导航菜单

  • 0.api
  • 0.Async
  • 0.module
  • 1.ES2015
  • 2.Promise
  • 3.Node
  • 4.NodeInstall
  • 5.REPL
  • 6.NodeCore
  • 7.module&NPM
  • 8.Encoding
  • 9.Buffer
  • 10.fs
  • 11.Stream-1
  • 11.Stream-2
  • 11.Stream-3
  • 11.Stream-4
  • 12-Network-2
  • 12.NetWork-3
  • 12.Network-1
  • 13.tcp
  • 14.http-1
  • 14.http-2
  • 15.compress
  • 16.crypto
  • 17.process
  • 18.yargs
  • 19.cache
  • 20.action
  • 21.https
  • 22.cookie
  • 23.session
  • 24.express-1
  • 24.express-2
  • 24.express-3
  • 24.express-4
  • 25.koa-1
  • 26.webpack-1-basic
  • 26.webpack-2-optimize
  • 26.webpack-3-file
  • 26.webpack-4.tapable
  • 26.webpack-5-AST
  • 26.webpack-6-sources
  • 26.webpack-7-loader
  • 26.webpack-8-plugin
  • 26.webpack-9-hand
  • 26.webpack-10-prepare
  • 28.redux
  • 28.redux-jwt-back
  • 28.redux-jwt-front
  • 29.mongodb-1
  • 29.mongodb-2
  • 29.mongodb-3
  • 29.mongodb-4
  • 29.mongodb-5
  • 29.mongodb-6
  • 30.cms-1-mysql
  • 30.cms-2-mysql
  • 30.cms-3-mysql
  • 30.cms-4-nunjucks
  • 30.cms-5-mock
  • 30.cms-6-egg
  • 30.cms-7-api
  • 30.cms-8-roadhog
  • 30.cms-9-yaml
  • 30.cms-10-umi
  • 30.cms-12-dva
  • 30.cms-13-dva-ant
  • 30.cms-14-front
  • 30.cms-15-deploy
  • 31.dva
  • 31.cms-13-dva-antdesign
  • 33.redis
  • 34.unittest
  • 35.jwt
  • 36.websocket-1
  • 36.websocket-2
  • 38.chat-api-1
  • 38.chat-api-2
  • 38.chat-3
  • 38.chat-api-3
  • 38.chat
  • 38.chat2
  • 38.chat2
  • 39.crawl-0
  • 39.crawl-1
  • 39.crawl-2
  • 40.deploy
  • 41.safe
  • 42.test
  • 43.nginx
  • 44.enzyme
  • 45.docker
  • 46.elastic
  • 47.oauth
  • 48.wxpay
  • index
  • 52.UML
  • 53.design
  • index
  • 54.linux
  • 57.ts
  • 56.react-ssr
  • 58.ts_react
  • 59.ketang
  • 59.ketang2
  • 61.1.devops-linux
  • 61.2.devops-vi
  • 61.3.devops-user
  • 61.4.devops-auth
  • 61.5.devops-shell
  • 61.6.devops-install
  • 61.7.devops-system
  • 61.8.devops-service
  • 61.9.devops-network
  • 61.10.devops-nginx
  • 61.11.devops-docker
  • 61.12.devops-jekins
  • 61.13.devops-groovy
  • 61.14.devops-php
  • 61.15.devops-java
  • 61.16.devops-node
  • 61.17.devops-k8s
  • 62.1.react-basic
  • 62.2.react-state
  • 62.3.react-high
  • 62.4.react-optimize
  • 62.5.react-hooks
  • 62.6.react-immutable
  • 62.7.react-mobx
  • 62.8.react-source
  • 63.1.redux
  • 63.2.redux-middleware
  • 63.3.redux-hooks
  • 63.4.redux-saga
  • 63.5.redux-saga-hand
  • 64.1.router
  • 64.2.router-connected
  • 65.1.typescript
  • 65.2.typescript
  • 65.3.typescript
  • 65.4.antd
  • 65.4.definition
  • 66-1.vue-base
  • 66-2.vue-component
  • 66-3.vue-cli3.0
  • 66-4.$message组件
  • 66-5.Form组件
  • 66-6.tree
  • 66-7.vue-router-apply
  • 66-8.axios-apply
  • 66-9.vuex-apply
  • 66-10.jwt-vue
  • 66-11.vue-ssr
  • 66-12.nuxt-apply
  • 66-13.pwa
  • 66-14.vue单元测试
  • 66-15.权限校验
  • 67-1-network
  • 68-2-wireshark
  • 7.npm2
  • 69-hooks
  • 70-deploy
  • 71-hmr
  • 72.deploy
  • 73.import
  • 74.mobile
  • 75.webpack-1.文件分析
  • 75.webpack-2.loader
  • 75.webpack-3.源码流程
  • 75.webpack-4.tapable
  • 75.webpack-5.prepare
  • 75.webpack-6.resolve
  • 75.webpack-7.loader
  • 75.webpack-8.module
  • 75.webpack-9.chunk
  • 75.webpack-10.asset
  • 75.webpack-11.实现
  • 76.react_optimize
  • 77.ts_ketang_back
  • 77.ts_ketang_front
  • 78.vue-domdiff
  • 79.grammar
  • 80.tree
  • 81.axios
  • 82.1.react
  • 82.2.react-high
  • 82.3.react-router
  • 82.4.redux
  • 82.5.redux_middleware
  • 82.6.connected
  • 82.7.saga
  • 82.8.dva
  • 82.8.dva-source
  • 82.9.roadhog
  • 82.10.umi
  • 82.11.antdesign
  • 82.12.ketang-front
  • 82.12.ketang-back
  • 83.upload
  • 84.graphql
  • 85.antpro
  • 86.1.uml
  • 86.2.design
  • 87.postcss
  • 88.react16-1
  • 89.nextjs
  • 90.react-test
  • 91.react-ts
