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[Reflect ]的搜索结果
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... apply 3. Reflect 3.1 Reflect 的作用 3.2 Reflect 的常见方法 3.3 Reflect 的使用 3.4 Receiver的作用 3.5 Reflect 的 construct 4. 响应式 4.1 什么是响应式? 4.2 响应式函数设计 4.3 响应式依赖的收集 4.4 监听对象的变化 4.5 对象的依赖管理 4.6 对 Depend 重构 4.7 创建响应式对象 4.8 Vue2 响应式原理 Proxy 、Relect、响应式 1. 监听对象的操作 需求:有一个对象,我们希望监听这个对象中的属性被设置或获取的过程 可以通过属性描述符中的存储属性描述符来做到 这段代码就利用了 Object.defineProperty 的存储属性描述符来对属性的操作进行监听 const obj = {name: 'why',age: 18}Object.keys(obj).forEach((key) => {let value = obj[key]Object.defineProperty(obj, key, {get: function () {console.log(监听到obj对象的${key}属性被访问了)return value},set: function (newValue) {console.log(监听到obj对象的${key}属性被设置值)value = newValue} })})obj.name = 'kobe'obj.age = 30console.log(obj.name)console.log(obj.age)/ 监听到obj对象的name属性被设置值监听到obj对象的age属性被设置值监听到obj对象的name属性被访问了kobe监听到obj对象的age属性被访问了30/ 属性描述符监听对象的缺点: 首先,Object.defineProperty 设计的初衷,不是为了去监听截止一个对象中所有的属性的 我们在定义某些属性的时候,初衷其实是定义普通的属性,但是后面我们强行将它变成了数据属性描述符 其次,如果我们想监听更加丰富的操作,比如新增属性、删除属性,那么 Object.defineProperty 是无能为力的 所以我们要知道,存储数据描述符设计的初衷并不是为了去监听一个完整的对象 Ps: 原来的对象是 数据属性描述符,通过 Object.defineProperty 变成了 访问属性描述符 2. Proxy基本使用 在ES6中,新增了一个Proxy类,这个类从名字就可以看出来,是用于帮助我们创建一个代理的: 也就是说,如果我们希望监听一个对象的相关操作,那么我们可以先创建一个代理对象(Proxy对象) 之后对该对象的所有操作,都通过代理对象来完成,代理对象可以监听我们想要对原对象进行哪些操作 将上面的案例用 Proxy 来实现一次: 首先,我们需要 new Proxy 对象,并且传入需要侦听的对象以及一个处理对象,可以称之为 handler; const p = new Proxy(target, handler) 其次,我们之后的操作都是直接对 Proxy 的操作,而不是原有的对象,因为我们需要在 handler 里面进行侦听 const obj = {name: 'why',age: 18}const objProxy = new Proxy(obj, {// 获取值时的捕获器get: function (target, key) {console.log(监听到obj对象的${key}属性被访问了)return target[key]},// 设置值时的捕获器set: function (target, key, newValue) {console.log(监听到obj对象的${key}属性被设置值)target[key] = newValue} })console.log(objProxy.name)console.log(objProxy.age)objProxy.name = 'kobe'objProxy.age = 30console.log(obj.name)console.log(obj.age)/ 监听到obj对象的name属性被访问了why监听到obj对象的age属性被访问了18监听到obj对象的name属性被设置值监听到obj对象的age属性被设置值kobe30/ 2.1 Proxy 的 set 和 get 捕获器 如果我们想要侦听某些具体的操作,那么就可以在 handler 中添加对应的捕捉器(Trap) set 和 get 分别对应的是函数类型 set 函数有四个参数: target:目标对象(侦听的对象) property:将被设置的属性 key value:新属性值 receiver:调用的代理对象 get 函数有三个参数 target:目标对象(侦听的对象) property:被获取的属性 key receiver:调用的代理对象 2.2 Proxy 所有捕获器 (13个) handler.getPrototypeOf() Object.getPrototypeOf 方法的捕捉器 handler.setPrototypeOf() Object.setPrototypeOf 方法的捕捉器 handler.isExtensible() Object.isExtensible 方法的捕捉器 handler.preventExtensions() Object.preventExtensions 方法的捕捉器 handler.getOwnPropertyDescriptor() Object.getOwnPropertyDescriptor 方法的捕捉器 handler.defineProperty() Object.defineProperty 方法的捕捉器 handler.ownKeys() Object.getOwnPropertyNames 方法和 Object.getOwnPropertySymbols 方法的捕捉器 handler.has() in 操作符的捕捉器 handler.get() 属性读取操作的捕捉器 handler.set() 属性设置操作的捕捉器 handler.deleteProperty() delete 操作符的捕捉器 handler.apply() 函数调用操作的捕捉器 handler.construct() new 操作符的捕捉器 const obj = {name: 'why',age: 18}const objProxy = new Proxy(obj, {// 获取值时的捕获器get: function (target, key) {console.log(监听到obj对象的${key}属性被访问了)return target[key]},// 设置值时的捕获器set: function (target, key, newValue) {console.log(监听到obj对象的${key}属性被设置值)target[key] = newValue},// 监听 in 的捕获器has: function (target, key) {console.log(监听到obj对象的${key}属性的in操作)return key in target},// 监听 delete 的捕获器deleteProperty: function (target, key) {console.log(监听到obj对象的${key}属性的delete操作)delete target[key]} })// in 操作符console.log('name' in objProxy)// delete 操作delete objProxy.name/ 监听到obj对象的name属性的in操作true监听到obj对象的name属性的delete操作/ 2.3 Proxy 的 construct 和 apply 到捕捉器中还有 construct 和 apply,它们是应用于函数对象的 function foo() {console.log('调用了 foo')}const fooProxy = new Proxy(foo, {apply: function (target, thisArg, argArray) {console.log(对 foo 函数进行了 apply 调用)target.apply(thisArg, argArray)},construct: function (target, argArray, newTarget) {console.log(对 foo 函数进行了 new 调用)return new target(...argArray)} })fooProxy.apply({}, ['abc', 'cba'])new fooProxy('abc', 'cba')/ 对 foo 函数进行了 apply 调用调用了 foo对 foo 函数进行了 new 调用调用了 foo/ 3. Reflect 3.1 Reflect 的作用 Reflect 也是 ES6 新增的一个 API,它是一个对象,字面的意思是反射 Reflect 的作用: 它主要提供了很多操作 JavaScript 对象的方法,有点像 Object 中操作对象的方法 比如 Reflect.getPrototypeOf(target) 类似于 Object.getPrototypeOf() 比如 Reflect.defineProperty(target, propertyKey, attributes) 类似于 Object.defineProperty() 如果我们有 Object 可以做这些操作,那么为什么还需要有Reflect这样的新增对象呢? 这是因为在早期的 ECMA 规范中没有考虑到这种对 对象本身 的操作如何设计会更加规范,所以将这些 API 放到了 Object上面 但是 Object 作为一个构造函数,这些操作实际上放到它身上并不合适 另外还包含一些类似于 in、delete 操作符,让 JS 看起来是会有一些奇怪的 所以在 ES6 中新增了 Reflect,让我们这些操作都集中到了 Reflect 对象上 那么 Object 和 Reflect 对象之间的 API 关系,可以参考 MDN 文档: 比较 Reflect 和 Object 方法 3.2 Reflect 的常见方法 Reflect中有哪些常见的方法呢?它和Proxy是一一对应的,也是13个 Reflect.getPrototypeOf(target) 类似于 Object.getPrototypeOf() Reflect.setPrototypeOf(target, prototype) 设置对象原型的函数. 返回一个 Boolean, 如果更新成功,则返回 true Reflect.isExtensible(target) 类似于 Object.isExtensible() Reflect.preventExtensions(target) 类似于 Object.preventExtensions() , 返回一个 Boolean Reflect.getOwnPropertyDescriptor(target, propertyKey) 类似于 Object.getOwnPropertyDescriptor() , 如果对象中存在该属性,则返回对应的属性描述符, 否则返回 undefined Reflect.defineProperty(target, propertyKey, attributes) 和 Object.defineProperty() 类似, 如果设置成功就会返回 true Reflect.ownKeys(target) 返回一个包含所有自身属性(不包含继承属性)的数组 (类似于 Object.keys(), 但不会受 enumerable 影响) Reflect.has(target, propertyKey) 判断一个对象是否存在某个属性,和 in 运算符 的功能完全相同 Reflect.get(target, propertyKey[, receiver]) 获取对象身上某个属性的值,类似于 target[name] Reflect.set(target, propertyKey, value[, receiver]) 将值分配给属性的函数,返回一个 Boolean,如果更新成功,则返回 true Reflect.deleteProperty(target, propertyKey) 作为函数的 delete 操作符,相当于执行 delete target[name] Reflect.apply(target, thisArgument, argumentsList) 对一个函数进行调用操作,同时可以传入一个数组作为调用参数。