EndIndex = LIs->getMBBEndIdx(MBB);
LI->addRange(LiveRange(StartIndex, EndIndex+1, ret));
+ if (intrablock)
+ LI->addKill(ret, EndIndex);
} else {
Phis[MBB] = ret = LI->getNextValue(~0U, /*FIXME*/ 0,
LIs->getVNInfoAllocator());
} else
EndIndex = LIs->getMBBEndIdx(MBB);
LI->addRange(LiveRange(StartIndex, EndIndex+1, ret));
+ if (intrablock)
+ LI->addKill(ret, EndIndex);
}
} else if (ContainsDefs && !ContainsUses) {
SmallPtrSet<MachineInstr*, 2>& BlockDefs = Defs[MBB];
// Memoize results so we don't have to recompute them.
if (!intrablock) LiveOut[MBB] = ret;
else {
- NewVNs[use] = ret;
+ if (!NewVNs.count(use))
+ NewVNs[use] = ret;
Visited.insert(use);
}
if (KillPt->getParent() == BarrierMBB) {
UpdateRegisterInterval(ValNo, LIs->getUseIndex(KillIdx)+1,
LIs->getDefIndex(RestoreIdx));
-
+
++NumSplits;
++NumRemats;
return true;
}
RepairLiveInterval(CurrLI, ValNo, DefMI, RestoreIdx);
+
++NumSplits;
++NumRemats;
return true;
MachineInstr *DefMI = (ValNo->def != ~0U)
? LIs->getInstructionFromIndex(ValNo->def) : NULL;
- // If this would create a new join point, do not split.
- if (DefMI && createsNewJoin(LR, DefMI->getParent(), Barrier->getParent()))
- return false;
-
// Find all references in the barrier mbb.
SmallPtrSet<MachineInstr*, 4> RefsInMBB;
for (MachineRegisterInfo::reg_iterator I = MRI->reg_begin(CurrLI->reg),
while (!Intervals.empty()) {
if (PreSplitLimit != -1 && (int)NumSplits == PreSplitLimit)
break;
+ else if (NumSplits == 4)
+ Change |= Change;
LiveInterval *LI = Intervals.back();
Intervals.pop_back();
Change |= SplitRegLiveInterval(LI);