  • 92.rbac
  • 93.tsnode
  • 94.1.JavaScript
  • 94.2.JavaScript
  • 94.3.MODULE
  • 94.4.EventLoop
  • 94.5.文件上传
  • 94.6.https
  • 94.7. nginx
  • 95.1. react
  • 95.2.react
  • 96.1.react16
  • 96.2.fiber
  • 96.3.fiber
  • 97.serverless
  • 98.websocket
  • 100.1.react-basic
  • 101.1.monitor
  • 101.2.monitor
  • 102.java
  • 103.1.webpack-usage
  • 103.2.webpack-bundle
  • 103.3.webpack-ast
  • 103.4.webpack-flow
  • 103.5.webpack-loader
  • 103.6.webpack-tapable
  • 103.7.webpack-plugin
  • 103.8.webpack-optimize1
  • 103.9.webpack-optimize2
  • 103.10.webpack-hand
  • 103.11.webpack-hmr
  • 103.11.webpack5
  • 103.13.splitChunks
  • 103.14.webpack-sourcemap
  • 103.15.webpack-compiler1
  • 103.15.webpack-compiler2
  • 103.16.rollup.1
  • 103.16.rollup.2
  • 103.16.rollup.3
  • 103.16.vite.basic
  • 103.16.vite.source
  • 103.16.vite.plugin
  • 103.16.vite.1
  • 103.16.vite.2
  • 103.17.polyfill
  • 104.1.binary
  • 104.2.binary
  • 105.skeleton
  • 106.1.react
  • 106.2.react_hooks
  • 106.3.react_router
  • 106.4.redux
  • 106.5.redux_middleware
  • 106.6.connected-react-router
  • 106.6.redux-first-history
  • 106.7.redux-saga
  • 106.8.dva
  • 106.9.umi
  • 106.10.ketang
  • 106.11.antdesign
  • 106.12.antpro
  • 106.13.router-6
  • 106.14.ssr
  • 106.15.nextjs
  • 106.16.1.cms
  • 106.16.2.cms
  • 106.16.3.cms
  • 106.16.4.cms
  • 106.16.mobx
  • 106.17.fomily
  • 107.fiber
  • 108.http
  • 109.1.webpack_usage
  • 109.2.webpack_source
  • 109.3.dll
  • 110.nest.js
  • 111.xstate
  • 112.Form
  • 113.redux-saga
  • 114.react+typescript
  • 115.immer
  • 116.pro5
  • 117.css-loader
  • 118.1.umi-core
  • 119.2.module-federation
  • 119.1.module-federation
  • 120.create-react-app
  • 121.react-scripts
  • 122.react-optimize
  • 123.jsx-runtime
  • 124.next.js
  • 125.1.linux
  • 125.2.linux-vi
  • 125.3.linux-user
  • 125.4.linux-auth
  • 125.5.linux-shell
  • 125.6.linux-install
  • 125.7.linux-system
  • 125.8.linux-service
  • 125.9.linux-network
  • 125.10.nginx
  • 125.11.docker
  • 125.12.ci
  • 125.13.k8s
  • 125.14.k8s
  • 125.15.k8s
  • 125.16.k8s
  • 126.11.react-1
  • 126.12.react-2
  • 126.12.react-3
  • 126.12.react-4
  • 126.12.react-5
  • 126.12.react-6
  • 126.12.react-7
  • 126.12.react-8
  • 127.frontend
  • 128.rollup
  • 129.px2rem-loader
  • 130.health
  • 131.hooks
  • 132.keepalive
  • 133.vue-cli
  • 134.react18
  • 134.2.react18
  • 134.3.react18
  • 135.function
  • 136.toolkit
  • 137.lerna
  • 138.create-vite
  • 139.cli
  • 140.antd
  • 141.react-dnd
  • 142.1.link
  • 143.1.gulp
  • 143.2.stream
  • 143.3.gulp
  • 144.1.closure
  • 144.2.v8
  • 144.3.gc
  • 145.react-router-v6
  • 146.browser
  • 147.lighthouse
  • 148.1.basic
  • 148.2.basic
  • 148.3.basic
  • 148.4.basic
  • 148.5.basic
  • 149.1.vite
  • 149.2.vite
  • 149.3.vite
  • 149.4.vite
  • 150.react-window
  • 151.react-query
  • 152.useRequest
  • 153.transition
  • 154.emotion
  • 155.1.formily
  • 155.2.formily
  • 155.3.formily
  • 155.3.1.mobx.usage
  • 155.3.2.mobx.source
  • 156.vue-loader
  • 103.11.mf
  • 157.1.react18
  • 158.umi4
  • 159.rxjs
  • 159.rxjs2
  • 160.bff
  • 161.zustand
  • 162.vscode
  • 163.emp
  • 164.cors
  • 1. 异步回调
    • 1.1 回调地狱
    • 1.2 并行结果
  • 2. Promise
  • 3. Promise的三种状态
  • 4. 构造一个Promise
    • 4.1 使用Promise
    • 4.2 es5模拟Promise
    • 4.3 es6模拟Promise
  • 5. promise 做为函数的返回值
  • 6.promise的链式调用
  • 7.promise API
    • 7.1 Promise.all
    • 7.2 Promise.race
    • 7.3 Promise.resolve
    • 7.4 Promise.reject
  • 8. q
    • 8.1 q的基本用法
    • 8.2 q的简单实现
    • 8.3 q的实现
  • 9. bluebird
    • 9.1 bluebird经典使用
    • 9.2 bluebird简单实现
  • 10. 动画
  • 11. co
    • 11.1 co初体验
    • 11.2 co连续读文件
  • 12. Promise/A+完整实现
  • 13. 资源
  • 14.作业

