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John McCall36f893c2011-01-28 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
20#include "CodeGenFunction.h"
21#include "CGCleanup.h"
22
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 Lattner2acc6e32011-07-18 04:24:23 +000051 llvm::Type *ComplexTy =
Chris Lattner7650d952011-06-18 22:49:11 +000052 llvm::StructType::get(V.first->getType(), V.second->getType(),
John McCall36f893c2011-01-28 11:13:47 +000053 (void*) 0);
54 llvm::Value *addr = CGF.CreateTempAlloca(ComplexTy, "saved-complex");
55 CGF.StoreComplexToAddr(V, addr, /*volatile*/ false);
56 return saved_type(addr, ComplexAddress);
57 }
58
59 assert(rv.isAggregate());
60 llvm::Value *V = rv.getAggregateAddr(); // TODO: volatile?
61 if (!DominatingLLVMValue::needsSaving(V))
62 return saved_type(V, AggregateLiteral);
63
64 llvm::Value *addr = CGF.CreateTempAlloca(V->getType(), "saved-rvalue");
65 CGF.Builder.CreateStore(V, addr);
66 return saved_type(addr, AggregateAddress);
67}
68
69/// Given a saved r-value produced by SaveRValue, perform the code
70/// necessary to restore it to usability at the current insertion
71/// point.
72RValue DominatingValue<RValue>::saved_type::restore(CodeGenFunction &CGF) {
73 switch (K) {
74 case ScalarLiteral:
75 return RValue::get(Value);
76 case ScalarAddress:
77 return RValue::get(CGF.Builder.CreateLoad(Value));
78 case AggregateLiteral:
79 return RValue::getAggregate(Value);
80 case AggregateAddress:
81 return RValue::getAggregate(CGF.Builder.CreateLoad(Value));
82 case ComplexAddress:
83 return RValue::getComplex(CGF.LoadComplexFromAddr(Value, false));
84 }
85
86 llvm_unreachable("bad saved r-value kind");
87 return RValue();
88}
89
90/// Push an entry of the given size onto this protected-scope stack.
91char *EHScopeStack::allocate(size_t Size) {
92 if (!StartOfBuffer) {
93 unsigned Capacity = 1024;
94 while (Capacity < Size) Capacity *= 2;
95 StartOfBuffer = new char[Capacity];
96 StartOfData = EndOfBuffer = StartOfBuffer + Capacity;
97 } else if (static_cast<size_t>(StartOfData - StartOfBuffer) < Size) {
98 unsigned CurrentCapacity = EndOfBuffer - StartOfBuffer;
99 unsigned UsedCapacity = CurrentCapacity - (StartOfData - StartOfBuffer);
100
101 unsigned NewCapacity = CurrentCapacity;
102 do {
103 NewCapacity *= 2;
104 } while (NewCapacity < UsedCapacity + Size);
105
106 char *NewStartOfBuffer = new char[NewCapacity];
107 char *NewEndOfBuffer = NewStartOfBuffer + NewCapacity;
108 char *NewStartOfData = NewEndOfBuffer - UsedCapacity;
109 memcpy(NewStartOfData, StartOfData, UsedCapacity);
110 delete [] StartOfBuffer;
111 StartOfBuffer = NewStartOfBuffer;
112 EndOfBuffer = NewEndOfBuffer;
113 StartOfData = NewStartOfData;
114 }
115
116 assert(StartOfBuffer + Size <= StartOfData);
117 StartOfData -= Size;
118 return StartOfData;
119}
120
121EHScopeStack::stable_iterator
John McCall777d6e52011-08-11 02:22:43 +0000122EHScopeStack::getInnermostActiveNormalCleanup() const {
123 for (stable_iterator si = getInnermostNormalCleanup(), se = stable_end();
124 si != se; ) {
125 EHCleanupScope &cleanup = cast<EHCleanupScope>(*find(si));
126 if (cleanup.isActive()) return si;
127 si = cleanup.getEnclosingNormalCleanup();
128 }
129 return stable_end();
130}
131
132EHScopeStack::stable_iterator EHScopeStack::getInnermostActiveEHScope() const {
133 for (stable_iterator si = getInnermostEHScope(), se = stable_end();
134 si != se; ) {
135 // Skip over inactive cleanups.
136 EHCleanupScope *cleanup = dyn_cast<EHCleanupScope>(&*find(si));
137 if (cleanup && !cleanup->isActive()) {
138 si = cleanup->getEnclosingEHScope();
139 continue;
John McCall36f893c2011-01-28 11:13:47 +0000140 }
John McCall777d6e52011-08-11 02:22:43 +0000141
142 // All other scopes are always active.
143 return si;
144 }
145
John McCall36f893c2011-01-28 11:13:47 +0000146 return stable_end();
147}
148
149
150void *EHScopeStack::pushCleanup(CleanupKind Kind, size_t Size) {
151 assert(((Size % sizeof(void*)) == 0) && "cleanup type is misaligned");
152 char *Buffer = allocate(EHCleanupScope::getSizeForCleanupSize(Size));
153 bool IsNormalCleanup = Kind & NormalCleanup;
154 bool IsEHCleanup = Kind & EHCleanup;
155 bool IsActive = !(Kind & InactiveCleanup);
156 EHCleanupScope *Scope =
157 new (Buffer) EHCleanupScope(IsNormalCleanup,
158 IsEHCleanup,
159 IsActive,
160 Size,
161 BranchFixups.size(),
162 InnermostNormalCleanup,
John McCall777d6e52011-08-11 02:22:43 +0000163 InnermostEHScope);
John McCall36f893c2011-01-28 11:13:47 +0000164 if (IsNormalCleanup)
165 InnermostNormalCleanup = stable_begin();
166 if (IsEHCleanup)
John McCall777d6e52011-08-11 02:22:43 +0000167 InnermostEHScope = stable_begin();
John McCall36f893c2011-01-28 11:13:47 +0000168
169 return Scope->getCleanupBuffer();
170}
171
172void EHScopeStack::popCleanup() {
173 assert(!empty() && "popping exception stack when not empty");
174
175 assert(isa<EHCleanupScope>(*begin()));
176 EHCleanupScope &Cleanup = cast<EHCleanupScope>(*begin());
177 InnermostNormalCleanup = Cleanup.getEnclosingNormalCleanup();
John McCall777d6e52011-08-11 02:22:43 +0000178 InnermostEHScope = Cleanup.getEnclosingEHScope();
John McCall36f893c2011-01-28 11:13:47 +0000179 StartOfData += Cleanup.getAllocatedSize();
180
John McCall36f893c2011-01-28 11:13:47 +0000181 // Destroy the cleanup.
182 Cleanup.~EHCleanupScope();
183
184 // Check whether we can shrink the branch-fixups stack.
