


Go Performance: Function Parameters vs. Global Variables: Is There a Real Speed Difference?
Performance Implications of Function Parameters vs. Global Variables
In the realm of Go programming, the question often arises: should function parameters be prioritized over global variables for optimal performance?
Consider the function checkFiles which takes a slice of excluded patterns as an argument:
func checkFiles(path string, excludedPatterns []string) { // ... }
Since excludedPatterns remains constant throughout the function's execution, some may suggest making it a global variable to optimize performance by eliminating the repeated parameter passing.
However, this optimization is unnecessary in Go due to its efficient handling of slice parameters. Slices are lightweight structures that contain metadata (length and capacity) and point to an underlying data structure. When a slice is passed as a function parameter, only the metadata is copied, not the entire backing array. This is known as "copy-on-write" semantics. Therefore, accessing excludedPatterns via a function parameter is equally efficient as accessing it as a global variable.
Furthermore, passing parameters by value can often lead to optimizations by the compiler, such as caching. Global variables, on the other hand, require more complex handling, which can potentially hinder optimization.
Benchmarks illustrate that there is no significant performance difference between passing a slice as a function parameter and accessing a global slice:
package main import ( "testing" ) var gslice = make([]string, 1000) func global(s string) { for i := 0; i <p>Benchmark results indicate that both approaches perform at nearly identical speeds:</p><pre class="brush:php;toolbar:false">BenchmarkParameter-8 20000000 80.2 ns/op BenchmarkGlobal-8 20000000 79.9 ns/op
In conclusion, for the use case in question, passing excludedPatterns as a function parameter is recommended as it simplifies code, enhances readability, and offers comparable performance to global variables in Go.
The above is the detailed content of Go Performance: Function Parameters vs. Global Variables: Is There a Real Speed Difference?. For more information, please follow other related articles on the PHP Chinese website!

Golang is suitable for rapid development and concurrent programming, while C is more suitable for projects that require extreme performance and underlying control. 1) Golang's concurrency model simplifies concurrency programming through goroutine and channel. 2) C's template programming provides generic code and performance optimization. 3) Golang's garbage collection is convenient but may affect performance. C's memory management is complex but the control is fine.

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

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 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.

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.

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.

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"...

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...


Hot AI Tools

Undresser.AI Undress
AI-powered app for creating realistic nude photos

AI Clothes Remover
Online AI tool for removing clothes from photos.

Undress AI Tool
Undress images for free

Clothoff.io
AI clothes remover

AI Hentai Generator
Generate AI Hentai for free.

Hot Article

Hot Tools

VSCode Windows 64-bit Download
A free and powerful IDE editor launched by Microsoft

EditPlus Chinese cracked version
Small size, syntax highlighting, does not support code prompt function

SublimeText3 Linux new version
SublimeText3 Linux latest version

Dreamweaver CS6
Visual web development tools

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