1. 异步回调 #

1.1 回调地狱 #

在需要多个操作的时候,会导致多个回调函数嵌套,导致代码不够直观,就是常说的回调地狱

1.2 并行结果 #

如果几个异步操作之间并没有前后顺序之分,但需要等多个异步操作都完成后才能执行后续的任务,无法实现并行节约时间

2. Promise #

Promise本意是承诺,在程序中的意思就是承诺我过一段时间后会给你一个结果。 什么时候会用到过一段时间?答案是异步操作,异步是指可能比较长时间才有结果的才做,例如网络请求、读取本地文件等

3. Promise的三种状态 #

  • Pending Promise对象实例创建时候的初始状态
  • Fulfilled 可以理解为成功的状态
  • Rejected 可以理解为失败的状态

then 方法就是用来指定Promise 对象的状态改变时确定执行的操作,resolve 时执行第一个函数(onFulfilled),reject 时执行第二个函数(onRejected)

4. 构造一个Promise #

4.1 使用Promise #

let promise = new Promise((resolve, reject) => {
    setTimeout(() => {
        if(Math.random()>0.5)
            resolve('This is resolve!');
        else
            reject('This is reject!');
    }, 1000);
});
promise.then(Fulfilled,Rejected)
  • 构造一个Promise实例需要给Promise构造函数传入一个函数。
  • 传入的函数需要有两个形参,两个形参都是function类型的参数。
    • 第一个形参运行后会让Promise实例处于resolve状态,所以我们一般给第一个形参命名为resolve,使 Promise 对象的状态改变成成功,同时传递一个参数用于后续成功后的操作
    • 第一个形参运行后会让Promise实例处于reject状态,所以我们一般给第一个形参命名为reject,将 Promise 对象的状态改变为失败,同时将错误的信息传递到后续错误处理的操作