和 Function.prototype.apply() 功能类似 Reflect.construct(target, argumentsList[, newTarget]) 对构造函数进行 new 操作,相当于执行 new target(...args) 3.3 Reflect 的使用 那么我们可以将之前Proxy案例中对原对象的操作,都修改为Reflect来操作 const obj = {name: 'why',age: 18}const objProxy = new Proxy(obj, {get: function (target, key) {console.log(监听到obj对象的${key}属性被访问了)return Reflect.get(target, key)// return target[key] // 对原来对象进行了直接操作},set: function (target, key, newValue) {console.log(监听到obj对象的${key}属性被设置值)Reflect.set(target, key, newValue)// target[key] = newValue // 对原来对象进行了直接操作} })objProxy.name = 'kobe'console.log(objProxy.name)/ 监听到obj对象的name属性被设置值监听到obj对象的name属性被访问了kobe/ 3.4 Receiver的作用 我们发现在使用getter、setter的时候有一个receiver的参数,它的作用是什么呢? 如果我们的源对象(obj)有 setter 、getter 的访问器属性,那么可以通过 receiver 来改变里面的 this const obj = {_name: 'why',get name() {return this._name // 不使用receiver, _name属性的操作不会被objProxy代理,因为this指向obj},set name(newValue) {this._name = newValue} }const objProxy = new Proxy(obj, {get: function (target, key, receiver) {// receiver 是创建出来的代理对象console.log('get 方法被访问-------', key, receiver)console.log(objProxy === receiver) // truereturn Reflect.get(target, key, receiver)},set: function (target, key, newValue, receiver) {Reflect.set(target, key, newValue, receiver)} })objProxy.name = 'kobe'console.log(objProxy.name) // kobe/ get 方法被访问------- name { _name: 'kobe', name: [Getter/Setter] }trueget 方法被访问------- _name { _name: 'kobe', name: [Getter/Setter] }truekobe/ 3.5 Reflect 的 construct function Student(name, age) {this.name = namethis.age = age}function Teacher() {}const stu = new Student('why', 18)console.log(stu)console.log(stu.__proto__ === Student.prototype)/ Student { name: 'why', age: 18 }true/// 执行 Student 函数中的内容,但是创建出来的对象是 Teacher 对象const teacher = Reflect.construct(Student, ['why', 18], Teacher)console.log(teacher)console.log(teacher.__proto__ === Teacher.prototype)/ Teacher { name: 'why', age: 18 }true/ 4. 响应式 4.1 什么是响应式? 先来看一下响应式意味着什么?我们来看一段代码: m 有一个初始化的值,有一段代码使用了这个值; 那么在 m 有一个新的值时,这段代码可以自动重新执行 let m = 0// 一段代码console.log(m)console.log(m 2)console.log(m 2)m = 200 上面的这样一种可以自动响应数据变量的代码机制,我们就称之为是响应式的 对象的响应式 4.2 响应式函数设计 首先,执行的代码中可能不止一行代码,所以我们可以将这些代码放到一个函数中: 那么问题就变成了,当数据发生变化时,自动去执行某一个函数; 但是有一个问题:在开发中是有很多的函数的,如何区分一个函数需要响应式,还是不需要响应式呢? 很明显,下面的函数中 foo 需要在 obj 的 name 发生变化时,重新执行,做出相应; bar 函数是一个完全独立于 obj 的函数,它不需要执行任何响应式的操作; // 对象的响应式const obj = {name: 'why',age: 18}function foo() {const newName = obj.nameconsole.log('你好啊,李银河')console.log('Hello World')console.log(obj.name)}function bar() {console.log('普通的其他函数')console.log('这个函数不需要有任何的响应式')}obj.name = 'kobe' // name 发生改变时候 foo 函数执行 响应式函数的实现 watchFn 如何区分响应式函数? 这个时候我们封装一个新的函数 watchFn 凡是传入到 watchFn 的函数,就是需要响应式的 其他默认定义的函数都是不需要响应式的 / 封装一个响应式的函数 /let reactiveFns = []function watchFn(fn) {reactiveFns.push(fn)}// 对象的响应式const obj = {name: 'why',age: 18}watchFn(function foo() {const newName = obj.nameconsole.log('你好啊,李银河')console.log('Hello World')console.log(obj.name)})watchFn(function demo() {console.log(obj.name, 'demo function ---------')})function bar() {console.log('普通的其他函数')console.log('这个函数不需要有任何的响应式')}obj.name = 'kobe' // name 发生改变时候 foo 函数执行reactiveFns.forEach((fn) => {fn()}) 4.3 响应式依赖的收集 目前收集的依赖是放到一个数组中来保存的,但是这里会存在数据管理的问题: 在实际开发中需要监听很多对象的响应式 这些对象需要监听的不只是一个属性,它们很多属性的变化,都会有对应的响应式函数 不可能在全局维护一大堆的数组来保存这些响应函数 所以要设计一个类,这个类用于管理某一个对象的某一个属性的所有响应式函数: 相当于替代了原来的简单 reactiveFns 的数组; class Depend {constructor() {this.reactiveFns = []}addDepend(reactiveFn) {this.reactiveFns.push(reactiveFn)}notify() {this.reactiveFns.forEach((fn) => {fn()})} }const depend = new Depend()function watchFn(fn) {depend.addDepend(fn)}// 对象的响应式const obj = {name: 'why', // depend 对象age: 18 // depend 对象}watchFn(function foo() {const newName = obj.nameconsole.log('你好啊,李银河')console.log('Hello World')console.log(obj.name)})watchFn(function demo() {console.log(obj.name, 'demo function ---------')})function bar() {console.log('普通的其他函数')console.log('这个函数不需要有任何的响应式')}obj.name = 'kobe'depend.notify() 4.4 监听对象的变化 那么接下来就可以通过之前的方式来监听对象的变化: 方式一:通过 Object.defineProperty 的方式(vue2采用的方式); 方式二:通过 new Proxy 的方式(vue3采用的方式); 我们这里先以Proxy的方式来监听 class Depend {constructor() {this.reactiveFns = []}addDepend(reactiveFn) {this.reactiveFns.push(reactiveFn)}notify() {this.reactiveFns.forEach((fn) => {fn()})} }const depend = new Depend()function watchFn(fn) {depend.addDepend(fn)}// 对象的响应式const obj = {name: 'why', // depend 对象age: 18 // depend 对象}// 监听对象的属性变化:Proxy(vue3)/Object.defineProperty(vue2)const objProxy = new Proxy(obj, {get: function (target, key, receiver) {return Reflect.get(target, key, receiver)},set: function (target, key, newValue, receiver) {Reflect.set(target, key, newValue, receiver)depend.notify()} })watchFn(function foo() {const newName = objProxy.nameconsole.log('你好啊,李银河')console.log('Hello World')console.log(objProxy.name)})watchFn(function demo() {console.log(objProxy.name, 'demo function ---------')})objProxy.name = 'kobe'objProxy.name = 'james'/ 你好啊,李银河Hello Worldkobekobe demo function ---------你好啊,李银河Hello Worldjamesjames demo function ---------/ 4.5 对象的依赖管理 目前是创建了一个 Depend 对象,用来管理对于 name 变化需要监听的响应函数: 但是实际开发中我们会有不同的对象,另外会有不同的属性需要管理; 如何可以使用一种数据结构来管理不同对象的不同依赖关系呢? 