search
HomeBackend DevelopmentGolanggolang atomic replacement

golang atomic replacement

May 16, 2023 am 10:28 AM

Golang is a programming language developed by Google. It has very powerful functions in concurrent programming. One of them is atomic operations, which ensure the correctness of shared resources in a multi-threaded environment. In Golang, atomic operations are provided by the sync/atomic package. This article will introduce the atomic replacement operation in detail.

Before introducing atomic substitution, let’s first understand what atomic operations are. In multi-threaded programming, if multiple threads need to access a shared resource at the same time, some problems will occur if the access is not coordinated. For example, if multiple threads try to modify the same value at the same time, a race condition may occur, causing program errors or unpredictable behavior.

To solve this problem, we can use a technique called atomic operations. An atomic operation is an indivisible operation that cannot be interrupted or modified during execution. This avoids race conditions caused by multiple threads accessing shared resources at the same time. Golang provides some atomic operation functions, such as AddInt32, AddInt64, CompareAndSwapInt32, etc.

The atomic replacement operation functions are SwapInt32, SwapInt64, SwapUint32, SwapUint64, and SwapPointer. Taking SwapInt32 as an example, its function prototype is as follows:

func SwapInt32(addr *int32, new int32) (old int32)

This function receives a pointer to an int32 type variable and a new The int32 value, it will try to replace the value at the memory address pointed by the pointer with the new value and return the original value. If the replacement fails due to concurrent modification, the original value is returned. This function is atomic, even if multiple threads call SwapInt32 at the same time to modify the same value, there will be no problem.

Let’s look at a simple example. The counter in the example is a variable of type int32, and multiple threads will try to increase its value by 1 at the same time. If you do not use atomic replacement operations, you need to use locks to ensure that multiple threads do not modify the counter at the same time, which will cause performance degradation. With atomic replacement operations, no locks are required. The code is as follows:

package main

import (
    "fmt"
    "sync/atomic"
    "time"
)

func main() {
    var counter int32
    
    for i := 1; i <= 10; i++ {
        go func() {
            for {
                oldValue := atomic.LoadInt32(&counter)
                if atomic.CompareAndSwapInt32(&counter, oldValue, oldValue+1) {
                    break
                }
                time.Sleep(time.Millisecond)
            }
        }()
    }
    
    time.Sleep(time.Second * 1)
    
    fmt.Println(counter)
}

In this example, we set the initial value of the counter to 0 and started 10 goroutines to add 1 to it. In each goroutine, we use a for loop to continuously try to increment the counter value by 1. The LoadInt32 function is used here to read the counter value, and the CompareAndSwapInt32 function is used to perform atomic replacement operations. Here oldValue is used as the base value for comparison. If the value of the current counter is the same as oldValue, an atomic replacement operation is performed. If the replacement succeeds, exit the loop; if the replacement fails, wait for a while and try again.

In this example, a possible race condition is that multiple goroutines read the value of counter as k at the same time, and then increase it by 1 at the same time, causing the counter to only increase by 1. However, due to the use of atomic replacement operations, each goroutine will only operate when it attempts to modify the counter. Other threads cannot modify the counter, so no race conditions will occur. The final counter value output by the program should be 10, and the result is generally like this.

This article introduces the atomic replacement operation functions in Golang, including SwapInt32, SwapInt64, SwapUint32, SwapUint64, and SwapPointer. Atomic operations are an important means to ensure the correctness of shared resources in multi-threaded programming, and they can avoid race conditions. Golang provides some atomic operation functions to implement functions such as spin locks and CAS operations. Programmers can choose appropriate atomic operation functions to solve problems in concurrent programming.

The above is the detailed content of golang atomic replacement. 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
Golang's Impact: Speed, Efficiency, and SimplicityGolang's Impact: Speed, Efficiency, and SimplicityApr 14, 2025 am 12:11 AM

Goimpactsdevelopmentpositivelythroughspeed,efficiency,andsimplicity.1)Speed:Gocompilesquicklyandrunsefficiently,idealforlargeprojects.2)Efficiency:Itscomprehensivestandardlibraryreducesexternaldependencies,enhancingdevelopmentefficiency.3)Simplicity:

C   and Golang: When Performance is CrucialC and Golang: When Performance is CrucialApr 13, 2025 am 12:11 AM

C is more suitable for scenarios where direct control of hardware resources and high performance optimization is required, while Golang is more suitable for scenarios where rapid development and high concurrency processing are required. 1.C's advantage lies in its close to hardware characteristics and high optimization capabilities, which are suitable for high-performance needs such as game development. 2.Golang's advantage lies in its concise syntax and natural concurrency support, which is suitable for high concurrency service development.