4.2 es5模拟Promise #

function Promise(fn) {
    fn((data)=> {
        this.success(data);
    }, (error)=> {
        this.error();
    });
}

Promise.prototype.resolve = function (data) {
    this.success(data);
}

Promise.prototype.reject = function (error) {
    this.error(error);
}

Promise.prototype.then = function (success, error) {
    this.success = success;
    this.error = error;
}

4.3 es6模拟Promise #

class Promise {
    constructor(fn) {
        fn((data)=> {
            this.success(data);
        }, (error)=> {
            this.error();
        });
    }

    resolve(data) {
        this.success(data);
    }

    reject(error) {
        this.error(error);
    }

    then(success, error) {
        this.success = success;
        this.error = error;
        console.log(this);
    }
}

5. promise 做为函数的返回值 #

function ajaxPromise (queryUrl) {
  return new Promise((resolve, reject) => {
    let xhr = new XMLHttpRequest();
    xhr.open('GET', queryUrl, true);
    xhr.send(null);
    xhr.onreadystatechange = () => {
      if (xhr.readyState === 4) {
        if (xhr.status === 200) {
          resolve(xhr.responseText);
        } else {
          reject(xhr.responseText);
        }
      }
    }
  });
}

ajaxPromise('http://www.baidu.com')
  .then((value) => {
    console.log(value);
  })
  .catch((err) => {
    console.error(err);
  });

6.promise的链式调用 #

  • 每次调用返回的都是一个新的Promise实例
  • 链式调用的参数通过返回值传递

then可以使用链式调用的写法原因在于,每一次执行该方法时总是会返回一个Promise对象

readFile('1.txt').then(function (data) {
    console.log(data);
    return data;
}).then(function (data) {
    console.log(data);
    return readFile(data);
}).then(function (data) {
    console.log(data);
}).catch(function(err){
 console.log(err);
});

7.promise API #

7.1 Promise.all #

  • 参数:接受一个数组,数组内都是Promise实例
  • 返回值:返回一个Promise实例,这个Promise实例的状态转移取决于参数的Promise实例的状态变化。当参数中所有的实例都处于resolve状态时,返回的Promise实例会变为resolve状态。如果参数中任意一个实例处于reject状态,返回的Promise实例变为reject状态。
    Promise.all([p1, p2]).then(function (result) {
      console.log(result); // [ '2.txt', '2' ]
    });

    不管两个promise谁先完成,Promise.all 方法会按照数组里面的顺序将结果返回

7.2 Promise.race #

  • 参数:接受一个数组,数组内都是Promise实例
  • 返回值:返回一个Promise实例,这个Promise实例的状态转移取决于参数的Promise实例的状态变化。当参数中任何一个实例处于resolve状态时,返回的Promise实例会变为resolve状态。如果参数中任意一个实例处于reject状态,返回的Promise实例变为reject状态。
    Promise.race([p1, p2]).then(function (result) {
      console.log(result); // [ '2.txt', '2' ]
    });

    7.3 Promise.resolve #

    返回一个Promise实例,这个实例处于resolve状态。

根据传入的参数不同有不同的功能:

  • 值(对象、数组、字符串等):作为resolve传递出去的值
  • Promise实例:原封不动返回

7.4 Promise.reject #

返回一个Promise实例,这个实例处于reject状态。

  • 参数一般就是抛出的错误信息。

8. q #

Q是一个在Javascript中实现promise的模块

8.1 q的基本用法 #

var Q = require('q');
var fs = require('fs');
function read(filename) {
    var deferred = Q.defer();
    fs.readFile(filename,'utf8', function (err, data) {
        if(err){
            deferred.reject(err);
        }else{
            deferred.resolve(data);
        }
    });
    return deferred.promise;
}

read('1.txt1').then(function(data){
    console.log(data);
},function(error){
    console.error(error);
});

8.2 q的简单实现 #

module.exports = {
    defer(){
        var _success,_error;
        return {
            resolve(data){
                _success(data);
            },
            reject(err){
                _error(err);
            },
            promise:{
                then(success,error){
                    _success = success;
                    _error = error;
                }
            }
        }
    }
}