在前面我们刚刚学习过 WeakMap,并且在学习 WeakMap 的时候我讲到了后面通过 WeakMap 如何管理这种响应式的数据依赖: 实现 可以写一个 getDepend 函数专门来管理这种依赖关系 / 封装一个获取depend的函数 /const taregtMap = new WeakMap()function getDepend(target, key) {// 根据target对象获取mapconst map = taregtMap.get(target)if (!map) {map = new Map()taregtMap.set(target, map)}// 根据key获取depend对象const depend = map.get(key)if (!depend) {depend = new Depend()map.set(key, depend)}return depend}// 监听对象的属性变化:Proxy(vue3)/Object.defineProperty(vue2)const objProxy = new Proxy(obj, {get: function (target, key, receiver) {return Reflect.get(target, key, receiver)},set: function (target, key, newValue, receiver) {Reflect.set(target, key, newValue, receiver)const depend = getDepend(target, key)depend.notify()} }) 正确的依赖收集 我们之前收集依赖的地方是在 watchFn 中: 但是这种收集依赖的方式我们根本不知道是哪一个 key 的哪一个 depend 需要收集依赖; 只能针对一个单独的 depend 对象来添加你的依赖对象; 那么正确的应该是在哪里收集呢?应该在我们调用了 Proxy 的 get 捕获器时 因为如果一个函数中使用了某个对象的 key,那么它应该被收集依赖 / 封装一个响应式函数 /let activeReactviceFn = nullfunction watchFn(fn) {activeReactviceFn = fnfn()activeReactviceFn = null}/ 封装一个获取depend的函数 /const taregtMap = new WeakMap()function getDepend(target, key) {// 根据target对象获取maplet map = taregtMap.get(target)if (!map) {map = new Map()taregtMap.set(target, map)}// 根据key获取depend对象let depend = map.get(key)if (!depend) {depend = new Depend()map.set(key, depend)}return depend}// 监听对象的属性变化:Proxy(vue3)/Object.defineProperty(vue2)const objProxy = new Proxy(obj, {get: function (target, key, receiver) {// 根据 target key 获取对应的 depnedconst depend = getDepend(target, key)// 给 depend 对象中添加响应式函数activeReactviceFn && depend.addDepend(activeReactviceFn)return Reflect.get(target, key, receiver)},set: function (target, key, newValue, receiver) {Reflect.set(target, key, newValue, receiver)const depend = getDepend(target, key)depend.notify()} }) 4.6 对 Depend 重构 两个问题: 问题一:如果函数中有用到两次 key,比如 name,那么这个函数会被收集两次 问题二:我们并不希望将添加 reactiveFn 放到 get 中,因为它是属于 Depend 的行为 所以我们需要对 Depend 类进行重构: 解决问题一的方法:不使用数组,而是使用 Set 解决问题二的方法:添加一个新的方法,用于收集依赖 // 保存当前需要收集的响应式函数let activeReactviceFn = nullclass Depend {constructor() {this.reactiveFns = new Set()}depend() {if (activeReactviceFn) {this.reactiveFns.add(activeReactviceFn)} }addDepend(reactiveFn) {this.reactiveFns.add(reactiveFn)}notify() {this.reactiveFns.forEach((fn) => {fn()})} }// 对象的响应式const obj = {name: 'why', // depend 对象age: 18 // depend 对象}/ 封装一个响应式函数 /function watchFn(fn) {activeReactviceFn = fnfn()activeReactviceFn = null}/ 封装一个获取depend的函数 /const taregtMap = new WeakMap()function getDepend(target, key) {// 根据target对象获取maplet map = taregtMap.get(target)if (!map) {map = new Map()taregtMap.set(target, map)}// 根据key获取depend对象let depend = map.get(key)if (!depend) {depend = new Depend()map.set(key, depend)}return depend}// 监听对象的属性变化:Proxy(vue3)/Object.defineProperty(vue2)const objProxy = new Proxy(obj, {get: function (target, key, receiver) {// 根据 target key 获取对应的 depnedconst depend = getDepend(target, key)// 给 depend 对象中添加响应式函数depend.depend()return Reflect.get(target, key, receiver)},set: function (target, key, newValue, receiver) {Reflect.set(target, key, newValue, receiver)const depend = getDepend(target, key)depend.notify()} })watchFn(function () {console.log(objProxy.name, '--------------')console.log(objProxy.name, '++++++++++++++')})objProxy.name = 'kobe'/ why --------------why ++++++++++++++kobe --------------kobe ++++++++++++++/ 4.7 创建响应式对象 目前的响应式是针对于obj一个对象的,我们可以创建出来一个函数,针对所有的对象都可以变成响应式对象 / 保存当前需要收集的响应式函数 /let activeReactviceFn = null/ 依赖收集类 /class Depend {constructor() {this.reactiveFns = new Set()}depend() {if (activeReactviceFn) {this.reactiveFns.add(activeReactviceFn)} }addDepend(reactiveFn) {this.reactiveFns.add(reactiveFn)}notify() {this.reactiveFns.forEach((fn) => {fn()})} }/ 封装一个响应式函数 /function watchFn(fn) {activeReactviceFn = fnfn()activeReactviceFn = null}/ 封装一个获取depend的函数 /const taregtMap = new WeakMap()function getDepend(target, key) {// 根据target对象获取maplet map = taregtMap.get(target)if (!map) {map = new Map()taregtMap.set(target, map)}// 根据key获取depend对象let depend = map.get(key)if (!depend) {depend = new Depend()map.set(key, depend)}return depend}/ 创建响应式对象函数 /function reactive(obj) {// 监听对象的属性变化:Proxy(vue3)/Object.defineProperty(vue2)return new Proxy(obj, {get: function (target, key, receiver) {// 根据 target key 获取对应的 depnedconst depend = getDepend(target, key)// 给 depend 对象中添加响应式函数depend.depend()return Reflect.get(target, key, receiver)},set: function (target, key, newValue, receiver) {Reflect.set(target, key, newValue, receiver)const depend = getDepend(target, key)depend.notify()} })}const info = reactive({address: '广州市',height: 1.88})watchFn(() => {console.log(info.address, '---')})info.address = '北京市' 4.8 Vue2 响应式原理 前面所实现的响应式的代码,其实就是 Vue3 中的响应式原理: Vue3 主要是通过 Proxy 来监听数据的变化以及收集相关的依赖的 Vue2 中通过 Object.defineProerty的方式来实现对象属性的监听 可以将 reactive 函数进行如下的重构: 在传入对象时,我们可以遍历所有的 key,并且通过属性存储描述符来监听属性的获取和修改 在 setter 和 getter 方法中的逻辑和前面的 Proxy 是一致的 / 保存当前需要收集的响应式函数 /let activeReactviceFn = null/ 依赖收集类 /class