Preface
For a front-end engineer, he not only needs to know the front-end content, but also needs to be proficient in back-end technology. Today I will use a case to describe how the front end interacts with the back end.
koa is built by the original team of Express and is committed to becoming a smaller, more expressive, and more robust web framework. Using koa to write web applications, by combining different generators, you can avoid repeated and cumbersome callback function nesting, and greatly improve the efficiency of error handling. koa does not bind any middleware in the kernel method. It only provides a lightweight and elegant function library that makes writing web applications easy.
Preparation
First of all, our server needs to deploy the Nodejs environment. Here I use Nodejs’ local server under windows to do it. Demo.
To deploy the NodeJS environment, please see: "Detailed Graphical Explanation of the Steps to Install Node.js on Windows Systems".
Friends who are not familiar with the Koa framework can refer to this article: Getting Started with the Koa Framework for Node.js and MySQL Operation Guide
The method is as follows
After the environment is deployed, we need to create a project directory and install the Koa framework and some dependent libraries through npm in the directory.
The picture below is the directory structure after I completed it.
cd to your project directory, and then execute npm koa directory, there will be a folder like node_modules, which stores some dependent libraries used.
Next we create an app.js file to set the route used when accessing the server. The code is as follows
var koa = require('koa'); var controller = require('koa-route');//需要通过npm来添加此依赖 var app = koa(); var service = require('./service/WebAppService.js');//引用WebAppService.js /*设置路由*/ app.use(controller.get('/ajax/search',function*(){ this.set('Cache-Control','no-cache'); this.set('Access-Control-Allow-Origin','*'); var querystring = require('querystring'); var params = querystring.parse(this.req._parsedUrl.query); var key = params.key; var start = params.start; var end = params.end; this.body = yield service.get_search_data(key,start,end); })); app.listen(3001); console.log('Koa server is started');
There is no koa-route dependency in the node_modules folder by default. You need to install it through npm koa-route
Then we need to create a WebAppService.js in the service directory file, used to request the interface, the code is as follows
var fs = require('fs'); exports.get_search_data = function(key,start,end){ return function(cb){ var http = require('http'); var qs = require('querystring'); var data = { key:key, start:start, end:end }; /*请求MobAPI里的火车票查询接口*/ var content = qs.stringify(data); var http_request = { hostname:'apicloud.mob.com', port:80, path:'/train/tickets/queryByStationToStation?' + content, method: 'GET' }; var req = http.request(http_request,function(response){ var body = ''; response.setEncoding('utf-8'); response.on('data',function(chunk){ body += chunk; }); response.on('end',function(){ cb(null,body); }); }); req.end(); } }
This actually makes an interface transfer, we can not only request the local interface but also request The third-party interface prevents the browser from blocking requests when making cross-domain requests.
Next we start the service through the command, enter node app.js in the terminal
and then request the interface http://www.php in the browser. cn/:3001/ajax/search?key=520520test&start=Beijing&end=Shanghai
In this way, we have implemented the interface request and obtained the json data. Interested friends can Take a look at the following article. The following article will present the data obtained from the backend on the interface in a more intuitive way, and use the Vue.js framework to create a train ticket query system.
For more articles related to XNode.js+Koa framework realizing front-end and back-end interaction, please pay attention to the PHP Chinese website!

JavaScript is widely used in websites, mobile applications, desktop applications and server-side programming. 1) In website development, JavaScript operates DOM together with HTML and CSS to achieve dynamic effects and supports frameworks such as jQuery and React. 2) Through ReactNative and Ionic, JavaScript is used to develop cross-platform mobile applications. 3) The Electron framework enables JavaScript to build desktop applications. 4) Node.js allows JavaScript to run on the server side and supports high concurrent requests.

Python is more suitable for data science and automation, while JavaScript is more suitable for front-end and full-stack development. 1. Python performs well in data science and machine learning, using libraries such as NumPy and Pandas for data processing and modeling. 2. Python is concise and efficient in automation and scripting. 3. JavaScript is indispensable in front-end development and is used to build dynamic web pages and single-page applications. 4. JavaScript plays a role in back-end development through Node.js and supports full-stack development.

C and C play a vital role in the JavaScript engine, mainly used to implement interpreters and JIT compilers. 1) C is used to parse JavaScript source code and generate an abstract syntax tree. 2) C is responsible for generating and executing bytecode. 3) C implements the JIT compiler, optimizes and compiles hot-spot code at runtime, and significantly improves the execution efficiency of JavaScript.

JavaScript's application in the real world includes front-end and back-end development. 1) Display front-end applications by building a TODO list application, involving DOM operations and event processing. 2) Build RESTfulAPI through Node.js and Express to demonstrate back-end applications.

The main uses of JavaScript in web development include client interaction, form verification and asynchronous communication. 1) Dynamic content update and user interaction through DOM operations; 2) Client verification is carried out before the user submits data to improve the user experience; 3) Refreshless communication with the server is achieved through AJAX technology.

Understanding how JavaScript engine works internally is important to developers because it helps write more efficient code and understand performance bottlenecks and optimization strategies. 1) The engine's workflow includes three stages: parsing, compiling and execution; 2) During the execution process, the engine will perform dynamic optimization, such as inline cache and hidden classes; 3) Best practices include avoiding global variables, optimizing loops, using const and lets, and avoiding excessive use of closures.

Python is more suitable for beginners, with a smooth learning curve and concise syntax; JavaScript is suitable for front-end development, with a steep learning curve and flexible syntax. 1. Python syntax is intuitive and suitable for data science and back-end development. 2. JavaScript is flexible and widely used in front-end and server-side programming.

Python and JavaScript have their own advantages and disadvantages in terms of community, libraries and resources. 1) The Python community is friendly and suitable for beginners, but the front-end development resources are not as rich as JavaScript. 2) Python is powerful in data science and machine learning libraries, while JavaScript is better in front-end development libraries and frameworks. 3) Both have rich learning resources, but Python is suitable for starting with official documents, while JavaScript is better with MDNWebDocs. The choice should be based on project needs and personal interests.


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