185 if (!BranchFixups.empty()) {
186 // If we no longer have any normal cleanups, all the fixups are
187 // complete.
188 if (!hasNormalCleanups())
189 BranchFixups.clear();
190
191 // Otherwise we can still trim out unnecessary nulls.
192 else
193 popNullFixups();
194 }
195}
196
John McCall777d6e52011-08-11 02:22:43 +0000197EHFilterScope *EHScopeStack::pushFilter(unsigned numFilters) {
198 assert(getInnermostEHScope() == stable_end());
199 char *buffer = allocate(EHFilterScope::getSizeForNumFilters(numFilters));
200 EHFilterScope *filter = new (buffer) EHFilterScope(numFilters);
201 InnermostEHScope = stable_begin();
202 return filter;
John McCall36f893c2011-01-28 11:13:47 +0000203}
204
205void EHScopeStack::popFilter() {
206 assert(!empty() && "popping exception stack when not empty");
207
John McCall777d6e52011-08-11 02:22:43 +0000208 EHFilterScope &filter = cast<EHFilterScope>(*begin());
209 StartOfData += EHFilterScope::getSizeForNumFilters(filter.getNumFilters());
John McCall36f893c2011-01-28 11:13:47 +0000210
John McCall777d6e52011-08-11 02:22:43 +0000211 InnermostEHScope = filter.getEnclosingEHScope();
John McCall36f893c2011-01-28 11:13:47 +0000212}
213
John McCall777d6e52011-08-11 02:22:43 +0000214EHCatchScope *EHScopeStack::pushCatch(unsigned numHandlers) {
215 char *buffer = allocate(EHCatchScope::getSizeForNumHandlers(numHandlers));
216 EHCatchScope *scope =
217 new (buffer) EHCatchScope(numHandlers, InnermostEHScope);
218 InnermostEHScope = stable_begin();
219 return scope;
John McCall36f893c2011-01-28 11:13:47 +0000220}
221
222void EHScopeStack::pushTerminate() {
223 char *Buffer = allocate(EHTerminateScope::getSize());
John McCall777d6e52011-08-11 02:22:43 +0000224 new (Buffer) EHTerminateScope(InnermostEHScope);
225 InnermostEHScope = stable_begin();
John McCall36f893c2011-01-28 11:13:47 +0000226}
227
228/// Remove any 'null' fixups on the stack. However, we can't pop more
229/// fixups than the fixup depth on the innermost normal cleanup, or
230/// else fixups that we try to add to that cleanup will end up in the
231/// wrong place. We *could* try to shrink fixup depths, but that's
232/// actually a lot of work for little benefit.
233void EHScopeStack::popNullFixups() {
234 // We expect this to only be called when there's still an innermost
235 // normal cleanup; otherwise there really shouldn't be any fixups.
236 assert(hasNormalCleanups());
237
238 EHScopeStack::iterator it = find(InnermostNormalCleanup);
239 unsigned MinSize = cast<EHCleanupScope>(*it).getFixupDepth();
240 assert(BranchFixups.size() >= MinSize && "fixup stack out of order");
241
242 while (BranchFixups.size() > MinSize &&
243 BranchFixups.back().Destination == 0)
244 BranchFixups.pop_back();
245}
246
247void CodeGenFunction::initFullExprCleanup() {
248 // Create a variable to decide whether the cleanup needs to be run.
249 llvm::AllocaInst *active
250 = CreateTempAlloca(Builder.getInt1Ty(), "cleanup.cond");
251
252 // Initialize it to false at a site that's guaranteed to be run
253 // before each evaluation.
John McCall6f103ba2011-11-10 10:43:54 +0000254 setBeforeOutermostConditional(Builder.getFalse(), active);
John McCall36f893c2011-01-28 11:13:47 +0000255
256 // Initialize it to true at the current location.
257 Builder.CreateStore(Builder.getTrue(), active);
258
259 // Set that as the active flag in the cleanup.
260 EHCleanupScope &cleanup = cast<EHCleanupScope>(*EHStack.begin());
261 assert(cleanup.getActiveFlag() == 0 && "cleanup already has active flag?");
262 cleanup.setActiveFlag(active);
263
264 if (cleanup.isNormalCleanup()) cleanup.setTestFlagInNormalCleanup();
265 if (cleanup.isEHCleanup()) cleanup.setTestFlagInEHCleanup();
266}
267
John McCallc4a1a842011-07-12 00:15:30 +0000268void EHScopeStack::Cleanup::anchor() {}
John McCall36f893c2011-01-28 11:13:47 +0000269
270/// All the branch fixups on the EH stack have propagated out past the
271/// outermost normal cleanup; resolve them all by adding cases to the
272/// given switch instruction.
273static void ResolveAllBranchFixups(CodeGenFunction &CGF,
274 llvm::SwitchInst *Switch,
275 llvm::BasicBlock *CleanupEntry) {
276 llvm::SmallPtrSet<llvm::BasicBlock*, 4> CasesAdded;
277
278 for (unsigned I = 0, E = CGF.EHStack.getNumBranchFixups(); I != E; ++I) {
279 // Skip this fixup if its destination isn't set.
280 BranchFixup &Fixup = CGF.EHStack.getBranchFixup(I);
281 if (Fixup.Destination == 0) continue;
282
283 // If there isn't an OptimisticBranchBlock, then InitialBranch is
284 // still pointing directly to its destination; forward it to the
285 // appropriate cleanup entry. This is required in the specific
286 // case of
287 // { std::string s; goto lbl; }
288 // lbl:
289 // i.e. where there's an unresolved fixup inside a single cleanup
290 // entry which we're currently popping.
291 if (Fixup.OptimisticBranchBlock == 0) {
292 new llvm::StoreInst(CGF.Builder.getInt32(Fixup.DestinationIndex),
293 CGF.getNormalCleanupDestSlot(),
294 Fixup.InitialBranch);
295 Fixup.InitialBranch->setSuccessor(0, CleanupEntry);
296 }
297
298 // Don't add this case to the switch statement twice.
299 if (!CasesAdded.insert(Fixup.Destination)) continue;
300
301 Switch->addCase(CGF.Builder.getInt32(Fixup.DestinationIndex),
302 Fixup.Destination);
303 }
304
305 CGF.EHStack.clearFixups();
306}
307
308/// Transitions the terminator of the given exit-block of a cleanup to
309/// be a cleanup switch.
310static llvm::SwitchInst *TransitionToCleanupSwitch(CodeGenFunction &CGF,
311 llvm::BasicBlock *Block) {
312 // If it's a branch, turn it into a switch whose default
313 // destination is its original target.
