Design and implement a data structure for Least Recently Used (LRU) cache. It should support the following operations:
get and set.
get(key) - Get the value (will always be positive) of the key if the key exists in the cache, otherwise return -1.
set(key, value) - Set or insert the value if the key is not already present. When the cache reached its capacity, it should invalidate the least recently used item before inserting a new item.
public class LRUCache {
private int capacity;
private HashMap<Integer, Node> map = new HashMap<Integer, Node>();
private Node head = new Node(-1, -1);
private Node tail = new Node(-2, -2);
public LRUCache(int capacity) {
this.capacity = capacity;
head.next = tail;
tail.pre = head;
}
public int get(int key) {
if (!map.containsKey(key))
return -1;
Node cur = map.get(key);
cur.pre.next = cur.next;
cur.next.pre = cur.pre;
attach(cur);
return cur.value;
}
public void set(int key, int value) {
if (map.containsKey(key)) {
Node cur = map.get(key);
cur.value = value;
cur.pre.next = cur.next;
cur.next.pre = cur.pre;
attach(cur);
} else {
if (map.size() == capacity)
dettach();
Node cur = new Node(key, value);
attach(cur);
map.put(key, cur);
}
}
public void dettach(){
Node last = tail.pre;
last.pre.next = last.next;
last.next.pre = last.pre;
map.remove(last.key);
}
public void attach(Node cur){
cur.next = head.next;
cur.next.pre = cur;
head.next = cur;
cur.pre = head;
}
private class Node {
public Node pre = null;
public int key;
public int value;
public Node next = null;
Node(int key, int value) {
this.key = key;
this.value = value;
}
}
}

本文介绍了一种Least Recently Used (LRU) 缓存机制的实现方式,该缓存支持get和set操作。当缓存达到其容量限制时,会移除最近最少使用的条目。文章提供了一个包含双向链表和哈希表的数据结构解决方案。
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