JavaScript中实现键值对应的字典与哈希表结构的示

字典(Dictionary)的javascript实现
编程思路:

使用了裸对象datastore来进行元素存储;

实现了两种得到字典长度的方法,一种为变量跟踪,一种为实时计算。

代码:

function(){ "use strict"; function Dictionary(){ this._size = 0; this.datastore = Object.create(null); } Dictionary.prototype.isEmpty = function(){ return this._size === 0; }; Dictionary.prototype.size = function(){ return this._size; }; Dictionary.prototype.clear = function(){ for(var key in this.datastore){ delete this.datastore[key]; } this._size = 0; }; Dictionary.prototype.add = function(key, value){ this.datastore[key] = value; this._size++; }; Dictionary.prototype.find = function(key){ return this.datastore[key]; }; Dictionary.prototype.count = function(){ var n = 0; for(var key in this.datastore){ n++; } return n; }; Dictionary.prototype.remove = function(key){ delete this.datastore[key]; this._size--; }; Dictionary.prototype.showAll = function(){ for(var key in this.datastore){ console.log(key + "->" + this.datastore[key]); } }; module.exports = Dictionary; })();

散列(hashtable)的javascript实现
编程思路:

以链表来解决实现开链法来解决碰撞,并使用自己写的单链表库LinkedList(详见jb51之前的https://www.jb51.net/article/86394.htm);

用裸对象来存储;

ValuePair简单封装键值对;

以模块模式组织代码;

代码:

valuePair.js

(function(){ "use strict"; function ValuePair(key, value){ this.key = key; this.value = value; } ValuePair.prototype.toString = function(){ return "[" + this.key + ":" + this.value + "]"; }; module.exports = ValuePair; })();

hashtable.js

(function(){ "use strict"; var ValuePair = require("./lib/ValuePair"); var LinkedList = require("./LinkedList"); function Hashtable(){ this.table = Object.create(null); this._size = 0; } Hashtable.prototype.isEmpty = function(){ return this._size === 0; }; Hashtable.prototype.size = function(){ return this._size; }; Hashtable.prototype.remove = function(key){ var index = hashCode(key); if(this.table[index] == null){ return false; }else{ var currNode = this.table[index].getHead(); while(currNode.next){ currNode = currNode.next; if(currNode.element.key == key){ this.table[index].remove(currNode.element); this._size--; return true; } } return false; } }; Hashtable.prototype.get = function(key){ var index = hashCode(key); if(this.table[index] == null){ return null; }else{ var currNode = this.table[index].getHead(); while(currNode.next){ currNode = currNode.next; if(currNode.element.key == key){ return currNode.element; } } return null; } }; Hashtable.prototype.put = function(key, value){ var index = hashCode(key); if(this.table[index] == null){ this.table[index] = new LinkedList(); } var currNode = this.table[index].getHead(); while(currNode.next){ //key若已经存在,修改value值为新值 currNode = currNode.next; if(currNode.element.key == key){ currNode.element.value = value; break; } } if(currNode.next == null && currNode.element.value != value){ //key不存在,加入新值.注意边界值 this.table[index].add(new ValuePair(key,value)); this._size++; } return this; }; Hashtable.prototype.display = function(){ for(var key in this.table){ var currNode = this.table[key].getHead(); while(currNode.next){ currNode = currNode.next; console.log(currNode.element.toString()); } } }; /*********************** Utility Functions ********************************/ function hashCode(key) { //霍纳算法,质数取37 var hashValue = 6011; for (var i = 0; i < key.length; i++) { hashValue = hashValue * 37 + key.charCodeAt(i); } return hashValue % 1019; } module.exports = Hashtable; })();

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