFixups = EHStack.getNumBranchFixups() != FixupDepth;
588
589 // - whether there are branch-throughs or branch-afters
590 bool HasExistingBranches = Scope.hasBranches();
591
592 // - whether there's a fallthrough
593 llvm::BasicBlock *FallthroughSource = Builder.GetInsertBlock();
Craig Topper8a13c412014-05-21 05:09:00 +0000594 bool HasFallthrough = (FallthroughSource != nullptr && IsActive);
John McCalled1ae862011-01-28 11:13:47 +0000595
596 // Branch-through fall-throughs leave the insertion point set to the
597 // end of the last cleanup, which points to the current scope. The
598 // rest of IR gen doesn't need to worry about this; it only happens
599 // during the execution of PopCleanupBlocks().
600 bool HasPrebranchedFallthrough =
601 (FallthroughSource && FallthroughSource->getTerminator());
602
603 // If this is a normal cleanup, then having a prebranched
604 // fallthrough implies that the fallthrough source unconditionally
605 // jumps here.
606 assert(!Scope.isNormalCleanup() || !HasPrebranchedFallthrough ||
607 (Scope.getNormalBlock() &&
608 FallthroughSource->getTerminator()->getSuccessor(0)
609 == Scope.getNormalBlock()));
610
611 bool RequiresNormalCleanup = false;
612 if (Scope.isNormalCleanup() &&
613 (HasFixups || HasExistingBranches || HasFallthrough)) {
614 RequiresNormalCleanup = true;
615 }
616
John McCall45e42952011-08-07 07:05:57 +0000617 // If we have a prebranched fallthrough into an inactive normal
618 // cleanup, rewrite it so that it leads to the appropriate place.
619 if (Scope.isNormalCleanup() && HasPrebranchedFallthrough && !IsActive) {
620 llvm::BasicBlock *prebranchDest;
621
622 // If the prebranch is semantically branching through the next
623 // cleanup, just forward it to the next block, leaving the
624 // insertion point in the prebranched block.
John McCalled1ae862011-01-28 11:13:47 +0000625 if (FallthroughIsBranchThrough) {
John McCall45e42952011-08-07 07:05:57 +0000626 EHScope &enclosing = *EHStack.find(Scope.getEnclosingNormalCleanup());
627 prebranchDest = CreateNormalEntry(*this, cast<EHCleanupScope>(enclosing));
John McCalled1ae862011-01-28 11:13:47 +0000628
John McCall45e42952011-08-07 07:05:57 +0000629 // Otherwise, we need to make a new block. If the normal cleanup
630 // isn't being used at all, we could actually reuse the normal
631 // entry block, but this is simpler, and it avoids conflicts with
632 // dead optimistic fixup branches.
John McCalled1ae862011-01-28 11:13:47 +0000633 } else {
John McCall45e42952011-08-07 07:05:57 +0000634 prebranchDest = createBasicBlock("forwarded-prebranch");
635 EmitBlock(prebranchDest);
John McCalled1ae862011-01-28 11:13:47 +0000636 }
John McCall45e42952011-08-07 07:05:57 +0000637
638 llvm::BasicBlock *normalEntry = Scope.getNormalBlock();
639 assert(normalEntry && !normalEntry->use_empty());
640
641 ForwardPrebranchedFallthrough(FallthroughSource,
642 normalEntry, prebranchDest);
John McCalled1ae862011-01-28 11:13:47 +0000643 }
644
645 // If we don't need the cleanup at all, we're done.
646 if (!RequiresNormalCleanup && !RequiresEHCleanup) {
John McCallf82bdf62011-08-06 06:53:52 +0000647 destroyOptimisticNormalEntry(*this, Scope);
John McCalled1ae862011-01-28 11:13:47 +0000648 EHStack.popCleanup(); // safe because there are no fixups
649 assert(EHStack.getNumBranchFixups() == 0 ||
650 EHStack.hasNormalCleanups());
651 return;
652 }
653
654 // Copy the cleanup emission data out. Note that SmallVector
655 // guarantees maximal alignment for its buffer regardless of its
656 // type parameter.
