


Introduction to the abstract factory pattern of JavaScript design patterns_javascript skills
Abstract Factory Pattern Description
1. Problems with the factory method pattern: In the factory method pattern, creating a class requires passing the factory class. If you want to extend the program, you must modify the factory class. This violates the closure principle and is open to extension but closed to modification. ;There are certain problems with the design.
2. How to solve: We need to use the abstract factory pattern, which is to create a factory class separately for the functional class, so that there is no need to modify the previous code and the function is expanded.
3. The factory pattern is actually a unified factory method for creating and calling implementation classes that implement the same interface, but JavaScript does not have such a thing as an interface, so this layer of implementation is removed, but the members and methods of the functional classes should be the same;
Abstract factory source code example
1. Email sending type:
function MailSender() {
This.to = '';
This.title = '';
This.content = '';
}
MailSender.prototype.send = function() {
//send body
}
2. SMS sending category:
function SmsSender() {
This.to = '';
This.title = '';
This.content = '';
}
SmsSender.prototype.send = function() {
//send body
}
3. The factory interface class was originally created here, but it is removed here; each functional class factory is created directly;
1>. Mail factory class:
function MailFactory() {
}
MailFactory.prototype.produce = function() {
Return new MailSender();
}
2>. SMS factory class:
function SmsFactory() {
}
SmsFactory.prototype.produce = function() {
Return new SmsSender();
}
4. How to use:
var factory = new MailFactory();
var sender = factory.produce();
sender.to = 'toname#mail.com';
sender.title = 'Abstract Factory Pattern';
sender.content = 'Send content';
sender.send();
Other instructions
The factory pattern used in object-oriented languages such as java and .net C# all uses interfaces. Interfaces are available methods exposed to various users. They describe what methods are used to apply this function and how users should use it. interface. Objects are expressed in the form of classes, representing some kind of abstraction in the real world. Maybe the scene has many similar applications, such as the above email sending, SMS sending, various promotional methods in shopping malls, and the animal world. Various birds and animals, etc..
If we do not provide users with interfaces, we will inevitably provide real functional class objects to users. Users can modify and extend class objects at will, which is not allowed.
Factory method pattern and abstract factory pattern can solve this problem very well. Users can only use the interface to call the factory class to perform specified operations; the abstract factory pattern further makes it easier to use extended functions. Function classes and factories Classes implement their own class-level extensions on the corresponding interfaces, and will not involve modifying other classes or methods;
Of course, there is no way to do this in a language like javascript. Programmers have to be self-disciplined!

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.

The shift from C/C to JavaScript requires adapting to dynamic typing, garbage collection and asynchronous programming. 1) C/C is a statically typed language that requires manual memory management, while JavaScript is dynamically typed and garbage collection is automatically processed. 2) C/C needs to be compiled into machine code, while JavaScript is an interpreted language. 3) JavaScript introduces concepts such as closures, prototype chains and Promise, which enhances flexibility and asynchronous programming capabilities.

Different JavaScript engines have different effects when parsing and executing JavaScript code, because the implementation principles and optimization strategies of each engine differ. 1. Lexical analysis: convert source code into lexical unit. 2. Grammar analysis: Generate an abstract syntax tree. 3. Optimization and compilation: Generate machine code through the JIT compiler. 4. Execute: Run the machine code. V8 engine optimizes through instant compilation and hidden class, SpiderMonkey uses a type inference system, resulting in different performance performance on the same code.

JavaScript's applications in the real world include server-side programming, mobile application development and Internet of Things control: 1. Server-side programming is realized through Node.js, suitable for high concurrent request processing. 2. Mobile application development is carried out through ReactNative and supports cross-platform deployment. 3. Used for IoT device control through Johnny-Five library, suitable for hardware interaction.


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