typedef const PressureChange* const_iterator;
iterator begin() { return &PressureChanges[0]; }
iterator end() { return &PressureChanges[MaxPSets]; }
+ const_iterator begin() const { return &PressureChanges[0]; }
+ const_iterator end() const { return &PressureChanges[MaxPSets]; }
void addPressureChange(unsigned RegUnit, bool IsDec,
const MachineRegisterInfo *MRI);
PressureDiffs(): PDiffArray(0), Size(0), Max(0) {}
~PressureDiffs() { free(PDiffArray); }
+ void clear() { Size = 0; }
+
void init(unsigned N);
PressureDiff &operator[](unsigned Idx) {
LiveRegionEnd =
(RegionEnd == bb->end()) ? RegionEnd : llvm::next(RegionEnd);
+ SUPressureDiffs.clear();
+
SchedImpl->initPolicy(begin, end, regioninstrs);
ShouldTrackPressure = SchedImpl->shouldTrackPressure();
dbgs() << "\n");
}
-// FIXME: When the pressure tracker deals in pressure differences then we won't
-// iterate over all RegionCriticalPSets[i].
void ScheduleDAGMI::
-updateScheduledPressure(const std::vector<unsigned> &NewMaxPressure) {
- for (unsigned i = 0, e = RegionCriticalPSets.size(); i < e; ++i) {
- unsigned ID = RegionCriticalPSets[i].getPSet();
- if ((int)NewMaxPressure[ID] > RegionCriticalPSets[i].getUnitInc()
- && NewMaxPressure[ID] <= INT16_MAX)
- RegionCriticalPSets[i].setUnitInc(NewMaxPressure[ID]);
+updateScheduledPressure(const SUnit *SU,
+ const std::vector<unsigned> &NewMaxPressure) {
+ const PressureDiff &PDiff = getPressureDiff(SU);
+ unsigned CritIdx = 0, CritEnd = RegionCriticalPSets.size();
+ for (PressureDiff::const_iterator I = PDiff.begin(), E = PDiff.end();
+ I != E; ++I) {
+ if (!I->isValid())
+ break;
+ unsigned ID = I->getPSet();
+ while (CritIdx != CritEnd && RegionCriticalPSets[CritIdx].getPSet() < ID)
+ ++CritIdx;
+ if (CritIdx != CritEnd && RegionCriticalPSets[CritIdx].getPSet() == ID) {
+ if ((int)NewMaxPressure[ID] > RegionCriticalPSets[CritIdx].getUnitInc()
+ && NewMaxPressure[ID] <= INT16_MAX)
+ RegionCriticalPSets[CritIdx].setUnitInc(NewMaxPressure[ID]);
+ }
+ unsigned Limit = RegClassInfo->getRegPressureSetLimit(ID);
+ if (NewMaxPressure[ID] >= Limit - 2) {
+ DEBUG(dbgs() << " " << TRI->getRegPressureSetName(ID) << ": "
+ << NewMaxPressure[ID] << " > " << Limit << "(+ "
+ << BotRPTracker.getLiveThru()[ID] << " livethru)\n");
+ }
}
- DEBUG(
- for (unsigned i = 0, e = NewMaxPressure.size(); i < e; ++i) {
- unsigned Limit = RegClassInfo->getRegPressureSetLimit(i);
- if (NewMaxPressure[i] > Limit ) {
- dbgs() << " " << TRI->getRegPressureSetName(i) << ": "
- << NewMaxPressure[i] << " > " << Limit << "(+ "
- << BotRPTracker.getLiveThru()[i] << " livethru)\n";
- }
- });
}
/// Update the PressureDiff array for liveness after scheduling this
// Update top scheduled pressure.
TopRPTracker.advance();
assert(TopRPTracker.getPos() == CurrentTop && "out of sync");
- updateScheduledPressure(TopRPTracker.getPressure().MaxSetPressure);
+ updateScheduledPressure(SU, TopRPTracker.getPressure().MaxSetPressure);
}
}
else {
SmallVector<unsigned, 8> LiveUses;
BotRPTracker.recede(&LiveUses);
assert(BotRPTracker.getPos() == CurrentBottom && "out of sync");
+ updateScheduledPressure(SU, BotRPTracker.getPressure().MaxSetPressure);
updatePressureDiffs(LiveUses);
- updateScheduledPressure(BotRPTracker.getPressure().MaxSetPressure);
}
}
}