Let’s look at the inheritance of JS classes first
<!DOCTYPE html> <html> <head> <meta charset="UTF-8"> <title>JS类的继承</title> </head> <body> /* -- 类式继承 -- */ <script type="text/javascript"> //先声明一个超类 var Animal = function(name) { this.name = name; } //给这个超类的原型对象上添加方法 Animal.prototype.Eat = function() { console.log(this.name + " Eat"); }; //实例化这个超 var a = new Animal("Animal"); //再创建构造函数对象类 var Cat = function(name, sex) { //这个类中要调用超类Animal的构造函数,并将参数name传给它 Animal.call(this, name); this.sex = sex; } //这个子类的原型对象等于超类的实例 Cat.prototype = new Animal(); //因为子类的原型对象等于超类的实例,所以prototype.constructor这个方法也等于超类构造函数 console.log(Cat.prototype.constructor); //这个是Animal超类的引用,所以要从新赋值为自己本身 Cat.prototype.constructor = Cat; console.log(Cat.prototype.constructor); //子类本身添加了getSex 方法 Cat.prototype.getSex = function() { return this.sex; } //实例化这个子类 var _m = new Cat('cat', 'male'); //自身的方法 console.log(_m.getSex()); //male //继承超类的方法 console.log(_m.Eat()); //cat </script> </body> </html>
Let’s look at JS prototypal inheritance
<!DOCTYPE html> <html> <head> <meta charset="UTF-8"> <title>JS原型继承</title> </head> <body> <!--原型继承--> <script type="text/javascript"> //clone()函数用来创建新的类Person对象 var clone = function(obj) { var _f = function() {}; //这句是原型式继承最核心的地方,函数的原型对象为对象字面量 _f.prototype = obj; return new _f; } //先声明一个对象字面量 var Animal = { somthing: 'apple', eat: function() { console.log("eat " + this.somthing); } } //不需要定义一个Person的子类,只要执行一次克隆即可 var Cat = clone(Animal); //可以直接获得Person提供的默认值,也可以添加或者修改属性和方法 console.log(Cat.eat()); Cat.somthing = 'orange'; console.log(Cat.eat()); //声明子类,执行一次克隆即可 var Someone = clone(Cat); </script> </body> </html>
We can try it out. JS class inheritance children.constructor==father returns true, while prototypal inheritance children.constructor==father returns false;
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