Home Backend Development Golang golang tcp forwarding

golang tcp forwarding

May 16, 2023 pm 01:38 PM

Golang TCP Forwarding: Implementation Basics and Application Scenarios

TCP forwarding is a commonly used technology in data transmission. Its main function is to forward the TCP connection request received by the server to other servers for processing, so that Data traffic can be spread across multiple servers, thereby increasing the load capacity of the system. This article will introduce in detail the implementation basis and application scenarios of Golang TCP forwarding.

1. Implementation Basics

Before introducing the implementation basics of Golang TCP forwarding, let’s briefly introduce Golang’s TCP network programming. The Go language provides a set of standard libraries, which contain functions and interfaces related to TCP network programming. Through these functions and interfaces, the Golang TCP forwarding function can be implemented. The following is a simple sample code:

package main

import (
    "fmt"
    "net"
)

func main() {
    ln, err := net.Listen("tcp", ":8080")
    if err != nil {
        fmt.Println(err)
        return
    }
    defer ln.Close()

    for {
        conn, err := ln.Accept()
        if err != nil {
            fmt.Println(err)
            continue
        }
        go handleConnection(conn)
    }
}

func handleConnection(conn net.Conn) {
    defer conn.Close()

    buf := make([]byte, 4096)
    for {
        n, err := conn.Read(buf)
        if err != nil {
            fmt.Println(err)
            return
        }
        fmt.Println(string(buf[:n]))
    }
}
Copy after login

The above code creates a TCP server listening to port 8080 through the net.Listen function, receives the TCP connection request through the ln.Accept function, and then enables goroutine to process the connection. When there is data to read in the connection, the data is read through the conn.Read function and output to the console. Of course, this alone is far from enough to implement the TCP forwarding function. Below we will discuss in detail how to implement the TCP forwarding function.

Golang TCP forwarding can be implemented in the following two ways:

Method 1: Original TCP forwarding

The implementation of original TCP forwarding is very simple, mainly provided through the net package Function implementation, use the net.ListenTCP function with ip specified to create a TCP server that listens to the IP and port, and then receives requests from the client through the AcceptTCP method. Once a request is received, a new TCP connection will be established immediately, and then the data sent by the client will be transparently forwarded to the target server, thus realizing the forwarding of TCP data.

package main

import (
    "fmt"
    "io"
    "net"
)

func main() {
    listener, err := net.ListenTCP("tcp", &net.TCPAddr{
        IP:   net.ParseIP("0.0.0.0"),
        Port: 8888,
    })
    if err != nil {
        panic(err.Error())
    }
    defer listener.Close()

    targetTcpAddr, err := net.ResolveTCPAddr("tcp", "172.16.100.101:80")
    if err != nil {
        panic(err.Error())
    }

    for {
        clientConn, err := listener.AcceptTCP()
        if err != nil {
            fmt.Println(err)
            continue
        }
        go handleConnection(clientConn, targetTcpAddr)
    }
}

func handleConnection(clientConn *net.TCPConn, targetAddr *net.TCPAddr) {
    defer clientConn.Close()

    targetConn, err := net.DialTCP("tcp", nil, targetAddr)
    if err != nil {
        fmt.Println(err)
        return
    }
    defer targetConn.Close()

    io.Copy(targetConn, clientConn)
    io.Copy(clientConn, targetConn)
}
Copy after login

Method 2: TCP forwarding based on HTTP proxy

HTTP proxy is a common network transmission protocol, which can forward the client's request to the target server through the proxy server. Using the proxy idea to implement TCP forwarding is to encapsulate the TCP data packet into an HTTP request, use the HTTP proxy server to forward the request to the target server, and then encapsulate the data returned by the target server into an HTTP response and return it to the client.

package main

import (
    "fmt"
    "io"
    "net"
    "net/http"
)

func main() {
    http.HandleFunc("/", handleRequest)
    http.ListenAndServe(":8080", nil)
}

func handleRequest(w http.ResponseWriter, req *http.Request) {
    if req.Method != "CONNECT" {
        http.Error(w, "Method not allowed", http.StatusMethodNotAllowed)
        return
    }

    targetAddr := req.Host
    targetConn, err := net.Dial("tcp", targetAddr)
    if err != nil {
        fmt.Println(err)
        http.Error(w, "Internal server error", http.StatusInternalServerError)
        return
    }
    defer targetConn.Close()

    w.WriteHeader(http.StatusOK)
    hijacker, ok := w.(http.Hijacker)
    if !ok {
        http.Error(w, "Internal server error", http.StatusInternalServerError)
        return
    }

    clientConn, _, err := hijacker.Hijack()
    if err != nil {
        return
    }
    defer clientConn.Close()

    go func() {
        io.Copy(targetConn, clientConn)
    }()
    io.Copy(clientConn, targetConn)
}
Copy after login

The above code implements a simple HTTP proxy server. When the client connects to the proxy server, the proxy server will parse the address of the target server from the HTTP request header, establish a TCP connection with the target server, and then Establish a TCP connection with the client and forward the client's HTTP request to the target server. When the target server returns data, it also returns the data to the client through an HTTP response.

