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...ing()中满足某个条件后触发。通过添加event 关键字来发布事件,事件发布者的封装性会更好,事件仅仅是供其他类型订阅,而客户端不能直接触发事件(语句pub.NumberChanged(100)无法通过编译),事件只能在事件发布者Publisher 类的内部触发(比如在方法pub.DoSomething()中),换言之,就是NumberChanged(100)语句只能在Publisher 内部被调用。大家可以尝试一下,将委托变量的声明那行代码注释掉,然后取消下面事件声明的注释。此时程序是无法编译的,当你使用了event 关键字之后,直接在客户端触发事件这种行为,也就是直接调用pub.NumberChanged(100),是被禁止的。事件只能通过调用DoSomething() 来触发。这样才是事件的本意,事件发布者的封装才会更好。 就好像如果我们要定义一个数字类型,我们会使用int 而不是使用object 一样,给予对象过多的能力并不见得是一件好事,应该是越合适越好。尽管直接使用委托变量通常不会有什么问题,但它给了客户端不应具有的能力,而使用事件,可以限制这一能力,更精确地对类型进行封装。 说 明:这里还有一个约定俗称的规定,就是订阅事件的方法的命名,通常为“On 事件名”,比如这里的OnNumberChanged。 1.3 委托的编译代码 这时候,我们注释掉编译错误的行,然后重新进行编译,再借助 Reflactor 来对 event 的声明语句做一探究,看看为什么会发生这样的错误: 可以看到,实际上尽管我们在GreetingManager 里将 MakeGreet 声明为public,但是,实际上MakeGreet 会被编译成私有字段,难怪会发生上面的编译错误了,因为它根本就不允许在GreetingManager 类的外面以赋值的方式访问,从而验证了我们上面所做的推论。 我们再进一步看下MakeGreet 所产生的代码: // private GreetingDelegate MakeGreet; //对事件的声明实际是声明一个私有的委托变量 [MethodImpl(MethodImplOptions.Synchronized)] public void add_MakeGreet(GreetingDelegate value) { this.MakeGreet = (GreetingDelegate) Delegate.Combine(this.MakeGreet, value); } [MethodImpl(MethodImplOptions.Synchronized)] public void remove_MakeGreet(GreetingDelegate value) { this.MakeGreet = (GreetingDelegate) Delegate.Remove(this.MakeGreet, value); } // 现在已经很明确了:MakeGreet 事件确实是一个GreetingDelegate 类型的委托,只不过不管是不是声明为public,它总是被声明为private。另外,它还有两个方法,分别是add_MakeGreet和remove_MakeGreet,这两个方法分别用于注册委托类型的方法和取消注册。实际上也就是:“+= ”对应 add_MakeGreet,“-=”对应remove_MakeGreet。而这两个方法的访问限制取决于声明事件时的访问限制符。 在add_MakeGreet()方法内部,实际上调用了System.Delegate 的Combine()静态方法,这个方法用于将当前的变量添加到委托链表中。 我们前面提到过两次,说委托实际上是一个类,在我们定义委托的时候: // public delegate void GreetingDelegate(string name); // 当编译器遇到这段代码的时候,会生成下面这样一个完整的类: // public class GreetingDelegate:System.MulticastDelegate { public GreetingDelegate(object @object, IntPtr method); public virtual IAsyncResult BeginInvoke(string name, AsyncCallback callback, object @object); public virtual void EndInvoke(IAsyncResult result); public virtual void Invoke(string name); } // 1.4 .NET 框架中的委托和事件 1.4.1 范例说明 上面的例子已不足以再进行下面的讲解了,我们来看一个新的范例,因为之前已经介绍了很多的内容,所以本节的进度会稍微快一些! 假设我们有个高档的热水器,我们给它通上电,当水温超过95 度的时候:1、扬声器会开始发出语音,告诉你水的温度;2、液晶屏也会改变水温的显示,来提示水已经快烧开了。 现在我们需要写个程序来模拟这个烧水的过程,我们将定义一个类来代表热水器,我们管它叫:Heater,它有代表水温的字段,叫做 temperature;当然,还有必不可少的给水加热方法 BoilWater(),一个发出语音警报的方法 MakeAlert(),一个显示水温的方法,ShowMsg()。 namespace Delegate{/// <summary>/// 热水器/// </summary>public class Heater{/// <summary>/// 水温/// </summary>private int temperature;/// <summary>/// 烧水/// </summary>public void BoilWater(){for (int i = 0; i <= 100; i++){temperature = i;if (temperature > 95){MakeAlert(temperature);ShowMsg(temperature);} }}/// <summary>/// 发出语音警报/// </summary>/// <param name="param"></param>private void MakeAlert(int param){Console.WriteLine("Alarm:嘀嘀嘀,水已经 {0} 度了:", param);}/// <summary>/// 显示水温/// </summary>/// <param name="param"></param>private void ShowMsg(int param){Console.WriteLine("Display:水快开了,当前温度:{0}度。", param);} }class Program{static void Main(){Heater ht = new Heater();ht.BoilWater();} }} 1.4.2 Observer 设计模式简介 上面的例子显然能完成我们之前描述的工作,但是却并不够好。现在假设热水器由三部分组成:热水器、警报器、显示器,它们来自于不同厂商并进行了组装。那么,应该是热水器仅仅负责烧水,它不能发出警报也不能显示水温;在水烧开时由警报器发出警报、显示器显示提示和水温。 这时候,上面的例子就应该变成这个样子: /// <summary>/// 热水器/// </summary>public class Heater{private int temperature; private void BoilWater(){for (int i = 0; i <= 100; i++){temperature = i;} }}/// <summary>/// 警报器/// </summary>public class Alarm{private void MakeAlert(int param){Console.WriteLine("Alarm:嘀嘀嘀,水已经 {0} 度了:", param);} }/// <summary>/// 显示器/// </summary>public class Display{private void ShowMsg(int param){Console.WriteLine("Display:水已烧开,当前温度:{0}度。", param);} } 这里就出现了一个问题:如何在水烧开的时候通知报警器和显示器? 在继续进行之前,我们先了解一下Observer 设计模式,Observer 设计模式中主要包括如下两类对象: Subject:监视对象,它往往包含着其他对象所感兴趣的内容。在本范例中,热水器就是一个监视对象,它包含的其他对象所感兴趣的内容,就是 temprature 字段,当这个字段的值快到100 时,会不断把数据发给监视它的对象。 Observer:监视者,它监视Subject,当 Subject 中的某件事发生的时候,会告知Observer,而Observer 则会采取相应的行动。在本范例中,Observer 有警报器和显示器,它们采取的行动分别是发出警报和显示水温。 在本例中,事情发生的顺序应该是这样的: 1. 警报器和显示器告诉热水器,它对它的温度比较感兴趣(注册)。 2. 热水器知道后保留对警报器和显示器的引用。 3. 热水器进行烧水这一动作,当水温超过 95 度时,通过对警报器和显示器的引用,自动调用警报器的MakeAlert()方法、显示器的ShowMsg()方法。 类似这样的例子是很多的,GOF 对它进行了抽象,称为 Observer 设计模式:Observer 设计模式是为了定义对象间的一种一对多的依赖关系,以便于当一个对象的状态改变时,其他依赖于它的对象会被自动告知并更新。Observer 模式是一种松耦合的设计模式。 1.4.3 实现范例的Observer 设计模式 我们之前已经对委托和事件介绍很多了,现在写代码应该很容易了,现在在这里直接给出代码,并在注释中加以说明。 namespace Delegate{public class Heater{private int temperature;public delegate void BoilHandler(int param);public event BoilHandler BoilEvent;public void BoilWater(){for (int i = 0; i <= 100; i++){temperature = i;if (temperature > 95){if (BoilEvent != null){ BoilEvent(temperature); // 调用所有注册对象的方法} }} }}public class Alarm{public void MakeAlert(int param){Console.WriteLine("Alarm:嘀嘀嘀,水已经 {0} 度了:", param);} }public class Display{public static void ShowMsg(int param) // 静态方法{ Console.WriteLine("Display:水快烧开了,当前温度:{0}度。", param);} }class Program{static void Main(){Heater heater = new Heater();Alarm alarm = new Alarm();heater.BoilEvent += alarm.MakeAlert; // 注册方法heater.BoilEvent += (new Alarm()).MakeAlert; // 给匿名对象注册方法heater.BoilEvent += Display.ShowMsg; // 注册静态方法heater.BoilWater(); // 烧水,会自动调用注册过对象的方法} }} 输出为: // Alarm:嘀嘀嘀,水已经 96 度了: Alarm:嘀嘀嘀,水已经 96 度了: Display:水快烧开了,当前温度:96 度。 // 省略... // 1.4.4 .NET 框架中的委托与事件 尽管上面的范例很好地完成了我们想要完成的工作,但是我们不仅疑惑:为什么.NET Framework 中的事件模型和上面的不同?为什么有很多的EventArgs 参数? 在回答上面的问题之前,我们先搞懂 .NET Framework 的编码规范: 1. 委托类型的名称都应该以 EventHandler 结束。 2. 委托的原型定义:有一个void 返回值,并接受两个输入参数:一个Object 类型,一个EventArgs 类型(或继承自EventArgs)。 3. 事件的命名为委托去掉 EventHandler 之后剩余的部分。 4. 继承自 EventArgs 的类型应该以EventArgs 结尾。 再做一下说明: 1. 委托声明原型中的Object 类型的参数代表了Subject,也就是监视对象,在本例中是Heater(热水器)。回调函数(比如Alarm 的MakeAlert)可以通过它访问触发事件的对象(Heater)。 2. EventArgs 对象包含了Observer 所感兴趣的数据,在本例中是temperature。 上面这些其实不仅仅是为了编码规范而已,这样也使得程序有更大的灵活性。比如说,如果我们不光想获得热水器的温度,还想在Observer 端(警报器或者显示器)方法中获得它的生产日期、型号、价格,那么委托和方法的声明都会变得很麻烦,而如果我们将热水器的引用传给警报器的方法,就可以在方法中直接访问热水器了。 现在我们改写之前的范例,让它符合.NET Framework的规范: using System;using System.Collections.Generic;using System.Text;namespace Delegate{public class Heater{private int temperature;public string type = "RealFire 001"; // 添加型号作为演示public string area = "China Xian"; // 添加产地作为演示public delegate void BoiledEventHandler(Object sender, BoiledEventArgs e);public event BoiledEventHandler Boiled; // 声明事件// 定义 BoiledEventArgs 类,传递给 Observer 所感兴趣的信息public class BoiledEventArgs : EventArgs{public readonly int temperature;public BoiledEventArgs(int temperature){this.temperature = temperature;} }// 可以供继承自 Heater 的类重写,以便继承类拒绝其他对象对它的监视protected virtual void OnBoiled(BoiledEventArgs e){if (Boiled != null){Boiled(this, e); // 调用所有注册对象的方法} }public void BoilWater(){for (int i = 0; i <= 100; i++){temperature = i;if (temperature > 95){// 建立BoiledEventArgs 对象。BoiledEventArgs e = new BoiledEventArgs(temperature);OnBoiled(e); // 调用 OnBolied 方法} }}public class Alarm{public void MakeAlert(Object sender, Heater.BoiledEventArgs e){Heater heater = (Heater)sender; // 这里是不是很熟悉呢?// 访问 sender 中的公共字段Console.WriteLine("Alarm:{0} - {1}: ", heater.area, heater.type);Console.WriteLine("Alarm: 嘀嘀嘀,水已经 {0} 度了:", e.temperature);Console.WriteLine();} }public class Display{public static void ShowMsg(Object sender, Heater.BoiledEventArgs e) // 静态方法{Heater heater = (Heater)sender;Console.WriteLine("Display:{0} - {1}: ", heater.area, heater.type);Console.WriteLine("Display:水快烧开了,当前温度:{0}度。", e.temperature);Console.WriteLine();} }class Program{static void Main(){Heater heater = new Heater();Alarm alarm = new Alarm();heater.Boiled += alarm.MakeAlert; //注册方法heater.Boiled += (new Alarm()).MakeAlert; //给匿名对象注册方法heater.Boiled += new Heater.BoiledEventHandler(alarm.MakeAlert); //也可以这么注册heater.Boiled += Display.ShowMsg; //注册静态方法heater.BoilWater(); //烧水,会自动调用注册过对象的方法} }} } 输出为: Alarm:China Xian - RealFire 001: Alarm: 嘀嘀嘀,水已经 96 度了: Alarm:China Xian - RealFire 001: Alarm: 嘀嘀嘀,水已经 96 度了: Alarm:China Xian - RealFire 001: Alarm: 嘀嘀嘀,水已经 96 度了: Display:China Xian - RealFire 001: Display:水快烧开了,当前温度:96 度。 // 省略 ... 1.5 委托进阶 1.5.1 为什么委托定义的返回值通常都为 void ? 尽管并非必需,但是我们发现很多的委托定义返回值都为 void,为什么呢?这是因为委托变量可以供多个订阅者注册,如果定义了返回值,那么多个订阅者的方法都会向发布者返回数值,结果就是后面一个返回的方法值将前面的返回值覆盖掉了,因此,实际上只能获得最后一个方法调用的返回值。可以运行下面的代码测试一下。除此以外,发布者和订阅者是松耦合的,发布者根本不关心谁订阅了它的事件、为什么要订阅,更别说订阅者的返回值了,所以返回订阅者的方法返回值大多数情况下根本没有必要。 1.5.2 如何让事件只允许一个客户订阅? 少数情况下,比如像上面,为了避免发生“值覆盖”的情况(更多是在异步调用方法时,后面会讨论),我们可能想限制只允许一个客户端注册。此时怎么做呢?我们可以向下面这样,将事件声明为private 的,然后提供两个方法来进行注册和取消注册: public class Publishser{private event GeneralEventHandler NumberChanged; // 声明一个私有事件// 注册事件public void Register(GeneralEventHandler method){NumberChanged = method;}// 取消注册public void UnRegister(GeneralEventHandler method){NumberChanged -= method;}public void DoSomething(){// 做某些其余的事情if (NumberChanged != null){ // 触发事件string rtn = NumberChanged();Console.WriteLine("Return: {0}", rtn); // 打印返回的字符串,输出为Subscriber3} }} 注意上面,在UnRegister()中,没有进行任何判断就使用了NumberChanged -= method 语句。这是因为即使method 方法没有进行过注册,此行语句也不会有任何问题,不会抛出异常,仅仅是不会产生任何效果而已。 注意在Register()方法中,我们使用了赋值操作符“=”,而非“+=”,通过这种方式就避免了多个方法注册。 1.7 委托和方法的异步调用 通常情况下,如果需要异步执行一个耗时的操作,我们会新起一个线程,然后让这个线程去执行代码。但是对于每一个异步调用都通过创建线程来进行操作显然会对性能产生一定的影响,同时操作也相对繁琐一些。.NET 中可以通过委托进行方法的异步调用,就是说客户端在异步调用方法时,本身并不会因为方法的调用而中断,而是从线程池中抓取一个线程去执行该方法,自身线程(主线程)在完成抓取线程这一过程之后,继续执行下面的代码,这样就实现了代码的并行执行。使用线程池的好处就是避免了频繁进行异步调用时创建、销毁线程的开销。当我们在委托对象上调用BeginInvoke()时,便进行了一个异步的方法调用。 事件发布者和订阅者之间往往是松耦合的,发布者通常不需要获得订阅者方法执行的情况;而当使用异步调用时,更多情况下是为了提升系统的性能,而并非专用于事件的发布和订阅这一编程模型。而在这种情况下使用异步编程时,就需要进行更多的控制,比如当异步执行方法的方法结束时通知客户端、返回异步执行方法的返回值等。本节就对 BeginInvoke() 方法、EndInvoke() 方法和其相关的 IAysncResult 做一个简单的介绍。 我们先看这样一段代码,它演示了不使用异步调用的通常情况: class Program7{static void Main(string[] args){Console.WriteLine("Client application started!\n");Thread.CurrentThread.Name = "Main Thread";Calculator cal = new Calculator();int result = cal.Add(2, 5);Console.WriteLine("Result: {0}\n", result);// 做某些其它的事情,模拟需要执行3 秒钟for (int i = 1; i <= 3; i++){Thread.Sleep(TimeSpan.FromSeconds(i));Console.WriteLine("{0}: Client executed {1} second(s).", Thread.CurrentThread.Name, i);}Console.WriteLine("\nPress any key to exit...");Console.ReadLine();} }public class Calculator{public int Add(int x, int y){if (Thread.CurrentThread.IsThreadPoolThread){Thread.CurrentThread.Name = "Pool Thread";}Console.WriteLine("Method invoked!");// 执行某些事情,模拟需要执行2 秒钟for (int i = 1; i <= 2; i++){Thread.Sleep(TimeSpan.FromSeconds(i));Console.WriteLine("{0}: Add executed {1} second(s).", Thread.CurrentThread.Name, i);}Console.WriteLine("Method complete!");return x + y;} } 上面代码有几个关于对于线程的操作,如果不了解可以看一下下面的说明,如果你已经了解可以直接跳过: 1. Thread.Sleep(),它会让执行当前代码的线程暂停一段时间(如果你对线程的概念比较陌生,可以理解为使程序的执行暂停一段时间),以毫秒为单位,比如Thread.Sleep(1000),将会使线程暂停1 秒钟。在上面我使用了它的重载方法,个人觉得使用TimeSpan.FromSeconds(1),可读性更好一些。 2. Thread.CurrentThread.Name,通过这个属性可以设置、获取执行当前代码的线程的名称,值得注意的是这个属性只可以设置一次,如果设置两次,会抛出异常。 3. Thread.IsThreadPoolThread,可以判断执行当前代码的线程是否为线程池中的线程。 通过这几个方法和属性,有助于我们更好地调试异步调用方法。上面代码中除了加入了一些对线程的操作以外再没有什么特别之处。我们建了一个Calculator 类,它只有一个Add 方法,我们模拟了这个方法需要执行2 秒钟时间,并且每隔一秒进行一次输出。而在客户端程序中,我们使用result 变量保存了方法的返回值并进行了打印。随后,我们再次模拟了客户端程序接下来的操作需要执行2 秒钟时间。运行这段程序,会产生下面的输出: // Client application started! Method invoked! Main Thread: Add executed 1 second(s). Main Thread: Add executed 2 second(s). Method complete! Result: 7 Main Thread: Client executed 1 second(s). Main Thread: Client executed 2 second(s). Main Thread: Client executed 3 second(s). Press any key to exit... // 如果你确实执行了这段代码,会看到这些输出并不是一瞬间输出的,而是执行了大概5 秒钟的时间,因为线程是串行执行的,所以在执行完 Add() 方法之后才会继续客户端剩下的代码。 接下来我们定义一个AddDelegate 委托,并使用BeginInvoke()方法来异步地调用它。在上面已经介绍过,BeginInvoke()除了最后两个参数为AsyncCallback 类型和Object 类型以外,前面的参数类型和个数与委托定义相同。另外BeginInvoke()方法返回了一个实现了IAsyncResult 接口的对象(实际上就是一个AsyncResult 类型实例,注意这里IAsyncResult 和AysncResult 是不同的,它们均包含在.NET Framework 中)。 AsyncResult 的用途有这么几个:传递参数,它包含了对调用了BeginInvoke()的委托的引用;它还包含了BeginInvoke()的最后一个Object 类型的参数;它可以鉴别出是哪个方法的哪一次调用,因为通过同一个委托变量可以对同一个方法调用多次。 EndInvoke()方法接受IAsyncResult 类型的对象(以及ref 和out 类型参数,这里不讨论了,对它们的处理和返回值类似),所以在调用BeginInvoke()之后,我们需要保留IAsyncResult,以便在调用EndInvoke()时进行传递。这里最重要的就是EndInvoke()方法的返回值,它就是方法的返回值。除此以外,当客户端调用EndInvoke()时,如果异步调用的方法没有执行完毕,则会中断当前线程而去等待该方法,只有当异步方法执行完毕后才会继续执行后面的代码。所以在调用完BeginInvoke()后立即执行EndInvoke()是没有任何意义的。我们通常在尽可能早的时候调用BeginInvoke(),然后在需要方法的返回值的时候再去调用EndInvoke(),或者是根据情况在晚些时候调用。说了这么多,我们现在看一下使用异步调用改写后上面的代码吧: using System.Threading;using System;public delegate int AddDelegate(int x, int y);class Program8{static void Main(string[] args){Console.WriteLine("Client application started!\n");Thread.CurrentThread.Name = "Main Thread";Calculator cal = new Calculator();AddDelegate del = new AddDelegate(cal.Add);IAsyncResult asyncResult = del.BeginInvoke(2, 5, null, null); // 异步调用方法// 做某些其它的事情,模拟需要执行3 秒钟for (int i = 1; i <= 3; i++){Thread.Sleep(TimeSpan.FromSeconds(i));Console.WriteLine("{0}: Client executed {1} second(s).", Thread.CurrentThread.Name, i);}int rtn = del.EndInvoke(asyncResult);Console.WriteLine("Result: {0}\n", rtn);Console.WriteLine("\nPress any key to exit...");Console.ReadLine();} }public class Calculator{public int Add(int x, int y){if (Thread.CurrentThread.IsThreadPoolThread){Thread.CurrentThread.Name = "Pool Thread";}Console.WriteLine("Method invoked!");// 执行某些事情,模拟需要执行2 秒钟for (int i = 1; i <= 2; i++){Thread.Sleep(TimeSpan.FromSeconds(i));Console.WriteLine("{0}: Add executed {1} second(s).", Thread.CurrentThread.Name, i);}Console.WriteLine("Method complete!");return x + y;} } 此时的输出为: // Client application started! Method invoked! Main Thread: Client executed 1 second(s). Pool Thread: Add executed 1 second(s). Main Thread: Client executed 2 second(s). Pool Thread: Add executed 2 second(s). Method complete! Main Thread: Client executed 3 second(s). Result: 7 Press any key to exit... // 现在执行完这段代码只需要3 秒钟时间,两个for 循环所产生的输出交替进行,这也说明了这两段代码并行执行的情况。可以看到Add() 方法是由线程池中的线程在执行, 因为Thread.CurrentThread.IsThreadPoolThread 返回了True,同时我们对该线程命名为了Pool Thread。另外我们可以看到通过EndInvoke()方法得到了返回值。有时候,我们可能会将获得返回值的操作放到另一段代码或者客户端去执行,而不是向上面那样直接写在BeginInvoke()的后面。比如说我们在Program 中新建一个方法GetReturn(),此时可以通过AsyncResult 的AsyncDelegate 获得del 委托对象,然后再在其上调用EndInvoke()方法,这也说明了AsyncResult 可以唯一的获取到与它相关的调用了的方法(或者也可以理解成委托对象)。所以上面获取返回值的代码也可以改写成这样: private static int GetReturn(IAsyncResult asyncResult){AsyncResult result = (AsyncResult)asyncResult;AddDelegate del = (AddDelegate)result.AsyncDelegate;int rtn = del.EndInvoke(asyncResult);return rtn;} 然后再将int rtn = del.EndInvoke(asyncResult);语句改为int rtn = GetReturn(asyncResult);。注意上面IAsyncResult 要转换为实际的类型AsyncResult 才能访问AsyncDelegate 属性,因为它没有包含在IAsyncResult 接口的定义中。 BeginInvoke 的另外两个参数分别是AsyncCallback 和Object 类型,其中AsyncCallback 是一个委托类型,它用于方法的回调,即是说当异步方法执行完毕时自动进行调用的方法。它的定义为: // public delegate void AsyncCallback(IAsyncResult ar); // Object 类型用于传递任何你想要的数值,它可以通过IAsyncResult 的AsyncState 属性获得。下面我们将获取方法返回值、打印返回值的操作放到了OnAddComplete()回调方法中: using System.Threading;using System;using System.Runtime.Remoting.Messaging;public delegate int AddDelegate(int x, int y);class Program9{static void Main(string[] args){Console.WriteLine("Client application started!\n");Thread.CurrentThread.Name = "Main Thread";Calculator cal = new Calculator();AddDelegate del = new AddDelegate(cal.Add);string data = "Any data you want to pass.";AsyncCallback callBack = new AsyncCallback(OnAddComplete);del.BeginInvoke(2, 5, callBack, data); // 异步调用方法// 做某些其它的事情,模拟需要执行3 秒钟for (int i = 1; i <= 3; i++){Thread.Sleep(TimeSpan.FromSeconds(i));Console.WriteLine("{0}: Client executed {1} second(s).", Thread.CurrentThread.Name, i);}Console.WriteLine("\nPress any key to exit...");Console.ReadLine();}static void OnAddComplete(IAsyncResult asyncResult){AsyncResult result = (AsyncResult)asyncResult;AddDelegate del = (AddDelegate)result.AsyncDelegate;string data = (string)asyncResult.AsyncState;int rtn = del.EndInvoke(asyncResult);Console.WriteLine("{0}: Result, {1}; Data: {2}\n", Thread.CurrentThread.Name, rtn, data);} }public class Calculator{public int Add(int x, int y){if (Thread.CurrentThread.IsThreadPoolThread){Thread.CurrentThread.Name = "Pool Thread";}Console.WriteLine("Method invoked!");// 执行某些事情,模拟需要执行2 秒钟for (int i = 1; i <= 2; i++){Thread.Sleep(TimeSpan.FromSeconds(i));Console.WriteLine("{0}: Add executed {1} second(s).", Thread.CurrentThread.Name, i);}Console.WriteLine("Method complete!");return x + y;} } 它产生的输出为: Client application started! Method invoked! Main Thread: Client executed 1 second(s). Pool Thread: Add executed 1 second(s). Main Thread: Client executed 2 second(s). Pool Thread: Add executed 2 second(s). Method complete! Pool Thread: Result, 7; Data: Any data you want to pass. Main Thread: Client executed 3 second(s). Press any key to exit... 这里有几个值得注意的地方: 1、我们在调用BeginInvoke()后不再需要保存IAysncResult 了,因为AysncCallback 委托将该对象定义在了回调方法的参数列表中; 2、我们在OnAddComplete()方法中获得了调用BeginInvoke()时最后一个参数传递的值,字符串“Any data you want to pass”; 3、执行回调方法的线程并非客户端线程Main Thread,而是来自线程池中的线程Pool Thread。另外如前面所说,在调用EndInvoke()时有可能会抛出异常,所以在应该将它放到try/catch 块中,这里就不再示范了。 1.8 总结 我们详细地讨论了C中的委托和事件,包括什么是委托、为什么要使用委托、事件的由来、.NET Framework 中的委托和事件、委托中方法异常和超时的处理、委托与异步编程、委托和事件对Observer 设计模式的意义。拥有了本章的知识,相信你以后遇到委托和事件时,将不会再有所畏惧。 本篇文章为转载内容。原文链接:https://blog.csdn.net/beyonddeg/article/details/53528482。 该文由互联网用户投稿提供,文中观点代表作者本人意见,并不代表本站的立场。 作为信息平台,本站仅提供文章转载服务,并不拥有其所有权,也不对文章内容的真实性、准确性和合法性承担责任。 如发现本文存在侵权、违法、违规或事实不符的情况,请及时联系我们,我们将第一时间进行核实并删除相应内容。