Chris Lattner0e62c1c2011-07-23 10:55:15 +0000657 SmallVector<char, 8*sizeof(void*)> CleanupBuffer;
John McCalled1ae862011-01-28 11:13:47 +0000658 CleanupBuffer.reserve(Scope.getCleanupSize());
659 memcpy(CleanupBuffer.data(),
660 Scope.getCleanupBuffer(), Scope.getCleanupSize());
661 CleanupBuffer.set_size(Scope.getCleanupSize());
662 EHScopeStack::Cleanup *Fn =
663 reinterpret_cast<EHScopeStack::Cleanup*>(CleanupBuffer.data());
664
John McCall8e4c74b2011-08-11 02:22:43 +0000665 EHScopeStack::Cleanup::Flags cleanupFlags;
666 if (Scope.isNormalCleanup())
667 cleanupFlags.setIsNormalCleanupKind();
668 if (Scope.isEHCleanup())
669 cleanupFlags.setIsEHCleanupKind();
John McCalled1ae862011-01-28 11:13:47 +0000670
671 if (!RequiresNormalCleanup) {
John McCallf82bdf62011-08-06 06:53:52 +0000672 destroyOptimisticNormalEntry(*this, Scope);
John McCalled1ae862011-01-28 11:13:47 +0000673 EHStack.popCleanup();
674 } else {
675 // If we have a fallthrough and no other need for the cleanup,
676 // emit it directly.
677 if (HasFallthrough && !HasPrebranchedFallthrough &&
678 !HasFixups && !HasExistingBranches) {
679
John McCallf82bdf62011-08-06 06:53:52 +0000680 destroyOptimisticNormalEntry(*this, Scope);
John McCalled1ae862011-01-28 11:13:47 +0000681 EHStack.popCleanup();
682
John McCall30317fd2011-07-12 20:27:29 +0000683 EmitCleanup(*this, Fn, cleanupFlags, NormalActiveFlag);
John McCalled1ae862011-01-28 11:13:47 +0000684
685 // Otherwise, the best approach is to thread everything through
686 // the cleanup block and then try to clean up after ourselves.
687 } else {
688 // Force the entry block to exist.
689 llvm::BasicBlock *NormalEntry = CreateNormalEntry(*this, Scope);
690
691 // I. Set up the fallthrough edge in.
692
John McCalla3654e32011-08-10 04:11:11 +0000693 CGBuilderTy::InsertPoint savedInactiveFallthroughIP;
John McCall45e42952011-08-07 07:05:57 +0000694
John McCalled1ae862011-01-28 11:13:47 +0000695 // If there's a fallthrough, we need to store the cleanup
696 // destination index. For fall-throughs this is always zero.
697 if (HasFallthrough) {
698 if (!HasPrebranchedFallthrough)
699 Builder.CreateStore(Builder.getInt32(0), getNormalCleanupDestSlot());
700
John McCall45e42952011-08-07 07:05:57 +0000701 // Otherwise, save and clear the IP if we don't have fallthrough
702 // because the cleanup is inactive.
John McCalled1ae862011-01-28 11:13:47 +0000703 } else if (FallthroughSource) {
704 assert(!IsActive && "source without fallthrough for active cleanup");
John McCall45e42952011-08-07 07:05:57 +0000705 savedInactiveFallthroughIP = Builder.saveAndClearIP();
John McCalled1ae862011-01-28 11:13:47 +0000706 }
707
708 // II. Emit the entry block. This implicitly branches to it if
709 // we have fallthrough. All the fixups and existing branches
710 // should already be branched to it.
711 EmitBlock(NormalEntry);
712
713 // III. Figure out where we're going and build the cleanup
714 // epilogue.