Depend {constructor() {this.reactiveFns = new Set()}depend() {if (activeReactviceFn) {this.reactiveFns.add(activeReactviceFn)} }addDepend(reactiveFn) {this.reactiveFns.add(reactiveFn)}notify() {this.reactiveFns.forEach((fn) => {fn()})} }/ 封装一个响应式函数 /function watchFn(fn) {activeReactviceFn = fnfn()activeReactviceFn = null}/ 封装一个获取depend的函数 /const taregtMap = new WeakMap()function getDepend(target, key) {// 根据target对象获取maplet map = taregtMap.get(target)if (!map) {map = new Map()taregtMap.set(target, map)}// 根据key获取depend对象let depend = map.get(key)if (!depend) {depend = new Depend()map.set(key, depend)}return depend}/ 创建响应式对象函数 /function reactive(obj) {Object.keys(obj).forEach((key) => {let value = obj[key]Object.defineProperty(obj, key, {get: function () {const dep = getDepend(obj, key)dep.depend()return value},set: function (newValue) {value = newValueconst dep = getDepend(obj, key)dep.notify()} })})return obj}const info = reactive({address: '广州市',height: 1.88})watchFn(() => {console.log(info.address, '---')})info.address = '北京市' 本篇文章为转载内容。原文链接:https://blog.csdn.net/wanghuan1020/article/details/126774033。 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。
2023-01-11 12:37:47
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...18)at sun.reflect.NativeMethodAccessorImpl.invoke0(Native Method)at sun.reflect.NativeMethodAccessorImpl.invoke(NativeMethodAccessorImpl.java:62)at sun.reflect.DelegatingMethodAccessorImpl.invoke(DelegatingMethodAccessorImpl.java:43)at java.lang.reflect.Method.invoke(Method.java:498)at org.junit.runners.model.FrameworkMethod$1.runReflectiveCall(FrameworkMethod.java:47)at org.junit.internal.runners.model.ReflectiveCallable.run(ReflectiveCallable.java:12)at org.junit.runners.model.FrameworkMethod.invokeExplosively(FrameworkMethod.java:44)at org.junit.internal.runners.statements.InvokeMethod.evaluate(InvokeMethod.java:17)at org.junit.runners.ParentRunner.runLeaf(ParentRunner.java:271)at org.junit.runners.BlockJUnit4ClassRunner.runChild(BlockJUnit4ClassRunner.java:70)at org.junit.runners.BlockJUnit4ClassRunner.runChild(BlockJUnit4ClassRunner.java:50)at org.junit.runners.ParentRunner$3.run(ParentRunner.java:238)at org.junit.runners.ParentRunner$1.schedule(ParentRunner.java:63)at org.junit.runners.ParentRunner.runChildren(ParentRunner.java:236)at org.junit.runners.ParentRunner.access$000(ParentRunner.java:53)at org.junit.runners.ParentRunner$2.evaluate(ParentRunner.java:229)at org.junit.runners.ParentRunner.run(ParentRunner.java:309)at org.junit.runner.JUnitCore.run(JUnitCore.java:160)at com.intellij.junit4.JUnit4IdeaTestRunner.startRunnerWithArgs(JUnit4IdeaTestRunner.java:68)at com.intellij.rt.execution.junit.IdeaTestRunner$Repeater.startRunnerWithArgs(IdeaTestRunner.java:47)at com.intellij.rt.execution.junit.JUnitStarter.prepareStreamsAndStart(JUnitStarter.java:242)at com.intellij.rt.execution.junit.JUnitStarter.main(JUnitStarter.java:70) 一般这总情况就是 > Mybatis的config文件忘记在<configuration></configuration>> 里加上以下代码了,下边的UserMapper.xml换成你们报错的文件 <mappers><mapper resource="com/itcase/dao/UserMapper.xml"/></mappers> 要是加了mapper依然报错,如果是以下错误的话:点我看另一篇博客 Caused by: org.apache.ibatis.exceptions.PersistenceException: Error building SqlSession. The error may exist in com/itcase/dao/UserMapper.xml Cause: org.apache.ibatis.builder.BuilderException: Error parsing SQL Mapper Configuration. Cause: java.io.IOException: Could not find resource com/itcase/dao/UserMapper.xmlat org.apache.ibatis.exceptions.ExceptionFactory.wrapException(ExceptionFactory.java:30)at org.apache.ibatis.session.SqlSessionFactoryBuilder.build(SqlSessionFactoryBuilder.java:80)at org.apache.ibatis.session.SqlSessionFactoryBuilder.build(SqlSessionFactoryBuilder.java:64)at com.itcase.util.MybatisUtil.<clinit>(MybatisUtil.java:20)... 23 moreCaused by: org.apache.ibatis.builder.BuilderException: Error parsing SQL Mapper Configuration. Cause: java.io.IOException: Could not find resource com/itcase/dao/UserMapper.xmlat org.apache.ibatis.builder.xml.XMLConfigBuilder.parseConfiguration(XMLConfigBuilder.java:121)at org.apache.ibatis.builder.xml.XMLConfigBuilder.parse(XMLConfigBuilder.java:98)at org.apache.ibatis.session.SqlSessionFactoryBuilder.build(SqlSessionFactoryBuilder.java:78)... 25 moreCaused by: java.io.IOException: Could not find resource com/itcase/dao/UserMapper.xmlat org.apache.ibatis.io.Resources.getResourceAsStream(Resources.java:114)at org.apache.ibatis.io.Resources.getResourceAsStream(Resources.java:100)at org.apache.ibatis.builder.xml.XMLConfigBuilder.mapperElement(XMLConfigBuilder.java:372)at org.apache.ibatis.builder.xml.XMLConfigBuilder.parseConfiguration(XMLConfigBuilder.java:119)... 27 more 本篇文章为转载内容。原文链接:https://blog.csdn.net/kaikai_gege/article/details/109730197。 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 12:10:23
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...s 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。
2023-10-28 08:49:21
283
转载
转载文章
...pt规范的不断演进,Reflect API作为对Object操作的补充,提供了更加强大且一致的方法来处理属性,包括访问器属性。利用Reflect.defineProperty()、Reflect.get()、Reflect.set()等方法,开发者能够更加灵活地操控对象属性,这不仅增强了代码的简洁性和一致性,也为未来的异步编程模型提供了更多可能。 此外,TypeScript作为一种强类型的语言,也对访问器属性提供了良好的支持。开发者可以为访问器属性定义明确的类型签名,使得编译器能在编译阶段就进行类型检查,从而有效预防运行时错误,提升代码质量。 近期,JavaScript社区的一些讨论热点也聚焦于如何更好地运用数据属性和访问器属性优化性能、改善内存管理以及实现更复杂的业务逻辑。例如,通过自定义访问器属性实现自动化的资源懒加载、状态管理等功能,成为许多库和框架设计的新趋势。 总之,理解并掌握数据属性和访问器属性是每一位JavaScript开发者必备的基础知识,而关注其在前沿技术领域及最新实践案例中的应用,则有助于我们不断提升技术水平,适应快速发展的前端开发环境。