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...以了,它会创建出满足条件的Pod并确保每一个Pod资源处于用户期望的目标状态。如果Pod资源在运行中出现故障,它会基于指定策略重新编排Pod。 控制器的种类 在kubernetes有很多种类型的pod控制器,每种都有自己的使用场景 ReplicationController:比较原始的pod控制器,已经被废弃,由ReplicaSet替代 ReplicaSet:保证副本数量一直维持在期望值,并支持pod数量扩缩容,镜像版本升级 Deployment:通过控制ReplicaSet来控制Pod,并支持滚动升级、回退版本 Horizontal Pod Autoscaler:可以根据集群负载自动水平调整Pod的数量,实现削峰填谷 DaemonSet:在集群中的指定Node上运行且仅运行一个副本,一般用于守护进程类的任务 Job:它创建出来的pod只要完成任务就立即退出,不需要重启或重建,用于执行一次性任务 Cronjob:它创建的Pod负责周期性任务控制,不需要持续后台运行,可以理解为是定时任务; StatefulSet:管理有状态应用 1、ReplicaSet 简称为RS,主要的作用是保证一定数量的pod能够正常运行,它会持续监听这些pod的运行状态,提供了以下功能 自愈能力: 重启 :当某节点中的pod运行过程中出现问题导致无法启动时,k8s会不断重启,直到可用状态为止 故障转移:当正在运行中pod所在的节点发生故障或者宕机时,k8s会选择集群中另一个可用节点,将pod运行到可用节点上; pod数量的扩缩容:pod副本的扩容和缩容 镜像升降级:支持镜像版本的升级和降级; 配置模板 rs的所有配置如下 apiVersion: apps/v1 版本号kind: ReplicaSet 类型 metadata: 元数据name: rs名称 namespace: 所属命名空间 labels: 标签controller: rsspec: 详情描述replicas: 3 副本数量selector: 选择器,通过它指定该控制器管理哪些podmatchLabels: Labels匹配规则app: nginx-podmatchExpressions: Expressions匹配规则,key就是label的key,values的值是个数组,意思是标签值必须是此数组中的其中一个才能匹配上;- {key: app, operator: In, values: [nginx-pod]}template: 模板,当副本数量不足时,会根据下面的模板创建pod副本metadata:labels: 这里的标签必须和上面的matchLabels一致,将他们关联起来app: nginx-podspec:containers:- name: nginximage: nginx:1.17.1ports:- containerPort: 80 1、创建一个ReplicaSet 新建一个文件 rs.yaml,内容如下 apiVersion: apps/v1kind: ReplicaSet pod控制器metadata: 元数据name: pc-replicaset 名字namespace: dev 名称空间spec:replicas: 3 副本数selector: 选择器,通过它指定该控制器管理哪些podmatchLabels: Labels匹配规则app: nginx-podtemplate: 模板,当副本数量不足时,会根据下面的模板创建pod副本metadata:labels:app: nginx-podspec:containers:- name: nginximage: nginx:1.17.1 运行 kubectl create -f rs.yaml 获取replicaset kubectl get replicaset -n dev 2、扩缩容 刚刚我们已经用第一种方式创建了一个replicaSet,现在就基于原来的rs进行扩容,原来的副本数量是3个,现在我们将其扩到6个,做法也很简单,运行编辑命令 第一种方式: scale 使用scale命令实现扩缩容,后面--replicas=n直接指定目标数量即可kubectl scale rs pc-replicaset --replicas=2 -n dev 第二种方式:使用edit命令编辑rs 这种方式相当于使用vi编辑修改yaml配置的内容,进去后将replicas的值改为1,保存后自动生效kubectl edit rs pc-replicaset -n dev 3、镜像版本变更 第一种方式:scale kubectl scale rs pc-replicaset nginx=nginx:1.71.2 -n dev 第二种方式:edit 这种方式相当于使用vi编辑修改yaml配置的内容,进去后将nginx的值改为nginx:1.71.2,保存后自动生效kubectl edit rs pc-replicaset -n dev 4、删除rs 第一种方式kubectl delete -f rs.yaml 第二种方式 ,如果想要只删rs,但不删除pod,可在删除时加上--cascade=false参数(不推荐)kubectl delete rs pc-replicaset -n dev --cascade=false 2、Deployment k8s v1.2版本后加入Deployment;这种控制器不直接控制pod,而是通过管理ReplicaSet来间接管理pod;也就是Deployment管理ReplicaSet,ReplicaSet管理pod;所以 Deployment 比 ReplicaSet 功能更加强大 当我们创建了一个Deployment之后,也会自动创建一个ReplicaSet 功能 支持ReplicaSet 的所有功能 支持发布的停止、继续 支持版本的滚动更新和回退功能 配置模板 新建文件 apiVersion: apps/v1 版本号kind: Deployment 类型 metadata: 元数据name: rs名称 namespace: 所属命名空间 labels: 标签controller: deployspec: 详情描述replicas: 3 副本数量revisionHistoryLimit: 3 保留历史版本的数量,默认10,内部通过保留rs来实现paused: false 暂停部署,默认是falseprogressDeadlineSeconds: 600 部署超时时间(s),默认是600strategy: 策略type: RollingUpdate 滚动更新策略rollingUpdate: 滚动更新maxSurge: 30% 最大额外可以存在的副本数,可以为百分比,也可以为整数maxUnavailable: 30% 最大不可用状态的 Pod 的最大值,可以为百分比,也可以为整数selector: 选择器,通过它指定该控制器管理哪些podmatchLabels: Labels匹配规则app: nginx-podmatchExpressions: Expressions匹配规则- {key: app, operator: In, values: [nginx-pod]}template: 模板,当副本数量不足时,会根据下面的模板创建pod副本metadata:labels:app: nginx-podspec:containers:- name: nginximage: nginx:1.17.1ports:- containerPort: 80 1、创建和删除Deployment 创建pc-deployment.yaml,内容如下: apiVersion: apps/v1kind: Deployment metadata:name: pc-deploymentnamespace: devspec: replicas: 3selector:matchLabels:app: nginx-podtemplate:metadata:labels:app: nginx-podspec:containers:- name: nginximage: nginx:1.17.1 创建和查看 创建deployment,--record=true 表示记录整个deployment更新过程[root@k8s-master01 ~] kubectl create -f pc-deployment.yaml --record=truedeployment.apps/pc-deployment created 查看deployment READY 可用的/总数 UP-TO-DATE 最新版本的pod的数量 AVAILABLE 当前可用的pod的数量[root@k8s-master01 ~] kubectl get deploy pc-deployment -n devNAME READY UP-TO-DATE AVAILABLE AGEpc-deployment 3/3 3 3 15s 查看rs 发现rs的名称是在原来deployment的名字后面添加了一个10位数的随机串[root@k8s-master01 ~] kubectl get rs -n devNAME DESIRED CURRENT READY AGEpc-deployment-6696798b78 3 3 3 23s 查看pod[root@k8s-master01 ~] kubectl get pods -n devNAME READY STATUS RESTARTS AGEpc-deployment-6696798b78-d2c8n 1/1 Running 0 107spc-deployment-6696798b78-smpvp 1/1 Running 0 107spc-deployment-6696798b78-wvjd8 1/1 Running 0 107s 删除deployment 删除deployment,其下的rs和pod也将被删除kubectl delete -f pc-deployment.yaml 2、扩缩容 deployment的扩缩容和 ReplicaSet 的扩缩容一样,只需要将rs或者replicaSet改为deployment即可,具体请参考上面的 ReplicaSet 扩缩容 3、镜像更新 刚刚在创建时加上了--record=true参数,所以在一旦进行了镜像更新,就会新建出一个pod出来,将老的old-pod上的容器全删除,然后在新的new-pod上在新建对应数量的容器,此时old-pod是不会删除的,因为这个old-pod是要进行回退的; 镜像更新策略有2种 滚动更新(RollingUpdate):(默认值),杀死一部分,就启动一部分,在更新过程中,存在两个版本Pod 重建更新(Recreate):在创建出新的Pod之前会先杀掉所有已存在的Pod strategy:指定新的Pod替换旧的Pod的策略, 支持两个属性:type:指定策略类型,支持两种策略Recreate:在创建出新的Pod之前会先杀掉所有已存在的PodRollingUpdate:滚动更新,就是杀死一部分,就启动一部分,在更新过程中,存在两个版本PodrollingUpdate:当type为RollingUpdate时生效,用于为RollingUpdate设置参数,支持两个属性:maxUnavailable:用来指定在升级过程中不可用Pod的最大数量,默认为25%。maxSurge: 用来指定在升级过程中可以超过期望的Pod的最大数量,默认为25%。 重建更新 编辑pc-deployment.yaml,在spec节点下添加更新策略 spec:strategy: 策略type: Recreate 重建更新 创建deploy进行验证 变更镜像[root@k8s-master01 ~] kubectl set image deployment pc-deployment nginx=nginx:1.17.2 -n devdeployment.apps/pc-deployment image updated 观察升级过程[root@k8s-master01 ~] kubectl get pods -n dev -wNAME READY STATUS RESTARTS AGEpc-deployment-5d89bdfbf9-65qcw 1/1 Running 0 31spc-deployment-5d89bdfbf9-w5nzv 1/1 Running 0 31spc-deployment-5d89bdfbf9-xpt7w 1/1 Running 0 31spc-deployment-5d89bdfbf9-xpt7w 1/1 Terminating 0 41spc-deployment-5d89bdfbf9-65qcw 1/1 Terminating 0 41spc-deployment-5d89bdfbf9-w5nzv 1/1 Terminating 0 41spc-deployment-675d469f8b-grn8z 0/1 Pending 0 0spc-deployment-675d469f8b-hbl4v 0/1 Pending 0 0spc-deployment-675d469f8b-67nz2 0/1 Pending 0 0spc-deployment-675d469f8b-grn8z 0/1 ContainerCreating 0 0spc-deployment-675d469f8b-hbl4v 0/1 ContainerCreating 0 0spc-deployment-675d469f8b-67nz2 0/1 ContainerCreating 0 0spc-deployment-675d469f8b-grn8z 1/1 Running 0 1spc-deployment-675d469f8b-67nz2 1/1 Running 0 1spc-deployment-675d469f8b-hbl4v 1/1 Running 0 2s 滚动更新 编辑pc-deployment.yaml,在spec节点下添加更新策略 spec:strategy: 策略type: RollingUpdate 滚动更新策略rollingUpdate:maxSurge: 25% maxUnavailable: 25% 创建deploy进行验证 变更镜像[root@k8s-master01 ~] kubectl set image deployment pc-deployment nginx=nginx:1.17.3 -n dev deployment.apps/pc-deployment image updated 观察升级过程[root@k8s-master01 ~] kubectl get pods -n dev -wNAME READY STATUS RESTARTS AGEpc-deployment-c848d767-8rbzt 1/1 Running 0 31mpc-deployment-c848d767-h4p68 1/1 Running 0 31mpc-deployment-c848d767-hlmz4 1/1 Running 0 31mpc-deployment-c848d767-rrqcn 1/1 Running 0 31mpc-deployment-966bf7f44-226rx 0/1 Pending 0 0spc-deployment-966bf7f44-226rx 0/1 ContainerCreating 0 0spc-deployment-966bf7f44-226rx 1/1 Running 0 1spc-deployment-c848d767-h4p68 0/1 Terminating 0 34mpc-deployment-966bf7f44-cnd44 0/1 Pending 0 0spc-deployment-966bf7f44-cnd44 0/1 ContainerCreating 0 0spc-deployment-966bf7f44-cnd44 1/1 Running 0 2spc-deployment-c848d767-hlmz4 0/1 Terminating 0 34mpc-deployment-966bf7f44-px48p 0/1 Pending 0 0spc-deployment-966bf7f44-px48p 0/1 ContainerCreating 0 0spc-deployment-966bf7f44-px48p 1/1 Running 0 0spc-deployment-c848d767-8rbzt 0/1 Terminating 0 34mpc-deployment-966bf7f44-dkmqp 0/1 Pending 0 0spc-deployment-966bf7f44-dkmqp 0/1 ContainerCreating 0 0spc-deployment-966bf7f44-dkmqp 1/1 Running 0 2spc-deployment-c848d767-rrqcn 0/1 Terminating 0 34m 至此,新版本的pod创建完毕,就版本的pod销毁完毕 中间过程是滚动进行的,也就是边销毁边创建 4、版本回退 更新 刚刚在创建时加上了--record=true参数,所以在一旦进行了镜像更新,就会新建出一个pod出来,将老的old-pod上的容器全删除,然后在新的new-pod上在新建对应数量的容器,此时old-pod是不会删除的,因为这个old-pod是要进行回退的; 回退 在回退时会将new-pod上的容器全部删除,在将old-pod上恢复原来的容器; 回退命令 kubectl rollout: 版本升级相关功能,支持下面的选项: status 显示当前升级状态 history 显示 升级历史记录 pause 暂停版本升级过程 resume 继续已经暂停的版本升级过程 restart 重启版本升级过程 undo 回滚到上一级版本(可以使用–to-revision回滚到指定版本) 用法 查看当前升级版本的状态kubectl rollout status deploy pc-deployment -n dev 查看升级历史记录kubectl rollout history deploy pc-deployment -n dev 版本回滚 这里直接使用--to-revision=1回滚到了1版本, 如果省略这个选项,就是回退到上个版本kubectl rollout undo deployment pc-deployment --to-revision=1 -n dev 金丝雀发布 Deployment控制器支持控制更新过程中的控制,如“暂停(pause)”或“继续(resume)”更新操作。 比如有一批新的Pod资源创建完成后立即暂停更新过程,此时,仅存在一部分新版本的应用,主体部分还是旧的版本。然后,再筛选一小部分的用户请求路由到新版本的Pod应用,继续观察能否稳定地按期望的方式运行。确定没问题之后再继续完成余下的Pod资源滚动更新,否则立即回滚更新操作。这就是所谓的金丝雀发布。 金丝雀发布不是自动完成的,需要人为手动去操作,才能达到金丝雀发布的标准; 更新deployment的版本,并配置暂停deploymentkubectl set image deploy pc-deployment nginx=nginx:1.17.4 -n dev && kubectl rollout pause deployment pc-deployment -n dev 观察更新状态kubectl rollout status deploy pc-deployment -n dev 监控更新的过程kubectl get rs -n dev -o wide 确保更新的pod没问题了,继续更新kubectl rollout resume deploy pc-deployment -n dev 如果有问题,就回退到上个版本回退到上个版本kubectl rollout undo deployment pc-deployment -n dev Horizontal Pod Autoscaler 简称HPA,使用deployment可以手动调整pod的数量来实现扩容和缩容;但是这显然不符合k8s的自动化的定位,k8s期望可以通过检测pod的使用情况,实现pod数量自动调整,于是就有了HPA控制器; HPA可以获取每个Pod利用率,然后和HPA中定义的指标进行对比,同时计算出需要伸缩的具体值,最后实现Pod的数量的调整。比如说我指定了一个规则:当我的cpu利用率达到90%或者内存使用率到达80%的时候,就需要进行调整pod的副本数量,每次添加n个pod副本; 其实HPA与之前的Deployment一样,也属于一种Kubernetes资源对象,它通过追踪分析ReplicaSet控制器的所有目标Pod的负载变化情况,来确定是否需要针对性地调整目标Pod的副本数,也就是HPA管理Deployment,Deployment管理ReplicaSet,ReplicaSet管理pod,这是HPA的实现原理。 1、安装metrics-server metrics-server可以用来收集集群中的资源使用情况 安装git[root@k8s-master01 ~] yum install git -y 获取metrics-server, 注意使用的版本[root@k8s-master01 ~] git clone -b v0.3.6 https://github.com/kubernetes-incubator/metrics-server 修改deployment, 注意修改的是镜像和初始化参数[root@k8s-master01 ~] cd /root/metrics-server/deploy/1.8+/[root@k8s-master01 1.8+] vim metrics-server-deployment.yaml按图中添加下面选项hostNetwork: trueimage: registry.cn-hangzhou.aliyuncs.com/google_containers/metrics-server-amd64:v0.3.6args:- --kubelet-insecure-tls- --kubelet-preferred-address-types=InternalIP,Hostname,InternalDNS,ExternalDNS,ExternalIP 2、安装metrics-server [root@k8s-master01 1.8+] kubectl apply -f ./ 3、查看pod运行情况 [root@k8s-master01 1.8+] kubectl get pod -n kube-systemmetrics-server-6b976979db-2xwbj 1/1 Running 0 90s 4、使用kubectl top node 查看资源使用情况 [root@k8s-master01 1.8+] kubectl top nodeNAME CPU(cores) CPU% MEMORY(bytes) MEMORY%k8s-master01 289m 14% 1582Mi 54% k8s-node01 81m 4% 1195Mi 40% k8s-node02 72m 3% 1211Mi 41% [root@k8s-master01 1.8+] kubectl top pod -n kube-systemNAME CPU(cores) MEMORY(bytes)coredns-6955765f44-7ptsb 3m 9Micoredns-6955765f44-vcwr5 3m 8Mietcd-master 14m 145Mi... 至此,metrics-server安装完成 5、 准备deployment和servie 创建pc-hpa-pod.yaml文件,内容如下: apiVersion: apps/v1kind: Deploymentmetadata:name: nginxnamespace: devspec:strategy: 策略type: RollingUpdate 滚动更新策略replicas: 1selector:matchLabels:app: nginx-podtemplate:metadata:labels:app: nginx-podspec:containers:- name: nginximage: nginx:1.17.1resources: 资源配额limits: 限制资源(上限)cpu: "1" CPU限制,单位是core数requests: 请求资源(下限)cpu: "100m" CPU限制,单位是core数 创建deployment [root@k8s-master01 1.8+] kubectl run nginx --image=nginx:1.17.1 --requests=cpu=100m -n dev 6、创建service [root@k8s-master01 1.8+] kubectl expose deployment nginx --type=NodePort --port=80 -n dev 7、查看 [root@k8s-master01 1.8+] kubectl get deployment,pod,svc -n devNAME READY UP-TO-DATE AVAILABLE AGEdeployment.apps/nginx 1/1 1 1 47sNAME READY STATUS RESTARTS AGEpod/nginx-7df9756ccc-bh8dr 1/1 Running 0 47sNAME TYPE CLUSTER-IP EXTERNAL-IP PORT(S) AGEservice/nginx NodePort 10.101.18.29 <none> 80:31830/TCP 35s 8、 部署HPA 创建pc-hpa.yaml文件,内容如下: apiVersion: autoscaling/v1kind: HorizontalPodAutoscalermetadata:name: pc-hpanamespace: devspec:minReplicas: 1 最小pod数量maxReplicas: 10 最大pod数量 ,pod数量会在1~10之间自动伸缩targetCPUUtilizationPercentage: 3 CPU使用率指标,如果cpu使用率达到3%就会进行扩容;为了测试方便,将这个数值调小一些scaleTargetRef: 指定要控制的nginx信息apiVersion: /v1kind: Deploymentname: nginx 创建hpa [root@k8s-master01 1.8+] kubectl create -f pc-hpa.yamlhorizontalpodautoscaler.autoscaling/pc-hpa created 查看hpa [root@k8s-master01 1.8+] kubectl get hpa -n devNAME REFERENCE TARGETS MINPODS MAXPODS REPLICAS AGEpc-hpa Deployment/nginx 0%/3% 1 10 1 62s 9、 测试 使用压测工具对service地址192.168.5.4:31830进行压测,然后通过控制台查看hpa和pod的变化 hpa变化 [root@k8s-master01 ~] kubectl get hpa -n dev -wNAME REFERENCE TARGETS MINPODS MAXPODS REPLICAS AGEpc-hpa Deployment/nginx 0%/3% 1 10 1 4m11spc-hpa Deployment/nginx 0%/3% 1 10 1 5m19spc-hpa Deployment/nginx 22%/3% 1 10 1 6m50spc-hpa Deployment/nginx 22%/3% 1 10 4 7m5spc-hpa Deployment/nginx 22%/3% 1 10 8 7m21spc-hpa Deployment/nginx 6%/3% 1 10 8 7m51spc-hpa Deployment/nginx 0%/3% 1 10 8 9m6spc-hpa Deployment/nginx 0%/3% 1 10 8 13mpc-hpa Deployment/nginx 0%/3% 1 10 1 14m deployment变化 [root@k8s-master01 ~] kubectl get deployment -n dev -wNAME READY UP-TO-DATE AVAILABLE AGEnginx 1/1 1 1 11mnginx 1/4 1 1 13mnginx 1/4 1 1 13mnginx 1/4 1 1 13mnginx 1/4 4 1 13mnginx 1/8 4 1 14mnginx 1/8 4 1 14mnginx 1/8 4 1 14mnginx 1/8 8 1 14mnginx 2/8 8 2 14mnginx 3/8 8 3 14mnginx 4/8 8 4 14mnginx 5/8 8 5 14mnginx 6/8 8 6 14mnginx 7/8 8 7 14mnginx 8/8 8 8 15mnginx 8/1 8 8 20mnginx 8/1 8 8 20mnginx 1/1 1 1 20m pod变化 [root@k8s-master01 ~] kubectl get pods -n dev -wNAME READY STATUS RESTARTS AGEnginx-7df9756ccc-bh8dr 1/1 Running 0 11mnginx-7df9756ccc-cpgrv 0/1 Pending 0 0snginx-7df9756ccc-8zhwk 0/1 Pending 0 0snginx-7df9756ccc-rr9bn 0/1 Pending 0 0snginx-7df9756ccc-cpgrv 0/1 ContainerCreating 0 0snginx-7df9756ccc-8zhwk 0/1 ContainerCreating 0 0snginx-7df9756ccc-rr9bn 0/1 ContainerCreating 0 0snginx-7df9756ccc-m9gsj 0/1 Pending 0 0snginx-7df9756ccc-g56qb 0/1 Pending 0 0snginx-7df9756ccc-sl9c6 0/1 Pending 0 0snginx-7df9756ccc-fgst7 0/1 Pending 0 0snginx-7df9756ccc-g56qb 0/1 ContainerCreating 0 0snginx-7df9756ccc-m9gsj 0/1 ContainerCreating 0 0snginx-7df9756ccc-sl9c6 0/1 ContainerCreating 0 0snginx-7df9756ccc-fgst7 0/1 ContainerCreating 0 0snginx-7df9756ccc-8zhwk 1/1 Running 0 19snginx-7df9756ccc-rr9bn 1/1 Running 0 30snginx-7df9756ccc-m9gsj 1/1 Running 0 21snginx-7df9756ccc-cpgrv 1/1 Running 0 47snginx-7df9756ccc-sl9c6 1/1 Running 0 33snginx-7df9756ccc-g56qb 1/1 Running 0 48snginx-7df9756ccc-fgst7 1/1 Running 0 66snginx-7df9756ccc-fgst7 1/1 Terminating 0 6m50snginx-7df9756ccc-8zhwk 1/1 Terminating 0 7m5snginx-7df9756ccc-cpgrv 1/1 Terminating 0 7m5snginx-7df9756ccc-g56qb 1/1 Terminating 0 6m50snginx-7df9756ccc-rr9bn 1/1 Terminating 0 7m5snginx-7df9756ccc-m9gsj 1/1 Terminating 0 6m50snginx-7df9756ccc-sl9c6 1/1 Terminating 0 6m50s DaemonSet 简称DS,ds可以保证在集群中的每一台节点(或指定节点)上都运行一个副本,一般适用于日志收集、节点监控等场景;也就是说,如果一个Pod提供的功能是节点级别的(每个节点都需要且只需要一个),那么这类Pod就适合使用DaemonSet类型的控制器创建。 DaemonSet控制器的特点: 每当向集群中添加一个节点时,指定的 Pod 副本也将添加到该节点上 当节点从集群中移除时,Pod 也就被垃圾回收了 配置模板 apiVersion: apps/v1 版本号kind: DaemonSet 类型 metadata: 元数据name: rs名称 namespace: 所属命名空间 labels: 标签controller: daemonsetspec: 详情描述revisionHistoryLimit: 3 保留历史版本updateStrategy: 更新策略type: RollingUpdate 滚动更新策略rollingUpdate: 滚动更新maxUnavailable: 1 最大不可用状态的 Pod 的最大值,可以为百分比,也可以为整数selector: 选择器,通过它指定该控制器管理哪些podmatchLabels: Labels匹配规则app: nginx-podmatchExpressions: Expressions匹配规则- {key: app, operator: In, values: [nginx-pod]}template: 模板,当副本数量不足时,会根据下面的模板创建pod副本metadata:labels:app: nginx-podspec:containers:- name: nginximage: nginx:1.17.1ports:- containerPort: 80 1、创建ds 创建pc-daemonset.yaml,内容如下: apiVersion: apps/v1kind: DaemonSet metadata:name: pc-daemonsetnamespace: devspec: selector:matchLabels:app: nginx-podtemplate:metadata:labels:app: nginx-podspec:containers:- name: nginximage: nginx:1.17.1 运行 创建daemonset[root@k8s-master01 ~] kubectl create -f pc-daemonset.yamldaemonset.apps/pc-daemonset created 查看daemonset[root@k8s-master01 ~] kubectl get ds -n dev -o wideNAME DESIRED CURRENT READY UP-TO-DATE AVAILABLE AGE CONTAINERS IMAGES pc-daemonset 2 2 2 2 2 24s nginx nginx:1.17.1 查看pod,发现在每个Node上都运行一个pod[root@k8s-master01 ~] kubectl get pods -n dev -o wideNAME READY STATUS RESTARTS AGE IP NODE pc-daemonset-9bck8 1/1 Running 0 37s 10.244.1.43 node1 pc-daemonset-k224w 1/1 Running 0 37s 10.244.2.74 node2 2、删除daemonset [root@k8s-master01 ~] kubectl delete -f pc-daemonset.yamldaemonset.apps "pc-daemonset" deleted Job 主要用于负责批量处理一次性(每个任务仅运行一次就结束)任务。当然,你也可以运行多次,配置好即可,Job特点如下: 当Job创建的pod执行成功结束时,Job将记录成功结束的pod数量 当成功结束的pod达到指定的数量时,Job将完成执行 配置模板 apiVersion: batch/v1 版本号kind: Job 类型 metadata: 元数据name: rs名称 namespace: 所属命名空间 labels: 标签controller: jobspec: 详情描述completions: 1 指定job需要成功运行Pods的次数。默认值: 1parallelism: 1 指定job在任一时刻应该并发运行Pods的数量。默认值: 1activeDeadlineSeconds: 30 指定job可运行的时间期限,超过时间还未结束,系统将会尝试进行终止。backoffLimit: 6 指定job失败后进行重试的次数。默认是6manualSelector: true 是否可以使用selector选择器选择pod,默认是falseselector: 选择器,通过它指定该控制器管理哪些podmatchLabels: Labels匹配规则app: counter-podmatchExpressions: Expressions匹配规则- {key: app, operator: In, values: [counter-pod]}template: 模板,当副本数量不足时,会根据下面的模板创建pod副本metadata:labels:app: counter-podspec:restartPolicy: Never 重启策略只能设置为Never或者OnFailurecontainers:- name: counterimage: busybox:1.30command: ["bin/sh","-c","for i in 9 8 7 6 5 4 3 2 1; do echo $i;sleep 2;done"] 关于重启策略设置的说明:(这里只能设置为Never或者OnFailure) 如果指定为OnFailure,则job会在pod出现故障时重启容器,而不是创建pod,failed次数不变 如果指定为Never,则job会在pod出现故障时创建新的pod,并且故障pod不会消失,也不会重启,failed次数加1 如果指定为Always的话,就意味着一直重启,意味着job任务会重复去执行了,当然不对,所以不能设置为Always 1、创建一个job 创建pc-job.yaml,内容如下: apiVersion: batch/v1kind: Job metadata:name: pc-jobnamespace: devspec:manualSelector: trueselector:matchLabels:app: counter-podtemplate:metadata:labels:app: counter-podspec:restartPolicy: Nevercontainers:- name: counterimage: busybox:1.30command: ["bin/sh","-c","for i in 9 8 7 6 5 4 3 2 1; do echo $i;sleep 3;done"] 创建 创建job[root@k8s-master01 ~] kubectl create -f pc-job.yamljob.batch/pc-job created 查看job[root@k8s-master01 ~] kubectl get job -n dev -o wide -wNAME COMPLETIONS DURATION AGE CONTAINERS IMAGES SELECTORpc-job 0/1 21s 21s counter busybox:1.30 app=counter-podpc-job 1/1 31s 79s counter busybox:1.30 app=counter-pod 通过观察pod状态可以看到,pod在运行完毕任务后,就会变成Completed状态[root@k8s-master01 ~] kubectl get pods -n dev -wNAME READY STATUS RESTARTS AGEpc-job-rxg96 1/1 Running 0 29spc-job-rxg96 0/1 Completed 0 33s 接下来,调整下pod运行的总数量和并行数量 即:在spec下设置下面两个选项 completions: 6 指定job需要成功运行Pods的次数为6 parallelism: 3 指定job并发运行Pods的数量为3 然后重新运行job,观察效果,此时会发现,job会每次运行3个pod,总共执行了6个pod[root@k8s-master01 ~] kubectl get pods -n dev -wNAME READY STATUS RESTARTS AGEpc-job-684ft 1/1 Running 0 5spc-job-jhj49 1/1 Running 0 5spc-job-pfcvh 1/1 Running 0 5spc-job-684ft 0/1 Completed 0 11spc-job-v7rhr 0/1 Pending 0 0spc-job-v7rhr 0/1 Pending 0 0spc-job-v7rhr 0/1 ContainerCreating 0 0spc-job-jhj49 0/1 Completed 0 11spc-job-fhwf7 0/1 Pending 0 0spc-job-fhwf7 0/1 Pending 0 0spc-job-pfcvh 0/1 Completed 0 11spc-job-5vg2j 0/1 Pending 0 0spc-job-fhwf7 0/1 ContainerCreating 0 0spc-job-5vg2j 0/1 Pending 0 0spc-job-5vg2j 0/1 ContainerCreating 0 0spc-job-fhwf7 1/1 Running 0 2spc-job-v7rhr 1/1 Running 0 2spc-job-5vg2j 1/1 Running 0 3spc-job-fhwf7 0/1 Completed 0 12spc-job-v7rhr 0/1 Completed 0 12spc-job-5vg2j 0/1 Completed 0 12s 2、删除 删除jobkubectl delete -f pc-job.yaml CronJob 简称为CJ,CronJob控制器以 Job控制器资源为其管控对象,并借助它管理pod资源对象,Job控制器定义的作业任务在其控制器资源创建之后便会立即执行,但CronJob可以以类似于Linux操作系统的周期性任务作业计划的方式控制其运行时间点及重复运行的方式。也就是说,CronJob可以在特定的时间点(反复的)去运行job任务。可以理解为定时任务 配置模板 apiVersion: batch/v1beta1 版本号kind: CronJob 类型 metadata: 元数据name: rs名称 namespace: 所属命名空间 labels: 标签controller: cronjobspec: 详情描述schedule: cron格式的作业调度运行时间点,用于控制任务在什么时间执行concurrencyPolicy: 并发执行策略,用于定义前一次作业运行尚未完成时是否以及如何运行后一次的作业failedJobHistoryLimit: 为失败的任务执行保留的历史记录数,默认为1successfulJobHistoryLimit: 为成功的任务执行保留的历史记录数,默认为3startingDeadlineSeconds: 启动作业错误的超时时长jobTemplate: job控制器模板,用于为cronjob控制器生成job对象;下面其实就是job的定义metadata:spec:completions: 1parallelism: 1activeDeadlineSeconds: 30backoffLimit: 6manualSelector: trueselector:matchLabels:app: counter-podmatchExpressions: 规则- {key: app, operator: In, values: [counter-pod]}template:metadata:labels:app: counter-podspec:restartPolicy: Never containers:- name: counterimage: busybox:1.30command: ["bin/sh","-c","for i in 9 8 7 6 5 4 3 2 1; do echo $i;sleep 20;done"] cron表达式写法 需要重点解释的几个选项:schedule: cron表达式,用于指定任务的执行时间/1 <分钟> <小时> <日> <月份> <星期>分钟 值从 0 到 59.小时 值从 0 到 23.日 值从 1 到 31.月 值从 1 到 12.星期 值从 0 到 6, 0 代表星期日多个时间可以用逗号隔开; 范围可以用连字符给出;可以作为通配符; /表示每... 例如1 // 每个小时的第一分钟执行/1 // 每分钟都执行concurrencyPolicy:Allow: 允许Jobs并发运行(默认)Forbid: 禁止并发运行,如果上一次运行尚未完成,则跳过下一次运行Replace: 替换,取消当前正在运行的作业并用新作业替换它 1、创建cronJob 创建pc-cronjob.yaml,内容如下: apiVersion: batch/v1beta1kind: CronJobmetadata:name: pc-cronjobnamespace: devlabels:controller: cronjobspec:schedule: "/1 " 每分钟执行一次jobTemplate:metadata:spec:template:spec:restartPolicy: Nevercontainers:- name: counterimage: busybox:1.30command: ["bin/sh","-c","for i in 9 8 7 6 5 4 3 2 1; do echo $i;sleep 3;done"] 运行 创建cronjob[root@k8s-master01 ~] kubectl create -f pc-cronjob.yamlcronjob.batch/pc-cronjob created 查看cronjob[root@k8s-master01 ~] kubectl get cronjobs -n devNAME SCHEDULE SUSPEND ACTIVE LAST SCHEDULE AGEpc-cronjob /1 False 0 <none> 6s 查看job[root@k8s-master01 ~] kubectl get jobs -n devNAME COMPLETIONS DURATION AGEpc-cronjob-1592587800 1/1 28s 3m26spc-cronjob-1592587860 1/1 28s 2m26spc-cronjob-1592587920 1/1 28s 86s 查看pod[root@k8s-master01 ~] kubectl get pods -n devpc-cronjob-1592587800-x4tsm 0/1 Completed 0 2m24spc-cronjob-1592587860-r5gv4 0/1 Completed 0 84spc-cronjob-1592587920-9dxxq 1/1 Running 0 24s 2、删除cronjob kubectl delete -f pc-cronjob.yaml pod调度 什么是调度 默认情况下,一个pod在哪个node节点上运行,是通过scheduler组件采用相应的算法计算出来的,这个过程是不受人工控制的; 调度规则 但是在实际使用中,我们想控制某些pod定向到达某个节点上,应该怎么做呢?其实k8s提供了四类调度规则 调度方式 描述 自动调度 通过scheduler组件采用相应的算法计算得出运行在哪个节点上 定向调度 运行到指定的node节点上,通过NodeName、NodeSelector实现 亲和性调度 跟谁关系好就调度到哪个节点上 1、nodeAffinity :节点亲和性,调度到关系好的节点上 2、podAffinity:pod亲和性,调度到关系好的pod所在的节点上 3、PodAntAffinity:pod反清河行,调度到关系差的那个pod所在的节点上 污点(容忍)调度 污点是站在node的角度上的,比如果nodeA有一个污点,大家都别来,此时nodeA会拒绝master调度过来的pod 定向调度 指的是利用在pod上声明nodeName或nodeSelector的方式将pod调度到指定的pod节点上,因为这种定向调度是强制性的,所以如果node节点不存在的话,也会向上面进行调度,只不过pod会运行失败; 1、定向调度-> nodeName nodeName 是将pod强制调度到指定名称的node节点上,这种方式跳过了scheduler的调度逻辑,直接将pod调度到指定名称的节点上,配置文件内容如下 apiVersion: v1 版本号kind: Pod 资源类型metadata: name: pod-namenamespace: devspec: containers: - image: nginx:1.17.1name: nginx-containernodeName: node1 调度到node1节点上 2、定向调度 -> NodeSelector NodeSelector是将pod调度到添加了指定label标签的node节点上,它是通过k8s的label-selector机制实现的,也就是说,在创建pod之前,会由scheduler用matchNodeSelecto调度策略进行label标签的匹配,找出目标node,然后在将pod调度到目标node; 要实验NodeSelector,首先得给node节点加上label标签 kubectl label nodes node1 nodetag=node1 配置文件内容如下 apiVersion: v1 版本号kind: Pod 资源类型metadata: name: pod-namenamespace: devspec: containers: - image: nginx:1.17.1name: nginx-containernodeSelector: nodetag: node1 调度到具有nodetag=node1标签的节点上 本篇文章为转载内容。原文链接:https://blog.csdn.net/qq_27184497/article/details/121765387。 该文由互联网用户投稿提供,文中观点代表作者本人意见,并不代表本站的立场。 作为信息平台,本站仅提供文章转载服务,并不拥有其所有权,也不对文章内容的真实性、准确性和合法性承担责任。 如发现本文存在侵权、违法、违规或事实不符的情况,请及时联系我们,我们将第一时间进行核实并删除相应内容。
2023-09-29 09:08:28