715
716 bool HasEnclosingCleanups =
717 (Scope.getEnclosingNormalCleanup() != EHStack.stable_end());
718
719 // Compute the branch-through dest if we need it:
720 // - if there are branch-throughs threaded through the scope
721 // - if fall-through is a branch-through
722 // - if there are fixups that will be optimistically forwarded
723 // to the enclosing cleanup
Craig Topper8a13c412014-05-21 05:09:00 +0000724 llvm::BasicBlock *BranchThroughDest = nullptr;
John McCalled1ae862011-01-28 11:13:47 +0000725 if (Scope.hasBranchThroughs() ||
726 (FallthroughSource && FallthroughIsBranchThrough) ||
727 (HasFixups && HasEnclosingCleanups)) {
728 assert(HasEnclosingCleanups);
729 EHScope &S = *EHStack.find(Scope.getEnclosingNormalCleanup());
730 BranchThroughDest = CreateNormalEntry(*this, cast<EHCleanupScope>(S));
731 }
732
Craig Topper8a13c412014-05-21 05:09:00 +0000733 llvm::BasicBlock *FallthroughDest = nullptr;
Chris Lattner0e62c1c2011-07-23 10:55:15 +0000734 SmallVector<llvm::Instruction*, 2> InstsToAppend;
John McCalled1ae862011-01-28 11:13:47 +0000735
736 // If there's exactly one branch-after and no other threads,
737 // we can route it without a switch.
738 if (!Scope.hasBranchThroughs() && !HasFixups && !HasFallthrough &&
739 Scope.getNumBranchAfters() == 1) {
740 assert(!BranchThroughDest || !IsActive);
741
742 // TODO: clean up the possibly dead stores to the cleanup dest slot.
743 llvm::BasicBlock *BranchAfter = Scope.getBranchAfterBlock(0);
744 InstsToAppend.push_back(llvm::BranchInst::Create(BranchAfter));
745
746 // Build a switch-out if we need it:
747 // - if there are branch-afters threaded through the scope
748 // - if fall-through is a branch-after
749 // - if there are fixups that have nowhere left to go and
750 // so must be immediately resolved
751 } else if (Scope.getNumBranchAfters() ||
752 (HasFallthrough && !FallthroughIsBranchThrough) ||
753 (HasFixups && !HasEnclosingCleanups)) {
754
755 llvm::BasicBlock *Default =
756 (BranchThroughDest ? BranchThroughDest : getUnreachableBlock());
757
758 // TODO: base this on the number of branch-afters and fixups
759 const unsigned SwitchCapacity = 10;
760
761 llvm::LoadInst *Load =
762 new llvm::LoadInst(getNormalCleanupDestSlot(), "cleanup.dest");
763 llvm::SwitchInst *Switch =
764 llvm::SwitchInst::Create(Load, Default, SwitchCapacity);
765
766 InstsToAppend.push_back(Load);
767 InstsToAppend.push_back(Switch);
768
769 // Branch-after fallthrough.
770 if (FallthroughSource && !FallthroughIsBranchThrough) {
771 FallthroughDest = createBasicBlock("cleanup.cont");
772 if (HasFallthrough)
773 Switch->addCase(Builder.getInt32(0), FallthroughDest);
774 }
775
776 for (unsigned I = 0, E = Scope.getNumBranchAfters(); I != E; ++I) {
777 Switch->addCase(Scope.getBranchAfterIndex(I),
778 Scope.getBranchAfterBlock(I));
779 }
780
781 // If there aren't any enclosing cleanups, we can resolve all
782 // the fixups now.
783 if (HasFixups && !HasEnclosingCleanups)
784 ResolveAllBranchFixups(*this, Switch, NormalEntry);
785 } else {
786 // We should always have a branch-through destination in this case.
787 assert(BranchThroughDest);
788 InstsToAppend.push_back(llvm::BranchInst::Create(BranchThroughDest));
789 }
790
791 // IV. Pop the cleanup and emit it.