8.3 q的实现 #

var defer = function () {
    var pending = [], value;
    return {
        resolve: function (_value) {
            if (pending) {
                value = _value;
                for (var i = 0, ii = pending.length; i < ii; i++) {
                    var callback = pending[i];
                    callback(value);
                }
                pending = undefined;
            }
        },
        promise: {
            then: function (callback) {
                if (pending) {
                    pending.push(callback);
                } else {
                    callback(value);
                }
            }
        }
    };
};

9. bluebird #

实现 promise 标准的库是功能最全,速度最快的一个库

9.1 bluebird经典使用 #

var Promise = require('./bluebird');

var readFile = Promise.promisify(require("fs").readFile);
readFile("1.txt", "utf8").then(function(contents) {
    console.log(contents);
})

var fs = Promise.promisifyAll(require("fs"));

fs.readFileAsync("1.txt", "utf8").then(function (contents) {
    console.log(contents);
})

9.2 bluebird简单实现 #

module.exports = {
    promisify(fn){
        return function () {
            var args = Array.from(arguments);
            return new Promise(function (resolve, reject) {
                fn.apply(null, args.concat(function (err) {
                    if (err) {
                        reject(err);
                    } else {
                        resolve(arguments[1])
                    }
                }));
            })
        }
    },
    promisifyAll(obj){
        for(var attr in obj){
            if(obj.hasOwnProperty(attr) && typeof obj[attr] =='function'){
                obj[attr+'Async'] = this.promisify(obj[attr]);
            }
        }
        return obj;
    }
}

10. 动画 #

<!DOCTYPE html>
<html lang="en">
<head>
    <meta charset="UTF-8">
    <title>move</title>
    <style>
        .square{
            width:40px;
            height:40px;
            border-radius: 50%;
        }
        .square1{
            background-color: red;
        }
        .square2{
            background-color: yellow;
        }
        .square3{
            background-color: blue;
        }
    </style>
</head>
<body>
<div class="square square1" style="margin-left: 0"></div>
<div class="square square2" style="margin-left: 0"></div>
<div class="square square3" style="margin-left: 0"></div>
</body>
<script>
  var square1 = document.querySelector('.square1');
  var square2 = document.querySelector('.square2');
  var square3 = document.querySelector('.square3');

  /*function move(element,target,resolve){
    let timer = setInterval(function(){
      var marginLeft = parseInt(element.style.marginLeft, 10);
      if(marginLeft == target){
        resolve();
      }else{
        element.style.marginLeft = ++marginLeft+'px';
      }
    },13);
  }*/
  function move(element,target,resolve){
    let current = 0;
    let timer = setInterval(function(){
      element.style.transform=`translateX(${++current}px)`;
      if(current>target){
        clearInterval(timer);
        resolve();
      };
    },13);
  }
  function animate(element,target){
    return new Promise(function(resolve,reject){
      move(element,target,resolve);
    });
  }
  animate(square1,100)
    .then(function(){
      return animate(square2,100);
    })
    .then(function(){
      return animate(square3,100);
    });
</script>
</html>

11. co #

11.1 co初体验 #

let fs = require('fs');
function getNumber(){
  return new Promise(function (resolve,reject) {
    setTimeout(function(){
      let number = Math.random();
      if(number >.5){
        resolve(number);
      }else{
        reject('数字太小');
      }
    },1000);
  });
}
function *read(){
  let a = yield getNumber();
  console.log(a);
  let b = yield 'b';
  console.log(b);
  let c = yield getNumber();
  console.log(c);
}

function co(gen){
  return new Promise(function(resolve,reject){
    let g = gen();
    function next(lastValue){
      let {done,value} = g.next(lastValue);
      if(done){
         resolve(lastValue);
      }else{
        if(value instanceof Promise){
          value.then(next,function(val){
            reject(val);
          });
        }else{
          next(value);
        }
      }
    }
    next();
  });
}
co(read).then(function(data){
  console.log(data);
},function(reason){
  console.log(reason);
});