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...serID、adID条件去查询用户点击广告的数据表,获得总的点击次数//这个时候基于点击次数判断是否属于黑名单点击int clickedCountTotalToday = 81 ;if (clickedCountTotalToday > 50) {return true;}else {return false ;} }});//map操作,找出用户的idJavaDStream<String> blackListuserIDBasedInBatchOnhistroy =blackListBasedOnHistory.map(new Function<Tuple2<String,Long>, String>() {public String call(Tuple2<String, Long> v1) throws Exception {// TODO Auto-generated method stubreturn v1._1.split("\t")[2];} });//有一个问题,数据可能重复,在一个partition里面重复,这个好办;//但多个partition不能保证一个用户重复,需要对黑名单的整个rdd进行去重操作。//rdd去重了,partition也就去重了,一石二鸟,一箭双雕// 找出了黑名单,下一步就写入黑名单数据库表中JavaDStream<String> blackListUniqueuserBasedInBatchOnhistroy = blackListuserIDBasedInBatchOnhistroy.transform(new Function<JavaRDD<String>, JavaRDD<String>>() {public JavaRDD<String> call(JavaRDD<String> rdd) throws Exception {// TODO Auto-generated method stubreturn rdd.distinct();} });// 下一步写入到数据表中blackListUniqueuserBasedInBatchOnhistroy.foreachRDD(new Function<JavaRDD<String>, Void>() {public Void call(JavaRDD<String> rdd) throws Exception {rdd.foreachPartition(new VoidFunction<Iterator<String>>() {public void call(Iterator<String> t) throws Exception {// TODO Auto-generated method stub//插入的用户信息可以只包含:useID//此时直接插入黑名单数据表即可。//写入数据库List<Object[]> blackList = new ArrayList<Object[]>();while(t.hasNext()) {blackList.add(new Object[]{t.next()});}JDBCWrapper jdbcWrapper = JDBCWrapper.getJDBCInstance();jdbcWrapper.doBatch("INSERT INTO blacklisttable values (?)", blackList);} });return null;} });/广告点击累计动态更新,每个updateStateByKey都会在Batch Duration的时间间隔的基础上进行广告点击次数的更新, 更新之后我们一般都会持久化到外部存储设备上,在这里我们存储到MySQL数据库中/JavaPairDStream<String, Long> updateStateByKeyDSteam = filteredadClickedStreaming.mapToPair(new PairFunction<Tuple2<String,String>, String, Long>() {public Tuple2<String, Long> call(Tuple2<String, String> t)throws Exception {String[] splited=t._2.split("\t");String timestamp = splited[0]; //YYYY-MM-DDString ip = splited[1];String userID = splited[2];String adID = splited[3];String province = splited[4];String city = splited[5]; String clickedRecord = timestamp + "_" +ip + "_"+userID+"_"+adID+"_"+province +"_"+city;return new Tuple2<String, Long>(clickedRecord, 1L);} }).updateStateByKey(new Function2<List<Long>, Optional<Long>, Optional<Long>>() {public Optional<Long> call(List<Long> v1, Optional<Long> v2)throws Exception {// v1:当前的Key在当前的Batch Duration中出现的次数的集合,例如{1,1,1,。。。,1}// v2:当前的Key在以前的Batch Duration中积累下来的结果;Long clickedTotalHistory = 0L; if(v2.isPresent()){clickedTotalHistory = v2.get();}for(Long one : v1) {clickedTotalHistory += one;}return Optional.of(clickedTotalHistory);} });updateStateByKeyDSteam.foreachRDD(new Function<JavaPairRDD<String,Long>, Void>() {public Void call(JavaPairRDD<String, Long> rdd) throws Exception {rdd.foreachPartition(new VoidFunction<Iterator<Tuple2<String,Long>>>() {public void call(Iterator<Tuple2<String, Long>> partition) throws Exception {//使用数据库连接池的高效读写数据库的方式将数据写入数据库mysql//例如一次插入 1000条 records,使用insertBatch 或 updateBatch//插入的用户数据信息:timestamp、adID、province、city//这里面有一个问题,可能出现两条记录的key是一样的,此时需要更新累加操作List<AdClicked> AdClickedList = new ArrayList<AdClicked>();while(partition.hasNext()) {Tuple2<String, Long> record = partition.next();String[] splited = record._1.split("\t");AdClicked adClicked = new AdClicked();adClicked.setTimestamp(splited[0]);adClicked.setAdID(splited[1]);adClicked.setProvince(splited[2]);adClicked.setCity(splited[3]);adClicked.setClickedCount(record._2);AdClickedList.add(adClicked);}final List<AdClicked> inserting = new ArrayList<AdClicked>();final List<AdClicked> updating = new ArrayList<AdClicked>();JDBCWrapper jdbcWrapper = JDBCWrapper.getJDBCInstance();//表的字段timestamp、ip、userID、adID、province、city、clickedCountfor(final AdClicked clicked : AdClickedList) {jdbcWrapper.doQuery("SELECT clickedCount FROM adclickedcount WHERE"+ " timestamp = ? AND adID = ? AND province = ? AND city = ?",new Object[]{clicked.getTimestamp(), clicked.getAdID(),clicked.getProvince(), clicked.getCity()}, new ExecuteCallBack() {public void resultCallBack(ResultSet result) throws Exception {// TODO Auto-generated method stubif(result.next()) {long count = result.getLong(1);clicked.setClickedCount(count);updating.add(clicked);} else {inserting.add(clicked);clicked.setClickedCount(1L);} }});}//表的字段timestamp、ip、userID、adID、province、city、clickedCountList<Object[]> insertParametersList = new ArrayList<Object[]>();for(AdClicked insertRecord : inserting) {insertParametersList.add(new Object[] {insertRecord.getTimestamp(),insertRecord.getAdID(),insertRecord.getProvince(),insertRecord.getCity(),insertRecord.getClickedCount()});}jdbcWrapper.doBatch("INSERT INTO adclickedcount VALUES(?, ?, ?, ?, ?)", insertParametersList);//表的字段timestamp、ip、userID、adID、province、city、clickedCountList<Object[]> updateParametersList = new ArrayList<Object[]>();for(AdClicked updateRecord : updating) {updateParametersList.add(new Object[] {updateRecord.getClickedCount(),updateRecord.getTimestamp(),updateRecord.getAdID(),updateRecord.getProvince(),updateRecord.getCity()});}jdbcWrapper.doBatch("UPDATE adclickedcount SET clickedCount = ? WHERE"+ " timestamp =? AND adID = ? AND province = ? AND city = ?", updateParametersList);} });return null;} });/ 对广告点击进行TopN计算,计算出每天每个省份Top5排名的广告 因为我们直接对RDD进行操作,所以使用了transfomr算子;/updateStateByKeyDSteam.transform(new Function<JavaPairRDD<String,Long>, JavaRDD<Row>>() {public JavaRDD<Row> call(JavaPairRDD<String, Long> rdd) throws Exception {JavaRDD<Row> rowRDD = rdd.mapToPair(new PairFunction<Tuple2<String,Long>, String, Long>() {public Tuple2<String, Long> call(Tuple2<String, Long> t)throws Exception {// TODO Auto-generated method stubString[] splited=t._1.split("_");String timestamp = splited[0]; //YYYY-MM-DDString adID = splited[3];String province = splited[4];String clickedRecord = timestamp + "_" + adID + "_" + province;return new Tuple2<String, Long>(clickedRecord, t._2);} }).reduceByKey(new Function2<Long, Long, Long>() {public Long call(Long v1, Long v2) throws Exception {// TODO Auto-generated method stubreturn v1 + v2;} }).map(new Function<Tuple2<String,Long>, Row>() {public Row call(Tuple2<String, Long> v1) throws Exception {// TODO Auto-generated method stubString[] splited=v1._1.split("_");String timestamp = splited[0]; //YYYY-MM-DDString adID = splited[3];String province = splited[4];return RowFactory.create(timestamp, adID, province, v1._2);} });StructType structType = DataTypes.createStructType(Arrays.asList(DataTypes.createStructField("timestamp", DataTypes.StringType, true),DataTypes.createStructField("adID", DataTypes.StringType, true),DataTypes.createStructField("province", DataTypes.StringType, true),DataTypes.createStructField("clickedCount", DataTypes.LongType, true)));HiveContext hiveContext = new HiveContext(rdd.context());DataFrame df = hiveContext.createDataFrame(rowRDD, structType);df.registerTempTable("topNTableSource");DataFrame result = hiveContext.sql("SELECT timestamp, adID, province, clickedCount, FROM"+ " (SELECT timestamp, adID, province,clickedCount, "+ "ROW_NUMBER() OVER(PARTITION BY province ORDER BY clickeCount DESC) rank "+ "FROM topNTableSource) subquery "+ "WHERE rank <= 5");return result.toJavaRDD();} }).foreachRDD(new Function<JavaRDD<Row>, Void>() {public Void call(JavaRDD<Row> rdd) throws Exception {// TODO Auto-generated method stubrdd.foreachPartition(new VoidFunction<Iterator<Row>>() {public void call(Iterator<Row> t) throws Exception {// TODO Auto-generated method stubList<AdProvinceTopN> adProvinceTopN = new ArrayList<AdProvinceTopN>();while(t.hasNext()) {Row row = t.next();AdProvinceTopN item = new AdProvinceTopN();item.setTimestamp(row.getString(0));item.setAdID(row.getString(1));item.setProvince(row.getString(2));item.setClickedCount(row.getLong(3));adProvinceTopN.add(item);}// final List<AdProvinceTopN> inserting = new ArrayList<AdProvinceTopN>();// final List<AdProvinceTopN> updating = new ArrayList<AdProvinceTopN>();JDBCWrapper jdbcWrapper = JDBCWrapper.getJDBCInstance();Set<String> set = new HashSet<String>();for(AdProvinceTopN item: adProvinceTopN){set.add(item.getTimestamp() + "_" + item.getProvince());}//表的字段timestamp、adID、province、clickedCountArrayList<Object[]> deleteParametersList = new ArrayList<Object[]>();for(String deleteRecord : set) {String[] splited = deleteRecord.split("_");deleteParametersList.add(new Object[]{splited[0],splited[1]});}jdbcWrapper.doBatch("DELETE FROM adprovincetopn WHERE timestamp = ? AND province = ?", deleteParametersList);//表的字段timestamp、ip、userID、adID、province、city、clickedCountList<Object[]> insertParametersList = new ArrayList<Object[]>();for(AdProvinceTopN insertRecord : adProvinceTopN) {insertParametersList.add(new Object[] {insertRecord.getClickedCount(),insertRecord.getTimestamp(),insertRecord.getAdID(),insertRecord.getProvince()});}jdbcWrapper.doBatch("INSERT INTO adprovincetopn VALUES (?, ?, ?, ?)", insertParametersList);} });return null;} });/ 计算过去半个小时内广告点击的趋势 广告点击的基本数据格式:timestamp、ip、userID、adID、province、city/filteredadClickedStreaming.mapToPair(new PairFunction<Tuple2<String,String>, String, Long>() {public Tuple2<String, Long> call(Tuple2<String, String> t)throws Exception {String splited[] = t._2.split("\t");String adID = splited[3];String time = splited[0]; //Todo:后续需要重构代码实现时间戳和分钟的转换提取。此处需要提取出该广告的点击分钟单位return new Tuple2<String, Long>(time + "_" + adID, 1L);} }).reduceByKeyAndWindow(new Function2<Long, Long, Long>() {public Long call(Long v1, Long v2) throws Exception {// TODO Auto-generated method stubreturn v1 + v2;} }, new Function2<Long, Long, Long>() {public Long call(Long v1, Long v2) throws Exception {// TODO Auto-generated method stubreturn v1 - v2;} }, Durations.minutes(30), Durations.milliseconds(5)).foreachRDD(new Function<JavaPairRDD<String,Long>, Void>() {public Void call(JavaPairRDD<String, Long> rdd) throws Exception {// TODO Auto-generated method stubrdd.foreachPartition(new VoidFunction<Iterator<Tuple2<String,Long>>>() {public void call(Iterator<Tuple2<String, Long>> partition)throws Exception {List<AdTrendStat> adTrend = new ArrayList<AdTrendStat>();// TODO Auto-generated method stubwhile(partition.hasNext()) {Tuple2<String, Long> record = partition.next();String[] splited = record._1.split("_");String time = splited[0];String adID = splited[1];Long clickedCount = record._2;/ 在插入数据到数据库的时候具体需要哪些字段?time、adID、clickedCount; 而我们通过J2EE技术进行趋势绘图的时候肯定是需要年、月、日、时、分这个维度的,所以我们在这里需要 年月日、小时、分钟这些时间维度;/AdTrendStat adTrendStat = new AdTrendStat();adTrendStat.setAdID(adID);adTrendStat.setClickedCount(clickedCount);adTrendStat.set_date(time); //Todo:获取年月日adTrendStat.set_hour(time); //Todo:获取小时adTrendStat.set_minute(time);//Todo:获取分钟adTrend.add(adTrendStat);}final List<AdTrendStat> inserting = new ArrayList<AdTrendStat>();final List<AdTrendStat> updating = new ArrayList<AdTrendStat>();JDBCWrapper jdbcWrapper = JDBCWrapper.getJDBCInstance();//表的字段timestamp、ip、userID、adID、province、city、clickedCountfor(final AdTrendStat trend : adTrend) {final AdTrendCountHistory adTrendhistory = new AdTrendCountHistory();jdbcWrapper.doQuery("SELECT clickedCount FROM adclickedtrend WHERE"+ " date =? AND hour = ? AND minute = ? AND AdID = ?",new Object[]{trend.get_date(), trend.get_hour(), trend.get_minute(),trend.getAdID()}, new ExecuteCallBack() {public void resultCallBack(ResultSet result) throws Exception {// TODO Auto-generated method stubif(result.next()) {long count = result.getLong(1);adTrendhistory.setClickedCountHistoryLong(count);updating.add(trend);} else { inserting.add(trend);} }});}//表的字段date、hour、minute、adID、clickedCountList<Object[]> insertParametersList = new ArrayList<Object[]>();for(AdTrendStat insertRecord : inserting) {insertParametersList.add(new Object[] {insertRecord.get_date(),insertRecord.get_hour(),insertRecord.get_minute(),insertRecord.getAdID(),insertRecord.getClickedCount()});}jdbcWrapper.doBatch("INSERT INTO adclickedtrend VALUES(?, ?, ?, ?, ?)", insertParametersList);//表的字段date、hour、minute、adID、clickedCountList<Object[]> updateParametersList = new ArrayList<Object[]>();for(AdTrendStat updateRecord : updating) {updateParametersList.add(new Object[] {updateRecord.getClickedCount(),updateRecord.get_date(),updateRecord.get_hour(),updateRecord.get_minute(),updateRecord.getAdID()});}jdbcWrapper.doBatch("UPDATE adclickedtrend SET clickedCount = ? WHERE"+ " date =? AND hour = ? AND minute = ? AND AdID = ?", updateParametersList);} });return null;} });;/ Spark Streaming 执行引擎也就是Driver开始运行,Driver启动的时候是位于一条新的线程中的,当然其内部有消息循环体,用于 接收应用程序本身或者Executor中的消息,/javassc.start();javassc.awaitTermination();javassc.close();}private static JavaStreamingContext createContext(String checkpointDirectory, SparkConf conf) {// If you do not see this printed, that means the StreamingContext has been loaded// from the new checkpointSystem.out.println("Creating new context");// Create the context with a 5 second batch sizeJavaStreamingContext ssc = new JavaStreamingContext(conf, Durations.seconds(10));ssc.checkpoint(checkpointDirectory);return ssc;} }class JDBCWrapper {private static JDBCWrapper jdbcInstance = null;private static LinkedBlockingQueue<Connection> dbConnectionPool = new LinkedBlockingQueue<Connection>();static {try {Class.forName("com.mysql.jdbc.Driver");} catch (ClassNotFoundException e) {// TODO Auto-generated catch blocke.printStackTrace();} }public static JDBCWrapper getJDBCInstance() {if(jdbcInstance == null) {synchronized (JDBCWrapper.class) {if(jdbcInstance == null) {jdbcInstance = new JDBCWrapper();} }}return jdbcInstance; }private JDBCWrapper() {for(int i = 0; i < 10; i++){try {Connection conn = DriverManager.getConnection("jdbc:mysql://Master:3306/sparkstreaming","root", "root");dbConnectionPool.put(conn);} catch (Exception e) {// TODO Auto-generated catch blocke.printStackTrace();} } }public synchronized Connection getConnection() {while(0 == dbConnectionPool.size()){try {Thread.sleep(20);} catch (InterruptedException e) {// TODO Auto-generated catch blocke.printStackTrace();} }return dbConnectionPool.poll();}public int[] doBatch(String sqlText, List<Object[]> paramsList){Connection conn = getConnection();PreparedStatement preparedStatement = null;int[] result = null;try {conn.setAutoCommit(false);preparedStatement = conn.prepareStatement(sqlText);for(Object[] parameters: paramsList) {for(int i = 0; i < parameters.length; i++){preparedStatement.setObject(i + 1, parameters[i]);} preparedStatement.addBatch();}result = preparedStatement.executeBatch();conn.commit();} catch (SQLException e) {// TODO Auto-generated catch blocke.printStackTrace();} finally {if(preparedStatement != null) {try {preparedStatement.close();} catch (SQLException e) {// TODO Auto-generated catch blocke.printStackTrace();} }if(conn != null) {try {dbConnectionPool.put(conn);} catch (InterruptedException e) {// TODO Auto-generated catch blocke.printStackTrace();} }}return result; }public void doQuery(String sqlText, Object[] paramsList, ExecuteCallBack callback){Connection conn = getConnection();PreparedStatement preparedStatement = null;ResultSet result = null;try {preparedStatement = conn.prepareStatement(sqlText);for(int i = 0; i < paramsList.length; i++){preparedStatement.setObject(i + 1, paramsList[i]);} result = preparedStatement.executeQuery();try {callback.resultCallBack(result);} catch (Exception e) {// TODO Auto-generated catch blocke.printStackTrace();} } catch (SQLException e) {// TODO Auto-generated catch blocke.printStackTrace();} finally {if(preparedStatement != null) {try {preparedStatement.close();} catch (SQLException e) {// TODO Auto-generated catch blocke.printStackTrace();} }if(conn != null) {try {dbConnectionPool.put(conn);} catch (InterruptedException e) {// TODO Auto-generated catch blocke.printStackTrace();} }} }}interface ExecuteCallBack {void resultCallBack(ResultSet result) throws Exception;}class UserAdClicked {private String timestamp;private String ip;private String userID;private String adID;private String province;private String city;private Long clickedCount;public String getTimestamp() {return timestamp;}public void setTimestamp(String timestamp) {this.timestamp = timestamp;}public String getIp() {return ip;}public void setIp(String ip) {this.ip = ip;}public String getUserID() {return userID;}public void setUserID(String userID) {this.userID = userID;}public String getAdID() {return adID;}public void setAdID(String adID) {this.adID = adID;}public String getProvince() {return province;}public void setProvince(String province) {this.province = province;}public String getCity() {return city;}public void setCity(String city) {this.city = city;}public Long getClickedCount() {return clickedCount;}public void setClickedCount(Long clickedCount) {this.clickedCount = clickedCount;} }class AdClicked {private String timestamp;private String adID;private String province;private String city;private Long clickedCount;public String getTimestamp() {return timestamp;}public void setTimestamp(String timestamp) {this.timestamp = timestamp;}public String getAdID() {return adID;}public void setAdID(String adID) {this.adID = adID;}public String getProvince() {return province;}public void setProvince(String province) {this.province = province;}public String getCity() {return city;}public void setCity(String city) {this.city = city;}public Long getClickedCount() {return clickedCount;}public void setClickedCount(Long clickedCount) {this.clickedCount = clickedCount;} }class AdProvinceTopN {private String timestamp;private String adID;private String province;private Long clickedCount;public String getTimestamp() {return timestamp;}public void setTimestamp(String timestamp) {this.timestamp = timestamp;}public String getAdID() {return adID;}public void setAdID(String adID) {this.adID = adID;}public String getProvince() {return province;}public void setProvince(String province) {this.province = province;}public Long getClickedCount() {return clickedCount;}public void setClickedCount(Long clickedCount) {this.clickedCount = clickedCount;} }class AdTrendStat {private String _date;private String _hour;private String _minute;private String adID;private Long clickedCount;public String get_date() {return _date;}public void set_date(String _date) {this._date = _date;}public String get_hour() {return _hour;}public void set_hour(String _hour) {this._hour = _hour;}public String get_minute() {return _minute;}public void set_minute(String _minute) {this._minute = _minute;}public String getAdID() {return adID;}public void setAdID(String adID) {this.adID = adID;}public Long getClickedCount() {return clickedCount;}public void setClickedCount(Long clickedCount) {this.clickedCount = clickedCount;} }class AdTrendCountHistory{private Long clickedCountHistoryLong;public Long getClickedCountHistoryLong() {return clickedCountHistoryLong;}public void setClickedCountHistoryLong(Long clickedCountHistoryLong) {this.clickedCountHistoryLong = clickedCountHistoryLong;} } 本篇文章为转载内容。原文链接:https://blog.csdn.net/tom_8899_li/article/details/71194434。 该文由互联网用户投稿提供,文中观点代表作者本人意见,并不代表本站的立场。 作为信息平台,本站仅提供文章转载服务,并不拥有其所有权,也不对文章内容的真实性、准确性和合法性承担责任。 如发现本文存在侵权、违法、违规或事实不符的情况,请及时联系我们,我们将第一时间进行核实并删除相应内容。
2023-02-14 19:16:35