314 llvm::TerminatorInst *Term = Block->getTerminator();
315 assert(Term && "can't transition block without terminator");
316
317 if (llvm::BranchInst *Br = dyn_cast<llvm::BranchInst>(Term)) {
318 assert(Br->isUnconditional());
319 llvm::LoadInst *Load =
320 new llvm::LoadInst(CGF.getNormalCleanupDestSlot(), "cleanup.dest", Term);
321 llvm::SwitchInst *Switch =
322 llvm::SwitchInst::Create(Load, Br->getSuccessor(0), 4, Block);
323 Br->eraseFromParent();
324 return Switch;
325 } else {
326 return cast<llvm::SwitchInst>(Term);
327 }
328}
329
330void CodeGenFunction::ResolveBranchFixups(llvm::BasicBlock *Block) {
331 assert(Block && "resolving a null target block");
332 if (!EHStack.getNumBranchFixups()) return;
333
334 assert(EHStack.hasNormalCleanups() &&
335 "branch fixups exist with no normal cleanups on stack");
336
337 llvm::SmallPtrSet<llvm::BasicBlock*, 4> ModifiedOptimisticBlocks;
338 bool ResolvedAny = false;
339
340 for (unsigned I = 0, E = EHStack.getNumBranchFixups(); I != E; ++I) {
341 // Skip this fixup if its destination doesn't match.
342 BranchFixup &Fixup = EHStack.getBranchFixup(I);
343 if (Fixup.Destination != Block) continue;
344
345 Fixup.Destination = 0;
346 ResolvedAny = true;
347
348 // If it doesn't have an optimistic branch block, LatestBranch is
349 // already pointing to the right place.
350 llvm::BasicBlock *BranchBB = Fixup.OptimisticBranchBlock;
351 if (!BranchBB)
352 continue;
353
354 // Don't process the same optimistic branch block twice.
355 if (!ModifiedOptimisticBlocks.insert(BranchBB))
356 continue;
357
358 llvm::SwitchInst *Switch = TransitionToCleanupSwitch(*this, BranchBB);
359
360 // Add a case to the switch.
361 Switch->addCase(Builder.getInt32(Fixup.DestinationIndex), Block);
362 }
363
364 if (ResolvedAny)
365 EHStack.popNullFixups();
366}
367
368/// Pops cleanup blocks until the given savepoint is reached.
369void CodeGenFunction::PopCleanupBlocks(EHScopeStack::stable_iterator Old) {
370 assert(Old.isValid());
371
372 while (EHStack.stable_begin() != Old) {
373 EHCleanupScope &Scope = cast<EHCleanupScope>(*EHStack.begin());
374
375 // As long as Old strictly encloses the scope's enclosing normal
376 // cleanup, we're going to emit another normal cleanup which
377 // fallthrough can propagate through.
378 bool FallThroughIsBranchThrough =
379 Old.strictlyEncloses(Scope.getEnclosingNormalCleanup());
380
381 PopCleanupBlock(FallThroughIsBranchThrough);
382 }
383}
384
385static llvm::BasicBlock *CreateNormalEntry(CodeGenFunction &CGF,
386 EHCleanupScope &Scope) {
387 assert(Scope.isNormalCleanup());
388 llvm::BasicBlock *Entry = Scope.getNormalBlock();
389 if (!Entry) {
390 Entry = CGF.createBasicBlock("cleanup");
391 Scope.setNormalBlock(Entry);
392 }
393 return Entry;
394}
395
John McCall36f893c2011-01-28 11:13:47 +0000396/// Attempts to reduce a cleanup's entry block to a fallthrough. This
397/// is basically llvm::MergeBlockIntoPredecessor, except
398/// simplified/optimized for the tighter constraints on cleanup blocks.
399///
400/// Returns the new block, whatever it is.
401static llvm::BasicBlock *SimplifyCleanupEntry(CodeGenFunction &CGF,
402 llvm::BasicBlock *Entry) {
403 llvm::BasicBlock *Pred = Entry->getSinglePredecessor();
404 if (!Pred) return Entry;
405
406 llvm::BranchInst *Br = dyn_cast<llvm::BranchInst>(Pred->getTerminator());
407 if (!Br || Br->isConditional()) return Entry;
408 assert(Br->getSuccessor(0) == Entry);
409
410 // If we were previously inserting at the end of the cleanup entry
411 // block, we'll need to continue inserting at the end of the
412 // predecessor.
413 bool WasInsertBlock = CGF.Builder.GetInsertBlock() == Entry;
414 assert(!WasInsertBlock || CGF.Builder.GetInsertPoint() == Entry->end());
415
416 // Kill the branch.
417 Br->eraseFromParent();
418
John McCall36f893c2011-01-28 11:13:47 +0000419 // Replace all uses of the entry with the predecessor, in case there
420 // are phis in the cleanup.
421 Entry->replaceAllUsesWith(Pred);
422
Jay Foadd36d0362011-06-20 14:38:01 +0000423 // Merge the blocks.
424 Pred->getInstList().splice(Pred->end(), Entry->getInstList());
425
John McCall36f893c2011-01-28 11:13:47 +0000426 // Kill the entry block.
427 Entry->eraseFromParent();
428
429 if (WasInsertBlock)
430 CGF.Builder.SetInsertPoint(Pred);
431
432 return Pred;
433}
434
435static void EmitCleanup(CodeGenFunction &CGF,
436 EHScopeStack::Cleanup *Fn,
John McCallad346f42011-07-12 20:27:29 +0000437 EHScopeStack::Cleanup::Flags flags,
John McCall36f893c2011-01-28 11:13:47 +0000438 llvm::Value *ActiveFlag) {
439 // EH cleanups always occur within a terminate scope.
John McCallad346f42011-07-12 20:27:29 +0000440 if (flags.isForEHCleanup()) CGF.EHStack.pushTerminate();
John McCall36f893c2011-01-28 11:13:47 +0000441
442 // If there's an active flag, load it and skip the cleanup if it's
443 // false.
444 llvm::BasicBlock *ContBB = 0;
445 if (ActiveFlag) {
446 ContBB = CGF.createBasicBlock("cleanup.done");
447 llvm::BasicBlock *CleanupBB = CGF.createBasicBlock("cleanup.action");
448 llvm::Value *IsActive
449 = CGF.Builder.CreateLoad(ActiveFlag, "cleanup.is_active");
450 CGF.Builder.CreateCondBr(IsActive, CleanupBB, ContBB);
451 CGF.EmitBlock(CleanupBB);
452 }
453
454 // Ask the cleanup to emit itself.
John McCallad346f42011-07-12 20:27:29 +0000455 Fn->Emit(CGF, flags);
John McCall36f893c2011-01-28 11:13:47 +0000456 assert(CGF.HaveInsertPoint() && "cleanup ended with no insertion point?");
457
458 // Emit the continuation block if there was an active flag.
459 if (ActiveFlag)
460 CGF.EmitBlock(ContBB);
461
462 // Leave the terminate scope.
