JS Advanced 1. JS Data Types 1. Basic Types JS has 5 basic types, which are: 1) Undefined. It has only one value: undefined. If a variable is defined but no value is assigned to it, then the system will assign the variable a value of undefined by default. 2) Null. It also has only one value: null. It is a reference type. When a variable that is intended to save an object does not point to an object due to various reasons, the variable can be assigned a value of null, which is usually done. 3) Number. Numeric type is a collection of integers and floating point types in C#. Its specific type depends on the situation in which it is assigned. Generally speaking, it is the type of the assigned value. Also note that var num = 1.0; at this time, num is an integer type, and it is a floating point type only when there is an exact value that is not 0 after the decimal point. There are some other knowledge points about the Number type, such as: NaN means that the value is not a number. isNaN() can determine that the incoming value is of Number type; parseInt() can convert the incoming parameter into a numeric type. If it contains If the string is a non-numeric type, the string will be automatically removed. The return value of parseInt("123blue") is 123, and the blue part of the string is ignored. Therefore, the parseInt() method can be understood as trying to convert the incoming parameters into integers. type, if it cannot be converted, the parts that cannot be converted will be ignored. The parseFloat() method is similar to the parseInt() method. 4)Boolean. The Boolean type, similar to the bool type in C#, has two values: true and false, but there is no corresponding relationship with numbers like 0 corresponding to False and 1 corresponding to true in C#. 5)String. The string type stores a character sequence consisting of 0 to 16-bit UNICODE codes. 2. Complex types 1) Object type. It is the top-level "parent class" of JS (because there is no concept of class in JS, and it is just for the convenience of understanding). It is a collection of data and methods (functions), but it does not have the traditional object-oriented language Supported classes and interfaces. The Object type is essentially an unordered list of key-value pairs, similar to a collection, in json format. It contains 7 methods, namely: constructor() Constructor? hasOwnProperty(propertyName) Check whether the property is in the current object isPrototypeOf(object) Check whether the object is the prototype of the object propertyIsEnumerable(propertyName) Check whether the property can be looped using for-in toString( ) valueOf() There are many ways to create Object: By new keyword: var s = new Object(); s.name="james"; s.age=27; Simple definition through JS: var s = {}; s.name="james"; s.age=27; Object literal notation: var s = {"name":"james"," age":"27"};PS: The key of json format data does not need to be enclosed in double quotes. If the value is not a string, it does not need to be enclosed in double quotes. However, it is recommended that both key and value should be enclosed in double quotes. Avoid unnecessary trouble. Method to access the properties of Object object: s.name Click it directly. s["name"]; The advantage of using square brackets (similar to indexers) is that properties can be dynamically accessed through variables: var proName="name"; alert(s[proName]); 2) Array type. It is an ordered list of data . It is different from other arrays: Array elements can be of any type, and the element types of the same array can also be different, which is equivalent to List
function sum( x, y) { alert(this); return x y; } //window.sum(1,2); function callS() { callS. callSum1(1, 2); } callS.callSum1 = function (x, y) { alert(this); var s = sum.apply(this, arguments); //sum(1, 2); return s; } callS();
The call() method is similar to the apply() method above The two methods are not inherited and can expand the scope of the function. The biggest advantage of this is that the object and method do not need to have any coupling relationship. The first parameter passed in by both is the scope to be changed, the second parameter passed in by apply is a parameter array, and in call is passed in each named parameter. 2. Value types and reference types Having talked about so many basic types (all value types except null) and complex types (basically all reference types), we need to understand why language designers design values Types and reference types. What's the difference between the two? 1. The value type content length is fixed, and the storage range of the reference type content length is not fixed, and can store data of variable length; 2. The value type can only store values, such as integers and strings. wait. The reference type can store the heap address of the object, allowing multiple variables to point to the same object; 3. The most important point is that the reference type can alleviate the storage pressure of the stack (value types are stored in the stack). 4. In JS syntax, basic data types cannot add attributes dynamically, while reference data types can add attributes dynamically. 3. Keywords for detecting types 1.typeof Judge the type of basic type and return true or false 2.instanceof Judge the type of complex (reference) type and return true or false If you use it to determine the basic type, it will always return false 4. eval() method The eval() method is quite powerful, it is equivalent to a parser. It only accepts one parameter, which is the JS code string to be executed. When the parser finds eval(), it will parse the parameters in eval() and insert them into the location where eval is executed. The effect is equivalent to writing JS code directly at the corresponding location. 5. Create objects 1) Simple factory pattern 2) Constructor pattern. Each instance includes all methods, which wastes memory. 3) Prototype mode. Save the method in the prototype so that all instances can call the method without having to save the method in each instance
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