@@ -160,12 +160,12 @@ static bool isLeakCheckerRoot(GlobalVariable *GV) {
160160// / Given a value that is stored to a global but never read, determine whether
161161// / it's safe to remove the store and the chain of computation that feeds the
162162// / store.
163- static bool IsSafeComputationToRemove (
163+ static bool isSafeComputationToRemove (
164164 Value *V, function_ref<TargetLibraryInfo &(Function &)> GetTLI) {
165165 do {
166166 if (isa<Constant>(V))
167167 return true ;
168- if (! V->hasOneUse ( ))
168+ if (V->hasNUsesOrMore ( 1 ))
169169 return false ;
170170 if (isa<LoadInst>(V) || isa<InvokeInst>(V) || isa<Argument>(V) ||
171171 isa<GlobalValue>(V))
@@ -187,90 +187,12 @@ static bool IsSafeComputationToRemove(
187187 } while (true );
188188}
189189
190- // / This GV is a pointer root. Loop over all users of the global and clean up
191- // / any that obviously don't assign the global a value that isn't dynamically
192- // / allocated.
193- static bool
194- CleanupPointerRootUsers (GlobalVariable *GV,
195- function_ref<TargetLibraryInfo &(Function &)> GetTLI) {
196- // A brief explanation of leak checkers. The goal is to find bugs where
197- // pointers are forgotten, causing an accumulating growth in memory
198- // usage over time. The common strategy for leak checkers is to explicitly
199- // allow the memory pointed to by globals at exit. This is popular because it
200- // also solves another problem where the main thread of a C++ program may shut
201- // down before other threads that are still expecting to use those globals. To
202- // handle that case, we expect the program may create a singleton and never
203- // destroy it.
204-
205- bool Changed = false ;
206-
207- // If Dead[n].first is the only use of a malloc result, we can delete its
208- // chain of computation and the store to the global in Dead[n].second.
209- SmallVector<std::pair<Instruction *, Instruction *>, 32 > Dead;
210-
211- SmallVector<User *> Worklist (GV->users ());
212- // Constants can't be pointers to dynamically allocated memory.
213- while (!Worklist.empty ()) {
214- User *U = Worklist.pop_back_val ();
215- if (StoreInst *SI = dyn_cast<StoreInst>(U)) {
216- Value *V = SI->getValueOperand ();
217- if (isa<Constant>(V)) {
218- Changed = true ;
219- SI->eraseFromParent ();
220- } else if (Instruction *I = dyn_cast<Instruction>(V)) {
221- if (I->hasOneUse ())
222- Dead.push_back (std::make_pair (I, SI));
223- }
224- } else if (MemSetInst *MSI = dyn_cast<MemSetInst>(U)) {
225- if (isa<Constant>(MSI->getValue ())) {
226- Changed = true ;
227- MSI->eraseFromParent ();
228- } else if (Instruction *I = dyn_cast<Instruction>(MSI->getValue ())) {
229- if (I->hasOneUse ())
230- Dead.push_back (std::make_pair (I, MSI));
231- }
232- } else if (MemTransferInst *MTI = dyn_cast<MemTransferInst>(U)) {
233- GlobalVariable *MemSrc = dyn_cast<GlobalVariable>(MTI->getSource ());
234- if (MemSrc && MemSrc->isConstant ()) {
235- Changed = true ;
236- MTI->eraseFromParent ();
237- } else if (Instruction *I = dyn_cast<Instruction>(MTI->getSource ())) {
238- if (I->hasOneUse ())
239- Dead.push_back (std::make_pair (I, MTI));
240- }
241- } else if (ConstantExpr *CE = dyn_cast<ConstantExpr>(U)) {
242- if (isa<GEPOperator>(CE))
243- append_range (Worklist, CE->users ());
244- }
245- }
246-
247- for (int i = 0 , e = Dead.size (); i != e; ++i) {
248- if (IsSafeComputationToRemove (Dead[i].first , GetTLI)) {
249- Dead[i].second ->eraseFromParent ();
250- Instruction *I = Dead[i].first ;
251- do {
252- if (isAllocationFn (I, GetTLI))
253- break ;
254- Instruction *J = dyn_cast<Instruction>(I->getOperand (0 ));
255- if (!J)
256- break ;
257- I->eraseFromParent ();
258- I = J;
259- } while (true );
260- I->eraseFromParent ();
261- Changed = true ;
262- }
263- }
264-
265- GV->removeDeadConstantUsers ();
266- return Changed;
267- }
268-
269190// / We just marked GV constant. Loop over all users of the global, cleaning up
270191// / the obvious ones. This is largely just a quick scan over the use list to
271192// / clean up the easy and obvious cruft. This returns true if it made a change.