John McCallad346f42011-07-12 20:27:29 +0000463 if (flags.isForEHCleanup()) CGF.EHStack.popTerminate();
John McCall36f893c2011-01-28 11:13:47 +0000464}
465
466static void ForwardPrebranchedFallthrough(llvm::BasicBlock *Exit,
467 llvm::BasicBlock *From,
468 llvm::BasicBlock *To) {
469 // Exit is the exit block of a cleanup, so it always terminates in
470 // an unconditional branch or a switch.
471 llvm::TerminatorInst *Term = Exit->getTerminator();
472
473 if (llvm::BranchInst *Br = dyn_cast<llvm::BranchInst>(Term)) {
474 assert(Br->isUnconditional() && Br->getSuccessor(0) == From);
475 Br->setSuccessor(0, To);
476 } else {
477 llvm::SwitchInst *Switch = cast<llvm::SwitchInst>(Term);
478 for (unsigned I = 0, E = Switch->getNumSuccessors(); I != E; ++I)
479 if (Switch->getSuccessor(I) == From)
480 Switch->setSuccessor(I, To);
481 }
482}
483
John McCall82cd2e52011-08-06 06:53:52 +0000484/// We don't need a normal entry block for the given cleanup.
485/// Optimistic fixup branches can cause these blocks to come into
486/// existence anyway; if so, destroy it.
487///
488/// The validity of this transformation is very much specific to the
489/// exact ways in which we form branches to cleanup entries.
490static void destroyOptimisticNormalEntry(CodeGenFunction &CGF,
491 EHCleanupScope &scope) {
492 llvm::BasicBlock *entry = scope.getNormalBlock();
493 if (!entry) return;
494
495 // Replace all the uses with unreachable.
496 llvm::BasicBlock *unreachableBB = CGF.getUnreachableBlock();
497 for (llvm::BasicBlock::use_iterator
498 i = entry->use_begin(), e = entry->use_end(); i != e; ) {
499 llvm::Use &use = i.getUse();
500 ++i;
501
502 use.set(unreachableBB);
503
504 // The only uses should be fixup switches.
505 llvm::SwitchInst *si = cast<llvm::SwitchInst>(use.getUser());
506 if (si->getNumCases() == 2 && si->getDefaultDest() == unreachableBB) {
507 // Replace the switch with a branch.
508 llvm::BranchInst::Create(si->getSuccessor(1), si);
509
510 // The switch operand is a load from the cleanup-dest alloca.
511 llvm::LoadInst *condition = cast<llvm::LoadInst>(si->getCondition());
512
513 // Destroy the switch.
514 si->eraseFromParent();
515
516 // Destroy the load.
517 assert(condition->getOperand(0) == CGF.NormalCleanupDest);
518 assert(condition->use_empty());
519 condition->eraseFromParent();
520 }
521 }
522
523 assert(entry->use_empty());
524 delete entry;
525}
526
John McCall36f893c2011-01-28 11:13:47 +0000527/// Pops a cleanup block. If the block includes a normal cleanup, the
528/// current insertion point is threaded through the cleanup, as are
529/// any branch fixups on the cleanup.
530void CodeGenFunction::PopCleanupBlock(bool FallthroughIsBranchThrough) {
531 assert(!EHStack.empty() && "cleanup stack is empty!");
532 assert(isa<EHCleanupScope>(*EHStack.begin()) && "top not a cleanup!");
533 EHCleanupScope &Scope = cast<EHCleanupScope>(*EHStack.begin());
534 assert(Scope.getFixupDepth() <= EHStack.getNumBranchFixups());
535
536 // Remember activation information.
537 bool IsActive = Scope.isActive();
538 llvm::Value *NormalActiveFlag =
539 Scope.shouldTestFlagInNormalCleanup() ? Scope.getActiveFlag() : 0;
540 llvm::Value *EHActiveFlag =
541 Scope.shouldTestFlagInEHCleanup() ? Scope.getActiveFlag() : 0;
542
543 // Check whether we need an EH cleanup. This is only true if we've
544 // generated a lazy EH cleanup block.
John McCall777d6e52011-08-11 02:22:43 +0000545 llvm::BasicBlock *EHEntry = Scope.getCachedEHDispatchBlock();
546 assert(Scope.hasEHBranches() == (EHEntry != 0));
547 bool RequiresEHCleanup = (EHEntry != 0);
548 EHScopeStack::stable_iterator EHParent = Scope.getEnclosingEHScope();
John McCall36f893c2011-01-28 11:13:47 +0000549
550 // Check the three conditions which might require a normal cleanup:
551
552 // - whether there are branch fix-ups through this cleanup
553 unsigned FixupDepth = Scope.getFixupDepth();
554 bool HasFixups = EHStack.getNumBranchFixups() != FixupDepth;
555
556 // - whether there are branch-throughs or branch-afters
557 bool HasExistingBranches = Scope.hasBranches();
558
559 // - whether there's a fallthrough
560 llvm::BasicBlock *FallthroughSource = Builder.GetInsertBlock();
561 bool HasFallthrough = (FallthroughSource != 0 && IsActive);
562
563 // Branch-through fall-throughs leave the insertion point set to the
564 // end of the last cleanup, which points to the current scope. The
565 // rest of IR gen doesn't need to worry about this; it only happens
566 // during the execution of PopCleanupBlocks().
567 bool HasPrebranchedFallthrough =
568 (FallthroughSource && FallthroughSource->getTerminator());
569
570 // If this is a normal cleanup, then having a prebranched
571 // fallthrough implies that the fallthrough source unconditionally
572 // jumps here.
573 assert(!Scope.isNormalCleanup() || !HasPrebranchedFallthrough ||
574 (Scope.getNormalBlock() &&
575 FallthroughSource->getTerminator()->getSuccessor(0)
576 == Scope.getNormalBlock()));
577
578 bool RequiresNormalCleanup = false;
579 if (Scope.isNormalCleanup() &&
580 (HasFixups || HasExistingBranches || HasFallthrough)) {
581 RequiresNormalCleanup = true;
582 }
583
John McCallf66a3ea2011-08-07 07:05:57 +0000584 // If we have a prebranched fallthrough into an inactive normal
585 // cleanup, rewrite it so that it leads to the appropriate place.
586 if (Scope.isNormalCleanup() && HasPrebranchedFallthrough && !IsActive) {
587 llvm::BasicBlock *prebranchDest;
588
589 // If the prebranch is semantically branching through the next
590 // cleanup, just forward it to the next block, leaving the
591 // insertion point in the prebranched block.
John McCall36f893c2011-01-28 11:13:47 +0000592 if (FallthroughIsBranchThrough) {
John McCallf66a3ea2011-08-07 07:05:57 +0000593 EHScope &enclosing = *EHStack.find(Scope.getEnclosingNormalCleanup());
594 prebranchDest = CreateNormalEntry(*this, cast<EHCleanupScope>(enclosing));
John McCall36f893c2011-01-28 11:13:47 +0000595
John McCallf66a3ea2011-08-07 07:05:57 +0000596 // Otherwise, we need to make a new block. If the normal cleanup
597 // isn't being used at all, we could actually reuse the normal
598 // entry block, but this is simpler, and it avoids conflicts with
599 // dead optimistic fixup branches.