Golang in Action: Real-World Examples and ApplicationsGolang in Action: Real-World Examples and ApplicationsApr 12, 2025 am 12:11 AM

Golang excels in practical applications and is known for its simplicity, efficiency and concurrency. 1) Concurrent programming is implemented through Goroutines and Channels, 2) Flexible code is written using interfaces and polymorphisms, 3) Simplify network programming with net/http packages, 4) Build efficient concurrent crawlers, 5) Debugging and optimizing through tools and best practices.

Golang: The Go Programming Language ExplainedGolang: The Go Programming Language ExplainedApr 10, 2025 am 11:18 AM

The core features of Go include garbage collection, static linking and concurrency support. 1. The concurrency model of Go language realizes efficient concurrent programming through goroutine and channel. 2. Interfaces and polymorphisms are implemented through interface methods, so that different types can be processed in a unified manner. 3. The basic usage demonstrates the efficiency of function definition and call. 4. In advanced usage, slices provide powerful functions of dynamic resizing. 5. Common errors such as race conditions can be detected and resolved through getest-race. 6. Performance optimization Reuse objects through sync.Pool to reduce garbage collection pressure.

Golang's Purpose: Building Efficient and Scalable SystemsGolang's Purpose: Building Efficient and Scalable SystemsApr 09, 2025 pm 05:17 PM

Go language performs well in building efficient and scalable systems. Its advantages include: 1. High performance: compiled into machine code, fast running speed; 2. Concurrent programming: simplify multitasking through goroutines and channels; 3. Simplicity: concise syntax, reducing learning and maintenance costs; 4. Cross-platform: supports cross-platform compilation, easy deployment.

Why do the results of ORDER BY statements in SQL sorting sometimes seem random?Why do the results of ORDER BY statements in SQL sorting sometimes seem random?Apr 02, 2025 pm 05:24 PM

Confused about the sorting of SQL query results. In the process of learning SQL, you often encounter some confusing problems. Recently, the author is reading "MICK-SQL Basics"...

Is technology stack convergence just a process of technology stack selection?Is technology stack convergence just a process of technology stack selection?Apr 02, 2025 pm 05:21 PM

The relationship between technology stack convergence and technology selection In software development, the selection and management of technology stacks are a very critical issue. Recently, some readers have proposed...

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

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 agoBy尊渡假赌尊渡假赌尊渡假赌
R.E.P.O. Best Graphic Settings
3 weeks agoBy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 agoBy尊渡假赌尊渡假赌尊渡假赌
WWE 2K25: How To Unlock Everything In MyRise
4 weeks agoBy尊渡假赌尊渡假赌尊渡假赌

Hot Tools

DVWA

DVWA

Damn Vulnerable Web App (DVWA) is a PHP/MySQL web application that is very vulnerable. Its main goals are to be an aid for security professionals to test their skills and tools in a legal environment, to help web developers better understand the process of securing web applications, and to help teachers/students teach/learn in a classroom environment Web application security. The goal of DVWA is to practice some of the most common web vulnerabilities through a simple and straightforward interface, with varying degrees of difficulty. Please note that this software

EditPlus Chinese cracked version

EditPlus Chinese cracked version

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

Dreamweaver CS6

Dreamweaver CS6

Visual web development tools

MantisBT

MantisBT

Mantis is an easy-to-deploy web-based defect tracking tool designed to aid in product defect tracking. It requires PHP, MySQL and a web server. Check out our demo and hosting services.

Safe Exam Browser

Safe Exam Browser

Safe Exam Browser is a secure browser environment for taking online exams securely. This software turns any computer into a secure workstation. It controls access to any utility and prevents students from using unauthorized resources.