272- static bool CleanupConstantGlobalUsers (GlobalVariable *GV,
273- const DataLayout &DL) {
193+ static bool CleanupConstantGlobalUsers (
194+ GlobalVariable *GV, const DataLayout &DL,
195+ function_ref<TargetLibraryInfo &(Function &)> GetTLI) {
274196 Constant *Init = GV->getInitializer ();
275197 SmallVector<User *, 8 > WorkList (GV->users ());
276198 SmallPtrSet<User *, 8 > Visited;
@@ -320,11 +242,30 @@ static bool CleanupConstantGlobalUsers(GlobalVariable *GV,
320242 }
321243 }
322244 } else if (StoreInst *SI = dyn_cast<StoreInst>(U)) {
323- // Store must be unreachable or storing Init into the global.
324- EraseFromParent (SI);
325- } else if (MemIntrinsic *MI = dyn_cast<MemIntrinsic>(U)) { // memset/cpy/mv
326- if (getUnderlyingObject (MI->getRawDest ()) == GV)
327- EraseFromParent (MI);
245+ auto *V = SI->getValueOperand ();
246+ if (isa<Constant>(V)) {
247+ EraseFromParent (SI);
248+ } else if (isa<Instruction>(V)) {
249+ EraseFromParent (SI);
250+ if (isSafeComputationToRemove (V, GetTLI))
251+ RecursivelyDeleteTriviallyDeadInstructions (V);
252+ } else if (isa<Argument>(V)) {
253+ if (!V->getType ()->isPointerTy ())
254+ EraseFromParent (SI);
255+ }
256+ } else if (auto *MSI = dyn_cast<MemSetInst>(U)) { // memset/cpy/mv
257+ if (getUnderlyingObject (MSI->getRawDest ()) == GV)
258+ EraseFromParent (MSI);
259+ } else if (auto *MTI = dyn_cast<MemTransferInst>(U)) {
260+ auto *Src = MTI->getRawSource ();
261+ auto *Dst = MTI->getRawDest ();
262+ if (getUnderlyingObject (Dst) != GV)
263+ continue ;
264+ if (isa<Instruction, Operator>(Src)) {
265+ EraseFromParent (MTI);
266+ if (isSafeComputationToRemove (Src, GetTLI))
267+ RecursivelyDeleteTriviallyDeadInstructions (Src);
268+ }
328269 } else if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(U)) {
329270 if (II->getIntrinsicID () == Intrinsic::threadlocal_address)
330271 append_range (WorkList, II->users ());
@@ -872,12 +813,7 @@ static bool OptimizeAwayTrappingUsesOfLoads(
872813 // If we nuked all of the loads, then none of the stores are needed either,
873814 // nor is the global.
874815 if (AllNonStoreUsesGone) {
875- if (isLeakCheckerRoot (GV)) {
876- Changed |= CleanupPointerRootUsers (GV, GetTLI);
877- } else {
878- Changed = true ;
879- CleanupConstantGlobalUsers (GV, DL);
880- }
816+ Changed |= CleanupConstantGlobalUsers (GV, DL, GetTLI);
881817 if (GV->use_empty ()) {
882818 LLVM_DEBUG (dbgs () << " *** GLOBAL NOW DEAD!\n " );
883819 Changed = true ;
@@ -1491,15 +1427,7 @@ processInternalGlobal(GlobalVariable *GV, const GlobalStatus &GS,
14911427 // Delete it now.
14921428 if (!GS.IsLoaded ) {
14931429 LLVM_DEBUG (dbgs () << " GLOBAL NEVER LOADED: " << *GV << " \n " );
1494-
1495- if (isLeakCheckerRoot (GV)) {
1496- // Delete any constant stores to the global.
1497- Changed = CleanupPointerRootUsers (GV, GetTLI);
1498- } else {
1499- // Delete any stores we can find to the global. We may not be able to
1500- // make it completely dead though.
1501- Changed = CleanupConstantGlobalUsers (GV, DL);
1502- }
1430+ Changed = CleanupConstantGlobalUsers (GV, DL, GetTLI);
15031431
15041432 // If the global is dead now, delete it.
15051433 if (GV->use_empty ()) {
@@ -1523,7 +1451,7 @@ processInternalGlobal(GlobalVariable *GV, const GlobalStatus &GS,
15231451 }
15241452
15251453 // Clean up any obviously simplifiable users now.
1526- Changed |= CleanupConstantGlobalUsers (GV, DL);
1454+ Changed |= CleanupConstantGlobalUsers (GV, DL, GetTLI );
15271455
15281456 // If the global is dead now, just nuke it.
15291457 if (GV->use_empty ()) {
@@ -1578,7 +1506,7 @@ processInternalGlobal(GlobalVariable *GV, const GlobalStatus &GS,
15781506 }
15791507
15801508 // Clean up any obviously simplifiable users now.
1581- CleanupConstantGlobalUsers (GV, DL);
1509+ CleanupConstantGlobalUsers (GV, DL, GetTLI );
15821510
15831511 if (GV->use_empty ()) {
15841512 LLVM_DEBUG (dbgs () << " *** Substituting initializer allowed us to "
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