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Calculate backedge probability correctly.
git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@133776 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -133,6 +133,15 @@ class BlockFrequencyImpl {
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}
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/// Return a probability of getting to the DST block through SRC->DST edge.
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///
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BranchProbability getBackEdgeProbability(BlockT *Src, BlockT *Dst) const {
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uint32_t N = getEdgeFreq(Src, Dst);
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uint32_t D = getBlockFreq(Dst);
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return BranchProbability(N, D);
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}
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/// isReachable - Returns if BB block is reachable from the entry.
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///
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bool isReachable(BlockT *BB) {
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@ -213,7 +222,9 @@ class BlockFrequencyImpl {
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return;
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assert(START_FREQ >= CycleProb[BB]);
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divBlockFreq(BB, BranchProbability(START_FREQ - CycleProb[BB], START_FREQ));
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uint32_t CProb = CycleProb[BB];
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uint32_t Numerator = START_FREQ - CProb ? START_FREQ - CProb : 1;
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divBlockFreq(BB, BranchProbability(Numerator, START_FREQ));
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}
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/// doLoop - Propagate block frequency down throught the loop.
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@ -238,19 +249,17 @@ class BlockFrequencyImpl {
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BlockT *Pred = *PI;
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assert(Pred);
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if (isReachable(Pred) && isBackedge(Pred, Head)) {
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BranchProbability Prob = BPI->getBackEdgeProbability(Pred, Head);
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BranchProbability Prob = getBackEdgeProbability(Pred, Head);
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uint64_t N = Prob.getNumerator();
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uint64_t D = Prob.getDenominator();
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uint64_t Res = (N * START_FREQ) / D;
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// CycleProb[Head] += getEdgeFreq(Pred, Head);
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assert(Res <= UINT32_MAX);
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CycleProb[Head] += (uint32_t) Res;
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}
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}
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}
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friend class BlockFrequency;
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void doFunction(FunctionT *fn, BlockProbInfoT *bpi) {
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@ -39,9 +39,6 @@ class BranchProbabilityInfo : public FunctionPass {
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// Get sum of the block successors' weights.
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uint32_t getSumForBlock(BasicBlock *BB) const;
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// Get sum of the edge weights going to the BB block.
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uint32_t getBackSumForBlock(BasicBlock *BB) const;
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public:
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static char ID;
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@ -74,13 +71,6 @@ public:
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// only iff SRC block has only one successor.
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BranchProbability getEdgeProbability(BasicBlock *Src, BasicBlock *Dst) const;
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// Return a probability of getting to the DST block through SRC->DST edge.
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// Returned value is a fraction between 0 (0% probability) and
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// 1 (100% probability), however the value is never equal to 0, and can be 1
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// only iff DST block has only one predecesor.
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BranchProbability getBackEdgeProbability(BasicBlock *Src,
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BasicBlock *Dst) const;
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// Print value between 0 (0% probability) and 1 (100% probability),
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// however the value is never equal to 0, and can be 1 only iff SRC block
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// has only one successor.
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@ -279,21 +279,6 @@ uint32_t BranchProbabilityInfo::getSumForBlock(BasicBlock *BB) const {
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return Sum;
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}
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uint32_t BranchProbabilityInfo::getBackSumForBlock(BasicBlock *BB) const {
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uint32_t Sum = 0;
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for (pred_iterator I = pred_begin(BB), E = pred_end(BB); I != E; ++I) {
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BasicBlock *Pred = *I;
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uint32_t Weight = getEdgeWeight(Pred, BB);
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uint32_t PrevSum = Sum;
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Sum += Weight;
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assert(Sum > PrevSum); (void) PrevSum;
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}
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return Sum;
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}
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bool BranchProbabilityInfo::isEdgeHot(BasicBlock *Src, BasicBlock *Dst) const {
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// Hot probability is at least 4/5 = 80%
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uint32_t Weight = getEdgeWeight(Src, Dst);
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@ -360,15 +345,6 @@ getEdgeProbability(BasicBlock *Src, BasicBlock *Dst) const {
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return BranchProbability(N, D);
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}
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BranchProbability BranchProbabilityInfo::
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getBackEdgeProbability(BasicBlock *Src, BasicBlock *Dst) const {
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uint32_t N = getEdgeWeight(Src, Dst);
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uint32_t D = getBackSumForBlock(Dst);
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return BranchProbability(N, D);
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}
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raw_ostream &
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BranchProbabilityInfo::printEdgeProbability(raw_ostream &OS, BasicBlock *Src,
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BasicBlock *Dst) const {
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