John McCall36f893c2011-01-28 11:13:47 +0000600 } else {
John McCallf66a3ea2011-08-07 07:05:57 +0000601 prebranchDest = createBasicBlock("forwarded-prebranch");
602 EmitBlock(prebranchDest);
John McCall36f893c2011-01-28 11:13:47 +0000603 }
John McCallf66a3ea2011-08-07 07:05:57 +0000604
605 llvm::BasicBlock *normalEntry = Scope.getNormalBlock();
606 assert(normalEntry && !normalEntry->use_empty());
607
608 ForwardPrebranchedFallthrough(FallthroughSource,
609 normalEntry, prebranchDest);
John McCall36f893c2011-01-28 11:13:47 +0000610 }
611
612 // If we don't need the cleanup at all, we're done.
613 if (!RequiresNormalCleanup && !RequiresEHCleanup) {
John McCall82cd2e52011-08-06 06:53:52 +0000614 destroyOptimisticNormalEntry(*this, Scope);
John McCall36f893c2011-01-28 11:13:47 +0000615 EHStack.popCleanup(); // safe because there are no fixups
616 assert(EHStack.getNumBranchFixups() == 0 ||
617 EHStack.hasNormalCleanups());
618 return;
619 }
620
621 // Copy the cleanup emission data out. Note that SmallVector
622 // guarantees maximal alignment for its buffer regardless of its
623 // type parameter.
Chris Lattner5f9e2722011-07-23 10:55:15 +0000624 SmallVector<char, 8*sizeof(void*)> CleanupBuffer;
John McCall36f893c2011-01-28 11:13:47 +0000625 CleanupBuffer.reserve(Scope.getCleanupSize());
626 memcpy(CleanupBuffer.data(),
627 Scope.getCleanupBuffer(), Scope.getCleanupSize());
628 CleanupBuffer.set_size(Scope.getCleanupSize());
629 EHScopeStack::Cleanup *Fn =
630 reinterpret_cast<EHScopeStack::Cleanup*>(CleanupBuffer.data());
631
John McCall777d6e52011-08-11 02:22:43 +0000632 EHScopeStack::Cleanup::Flags cleanupFlags;
633 if (Scope.isNormalCleanup())
634 cleanupFlags.setIsNormalCleanupKind();
635 if (Scope.isEHCleanup())
636 cleanupFlags.setIsEHCleanupKind();
John McCall36f893c2011-01-28 11:13:47 +0000637
638 if (!RequiresNormalCleanup) {
John McCall82cd2e52011-08-06 06:53:52 +0000639 destroyOptimisticNormalEntry(*this, Scope);
John McCall36f893c2011-01-28 11:13:47 +0000640 EHStack.popCleanup();
641 } else {
642 // If we have a fallthrough and no other need for the cleanup,
643 // emit it directly.
644 if (HasFallthrough && !HasPrebranchedFallthrough &&
645 !HasFixups && !HasExistingBranches) {
646
John McCall82cd2e52011-08-06 06:53:52 +0000647 destroyOptimisticNormalEntry(*this, Scope);
John McCall36f893c2011-01-28 11:13:47 +0000648 EHStack.popCleanup();
649
John McCallad346f42011-07-12 20:27:29 +0000650 EmitCleanup(*this, Fn, cleanupFlags, NormalActiveFlag);
John McCall36f893c2011-01-28 11:13:47 +0000651
652 // Otherwise, the best approach is to thread everything through
653 // the cleanup block and then try to clean up after ourselves.
654 } else {
655 // Force the entry block to exist.
656 llvm::BasicBlock *NormalEntry = CreateNormalEntry(*this, Scope);
657
658 // I. Set up the fallthrough edge in.
659
John McCalle7d00202011-08-10 04:11:11 +0000660 CGBuilderTy::InsertPoint savedInactiveFallthroughIP;
John McCallf66a3ea2011-08-07 07:05:57 +0000661
John McCall36f893c2011-01-28 11:13:47 +0000662 // If there's a fallthrough, we need to store the cleanup
663 // destination index. For fall-throughs this is always zero.
664 if (HasFallthrough) {
665 if (!HasPrebranchedFallthrough)
666 Builder.CreateStore(Builder.getInt32(0), getNormalCleanupDestSlot());
667
John McCallf66a3ea2011-08-07 07:05:57 +0000668 // Otherwise, save and clear the IP if we don't have fallthrough
669 // because the cleanup is inactive.
John McCall36f893c2011-01-28 11:13:47 +0000670 } else if (FallthroughSource) {
671 assert(!IsActive && "source without fallthrough for active cleanup");
John McCallf66a3ea2011-08-07 07:05:57 +0000672 savedInactiveFallthroughIP = Builder.saveAndClearIP();
John McCall36f893c2011-01-28 11:13:47 +0000673 }
674
675 // II. Emit the entry block. This implicitly branches to it if
676 // we have fallthrough. All the fixups and existing branches
677 // should already be branched to it.
678 EmitBlock(NormalEntry);
679
680 // III. Figure out where we're going and build the cleanup
681 // epilogue.
682
683 bool HasEnclosingCleanups =
684 (Scope.getEnclosingNormalCleanup() != EHStack.stable_end());
685
686 // Compute the branch-through dest if we need it:
687 // - if there are branch-throughs threaded through the scope
688 // - if fall-through is a branch-through
689 // - if there are fixups that will be optimistically forwarded
690 // to the enclosing cleanup
691 llvm::BasicBlock *BranchThroughDest = 0;
692 if (Scope.hasBranchThroughs() ||
693 (FallthroughSource && FallthroughIsBranchThrough) ||
694 (HasFixups && HasEnclosingCleanups)) {
695 assert(HasEnclosingCleanups);
696 EHScope &S = *EHStack.find(Scope.getEnclosingNormalCleanup());
697 BranchThroughDest = CreateNormalEntry(*this, cast<EHCleanupScope>(S));
698 }
699
700 llvm::BasicBlock *FallthroughDest = 0;
Chris Lattner5f9e2722011-07-23 10:55:15 +0000701 SmallVector<llvm::Instruction*, 2> InstsToAppend;
John McCall36f893c2011-01-28 11:13:47 +0000702
703 // If there's exactly one branch-after and no other threads,
704 // we can route it without a switch.
705 if (!Scope.hasBranchThroughs() && !HasFixups && !HasFallthrough &&
706 Scope.getNumBranchAfters() == 1) {
707 assert(!BranchThroughDest || !IsActive);
708
709 // TODO: clean up the possibly dead stores to the cleanup dest slot.