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....匹配源/目的IP 条件:指定dl_type=0x0800,或者ip/tcp ovs-ofctl add-flow br0 ip,in_port=1,nw_src=10.10.0.0/16,actions=output:2 ovs-ofctl add-flow br0 ip,in_port=1,nw_dst=10.20.0.0/16,actions=output:2 1 2 6.匹配协议号,范围为0-255 条件:指定dl_type=0x0800或者ip ICMP ovs-ofctl add-flow br0 ip,in_port=1,nw_proto=1,actions=output:2 7.匹配IP ToS/DSCP,tos范围为0-255,DSCP范围为0-63 条件:指定dl_type=0x0800/0x86dd,并且ToS低2位会被忽略(DSCP值为ToS的高6位,并且低2位为预留位) ovs-ofctl add-flow br0 ip,in_port=1,nw_tos=68,actions=output:2 ovs-ofctl add-flow br0 ip,in_port=1,ip_dscp=62,actions=output:2 8.匹配IP ecn位,范围为0-3 条件:指定dl_type=0x0800/0x86dd ovs-ofctl add-flow br0 ip,in_port=1,ip_ecn=2,actions=output:2 9.匹配IP TTL,范围为0-255 ovs-ofctl add-flow br0 ip,in_port=1,nw_ttl=128,actions=output:2 10.匹配tcp/udp,源/目的端口,范围为0-65535 匹配源tcp端口179 ovs-ofctl add-flow br0 tcp,tcp_src=179/0xfff0,actions=output:2 匹配目的tcp端口179 ovs-ofctl add-flow br0 tcp,tcp_dst=179/0xfff0,actions=output:2 匹配源udp端口1234 ovs-ofctl add-flow br0 udp,udp_src=1234/0xfff0,actions=output:2 匹配目的udp端口1234 ovs-ofctl add-flow br0 udp,udp_dst=1234/0xfff0,actions=output:2 11.匹配tcp flags tcp flags=fin,syn,rst,psh,ack,urg,ece,cwr,ns ovs-ofctl add-flow br0 tcp,tcp_flags=ack,actions=output:2 12.匹配icmp code,范围为0-255 条件:指定icmp ovs-ofctl add-flow br0 icmp,icmp_code=2,actions=output:2 13.匹配vlan TCI TCI低12位为vlan id,高3位为priority,例如tci=0xf123则vlan_id为0x123和vlan_pcp=7 ovs-ofctl add-flow br0 in_port=1,vlan_tci=0xf123,actions=output:2 14.匹配mpls label 条件:指定dl_type=0x8847/0x8848 ovs-ofctl add-flow br0 mpls,in_port=1,mpls_label=7,actions=output:2 15.匹配mpls tc,范围为0-7 条件:指定dl_type=0x8847/0x8848 ovs-ofctl add-flow br0 mpls,in_port=1,mpls_tc=7,actions=output:2 1 16.匹配tunnel id,源/目的IP 匹配tunnel id ovs-ofctl add-flow br0 in_port=1,tun_id=0x7/0xf,actions=output:2 匹配tunnel源IP ovs-ofctl add-flow br0 in_port=1,tun_src=192.168.1.0/255.255.255.0,actions=output:2 匹配tunnel目的IP ovs-ofctl add-flow br0 in_port=1,tun_dst=192.168.1.0/255.255.255.0,actions=output:2 一些匹配项的速记符 速记符 匹配项 ip dl_type=0x800 ipv6 dl_type=0x86dd icmp dl_type=0x0800,nw_proto=1 icmp6 dl_type=0x86dd,nw_proto=58 tcp dl_type=0x0800,nw_proto=6 tcp6 dl_type=0x86dd,nw_proto=6 udp dl_type=0x0800,nw_proto=17 udp6 dl_type=0x86dd,nw_proto=17 sctp dl_type=0x0800,nw_proto=132 sctp6 dl_type=0x86dd,nw_proto=132 arp dl_type=0x0806 rarp dl_type=0x8035 mpls dl_type=0x8847 mplsm dl_type=0x8848 指令动作 1.动作为出接口 从指定接口转发出去 ovs-ofctl add-flow br0 in_port=1,actions=output:2 1 2.动作为指定group group id为已创建的group table ovs-ofctl add-flow br0 in_port=1,actions=group:666 1 3.动作为normal 转为L2/L3处理流程 ovs-ofctl add-flow br0 in_port=1,actions=normal 1 4.动作为flood 从所有物理接口转发出去,除了入接口和已关闭flooding的接口 ovs-ofctl add-flow br0 in_port=1,actions=flood 1 5.动作为all 从所有物理接口转发出去,除了入接口 ovs-ofctl add-flow br0 in_port=1,actions=all 1 6.动作为local 一般是转发给本地网桥 ovs-ofctl add-flow br0 in_port=1,actions=local 1 7.动作为in_port 从入接口转发回去 ovs-ofctl add-flow br0 in_port=1,actions=in_port 1 8.动作为controller 以packet-in消息上送给控制器 ovs-ofctl add-flow br0 in_port=1,actions=controller 1 9.动作为drop 丢弃数据包操作 ovs-ofctl add-flow br0 in_port=1,actions=drop 1 10.动作为mod_vlan_vid 修改报文的vlan id,该选项会使vlan_pcp置为0 ovs-ofctl add-flow br0 in_port=1,actions=mod_vlan_vid:8,output:2 1 11.动作为mod_vlan_pcp 修改报文的vlan优先级,该选项会使vlan_id置为0 ovs-ofctl add-flow br0 in_port=1,actions=mod_vlan_pcp:7,output:2 1 12.动作为strip_vlan 剥掉报文内外层vlan tag ovs-ofctl add-flow br0 in_port=1,actions=strip_vlan,output:2 1 13.动作为push_vlan 在报文外层压入一层vlan tag,需要使用openflow1.1以上版本兼容 ovs-ofctl add-flow -O OpenFlow13 br0 in_port=1,actions=push_vlan:0x8100,set_field:4097-\>vlan_vid,output:2 1 ps: set field值为4096+vlan_id,并且vlan优先级为0,即4096-8191,对应的vlan_id为0-4095 14.动作为push_mpls 修改报文的ethertype,并且压入一个MPLS LSE ovs-ofctl add-flow br0 in_port=1,actions=push_mpls:0x8847,set_field:10-\>mpls_label,output:2 1 15.动作为pop_mpls 剥掉最外层mpls标签,并且修改ethertype为非mpls类型 ovs-ofctl add-flow br0 mpls,in_port=1,mpls_label=20,actions=pop_mpls:0x0800,output:2 1 16.动作为修改源/目的MAC,修改源/目的IP 修改源MAC ovs-ofctl add-flow br0 in_port=1,actions=mod_dl_src:00:00:00:00:00:01,output:2 修改目的MAC ovs-ofctl add-flow br0 in_port=1,actions=mod_dl_dst:00:00:00:00:00:01,output:2 修改源IP ovs-ofctl add-flow br0 in_port=1,actions=mod_nw_src:192.168.1.1,output:2 修改目的IP ovs-ofctl add-flow br0 in_port=1,actions=mod_nw_dst:192.168.1.1,output:2 17.动作为修改TCP/UDP/SCTP源目的端口 修改TCP源端口 ovs-ofctl add-flow br0 tcp,in_port=1,actions=mod_tp_src:67,output:2 修改TCP目的端口 ovs-ofctl add-flow br0 tcp,in_port=1,actions=mod_tp_dst:68,output:2 修改UDP源端口 ovs-ofctl add-flow br0 udp,in_port=1,actions=mod_tp_src:67,output:2 修改UDP目的端口 ovs-ofctl add-flow br0 udp,in_port=1,actions=mod_tp_dst:68,output:2 18.动作为mod_nw_tos 条件:指定dl_type=0x0800 修改ToS字段的高6位,范围为0-255,值必须为4的倍数,并且不会去修改ToS低2位ecn值 ovs-ofctl add-flow br0 ip,in_port=1,actions=mod_nw_tos:68,output:2 1 19.动作为mod_nw_ecn 条件:指定dl_type=0x0800,需要使用openflow1.1以上版本兼容 修改ToS字段的低2位,范围为0-3,并且不会去修改ToS高6位的DSCP值 ovs-ofctl add-flow br0 ip,in_port=1,actions=mod_nw_ecn:2,output:2 1 20.动作为mod_nw_ttl 修改IP报文ttl值,需要使用openflow1.1以上版本兼容 ovs-ofctl add-flow -O OpenFlow13 br0 in_port=1,actions=mod_nw_ttl:6,output:2 1 21.动作为dec_ttl 对IP报文进行ttl自减操作 ovs-ofctl add-flow br0 in_port=1,actions=dec_ttl,output:2 1 22.动作为set_mpls_label 对报文最外层mpls标签进行修改,范围为20bit值 ovs-ofctl add-flow br0 in_port=1,actions=set_mpls_label:666,output:2 1 23.动作为set_mpls_tc 对报文最外层mpls tc进行修改,范围为0-7 ovs-ofctl add-flow br0 in_port=1,actions=set_mpls_tc:7,output:2 1 24.动作为set_mpls_ttl 对报文最外层mpls ttl进行修改,范围为0-255 ovs-ofctl add-flow br0 in_port=1,actions=set_mpls_ttl:255,output:2 1 25.动作为dec_mpls_ttl 对报文最外层mpls ttl进行自减操作 ovs-ofctl add-flow br0 in_port=1,actions=dec_mpls_ttl,output:2 1 26.动作为move NXM字段 使用move参数对NXM字段进行操作 将报文源MAC复制到目的MAC字段,并且将源MAC改为00:00:00:00:00:01 ovs-ofctl add-flow br0 in_port=1,actions=move:NXM_OF_ETH_SRC[]-\>NXM_OF_ETH_DST[],mod_dl_src:00:00:00:00:00:01,output:2 1 2 ps: 常用NXM字段参照表 NXM字段 报文字段 NXM_OF_ETH_SRC 源MAC NXM_OF_ETH_DST 目的MAC NXM_OF_ETH_TYPE 以太网类型 NXM_OF_VLAN_TCI vid NXM_OF_IP_PROTO IP协议号 NXM_OF_IP_TOS IP ToS值 NXM_NX_IP_ECN IP ToS ECN NXM_OF_IP_SRC 源IP NXM_OF_IP_DST 目的IP NXM_OF_TCP_SRC TCP源端口 NXM_OF_TCP_DST TCP目的端口 NXM_OF_UDP_SRC UDP源端口 NXM_OF_UDP_DST UDP目的端口 NXM_OF_SCTP_SRC SCTP源端口 NXM_OF_SCTP_DST SCTP目的端口 27.动作为load NXM字段 使用load参数对NXM字段进行赋值操作 push mpls label,并且把10(0xa)赋值给mpls label ovs-ofctl add-flow br0 in_port=1,actions=push_mpls:0x8847,load:0xa-\>OXM_OF_MPLS_LABEL[],output:2 对目的MAC进行赋值 ovs-ofctl add-flow br0 in_port=1,actions=load:0x001122334455-\>OXM_OF_ETH_DST[],output:2 1 2 3 4 28.动作为pop_vlan 弹出报文最外层vlan tag ovs-ofctl add-flow br0 in_port=1,dl_type=0x8100,dl_vlan=777,actions=pop_vlan,output:2 1 meter表 常用操作 由于meter表是openflow1.3版本以后才支持,所以所有命令需要指定OpenFlow1.3版本以上 ps: 在openvswitch-v2.8之前的版本中,还不支持meter 在v2.8版本之后已经实现,要正常使用的话,需要注意的是datapath类型要指定为netdev,band type暂时只支持drop,还不支持DSCP REMARK 1.查看当前设备对meter的支持 ovs-ofctl -O OpenFlow13 meter-features br0 2.查看meter表 ovs-ofctl -O OpenFlow13 dump-meters br0 3.查看meter统计 ovs-ofctl -O OpenFlow13 meter-stats br0 4.创建meter表 限速类型以kbps(kilobits per second)计算,超过20kb/s则丢弃 ovs-ofctl -O OpenFlow13 add-meter br0 meter=1,kbps,band=type=drop,rate=20 同上,增加burst size参数 ovs-ofctl -O OpenFlow13 add-meter br0 meter=2,kbps,band=type=drop,rate=20,burst_size=256 同上,增加stats参数,对meter进行计数统计 ovs-ofctl -O OpenFlow13 add-meter br0 meter=3,kbps,stats,band=type=drop,rate=20,burst_size=256 限速类型以pktps(packets per second)计算,超过1000pkt/s则丢弃 ovs-ofctl -O OpenFlow13 add-meter br0 meter=4,pktps,band=type=drop,rate=1000 5.删除meter表 删除全部meter表 ovs-ofctl -O OpenFlow13 del-meters br0 删除meter id=1 ovs-ofctl -O OpenFlow13 del-meter br0 meter=1 6.创建流表 ovs-ofctl -O OpenFlow13 add-flow br0 in_port=1,actions=meter:1,output:2 group表 由于group表是openflow1.1版本以后才支持,所以所有命令需要指定OpenFlow1.1版本以上 常用操作 group table支持4种类型 all:所有buckets都执行一遍 select: 每次选择其中一个bucket执行,常用于负载均衡应用 ff(FAST FAILOVER):快速故障修复,用于检测解决接口等故障 indirect:间接执行,类似于一个函数方法,被另一个group来调用 1.查看当前设备对group的支持 ovs-ofctl -O OpenFlow13 dump-group-features br0 2.查看group表 ovs-ofctl -O OpenFlow13 dump-groups br0 3.创建group表 类型为all ovs-ofctl -O OpenFlow13 add-group br0 group_id=1,type=all,bucket=output:1,bucket=output:2,bucket=output:3 类型为select ovs-ofctl -O OpenFlow13 add-group br0 group_id=2,type=select,bucket=output:1,bucket=output:2,bucket=output:3 类型为select,指定hash方法(5元组,OpenFlow1.5+) ovs-ofctl -O OpenFlow15 add-group br0 group_id=3,type=select,selection_method=hash,fields=ip_src,bucket=output:2,bucket=output:3 4.删除group表 ovs-ofctl -O OpenFlow13 del-groups br0 group_id=2 5.创建流表 ovs-ofctl -O OpenFlow13 add-flow br0 in_port=1,actions=group:2 goto table配置 数据流先从table0开始匹配,如actions有goto_table,再进行后续table的匹配,实现多级流水线,如需使用goto table,则创建流表时,指定table id,范围为0-255,不指定则默认为table0 1.在table0中添加一条流表条目 ovs-ofctl add-flow br0 table=0,in_port=1,actions=goto_table=1 2.在table1中添加一条流表条目 ovs-ofctl add-flow br0 table=1,ip,nw_dst=10.10.0.0/16,actions=output:2 tunnel配置 如需配置tunnel,必需确保当前系统对各tunnel的remote ip网络可达 gre 1.创建一个gre接口,并且指定端口id=1001 ovs-vsctl add-port br0 gre1 -- set Interface gre1 type=gre options:remote_ip=1.1.1.1 ofport_request=1001 2.可选选项 将tos或者ttl在隧道上继承,并将tunnel id设置成123 ovs-vsctl set Interface gre1 options:tos=inherit options:ttl=inherit options:key=123 3.创建关于gre流表 封装gre转发 ovs-ofctl add-flow br0 ip,in_port=1,nw_dst=10.10.0.0/16,actions=output:1001 解封gre转发 ovs-ofctl add-flow br0 in_port=1001,actions=output:1 vxlan 1.创建一个vxlan接口,并且指定端口id=2001 ovs-vsctl add-port br0 vxlan1 -- set Interface vxlan1 type=vxlan options:remote_ip=1.1.1.1 ofport_request=2001 2.可选选项 将tos或者ttl在隧道上继承,将vni设置成123,UDP目的端为设置成8472(默认为4789) ovs-vsctl set Interface vxlan1 options:tos=inherit options:ttl=inherit options:key=123 options:dst_port=8472 3.创建关于vxlan流表 封装vxlan转发 ovs-ofctl add-flow br0 ip,in_port=1,nw_dst=10.10.0.0/16,actions=output:2001 解封vxlan转发 ovs-ofctl add-flow br0 in_port=2001,actions=output:1 sflow配置 1.对网桥br0进行sflow监控 agent: 与collector通信所在的网口名,通常为管理口 target: collector监听的IP地址和端口,端口默认为6343 header: sFlow在采样时截取报文头的长度 polling: 采样时间间隔,单位为秒 ovs-vsctl -- --id=@sflow create sflow agent=eth0 target=\"10.0.0.1:6343\" header=128 sampling=64 polling=10 -- set bridge br0 sflow=@sflow 2.查看创建的sflow ovs-vsctl list sflow 3.删除对应的网桥sflow配置,参数为sFlow UUID ovs-vsctl remove bridge br0 sflow 7b9b962e-fe09-407c-b224-5d37d9c1f2b3 4.删除网桥下所有sflow配置 ovs-vsctl -- clear bridge br0 sflow 1 QoS配置 ingress policing 1.配置ingress policing,对接口eth0入流限速10Mbps ovs-vsctl set interface eth0 ingress_policing_rate=10000 ovs-vsctl set interface eth0 ingress_policing_burst=8000 2.清除相应接口的ingress policer配置 ovs-vsctl set interface eth0 ingress_policing_rate=0 ovs-vsctl set interface eth0 ingress_policing_burst=0 3.查看接口ingress policer配置 ovs-vsctl list interface eth0 4.查看网桥支持的Qos类型 ovs-appctl qos/show-types br0 端口镜像配置 1.配置eth0收到/发送的数据包镜像到eth1 ovs-vsctl -- set bridge br0 mirrors=@m \ -- --id=@eth0 get port eth0 \ -- --id=@eth1 get port eth1 \ -- --id=@m create mirror name=mymirror select-dst-port=@eth0 select-src-port=@eth0 output-port=@eth1 2.删除端口镜像配置 ovs-vsctl -- --id=@m get mirror mymirror -- remove bridge br0 mirrors @m 3.清除网桥下所有端口镜像配置 ovs-vsctl clear bridge br0 mirrors 4.查看端口镜像配置 ovs-vsctl get bridge br0 mirrors Open vSwitch中有多个命令,分别有不同的作用,大致如下: ovs-vsctl用于控制ovs db ovs-ofctl用于管理OpenFlow switch 的 flow ovs-dpctl用于管理ovs的datapath ovs-appctl用于查询和管理ovs daemon 转载于:https://www.cnblogs.com/liuhongru/p/10336849.html 本篇文章为转载内容。原文链接:https://blog.csdn.net/weixin_30876945/article/details/99916308。 该文由互联网用户投稿提供,文中观点代表作者本人意见,并不代表本站的立场。 作为信息平台,本站仅提供文章转载服务,并不拥有其所有权,也不对文章内容的真实性、准确性和合法性承担责任。 如发现本文存在侵权、违法、违规或事实不符的情况,请及时联系我们,我们将第一时间进行核实并删除相应内容。
2023-06-08 17:13:19
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...企业,总会找到适合你条件的合适职位和选择。第三,可以参与比较大的技术团体,形成独特的生活与社交圈。用8848公司cto张研的话来说,“如果周围都是高手,你不是高手也难”,所以地域对人影响最大的是提供了一个环境,其次才是机会和薪水。 对此,telelogic公司北方区总经理任群力建议说,“如果开发人员能够善于利用互联网,并有决心多学习,这种地域差异会得到弱化。” 我拿青春赌明天 在本次专题组织中,大部分被采访人都明确表示,自己会在软件业领域一直奋斗下去,因为从中得到了很多的快乐与激情。但明天是否一定会更好,这需要从两个角度去考虑:一是从个人角度讲,年轻的软件人一定要有个人职业的规划,而且这种规划要从自己特点或专长出发,与当前业界相适应。另外,更重要的是,个人发展到什么程度,还需要同整个软件大环境和社会环境挂钩。 个人职业要规划 现在广州做了4年delphi/c行业开发、年薪10万的王旋说,“工作后所得到的收获就是,学习和工作要有相对明确的目标,不能因为一时心动而去学习某一技术。在真正下决定之前,我通常会考虑更多因素,包括长期的发展、个人路线的规划、需要付出的代价、可能遇到的困难以及解决的办法等等,在决定后还会制定更加明确的计划,包括短期、中期和长期的,身边可以利用到的资源,以及每一个阶段是怎么过渡到更高阶段的计划。” 现在,越来越多的在职人员意识到,未来的职业细分市场中,只有在某一领域确实比较深入、具有专长和资源的人会得到企业的重视,浪里淘沙勇者胜。 中国软件业面临困境 中国的软件业发展目前面临两难境地。上至国家,下至各城市都给予了相当的政策优惠,但整体软件业的发展却一直雷声大,雨点小。对此,北航软件学院院长孙伟忧心忡忡,“很多人从心里看不起印度,但印度的软件业却有数家2万、3万员工规模的大企业,放眼中国,规模最大的东软集团、用友公司,真正的软件开发者也不过两、三千人,这种差别太巨大了,我们一定要好好思考,中国的软件业究竟出了什么问题?” 对此,很多专家认为,中国软件业已经面临一个新的转折点,随着信息化在各行各业的深入运用,软件业有机会深度专业化,由边缘而进入核心,从而形成以深度专业化为特征的核心竞争力。无论个人还是公司,我们都有幸在第一时间站在了软件业这块前沿阵地,但明天是否会更好,还有待于中国软件业的整体发展,在这颇为沉闷的时刻,我们期望“让暴风雨来得更猛烈些吧”! 参考资料:http://www.w-training.com/viewc.asp?id=23922 ====================================================== 在最后,我邀请大家参加新浪APP,就是新浪免费送大家的一个空间,支持PHP+MySql,免费二级域名,免费域名绑定 这个是我邀请的地址,您通过这个链接注册即为我的好友,并获赠云豆500个,价值5元哦!短网址是http://t.cn/SXOiLh我创建的小站每天访客已经达到2000+了,每天挂广告赚50+元哦,呵呵,饭钱不愁了,\(^o^)/ 本篇文章为转载内容。原文链接:https://blog.csdn.net/javazhuanzai/article/details/7189396。 该文由互联网用户投稿提供,文中观点代表作者本人意见,并不代表本站的立场。 作为信息平台,本站仅提供文章转载服务,并不拥有其所有权,也不对文章内容的真实性、准确性和合法性承担责任。 如发现本文存在侵权、违法、违规或事实不符的情况,请及时联系我们,我们将第一时间进行核实并删除相应内容。
2023-12-24 09:01:26
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...专打; 三、使用前提条件: 1、IE6以上版本、Chrome(谷歌浏览器)4.0以上版本、Firefox 4.0以上版本、Opera 11以上版本、Safari 5.0.2以上版本、iOS 4.2以上版本 或使用Chrome内核、Firefox内核的浏览器均可直接使用本打印系统; 2、在进行打印前,需要先设计好打印模板(模板设计器请见第五节); 3、打印数据必须Json的格式发送给打印服务器,并且数据必须满足指定的格式(见下文); 四、数据格式说明: 下面以一个跨境电商快递面单数据为例解释一下数据各项的含义; { "template": "waybill.fr3", /打印模板文件名。除了指定模板文件以外,还支持把模板嵌入到数据文件中,以实现在服务器端灵活使用打印模板,格式如下:/ /"template": "base64:QTBBRTNEQTE3MkFFQjIzNEFERD<后面省略>" / "ver": 4, /数据模板文件版本/ "Copies": 3, /打印份数,支持指定打印份数/ "Duplex": 1, /是否双面打印,0:默认,不双面,1:垂直,2:水平,3:单面打印(simplex)/ "Printer": "priPrinter", /指定打印机,本系统支持在数据文件中指定打印机,也支持在打印模板中指定打印机/ "PageNumbers": "", /要打印的页码范围,同打印机的打印设置里的格式相同,例如:"1,2,3"表示打印前3页, “2-5”:表示打印第2到5页,“1,2,4-8”表示打印第1、2、4到8页/ "Preview": 1, /是否预览,跟主界面上选择“预览”效果相同,取值为0:不预览,1:预览/ "Tables":[ /数据表数组/ { "Name": "Table1", /表名/ "Cols": [ /字段定义/ { "type": "str", /字段类型,可选值:String,Str,Integer,Int,Smallint,Float,Long, Blob,/ /对于图片、PDF等使用Blob类型,并把值进行Base64编码,并加前缀:/ / "base64/pdf:" 字段值是PDF; "base64/jpg:" 字段值是jpg; "base64/png:" 字段值是png; "base64/gif:" 字段值是gif; / "size": 255, /字段长度/ "name": "HAWB", /字段名称,必须与打印模板中的打印项名称相同/ "required": false /字段是否必填/ }, { "type": "int", "size": 0, "name": "NO", "required": false }, { "type": "float", "size": 0, "name": "报关公司面单号", "required": false }, { "type": "integer", "size": 0, "name": "公司内部单号", "required": false }, { "type": "str", "size": 255, "name": "发件人", "required": false }, { "type": "str", "size": 255, "name": "发件人地址", "required": false }, { "type": "str", "size": 255, "name": "发件人电话", "required": false }, { "type": "str", "size": 255, "name": "发货国家", "required": false }, { "type": "str", "size": 255, "name": "收件人", "required": false }, { "type": "str", "size": 255, "name": "收件人地址", "required": false }, { "type": "str", "size": 255, "name": "收件人电话", "required": false }, { "type": "str", "size": 255, "name": "收货人证件号码", "required": false }, { "type": "str", "size": 255, "name": "收货省份", "required": false }, { "type": "float", "size": 0, "name": "总计费重量", "required": false }, { "type": "int", "size": 0, "name": "总件数", "required": false }, { "type": "float", "size": 0, "name": "申报总价(CNY)", "required": false }, { "type": "float", "size": 0, "name": "申报总价(JPY)", "required": false }, { "type": "int", "size": 0, "name": "件数1", "required": false }, { "type": "str", "size": 255, "name": "品名1", "required": false }, { "type": "float", "size": 0, "name": "单价1(JPY)", "required": false }, { "type": "str", "size": 255, "name": "单位1", "required": false }, { "type": "float", "size": 0, "name": "申报总价1(CNY)", "required": false }, { "type": "float", "size": 0, "name": "申报总价1(JPY)", "required": false }, { "type": "int", "size": 0, "name": "件数2", "required": false }, { "type": "str", "size": 255, "name": "品名2", "required": false }, { "type": "float", "size": 0, "name": "单价2(JPY)", "required": false }, { "type": "str", "size": 255, "name": "单位2", "required": false }, { "type": "float", "size": 0, "name": "申报总价2(CNY)", "required": false }, { "type": "float", "size": 0, "name": "申报总价2(JPY)", "required": false }, { "type": "AutoInc", "size": 0, "name": "ID", "required": false }, { "type": "blob", "size": 0, "name": "附件", "required": false } ], "Data": [ /数据行定义,每一行含义见上面的字段定义/ { "HAWB": "860014010055", "NO": 1, "报关公司面单号": 200303900791, "公司内部单号": 730293, "发件人": "NAKAGAWA SUMIRE 2", "发件人地址": " 991-199-113,Kameido,Koto-ku,Tokyo", "发件人电话": "03-3999-3999", "发货国家": "日本", "收件人": "张三丰", "收件人地址": "上海市闵行区虹梅南路1660弄蔷薇八村99号9999室", "收件人电话": "182-1234-8888", "收货人证件号码": null, "收货省份": null, "总计费重量": 3.2, "总件数": 13, "申报总价(CNY)": null, "申报总价(JPY)": null, "件数1": 10, "品名1": "纸尿片", "单价1(JPY)": null, "单位1": null, "申报总价1(CNY)": null, "申报总价1(JPY)": null, "件数2": null, "品名2": null, "单价2(JPY)": null, "单位2": null, "申报总价2(CNY)": null, "申报总价2(JPY)": null, "ID": 1, "附件": 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}, { "HAWB": "860014010035", "NO": 2, "报关公司面单号": 200303900789, "公司内部单号": 730291, "发件人": "NAKAGAWA SUMIRE", "发件人地址": " 991-199-113,Kameido,Koto-ku,Tokyo", "发件人电话": "03-3999-3999", "发货国家": "日本", "收件人": "张无忌", "收件人地址": "上海市闵行区虹梅南路1660弄蔷薇八村88号8888室", "收件人电话": "182-1234-8888", "收货人证件号码": null, "收货省份": null, "总计费重量": 3.2, "总件数": 13, "申报总价(CNY)": null, "申报总价(JPY)": null, "件数1": 10, "品名1": "纸尿片", "单价1(JPY)": null, "单位1": null, "申报总价1(CNY)": null, "申报总价1(JPY)": null, "件数2": null, "品名2": null, "单价2(JPY)": null, "单位2": null, "申报总价2(CNY)": null, "申报总价2(JPY)": null, "ID": 2, 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} ] }, { "Name": "Table2", "Cols": [ { "type": "int", "size": 0, "name": "NO", "required": false }, { "type": "float", "size": 0, "name": "订单编号", "required": false }, { "type": "integer", "size": 0, "name": "下单日期", "required": false }, { "type": "str", "size": 255, "name": "下单平台", "required": false } ], "Data": [ { "NO": 1, "订单编号": 200303900791, "下单日期": "2017-01-20", "下单平台": "天猫" }, { "NO": 2, "订单编号": 200303900792, "下单日期": "2017-01-20", "下单平台": "京东" } ] } ] } 五、调用示例: <!-- ★★★ 模式1 ★★★ --> <!DOCTYPE html> <head> <meta charset="utf-8" /> <title>康虎云报表系统测试</title> </head> <body> <div style="width: 100%;text-align:center;"> <h2>康虎云报表系统</h2> <h3>打印测试(模式1)</h3> <div> <input type="button" id="btnPrint" value="打印" onClick="doSend(_reportData);" /> </div> </div> <div id="output"></div> </body> <script type="text/javascript"> //定义数据脚本 var _reportData = '{"template":"waybill.fr3","Cols":[{"type":"str","size":255,"name":"HAWB","required":false},<这里省略1000字> ]}'; //在浏览器控制台输出调试信息 console.log("reportData = " + _reportData); </script> <script language="javascript" type="text/javascript" src="cfprint.min.js"></script> <script language="javascript" type="text/javascript" src="cfprint_ext.js"></script> <script language="javascript" type="text/javascript"> /下面四个参数必须放在myreport.js脚本后面,以覆盖myreport.js中的默认值/ var _delay_send = 1000; //发送打印服务器前延时时长,-1则表示不自动打印 var _delay_close = 1000; //打印完成后关闭窗口的延时时长, -1则表示不关闭 var cfprint_addr = "127.0.0.1"; //打印服务器监听地址 var cfprint_port = 54321; //打印服务器监听端口 </script> </html> <!-- ★★★ 模式2 ★★★ --> <?php //如果有php运行环境,只需把该文件扩展名改成 .php,然后上传到web目录即可在真实服务器上测试 header("Access-Control-Allow-Origin: "); ?> <!DOCTYPE html> <head> <meta charset="utf-8" /> <title>康虎云报表系统测试</title> <style type="text/css"> output {font-size: 12px; background-color:F0FFF0;} </style> </head> <body> <div style="width: 100%;text-align:center;"> <h2>康虎云报表系统(Ver 1.3.0)</h2> <h3>打印测试(模式2)</h3> <div style="line-height: 1.5;"> <div style="width: 70%; text-align: left;"> <b>一、首先按下列步骤设置:</b><br/> 1、运行打印服务器;<br/> 2、按“停止”按钮停止服务;<br/> 3、打开“设置”区;<br/> 4、在“常用参数-->服务模式”中,选择“模式2”;<br/> 5、按“启动”按钮启动服务。 </div> <div style="width: 70%; text-align: left;"> <b>二、按本页的“打印”按钮开始打印。</b><br/> </div><br/> <input type="button" id="btnPrint" value="打印" /><br/><br/> <div style="width: 70%; text-align: left; font-size: 12px;"> 由于JavaScript在不同域名下访问会出现由来已久的跨域问题,所以正式部署到服务器使用时,要解决跨域问题。<br/> 对于IE8以上版本浏览器,只需增加一个reponse头:Access-Control-Allow-Origin即可,而对于php、jsp、asp/aspx等动态语言而言,增加一个response头是非常简单的事,例如:<br/> <b>在php:</b><br/><span style="color: red;"> <?php <br/> header("Access-Control-Allow-Origin: ");<br/> ?><br/> </span> <b>在jsp:</b><br/><span style="color: red;"> <% <br/> response.setHeader("Access-Control-Allow-Origin", ""); <br/> %><br/> </span> <b>在asp.net中:</b><br/><span style="color: red;"> Response.AppendHeader("Access-Control-Allow-Origin", ""); </span>,<br/>其他语言里,大家请自行搜索“ajax跨域”。而对于IE8以下的浏览器,大家可以自行搜索“IE6+Ajax+跨域”寻找解决办法吧,也可以联系我们帮助。 </div> </div> </div> <div id="output"></div> </body> <!-- 引入模式2所需的javascript支持库 --> <script type="text/javascript" src="cfprint_mode2.min.js" charset="UTF-8"></script> <!