search
HomeBackend DevelopmentGolangHow to solve the problem of concurrent request current limit in Go language?

How to solve the problem of concurrent request current limit in Go language?

How to solve the problem of concurrent request current limit in Go language?

In high-concurrency scenarios, it is easy to have too many requests, which will put a lot of pressure on the system and even cause the system to crash. Therefore, limiting the number of concurrent requests is essential. This article will introduce how to solve the problem of concurrent request current limiting in Go language and provide specific code examples.

1. What is concurrent request limit?

Concurrent request current limiting refers to the operation of limiting the number of concurrent requests processed by the system within a certain period of time. It can effectively prevent the system from being overwhelmed by too many requests and ensure the stability and availability of the system.

In Go language, we can use some current limiting algorithms to achieve the purpose of limiting concurrent requests. Common current limiting algorithms include token bucket algorithm, leaky bucket algorithm, etc. Below we will introduce the method of using the token bucket algorithm to limit concurrent requests.

2. Token Bucket Algorithm

The token bucket algorithm is a commonly used current limiting algorithm. It maintains a fixed-capacity token bucket, and requests need to obtain tokens from the token bucket. cards can be dealt with. When there are not enough tokens in the token bucket, the request will be blocked or rejected.

In the Go language, we can use the Limiter structure in the golang.org/x/time/rate package to implement the token bucket algorithm.

3. Sample code

Below we give a sample code that uses the token bucket algorithm to implement concurrent request current limiting:

package main

import (
    "fmt"
    "time"

    "golang.org/x/time/rate"
)

func main() {
    // 创建一个每秒产生10个令牌的令牌桶
    limiter := rate.NewLimiter(10, 10)

    // 模拟100个请求并发访问
    for i := 0; i < 100; i++ {
        go func() {
            if limiter.Allow() {
                // 处理请求的代码
                fmt.Println("处理请求")
            } else {
                // 请求被限流的代码
                fmt.Println("请求被限流")
            }
        }()
    }

    time.Sleep(time.Second * 2) // 等待所有请求完成
}

In the above code, we use rate.NewLimiter(10, 10)Creates a token bucket that generates 10 tokens per second and limits the maximum number of concurrent requests. Before processing the request, we use the limiter.Allow() method to determine whether the request is allowed to be processed. If the return value is true, it means that there are enough tokens in the token bucket to process the request; if the return value is false, it means that there are not enough tokens in the token bucket. The token is available and the request is throttled.

4. Summary

By using the token bucket algorithm, concurrent request current limiting can be easily achieved and the system can be protected from excessive request pressure. In practical applications, we can also adjust the capacity and rate of the token bucket according to the actual situation to achieve a more refined current limiting strategy.

I hope this article can help you understand the application of concurrent request current limiting algorithm in Go language.

The above is the detailed content of How to solve the problem of concurrent request current limit in Go language?. For more information, please follow other related articles on the PHP Chinese website!

Statement
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
Go Error Handling: Best Practices and PatternsGo Error Handling: Best Practices and PatternsMay 04, 2025 am 12:19 AM

In Go programming, ways to effectively manage errors include: 1) using error values ​​instead of exceptions, 2) using error wrapping techniques, 3) defining custom error types, 4) reusing error values ​​for performance, 5) using panic and recovery with caution, 6) ensuring that error messages are clear and consistent, 7) recording error handling strategies, 8) treating errors as first-class citizens, 9) using error channels to handle asynchronous errors. These practices and patterns help write more robust, maintainable and efficient code.

How do you implement concurrency in Go?How do you implement concurrency in Go?May 04, 2025 am 12:13 AM

Implementing concurrency in Go can be achieved by using goroutines and channels. 1) Use goroutines to perform tasks in parallel, such as enjoying music and observing friends at the same time in the example. 2) Securely transfer data between goroutines through channels, such as producer and consumer models. 3) Avoid excessive use of goroutines and deadlocks, and design the system reasonably to optimize concurrent programs.

Building Concurrent Data Structures in GoBuilding Concurrent Data Structures in GoMay 04, 2025 am 12:09 AM

Gooffersmultipleapproachesforbuildingconcurrentdatastructures,includingmutexes,channels,andatomicoperations.1)Mutexesprovidesimplethreadsafetybutcancauseperformancebottlenecks.2)Channelsofferscalabilitybutmayblockiffullorempty.3)Atomicoperationsareef

Comparing Go's Error Handling to Other Programming LanguagesComparing Go's Error Handling to Other Programming LanguagesMay 04, 2025 am 12:09 AM

Go'serrorhandlingisexplicit,treatingerrorsasreturnedvaluesratherthanexceptions,unlikePythonandJava.1)Go'sapproachensureserrorawarenessbutcanleadtoverbosecode.2)PythonandJavauseexceptionsforcleanercodebutmaymisserrors.3)Go'smethodpromotesrobustnessand

Testing Code that Relies on init Functions in GoTesting Code that Relies on init Functions in GoMay 03, 2025 am 12:20 AM

WhentestingGocodewithinitfunctions,useexplicitsetupfunctionsorseparatetestfilestoavoiddependencyoninitfunctionsideeffects.1)Useexplicitsetupfunctionstocontrolglobalvariableinitialization.2)Createseparatetestfilestobypassinitfunctionsandsetupthetesten

Comparing Go's Error Handling Approach to Other LanguagesComparing Go's Error Handling Approach to Other LanguagesMay 03, 2025 am 12:20 AM

Go'serrorhandlingreturnserrorsasvalues,unlikeJavaandPythonwhichuseexceptions.1)Go'smethodensuresexpliciterrorhandling,promotingrobustcodebutincreasingverbosity.2)JavaandPython'sexceptionsallowforcleanercodebutcanleadtooverlookederrorsifnotmanagedcare

Best Practices for Designing Effective Interfaces in GoBest Practices for Designing Effective Interfaces in GoMay 03, 2025 am 12:18 AM

AneffectiveinterfaceinGoisminimal,clear,andpromotesloosecoupling.1)Minimizetheinterfaceforflexibilityandeaseofimplementation.2)Useinterfacesforabstractiontoswapimplementationswithoutchangingcallingcode.3)Designfortestabilitybyusinginterfacestomockdep

Centralized Error Handling Strategies in GoCentralized Error Handling Strategies in GoMay 03, 2025 am 12:17 AM

Centralized error handling can improve the readability and maintainability of code in Go language. Its implementation methods and advantages include: 1. Separate error handling logic from business logic and simplify code. 2. Ensure the consistency of error handling by centrally handling. 3. Use defer and recover to capture and process panics to enhance program robustness.

See all articles

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

EditPlus Chinese cracked version

EditPlus Chinese cracked version

Small size, syntax highlighting, does not support code prompt function

SublimeText3 Linux new version

SublimeText3 Linux new version

SublimeText3 Linux latest version

mPDF

mPDF

mPDF is a PHP library that can generate PDF files from UTF-8 encoded HTML. The original author, Ian Back, wrote mPDF to output PDF files "on the fly" from his website and handle different languages. It is slower than original scripts like HTML2FPDF and produces larger files when using Unicode fonts, but supports CSS styles etc. and has a lot of enhancements. Supports almost all languages, including RTL (Arabic and Hebrew) and CJK (Chinese, Japanese and Korean). Supports nested block-level elements (such as P, DIV),

SublimeText3 Mac version

SublimeText3 Mac version

God-level code editing software (SublimeText3)

Dreamweaver Mac version

Dreamweaver Mac version

Visual web development tools