HashMap put函数执行流程
HashMap
put函数执行思路
public V put(K key, V value) { return putVal(hash(key), key, value, false, true); }
//如果key为null,则hash为0,否则key的hashCode值高位与低16位异或,使hash更加分散。 static final int hash(Object key) { int h; return (key == null) ? 0 : (h = key.hashCode()) ^ (h >>> 16); }
final V putVal(int hash, K key, V value, boolean onlyIfAbsent, boolean evict) { Node<K,V>[] tab; Node<K,V> p; int n, i; //最开始如果为空,则需要创建哈希表 if ((tab = table) == null || (n = tab.length) == 0) n = (tab = resize()).length; //如果计算table[i]没有节点,则直接存入此位置 if ((p = tab[i = (n - 1) & hash]) == null) tab[i] = newNode(hash, key, value, null); else { Node<K,V> e; K k; //如果第一个位置正好key相同,则在后面进行覆盖 if (p.hash == hash && ((k = p.key) == key || (key != null && key.equals(k)))) e = p; else if (p instanceof TreeNode) //如果是树节点,则直接插入红黑树中 e = ((TreeNode<K,V>)p).putTreeVal(this, tab, hash, key, value); else { //遍历当前下标的链表,查找是否有相同的key,找到退出循环,在后面覆盖,如果没有找到,则插入最后的位置,这时需要判断是否进行红黑树转换 for (int binCount = 0; ; ++binCount) { if ((e = p.next) == null) { p.next = newNode(hash, key, value, null); if (binCount >= TREEIFY_THRESHOLD - 1) // -1 for 1st treeifyBin(tab, hash); break; } if (e.hash == hash && ((k = e.key) == key || (key != null && key.equals(k)))) break; p = e; } } //进行覆盖操作 if (e != null) { // existing mapping for key V oldValue = e.value; if (!onlyIfAbsent || oldValue == null) e.value = value; afterNodeAccess(e); return oldValue; } } //增加修改次数 ++modCount; //如果当前节点数量大于阈值,则需要扩容 if (++size > threshold) resize(); afterNodeInsertion(evict); return null; }