792 EHStack.popCleanup();
793 assert(EHStack.hasNormalCleanups() == HasEnclosingCleanups);
794
John McCall30317fd2011-07-12 20:27:29 +0000795 EmitCleanup(*this, Fn, cleanupFlags, NormalActiveFlag);
John McCalled1ae862011-01-28 11:13:47 +0000796
797 // Append the prepared cleanup prologue from above.
798 llvm::BasicBlock *NormalExit = Builder.GetInsertBlock();
799 for (unsigned I = 0, E = InstsToAppend.size(); I != E; ++I)
800 NormalExit->getInstList().push_back(InstsToAppend[I]);
801
802 // Optimistically hope that any fixups will continue falling through.
803 for (unsigned I = FixupDepth, E = EHStack.getNumBranchFixups();
804 I < E; ++I) {
John McCallad7c5c12011-02-08 08:22:06 +0000805 BranchFixup &Fixup = EHStack.getBranchFixup(I);
John McCalled1ae862011-01-28 11:13:47 +0000806 if (!Fixup.Destination) continue;
807 if (!Fixup.OptimisticBranchBlock) {
808 new llvm::StoreInst(Builder.getInt32(Fixup.DestinationIndex),
809 getNormalCleanupDestSlot(),
810 Fixup.InitialBranch);
811 Fixup.InitialBranch->setSuccessor(0, NormalEntry);
812 }
813 Fixup.OptimisticBranchBlock = NormalExit;
814 }
815
816 // V. Set up the fallthrough edge out.
817
John McCall45e42952011-08-07 07:05:57 +0000818 // Case 1: a fallthrough source exists but doesn't branch to the
819 // cleanup because the cleanup is inactive.
John McCalled1ae862011-01-28 11:13:47 +0000820 if (!HasFallthrough && FallthroughSource) {
John McCall45e42952011-08-07 07:05:57 +0000821 // Prebranched fallthrough was forwarded earlier.
822 // Non-prebranched fallthrough doesn't need to be forwarded.
823 // Either way, all we need to do is restore the IP we cleared before.
John McCalled1ae862011-01-28 11:13:47 +0000824 assert(!IsActive);
John McCall45e42952011-08-07 07:05:57 +0000825 Builder.restoreIP(savedInactiveFallthroughIP);
John McCalled1ae862011-01-28 11:13:47 +0000826
827 // Case 2: a fallthrough source exists and should branch to the
828 // cleanup, but we're not supposed to branch through to the next
829 // cleanup.
830 } else if (HasFallthrough && FallthroughDest) {
831 assert(!FallthroughIsBranchThrough);
832 EmitBlock(FallthroughDest);
833
834 // Case 3: a fallthrough source exists and should branch to the
835 // cleanup and then through to the next.
836 } else if (HasFallthrough) {
837 // Everything is already set up for this.
838
839 // Case 4: no fallthrough source exists.
840 } else {
841 Builder.ClearInsertionPoint();
842 }
843
844 // VI. Assorted cleaning.
845
846 // Check whether we can merge NormalEntry into a single predecessor.
847 // This might invalidate (non-IR) pointers to NormalEntry.
848 llvm::BasicBlock *NewNormalEntry =
849 SimplifyCleanupEntry(*this, NormalEntry);
850
851 // If it did invalidate those pointers, and NormalEntry was the same
852 // as NormalExit, go back and patch up the fixups.
853 if (NewNormalEntry != NormalEntry && NormalEntry == NormalExit)
854 for (unsigned I = FixupDepth, E = EHStack.getNumBranchFixups();
855 I < E; ++I)
John McCallad7c5c12011-02-08 08:22:06 +0000856 EHStack.getBranchFixup(I).OptimisticBranchBlock = NewNormalEntry;
John McCalled1ae862011-01-28 11:13:47 +0000857 }
858 }
859
860 assert(EHStack.hasNormalCleanups() || EHStack.getNumBranchFixups() == 0);
861
862 // Emit the EH cleanup if required.
