LinkedList和ArrayList的区别,LinkedList源码分析带案例

    科技2024-06-23  75

    LinkedList

    双向链表结构实现,增删快,查询慢

    ArrayList和LinkedList区别

    ArrayList必须开辟连续空间,LinkedList无需开辟连续空间ArrayList是由数组结构实现的,LinkedList是由双向链表结构实现的ArrayList查询快,增删慢,LinkedList增删快,查询慢

    源码分析

    默认参数

    参数解释默认值size元素个数0first链表第一个节点nulllast链表最后一个节点null

    Node源码

    private static class Node<E> { E item; Node<E> next; Node<E> prev; Node(Node<E> prev, E element, Node<E> next) { this.item = element; this.next = next; this.prev = prev; } } add()方法,默认在链表尾部添加 public boolean add(E e) { linkLast(e); return true; } void linkLast(E e) { final Node<E> l = last; final Node<E> newNode = new Node<>(l, e, null); last = newNode; if (l == null) first = newNode; else l.next = newNode; size++; modCount++; } remove()方法 public boolean remove(Object o) { if (o == null) { for (Node<E> x = first; x != null; x = x.next) { if (x.item == null) { unlink(x); return true; } } } else { for (Node<E> x = first; x != null; x = x.next) { if (o.equals(x.item)) { unlink(x); return true; } } } return false; } E unlink(Node<E> x) { // assert x != null; final E element = x.item; final Node<E> next = x.next; final Node<E> prev = x.prev; if (prev == null) { first = next; } else { prev.next = next; x.prev = null; } if (next == null) { last = prev; } else { next.prev = prev; x.next = null; } x.item = null; size--; modCount++; return element; } - 删除案例

    pop()方法,从前面删除 public E pop() { return removeFirst(); } public E removeFirst() { final Node<E> f = first; if (f == null) throw new NoSuchElementException(); return unlinkFirst(f); } private E unlinkFirst(Node<E> f) { // assert f == first && f != null; final E element = f.item; final Node<E> next = f.next; f.item = null; f.next = null; // help GC first = next; if (next == null) last = null; else next.prev = null; size--; modCount++; return element; } push()方法,从前面添加 public void push(E e) { addFirst(e); } public void addFirst(E e) { linkFirst(e); } private void linkFirst(E e) { final Node<E> f = first; final Node<E> newNode = new Node<>(null, e, f); first = newNode; if (f == null) last = newNode; else f.prev = newNode; size++; modCount++; }
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