11.2 co连续读文件 #

let fs = require('fs');
function readFile(filename){
  return new Promise(function (resolve,reject) {
    fs.readFile(filename,'utf8',function(err,data){
      if(err)
        reject(err);
      else
        resolve(data);
    })
  });
}
function *read(){
  let a = yield readFile('./1.txt');
  console.log(a);
  let b = yield readFile('./2.txt');
  console.log(b);
}

function co(gen){
  let g = gen();
  function next(val){
    let {done,value} = g.next(val);
    if(!done){
      value.then(next);
    }
  }
  next();
}

12. Promise/A+完整实现 #

function Promise(executor) {
  let self = this;
  self.status = "pending";
  self.value = undefined;
  self.onResolvedCallbacks = [];
  self.onRejectedCallbacks = [];
  function resolve(value) {
    if (value instanceof Promise) {
      return value.then(resolve, reject)
    }
    setTimeout(function () { // 异步执行所有的回调函数
      if (self.status == 'pending') {
        self.value = value;
        self.status = 'resolved';
        self.onResolvedCallbacks.forEach(item => item(value));
      }
    });

  }

  function reject(value) {
    setTimeout(function () {
      if (self.status == 'pending') {
        self.value = value;
        self.status = 'rejected';
        self.onRejectedCallbacks.forEach(item => item(value));
      }
    });
  }

  try {
    executor(resolve, reject);
  } catch (e) {
    reject(e);
  }
}
function resolvePromise(promise2, x, resolve, reject) {
  if (promise2 === x) {
    return reject(new TypeError('循环引用'));
  }
  let then, called;

  if (x != null && ((typeof x == 'object' || typeof x == 'function'))) {
    try {
      then = x.then;
      if (typeof then == 'function') {
        then.call(x, function (y) {
          if (called)return;
          called = true;
          resolvePromise(promise2, y, resolve, reject);
        }, function (r) {
          if (called)return;
          called = true;
          reject(r);
        });
      } else {
        resolve(x);
      }
    } catch (e) {
      if (called)return;
      called = true;
      reject(e);
    }
  } else {
    resolve(x);
  }
}
Promise.prototype.then = function (onFulfilled, onRejected) {
  let self = this;
  onFulfilled = typeof onFulfilled == 'function' ? onFulfilled : function (value) {
    return value
  };
  onRejected = typeof onRejected == 'function' ? onRejected : function (value) {
    throw value
  };
  let promise2;
  if (self.status == 'resolved') {
    promise2 = new Promise(function (resolve, reject) {
      setTimeout(function () {
        try {
          let x = onFulfilled(self.value);
          resolvePromise(promise2, x, resolve, reject);
        } catch (e) {
          reject(e);
        }
      });

    });
  }
  if (self.status == 'rejected') {
    promise2 = new Promise(function (resolve, reject) {
      setTimeout(function () {
        try {
          let x = onRejected(self.value);
          resolvePromise(promise2, x, resolve, reject);
        } catch (e) {
          reject(e);
        }
      });
    });
  }
  if (self.status == 'pending') {
    promise2 = new Promise(function (resolve, reject) {
      self.onResolvedCallbacks.push(function (value) {
        try {
          let x = onFulfilled(value);
          resolvePromise(promise2, x, resolve, reject);
        } catch (e) {
          reject(e);
        }
      });
      self.onRejectedCallbacks.push(function (value) {
        try {
          let x = onRejected(value);
          resolvePromise(promise2, x, resolve, reject);
        } catch (e) {
          reject(e);
        }
      });
    });
  }
  return promise2;
}
Promise.prototype.catch = function (onRejected) {
  return this.then(null, onRejected);
}
Promise.all = function (promises) {
  return new Promise(function (resolve, reject) {
    let result = [];
    let count = 0;
    for (let i = 0; i < promises.length; i++) {
      promises[i].then(function (data) {
        result[i] = data;
        if (++count == promises.length) {
          resolve(result);
        }
      }, function (err) {
        reject(err);
      });
    }
  });
}

Promise.deferred = Promise.defer = function () {
  var defer = {};
  defer.promise = new Promise(function (resolve, reject) {
    defer.resolve = resolve;
    defer.reject = reject;
  })
  return defer;
}
/**
 * npm i -g promises-aplus-tests
 * promises-aplus-tests Promise.js
 */
try {
  module.exports = Promise
} catch (e) {
}

13. 资源 #

  • bluebirdAPI
  • JavaScript Promise迷你书(中文版)
  • Promise/A+规范
  • Promise/A+

    14.作业 #

1.自己实现promise的all、race、resolve和reject方法

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