710 llvm::BasicBlock *BranchAfter = Scope.getBranchAfterBlock(0);
711 InstsToAppend.push_back(llvm::BranchInst::Create(BranchAfter));
712
713 // Build a switch-out if we need it:
714 // - if there are branch-afters threaded through the scope
715 // - if fall-through is a branch-after
716 // - if there are fixups that have nowhere left to go and
717 // so must be immediately resolved
718 } else if (Scope.getNumBranchAfters() ||
719 (HasFallthrough && !FallthroughIsBranchThrough) ||
720 (HasFixups && !HasEnclosingCleanups)) {
721
722 llvm::BasicBlock *Default =
723 (BranchThroughDest ? BranchThroughDest : getUnreachableBlock());
724
725 // TODO: base this on the number of branch-afters and fixups
726 const unsigned SwitchCapacity = 10;
727
728 llvm::LoadInst *Load =
729 new llvm::LoadInst(getNormalCleanupDestSlot(), "cleanup.dest");
730 llvm::SwitchInst *Switch =
731 llvm::SwitchInst::Create(Load, Default, SwitchCapacity);
732
733 InstsToAppend.push_back(Load);
734 InstsToAppend.push_back(Switch);
735
736 // Branch-after fallthrough.
737 if (FallthroughSource && !FallthroughIsBranchThrough) {
738 FallthroughDest = createBasicBlock("cleanup.cont");
739 if (HasFallthrough)
740 Switch->addCase(Builder.getInt32(0), FallthroughDest);
741 }
742
743 for (unsigned I = 0, E = Scope.getNumBranchAfters(); I != E; ++I) {
744 Switch->addCase(Scope.getBranchAfterIndex(I),
745 Scope.getBranchAfterBlock(I));
746 }
747
748 // If there aren't any enclosing cleanups, we can resolve all
749 // the fixups now.
750 if (HasFixups && !HasEnclosingCleanups)
751 ResolveAllBranchFixups(*this, Switch, NormalEntry);
752 } else {
753 // We should always have a branch-through destination in this case.
754 assert(BranchThroughDest);
755 InstsToAppend.push_back(llvm::BranchInst::Create(BranchThroughDest));
756 }
757
758 // IV. Pop the cleanup and emit it.
759 EHStack.popCleanup();
760 assert(EHStack.hasNormalCleanups() == HasEnclosingCleanups);
761
John McCallad346f42011-07-12 20:27:29 +0000762 EmitCleanup(*this, Fn, cleanupFlags, NormalActiveFlag);
John McCall36f893c2011-01-28 11:13:47 +0000763
764 // Append the prepared cleanup prologue from above.
765 llvm::BasicBlock *NormalExit = Builder.GetInsertBlock();
766 for (unsigned I = 0, E = InstsToAppend.size(); I != E; ++I)
767 NormalExit->getInstList().push_back(InstsToAppend[I]);
768
769 // Optimistically hope that any fixups will continue falling through.
770 for (unsigned I = FixupDepth, E = EHStack.getNumBranchFixups();
771 I < E; ++I) {
John McCalld16c2cf2011-02-08 08:22:06 +0000772 BranchFixup &Fixup = EHStack.getBranchFixup(I);
John McCall36f893c2011-01-28 11:13:47 +0000773 if (!Fixup.Destination) continue;
774 if (!Fixup.OptimisticBranchBlock) {
775 new llvm::StoreInst(Builder.getInt32(Fixup.DestinationIndex),
776 getNormalCleanupDestSlot(),
777 Fixup.InitialBranch);
778 Fixup.InitialBranch->setSuccessor(0, NormalEntry);
779 }
780 Fixup.OptimisticBranchBlock = NormalExit;
781 }
782
783 // V. Set up the fallthrough edge out.
784
John McCallf66a3ea2011-08-07 07:05:57 +0000785 // Case 1: a fallthrough source exists but doesn't branch to the
786 // cleanup because the cleanup is inactive.
John McCall36f893c2011-01-28 11:13:47 +0000787 if (!HasFallthrough && FallthroughSource) {
John McCallf66a3ea2011-08-07 07:05:57 +0000788 // Prebranched fallthrough was forwarded earlier.
789 // Non-prebranched fallthrough doesn't need to be forwarded.
790 // Either way, all we need to do is restore the IP we cleared before.
John McCall36f893c2011-01-28 11:13:47 +0000791 assert(!IsActive);
John McCallf66a3ea2011-08-07 07:05:57 +0000792 Builder.restoreIP(savedInactiveFallthroughIP);
John McCall36f893c2011-01-28 11:13:47 +0000793
794 // Case 2: a fallthrough source exists and should branch to the
795 // cleanup, but we're not supposed to branch through to the next
796 // cleanup.
797 } else if (HasFallthrough && FallthroughDest) {
798 assert(!FallthroughIsBranchThrough);
799 EmitBlock(FallthroughDest);
800
801 // Case 3: a fallthrough source exists and should branch to the
802 // cleanup and then through to the next.
803 } else if (HasFallthrough) {
804 // Everything is already set up for this.
805
806 // Case 4: no fallthrough source exists.
807 } else {
808 Builder.ClearInsertionPoint();
809 }
810
811 // VI. Assorted cleaning.
812
813 // Check whether we can merge NormalEntry into a single predecessor.
814 // This might invalidate (non-IR) pointers to NormalEntry.
815 llvm::BasicBlock *NewNormalEntry =
816 SimplifyCleanupEntry(*this, NormalEntry);
817
818 // If it did invalidate those pointers, and NormalEntry was the same
819 // as NormalExit, go back and patch up the fixups.
820 if (NewNormalEntry != NormalEntry && NormalEntry == NormalExit)
821 for (unsigned I = FixupDepth, E = EHStack.getNumBranchFixups();
822 I < E; ++I)
John McCalld16c2cf2011-02-08 08:22:06 +0000823 EHStack.getBranchFixup(I).OptimisticBranchBlock = NewNormalEntry;
John McCall36f893c2011-01-28 11:13:47 +0000824 }
825 }
826
827 assert(EHStack.hasNormalCleanups() || EHStack.getNumBranchFixups() == 0);
828
829 // Emit the EH cleanup if required.
830 if (RequiresEHCleanup) {
831 CGBuilderTy::InsertPoint SavedIP = Builder.saveAndClearIP();
832
833 EmitBlock(EHEntry);
John McCallad346f42011-07-12 20:27:29 +0000834
835 cleanupFlags.setIsForEHCleanup();
836 EmitCleanup(*this, Fn, cleanupFlags, EHActiveFlag);
John McCall36f893c2011-01-28 11:13:47 +0000837
John McCall777d6e52011-08-11 02:22:43 +0000838 Builder.CreateBr(getEHDispatchBlock(EHParent));
John McCall36f893c2011-01-28 11:13:47 +0000839
840 Builder.restoreIP(SavedIP);
841
842 SimplifyCleanupEntry(*this, EHEntry);
843 }
844}
845
Chris Lattnerb11f9192011-04-17 00:54:30 +0000846/// isObviouslyBranchWithoutCleanups - Return true if a branch to the
847/// specified destination obviously has no cleanups to run. 'false' is always
848/// a conservatively correct answer for this method.