-- 构造报表数据 --> <script type="text/javascript"> var _reportData = '{"template":"waybill.fr3","ver":3, "Tables":[ {"Name":"Table1", "Cols":[{"type":"str","size":255,"name":"HAWB","required":false},{"type":"int","size":0,"name":"NO","required":false},{"type":"float","size":0,"name":"报关公司面单号","required":false},{"type":"integer","size":0,"name":"公司内部单号","required":false},{"type":"str","size":255,"name":"发件人","required":false},{"type":"str","size":255,"name":"发件人地址","required":false},{"type":"str","size":255,"name":"发件人电话","required":false},{"type":"str","size":255,"name":"发货国家","required":false},{"type":"str","size":255,"name":"收件人","required":false},{"type":"str","size":255,"name":"收件人地址","required":false},{"type":"str","size":255,"name":"收件人电话","required":false},{"type":"str","size":255,"name":"收货人证件号码","required":false},{"type":"str","size":255,"name":"收货省份","required":false},{"type":"float","size":0,"name":"总计费重量","required":false},{"type":"int","size":0,"name":"总件数","required":false},{"type":"float","size":0,"name":"申报总价(CNY)","required":false},{"type":"float","size":0,"name":"申报总价(JPY)","required":false},{"type":"int","size":0,"name":"件数1","required":false},{"type":"str","size":255,"name":"品名1","required":false},{"type":"float","size":0,"name":"单价1(JPY)","required":false},{"type":"str","size":255,"name":"单位1","required":false},{"type":"float","size":0,"name":"申报总价1(CNY)","required":false},{"type":"float","size":0,"name":"申报总价1(JPY)","required":false},{"type":"int","size":0,"name":"件数2","required":false},{"type":"str","size":255,"name":"品名2","required":false},{"type":"float","size":0,"name":"单价2(JPY)","required":false},{"type":"str","size":255,"name":"单位2","required":false},{"type":"float","size":0,"name":"申报总价2(CNY)","required":false},{"type":"float","size":0,"name":"申报总价2(JPY)","required":false},{"type":"int","size":0,"name":"件数3","required":false},{"type":"str","size":255,"name":"品名3","required":false},{"type":"float","size":0,"name":"单价3(JPY)","required":false},{"type":"str","size":255,"name":"单位3","required":false},{"type":"float","size":0,"name":"申报总价3(CNY)","required":false},{"type":"float","size":0,"name":"申报总价3(JPY)","required":false},{"type":"int","size":0,"name":"件数4","required":false},{"type":"str","size":255,"name":"品名4","required":false},{"type":"float","size":0,"name":"单价4(JPY)","required":false},{"type":"str","size":255,"name":"单位4","required":false},{"type":"float","size":0,"name":"申报总价4(CNY)","required":false},{"type":"float","size":0,"name":"申报总价4(JPY)","required":false},{"type":"int","size":0,"name":"件数5","required":false},{"type":"str","size":255,"name":"品名5","required":false},{"type":"float","size":0,"name":"单价5(JPY)","required":false},{"type":"str","size":255,"name":"单位5","required":false},{"type":"float","size":0,"name":"申报总价5(CNY)","required":false},{"type":"float","size":0,"name":"申报总价5(JPY)","required":false},{"type":"str","size":255,"name":"参考号","required":false},{"type":"AutoInc","size":0,"name":"ID","required":false}],"Data":[{"公司内部单号":730293,"发货国家":"日本","单价1(JPY)":null,"申报总价2(JPY)":null,"单价4(JPY)":null,"申报总价2(CNY)":null,"申报总价5(JPY)":null,"报关公司面单号":200303900791,"申报总价5(CNY)":null,"收货人证件号码":null,"申报总价1(JPY)":null,"单价3(JPY)":null,"申报总价1(CNY)":null,"申报总价4(JPY)":null,"申报总价4(CNY)":null,"收件人电话":"182-1758-9999","收件人地址":"上海市闵行区虹梅南路1660弄蔷薇八村139号502室","HAWB":"860014010055","发件人电话":"03-3684-9999","发件人地址":" 1-1-13,Kameido,Koto-ku,Tokyo","NO":3,"ID":3,"单价2(JPY)":null,"申报总价3(JPY)":null,"单价5(JPY)":null,"申报总价3(CNY)":null,"收货省份":null,"申报总价(JPY)":null,"申报总价(CNY)":null,"总计费重量":3.20,"收件人":"张三丰2","总件数":13,"品名5":null,"品名4":null,"品名3":null,"品名2":null,"品名1":"纸尿片","参考号":null,"发件人":"NAKAGAWA SUMIRE 2","单位5":null,"单位4":null,"单位3":null,"单位2":null,"单位1":null,"件数5":null,"件数4":null,"件数3":3,"件数2":null,"件数1":10},{"公司内部单号":730291,"发货国家":"日本","单价1(JPY)":null,"申报总价2(JPY)":null,"单价4(JPY)":null,"申报总价2(CNY)":null,"申报总价5(JPY)":null,"报关公司面单号":200303900789,"申报总价5(CNY)":null,"收货人证件号码":null,"申报总价1(JPY)":null,"单价3(JPY)":null,"申报总价1(CNY)":null,"申报总价4(JPY)":null,"申报总价4(CNY)":null,"收件人电话":"182-1758-9999","收件人地址":"上海市闵行区虹梅南路1660弄蔷薇八村139号502室","HAWB":"860014010035","发件人电话":"03-3684-9999","发件人地址":" 1-1-13,Kameido,Koto-ku,Tokyo","NO":1,"ID":1,"单价2(JPY)":null,"申报总价3(JPY)":null,"单价5(JPY)":null,"申报总价3(CNY)":null,"收货省份":null,"申报总价(JPY)":null,"申报总价(CNY)":null,"总计费重量":3.20,"收件人":"张三丰","总件数":13,"品名5":null,"品名4":null,"品名3":null,"品名2":null,"品名1":"纸尿片","参考号":null,"发件人":"NAKAGAWA SUMIRE","单位5":null,"单位4":null,"单位3":null,"单位2":null,"单位1":null,"件数5":null,"件数4":null,"件数3":3,"件数2":null,"件数1":10},{"公司内部单号":730292,"发货国家":"日本","单价1(JPY)":null,"申报总价2(JPY)":null,"单价4(JPY)":null,"申报总价2(CNY)":null,"申报总价5(JPY)":null,"报关公司面单号":200303900790,"申报总价5(CNY)":null,"收货人证件号码":null,"申报总价1(JPY)":null,"单价3(JPY)":null,"申报总价1(CNY)":null,"申报总价4(JPY)":null,"申报总价4(CNY)":null,"收件人电话":"182-1758-9999","收件人地址":"上海市闵行区虹梅南路1660弄蔷薇八村139号502室","HAWB":"860014010045","发件人电话":"03-3684-9999","发件人地址":" 1-1-13,Kameido,Koto-ku,Tokyo","NO":2,"ID":2,"单价2(JPY)":null,"申报总价3(JPY)":null,"单价5(JPY)":null,"申报总价3(CNY)":null,"收货省份":null,"申报总价(JPY)":null,"申报总价(CNY)":null,"总计费重量":3.20,"收件人":"张无忌","总件数":13,"品名5":null,"品名4":null,"品名3":null,"品名2":null,"品名1":"纸尿片","参考号":null,"发件人":"NAKAGAWA SUMIRE 1","单位5":null,"单位4":null,"单位3":null,"单位2":null,"单位1":null,"件数5":null,"件数4":null,"件数3":3,"件数2":null,"件数1":10}]}]}'; if(window.console) console.log("reportData = " + _reportData); </script> <!-- 设置服务器参数 --> <script language="javascript" type="text/javascript"> var cfprint_addr = "127.0.0.1"; //打印服务器监听地址 var cfprint_port = 54321; //打印服务器监听端口 var _url = "http://"+cfprint_addr+":"+cfprint_port; </script> <!-- 编写回调函数用以处理服务器返回的数据 --> <script type="text/javascript"> / 参数: readyState: XMLHttpRequest的状态 httpStatus: 服务端返回的http状态 responseText: 服务端返回的内容 / var callbackSuccess = function(readyState, httpStatus, responseText){ if (httpStatus === 200) { //{"result": 1, "message": "打印完成"} var response = CFPrint.parseJSON(responseText); alert(response.message+", 状态码["+response.result+"]"); }else{ alert('打印失败,HTTP状态代码是:'+httpStatus); } } / 参数: message: 错误信息 / var callbackFailed = function(message){ alert('发送打印任务出错: ' + message); } </script> <!-- 调用发送打印请求功能 --> <script type="text/javascript"> (function(){ document.getElementById("btnPrint").onclick = function() { CFPrint.outputid = "output"; //指定调试信息输出div的id CFPrint.SendRequest(_url, _reportData, callbackSuccess, callbackFailed); //发送打印请求 }; })(); </script> </html> 六、模板设计器(重要!重要!!,好多朋友都找不到设计器入口) 在主界面上,双击右下角的“设计”两个字,即可打开模板设计工具箱,在工具箱有三个按钮和一个大文本框。三个按钮的作用分别是: 设计:以大文本框中的json数据为数据源,打开模板设计器窗口; 预览:以大文本框中的json数据为数据源,预览当前所用模板的打印效果; 打印:以大文本框中的json数据为数据源,向打印机输出当前所用模板生成的报表; 以后将会有详细的模板设计教程发布,如果您遇到紧急的难题,请向作者咨询。 本篇文章为转载内容。原文链接:https://blog.csdn.net/chensongmol/article/details/76087600。 该文由互联网用户投稿提供,文中观点代表作者本人意见,并不代表本站的立场。 作为信息平台,本站仅提供文章转载服务,并不拥有其所有权,也不对文章内容的真实性、准确性和合法性承担责任。 如发现本文存在侵权、违法、违规或事实不符的情况,请及时联系我们,我们将第一时间进行核实并删除相应内容。
2023-04-01 18:34:12
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...。 如果没有符合前提条件的 key 被淘汰,那么 volatile-lru、volatile-random、 volatile-ttl 相当于 noeviction(不做内存回收)。 动态修改淘汰策略: redis> config set maxmemory-policy volatile-lru 建议使用 volatile-lru,在保证正常服务的情况下,优先删除最近最少使用的 key。 5.2.3 LRU 淘汰原理 问题:如果基于传统 LRU 算法实现 Redis LRU 会有什么问题? 需要额外的数据结构存储,消耗内存。 Redis LRU 对传统的 LRU 算法进行了改良,通过随机采样来调整算法的精度。如果淘汰策略是 LRU,则根据配置的采样值 maxmemory_samples(默认是 5 个), 随机从数据库中选择 m 个 key, 淘汰其中热度最低的 key 对应的缓存数据。所以采样参数m配置的数值越大, 就越能精确的查找到待淘汰的缓存数据,但是也消耗更多的CPU计算,执行效率降低。 问题:如何找出热度最低的数据? Redis 中所有对象结构都有一个 lru 字段, 且使用了 unsigned 的低 24 位,这个字段用来记录对象的热度。对象被创建时会记录 lru 值。在被访问的时候也会更新 lru 的值。 但是不是获取系统当前的时间戳,而是设置为全局变量 server.lruclock 的值。 源码:server.h typedef struct redisObject {unsigned type:4;unsigned encoding:4;unsigned lru:LRU_BITS;int refcount;void ptr; } robj; server.lruclock 的值怎么来的? Redis 中有个定时处理的函数 serverCron,默认每 100 毫秒调用函数 updateCachedTime 更新一次全局变量的 server.lruclock 的值,它记录的是当前 unix 时间戳。 源码:server.c void updateCachedTime(void) { time_t unixtime = time(NULL); atomicSet(server.unixtime,unixtime); server.mstime = mstime();struct tm tm; localtime_r(&server.unixtime,&tm);server.daylight_active = tm.tm_isdst; } 问题:为什么不获取精确的时间而是放在全局变量中?不会有延迟的问题吗? 这样函数 lookupKey 中更新数据的 lru 热度值时,就不用每次调用系统函数 time,可以提高执行效率。 OK,当对象里面已经有了 LRU 字段的值,就可以评估对象的热度了。 函数 estimateObjectIdleTime 评估指定对象的 lru 热度,思想就是对象的 lru 值和全局的 server.lruclock 的差值越大(越久没有得到更新),该对象热度越低。 源码 evict.c / Given an object returns the min number of milliseconds the object was never requested, using an approximated LRU algorithm. /unsigned long long estimateObjectIdleTime(robj o) {unsigned long long lruclock = LRU_CLOCK(); if (lruclock >= o->lru) {return (lruclock - o->lru) LRU_CLOCK_RESOLUTION; } else {return (lruclock + (LRU_CLOCK_MAX - o->lru)) LRU_CLOCK_RESOLUTION;} } server.lruclock 只有 24 位,按秒为单位来表示才能存储 194 天。当超过 24bit 能表 示的最大时间的时候,它会从头开始计算。 server.h define LRU_CLOCK_MAX ((1<<LRU_BITS)-1) / Max value of obj->lru / 在这种情况下,可能会出现对象的 lru 大于 server.lruclock 的情况,如果这种情况 出现那么就两个相加而不是相减来求最久的 key。 为什么不用常规的哈希表+双向链表的方式实现?需要额外的数据结构,消耗资源。而 Redis LRU 算法在 sample 为 10 的情况下,已经能接近传统 LRU 算法了。 问题:除了消耗资源之外,传统 LRU 还有什么问题? 如图,假设 A 在 10 秒内被访问了 5 次,而 B 在 10 秒内被访问了 3 次。因为 B 最后一次被访问的时间比 A 要晚,在同等的情况下,A 反而先被回收。 问题:要实现基于访问频率的淘汰机制,怎么做? 5.2.4 LFU server.h typedef struct redisObject {unsigned type:4;unsigned encoding:4;unsigned lru:LRU_BITS;int refcount;void ptr; } robj; 当这 24 bits 用作 LFU 时,其被分为两部分: 高 16 位用来记录访问时间(单位为分钟,ldt,last decrement time) 低 8 位用来记录访问频率,简称 counter(logc,logistic counter) counter 是用基于概率的对数计数器实现的,8 位可以表示百万次的访问频率。 对象被读写的时候,lfu 的值会被更新。 db.c——lookupKey void updateLFU(robj val) {unsigned long counter = LFUDecrAndReturn(val); counter = LFULogIncr(counter);val->lru = (LFUGetTimeInMinutes()<<8) | counter;} 增长的速率由,lfu-log-factor 越大,counter 增长的越慢 redis.conf 配置文件。 lfu-log-factor 10 如果计数器只会递增不会递减,也不能体现对象的热度。没有被访问的时候,计数器怎么递减呢? 减少的值由衰减因子 lfu-decay-time(分钟)来控制,如果值是 1 的话,N 分钟没有访问就要减少 N。 redis.conf 配置文件 lfu-decay-time 1 6、持久化机制 https://redis.io/topics/persistence Redis 速度快,很大一部分原因是因为它所有的数据都存储在内存中。如果断电或者宕机,都会导致内存中的数据丢失。为了实现重启后数据不丢失,Redis 提供了两种持久化的方案,一种是 RDB 快照(Redis DataBase),一种是 AOF(Append Only File)。 6.1 RDB RDB 是 Redis 默认的持久化方案。当满足一定条件的时候,会把当前内存中的数据写入磁盘,生成一个快照文件 dump.rdb。Redis 重启会通过加载 dump.rdb 文件恢复数据。 什么时候写入 rdb 文件? 6.1.1 RDB 触发 1、自动触发 a)配置规则触发。 redis.conf, SNAPSHOTTING,其中定义了触发把数据保存到磁盘的触发频率。 如果不需要 RDB 方案,注释 save 或者配置成空字符串""。 save 900 1 900 秒内至少有一个 key 被修改(包括添加) save 300 10 400 秒内至少有 10 个 key 被修改save 60 10000 60 秒内至少有 10000 个 key 被修改 注意上面的配置是不冲突的,只要满足任意一个都会触发。 RDB 文件位置和目录: 文件路径,dir ./ 文件名称dbfilename dump.rdb 是否是LZF压缩rdb文件 rdbcompression yes 开启数据校验 rdbchecksum yes 问题:为什么停止 Redis 服务的时候没有 save,重启数据还在? RDB 还有两种触发方式: b)shutdown 触发,保证服务器正常关闭。 c)flushall,RDB 文件是空的,没什么意义(删掉 dump.rdb 演示一下)。 2、手动触发 如果我们需要重启服务或者迁移数据,这个时候就需要手动触 RDB 快照保存。Redis 提供了两条命令: a)save save 在生成快照的时候会阻塞当前 Redis 服务器, Redis 不能处理其他命令。如果内存中的数据比较多,会造成 Redis 长时间的阻塞。生产环境不建议使用这个命令。 为了解决这个问题,Redis 提供了第二种方式。 执行 bgsave 时,Redis 会在后台异步进行快照操作,快照同时还可以响应客户端请求。 具体操作是 Redis 进程执行 fork 操作创建子进程(copy-on-write),RDB 持久化过程由子进程负责,完成后自动结束。它不会记录 fork 之后后续的命令。阻塞只发生在 fork 阶段,一般时间很短。 用 lastsave 命令可以查看最近一次成功生成快照的时间。 6.1.2 RDB 数据的恢复(演示) 1、shutdown 持久化添加键值 添加键值 redis> set k1 1 redis> set k2 2 redis> set k3 3 redis> set k4 4 redis> set k5 5 停服务器,触发 save redis> shutdown 备份 dump.rdb 文件 cp dump.rdb dump.rdb.bak 启动服务器 /usr/local/soft/redis-5.0.5/src/redis-server /usr/local/soft/redis-5.0.5/redis.conf 啥都没有: redis> keys 3、通过备份文件恢复数据停服务器 redis> shutdown 重命名备份文件 mv dump.rdb.bak dump.rdb 启动服务器 /usr/local/soft/redis-5.0.5/src/redis-server /usr/local/soft/redis-5.0.5/redis.conf 查看数据 redis> keys 6.1.3 RDB 文件的优势和劣势 一、优势 1.RDB 是一个非常紧凑(compact)的文件,它保存了 redis 在某个时间点上的数据集。这种文件非常适合用于进行备份和灾难恢复。 2.生成 RDB 文件的时候,redis 主进程会 fork()一个子进程来处理所有保存工作,主进程不需要进行任何磁盘 IO 操作。 3.RDB 在恢复大数据集时的速度比 AOF 的恢复速度要快。 二、劣势 1、RDB 方式数据没办法做到实时持久化/秒级持久化。因为 bgsave 每次运行都要执行 fork 操作创建子进程,频繁执行成本过高。 2、在一定间隔时间做一次备份,所以如果 redis 意外 down 掉的话,就会丢失最后一次快照之后的所有修改(数据有丢失)。 如果数据相对来说比较重要,希望将损失降到最小,则可以使用 AOF 方式进行持久化。 6.2 AOF Append Only File AOF:Redis 默认不开启。AOF 采用日志的形式来记录每个写操作,并追加到文件中。开启后,执行更改 Redis 数据的命令时,就会把命令写入到 AOF 文件中。 Redis 重启时会根据日志文件的内容把写指令从前到后执行一次以完成数据的恢复工作。 6.2.1 AOF 配置 配置文件 redis.conf 开关appendonly no 文件名appendfilename "appendonly.aof" AOF 文件的内容(vim 查看): 问题:数据都是实时持久化到磁盘吗? 由于操作系统的缓存机制,AOF 数据并没有真正地写入硬盘,而是进入了系统的硬盘缓存。什么时候把缓冲区的内容写入到 AOF 文件? 问题:文件越来越大,怎么办? 由于 AOF 持久化是 Redis 不断将写命令记录到 AOF 文件中,随着 Redis 不断的进行,AOF 的文件会越来越大,文件越大,占用服务器内存越大以及 AOF 恢复要求时间越长。 例如 set xxx 666,执行 1000 次,结果都是 xxx=666。 为了解决这个问题,Redis 新增了重写机制,当 AOF 文件的大小超过所设定的阈值时,Redis 就会启动 AOF 文件的内容压缩,只保留可以恢复数据的最小指令集。 可以使用命令 bgrewriteaof 来重写。 AOF 文件重写并不是对原文件进行重新整理,而是直接读取服务器现有的键值对,然后用一条命令去代替之前记录这个键值对的多条命令,生成一个新的文件后去替换原来的 AOF 文件。 重写触发机制 auto-aof-rewrite-percentage 100 auto-aof-rewrite-min-size 64mb 问题:重写过程中,AOF 文件被更改了怎么办? 另外有两个与 AOF 相关的参数: 6.2.2 AOF 数据恢复 重启 Redis 之后就会进行 AOF 文件的恢复。 6.2.3 AOF 优势与劣势 优点: 1、AOF 持久化的方法提供了多种的同步频率,即使使用默认的同步频率每秒同步一次,Redis 最多也就丢失 1 秒的数据而已。 缺点: 1、对于具有相同数据的的 Redis,AOF 文件通常会比 RDB 文件体积更大(RDB 存的是数据快照)。 2、虽然 AOF 提供了多种同步的频率,默认情况下,每秒同步一次的频率也具有较高的性能。在高并发的情况下,RDB 比 AOF 具好更好的性能保证。 6.3 两种方案比较 那么对于 AOF 和 RDB 两种持久化方式,我们应该如何选择呢? 如果可以忍受一小段时间内数据的丢失,毫无疑问使用 RDB 是最好的,定时生成 RDB 快照(snapshot)非常便于进行数据库备份, 并且 RDB 恢复数据集的速度也要比 AOF 恢复的速度要快。 否则就使用 AOF 重写。但是一般情况下建议不要单独使用某一种持久化机制,而是应该两种一起用,在这种情况下,当 redis 重启的时候会优先载入 AOF 文件来恢复原始的数据,因为在通常情况下 AOF 文件保存的数据集要比 RDB 文件保存的数据集要完整。 本篇文章为转载内容。原文链接:https://blog.csdn.net/zhoutaochun/article/details/120075092。 该文由互联网用户投稿提供,文中观点代表作者本人意见,并不代表本站的立场。 作为信息平台,本站仅提供文章转载服务,并不拥有其所有权,也不对文章内容的真实性、准确性和合法性承担责任。 如发现本文存在侵权、违法、违规或事实不符的情况,请及时联系我们,我们将第一时间进行核实并删除相应内容。
2024-03-18 12:25:04
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...ob以及Joe。为了检查用户,请启动应用程序,请求/Admin/Index URL,并以Admin用户进行认证。 Figure 15-1. The initial users in the Identity database 图15-1. Identity数据库中的最初用户 I also need some roles for this chapter. I used the RoleAdmin controller to create roles called Users and Employees and assigned the users to those roles, as described in Table 15-2. 本章还需要一些角色。我用RoleAdmin控制器创建了角色Users和Employees,并为这些角色指定了一些用户,如表15-2所示。 Table 15-2. The Types of Web Forms Code Nuggets 表15-2. 角色及成员(作者将此表的标题写错了——译者注) Role 角色 Members 成员 Users Alice, Joe Employees Alice, Bob Figure 15-2 shows the required role configuration displayed by the RoleAdmin controller. 图15-2显示了由RoleAdmin控制器所显示出来的必要的角色配置。 Figure 15-2. Configuring the roles required for this chapter 图15-2. 配置本章所需的角色 15.2 Adding Custom User Properties 15.2 添加自定义用户属性 When I created the AppUser class to represent users in Chapter 13, I noted that the base class defined a basic set of properties to describe the user, such as e-mail address and telephone number. Most applications need to store more information about users, including persistent application preferences and details such as addresses—in short, any data that is useful to running the application and that should last between sessions. In ASP.NET Membership, this was handled through the user profile system, but ASP.NET Identity takes a different approach. 我在第13章创建AppUser类来表示用户时曾做过说明,基类定义了一组描述用户的基本属性,如E-mail地址、电话号码等。大多数应用程序还需要存储用户的更多信息,包括持久化应用程序爱好以及地址等细节——简言之,需要存储对运行应用程序有用并且在各次会话之间应当保持的任何数据。在ASP.NET Membership中,这是通过用户资料(User Profile)系统来处理的,但ASP.NET Identity采取了一种不同的办法。 Because the ASP.NET Identity system uses Entity Framework to store its data by default, defining additional user information is just a matter of adding properties to the user class and letting the Code First feature create the database schema required to store them. Table 15-3 puts custom user properties in context. 因为ASP.NET Identity默认是使用Entity Framework来存储其数据的,定义附加的用户信息只不过是给用户类添加属性的事情,然后让Code First特性去创建需要存储它们的数据库架构即可。表15-3描述了自定义用户属性的情形。 Table 15-3. Putting Cusotm User Properties in Context 表15-3. 自定义用户属性的情形 Question 问题 Answer 回答 What is it? 什么是自定义用户属性? Custom user properties allow you to store additional information about your users, including their preferences and settings. 自定义用户属性让你能够存储附加的用户信息,包括他们的爱好和设置。 Why should I care? 为何要关心它? A persistent store of settings means that the user doesn’t have to provide the same information each time they log in to the application. 设置的持久化存储意味着,用户不必每次登录到应用程序时都提供同样的信息。 How is it used by the MVC framework? 在MVC框架中如何使用它? This feature isn’t used directly by the MVC framework, but it is available for use in action methods. 此特性不是由MVC框架直接使用的,但它在动作方法中使用是有效的。 15.2.1 Defining Custom Properties 15.2.1 定义自定义属性 Listing 15-1 shows how I added a simple property to the AppUser class to represent the city in which the user lives. 清单15-1演示了如何给AppUser类添加一个简单的属性,用以表示用户生活的城市。 Listing 15-1. Adding a Property in the AppUser.cs File 清单15-1. 在AppUser.cs文件中添加属性 using System;using Microsoft.AspNet.Identity.EntityFramework;namespace Users.Models { public enum Cities {LONDON, PARIS, CHICAGO}public class AppUser : IdentityUser {public Cities City { get; set; } }} I have defined an enumeration called Cities that defines values for some large cities and added a property called City to the AppUser class. To allow the user to view and edit their City property, I added actions to the Home controller, as shown in Listing 15-2. 这里定义了一个枚举,名称为Cities,它定义了一些大城市的值,另外给AppUser类添加了一个名称为City的属性。为了让用户能够查看和编辑City属性,给Home控制器添加了几个动作方法,如清单15-2所示。 Listing 15-2. Adding Support for Custom User Properties in the HomeController.cs File 清单15-2. 在HomeController.cs文件中添加对自定义属性的支持 using System.Web.Mvc;using System.Collections.Generic;using System.Web;using System.Security.Principal;using System.Threading.Tasks;using Users.Infrastructure;using Microsoft.AspNet.Identity;using Microsoft.AspNet.Identity.Owin;using Users.Models;namespace Users.Controllers {public class HomeController : Controller {[Authorize]public ActionResult Index() {return View(GetData("Index"));}[Authorize(Roles = "Users")]public ActionResult OtherAction() {return View("Index", GetData("OtherAction"));}private Dictionary<string, object> GetData(string actionName) {Dictionary<string, object> dict= new Dictionary<string, object>();dict.Add("Action", actionName);dict.Add("User", HttpContext.User.Identity.Name);dict.Add("Authenticated", HttpContext.User.Identity.IsAuthenticated);dict.Add("Auth Type", HttpContext.User.Identity.AuthenticationType);dict.Add("In Users Role", HttpContext.User.IsInRole("Users"));return dict;} [Authorize]public ActionResult UserProps() {return View(CurrentUser);}[Authorize][HttpPost]public async Task<ActionResult> UserProps(Cities city) {AppUser user = CurrentUser;user.City = city;await UserManager.UpdateAsync(user);return View(user);}private AppUser CurrentUser {get {return UserManager.FindByName(HttpContext.User.Identity.Name);} }private AppUserManager UserManager {get {return HttpContext.GetOwinContext().GetUserManager<AppUserManager>();} }} } I added a CurrentUser property that uses the AppUserManager class to retrieve an AppUser instance to represent the current user. I pass the AppUser object as the view model object in the GET version of the UserProps action method, and the POST method uses it to update the value of the new City property. Listing 15-3 shows the UserProps.cshtml view, which displays the City property value and contains a form to change it. 我添加了一个CurrentUser属性,它使用AppUserManager类接收了表示当前用户的AppUser实例。在GET版本的UserProps动作方法中,传递了这个AppUser对象作为视图模型。而在POST版的方法中用它更新了City属性的值。清单15-3显示了UserProps.cshtml视图,它显示了City属性的值,并包含一个修改它的表单。 Listing 15-3. The Contents of the UserProps.cshtml File in the Views/Home Folder 清单15-3. Views/Home文件夹中UserProps.cshtml文件的内容 @using Users.Models@model AppUser@{ ViewBag.Title = "UserProps";}<div class="panel panel-primary"><div class="panel-heading">Custom User Properties</div><table class="table table-striped"><tr><th>City</th><td>@Model.City</td></tr></table></div> @using (Html.BeginForm()) {<div class="form-group"><label>City</label>@Html.DropDownListFor(x => x.City, new SelectList(Enum.GetNames(typeof(Cities))))</div><button class="btn btn-primary" type="submit">Save</button>} Caution Don’t start the application when you have created the view. In the sections that follow, I demonstrate how to preserve the contents of the database, and if you start the application now, the ASP.NET Identity users will be deleted. 警告:创建了视图之后不要启动应用程序。在以下小节中,将演示如何保留数据库的内容,如果现在启动应用程序,将会删除ASP.NET Identity的用户。 