类 (Classes)

时游大约 3 分钟

类 (Classes)

传统的 JavaScript 程序使用函数和基于原型的继承来创建可重用的组件,但对于熟悉使用面向对象方式的程序员来讲就有些棘手。 TypeScript 允许我们使用基于类的面向对象编程。

基本示例

class Greeter {
    greeting: string;
    constructor(message: string) {
        this.greeting = message;
    }
    greet() {
        return "Hello, " + this.greeting;
    }
}

let greeter = new Greeter("world");

继承

在 TypeScript 里,我们可以使用常用的面向对象模式。 基于类的程序设计中一种最基本的模式是允许使用继承来扩展现有的类。

class Animal {
    name: string;
    constructor(theName: string) { this.name = theName; }
    move(distanceInMeters: number = 0) {
        console.log(`${this.name} moved ${distanceInMeters}m.`);
    }
}

class Snake extends Animal {
    constructor(name: string) { super(name); }
    move(distanceInMeters = 5) {
        console.log("Slithering...");
        super.move(distanceInMeters);
    }
}

class Horse extends Animal {
    constructor(name: string) { super(name); }
    move(distanceInMeters = 45) {
        console.log("Galloping...");
        super.move(distanceInMeters);
    }
}

let sam = new Snake("Sammy the Python");
let tom: Animal = new Horse("Tommy the Palomino");

sam.move();
tom.move(34);

公共,私有与受保护的修饰符

Public

在 TypeScript 里,成员都默认为 public

Private

当成员被标记成 private 时,它就不能在声明它的类的外部访问。

class Animal {
    private name: string;
    constructor(theName: string) { this.name = theName; }
}

// new Animal("Cat").name; // Error: 'name' is private;

Protected

protected 修饰符与 private 修饰符很相似,但 protected 成员在派生类中仍然可以访问。

class Person {
    protected name: string;
    constructor(name: string) { this.name = name; }
}

class Employee extends Person {
    private department: string;

    constructor(name: string, department: string) {
        super(name);
        this.department = department;
    }

    public getElevatorPitch() {
        return `Hello, my name is ${this.name} and I work in ${this.department}.`;
    }
}

let howard = new Employee("Howard", "Sales");
console.log(howard.getElevatorPitch());
// console.log(howard.name); // error

Readonly 修饰符

你可以使用 readonly 关键字将属性设置为只读的。 只读属性必须在声明时或构造函数里被初始化。

class Octopus {
    readonly name: string;
    readonly numberOfLegs: number = 8;
    constructor (theName: string) {
        this.name = theName;
    }
}
let dad = new Octopus("Man with the 8 strong legs");
// dad.name = "Man with the 3-piece suit"; // error! name is readonly.

参数属性

在构造函数参数前使用修饰符,可以直接定义并初始化成员。

class Octopus {
    readonly numberOfLegs: number = 8;
    // 自动创建并初始化 readonly name 属性
    constructor(readonly name: string) {
    }
}

存取器 (Getters/Setters)

TypeScript 支持通过 getters/setters 来截取对对象成员的访问。

let passcode = "secret passcode";

class Employee {
    private _fullName: string;

    get fullName(): string {
        return this._fullName;
    }

    set fullName(newName: string) {
        if (passcode && passcode == "secret passcode") {
            this._fullName = newName;
        }
        else {
            console.log("Error: Unauthorized update of employee!");
        }
    }
}

let employee = new Employee();
employee.fullName = "Bob Smith";
if (employee.fullName) {
    alert(employee.fullName);
}

静态属性

到目前为止,我们只讨论了类的实例成员,那些仅当类被实例化的时候才会被初始化的属性。 我们也可以创建类的静态成员,这些属性存在于类本身上面而不是类的实例上。

class Grid {
    static origin = {x: 0, y: 0};
    calculateDistanceFromOrigin(point: {x: number; y: number;}) {
        let xDist = (point.x - Grid.origin.x);
        let yDist = (point.y - Grid.origin.y);
        return Math.sqrt(xDist * xDist + yDist * yDist) / this.scale;
    }
    constructor (public scale: number) { }
}

let grid1 = new Grid(1.0);  // 1x scale
let grid2 = new Grid(5.0);  // 5x scale

console.log(grid1.calculateDistanceFromOrigin({x: 10, y: 10}));
console.log(grid2.calculateDistanceFromOrigin({x: 10, y: 10}));

抽象类

抽象类做为其它派生类的基类使用。 它们一般不会直接被实例化。 不同于接口,抽象类可以包含成员的实现细节。 abstract 关键字是用于定义抽象类和在抽象类内部定义抽象方法。

abstract class Department {

    constructor(public name: string) {
    }

    printName(): void {
        console.log('Department name: ' + this.name);
    }

    abstract printMeeting(): void; // 必须在派生类中实现
}

class AccountingDepartment extends Department {

    constructor() {
        super('Accounting and Auditing'); // 在派生类的构造函数中必须调用 super()
    }

    printMeeting(): void {
        console.log('The Accounting Department meets each Monday at 10am.');
    }

    generateReports(): void {
        console.log('Generating accounting reports...');
    }
}

let department: Department; // 允许创建一个对抽象类型的引用
// department = new Department(); // 错误: 不能创建一个抽象类的实例
department = new AccountingDepartment(); // 允许对一个抽象子类进行实例化和赋值
department.printName();
department.printMeeting();
// department.generateReports(); // 错误: 方法在声明的抽象类中不存在

把类当做接口使用

类定义会创建两个东西:类的实例类型和一个构造函数。 因为类可以创建出类型,所以你能够在允许使用接口的地方使用类。

class Point {
    x: number;
    y: number;
}

interface Point3d extends Point {
    z: number;
}

let point3d: Point3d = {x: 1, y: 2, z: 3};
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