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@@ -24,7 +24,6 @@
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#include "llvm/Analysis/Dominators.h"
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#include "llvm/Target/TargetData.h"
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#include "llvm/Transforms/Utils/Local.h"
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-#include "llvm/Transforms/Scalar.h"
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#include "llvm/Support/ErrorHandling.h"
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#include "llvm/Support/ValueHandle.h"
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#include <algorithm>
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@@ -320,8 +319,7 @@ BasicBlock *llvm::SplitBlock(BasicBlock *Old, Instruction *SplitPt, Pass *P) {
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++SplitIt;
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BasicBlock *New = Old->splitBasicBlock(SplitIt, Old->getName()+".split");
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- // The new block lives in whichever loop the old one did. This preserves
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- // LCSSA as well, because we force the split point to be after any PHI nodes.
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+ // The new block lives in whichever loop the old one did.
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if (LoopInfo* LI = P->getAnalysisIfAvailable<LoopInfo>())
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if (Loop *L = LI->getLoopFor(Old))
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L->addBasicBlockToLoop(New, LI->getBase());
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@@ -355,12 +353,8 @@ BasicBlock *llvm::SplitBlock(BasicBlock *Old, Instruction *SplitPt, Pass *P) {
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/// Preds array, which has NumPreds elements in it. The new block is given a
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/// suffix of 'Suffix'.
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///
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-/// This currently updates the LLVM IR, AliasAnalysis, DominatorTree,
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-/// DominanceFrontier, LoopInfo, and LCCSA but no other analyses.
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-/// In particular, it does not preserve LoopSimplify (because it's
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-/// complicated to handle the case where one of the edges being split
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-/// is an exit of a loop with other exits).
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-///
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+/// This currently updates the LLVM IR, AliasAnalysis, DominatorTree and
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+/// DominanceFrontier, but no other analyses.
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BasicBlock *llvm::SplitBlockPredecessors(BasicBlock *BB,
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BasicBlock *const *Preds,
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unsigned NumPreds, const char *Suffix,
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@@ -372,44 +366,19 @@ BasicBlock *llvm::SplitBlockPredecessors(BasicBlock *BB,
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// The new block unconditionally branches to the old block.
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BranchInst *BI = BranchInst::Create(BB, NewBB);
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- LoopInfo *LI = P ? P->getAnalysisIfAvailable<LoopInfo>() : 0;
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- Loop *L = LI ? LI->getLoopFor(BB) : 0;
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- bool PreserveLCSSA = P->mustPreserveAnalysisID(LCSSAID);
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-
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// Move the edges from Preds to point to NewBB instead of BB.
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- // While here, if we need to preserve loop analyses, collect
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- // some information about how this split will affect loops.
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- bool HasLoopExit = false;
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- bool IsLoopEntry = !!L;
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- bool SplitMakesNewLoopHeader = false;
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- for (unsigned i = 0; i != NumPreds; ++i) {
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+ for (unsigned i = 0; i != NumPreds; ++i)
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Preds[i]->getTerminator()->replaceUsesOfWith(BB, NewBB);
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-
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- if (LI) {
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- // If we need to preserve LCSSA, determine if any of
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- // the preds is a loop exit.
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- if (PreserveLCSSA)
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- if (Loop *PL = LI->getLoopFor(Preds[i]))
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- if (!PL->contains(BB))
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- HasLoopExit = true;
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- // If we need to preserve LoopInfo, note whether any of the
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- // preds crosses an interesting loop boundary.
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- if (L) {
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- if (L->contains(Preds[i]))
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- IsLoopEntry = false;
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- else
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- SplitMakesNewLoopHeader = true;
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- }
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- }
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- }
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-
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+
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// Update dominator tree and dominator frontier if available.
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DominatorTree *DT = P ? P->getAnalysisIfAvailable<DominatorTree>() : 0;
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if (DT)
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DT->splitBlock(NewBB);
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if (DominanceFrontier *DF = P ? P->getAnalysisIfAvailable<DominanceFrontier>():0)
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DF->splitBlock(NewBB);
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-
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+ AliasAnalysis *AA = P ? P->getAnalysisIfAvailable<AliasAnalysis>() : 0;
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+
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+
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// Insert a new PHI node into NewBB for every PHI node in BB and that new PHI
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// node becomes an incoming value for BB's phi node. However, if the Preds
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// list is empty, we need to insert dummy entries into the PHI nodes in BB to
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@@ -420,42 +389,20 @@ BasicBlock *llvm::SplitBlockPredecessors(BasicBlock *BB,
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cast<PHINode>(I)->addIncoming(UndefValue::get(I->getType()), NewBB);
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return NewBB;
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}
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-
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- AliasAnalysis *AA = P ? P->getAnalysisIfAvailable<AliasAnalysis>() : 0;
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-
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- if (L) {
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- if (IsLoopEntry) {
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- if (Loop *PredLoop = LI->getLoopFor(Preds[0])) {
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- // Add the new block to the nearest enclosing loop (and not an
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- // adjacent loop).
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- while (PredLoop && !PredLoop->contains(BB))
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- PredLoop = PredLoop->getParentLoop();
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- if (PredLoop)
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- PredLoop->addBasicBlockToLoop(NewBB, LI->getBase());
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- }
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- } else {
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- L->addBasicBlockToLoop(NewBB, LI->getBase());
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- if (SplitMakesNewLoopHeader)
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- L->moveToHeader(NewBB);
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- }
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- }
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// Otherwise, create a new PHI node in NewBB for each PHI node in BB.
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for (BasicBlock::iterator I = BB->begin(); isa<PHINode>(I); ) {
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PHINode *PN = cast<PHINode>(I++);
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// Check to see if all of the values coming in are the same. If so, we
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- // don't need to create a new PHI node, unless it's needed for LCSSA.
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- Value *InVal = 0;
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- if (!HasLoopExit) {
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- InVal = PN->getIncomingValueForBlock(Preds[0]);
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- for (unsigned i = 1; i != NumPreds; ++i)
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- if (InVal != PN->getIncomingValueForBlock(Preds[i])) {
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- InVal = 0;
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- break;
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- }
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- }
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-
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+ // don't need to create a new PHI node.
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+ Value *InVal = PN->getIncomingValueForBlock(Preds[0]);
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+ for (unsigned i = 1; i != NumPreds; ++i)
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+ if (InVal != PN->getIncomingValueForBlock(Preds[i])) {
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+ InVal = 0;
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+ break;
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+ }
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+
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if (InVal) {
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// If all incoming values for the new PHI would be the same, just don't
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// make a new PHI. Instead, just remove the incoming values from the old
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@@ -480,6 +427,13 @@ BasicBlock *llvm::SplitBlockPredecessors(BasicBlock *BB,
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// Add an incoming value to the PHI node in the loop for the preheader
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// edge.
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PN->addIncoming(InVal, NewBB);
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+
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+ // Check to see if we can eliminate this phi node.
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+ if (Value *V = PN->hasConstantValue(DT)) {
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+ PN->replaceAllUsesWith(V);
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+ if (AA) AA->deleteValue(PN);
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+ PN->eraseFromParent();
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+ }
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}
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return NewBB;
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