863 if (RequiresEHCleanup) {
Adrian Prantld1b151e2014-01-17 00:15:10 +0000864 CGDebugInfo *DI = getDebugInfo();
865 SaveAndRestoreLocation AutoRestoreLocation(*this, Builder);
866 if (DI)
Adrian Prantldc237b52013-05-16 00:41:26 +0000867 DI->EmitLocation(Builder, CurEHLocation);
Adrian Prantl52bf3c42013-05-03 20:11:48 +0000868
John McCalled1ae862011-01-28 11:13:47 +0000869 CGBuilderTy::InsertPoint SavedIP = Builder.saveAndClearIP();
870
871 EmitBlock(EHEntry);
John McCall30317fd2011-07-12 20:27:29 +0000872
Eli Friedmanabab7762012-08-02 00:10:24 +0000873 // We only actually emit the cleanup code if the cleanup is either
874 // active or was used before it was deactivated.
875 if (EHActiveFlag || IsActive) {
Adrian Prantl52bf3c42013-05-03 20:11:48 +0000876
Eli Friedmanabab7762012-08-02 00:10:24 +0000877 cleanupFlags.setIsForEHCleanup();
878 EmitCleanup(*this, Fn, cleanupFlags, EHActiveFlag);
879 }
John McCalled1ae862011-01-28 11:13:47 +0000880
John McCall8e4c74b2011-08-11 02:22:43 +0000881 Builder.CreateBr(getEHDispatchBlock(EHParent));
John McCalled1ae862011-01-28 11:13:47 +0000882
883 Builder.restoreIP(SavedIP);
884
885 SimplifyCleanupEntry(*this, EHEntry);
886 }
887}
888
Justin Bognere25ffdf2014-01-21 00:35:11 +0000889/// isObviouslyBranchWithoutCleanups - Return true if a branch to the
890/// specified destination obviously has no cleanups to run. 'false' is always
891/// a conservatively correct answer for this method.
892bool CodeGenFunction::isObviouslyBranchWithoutCleanups(JumpDest Dest) const {
893 assert(Dest.getScopeDepth().encloses(EHStack.stable_begin())
894 && "stale jump destination");
895
896 // Calculate the innermost active normal cleanup.
897 EHScopeStack::stable_iterator TopCleanup =
898 EHStack.getInnermostActiveNormalCleanup();
899
900 // If we're not in an active normal cleanup scope, or if the
901 // destination scope is within the innermost active normal cleanup
902 // scope, we don't need to worry about fixups.
903 if (TopCleanup == EHStack.stable_end() ||
904 TopCleanup.encloses(Dest.getScopeDepth())) // works for invalid
905 return true;
906
907 // Otherwise, we might need some cleanups.
908 return false;
909}
910
911
John McCalled1ae862011-01-28 11:13:47 +0000912/// Terminate the current block by emitting a branch which might leave
913/// the current cleanup-protected scope. The target scope may not yet
914/// be known, in which case this will require a fixup.
915///
916/// As a side-effect, this method clears the insertion point.
917void CodeGenFunction::EmitBranchThroughCleanup(JumpDest Dest) {
John McCall1b93f1b2011-02-25 04:19:13 +0000918 assert(Dest.getScopeDepth().encloses(EHStack.stable_begin())
John McCalled1ae862011-01-28 11:13:47 +0000919 && "stale jump destination");
920
921 if (!HaveInsertPoint())
922 return;
923
924 // Create the branch.
925 llvm::BranchInst *BI = Builder.CreateBr(Dest.getBlock());
926
927 // Calculate the innermost active normal cleanup.
928 EHScopeStack::stable_iterator
929 TopCleanup = EHStack.getInnermostActiveNormalCleanup();
930
931 // If we're not in an active normal cleanup scope, or if the
932 // destination scope is within the innermost active normal cleanup
933 // scope, we don't need to worry about fixups.