849bool CodeGenFunction::isObviouslyBranchWithoutCleanups(JumpDest Dest) const {
850 assert(Dest.getScopeDepth().encloses(EHStack.stable_begin())
851 && "stale jump destination");
852
853 // Calculate the innermost active normal cleanup.
854 EHScopeStack::stable_iterator TopCleanup =
855 EHStack.getInnermostActiveNormalCleanup();
856
857 // If we're not in an active normal cleanup scope, or if the
858 // destination scope is within the innermost active normal cleanup
859 // scope, we don't need to worry about fixups.
860 if (TopCleanup == EHStack.stable_end() ||
861 TopCleanup.encloses(Dest.getScopeDepth())) // works for invalid
862 return true;
863
864 // Otherwise, we might need some cleanups.
865 return false;
866}
867
868
John McCall36f893c2011-01-28 11:13:47 +0000869/// Terminate the current block by emitting a branch which might leave
870/// the current cleanup-protected scope. The target scope may not yet
871/// be known, in which case this will require a fixup.
872///
873/// As a side-effect, this method clears the insertion point.
874void CodeGenFunction::EmitBranchThroughCleanup(JumpDest Dest) {
John McCall27f8d702011-02-25 04:19:13 +0000875 assert(Dest.getScopeDepth().encloses(EHStack.stable_begin())
John McCall36f893c2011-01-28 11:13:47 +0000876 && "stale jump destination");
877
878 if (!HaveInsertPoint())
879 return;
880
881 // Create the branch.
882 llvm::BranchInst *BI = Builder.CreateBr(Dest.getBlock());
883
884 // Calculate the innermost active normal cleanup.
885 EHScopeStack::stable_iterator
886 TopCleanup = EHStack.getInnermostActiveNormalCleanup();
887
888 // If we're not in an active normal cleanup scope, or if the
889 // destination scope is within the innermost active normal cleanup
890 // scope, we don't need to worry about fixups.
891 if (TopCleanup == EHStack.stable_end() ||
892 TopCleanup.encloses(Dest.getScopeDepth())) { // works for invalid
893 Builder.ClearInsertionPoint();
894 return;
895 }
896
897 // If we can't resolve the destination cleanup scope, just add this
898 // to the current cleanup scope as a branch fixup.
899 if (!Dest.getScopeDepth().isValid()) {
900 BranchFixup &Fixup = EHStack.addBranchFixup();
901 Fixup.Destination = Dest.getBlock();
902 Fixup.DestinationIndex = Dest.getDestIndex();
903 Fixup.InitialBranch = BI;
904 Fixup.OptimisticBranchBlock = 0;
905
906 Builder.ClearInsertionPoint();
907 return;
908 }
909
910 // Otherwise, thread through all the normal cleanups in scope.
911
912 // Store the index at the start.
913 llvm::ConstantInt *Index = Builder.getInt32(Dest.getDestIndex());
914 new llvm::StoreInst(Index, getNormalCleanupDestSlot(), BI);
915
916 // Adjust BI to point to the first cleanup block.
917 {
918 EHCleanupScope &Scope =
919 cast<EHCleanupScope>(*EHStack.find(TopCleanup));
920 BI->setSuccessor(0, CreateNormalEntry(*this, Scope));
921 }
922
923 // Add this destination to all the scopes involved.
924 EHScopeStack::stable_iterator I = TopCleanup;
925 EHScopeStack::stable_iterator E = Dest.getScopeDepth();
926 if (E.strictlyEncloses(I)) {
927 while (true) {
928 EHCleanupScope &Scope = cast<EHCleanupScope>(*EHStack.find(I));
929 assert(Scope.isNormalCleanup());
930 I = Scope.getEnclosingNormalCleanup();
931
932 // If this is the last cleanup we're propagating through, tell it
933 // that there's a resolved jump moving through it.
934 if (!E.strictlyEncloses(I)) {
935 Scope.addBranchAfter(Index, Dest.getBlock());
936 break;
937 }
938
939 // Otherwise, tell the scope that there's a jump propoagating
940 // through it. If this isn't new information, all the rest of
941 // the work has been done before.
942 if (!Scope.addBranchThrough(Dest.getBlock()))
943 break;
944 }
945 }
946
947 Builder.ClearInsertionPoint();
948}
949
John McCall36f893c2011-01-28 11:13:47 +0000950static bool IsUsedAsNormalCleanup(EHScopeStack &EHStack,
951 EHScopeStack::stable_iterator C) {
952 // If we needed a normal block for any reason, that counts.
953 if (cast<EHCleanupScope>(*EHStack.find(C)).getNormalBlock())
954 return true;
955
956 // Check whether any enclosed cleanups were needed.
957 for (EHScopeStack::stable_iterator
958 I = EHStack.getInnermostNormalCleanup();
959 I != C; ) {
960 assert(C.strictlyEncloses(I));
961 EHCleanupScope &S = cast<EHCleanupScope>(*EHStack.find(I));
962 if (S.getNormalBlock()) return true;
963 I = S.getEnclosingNormalCleanup();
964 }
965
966 return false;
967}
968
969static bool IsUsedAsEHCleanup(EHScopeStack &EHStack,
John McCall777d6e52011-08-11 02:22:43 +0000970 EHScopeStack::stable_iterator cleanup) {
John McCall36f893c2011-01-28 11:13:47 +0000971 // If we needed an EH block for any reason, that counts.
John McCall777d6e52011-08-11 02:22:43 +0000972 if (EHStack.find(cleanup)->hasEHBranches())
John McCall36f893c2011-01-28 11:13:47 +0000973 return true;
974
975 // Check whether any enclosed cleanups were needed.
976 for (EHScopeStack::stable_iterator
John McCall777d6e52011-08-11 02:22:43 +0000977 i = EHStack.getInnermostEHScope(); i != cleanup; ) {
978 assert(cleanup.strictlyEncloses(i));
979
980 EHScope &scope = *EHStack.find(i);
981 if (scope.hasEHBranches())
982 return true;
983
984 i = scope.getEnclosingEHScope();
John McCall36f893c2011-01-28 11:13:47 +0000985 }
986
987 return false;
988}
989
990enum ForActivation_t {
991 ForActivation,
992 ForDeactivation
993};
994
995/// The given cleanup block is changing activation state. Configure a
996/// cleanup variable if necessary.
