// of live ranges of physical registers in computeRegUnitRange.
// After that the set is flushed to the segment vector and deleted.
typedef std::set<Segment> SegmentSet;
- std::unique_ptr<SegmentSet> segmentSet;
+ SegmentSet *segmentSet;
typedef Segments::iterator iterator;
iterator begin() { return segments.begin(); }
const_vni_iterator vni_end() const { return valnos.end(); }
/// Constructs a new LiveRange object.
- LiveRange(bool UseSegmentSet = false)
- : segmentSet(UseSegmentSet ? llvm::make_unique<SegmentSet>()
- : nullptr) {}
+ LiveRange(bool UseSegmentSet = false) : segmentSet(nullptr) {
+ if (UseSegmentSet)
+ segmentSet = new SegmentSet();
+ }
/// Constructs a new LiveRange object by copying segments and valnos from
/// another LiveRange.
- LiveRange(const LiveRange &Other, BumpPtrAllocator &Allocator) {
+ LiveRange(const LiveRange &Other, BumpPtrAllocator &Allocator)
+ : segmentSet(nullptr) {
assert(Other.segmentSet == nullptr &&
"Copying of LiveRanges with active SegmentSets is not supported");
}
}
+ ~LiveRange() { delete segmentSet; }
+
/// advanceTo - Advance the specified iterator to point to the Segment
/// containing the specified position, or end() if the position is past the
/// end of the range. If no Segment contains this position, but the
#endif
private:
+ LiveInterval& operator=(const LiveInterval& rhs) = delete;
+
/// Appends @p Range to SubRanges list.
void appendSubRange(SubRange *Range) {
Range->Next = SubRanges;
assert(Slot >= 0 && "Spill slot indice must be >= 0");
SS2IntervalMap::iterator I = S2IMap.find(Slot);
if (I == S2IMap.end()) {
- I = S2IMap.emplace(std::piecewise_construct, std::forward_as_tuple(Slot),
- std::forward_as_tuple(
- TargetRegisterInfo::index2StackSlot(Slot), 0.0F))
- .first;
+ I = S2IMap.insert(I, std::make_pair(Slot,
+ LiveInterval(TargetRegisterInfo::index2StackSlot(Slot), 0.0F)));
S2RCMap.insert(std::make_pair(Slot, RC));
} else {
// Use the largest common subclass register class.