Home > Article > Backend Development > Go language document analysis: net.Listen function implements network monitoring
Go language is an open source programming language, which is characterized by simplicity, efficiency, and reliability. In daily development, we often need to implement network monitoring in order to handle connection requests from the outside. In the Go language, the net package provides a wealth of functions and methods to implement network programming, among which the net.Listen function is the key to realizing network monitoring.
In this article, I will introduce the use of the net.Listen function in detail and provide specific code examples. I hope that by reading this article, readers can have a deeper understanding of the net.Listen function.
First, let us understand the definition and function of the net.Listen function. The definition of the net.Listen function is as follows:
func Listen(network, address string) (Listener, error)
This function accepts two parameters, namely the network type and the listening address, and returns a Listener interface and an error message.
Next, let’s take a look at how to use the net.Listen function to implement network monitoring. The following code example demonstrates how to use the net.Listen function to listen to the local port 8080 on the TCP protocol:
package main import ( "fmt" "log" "net" ) func main() { listener, err := net.Listen("tcp", "localhost:8080") if err != nil { log.Fatal(err) } for { conn, err := listener.Accept() if err != nil { log.Fatal(err) } go handleConnection(conn) } } func handleConnection(conn net.Conn) { defer conn.Close() // 处理连接的逻辑 }
In this example, we first call the net.Listen function and specify the network type as "tcp". The listening address is "localhost:8080". If no error occurs, we will get an instance of the Listener interface. Then, we call the listener.Accept function through an infinite loop to accept the connection request from the client. Whenever a new connection is established, the Accept function returns an instance of the net.Conn interface through which we can communicate with the client.
In this example, we also use a separate goroutine to handle each accepted connection. This ensures that our program can accept other connections while processing one connection, and improves the concurrency performance of the program.
After processing a connection, we need to call conn.Close() to close the connection to release resources and disconnect from the client.
To summarize, using the net.Listen function to implement network monitoring requires the following steps:
Through the introduction of this article, we have a detailed understanding of how to use the net.Listen function of the go language and give specific code examples. I hope this article can help everyone understand and master the usage of the net.Listen function, so that network monitoring can be implemented more flexibly and efficiently in practical applications.
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