Table of Contents
C Detailed explanation of function inheritance: The essence of polymorphism
Introduction to Polymorphism
Function inheritance
Virtual function
Practical case
Home Backend Development C++ Detailed explanation of C++ function inheritance: What is the essence of polymorphism?

Detailed explanation of C++ function inheritance: What is the essence of polymorphism?

May 04, 2024 pm 09:30 PM
c++ Polymorphism c++ function inheritance

Overview of function inheritance: Function inheritance in C is implemented through the override keyword, allowing subclasses to override parent class functions, making polymorphism possible, that is, objects show different behaviors at runtime, even if they belong to the same parent class.

C++ 函数继承详解:多态的本质是什么?

C Detailed explanation of function inheritance: The essence of polymorphism

In object-oriented programming, inheritance is an important mechanism, which allows subclasses to inherit from parent classes Data members and member functions. Function inheritance refers to the inheritance of member functions from parent class to child class.

Introduction to Polymorphism

Polymorphism is a key concept in object-oriented programming that allows objects to behave differently at runtime, even if they belong to the same parent class. Function inheritance is a way to achieve polymorphism.

Function inheritance

In C, function inheritance is implemented through the override keyword. When a child class defines a function with the same name and signature as the parent class, the function is marked override. This tells the compiler that the subclass is overriding the parent class's functions.

1

2

3

4

5

6

7

8

9

10

11

12

13

class Base {

public:

    virtual void print() {

        std::cout << "Base class" << std::endl;

    }

};

 

class Derived : public Base {

public:

    virtual void print() override {

        std::cout << "Derived class" << std::endl;

    }

};

Copy after login

In this example, the Base class defines a print() function, and the Derived class passes override keyword overrides this function. Therefore, when the print() function of a Derived class object is called, it will print "Derived class", not "Base class".

Virtual function

override The function must be a virtual function. Virtual functions are declared with the virtual keyword, which allows subclasses to override parent class functions. In the above example, the print() function is virtual.

Practical case

The following is a code example that demonstrates function inheritance and polymorphism:

1

2

3

4

5

6

7

8

9

10

11

12

13

14

15

16

17

18

19

20

21

22

23

24

25

26

27

28

29

30

#include <iostream>

 

class Shape {

public:

    virtual double getArea() = 0;

};

 

class Rectangle : public Shape {

public:

    double width, height;

    Rectangle(double w, double h) : width(w), height(h) {}

    double getArea() override { return width * height; }

};

 

class Circle : public Shape {

public:

    double radius;

    Circle(double r) : radius(r) {}

    double getArea() override { return 3.14 * radius * radius; }

};

 

int main() {

    Shape* shapes[] = {new Rectangle(2, 3), new Circle(4)};

 

    for (int i = 0; i < 2; i++) {

        std::cout << "Area of " << (i == 0 ? "Rectangle" : "Circle") << ": " << shapes[i]->getArea() << std::endl;

    }

 

    return 0;

}

Copy after login

In this case, Shape is a shape class Base class, which defines a pure virtual function getArea(). The Rectangle and Circle classes inherit from the Shape class and override the getArea() function to calculate their respective areas.

In the main() function, using polymorphism, a base class array is used to store Rectangle and Circle objects. Since the getArea() function is overridden, the correct area is printed based on the object type.

Through function inheritance and polymorphism, we can build flexible and extensible programs with different behaviors.

The above is the detailed content of Detailed explanation of C++ function inheritance: What is the essence of polymorphism?. For more information, please follow other related articles on the PHP Chinese website!

Statement of this Website
The content of this article is voluntarily contributed by netizens, and the copyright belongs to the original author. This site does not assume corresponding legal responsibility. If you find any content suspected of plagiarism or infringement, please contact admin@php.cn

Hot AI Tools

Undresser.AI Undress

Undresser.AI Undress

AI-powered app for creating realistic nude photos

AI Clothes Remover

AI Clothes Remover

Online AI tool for removing clothes from photos.

Undress AI Tool

Undress AI Tool

Undress images for free

Clothoff.io

Clothoff.io

AI clothes remover

AI Hentai Generator

AI Hentai Generator

Generate AI Hentai for free.