2023-06-09 18:12:44
116
转载
Go-Spring
...}, method reflect.Method, args []reflect.Value) error { log.Printf("Executing method %s of type %T", method.Name, target) return nil } // 注册切面 spring.RegisterBean(new(LoggingAspect)).AsAop(".") // 假设我们有一个被切面拦截的方法 type MyService struct{} func (m MyService) Process() {} 在这个例子中,Go-Spring的AOP功能允许我们在不修改原有业务逻辑的前提下,对特定方法进行统一的日志处理。这种非侵入式的编程方式极大地增强了代码的可维护性和复用性。 5. 组件化管理与模块化设计 Go-Spring倡导组件化管理和模块化设计,通过其提供的自动配置、条件注解等功能,可以实现模块的独立开发、独立测试以及按需加载,从而降低模块间的耦合度,提高代码质量和可维护性。 6. 结语 在当今快节奏的开发环境中,选择正确的工具和技术框架至关重要。Go-Spring这个家伙,它有着自己独特的设计理念和牛哄哄的功能特性,实实在在地帮我们在提升Go应用程序的代码质量和维护便捷性上撑起了腰杆子。不过,要让这些特性真正火力全开,发挥作用,咱们得在实际开发的过程中,像啃透一本好书那样深入理解它们,并且练就得炉火纯青。同时,也要结合咱团队独家秘籍——最佳实践,不断打磨、优化我们的代码质量,让它既结实耐用又易于维护,就像保养爱车一样精心对待。毕竟,每个优秀的项目背后,都离不开一群热爱并执着于代码优化的人们,他们思考、探索,用智慧和热情塑造着每一行代码的质量和生命力。
2023-09-19 21:39:01
482
素颜如水
转载文章
...java.lang.reflect.Field;public class InjectActivity extends AppCompatActivity {private int mLayoutId = -1;@Overrideprotected void onCreate(Bundle savedInstanceState) {super.onCreate(savedInstanceState);displayInjectLayout();displayInjectView();}/ 解析注解view id/private void displayInjectView() {if (mLayoutId <=0){return ;}Class<?> clazz = this.getClass();Field[] fields = clazz.getDeclaredFields();//获得声明的成员变量for (Field field : fields) {//判断是否有注解try {if (field.getAnnotations() != null) {if (field.isAnnotationPresent(ViewInject.class)) {//如果属于这个注解//为这个控件设置属性field.setAccessible(true);//允许修改反射属性ViewInject inject = field.getAnnotation(ViewInject.class);field.set(this, this.findViewById(inject.value()));} }} catch (Exception e) {Log.e("wusy", "not found view id!");} }}/ 注解布局Layout id/private void displayInjectLayout() {Class<?> clazz = this.getClass();if (clazz.getAnnotations() != null){if (clazz.isAnnotationPresent(LayouyInject.class)){LayouyInject inject = clazz.getAnnotation(LayouyInject.class);mLayoutId = inject.value();setContentView(mLayoutId);} }} } 首先,这里是根据映射实现设置控件的注解,java中使用反射的机制效率性能并不高。这里只是举例子实现注解。ButterKnife官方申明不是通过反射机制,因此效率会高点。 package cn.wsy.myretrofit;import android.os.Bundle;import android.widget.TextView;import cn.wsy.myretrofit.annotation.InjectActivity;import cn.wsy.myretrofit.annotation.LayouyInject;import cn.wsy.myretrofit.annotation.ViewInject;@LayoutInject(R.layout.activity_main)public class MainActivity extends InjectActivity {@ViewInject(R.id.textview)private TextView textView;@ViewInject(R.id.textview1)private TextView textview1;@ViewInject(R.id.textview2)private TextView textview2;@ViewInject(R.id.textview3)private TextView textview3;@ViewInject(R.id.textview4)private TextView textview4;@ViewInject(R.id.textview5)private TextView textview5;@Overrideprotected void onCreate(Bundle savedInstanceState) {super.onCreate(savedInstanceState);//设置属性textView.setText("OK");textview1.setText("OK1");textview2.setText("OK2");textview3.setText("OK3");textview4.setText("OK4");textview5.setText("OK5");} } 上面直接继承InjectActivity即可,文章上面也有说过:LayouyInject为什么作用域是TYPE,首先在加载view的时候,肯定是优先加载布局啊,ButterKnife也不例外。因此选择作用域在描述类,并且存在运行时。 二、解析Annotation原理 1、运行时 Annotation 解析 (1) 运行时 Annotation 指 @Retention 为 RUNTIME 的 Annotation,可手动调用下面常用 API 解析 method.getAnnotation(AnnotationName.class);method.getAnnotations();method.isAnnotationPresent(AnnotationName.class); 其他 @Target 如 Field,Class 方法类似 。 getAnnotation(AnnotationName.class) 表示得到该 Target 某个 Annotation 的信息,一个 Target 可以被多个 Annotation 修饰; getAnnotations() 则表示得到该 Target 所有 Annotation ; isAnnotationPresent(AnnotationName.class) 表示该 Target 是否被某个 Annotation 修饰; (2) 解析示例如下: public static void main(String[] args) {try {Class cls = Class.forName("cn.trinea.java.test.annotation.App");for (Method method : cls.getMethods()) {MethodInfo methodInfo = method.getAnnotation(MethodInfo.class);if (methodInfo != null) {System.out.println("method name:" + method.getName());System.out.println("method author:" + methodInfo.author());System.out.println("method version:" + methodInfo.version());System.out.println("method date:" + methodInfo.date());} }} catch (ClassNotFoundException e) {e.printStackTrace();} } 以之前自定义的 MethodInfo 为例,利用 Target(这里是 Method)getAnnotation 函数得到 Annotation 信息,然后就可以调用 Annotation 的方法得到响应属性值 。 2、编译时 Annotation 解析 (1) 编译时 Annotation 指 @Retention 为 CLASS 的 Annotation,甴 apt(Annotation Processing Tool) 解析自动解析。 使用方法: 自定义类集成自 AbstractProcessor; 重写其中的 process 函数 这块很多同学不理解,实际是 apt(Annotation Processing Tool) 在编译时自动查找所有继承自 AbstractProcessor 的类,然后调用他们的 process 方法去处理。 (2) 假设之前自定义的 MethodInfo 的 @Retention 为 CLASS,解析示例如下: @SupportedAnnotationTypes({ "cn.trinea.java.test.annotation.MethodInfo" })public class MethodInfoProcessor extends AbstractProcessor {@Overridepublic boolean process(Set<? extends TypeElement> annotations, RoundEnvironment env) {HashMap<String, String> map = new HashMap<String, String>();for (TypeElement te : annotations) {for (Element element : env.getElementsAnnotatedWith(te)) {MethodInfo methodInfo = element.getAnnotation(MethodInfo.class);map.put(element.getEnclosingElement().toString(), methodInfo.author());} }return false;} } SupportedAnnotationTypes 表示这个 Processor 要处理的 Annotation 名字。 