void computePairsConnectedTo(
std::multimap<Value *, Value *> &CandidatePairs,
+ DenseSet<ValuePair> &CandidatePairsSet,
std::vector<Value *> &PairableInsts,
std::multimap<ValuePair, ValuePair> &ConnectedPairs,
DenseMap<VPPair, unsigned> &PairConnectionTypes,
}
}
- // Returns true if J is the second element in some pair referenced by
- // some multimap pair iterator pair.
- template <typename V>
- bool isSecondInIteratorPair(V J, std::pair<
- typename std::multimap<V, V>::iterator,
- typename std::multimap<V, V>::iterator> PairRange) {
- for (typename std::multimap<V, V>::iterator K = PairRange.first;
- K != PairRange.second; ++K)
- if (K->second == J) return true;
-
- return false;
- }
-
bool isPureIEChain(InsertElementInst *IE) {
InsertElementInst *IENext = IE;
do {
// output of PI or PJ.
void BBVectorize::computePairsConnectedTo(
std::multimap<Value *, Value *> &CandidatePairs,
+ DenseSet<ValuePair> &CandidatePairsSet,
std::vector<Value *> &PairableInsts,
std::multimap<ValuePair, ValuePair> &ConnectedPairs,
DenseMap<VPPair, unsigned> &PairConnectionTypes,
continue;
}
- VPIteratorPair IPairRange = CandidatePairs.equal_range(*I);
-
// For each use of the first variable, look for uses of the second
// variable...
for (Value::use_iterator J = P.second->use_begin(),
P.second == SJ->getPointerOperand())
continue;
- VPIteratorPair JPairRange = CandidatePairs.equal_range(*J);
-
// Look for <I, J>:
- if (isSecondInIteratorPair<Value*>(*J, IPairRange)) {
+ if (CandidatePairsSet.count(ValuePair(*I, *J))) {
VPPair VP(P, ValuePair(*I, *J));
ConnectedPairs.insert(VP);
PairConnectionTypes.insert(VPPairWithType(VP, PairConnectionDirect));
}
// Look for <J, I>:
- if (isSecondInIteratorPair<Value*>(*I, JPairRange)) {
+ if (CandidatePairsSet.count(ValuePair(*J, *I))) {
VPPair VP(P, ValuePair(*J, *I));
ConnectedPairs.insert(VP);
PairConnectionTypes.insert(VPPairWithType(VP, PairConnectionSwap));
P.first == SJ->getPointerOperand())
continue;
- if (isSecondInIteratorPair<Value*>(*J, IPairRange)) {
+ if (CandidatePairsSet.count(ValuePair(*I, *J))) {
VPPair VP(P, ValuePair(*I, *J));
ConnectedPairs.insert(VP);
PairConnectionTypes.insert(VPPairWithType(VP, PairConnectionSplat));
P.second == SI->getPointerOperand())
continue;
- VPIteratorPair IPairRange = CandidatePairs.equal_range(*I);
-
for (Value::use_iterator J = P.second->use_begin(); J != E; ++J) {
if ((SJ = dyn_cast<StoreInst>(*J)) &&
P.second == SJ->getPointerOperand())
continue;
- if (isSecondInIteratorPair<Value*>(*J, IPairRange)) {
+ if (CandidatePairsSet.count(ValuePair(*I, *J))) {
VPPair VP(P, ValuePair(*I, *J));
ConnectedPairs.insert(VP);
PairConnectionTypes.insert(VPPairWithType(VP, PairConnectionSplat));
std::vector<Value *> &PairableInsts,
std::multimap<ValuePair, ValuePair> &ConnectedPairs,
DenseMap<VPPair, unsigned> &PairConnectionTypes) {
+ DenseSet<ValuePair> CandidatePairsSet;
+ for (std::multimap<Value *, Value *>::iterator I = CandidatePairs.begin(),
+ E = CandidatePairs.end(); I != E; ++I)
+ CandidatePairsSet.insert(*I);
for (std::vector<Value *>::iterator PI = PairableInsts.begin(),
PE = PairableInsts.end(); PI != PE; ++PI) {
for (std::multimap<Value *, Value *>::iterator P = choiceRange.first;
P != choiceRange.second; ++P)
- computePairsConnectedTo(CandidatePairs, PairableInsts,
+ computePairsConnectedTo(CandidatePairs, CandidatePairsSet, PairableInsts,
ConnectedPairs, PairConnectionTypes, *P);
}