HashMap-扩容源码
final Node<K,V>[] resize() {
Node<K,V>[] oldTab = table;
int oldCap = (oldTab == null) ? 0 : oldTab.length;
int oldThr = threshold;
int newCap, newThr = 0;
// Cap 是 capacity 的缩写,容量。如果容量不为空,则说明已经初始化。
if (oldCap > 0) {
// 如果容量达到最大1 << 30则不再扩容
if (oldCap >= MAXIMUM_CAPACITY) {
threshold = Integer.MAX_VALUE;
return oldTab;
}
// 按旧容量和阀值的2倍计算新容量和阀值
else if ((newCap = oldCap << 1) < MAXIMUM_CAPACITY &&
oldCap >= DEFAULT_INITIAL_CAPACITY)
newThr = oldThr << 1; // double threshold
}
else if (oldThr > 0) // initial capacity was placed in threshold
// initial capacity was placed in threshold 翻译过来的意思,如下;
// 初始化时,将 threshold 的值赋值给 newCap,
// HashMap 使用 threshold 变量暂时保存 initialCapacity 参数的值
newCap = oldThr;
else { // zero initial threshold signifies using defaults
// 这一部分也是,源代码中也有相应的英文注释
// 调用无参构造方法时,数组桶数组容量为默认容量 1 << 4; aka 16
// 阀值;是默认容量与负载因子的乘积,0.75
newCap = DEFAULT_INITIAL_CAPACITY;
newThr = (int)(DEFAULT_LOAD_FACTOR * DEFAULT_INITIAL_CAPACITY);
}
// newThr为0,则使用阀值公式计算容量
if (newThr == 0) {
float ft = (float)newCap * loadFactor;
newThr = (newCap < MAXIMUM_CAPACITY && ft < (float)MAXIMUM_CAPACITY
(int)ft : Integer.MAX_VALUE);
}
threshold = newThr;
@SuppressWarnings({"rawtypes","unchecked"})
// 初始化数组桶,用于存放key
Node<K,V>[] newTab = (Node<K,V>[])new Node[newCap];
table = newTab;
if (oldTab != null) {
// 如果旧数组桶,oldCap有值,则遍历将键值映射到新数组桶中
for (int j = 0; j < oldCap; ++j) {
Node<K,V> e;
if ((e = oldTab[j]) != null) {
oldTab[j] = null;
if (e.next == null)
newTab[e.hash & (newCap - 1)] = e;
else if (e instanceof TreeNode)
// 这里split,是红黑树拆分操作。在重新映射时操作的。
((TreeNode<K,V>)e).split(this, newTab, j, oldCap);
else { // preserve order
Node<K,V> loHead = null, loTail = null;
Node<K,V> hiHead = null, hiTail = null;
Node<K,V> next;
// 这里是链表,如果当前是按照链表存放的,则将链表节点按原顺序进行分组{这里有专门的文章介绍,如何不需要重新计算哈希值进行拆分《HashMap核心知识,扰动函数、负载因子、扩容链表拆分,深度学习》}
do {
next = e.next;
if ((e.hash & oldCap) == 0) {
if (loTail == null)
loHead = e;
else
loTail.next = e;
loTail = e;
}
else {
if (hiTail == null)
hiHead = e;
else
hiTail.next = e;
hiTail = e;
}
} while ((e = next) != null);
// 将分组后的链表映射到桶中
if (loTail != null) {
loTail.next = null;
newTab[j] = loHead;
}
if (hiTail != null) {
hiTail.next = null;
newTab[j + oldCap] = hiHead;
}
}
}
}
}
return newTab;
}