TreeSet
TreeSet 约等于 TreeMap
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| public class TreeSet<E> extends AbstractSet<E> implements NavigableSet<E>, Cloneable, java.io.Serializable
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TreeSet 是一个有序的集合,它的作用是提供有序的Set集合。
TreeSet 继承于AbstractSet,所以它是一个Set集合,具有Set的属性和方法。
TreeSet 实现了NavigableSet接口,意味着它支持一系列的导航方法。比如查找与指定目标最匹配项。
TreeSet是基于TreeMap实现的。TreeSet中的元素支持2种排序方式:自然排序 或者 根据创建TreeSet 时提供的 Comparator 进行排序。这取决于使用的构造方法。
TreeSet为基本操作(add、remove 和 contains)提供受保证的 log(n) 时间开销。另外,TreeSet是非同步的。 它的iterator 方法返回的迭代器是fail-fast的。
排序方法:
- 实现Comparable接口,重写 public int compareTo(T o) 方法,
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| public class XXX implements Comparable<XXX> { public int compareTo(XXX o) { return 0; return 1; return -1; } }
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- 实现Comparator接口,重写 int compare(T o1, T o2) 方法
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| public class XXX implements Comparator<XXX> {
public int compare(XXX o1, XXX o2){ return o1 -o2 } }
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源码:
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| public class TreeSet<E> extends AbstractSet<E> implements NavigableSet<E>, Cloneable, java.io.Serializable { private transient NavigableMap<E,Object> m;
private static final Object PRESENT = new Object();
public TreeSet() { this(new TreeMap<E,Object>()); }
TreeSet(NavigableMap<E,Object> m) { this.m = m; }
public TreeSet(Comparator<? super E> comparator) { this(new TreeMap<E,Object>(comparator)); }
public TreeSet(Collection<? extends E> c) { this(); addAll(c); }
public TreeSet(SortedSet<E> s) { this(s.comparator()); addAll(s); }
public Iterator<E> iterator() { return m.navigableKeySet().iterator(); }
public Iterator<E> descendingIterator() { return m.descendingKeySet().iterator(); }
public int size() { return m.size(); }
public boolean isEmpty() { return m.isEmpty(); }
public boolean contains(Object o) { return m.containsKey(o); }
public boolean add(E e) { return m.put(e, PRESENT)==null; }
public boolean remove(Object o) { return m.remove(o)==PRESENT; }
public void clear() { m.clear(); }
public boolean addAll(Collection<? extends E> c) { if (m.size()==0 && c.size() > 0 && c instanceof SortedSet && m instanceof TreeMap) { SortedSet<? extends E> set = (SortedSet<? extends E>) c; TreeMap<E,Object> map = (TreeMap<E, Object>) m; Comparator<? super E> cc = (Comparator<? super E>) set.comparator(); Comparator<? super E> mc = map.comparator(); if (cc==mc || (cc != null && cc.equals(mc))) { map.addAllForTreeSet(set, PRESENT); return true; } } return super.addAll(c); }
public NavigableSet<E> subSet(E fromElement, boolean fromInclusive, E toElement, boolean toInclusive) { return new TreeSet<E>(m.subMap(fromElement, fromInclusive, toElement, toInclusive)); }
public NavigableSet<E> headSet(E toElement, boolean inclusive) { return new TreeSet<E>(m.headMap(toElement, inclusive)); }
public NavigableSet<E> tailSet(E fromElement, boolean inclusive) { return new TreeSet<E>(m.tailMap(fromElement, inclusive)); }
public SortedSet<E> subSet(E fromElement, E toElement) { return subSet(fromElement, true, toElement, false); }
public SortedSet<E> headSet(E toElement) { return headSet(toElement, false); }
public SortedSet<E> tailSet(E fromElement) { return tailSet(fromElement, true); }
public Comparator<? super E> comparator() { return m.comparator(); }
public E first() { return m.firstKey(); }
public E first() { public E last() { return m.lastKey(); }
public E lower(E e) { return m.lowerKey(e); }
public E floor(E e) { return m.floorKey(e); }
public E ceiling(E e) { return m.ceilingKey(e); }
public E higher(E e) { return m.higherKey(e); }
public E pollFirst() { Map.Entry<E,?> e = m.pollFirstEntry(); return (e == null)? null : e.getKey(); }
public E pollLast() { Map.Entry<E,?> e = m.pollLastEntry(); return (e == null)? null : e.getKey(); }
public Object clone() { TreeSet<E> clone = null; try { clone = (TreeSet<E>) super.clone(); } catch (CloneNotSupportedException e) { throw new InternalError(); }
clone.m = new TreeMap<E,Object>(m); return clone; }
private void writeObject(java.io.ObjectOutputStream s) throws java.io.IOException { s.defaultWriteObject();
s.writeObject(m.comparator());
s.writeInt(m.size());
for (Iterator i=m.keySet().iterator(); i.hasNext(); ) s.writeObject(i.next()); }
private void readObject(java.io.ObjectInputStream s) throws java.io.IOException, ClassNotFoundException { s.defaultReadObject();
Comparator<? super E> c = (Comparator<? super E>) s.readObject();
TreeMap<E,Object> tm; if (c==null) tm = new TreeMap<E,Object>(); else tm = new TreeMap<E,Object>(c); m = tm;
int size = s.readInt();
tm.readTreeSet(size, s, PRESENT); }
private static final long serialVersionUID = -2479143000061671589L; }
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