934 if (TopCleanup == EHStack.stable_end() ||
935 TopCleanup.encloses(Dest.getScopeDepth())) { // works for invalid
936 Builder.ClearInsertionPoint();
937 return;
938 }
939
940 // If we can't resolve the destination cleanup scope, just add this
941 // to the current cleanup scope as a branch fixup.
942 if (!Dest.getScopeDepth().isValid()) {
943 BranchFixup &Fixup = EHStack.addBranchFixup();
944 Fixup.Destination = Dest.getBlock();
945 Fixup.DestinationIndex = Dest.getDestIndex();
946 Fixup.InitialBranch = BI;
Craig Topper8a13c412014-05-21 05:09:00 +0000947 Fixup.OptimisticBranchBlock = nullptr;
John McCalled1ae862011-01-28 11:13:47 +0000948
949 Builder.ClearInsertionPoint();
950 return;
951 }
952
953 // Otherwise, thread through all the normal cleanups in scope.
954
955 // Store the index at the start.
956 llvm::ConstantInt *Index = Builder.getInt32(Dest.getDestIndex());
957 new llvm::StoreInst(Index, getNormalCleanupDestSlot(), BI);
958
959 // Adjust BI to point to the first cleanup block.
960 {
961 EHCleanupScope &Scope =
962 cast<EHCleanupScope>(*EHStack.find(TopCleanup));
963 BI->setSuccessor(0, CreateNormalEntry(*this, Scope));
964 }
965
966 // Add this destination to all the scopes involved.
967 EHScopeStack::stable_iterator I = TopCleanup;
968 EHScopeStack::stable_iterator E = Dest.getScopeDepth();
969 if (E.strictlyEncloses(I)) {
970 while (true) {
971 EHCleanupScope &Scope = cast<EHCleanupScope>(*EHStack.find(I));
972 assert(Scope.isNormalCleanup());
973 I = Scope.getEnclosingNormalCleanup();
974
975 // If this is the last cleanup we're propagating through, tell it
976 // that there's a resolved jump moving through it.
977 if (!E.strictlyEncloses(I)) {
978 Scope.addBranchAfter(Index, Dest.getBlock());
979 break;
980 }
981
982 // Otherwise, tell the scope that there's a jump propoagating
983 // through it. If this isn't new information, all the rest of
984 // the work has been done before.
985 if (!Scope.addBranchThrough(Dest.getBlock()))
986 break;
987 }
988 }
989
990 Builder.ClearInsertionPoint();
991}
992
John McCalled1ae862011-01-28 11:13:47 +0000993static bool IsUsedAsNormalCleanup(EHScopeStack &EHStack,
994 EHScopeStack::stable_iterator C) {
995 // If we needed a normal block for any reason, that counts.
996 if (cast<EHCleanupScope>(*EHStack.find(C)).getNormalBlock())
997 return true;
998
999 // Check whether any enclosed cleanups were needed.
1000 for (EHScopeStack::stable_iterator
1001 I = EHStack.getInnermostNormalCleanup();
1002 I != C; ) {
1003 assert(C.strictlyEncloses(I));
1004 EHCleanupScope &S = cast<EHCleanupScope>(*EHStack.find(I));
1005 if (S.getNormalBlock()) return true;
1006 I = S.getEnclosingNormalCleanup();
1007 }
1008
1009 return false;
1010}
1011
1012static bool IsUsedAsEHCleanup(EHScopeStack &EHStack,
John McCall8e4c74b2011-08-11 02:22:43 +00001013 EHScopeStack::stable_iterator cleanup) {
John McCalled1ae862011-01-28 11:13:47 +00001014 // If we needed an EH block for any reason, that counts.