process 函数中参数 annotations 表示待处理的 Annotations,参数 env 表示当前或是之前的运行环境 process 函数返回值表示这组 annotations 是否被这个 Processor 接受,如果接受后续子的 rocessor 不会再对这个 Annotations 进行处理 三、几个 Android 开源库 Annotation 原理简析 1、Retrofit (1) 调用 @GET("/users/{username}")User getUser(@Path("username") String username); (2) 定义 @Documented@Target(METHOD)@Retention(RUNTIME)@RestMethod("GET")public @interface GET {String value();} 从定义可看出 Retrofit 的 Get Annotation 是运行时 Annotation,并且只能用于修饰 Method (3) 原理 private void parseMethodAnnotations() {for (Annotation methodAnnotation : method.getAnnotations()) {Class<? extends Annotation> annotationType = methodAnnotation.annotationType();RestMethod methodInfo = null;for (Annotation innerAnnotation : annotationType.getAnnotations()) {if (RestMethod.class == innerAnnotation.annotationType()) {methodInfo = (RestMethod) innerAnnotation;break;} }……} } RestMethodInfo.java 的 parseMethodAnnotations 方法如上,会检查每个方法的每个 Annotation, 看是否被 RestMethod 这个 Annotation 修饰的 Annotation 修饰,这个有点绕,就是是否被 GET、DELETE、POST、PUT、HEAD、PATCH 这些 Annotation 修饰,然后得到 Annotation 信息,在对接口进行动态代理时会掉用到这些 Annotation 信息从而完成调用。 因为 Retrofit 原理设计到动态代理,这里只介绍 Annotation。 2、Butter Knife (1) 调用 @InjectView(R.id.user) EditText username; (2) 定义 @Retention(CLASS) @Target(FIELD)public @interface InjectView {int value();} 可看出 Butter Knife 的 InjectView Annotation 是编译时 Annotation,并且只能用于修饰属性 (3) 原理 @Override public boolean process(Set<? extends TypeElement> elements, RoundEnvironment env) {Map<TypeElement, ViewInjector> targetClassMap = findAndParseTargets(env);for (Map.Entry<TypeElement, ViewInjector> entry : targetClassMap.entrySet()) {TypeElement typeElement = entry.getKey();ViewInjector viewInjector = entry.getValue();try {JavaFileObject jfo = filer.createSourceFile(viewInjector.getFqcn(), typeElement);Writer writer = jfo.openWriter();writer.write(viewInjector.brewJava());writer.flush();writer.close();} catch (IOException e) {error(typeElement, "Unable to write injector for type %s: %s", typeElement, e.getMessage());} }return true;} ButterKnifeProcessor.java 的 process 方法如上,编译时,在此方法中过滤 InjectView 这个 Annotation 到 targetClassMap 后,会根据 targetClassMap 中元素生成不同的 class 文件到最终的 APK 中,然后在运行时调用 ButterKnife.inject(x) 函数时会到之前编译时生成的类中去找。 3、ActiveAndroid (1) 调用 @Column(name = “Name") public String name; (2) 定义 @Target(ElementType.FIELD)@Retention(RetentionPolicy.RUNTIME)public @interface Column {……} 可看出 ActiveAndroid 的 Column Annotation 是运行时 Annotation,并且只能用于修饰属性 (3) 原理 Field idField = getIdField(type);mColumnNames.put(idField, mIdName);List<Field> fields = new LinkedList<Field>(ReflectionUtils.getDeclaredColumnFields(type));Collections.reverse(fields);for (Field field : fields) {if (field.isAnnotationPresent(Column.class)) {final Column columnAnnotation = field.getAnnotation(Column.class);String columnName = columnAnnotation.name();if (TextUtils.isEmpty(columnName)) {columnName = field.getName();}mColumnNames.put(field, columnName);} } TableInfo.java 的构造函数如上,运行时,得到所有行信息并存储起来用来构件表信息。 ———————————————————————— 最后一个问题,看看这段代码最后运行结果: public class Person {private int id;private String name;public Person(int id, String name) {this.id = id;this.name = name;}public boolean equals(Person person) {return person.id == id;}public int hashCode() {return id;}public static void main(String[] args) {Set<Person> set = new HashSet<Person>();for (int i = 0; i < 10; i++) {set.add(new Person(i, "Jim"));}System.out.println(set.size());} } 答案:示例代码运行结果应该是 10 而不是 1,这个示例代码程序实际想说明的是标记型注解 Override 的作用,为 equals 方法加上 Override 注解就知道 equals 方法的重载是错误的,参数不对。 本篇文章为转载内容。原文链接:https://blog.csdn.net/csdn_aiyang/article/details/81564408。 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。
2023-03-28 22:30:35
104
转载
Golang
...Go语言中,反射包(Reflect)提供了一种在运行时检查和操作程序结构的能力,包括类型信息、值、方法等。在文章中,它被用于从map到struct的转换过程中,通过反射我们可以动态地获取和设置结构体字段的值,实现了数据的动态映射。 键冲突 , 在数据结构如map中,键通常是唯一的标识符,如果两个或更多的键指向同一个值,就会发生键冲突。在将struct映射到map时,如果不注意处理,可能会导致数据丢失或错误,因为map不允许重复键。 goroutines , Go语言中的轻量级线程(goroutine),也称为协程,是一种用户级线程,可以在单个进程中并发执行。由于Go的并发模型基于channel,goroutines能够高效地共享内存,避免了传统线程间的上下文切换开销。在并发编程中,goroutines常用于编写并行任务,提高程序的执行效率。文章中提到的并行编程和goroutines密切相关,体现了Go语言的并发优势。
2024-05-02 11:13:38
481
诗和远方
转载文章
... [0, 0]],'reflect')transformer = transforms.Compose([transforms.ToTensor()])noisy_im = transformer(noisy_im)noisy_im = torch.unsqueeze(noisy_im, 0)noisy_im = noisy_im.cuda()with torch.no_grad():prediction = net(noisy_im)prediction = prediction[:, :, :H, :W]prediction = prediction.permute(0, 2, 3, 1)prediction = prediction.cpu().data.clamp(0, 1).numpy()prediction = prediction.squeeze()pred255 = np.clip(prediction 255.0 + 0.5, 0, 255).astype(np.uint8)Image.fromarray(pred255).convert('RGB').save('test1.png') 输入图像 尺寸大小为(408, 310),PIL读入后进行归一化处理。 img = Image.open('validation/Kodak/00001.jpg')print('img', img.size) img (408, 310)im = np.array(img, dtype=np.float32) / 255.0print('im', im.shape) im (310, 408, 3) 先对不规则图像进行填充,要求填充的尺寸是32的倍数,否则输入到网络中会报错。在训练的时候是随机裁剪256256的切片的。 b = torch.rand(1, 3, 255, 255).to('cuda')a = net(b)print(a.shape) 在卷积神经网络中,为了避免因为卷积运算导致输出图像缩小和图像边缘信息丢失,常常采用图像边缘填充技术,即在图像四周边缘填充0,使得卷积运算后图像大小不会缩小,同时也不会丢失边缘和角落的信息。在Python的numpy库中,常常采用numpy.pad()进行填充操作。 val_size = (max(H, W) + 31) // 32 32noisy_im = np.pad(noisy_im,[[0, val_size - H], [0, val_size - W], [0, 0]],'reflect') ‘reflect’, 表示对称填充。 上图转自 http://t.zoukankan.com/shuaishuaidefeizhu-p-14179038.html >>> a = [1, 2, 3, 4, 5]>>> np.pad(a, (2, 3), 'reflect')array([3, 2, 1, 2, 3, 4, 5, 4, 3, 2]) 个人感觉使用reflect操作,而不是之间的填充0是为了在边缘去噪的时候更平滑一些。镜像填充后的图如下: 输入网络后,得到预测结果。最后进行裁剪,得到去噪后的图像。 prediction = prediction[:, :, :H, :W] 本篇文章为转载内容。原文链接:https://blog.csdn.net/qq_42948594/article/details/124712116。 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。