15.2.2 Preparing for Database Migration 15.2.2 准备数据库迁移 The default behavior for the Entity Framework Code First feature is to drop the tables in the database and re-create them whenever classes that drive the schema have changed. You saw this in Chapter 14 when I added support for roles: When the application was started, the database was reset, and the user accounts were lost. Entity Framework Code First特性的默认行为是,一旦修改了派生数据库架构的类,便会删除数据库中的数据表,并重新创建它们。在第14章可以看到这种情况,在我添加角色支持时:当重启应用程序后,数据库被重置,用户账号也丢失。 Don’t start the application yet, but if you were to do so, you would see a similar effect. Deleting data during development is usually not a problem, but doing so in a production setting is usually disastrous because it deletes all of the real user accounts and causes a panic while the backups are restored. In this section, I am going to demonstrate how to use the database migration feature, which updates a Code First schema in a less brutal manner and preserves the existing data it contains. 不要启动应用程序,但如果你这么做了,会看到类似的效果。在开发期间删除数据没什么问题,但如果在产品设置中这么做了,通常是灾难性的,因为它会删除所有真实的用户账号,而备份恢复是很痛苦的事。在本小节中,我打算演示如何使用数据库迁移特性,它能以比较温和的方式更新Code First的架构,并保留架构中的已有数据。 The first step is to issue the following command in the Visual Studio Package Manager Console: 第一个步骤是在Visual Studio的“Package Manager Console(包管理器控制台)”中发布以下命令: Enable-Migrations –EnableAutomaticMigrations This enables the database migration support and creates a Migrations folder in the Solution Explorer that contains a Configuration.cs class file, the contents of which are shown in Listing 15-4. 它启用了数据库的迁移支持,并在“Solution Explorer(解决方案资源管理器)”创建一个Migrations文件夹,其中含有一个Configuration.cs类文件,内容如清单15-4所示。 Listing 15-4. The Contents of the Configuration.cs File 清单15-4. Configuration.cs文件的内容 namespace Users.Migrations {using System;using System.Data.Entity;using System.Data.Entity.Migrations;using System.Linq;internal sealed class Configuration: DbMigrationsConfiguration<Users.Infrastructure.AppIdentityDbContext> {public Configuration() {AutomaticMigrationsEnabled = true;ContextKey = "Users.Infrastructure.AppIdentityDbContext";}protected override void Seed(Users.Infrastructure.AppIdentityDbContext context) {// This method will be called after migrating to the latest version.// 此方法将在迁移到最新版本时调用// You can use the DbSet<T>.AddOrUpdate() helper extension method// to avoid creating duplicate seed data. E.g.// 例如,你可以使用DbSet<T>.AddOrUpdate()辅助器方法来避免创建重复的种子数据//// context.People.AddOrUpdate(// p => p.FullName,// new Person { FullName = "Andrew Peters" },// new Person { FullName = "Brice Lambson" },// new Person { FullName = "Rowan Miller" }// );//} }} Tip You might be wondering why you are entering a database migration command into the console used to manage NuGet packages. The answer is that the Package Manager Console is really PowerShell, which is a general-purpose tool that is mislabeled by Visual Studio. You can use the console to issue a wide range of helpful commands. See http://go.microsoft.com/fwlink/?LinkID=108518 for details. 提示:你可能会觉得奇怪,为什么要在管理NuGet包的控制台中输入数据库迁移的命令?答案是“Package Manager Console(包管理控制台)”是真正的PowerShell,这是Visual studio冒用的一个通用工具。你可以使用此控制台发送大量的有用命令,详见http://go.microsoft.com/fwlink/?LinkID=108518。 The class will be used to migrate existing content in the database to the new schema, and the Seed method will be called to provide an opportunity to update the existing database records. In Listing 15-5, you can see how I have used the Seed method to set a default value for the new City property I added to the AppUser class. (I have also updated the class file to reflect my usual coding style.) 这个类将用于把数据库中的现有内容迁移到新的数据库架构,Seed方法的调用为更新现有数据库记录提供了机会。在清单15-5中可以看到,我如何用Seed方法为新的City属性设置默认值,City是添加到AppUser类中自定义属性。(为了体现我一贯的编码风格,我对这个类文件也进行了更新。) Listing 15-5. Managing Existing Content in the Configuration.cs File 清单15-5. 在Configuration.cs文件中管理已有内容 using System.Data.Entity.Migrations;using Microsoft.AspNet.Identity;using Microsoft.AspNet.Identity.EntityFramework;using Users.Infrastructure;using Users.Models;namespace Users.Migrations {internal sealed class Configuration: DbMigrationsConfiguration<AppIdentityDbContext> {public Configuration() {AutomaticMigrationsEnabled = true;ContextKey = "Users.Infrastructure.AppIdentityDbContext";}protected override void Seed(AppIdentityDbContext context) {AppUserManager userMgr = new AppUserManager(new UserStore<AppUser>(context));AppRoleManager roleMgr = new AppRoleManager(new RoleStore<AppRole>(context)); string roleName = "Administrators";string userName = "Admin";string password = "MySecret";string email = "admin@example.com";if (!roleMgr.RoleExists(roleName)) {roleMgr.Create(new AppRole(roleName));}AppUser user = userMgr.FindByName(userName);if (user == null) {userMgr.Create(new AppUser { UserName = userName, Email = email },password);user = userMgr.FindByName(userName);}if (!userMgr.IsInRole(user.Id, roleName)) {userMgr.AddToRole(user.Id, roleName);}foreach (AppUser dbUser in userMgr.Users) {dbUser.City = Cities.PARIS;}context.SaveChanges();} }} You will notice that much of the code that I added to the Seed method is taken from the IdentityDbInit class, which I used to seed the database with an administration user in Chapter 14. This is because the new Configuration class added to support database migrations will replace the seeding function of the IdentityDbInit class, which I’ll update shortly. Aside from ensuring that there is an admin user, the statements in the Seed method that are important are the ones that set the initial value for the City property I added to the AppUser class, as follows: 你可能会注意到,添加到Seed方法中的许多代码取自于IdentityDbInit类,在第14章中我用这个类将管理用户植入了数据库。这是因为这个新添加的、用以支持数据库迁移的Configuration类,将代替IdentityDbInit类的种植功能,我很快便会更新这个类。除了要确保有admin用户之外,在Seed方法中的重要语句是那些为AppUser类的City属性设置初值的语句,如下所示: ...foreach (AppUser dbUser in userMgr.Users) { dbUser.City = Cities.PARIS;}context.SaveChanges();... You don’t have to set a default value for new properties—I just wanted to demonstrate that the Seed method in the Configuration class can be used to update the existing user records in the database. 你不一定要为新属性设置默认值——这里只是想演示Configuration类中的Seed方法,可以用它更新数据库中的已有用户记录。 Caution Be careful when setting values for properties in the Seed method for real projects because the values will be applied every time you change the schema, overriding any values that the user has set since the last schema update was performed. I set the value of the City property just to demonstrate that it can be done. 警告:在用于真实项目的Seed方法中为属性设置值时要小心,因为你每一次修改架构时,都会运用这些值,这会将自执行上一次架构更新之后,用户设置的任何数据覆盖掉。这里设置City属性的值只是为了演示它能够这么做。 Changing the Database Context Class 修改数据库上下文类 The reason that I added the seeding code to the Configuration class is that I need to change the IdentityDbInit class. At present, the IdentityDbInit class is derived from the descriptively named DropCreateDatabaseIfModelChanges<AppIdentityDbContext> class, which, as you might imagine, drops the entire database when the Code First classes change. Listing 15-6 shows the changes I made to the IdentityDbInit class to prevent it from affecting the database. 在Configuration类中添加种植代码的原因是我需要修改IdentityDbInit类。此时,IdentityDbInit类派生于描述性命名的DropCreateDatabaseIfModelChanges<AppIdentityDbContext> 类,和你相像的一样,它会在Code First类改变时删除整个数据库。清单15-6显示了我对IdentityDbInit类所做的修改,以防止它影响数据库。 Listing 15-6. Preventing Database Schema Changes in the AppIdentityDbContext.cs File 清单15-6. 在AppIdentityDbContext.cs文件是阻止数据库架构变化 using System.Data.Entity;using Microsoft.AspNet.Identity.EntityFramework;using Users.Models;using Microsoft.AspNet.Identity; namespace Users.Infrastructure {public class AppIdentityDbContext : IdentityDbContext<AppUser> {public AppIdentityDbContext() : base("IdentityDb") { }static AppIdentityDbContext() {Database.SetInitializer<AppIdentityDbContext>(new IdentityDbInit());}public static AppIdentityDbContext Create() {return new AppIdentityDbContext();} } public class IdentityDbInit : NullDatabaseInitializer<AppIdentityDbContext> {} } I have removed the methods defined by the class and changed its base to NullDatabaseInitializer<AppIdentityDbContext> , which prevents the schema from being altered. 我删除了这个类中所定义的方法,并将它的基类改为NullDatabaseInitializer<AppIdentityDbContext> ,它可以防止架构修改。 15.2.3 Performing the Migration 15.2.3 执行迁移 All that remains is to generate and apply the migration. First, run the following command in the Package Manager Console: 剩下的事情只是生成并运用迁移了。首先,在“Package Manager Console(包管理器控制台)”中执行以下命令: Add-Migration CityProperty This creates a new migration called CityProperty (I like my migration names to reflect the changes I made). A class new file will be added to the Migrations folder, and its name reflects the time at which the command was run and the name of the migration. My file is called 201402262244036_CityProperty.cs, for example. The contents of this file contain the details of how Entity Framework will change the database during the migration, as shown in Listing 15-7. 这创建了一个名称为CityProperty的新迁移(我比较喜欢让迁移的名称反映出我所做的修改)。这会在文件夹中添加一个新的类文件,而且其命名会反映出该命令执行的时间以及迁移名称,例如,我的这个文件名称为201402262244036_CityProperty.cs。该文件的内容含有迁移期间Entity Framework修改数据库的细节,如清单15-7所示。 Listing 15-7. The Contents of the 201402262244036_CityProperty.cs File 清单15-7. 201402262244036_CityProperty.cs文件的内容 namespace Users.Migrations {using System;using System.Data.Entity.Migrations; public partial class Init : DbMigration {public override void Up() {AddColumn("dbo.AspNetUsers", "City", c => c.Int(nullable: false));}public override void Down() {DropColumn("dbo.AspNetUsers", "City");} }} The Up method describes the changes that have to be made to the schema when the database is upgraded, which in this case means adding a City column to the AspNetUsers table, which is the one that is used to store user records in the ASP.NET Identity database. Up方法描述了在数据库升级时,需要对架构所做的修改,在这个例子中,意味着要在AspNetUsers数据表中添加City数据列,该数据表是ASP.NET Identity数据库用来存储用户记录的。 The final step is to perform the migration. Without starting the application, run the following command in the Package Manager Console: 最后一步是执行迁移。无需启动应用程序,只需在“Package Manager Console(包管理器控制台)”中运行以下命令即可: Update-Database –TargetMigration CityProperty The database schema will be modified, and the code in the Configuration.Seed method will be executed. The existing user accounts will have been preserved and enhanced with a City property (which I set to Paris in the Seed method). 这会修改数据库架构,并执行Configuration.Seed方法中的代码。已有用户账号会被保留,且增强了City属性(我在Seed方法中已将其设置为“Paris”)。 15.2.4 Testing the Migration 15.2.4 测试迁移 To test the effect of the migration, start the application, navigate to the /Home/UserProps URL, and authenticate as one of the Identity users (for example, as Alice with the password MySecret). Once authenticated, you will see the current value of the City property for the user and have the opportunity to change it, as shown in Figure 15-3. 为了测试迁移的效果,启动应用程序,导航到/Home/UserProps URL,并以Identity中的用户(例如Alice,口令MySecret)进行认证。一旦已被认证,便会看到该用户City属性的当前值,并可以对其进行修改,如图15-3所示。 Figure 15-3. Displaying and changing a custom user property 图15-3. 显示和个性自定义用户属性 15.2.5 Defining an Additional Property 15.2.5 定义附加属性 Now that database migrations are set up, I am going to define a further property just to demonstrate how subsequent changes are handled and to show a more useful (and less dangerous) example of using the Configuration.Seed method. Listing 15-8 shows how I added a Country property to the AppUser class. 现在,已经建立了数据库迁移,我打算再定义一个属性,这恰恰演示了如何处理持续不断的修改,也为了演示Configuration.Seed方法更有用(至少无害)的示例。清单15-8显示了我在AppUser类上添加了一个Country属性。 Listing 15-8. Adding Another Property in the AppUserModels.cs File 清单15-8. 在AppUserModels.cs文件中添加另一个属性 using System;using Microsoft.AspNet.Identity.EntityFramework; namespace Users.Models {public enum Cities {LONDON, PARIS, CHICAGO} public enum Countries {NONE, UK, FRANCE, USA}public class AppUser : IdentityUser {public Cities City { get; set; }public Countries Country { get; set; }public void SetCountryFromCity(Cities city) {switch (city) {case Cities.LONDON:Country = Countries.UK;break;case Cities.PARIS:Country = Countries.FRANCE;break;case Cities.CHICAGO:Country = Countries.USA;break;default:Country = Countries.NONE;break;} }} } I have added an enumeration to define the country names and a helper method that selects a country value based on the City property. Listing 15-9 shows the change I made to the Configuration class so that the Seed method sets the Country property based on the City, but only if the value of Country is NONE (which it will be for all users when the database is migrated because the Entity Framework sets enumeration columns to the first value). 我已经添加了一个枚举,它定义了国家名称。还添加了一个辅助器方法,它可以根据City属性选择一个国家。清单15-9显示了对Configuration类所做的修改,以使Seed方法根据City设置Country属性,但只当Country为NONE时才进行设置(在迁移数据库时,所有用户都是NONE,因为Entity Framework会将枚举列设置为枚举的第一个值)。 Listing 15-9. Modifying the Database Seed in the Configuration.cs File 清单15-9. 在Configuration.cs文件中修改数据库种子 using System.Data.Entity.Migrations;using Microsoft.AspNet.Identity;using Microsoft.AspNet.Identity.EntityFramework;using Users.Infrastructure;using Users.Models; namespace Users.Migrations {internal sealed class Configuration: DbMigrationsConfiguration<AppIdentityDbContext> {public Configuration() {AutomaticMigrationsEnabled = true;ContextKey = "Users.Infrastructure.AppIdentityDbContext";}protected override void Seed(AppIdentityDbContext context) {AppUserManager userMgr = new AppUserManager(new UserStore<AppUser>(context));AppRoleManager roleMgr = new AppRoleManager(new RoleStore<AppRole>(context)); string roleName = "Administrators";string userName = "Admin";string password = "MySecret";string email = "admin@example.com";if (!roleMgr.RoleExists(roleName)) {roleMgr.Create(new AppRole(roleName));}AppUser user = userMgr.FindByName(userName);if (user == null) {userMgr.Create(new AppUser { UserName = userName, Email = email },password);user = userMgr.FindByName(userName);}if (!userMgr.IsInRole(user.Id, roleName)) {userMgr.AddToRole(user.Id, roleName);} foreach (AppUser dbUser in userMgr.Users) {if (dbUser.Country == Countries.NONE) {dbUser.SetCountryFromCity(dbUser.City);} }context.SaveChanges();} }} This kind of seeding is more useful in a real project because it will set a value for the Country property only if one has not already been set—subsequent migrations won’t be affected, and user selections won’t be lost. 这种种植在实际项目中会更有用,因为它只会在Country属性未设置时,才会设置Country属性的值——后继的迁移不会受到影响,因此不会失去用户的选择。 1. Adding Application Support 1. 添加应用程序支持 There is no point defining additional user properties if they are not available in the application, so Listing 15-10 shows the change I made to the Views/Home/UserProps.cshtml file to display the value of the Country property. 应用程序中如果没有定义附加属性的地方,则附加属性就无法使用了,因此,清单15-10显示了我对Views/Home/UserProps.cshtml文件的修改,以显示Country属性的值。 Listing 15-10. Displaying an Additional Property in the UserProps.cshtml File 清单15-10. 在UserProps.cshtml文件中显示附加属性 @using Users.Models@model AppUser@{ ViewBag.Title = "UserProps";} <div class="panel panel-primary"><div class="panel-heading">Custom User Properties</div><table class="table table-striped"><tr><th>City</th><td>@Model.City</td></tr> <tr><th>Country</th><td>@Model.Country</td></tr></table></div>@using (Html.BeginForm()) {<div class="form-group"><label>City</label>@Html.DropDownListFor(x => x.City, new SelectList(Enum.GetNames(typeof(Cities))))</div><button class="btn btn-primary" type="submit">Save</button>} Listing 15-11 shows the corresponding change I made to the Home controller to update the Country property when the City value changes. 为了在City值变化时能够更新Country属性,清单15-11显示了我对Home控制器所做的相应修改。 Listing 15-11. Setting Custom Properties in the HomeController.cs File 清单15-11. 在HomeController.cs文件中设置自定义属性 using System.Web.Mvc;using System.Collections.Generic;using System.Web;using System.Security.Principal;using System.Threading.Tasks;using Users.Infrastructure;using Microsoft.AspNet.Identity;using Microsoft.AspNet.Identity.Owin;using Users.Models; namespace Users.Controllers {public class HomeController : Controller {// ...other action methods omitted for brevity...// ...出于简化,这里忽略了其他动作方法... [Authorize]public ActionResult UserProps() {return View(CurrentUser);}[Authorize][HttpPost]public async Task<ActionResult> UserProps(Cities city) {AppUser user = CurrentUser;user.City = city;user.SetCountryFromCity(city);await UserManager.UpdateAsync(user);return View(user);}// ...properties omitted for brevity...// ...出于简化,这里忽略了一些属性...} } 2. Performing the Migration 2. 准备迁移 All that remains is to create and apply a new migration. Enter the following command into the Package Manager Console: 剩下的事情就是创建和运用新的迁移了。在“Package Manager Console(包管理器控制台)”中输入以下命令: Add-Migration CountryProperty This will generate another file in the Migrations folder that contains the instruction to add the Country column. To apply the migration, execute the following command: 这将在Migrations文件夹中生成另一个文件,它含有添加Country数据表列的指令。为了运用迁移,可执行以下命令: Update-Database –TargetMigration CountryProperty The migration will be performed, and the value of the Country property will be set based on the value of the existing City property for each user. You can check the new user property by starting the application and authenticating and navigating to the /Home/UserProps URL, as shown in Figure 15-4. 这将执行迁移,Country属性的值将根据每个用户当前的City属性进行设置。通过启动应用程序,认证并导航到/Home/UserProps URL,便可以查看新的用户属性,如图15-4所示。 Figure 15-4. Creating an additional user property 图15-4. 创建附加用户属性 Tip Although I am focused on the process of upgrading the database, you can also migrate back to a previous version by specifying an earlier migration. Use the –Force argument make changes that cause data loss, such as removing a column. 提示:虽然我们关注了升级数据库的过程,但你也可以回退到以前的版本,只需指定一个早期的迁移即可。使用-Force参数进行修改,会引起数据丢失,例如删除数据表列。 15.3 Working with Claims 15.3 使用声明(Claims) In older user-management systems, such as ASP.NET Membership, the application was assumed to be the authoritative source of all information about the user, essentially treating the application as a closed world and trusting the data that is contained within it. 在旧的用户管理系统中,例如ASP.NET Membership,应用程序被假设成是用户所有信息的权威来源,本质上将应用程序视为是一个封闭的世界,并且只信任其中所包含的数据。 This is such an ingrained approach to software development that it can be hard to recognize that’s what is happening, but you saw an example of the closed-world technique in Chapter 14 when I authenticated users against the credentials stored in the database and granted access based on the roles associated with those credentials. I did the same thing again in this chapter when I added properties to the user class. Every piece of information that I needed to manage user authentication and authorization came from within my application—and that is a perfectly satisfactory approach for many web applications, which is why I demonstrated these techniques in such depth. 这是软件开发的一种根深蒂固的方法,使人很难认识到这到底意味着什么,第14章你已看到了这种封闭世界技术的例子,根据存储在数据库中的凭据来认证用户,并根据与凭据关联在一起的角色来授权访问。本章前述在用户类上添加属性,也做了同样的事情。我管理用户认证与授权所需的每一个数据片段都来自于我的应用程序——而且这是许多Web应用程序都相当满意的一种方法,这也是我如此深入地演示这些技术的原因。 ASP.NET Identity also supports an alternative approach for dealing with users, which works well when the MVC framework application isn’t the sole source of information about users and which can be used to authorize users in more flexible and fluid ways than traditional roles allow. ASP.NET Identity还支持另一种处理用户的办法,当MVC框架的应用程序不是有关用户的唯一信息源时,这种办法会工作得很好,而且能够比传统的角色授权更为灵活且流畅的方式进行授权。 This alternative approach uses claims, and in this section I’ll describe how ASP.NET Identity supports claims-based authorization. Table 15-4 puts claims in context. 这种可选的办法使用了“Claims(声明)”,因此在本小节中,我将描述ASP.NET Identity如何支持“Claims-Based Authorization(基于声明的授权)”。表15-4描述了声明(Claims)的情形。 提示:“Claim”在英文字典中不完全是“声明”的意思,根据本文的描述,感觉把它说成“声明”也不一定合适,所以在之后的译文中基本都写成中英文并用的形式,即“声明(Claims)”。根据表15-4中的声明(Claims)的定义:声明(Claims)是关于用户的一些信息片段。一个用户的信息片段当然有很多,每一个信息片段就是一项声明(Claim),用户的所有信息片段合起来就是该用户的声明(Claims)。请读者注意该单词的单复数形式——译者注 Table 15-4. Putting Claims in Context 表15-4. 声明(Claims)的情形 Question 问题 Answer 答案 What is it? 什么是声明(Claims)? Claims are pieces of information about users that you can use to make authorization decisions. Claims can be obtained from external systems as well as from the local Identity database. 