John McCall8e4c74b2011-08-11 02:22:43 +00001015 if (EHStack.find(cleanup)->hasEHBranches())
John McCalled1ae862011-01-28 11:13:47 +00001016 return true;
1017
1018 // Check whether any enclosed cleanups were needed.
1019 for (EHScopeStack::stable_iterator
John McCall8e4c74b2011-08-11 02:22:43 +00001020 i = EHStack.getInnermostEHScope(); i != cleanup; ) {
1021 assert(cleanup.strictlyEncloses(i));
1022
1023 EHScope &scope = *EHStack.find(i);
1024 if (scope.hasEHBranches())
1025 return true;
1026
1027 i = scope.getEnclosingEHScope();
John McCalled1ae862011-01-28 11:13:47 +00001028 }
1029
1030 return false;
1031}
1032
1033enum ForActivation_t {
1034 ForActivation,
1035 ForDeactivation
1036};
1037
1038/// The given cleanup block is changing activation state. Configure a
1039/// cleanup variable if necessary.
1040///
1041/// It would be good if we had some way of determining if there were
1042/// extra uses *after* the change-over point.
1043static void SetupCleanupBlockActivation(CodeGenFunction &CGF,
1044 EHScopeStack::stable_iterator C,
John McCallf4beacd2011-11-10 10:43:54 +00001045 ForActivation_t kind,
1046 llvm::Instruction *dominatingIP) {
John McCalled1ae862011-01-28 11:13:47 +00001047 EHCleanupScope &Scope = cast<EHCleanupScope>(*CGF.EHStack.find(C));
1048
John McCalle63abb52011-11-10 09:22:44 +00001049 // We always need the flag if we're activating the cleanup in a
1050 // conditional context, because we have to assume that the current
1051 // location doesn't necessarily dominate the cleanup's code.
1052 bool isActivatedInConditional =
John McCallf4beacd2011-11-10 10:43:54 +00001053 (kind == ForActivation && CGF.isInConditionalBranch());
John McCalle63abb52011-11-10 09:22:44 +00001054
1055 bool needFlag = false;
John McCalled1ae862011-01-28 11:13:47 +00001056
1057 // Calculate whether the cleanup was used:
1058
1059 // - as a normal cleanup
John McCalle63abb52011-11-10 09:22:44 +00001060 if (Scope.isNormalCleanup() &&
1061 (isActivatedInConditional || IsUsedAsNormalCleanup(CGF.EHStack, C))) {
John McCalled1ae862011-01-28 11:13:47 +00001062 Scope.setTestFlagInNormalCleanup();
John McCalle63abb52011-11-10 09:22:44 +00001063 needFlag = true;
John McCalled1ae862011-01-28 11:13:47 +00001064 }
1065
1066 // - as an EH cleanup
John McCalle63abb52011-11-10 09:22:44 +00001067 if (Scope.isEHCleanup() &&
1068 (isActivatedInConditional || IsUsedAsEHCleanup(CGF.EHStack, C))) {
John McCalled1ae862011-01-28 11:13:47 +00001069 Scope.setTestFlagInEHCleanup();
John McCalle63abb52011-11-10 09:22:44 +00001070 needFlag = true;
John McCalled1ae862011-01-28 11:13:47 +00001071 }
1072
1073 // If it hasn't yet been used as either, we're done.
John McCalle63abb52011-11-10 09:22:44 +00001074 if (!needFlag) return;
John McCalled1ae862011-01-28 11:13:47 +00001075
John McCallf4beacd2011-11-10 10:43:54 +00001076 llvm::AllocaInst *var = Scope.getActiveFlag();
1077 if (!var) {
1078 var = CGF.CreateTempAlloca(CGF.Builder.getInt1Ty(), "cleanup.isactive");
1079 Scope.setActiveFlag(var);
1080
1081 assert(dominatingIP && "no existing variable and no dominating IP!");
John McCalled1ae862011-01-28 11:13:47 +00001082
1083 // Initialize to true or false depending on whether it was
1084 // active up to this point.