Hot Article

R.E.P.O. Energy Crystals Explained and What They Do (Yellow Crystal)
3 weeks ago By 尊渡假赌尊渡假赌尊渡假赌
R.E.P.O. Best Graphic Settings
3 weeks ago By 尊渡假赌尊渡假赌尊渡假赌
R.E.P.O. How to Fix Audio if You Can't Hear Anyone
3 weeks ago By 尊渡假赌尊渡假赌尊渡假赌

Hot Tools

Notepad++7.3.1

Notepad++7.3.1

Easy-to-use and free code editor

SublimeText3 Chinese version

SublimeText3 Chinese version

Chinese version, very easy to use

Zend Studio 13.0.1

Zend Studio 13.0.1

Powerful PHP integrated development environment

Dreamweaver CS6

Dreamweaver CS6

Visual web development tools

SublimeText3 Mac version

SublimeText3 Mac version

God-level code editing software (SublimeText3)

How to implement the Strategy Design Pattern in C++? How to implement the Strategy Design Pattern in C++? Jun 06, 2024 pm 04:16 PM

The steps to implement the strategy pattern in C++ are as follows: define the strategy interface and declare the methods that need to be executed. Create specific strategy classes, implement the interface respectively and provide different algorithms. Use a context class to hold a reference to a concrete strategy class and perform operations through it.

Similarities and Differences between Golang and C++ Similarities and Differences between Golang and C++ Jun 05, 2024 pm 06:12 PM

Golang and C++ are garbage collected and manual memory management programming languages ​​respectively, with different syntax and type systems. Golang implements concurrent programming through Goroutine, and C++ implements it through threads. Golang memory management is simple, and C++ has stronger performance. In practical cases, Golang code is simpler and C++ has obvious performance advantages.

How to implement nested exception handling in C++? How to implement nested exception handling in C++? Jun 05, 2024 pm 09:15 PM

Nested exception handling is implemented in C++ through nested try-catch blocks, allowing new exceptions to be raised within the exception handler. The nested try-catch steps are as follows: 1. The outer try-catch block handles all exceptions, including those thrown by the inner exception handler. 2. The inner try-catch block handles specific types of exceptions, and if an out-of-scope exception occurs, control is given to the external exception handler.

How to iterate over a C++ STL container? How to iterate over a C++ STL container? Jun 05, 2024 pm 06:29 PM

To iterate over an STL container, you can use the container's begin() and end() functions to get the iterator range: Vector: Use a for loop to iterate over the iterator range. Linked list: Use the next() member function to traverse the elements of the linked list. Mapping: Get the key-value iterator and use a for loop to traverse it.

How to use C++ template inheritance? How to use C++ template inheritance? Jun 06, 2024 am 10:33 AM

C++ template inheritance allows template-derived classes to reuse the code and functionality of the base class template, which is suitable for creating classes with the same core logic but different specific behaviors. The template inheritance syntax is: templateclassDerived:publicBase{}. Example: templateclassBase{};templateclassDerived:publicBase{};. Practical case: Created the derived class Derived, inherited the counting function of the base class Base, and added the printCount method to print the current count.

What are the common applications of C++ templates in actual development? What are the common applications of C++ templates in actual development? Jun 05, 2024 pm 05:09 PM

C++ templates are widely used in actual development, including container class templates, algorithm templates, generic function templates and metaprogramming templates. For example, a generic sorting algorithm can sort arrays of different types of data.

Why does an error occur when installing an extension using PECL in a Docker environment? How to solve it? Why does an error occur when installing an extension using PECL in a Docker environment? How to solve it? Apr 01, 2025 pm 03:06 PM

Causes and solutions for errors when using PECL to install extensions in Docker environment When using Docker environment, we often encounter some headaches...

How to access elements in C++ STL container? How to access elements in C++ STL container? Jun 05, 2024 pm 06:04 PM

How to access elements in C++ STL container? There are several ways to do this: Traverse a container: Use an iterator Range-based for loop to access specific elements: Use an index (subscript operator []) Use a key (std::map or std::unordered_map)

See all articles