声明(Claims)是关于用户的一些信息片段,可以用它们做出授权决定。声明(Claims)可以从外部系统获取,也可以从本地的Identity数据库获取。 Why should I care? 为何要关心它? Claims can be used to flexibly authorize access to action methods. Unlike conventional roles, claims allow access to be driven by the information that describes the user. 声明(Claims)可以用来对动作方法进行灵活的授权访问。与传统的角色不同,声明(Claims)让访问能够由描述用户的信息进行驱动。 How is it used by the MVC framework? 如何在MVC框架中使用它? This feature isn’t used directly by the MVC framework, but it is integrated into the standard authorization features, such as the Authorize attribute. 这不是直接由MVC框架使用的特性,但它集成到了标准的授权特性之中,例如Authorize注解属性。 Tip you don’t have to use claims in your applications, and as Chapter 14 showed, ASP.NET Identity is perfectly happy providing an application with the authentication and authorization services without any need to understand claims at all. 提示:你在应用程序中不一定要使用声明(Claims),正如第14章所展示的那样,ASP.NET Identity能够为应用程序提供充分的认证与授权服务,而根本不需要理解声明(Claims)。 15.3.1 Understanding Claims 15.3.1 理解声明(Claims) A claim is a piece of information about the user, along with some information about where the information came from. The easiest way to unpack claims is through some practical demonstrations, without which any discussion becomes too abstract to be truly useful. To get started, I added a Claims controller to the example project, the definition of which you can see in Listing 15-12. 一项声明(Claim)是关于用户的一个信息片段(请注意这个英文单词的单复数形式——译者注),并伴有该片段出自何处的某种信息。揭开声明(Claims)含义最容易的方式是做一些实际演示,任何讨论都会过于抽象根本没有真正的用处。为此,我在示例项目中添加了一个Claims控制器,其定义如清单15-12所示。 Listing 15-12. The Contents of the ClaimsController.cs File 清单15-12. ClaimsController.cs文件的内容 using System.Security.Claims;using System.Web;using System.Web.Mvc; namespace Users.Controllers {public class ClaimsController : Controller {[Authorize]public ActionResult Index() {ClaimsIdentity ident = HttpContext.User.Identity as ClaimsIdentity;if (ident == null) {return View("Error", new string[] { "No claims available" });} else {return View(ident.Claims);} }} } Tip You may feel a little lost as I define the code for this example. Don’t worry about the details for the moment—just stick with it until you see the output from the action method and view that I define. More than anything else, that will help put claims into perspective. 提示:你或许会对我为此例定义的代码感到有点失望。此刻对此细节不必着急——只要稍事忍耐,当看到该动作方法和视图的输出便会明白。尤为重要的是,这有助于洞察声明(Claims)。 You can get the claims associated with a user in different ways. One approach is to use the Claims property defined by the user class, but in this example, I have used the HttpContext.User.Identity property to demonstrate the way that ASP.NET Identity is integrated with the rest of the ASP.NET platform. As I explained in Chapter 13, the HttpContext.User.Identity property returns an implementation of the IIdentity interface, which is a ClaimsIdentity object when working using ASP.NET Identity. The ClaimsIdentity class is defined in the System.Security.Claims namespace, and Table 15-5 shows the members it defines that are relevant to this chapter. 可以通过不同的方式获得与用户相关联的声明(Claims)。方法之一就是使用由用户类定义的Claims属性,但在这个例子中,我使用了HttpContext.User.Identity属性,目的是演示ASP.NET Identity与ASP.NET平台集成的方式(请注意这句话所表示的含义:用户类的Claims属性属于ASP.NET Identity,而HttpContext.User.Identity属性则属于ASP.NET平台。由此可见,ASP.NET Identity已经融合到了ASP.NET平台之中——译者注)。正如第13章所解释的那样,HttpContext.User.Identity属性返回IIdentity的接口实现,当使用ASP.NET Identity时,该实现是一个ClaimsIdentity对象。ClaimsIdentity类是在System.Security.Claims命名空间中定义的,表15-5显示了它所定义的与本章有关的成员。 Table 15-5. The Members Defined by the ClaimsIdentity Class 表15-5. ClaimsIdentity类所定义的成员 Name 名称 Description 描述 Claims Returns an enumeration of Claim objects representing the claims for the user. 返回表示用户声明(Claims)的Claim对象枚举 AddClaim(claim) Adds a claim to the user identity. 给用户添加一个声明(Claim) AddClaims(claims) Adds an enumeration of Claim objects to the user identity. 给用户添加Claim对象的枚举。 HasClaim(predicate) Returns true if the user identity contains a claim that matches the specified predicate. See the “Applying Claims” section for an example predicate. 如果用户含有与指定谓词匹配的声明(Claim)时,返回true。参见“运用声明(Claims)”中的示例谓词 RemoveClaim(claim) Removes a claim from the user identity. 删除用户的声明(Claim)。 Other members are available, but the ones in the table are those that are used most often in web applications, for reason that will become obvious as I demonstrate how claims fit into the wider ASP.NET platform. 还有一些可用的其它成员,但表中的这些是在Web应用程序中最常用的,随着我演示如何将声明(Claims)融入更宽泛的ASP.NET平台,它们为什么最常用就很显然了。 In Listing 15-12, I cast the IIdentity implementation to the ClaimsIdentity type and pass the enumeration of Claim objects returned by the ClaimsIdentity.Claims property to the View method. A Claim object represents a single piece of data about the user, and the Claim class defines the properties shown in Table 15-6. 在清单15-12中,我将IIdentity实现转换成了ClaimsIdentity类型,并且给View方法传递了ClaimsIdentity.Claims属性所返回的Claim对象的枚举。Claim对象所示表示的是关于用户的一个单一的数据片段,Claim类定义的属性如表15-6所示。 Table 15-6. The Properties Defined by the Claim Class 表15-6. Claim类定义的属性 Name 名称 Description 描述 Issuer Returns the name of the system that provided the claim 返回提供声明(Claim)的系统名称 Subject Returns the ClaimsIdentity object for the user who the claim refers to 返回声明(Claim)所指用户的ClaimsIdentity对象 Type Returns the type of information that the claim represents 返回声明(Claim)所表示的信息类型 Value Returns the piece of information that the claim represents 返回声明(Claim)所表示的信息片段 Listing 15-13 shows the contents of the Index.cshtml file that I created in the Views/Claims folder and that is rendered by the Index action of the Claims controller. The view adds a row to a table for each claim about the user. 清单15-13显示了我在Views/Claims文件夹中创建的Index.cshtml文件的内容,它由Claims控制器中的Index动作方法进行渲染。该视图为用户的每项声明(Claim)添加了一个表格行。 Listing 15-13. The Contents of the Index.cshtml File in the Views/Claims Folder 清单15-13. Views/Claims文件夹中Index.cshtml文件的内容 @using System.Security.Claims@using Users.Infrastructure@model IEnumerable<Claim>@{ ViewBag.Title = "Claims"; }<div class="panel panel-primary"><div class="panel-heading">Claims</div><table class="table table-striped"><tr><th>Subject</th><th>Issuer</th><th>Type</th><th>Value</th></tr>@foreach (Claim claim in Model.OrderBy(x => x.Type)) {<tr><td>@claim.Subject.Name</td><td>@claim.Issuer</td><td>@Html.ClaimType(claim.Type)</td><td>@claim.Value</td></tr>}</table></div> The value of the Claim.Type property is a URI for a Microsoft schema, which isn’t especially useful. The popular schemas are used as the values for fields in the System.Security.Claims.ClaimTypes class, so to make the output from the Index.cshtml view easier to read, I added an HTML helper to the IdentityHelpers.cs file, as shown in Listing 15-14. It is this helper that I use in the Index.cshtml file to format the value of the Claim.Type property. Claim.Type属性的值是一个微软模式(Microsoft Schema)的URI(统一资源标识符),这是特别有用的。System.Security.Claims.ClaimTypes类中字段的值使用的是流行模式(Popular Schema),因此为了使Index.cshtml视图的输出更易于阅读,我在IdentityHelpers.cs文件中添加了一个HTML辅助器,如清单15-14所示。Index.cshtml文件正是使用这个辅助器格式化了Claim.Type属性的值。 Listing 15-14. Adding a Helper to the IdentityHelpers.cs File 清单15-14. 在IdentityHelpers.cs文件中添加辅助器 using System.Web;using System.Web.Mvc;using Microsoft.AspNet.Identity.Owin;using System;using System.Linq;using System.Reflection;using System.Security.Claims;namespace Users.Infrastructure {public static class IdentityHelpers {public static MvcHtmlString GetUserName(this HtmlHelper html, string id) {AppUserManager mgr= HttpContext.Current.GetOwinContext().GetUserManager<AppUserManager>();return new MvcHtmlString(mgr.FindByIdAsync(id).Result.UserName);} public static MvcHtmlString ClaimType(this HtmlHelper html, string claimType) {FieldInfo[] fields = typeof(ClaimTypes).GetFields();foreach (FieldInfo field in fields) {if (field.GetValue(null).ToString() == claimType) {return new MvcHtmlString(field.Name);} }return new MvcHtmlString(string.Format("{0}",claimType.Split('/', '.').Last()));} }} Note The helper method isn’t at all efficient because it reflects on the fields of the ClaimType class for each claim that is displayed, but it is sufficient for my purposes in this chapter. You won’t often need to display the claim type in real applications. 注:该辅助器并非十分有效,因为它只是针对每个要显示的声明(Claim)映射出ClaimType类的字段,但对我要的目的已经足够了。在实际项目中不会经常需要显示声明(Claim)的类型。 To see why I have created a controller that uses claims without really explaining what they are, start the application, authenticate as the user Alice (with the password MySecret), and request the /Claims/Index URL. Figure 15-5 shows the content that is generated. 为了弄明白我为何要先创建一个使用声明(Claims)的控制器,而没有真正解释声明(Claims)是什么的原因,可以启动应用程序,以用户Alice进行认证(其口令是MySecret),并请求/Claims/Index URL。图15-5显示了生成的内容。 Figure 15-5. The output from the Index action of the Claims controller 图15-5. Claims控制器中Index动作的输出 It can be hard to make out the detail in the figure, so I have reproduced the content in Table 15-7. 这可能还难以认识到此图的细节,为此我在表15-7中重列了其内容。 Table 15-7. The Data Shown in Figure 15-5 表15-7. 图15-5中显示的数据 Subject(科目) Issuer(发行者) Type(类型) Value(值) Alice LOCAL AUTHORITY SecurityStamp Unique ID Alice LOCAL AUTHORITY IdentityProvider ASP.NET Identity Alice LOCAL AUTHORITY Role Employees Alice LOCAL AUTHORITY Role Users Alice LOCAL AUTHORITY Name Alice Alice LOCAL AUTHORITY NameIdentifier Alice’s user ID The table shows the most important aspect of claims, which is that I have already been using them when I implemented the traditional authentication and authorization features in Chapter 14. You can see that some of the claims relate to user identity (the Name claim is Alice, and the NameIdentifier claim is Alice’s unique user ID in my ASP.NET Identity database). 此表展示了声明(Claims)最重要的方面,这些是我在第14章中实现传统的认证和授权特性时,一直在使用的信息。可以看出,有些声明(Claims)与用户标识有关(Name声明是Alice,NameIdentifier声明是Alice在ASP.NET Identity数据库中的唯一用户ID号)。 Other claims show membership of roles—there are two Role claims in the table, reflecting the fact that Alice is assigned to both the Users and Employees roles. There is also a claim about how Alice has been authenticated: The IdentityProvider is set to ASP.NET Identity. 其他声明(Claims)显示了角色成员——表中有两个Role声明(Claim),体现出Alice被赋予了Users和Employees两个角色这一事实。还有一个是Alice已被认证的声明(Claim):IdentityProvider被设置到了ASP.NET Identity。 The difference when this information is expressed as a set of claims is that you can determine where the data came from. The Issuer property for all the claims shown in the table is set to LOCAL AUTHORITY, which indicates that the user’s identity has been established by the application. 当这种信息被表示成一组声明(Claims)时的差别是,你能够确定这些数据是从哪里来的。表中所显示的所有声明的Issuer属性(发布者)都被设置到了LOACL AUTHORITY(本地授权),这说明该用户的标识是由应用程序建立的。 So, now that you have seen some example claims, I can more easily describe what a claim is. A claim is any piece of information about a user that is available to the application, including the user’s identity and role memberships. And, as you have seen, the information I have been defining about my users in earlier chapters is automatically made available as claims by ASP.NET Identity. 因此,现在你已经看到了一些声明(Claims)示例,我可以更容易地描述声明(Claim)是什么了。一项声明(Claim)是可用于应用程序中的有关用户的一个信息片段,包括用户的标识以及角色成员等。而且,正如你所看到的,我在前几章定义的关于用户的信息,被ASP.NET Identity自动地作为声明(Claims)了。 15.3.2 Creating and Using Claims 15.3.2 创建和使用声明(Claims) Claims are interesting for two reasons. The first reason is that an application can obtain claims from multiple sources, rather than just relying on a local database for information about the user. You will see a real example of this when I show you how to authenticate users through a third-party system in the “Using Third-Party Authentication” section, but for the moment I am going to add a class to the example project that simulates a system that provides claims information. Listing 15-15 shows the contents of the LocationClaimsProvider.cs file that I added to the Infrastructure folder. 声明(Claims)比较有意思的原因有两个。第一个原因是应用程序可以从多个来源获取声明(Claims),而不是只能依靠本地数据库关于用户的信息。你将会看到一个实际的示例,在“使用第三方认证”小节中,将演示如何通过第三方系统来认证用户。不过,此刻我只打算在示例项目中添加一个类,用以模拟一个提供声明(Claims)信息的系统。清单15-15显示了我添加到Infrastructure文件夹中LocationClaimsProvider.cs文件的内容。 Listing 15-15. The Contents of the LocationClaimsProvider.cs File 清单15-15. LocationClaimsProvider.cs文件的内容 using System.Collections.Generic;using System.Security.Claims; namespace Users.Infrastructure {public static class LocationClaimsProvider {public static IEnumerable<Claim> GetClaims(ClaimsIdentity user) {List<Claim> claims = new List<Claim>();if (user.Name.ToLower() == "alice") {claims.Add(CreateClaim(ClaimTypes.PostalCode, "DC 20500"));claims.Add(CreateClaim(ClaimTypes.StateOrProvince, "DC"));} else {claims.Add(CreateClaim(ClaimTypes.PostalCode, "NY 10036"));claims.Add(CreateClaim(ClaimTypes.StateOrProvince, "NY"));}return claims;}private static Claim CreateClaim(string type, string value) {return new Claim(type, value, ClaimValueTypes.String, "RemoteClaims");} }} The GetClaims method takes a ClaimsIdentity argument and uses the Name property to create claims about the user’s ZIP code and state. This class allows me to simulate a system such as a central HR database, which would be the authoritative source of location information about staff, for example. GetClaims方法以ClaimsIdentity为参数,并使用Name属性创建了关于用户ZIP码(邮政编码)和州府的声明(Claims)。上述这个类使我能够模拟一个诸如中心化的HR数据库(人力资源数据库)之类的系统,它可能会成为全体职员的地点信息的权威数据源。 Claims are associated with the user’s identity during the authentication process, and Listing 15-16 shows the changes I made to the Login action method of the Account controller to call the LocationClaimsProvider class. 在认证过程期间,声明(Claims)是与用户标识关联在一起的,清单15-16显示了我对Account控制器中Login动作方法所做的修改,以便调用LocationClaimsProvider类。 Listing 15-16. Associating Claims with a User in the AccountController.cs File 清单15-16. AccountController.cs文件中用户用声明的关联 ...[HttpPost][AllowAnonymous][ValidateAntiForgeryToken]public async Task<ActionResult> Login(LoginModel details, string returnUrl) {if (ModelState.IsValid) {AppUser user = await UserManager.FindAsync(details.Name,details.Password);if (user == null) {ModelState.AddModelError("", "Invalid name or password.");} else {ClaimsIdentity ident = await UserManager.CreateIdentityAsync(user,DefaultAuthenticationTypes.ApplicationCookie); ident.AddClaims(LocationClaimsProvider.GetClaims(ident));AuthManager.SignOut();AuthManager.SignIn(new AuthenticationProperties {IsPersistent = false}, ident);return Redirect(returnUrl);} }ViewBag.returnUrl = returnUrl;return View(details);}... You can see the effect of the location claims by starting the application, authenticating as a user, and requesting the /Claim/Index URL. Figure 15-6 shows the claims for Alice. You may have to sign out and sign back in again to see the change. 为了看看这个地点声明(Claims)的效果,可以启动应用程序,以一个用户进行认证,并请求/Claim/Index URL。图15-6显示了Alice的声明(Claims)。你可能需要退出,然后再次登录才会看到发生的变化。 Figure 15-6. Defining additional claims for users 图15-6. 定义用户的附加声明 Obtaining claims from multiple locations means that the application doesn’t have to duplicate data that is held elsewhere and allows integration of data from external parties. The Claim.Issuer property tells you where a claim originated from, which helps you judge how accurate the data is likely to be and how much weight you should give the data in your application. Location data obtained from a central HR database is likely to be more accurate and trustworthy than data obtained from an external mailing list provider, for example. 从多个地点获取声明(Claims)意味着应用程序不必复制其他地方保持的数据,并且能够与外部的数据集成。Claim.Issuer属性(图15-6中的Issuer数据列——译者注)能够告诉你一个声明(Claim)的发源地,这有助于让你判断数据的精确程度,也有助于让你决定这类数据在应用程序中的权重。例如,从中心化的HR数据库获取的地点数据可能要比外部邮件列表提供器获取的数据更为精确和可信。 1. Applying Claims 1. 运用声明(Claims) The second reason that claims are interesting is that you can use them to manage user access to your application more flexibly than with standard roles. The problem with roles is that they are static, and once a user has been assigned to a role, the user remains a member until explicitly removed. This is, for example, how long-term employees of big corporations end up with incredible access to internal systems: They are assigned the roles they require for each new job they get, but the old roles are rarely removed. (The unexpectedly broad systems access sometimes becomes apparent during the investigation into how someone was able to ship the contents of the warehouse to their home address—true story.) 声明(Claims)有意思的第二个原因是,你可以用它们来管理用户对应用程序的访问,这要比标准的角色管理更为灵活。角色的问题在于它们是静态的,而且一旦用户已经被赋予了一个角色,该用户便是一个成员,直到明确地删除为止。例如,这意味着大公司的长期雇员,对内部系统的访问会十分惊人:他们每次在获得新工作时,都会赋予所需的角色,但旧角色很少被删除。(在调查某人为何能够将仓库里的东西发往他的家庭地址过程中发现,有时会出现异常宽泛的系统访问——真实的故事) Claims can be used to authorize users based directly on the information that is known about them, which ensures that the authorization changes when the data changes. The simplest way to do this is to generate Role claims based on user data that are then used by controllers to restrict access to action methods. Listing 15-17 shows the contents of the ClaimsRoles.cs file that I added to the Infrastructure. 声明(Claims)可以直接根据用户已知的信息对用户进行授权,这能够保证当数据发生变化时,授权也随之而变。此事最简单的做法是根据用户数据来生成Role声明(Claim),然后由控制器用来限制对动作方法的访问。清单15-17显示了我添加到Infrastructure中的ClaimsRoles.cs文件的内容。 Listing 15-17. The Contents of the ClaimsRoles.cs File 清单15-17. ClaimsRoles.cs文件的内容 using System.Collections.Generic;using System.Security.Claims; namespace Users.Infrastructure {public class ClaimsRoles {public static IEnumerable<Claim> CreateRolesFromClaims(ClaimsIdentity user) {List<Claim> claims = new List<Claim>();if (user.HasClaim(x => x.Type == ClaimTypes.StateOrProvince&& x.Issuer == "RemoteClaims" && x.Value == "DC")&& user.HasClaim(x => x.Type == ClaimTypes.Role&& x.Value == "Employees")) {claims.Add(new Claim(ClaimTypes.Role, "DCStaff"));}return claims;} }} The gnarly looking CreateRolesFromClaims method uses lambda expressions to determine whether the user has a StateOrProvince claim from the RemoteClaims issuer with a value of DC and a Role claim with a value of Employees. If the user has both claims, then a Role claim is returned for the DCStaff role. Listing 15-18 shows how I call the CreateRolesFromClaims method from the Login action in the Account controller. CreateRolesFromClaims是一个粗糙的考察方法,它使用了Lambda表达式,以检查用户是否具有StateOrProvince声明(Claim),该声明来自于RemoteClaims发行者(Issuer),值为DC。也检查用户是否具有Role声明(Claim),其值为Employees。如果用户这两个声明都有,那么便返回一个DCStaff角色的Role声明。清单15-18显示了如何在Account控制器中的Login动作中调用CreateRolesFromClaims方法。 Listing 15-18. Generating Roles Based on Claims in the AccountController.cs File 清单15-18. 在AccountController.cs中根据声明生成角色 ...[HttpPost][AllowAnonymous][ValidateAntiForgeryToken]public async Task<ActionResult> Login(LoginModel details, string returnUrl) {if (ModelState.IsValid) {AppUser user = await UserManager.FindAsync(details.Name,details.Password);if (user == null) {ModelState.AddModelError("", "Invalid name or password.");} else {ClaimsIdentity ident = await UserManager.CreateIdentityAsync(user,DefaultAuthenticationTypes.ApplicationCookie);ident.AddClaims(LocationClaimsProvider.GetClaims(ident)); ident.AddClaims(ClaimsRoles.CreateRolesFromClaims(ident));AuthManager.SignOut();AuthManager.SignIn(new AuthenticationProperties {IsPersistent = false}, ident);return Redirect(returnUrl);} }ViewBag.returnUrl = returnUrl;return View(details);}... I can then restrict access to an action method based on membership of the DCStaff role. Listing 15-19 shows a new action method I added to the Claims controller to which I have applied the Authorize attribute. 然后我可以根据DCStaff角色的成员,来限制对一个动作方法的访问。清单15-19显示了在Claims控制器中添加的一个新的动作方法,在该方法上已经运用了Authorize注解属性。 Listing 15-19. Adding a New Action Method to the ClaimsController.cs File 清单15-19. 在ClaimsController.cs文件中添加一个新的动作方法 using System.Security.Claims;using System.Web;using System.Web.Mvc;namespace Users.Controllers {public class ClaimsController : Controller {[Authorize]public ActionResult Index() {ClaimsIdentity ident = HttpContext.User.Identity as ClaimsIdentity;if (ident == null) {return View("Error", new string[] { "No claims available" });} else {return View(ident.Claims);} } [Authorize(Roles="DCStaff")]public string OtherAction() {return "This is the protected action";} }} Users will be able to access OtherAction only if their claims grant them membership to the DCStaff role. Membership of this role is generated dynamically, so a change to the user’s employment status or location information will change their authorization level. 