sclass FreeList { MultiSetMap byLength = multiSetMap_innerCustomCompactTreeSet_outerTreeMap(intRangeComparator()); CompactTreeSet inOrder = new(intRangeComparator()); int totalFree; void add(IntRange r) { if (empty(r)) ret; // only special case here is merging with previous and/or following entry IntRange before = inOrder.floor(r), after = inOrder.ceiling(r); if (before != null && before.end == r.start) { r = IntRange(before.start, r.end); remove(before); } if (after != null && after.start == r.end) { r = IntRange(r.start, after.end); remove(after); } internalAdd(r); } void internalAdd(IntRange r) { inOrder.add(r); byLength.add(r.length(), r); totalFree += r.length(); } void remove(IntRange r) { if (empty(r)) ret; IntRange r2 = inOrder.floor(r); if (r2 == null) fail("User error"); if (eq(r, r2)) { inOrder.remove(r2); byLength.remove(r2.length(), r2); totalFree -= r2.length(); ret; } // remove full range, add back left and right remainders remove(r2); add(IntRange(r2.start, r.start)); add(IntRange(r.end, r2.end)); } IntRange findFreeSpace(int minSize) { Map.Entry> e = ((NavigableMap) byLength.data).ceilingEntry(minSize); ret e == null ? null : first(e.getValue()); } int totalFree() { ret totalFree; } void clear { byLength.clear(); inOrder.clear(); totalFree = 0; } IntRange highestFreeRange() { ret last(inOrder); } L asList() { ret cloneList(inOrder); } static FreeList fromSortedList(L l) { new FreeList fl; fOr (IntRange r : l) fl.internalAdd(r); ret fl; } static int[] toIntArray() { ret intRangesToIntArray_startAndLength(inOrder); } static FreeList fromIntArray(int[] a) { ret fromSortedList(intArrayToIntRanges_startAndLength(a)); } }