2023-06-13 14:44:26
128
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转载文章
...pdated to reflect any change to this.// This code can typically be found by searching for the byte_map_base() method.STATIC_ASSERT(sizeof(CardValue) == 1);protected:// The declaration order of these const fields is important; see the// constructor before changing.const MemRegion _whole_heap; // the region covered by the card tableconst size_t _page_size; // page size used when mapping _byte_mapsize_t _byte_map_size; // in bytesCardValue _byte_map; // the card marking arrayCardValue _byte_map_base;// Some barrier sets create tables whose elements correspond to parts of// the heap; the CardTableBarrierSet is an example. Such barrier sets will// normally reserve space for such tables, and commit parts of the table// "covering" parts of the heap that are committed. At most one covered// region per generation is needed.static constexpr int max_covered_regions = 2;// The covered regions should be in address order.MemRegion _covered[max_covered_regions];// The last card is a guard card; never committed.MemRegion _guard_region;inline size_t compute_byte_map_size(size_t num_bytes);enum CardValues {clean_card = (CardValue)-1,dirty_card = 0,CT_MR_BS_last_reserved = 1};// a word's worth (row) of clean card valuesstatic const intptr_t clean_card_row = (intptr_t)(-1);// CardTable entry sizestatic uint _card_shift;static uint _card_size;static uint _card_size_in_words;size_t last_valid_index() const {return cards_required(_whole_heap.word_size()) - 1;}private:void initialize_covered_region(void region0_start, void region1_start);MemRegion committed_for(const MemRegion mr) const;public:CardTable(MemRegion whole_heap);virtual ~CardTable() = default;void initialize(void region0_start, void region1_start);// Barrier set functions.// Initialization utilities; covered_words is the size of the covered region// in, um, words.inline size_t cards_required(size_t covered_words) const {assert(is_aligned(covered_words, _card_size_in_words), "precondition");return covered_words / _card_size_in_words;}// Dirty the bytes corresponding to "mr" (not all of which must be// covered.)void dirty_MemRegion(MemRegion mr);// Clear (to clean_card) the bytes entirely contained within "mr" (not// all of which must be covered.)void clear_MemRegion(MemRegion mr);// Return true if "p" is at the start of a card.bool is_card_aligned(HeapWord p) {CardValue pcard = byte_for(p);return (addr_for(pcard) == p);}// Mapping from address to card marking array entryCardValue byte_for(const void p) const {assert(_whole_heap.contains(p),"Attempt to access p = " PTR_FORMAT " out of bounds of "" card marking array's _whole_heap = [" PTR_FORMAT "," PTR_FORMAT ")",p2i(p), p2i(_whole_heap.start()), p2i(_whole_heap.end()));CardValue result = &_byte_map_base[uintptr_t(p) >> _card_shift];assert(result >= _byte_map && result < _byte_map + _byte_map_size,"out of bounds accessor for card marking array");return result;}// The card table byte one after the card marking array// entry for argument address. Typically used for higher bounds// for loops iterating through the card table.CardValue byte_after(const void p) const {return byte_for(p) + 1;}void invalidate(MemRegion mr);// Provide read-only access to the card table array.const CardValue byte_for_const(const void p) const {return byte_for(p);}const CardValue byte_after_const(const void p) const {return byte_after(p);}// Mapping from card marking array entry to address of first wordHeapWord addr_for(const CardValue p) const {assert(p >= _byte_map && p < _byte_map + _byte_map_size,"out of bounds access to card marking array. p: " PTR_FORMAT" _byte_map: " PTR_FORMAT " _byte_map + _byte_map_size: " PTR_FORMAT,p2i(p), p2i(_byte_map), p2i(_byte_map + _byte_map_size));// As _byte_map_base may be "negative" (the card table has been allocated before// the heap in memory), do not use pointer_delta() to avoid the assertion failure.size_t delta = p - _byte_map_base;HeapWord result = (HeapWord) (delta << _card_shift);assert(_whole_heap.contains(result),"Returning result = " PTR_FORMAT " out of bounds of "" card marking array's _whole_heap = [" PTR_FORMAT "," PTR_FORMAT ")",p2i(result), p2i(_whole_heap.start()), p2i(_whole_heap.end()));return result;}// Mapping from address to card marking array index.size_t index_for(void p) {assert(_whole_heap.contains(p),"Attempt to access p = " PTR_FORMAT " out of bounds of "" card marking array's _whole_heap = [" PTR_FORMAT "," PTR_FORMAT ")",p2i(p), p2i(_whole_heap.start()), p2i(_whole_heap.end()));return byte_for(p) - _byte_map;}CardValue byte_for_index(const size_t card_index) const {return _byte_map + card_index;}// Resize one of the regions covered by the remembered set.void resize_covered_region(MemRegion new_region);// Card-table-RemSet-specific things.static uintx ct_max_alignment_constraint();static uint card_shift() {return _card_shift;}static uint card_size() {return _card_size;}static uint card_size_in_words() {return _card_size_in_words;}static constexpr CardValue clean_card_val() { return clean_card; }static constexpr CardValue dirty_card_val() { return dirty_card; }static intptr_t clean_card_row_val() { return clean_card_row; }// Initialize card sizestatic void initialize_card_size();// Card marking array base (adjusted for heap low boundary)// This would be the 0th element of _byte_map, if the heap started at 0x0.