只要用户的声明(Claims)承认他们是DCStaff角色的成员,那么他们便能访问OtherAction动作。该角色的成员是动态生成的,因此,若是用户的雇用状态或地点信息发生变化,也会改变他们的授权等级。 提示:请读者从这个例子中吸取其中的思想精髓。对于读物的理解程度,仁者见仁,智者见智,能领悟多少,全凭各人,译者感觉这里的思想有无数的可能。举例说明:(1)可以根据用户的身份进行授权,比如学生在校时是“学生”,毕业后便是“校友”;(2)可以根据用户所处的部门进行授权,人事部用户属于人事团队,销售部用户属于销售团队,各团队有其自己的应用;(3)下一小节的示例是根据用户的地点授权。简言之:一方面用户的各种声明(Claim)都可以用来进行授权;另一方面用户的声明(Claim)又是可以自定义的。于是可能的运用就无法估计了。总之一句话,这种基于声明的授权(Claims-Based Authorization)有无限可能!要是没有我这里的提示,是否所有读者在此处都会有所体会?——译者注 15.3.3 Authorizing Access Using Claims 15.3.3 使用声明(Claims)授权访问 The previous example is an effective demonstration of how claims can be used to keep authorizations fresh and accurate, but it is a little indirect because I generate roles based on claims data and then enforce my authorization policy based on the membership of that role. A more direct and flexible approach is to enforce authorization directly by creating a custom authorization filter attribute. Listing 15-20 shows the contents of the ClaimsAccessAttribute.cs file, which I added to the Infrastructure folder and used to create such a filter. 前面的示例有效地演示了如何用声明(Claims)来保持新鲜和准确的授权,但有点不太直接,因为我要根据声明(Claims)数据来生成了角色,然后强制我的授权策略基于角色成员。一个更直接且灵活的办法是直接强制授权,其做法是创建一个自定义的授权过滤器注解属性。清单15-20演示了ClaimsAccessAttribute.cs文件的内容,我将它添加在Infrastructure文件夹中,并用它创建了这种过滤器。 Listing 15-20. The Contents of the ClaimsAccessAttribute.cs File 清单15-20. ClaimsAccessAttribute.cs文件的内容 using System.Security.Claims;using System.Web;using System.Web.Mvc; namespace Users.Infrastructure {public class ClaimsAccessAttribute : AuthorizeAttribute {public string Issuer { get; set; }public string ClaimType { get; set; }public string Value { get; set; }protected override bool AuthorizeCore(HttpContextBase context) {return context.User.Identity.IsAuthenticated&& context.User.Identity is ClaimsIdentity&& ((ClaimsIdentity)context.User.Identity).HasClaim(x =>x.Issuer == Issuer && x.Type == ClaimType && x.Value == Value);} }} The attribute I have defined is derived from the AuthorizeAttribute class, which makes it easy to create custom authorization policies in MVC framework applications by overriding the AuthorizeCore method. My implementation grants access if the user is authenticated, the IIdentity implementation is an instance of ClaimsIdentity, and the user has a claim with the issuer, type, and value matching the class properties. Listing 15-21 shows how I applied the attribute to the Claims controller to authorize access to the OtherAction method based on one of the location claims created by the LocationClaimsProvider class. 我所定义的这个注解属性派生于AuthorizeAttribute类,通过重写AuthorizeCore方法,很容易在MVC框架应用程序中创建自定义的授权策略。在这个实现中,若用户是已认证的、其IIdentity实现是一个ClaimsIdentity实例,而且该用户有一个带有issuer、type以及value的声明(Claim),它们与这个类的属性是匹配的,则该用户便是允许访问的。清单15-21显示了如何将这个注解属性运用于Claims控制器,以便根据LocationClaimsProvider类创建的地点声明(Claim),对OtherAction方法进行授权访问。 Listing 15-21. Performing Authorization on Claims in the ClaimsController.cs File 清单15-21. 在ClaimsController.cs文件中执行基于声明的授权 using System.Security.Claims;using System.Web;using System.Web.Mvc;using Users.Infrastructure;namespace Users.Controllers {public class ClaimsController : Controller {[Authorize]public ActionResult Index() {ClaimsIdentity ident = HttpContext.User.Identity as ClaimsIdentity;if (ident == null) {return View("Error", new string[] { "No claims available" });} else {return View(ident.Claims);} } [ClaimsAccess(Issuer="RemoteClaims", ClaimType=ClaimTypes.PostalCode,Value="DC 20500")]public string OtherAction() {return "This is the protected action";} }} My authorization filter ensures that only users whose location claims specify a ZIP code of DC 20500 can invoke the OtherAction method. 这个授权过滤器能够确保只有地点声明(Claim)的邮编为DC 20500的用户才能请求OtherAction方法。 15.4 Using Third-Party Authentication 15.4 使用第三方认证 One of the benefits of a claims-based system such as ASP.NET Identity is that any of the claims can come from an external system, even those that identify the user to the application. This means that other systems can authenticate users on behalf of the application, and ASP.NET Identity builds on this idea to make it simple and easy to add support for authenticating users through third parties such as Microsoft, Google, Facebook, and Twitter. 基于声明的系统,如ASP.NET Identity,的好处之一是任何声明都可以来自于外部系统,即使是将用户标识到应用程序的那些声明。这意味着其他系统可以代表应用程序来认证用户,而ASP.NET Identity就建立在这样的思想之上,使之能够简单而方便地添加第三方认证用户的支持,如微软、Google、Facebook、Twitter等。 There are some substantial benefits of using third-party authentication: Many users will already have an account, users can elect to use two-factor authentication, and you don’t have to manage user credentials in the application. In the sections that follow, I’ll show you how to set up and use third-party authentication for Google users, which Table 15-8 puts into context. 使用第三方认证有一些实际的好处:许多用户已经有了账号、用户可以选择使用双因子认证、你不必在应用程序中管理用户凭据等等。在以下小节中,我将演示如何为Google用户建立并使用第三方认证,表15-8描述了事情的情形。 Table 15-8. Putting Third-Party Authentication in Context 表15-8. 第三方认证情形 Question 问题 Answer 回答 What is it? 什么是第三方认证? Authenticating with third parties lets you take advantage of the popularity of companies such as Google and Facebook. 第三方认证使你能够利用流行公司,如Google和Facebook,的优势。 Why should I care? 为何要关心它? Users don’t like having to remember passwords for many different sites. Using a provider with large-scale adoption can make your application more appealing to users of the provider’s services. 用户不喜欢记住许多不同网站的口令。使用大范围适应的提供器可使你的应用程序更吸引有提供器服务的用户。 How is it used by the MVC framework? 如何在MVC框架中使用它? This feature isn’t used directly by the MVC framework. 这不是一个直接由MVC框架使用的特性。 Note The reason I have chosen to demonstrate Google authentication is that it is the only option that doesn’t require me to register my application with the authentication service. You can get details of the registration processes required at http://bit.ly/1cqLTrE. 提示:我选择演示Google认证的原因是,它是唯一不需要在其认证服务中注册我应用程序的公司。有关认证服务注册过程的细节,请参阅http://bit.ly/1cqLTrE。 15.4.1 Enabling Google Authentication 15.4.1 启用Google认证 ASP.NET Identity comes with built-in support for authenticating users through their Microsoft, Google, Facebook, and Twitter accounts as well more general support for any authentication service that supports OAuth. The first step is to add the NuGet package that includes the Google-specific additions for ASP.NET Identity. Enter the following command into the Package Manager Console: ASP.NET Identity带有通过Microsoft、Google、Facebook以及Twitter账号认证用户的内建支持,并且对于支持OAuth的认证服务具有更普遍的支持。第一个步骤是添加NuGet包,包中含有用于ASP.NET Identity的Google专用附件。请在“Package Manager Console(包管理器控制台)”中输入以下命令: Install-Package Microsoft.Owin.Security.Google -version 2.0.2 There are NuGet packages for each of the services that ASP.NET Identity supports, as described in Table 15-9. 对于ASP.NET Identity支持的每一种服务都有相应的NuGet包,如表15-9所示。 Table 15-9. The NuGet Authenticaton Packages 表15-9. NuGet认证包 Name 名称 Description 描述 Microsoft.Owin.Security.Google Authenticates users with Google accounts 用Google账号认证用户 Microsoft.Owin.Security.Facebook Authenticates users with Facebook accounts 用Facebook账号认证用户 Microsoft.Owin.Security.Twitter Authenticates users with Twitter accounts 用Twitter账号认证用户 Microsoft.Owin.Security.MicrosoftAccount Authenticates users with Microsoft accounts 用Microsoft账号认证用户 Microsoft.Owin.Security.OAuth Authenticates users against any OAuth 2.0 service 根据任一OAuth 2.0服务认证用户 Once the package is installed, I enable support for the authentication service in the OWIN startup class, which is defined in the App_Start/IdentityConfig.cs file in the example project. Listing 15-22 shows the change that I have made. 一旦安装了这个包,便可以在OWIN启动类中启用此项认证服务的支持,启动类的定义在示例项目的App_Start/IdentityConfig.cs文件中。清单15-22显示了所做的修改。 Listing 15-22. Enabling Google Authentication in the IdentityConfig.cs File 清单15-22. 在IdentityConfig.cs文件中启用Google认证 using Microsoft.AspNet.Identity;using Microsoft.Owin;using Microsoft.Owin.Security.Cookies;using Owin;using Users.Infrastructure;using Microsoft.Owin.Security.Google;namespace Users {public class IdentityConfig {public void Configuration(IAppBuilder app) {app.CreatePerOwinContext<AppIdentityDbContext>(AppIdentityDbContext.Create);app.CreatePerOwinContext<AppUserManager>(AppUserManager.Create);app.CreatePerOwinContext<AppRoleManager>(AppRoleManager.Create); app.UseCookieAuthentication(new CookieAuthenticationOptions {AuthenticationType = DefaultAuthenticationTypes.ApplicationCookie,LoginPath = new PathString("/Account/Login"),}); app.UseExternalSignInCookie(DefaultAuthenticationTypes.ExternalCookie);app.UseGoogleAuthentication();} }} Each of the packages that I listed in Table 15-9 contains an extension method that enables the corresponding service. The extension method for the Google service is called UseGoogleAuthentication, and it is called on the IAppBuilder implementation that is passed to the Configuration method. 表15-9所列的每个包都含有启用相应服务的扩展方法。用于Google服务的扩展方法名称为UseGoogleAuthentication,它通过传递给Configuration方法的IAppBuilder实现进行调用。 Next I added a button to the Views/Account/Login.cshtml file, which allows users to log in via Google. You can see the change in Listing 15-23. 下一步骤是在Views/Account/Login.cshtml文件中添加一个按钮,让用户能够通过Google进行登录。所做的修改如清单15-23所示。 Listing 15-23. Adding a Google Login Button to the Login.cshtml File 清单15-23. 在Login.cshtml文件中添加Google登录按钮 @model Users.Models.LoginModel@{ ViewBag.Title = "Login";}<h2>Log In</h2> @Html.ValidationSummary()@using (Html.BeginForm()) {@Html.AntiForgeryToken();<input type="hidden" name="returnUrl" value="@ViewBag.returnUrl" /><div class="form-group"><label>Name</label>@Html.TextBoxFor(x => x.Name, new { @class = "form-control" })</div><div class="form-group"><label>Password</label>@Html.PasswordFor(x => x.Password, new { @class = "form-control" })</div><button class="btn btn-primary" type="submit">Log In</button>}@using (Html.BeginForm("GoogleLogin", "Account")) {<input type="hidden" name="returnUrl" value="@ViewBag.returnUrl" /><button class="btn btn-primary" type="submit">Log In via Google</button>} The new button submits a form that targets the GoogleLogin action on the Account controller. You can see this method—and the other changes I made the controller—in Listing 15-24. 新按钮递交一个表单,目标是Account控制器中的GoogleLogin动作。可从清单15-24中看到该方法,以及在控制器中所做的其他修改。 Listing 15-24. Adding Support for Google Authentication to the AccountController.cs File 清单15-24. 在AccountController.cs文件中添加Google认证支持 using System.Threading.Tasks;using System.Web.Mvc;using Users.Models;using Microsoft.Owin.Security;using System.Security.Claims;using Microsoft.AspNet.Identity;using Microsoft.AspNet.Identity.Owin;using Users.Infrastructure;using System.Web; namespace Users.Controllers {[Authorize]public class AccountController : Controller {[AllowAnonymous]public ActionResult Login(string returnUrl) {if (HttpContext.User.Identity.IsAuthenticated) {return View("Error", new string[] { "Access Denied" });}ViewBag.returnUrl = returnUrl;return View();}[HttpPost][AllowAnonymous][ValidateAntiForgeryToken]public async Task<ActionResult> Login(LoginModel details, string returnUrl) {if (ModelState.IsValid) {AppUser user = await UserManager.FindAsync(details.Name,details.Password);if (user == null) {ModelState.AddModelError("", "Invalid name or password.");} else {ClaimsIdentity ident = await UserManager.CreateIdentityAsync(user,DefaultAuthenticationTypes.ApplicationCookie); ident.AddClaims(LocationClaimsProvider.GetClaims(ident));ident.AddClaims(ClaimsRoles.CreateRolesFromClaims(ident)); AuthManager.SignOut();AuthManager.SignIn(new AuthenticationProperties {IsPersistent = false}, ident);return Redirect(returnUrl);} }ViewBag.returnUrl = returnUrl;return View(details);} [HttpPost][AllowAnonymous]public ActionResult GoogleLogin(string returnUrl) {var properties = new AuthenticationProperties {RedirectUri = Url.Action("GoogleLoginCallback",new { returnUrl = returnUrl})};HttpContext.GetOwinContext().Authentication.Challenge(properties, "Google");return new HttpUnauthorizedResult();}[AllowAnonymous]public async Task<ActionResult> GoogleLoginCallback(string returnUrl) {ExternalLoginInfo loginInfo = await AuthManager.GetExternalLoginInfoAsync();AppUser user = await UserManager.FindAsync(loginInfo.Login);if (user == null) {user = new AppUser {Email = loginInfo.Email,UserName = loginInfo.DefaultUserName,City = Cities.LONDON, Country = Countries.UK};IdentityResult result = await UserManager.CreateAsync(user);if (!result.Succeeded) {return View("Error", result.Errors);} else {result = await UserManager.AddLoginAsync(user.Id, loginInfo.Login);if (!result.Succeeded) {return View("Error", result.Errors);} }}ClaimsIdentity ident = await UserManager.CreateIdentityAsync(user,DefaultAuthenticationTypes.ApplicationCookie);ident.AddClaims(loginInfo.ExternalIdentity.Claims);AuthManager.SignIn(new AuthenticationProperties {IsPersistent = false }, ident);return Redirect(returnUrl ?? "/");}[Authorize]public ActionResult Logout() {AuthManager.SignOut();return RedirectToAction("Index", "Home");}private IAuthenticationManager AuthManager {get {return HttpContext.GetOwinContext().Authentication;} }private AppUserManager UserManager {get {return HttpContext.GetOwinContext().GetUserManager<AppUserManager>();} }} } The GoogleLogin method creates an instance of the AuthenticationProperties class and sets the RedirectUri property to a URL that targets the GoogleLoginCallback action in the same controller. The next part is a magic phrase that causes ASP.NET Identity to respond to an unauthorized error by redirecting the user to the Google authentication page, rather than the one defined by the application: GoogleLogin方法创建了AuthenticationProperties类的一个实例,并为RedirectUri属性设置了一个URL,其目标为同一控制器中的GoogleLoginCallback动作。下一个部分是一个神奇阶段,通过将用户重定向到Google认证页面,而不是应用程序所定义的认证页面,让ASP.NET Identity对未授权的错误进行响应: ...HttpContext.GetOwinContext().Authentication.Challenge(properties, "Google");return new HttpUnauthorizedResult();... This means that when the user clicks the Log In via Google button, their browser is redirected to the Google authentication service and then redirected back to the GoogleLoginCallback action method once they are authenticated. 这意味着,当用户通过点击Google按钮进行登录时,浏览器被重定向到Google的认证服务,一旦在那里认证之后,便被重定向回GoogleLoginCallback动作方法。 I get details of the external login by calling the GetExternalLoginInfoAsync of the IAuthenticationManager implementation, like this: 我通过调用IAuthenticationManager实现的GetExternalLoginInfoAsync方法,我获得了外部登录的细节,如下所示: ...ExternalLoginInfo loginInfo = await AuthManager.GetExternalLoginInfoAsync();... The ExternalLoginInfo class defines the properties shown in Table 15-10. ExternalLoginInfo类定义的属性如表15-10所示: Table 15-10. The Properties Defined by the ExternalLoginInfo Class 表15-10. ExternalLoginInfo类所定义的属性 Name 名称 Description 描述 DefaultUserName Returns the username 返回用户名 Email Returns the e-mail address 返回E-mail地址 ExternalIdentity Returns a ClaimsIdentity that identities the user 返回标识该用户的ClaimsIdentity Login Returns a UserLoginInfo that describes the external login 返回描述外部登录的UserLoginInfo I use the FindAsync method defined by the user manager class to locate the user based on the value of the ExternalLoginInfo.Login property, which returns an AppUser object if the user has been authenticated with the application before: 我使用了由用户管理器类所定义的FindAsync方法,以便根据ExternalLoginInfo.Login属性的值对用户进行定位,如果用户之前在应用程序中已经认证,该属性会返回一个AppUser对象: ...AppUser user = await UserManager.FindAsync(loginInfo.Login);... If the FindAsync method doesn’t return an AppUser object, then I know that this is the first time that this user has logged into the application, so I create a new AppUser object, populate it with values, and save it to the database. I also save details of how the user logged in so that I can find them next time: 如果FindAsync方法返回的不是AppUser对象,那么我便知道这是用户首次登录应用程序,于是便创建了一个新的AppUser对象,填充该对象的值,并将其保存到数据库。我还保存了用户如何登录的细节,以便下次能够找到他们: ...result = await UserManager.AddLoginAsync(user.Id, loginInfo.Login);... All that remains is to generate an identity the user, copy the claims provided by Google, and create an authentication cookie so that the application knows the user has been authenticated: 剩下的事情只是生成该用户的标识了,拷贝Google提供的声明(Claims),并创建一个认证Cookie,以使应用程序知道此用户已认证: ...ClaimsIdentity ident = await UserManager.CreateIdentityAsync(user,DefaultAuthenticationTypes.ApplicationCookie);ident.AddClaims(loginInfo.ExternalIdentity.Claims);AuthManager.SignIn(new AuthenticationProperties { IsPersistent = false }, ident);... 15.4.2 Testing Google Authentication 15.4.2 测试Google认证 There is one further change that I need to make before I can test Google authentication: I need to change the account verification I set up in Chapter 13 because it prevents accounts from being created with e-mail addresses that are not within the example.com domain. Listing 15-25 shows how I removed the verification from the AppUserManager class. 在测试Google认证之前还需要一处修改:需要修改第13章所建立的账号验证,因为它不允许example.com域之外的E-mail地址创建账号。清单15-25显示了如何在AppUserManager类中删除这种验证。 Listing 15-25. Disabling Account Validation in the AppUserManager.cs File 清单15-25. 在AppUserManager.cs文件中取消账号验证 using Microsoft.AspNet.Identity;using Microsoft.AspNet.Identity.EntityFramework;using Microsoft.AspNet.Identity.Owin;using Microsoft.Owin;using Users.Models; namespace Users.Infrastructure {public class AppUserManager : UserManager<AppUser> {public AppUserManager(IUserStore<AppUser> store): base(store) {}public static AppUserManager Create(IdentityFactoryOptions<AppUserManager> options,IOwinContext context) {AppIdentityDbContext db = context.Get<AppIdentityDbContext>();AppUserManager manager = new AppUserManager(new UserStore<AppUser>(db)); manager.PasswordValidator = new CustomPasswordValidator {RequiredLength = 6,RequireNonLetterOrDigit = false,RequireDigit = false,RequireLowercase = true,RequireUppercase = true}; //manager.UserValidator = new CustomUserValidator(manager) {// AllowOnlyAlphanumericUserNames = true,// RequireUniqueEmail = true//};return manager;} }} Tip you can use validation for externally authenticated accounts, but I am just going to disable the feature for simplicity. 提示:也可以使用外部已认证账号的验证,但这里出于简化,取消了这一特性。 To test authentication, start the application, click the Log In via Google button, and provide the credentials for a valid Google account. When you have completed the authentication process, your browser will be redirected back to the application. If you navigate to the /Claims/Index URL, you will be able to see how claims from the Google system have been added to the user’s identity, as shown in Figure 15-7. 为了测试认证,启动应用程序,通过点击“Log In via Google(通过Google登录)”按钮,并提供有效的Google账号凭据。当你完成了认证过程时,浏览器将被重定向回应用程序。如果导航到/Claims/Index URL,便能够看到来自Google系统的声明(Claims),已被添加到用户的标识中了,如图15-7所示。 Figure 15-7. Claims from Google 图15-7. 来自Google的声明(Claims) 15.5 Summary 15.5 小结 In this chapter, I showed you some of the advanced features that ASP.NET Identity supports. I demonstrated the use of custom user properties and how to use database migrations to preserve data when you upgrade the schema to support them. I explained how claims work and how they can be used to create more flexible ways of authorizing users. I finished the chapter by showing you how to authenticate users via Google, which builds on the ideas behind the use of claims. 本章向你演示了ASP.NET Identity所支持的一些高级特性。演示了自定义用户属性的使用,还演示了在升级数据架构时,如何使用数据库迁移保护数据。我解释了声明(Claims)的工作机制,以及如何将它们用于创建更灵活的用户授权方式。最后演示了如何通过Google进行认证结束了本章,这是建立在使用声明(Claims)的思想基础之上的。 本篇文章为转载内容。原文链接:https://blog.csdn.net/gz19871113/article/details/108591802。 该文由互联网用户投稿提供,文中观点代表作者本人意见,并不代表本站的立场。 作为信息平台,本站仅提供文章转载服务,并不拥有其所有权,也不对文章内容的真实性、准确性和合法性承担责任。 如发现本文存在侵权、违法、违规或事实不符的情况,请及时联系我们,我们将第一时间进行核实并删除相应内容。
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