John McCallf4beacd2011-11-10 10:43:54 +00001085 llvm::Value *value = CGF.Builder.getInt1(kind == ForDeactivation);
1086
1087 // If we're in a conditional block, ignore the dominating IP and
1088 // use the outermost conditional branch.
1089 if (CGF.isInConditionalBranch()) {
1090 CGF.setBeforeOutermostConditional(value, var);
1091 } else {
1092 new llvm::StoreInst(value, var, dominatingIP);
1093 }
John McCalled1ae862011-01-28 11:13:47 +00001094 }
1095
John McCallf4beacd2011-11-10 10:43:54 +00001096 CGF.Builder.CreateStore(CGF.Builder.getInt1(kind == ForActivation), var);
John McCalled1ae862011-01-28 11:13:47 +00001097}
1098
1099/// Activate a cleanup that was created in an inactivated state.
John McCallf4beacd2011-11-10 10:43:54 +00001100void CodeGenFunction::ActivateCleanupBlock(EHScopeStack::stable_iterator C,
1101 llvm::Instruction *dominatingIP) {
John McCalled1ae862011-01-28 11:13:47 +00001102 assert(C != EHStack.stable_end() && "activating bottom of stack?");
1103 EHCleanupScope &Scope = cast<EHCleanupScope>(*EHStack.find(C));
1104 assert(!Scope.isActive() && "double activation");
1105
John McCallf4beacd2011-11-10 10:43:54 +00001106 SetupCleanupBlockActivation(*this, C, ForActivation, dominatingIP);
John McCalled1ae862011-01-28 11:13:47 +00001107
1108 Scope.setActive(true);
1109}
1110
1111/// Deactive a cleanup that was created in an active state.
John McCallf4beacd2011-11-10 10:43:54 +00001112void CodeGenFunction::DeactivateCleanupBlock(EHScopeStack::stable_iterator C,
1113 llvm::Instruction *dominatingIP) {
John McCalled1ae862011-01-28 11:13:47 +00001114 assert(C != EHStack.stable_end() && "deactivating bottom of stack?");
1115 EHCleanupScope &Scope = cast<EHCleanupScope>(*EHStack.find(C));
1116 assert(Scope.isActive() && "double deactivation");
1117
1118 // If it's the top of the stack, just pop it.
1119 if (C == EHStack.stable_begin()) {
1120 // If it's a normal cleanup, we need to pretend that the
1121 // fallthrough is unreachable.
1122 CGBuilderTy::InsertPoint SavedIP = Builder.saveAndClearIP();
1123 PopCleanupBlock();
1124 Builder.restoreIP(SavedIP);
1125 return;
1126 }
1127
1128 // Otherwise, follow the general case.
John McCallf4beacd2011-11-10 10:43:54 +00001129 SetupCleanupBlockActivation(*this, C, ForDeactivation, dominatingIP);
John McCalled1ae862011-01-28 11:13:47 +00001130
1131 Scope.setActive(false);
1132}
1133
1134llvm::Value *CodeGenFunction::getNormalCleanupDestSlot() {
1135 if (!NormalCleanupDest)
1136 NormalCleanupDest =
1137 CreateTempAlloca(Builder.getInt32Ty(), "cleanup.dest.slot");
1138 return NormalCleanupDest;
1139}
Peter Collingbourne702b2842011-11-27 22:09:22 +00001140
1141/// Emits all the code to cause the given temporary to be cleaned up.
1142void CodeGenFunction::EmitCXXTemporary(const CXXTemporary *Temporary,
1143 QualType TempType,
1144 llvm::Value *Ptr) {
Peter Collingbourne1425b452012-01-26 03:33:36 +00001145 pushDestroy(NormalAndEHCleanup, Ptr, TempType, destroyCXXObject,
Peter Collingbourne702b2842011-11-27 22:09:22 +00001146 /*useEHCleanup*/ true);
1147}