// But since the heap starts at some higher address, this points to somewhere// before the beginning of the actual _byte_map.CardValue byte_map_base() const { return _byte_map_base; }virtual bool is_in_young(const void p) const = 0;}; class G1CardTable : public CardTable {friend class VMStructs;friend class G1CardTableChangedListener;G1CardTableChangedListener _listener;public:enum G1CardValues {g1_young_gen = CT_MR_BS_last_reserved << 1,// During evacuation we use the card table to consolidate the cards we need to// scan for roots onto the card table from the various sources. Further it is// used to record already completely scanned cards to avoid re-scanning them// when incrementally evacuating the old gen regions of a collection set.// This means that already scanned cards should be preserved.//// The merge at the start of each evacuation round simply sets cards to dirty// that are clean; scanned cards are set to 0x1.//// This means that the LSB determines what to do with the card during evacuation// given the following possible values://// 11111111 - clean, do not scan// 00000001 - already scanned, do not scan// 00000000 - dirty, needs to be scanned.//g1_card_already_scanned = 0x1};static const size_t WordAllClean = SIZE_MAX;static const size_t WordAllDirty = 0;STATIC_ASSERT(BitsPerByte == 8);static const size_t WordAlreadyScanned = (SIZE_MAX / 255) g1_card_already_scanned;G1CardTable(MemRegion whole_heap): CardTable(whole_heap), _listener() {_listener.set_card_table(this);}static CardValue g1_young_card_val() { return g1_young_gen; }static CardValue g1_scanned_card_val() { return g1_card_already_scanned; }void verify_g1_young_region(MemRegion mr) PRODUCT_RETURN;void g1_mark_as_young(const MemRegion& mr);size_t index_for_cardvalue(CardValue const p) const {return pointer_delta(p, _byte_map, sizeof(CardValue));}// Mark the given card as Dirty if it is Clean. Returns whether the card was// Clean before this operation. This result may be inaccurate as it does not// perform the dirtying atomically.inline bool mark_clean_as_dirty(CardValue card);// Change Clean cards in a (large) area on the card table as Dirty, preserving// already scanned cards. Assumes that most cards in that area are Clean.inline void mark_range_dirty(size_t start_card_index, size_t num_cards);// Change the given range of dirty cards to "which". All of these cards must be Dirty.inline void change_dirty_cards_to(CardValue start_card, CardValue end_card, CardValue which);inline uint region_idx_for(CardValue p);static size_t compute_size(size_t mem_region_size_in_words) {size_t number_of_slots = (mem_region_size_in_words / _card_size_in_words);return ReservedSpace::allocation_align_size_up(number_of_slots);}// Returns how many bytes of the heap a single byte of the Card Table corresponds to.static size_t heap_map_factor() { return _card_size; }void initialize(G1RegionToSpaceMapper mapper);bool is_in_young(const void p) const override;}; 以位为粒度的位图能准确描述每一个字的引用关系,但是一个位通常包含的信息太少,只能描述2个状态:引用还是未引用。实际应用中JVM在垃圾回收的时候需要更多的状态,如果增加至一个字节来描述状态,则位图需要256KB的空间,这个数字太大,开销占了25%。所以一个可能的做法位图不再描述一个字,而是一个区域,JVM选择512字节为单位,即用一个字节描述512字节的引用关系。选择一个区域除了空间利用率的问题之外,实际上还有现实的意义。我们知道Java对象实际上不是一个字能描述的(有一个参数可以控制对象最小对齐的大小,默认是8字节,实际上Java在JVM中还有一些附加信息,所以对齐后最小的Java对象是16字节),很多Java对象可能是几十个字节或者几百个字节,所以用一个字节描述一个区域是有意义的。但是我没有找到512的来源,为什么512效果最好?没有相应的数据来支持这个数字,而且这个值不可以配置,不能修改,但是有理由相信512字节的区域是为了节约内存额外开销。按照这个值,1MB的内存只需要2KB的额外空间就能描述引用关系。这又带来另一个问题,就是512字节里面的内存可能被引用多次,所以这是一个粗略的关系描述,那么在使用的时候需要遍历这512字节。 再举一个例子,假设有两个对象B、C都在这512字节的区域内。为了方便处理,记录对象引用关系的时候,都使用对象的起始位置,然后用这个地址和512对齐,因此B和C对象的卡表指针都指向这一个卡表的位置。那么对于引用处理也有可有两种处理方法:·处理的时候会以堆分区为处理单位,遍历整个堆分区,在遍历的时候,每次都会以对象大小为步长,结合卡表,如果该卡表中对应的位置被设置,则说明对象和其他分区的对象发生了引用。具体内容在后文中介绍Refine的时候还会详细介绍。·处理的时候借助于额外的数据结构,找到真正对象的位置,而不需要从头开始遍历。在后文的并发标记处理时就使用了这种方法,用于找到第一个对象的起始位置。在G1除了512字节粒度的卡表之外,还有bitMap,例如使用bitMap可以描述一个分区对另外一个分区的引用情况。在JVM中bitMap使用非常多,例如还可以描述内存的分配情况。 在G1除了512字节粒度的卡表之外,还有bitMap,例如使用bitMap可以描述一个分区对另外一个分区的引用情况。在JVM中bitMap使用非常多,例如还可以描述内存的分配情况。G1在混合收集算法中用到了并发标记。在并发标记的时候使用了bitMap来描述对象的分配情况。例如1MB的分区可以用16KB(16KB×ObjectAlignmentInBytes×8=1MB)来描述,即16KB额外的空间。其中ObjectAlignmentInBytes是8字节,指的是对象对齐,第二个8是指一个字节有8位。即每一个位可以描述64位。例如一个对象长度对齐之后为24字节,理论上它占用3个位来描述这个24字节已被使用了,实际上并不需要,在标记的时候只需要标记这3个位中的第一个位,再结合堆分区对象的大小信息就能准确找出。其最主要的目的是为了效率,标记一个位和标记3个位相比能节约不少时间,如果对象很大,则更划算。这些都是源码的实现细节,大家在阅读源码时需要细细斟酌。 本篇文章为转载内容。原文链接:https://blog.csdn.net/qq_16500963/article/details/132133125。 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。
2023-12-16 20:37:50
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