2. Application Scenarios

TCP forwarding is a very practical network technology and is often used in load balancing, high availability, data acceleration and other scenarios. The following will introduce several scenarios of TCP forwarding in practical applications.

Scenario 1: HTTP Load Balancing

In a website or application, when the number of user requests becomes large, a server often cannot withstand such a large pressure, and TCP is needed at this time. Forwarding technology is used to distribute requests to multiple servers for processing, thereby achieving load balancing. The HTTP protocol is based on the TCP protocol, so you can consider using TCP forwarding in conjunction with the HTTP protocol and implement it using HTTP load balancing.

Scenario 2: Highly available TCP service

In a distributed system, it is often necessary to start programs that provide the same service on multiple servers at the same time to achieve high availability. If the traditional TCP protocol is used, the IP addresses and port numbers of all servers need to be hard-coded in the client program. However, when a server goes down, a new machine needs to be brought online again and the software needs to be redeployed. For large-scale It is very troublesome to apply. Using TCP forwarding technology, you can achieve transparent and highly available TCP services. You only need to connect the client TCP to the forwarding server. The forwarding server forwards the connection request to an available server and returns the data returned by the server to the client. Achieve seamless high availability.

Scenario 3: Accelerated data transmission

TCP transmission is performed in segments. Sending data in segments can greatly increase the data transmission rate. However, the size of TCP data segments is automatically controlled by the underlying protocol stack, which often cannot meet user needs. Through TCP forwarding technology, you can customize the TCP segment size and transparently forward the data to the target server after segmentation, thereby increasing the data transmission rate.

3. Summary

This article introduces in detail the implementation basis and application scenarios of Golang TCP forwarding. Golang TCP forwarding is a very practical network technology that is often used in load balancing, high availability, data acceleration and other scenarios. By understanding TCP forwarding, we can better understand the data transmission mechanism in the network and provide more ideas and solutions for our application and system development.

The above is the detailed content of golang tcp forwarding. 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

Video Face Swap

Video Face Swap

Swap faces in any video effortlessly with our completely free AI face swap tool!

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)

What are the vulnerabilities of Debian OpenSSL What are the vulnerabilities of Debian OpenSSL Apr 02, 2025 am 07:30 AM

OpenSSL, as an open source library widely used in secure communications, provides encryption algorithms, keys and certificate management functions. However, there are some known security vulnerabilities in its historical version, some of which are extremely harmful. This article will focus on common vulnerabilities and response measures for OpenSSL in Debian systems. DebianOpenSSL known vulnerabilities: OpenSSL has experienced several serious vulnerabilities, such as: Heart Bleeding Vulnerability (CVE-2014-0160): This vulnerability affects OpenSSL 1.0.1 to 1.0.1f and 1.0.2 to 1.0.2 beta versions. An attacker can use this vulnerability to unauthorized read sensitive information on the server, including encryption keys, etc.

What libraries are used for floating point number operations in Go? What libraries are used for floating point number operations in Go? Apr 02, 2025 pm 02:06 PM

The library used for floating-point number operation in Go language introduces how to ensure the accuracy is...

What is the problem with Queue thread in Go's crawler Colly? What is the problem with Queue thread in Go's crawler Colly? Apr 02, 2025 pm 02:09 PM

Queue threading problem in Go crawler Colly explores the problem of using the Colly crawler library in Go language, developers often encounter problems with threads and request queues. �...

Transforming from front-end to back-end development, is it more promising to learn Java or Golang? Transforming from front-end to back-end development, is it more promising to learn Java or Golang? Apr 02, 2025 am 09:12 AM

Backend learning path: The exploration journey from front-end to back-end As a back-end beginner who transforms from front-end development, you already have the foundation of nodejs,...

In Go, why does printing strings with Println and string() functions have different effects? In Go, why does printing strings with Println and string() functions have different effects? Apr 02, 2025 pm 02:03 PM

The difference between string printing in Go language: The difference in the effect of using Println and string() functions is in Go...

PostgreSQL monitoring method under Debian PostgreSQL monitoring method under Debian Apr 02, 2025 am 07:27 AM

This article introduces a variety of methods and tools to monitor PostgreSQL databases under the Debian system, helping you to fully grasp database performance monitoring. 1. Use PostgreSQL to build-in monitoring view PostgreSQL itself provides multiple views for monitoring database activities: pg_stat_activity: displays database activities in real time, including connections, queries, transactions and other information. pg_stat_replication: Monitors replication status, especially suitable for stream replication clusters. pg_stat_database: Provides database statistics, such as database size, transaction commit/rollback times and other key indicators. 2. Use log analysis tool pgBadg

How to specify the database associated with the model in Beego ORM? How to specify the database associated with the model in Beego ORM? Apr 02, 2025 pm 03:54 PM

Under the BeegoORM framework, how to specify the database associated with the model? Many Beego projects require multiple databases to be operated simultaneously. When using Beego...

How to solve the user_id type conversion problem when using Redis Stream to implement message queues in Go language? How to solve the user_id type conversion problem when using Redis Stream to implement message queues in Go language? Apr 02, 2025 pm 04:54 PM

The problem of using RedisStream to implement message queues in Go language is using Go language and Redis...

See all articles