997///
998/// It would be good if we had some way of determining if there were
999/// extra uses *after* the change-over point.
1000static void SetupCleanupBlockActivation(CodeGenFunction &CGF,
1001 EHScopeStack::stable_iterator C,
John McCall6f103ba2011-11-10 10:43:54 +00001002 ForActivation_t kind,
1003 llvm::Instruction *dominatingIP) {
John McCall36f893c2011-01-28 11:13:47 +00001004 EHCleanupScope &Scope = cast<EHCleanupScope>(*CGF.EHStack.find(C));
1005
John McCallb99785b2011-11-10 09:22:44 +00001006 // We always need the flag if we're activating the cleanup in a
1007 // conditional context, because we have to assume that the current
1008 // location doesn't necessarily dominate the cleanup's code.
1009 bool isActivatedInConditional =
John McCall6f103ba2011-11-10 10:43:54 +00001010 (kind == ForActivation && CGF.isInConditionalBranch());
John McCallb99785b2011-11-10 09:22:44 +00001011
1012 bool needFlag = false;
John McCall36f893c2011-01-28 11:13:47 +00001013
1014 // Calculate whether the cleanup was used:
1015
1016 // - as a normal cleanup
John McCallb99785b2011-11-10 09:22:44 +00001017 if (Scope.isNormalCleanup() &&
1018 (isActivatedInConditional || IsUsedAsNormalCleanup(CGF.EHStack, C))) {
John McCall36f893c2011-01-28 11:13:47 +00001019 Scope.setTestFlagInNormalCleanup();
John McCallb99785b2011-11-10 09:22:44 +00001020 needFlag = true;
John McCall36f893c2011-01-28 11:13:47 +00001021 }
1022
1023 // - as an EH cleanup
John McCallb99785b2011-11-10 09:22:44 +00001024 if (Scope.isEHCleanup() &&
1025 (isActivatedInConditional || IsUsedAsEHCleanup(CGF.EHStack, C))) {
John McCall36f893c2011-01-28 11:13:47 +00001026 Scope.setTestFlagInEHCleanup();
John McCallb99785b2011-11-10 09:22:44 +00001027 needFlag = true;
John McCall36f893c2011-01-28 11:13:47 +00001028 }
1029
1030 // If it hasn't yet been used as either, we're done.
John McCallb99785b2011-11-10 09:22:44 +00001031 if (!needFlag) return;
John McCall36f893c2011-01-28 11:13:47 +00001032
John McCall6f103ba2011-11-10 10:43:54 +00001033 llvm::AllocaInst *var = Scope.getActiveFlag();
1034 if (!var) {
1035 var = CGF.CreateTempAlloca(CGF.Builder.getInt1Ty(), "cleanup.isactive");
1036 Scope.setActiveFlag(var);
1037
1038 assert(dominatingIP && "no existing variable and no dominating IP!");
John McCall36f893c2011-01-28 11:13:47 +00001039
1040 // Initialize to true or false depending on whether it was
1041 // active up to this point.
John McCall6f103ba2011-11-10 10:43:54 +00001042 llvm::Value *value = CGF.Builder.getInt1(kind == ForDeactivation);
1043
1044 // If we're in a conditional block, ignore the dominating IP and
1045 // use the outermost conditional branch.
1046 if (CGF.isInConditionalBranch()) {
1047 CGF.setBeforeOutermostConditional(value, var);
1048 } else {
1049 new llvm::StoreInst(value, var, dominatingIP);
1050 }
John McCall36f893c2011-01-28 11:13:47 +00001051 }
1052
John McCall6f103ba2011-11-10 10:43:54 +00001053 CGF.Builder.CreateStore(CGF.Builder.getInt1(kind == ForActivation), var);
John McCall36f893c2011-01-28 11:13:47 +00001054}
1055
1056/// Activate a cleanup that was created in an inactivated state.
John McCall6f103ba2011-11-10 10:43:54 +00001057void CodeGenFunction::ActivateCleanupBlock(EHScopeStack::stable_iterator C,
1058 llvm::Instruction *dominatingIP) {
John McCall36f893c2011-01-28 11:13:47 +00001059 assert(C != EHStack.stable_end() && "activating bottom of stack?");
1060 EHCleanupScope &Scope = cast<EHCleanupScope>(*EHStack.find(C));
1061 assert(!Scope.isActive() && "double activation");
1062
John McCall6f103ba2011-11-10 10:43:54 +00001063 SetupCleanupBlockActivation(*this, C, ForActivation, dominatingIP);
John McCall36f893c2011-01-28 11:13:47 +00001064
1065 Scope.setActive(true);
1066}
1067
1068/// Deactive a cleanup that was created in an active state.
John McCall6f103ba2011-11-10 10:43:54 +00001069void CodeGenFunction::DeactivateCleanupBlock(EHScopeStack::stable_iterator C,
1070 llvm::Instruction *dominatingIP) {
John McCall36f893c2011-01-28 11:13:47 +00001071 assert(C != EHStack.stable_end() && "deactivating bottom of stack?");
1072 EHCleanupScope &Scope = cast<EHCleanupScope>(*EHStack.find(C));
1073 assert(Scope.isActive() && "double deactivation");
1074
1075 // If it's the top of the stack, just pop it.
1076 if (C == EHStack.stable_begin()) {
1077 // If it's a normal cleanup, we need to pretend that the
1078 // fallthrough is unreachable.
1079 CGBuilderTy::InsertPoint SavedIP = Builder.saveAndClearIP();
1080 PopCleanupBlock();
1081 Builder.restoreIP(SavedIP);
1082 return;
1083 }
1084
1085 // Otherwise, follow the general case.
John McCall6f103ba2011-11-10 10:43:54 +00001086 SetupCleanupBlockActivation(*this, C, ForDeactivation, dominatingIP);
John McCall36f893c2011-01-28 11:13:47 +00001087
1088 Scope.setActive(false);
1089}
1090
1091llvm::Value *CodeGenFunction::getNormalCleanupDestSlot() {
1092 if (!NormalCleanupDest)
1093 NormalCleanupDest =
1094 CreateTempAlloca(Builder.getInt32Ty(), "cleanup.dest.slot");
1095 return NormalCleanupDest;
1096}
Peter Collingbourne86811602011-11-27 22:09:22 +00001097
1098/// Emits all the code to cause the given temporary to be cleaned up.
1099void CodeGenFunction::EmitCXXTemporary(const CXXTemporary *Temporary,
1100 QualType TempType,
1101 llvm::Value *Ptr) {
Peter Collingbourne567f02f2011-11-28 00:41:08 +00001102 pushDestroy(NormalAndEHCleanup, Ptr, TempType, *&destroyCXXObject,
Peter Collingbourne86811602011-11-27 22:09:22 +00001103 /*useEHCleanup*/ true);
1104}