


What is the difference between pointer passing and value passing in golang?
Go allows parameters to be passed by pointers (sometimes called references) and values. In this article, we will compare the two approaches, paying particular attention to the different contexts that may influence the choice.
Pointer passing and value passing
Strictly speaking, there is only one passing method for go methods or functions, then It's just passing by value. Each time a variable is passed as an argument, a new copy of the variable is created and passed to the function or method being called. The copies are allocated at different memory addresses.
In the case of passing a variable by pointer, a new copy will be created pointing to the same memory address. To get a feel for the difference, let's see how it works.
Value passing
package main import "fmt" type Person struct { firstName string lastName string } func changeName(p Person) { p.firstName = "Bob" } func main() { person := Person { firstName: "Alice", lastName: "Dow", } changeName(person) fmt.Println(person) }
Running the code will get the following output:
{Alice Dow}
Please note that even though the function changeName changes firstName to "Bob", The change will not affect the variable person in the main function. This happens because the function changeName modifies a copy of the variable person, not person itself.
Pointer passing
package main import "fmt" type Person struct { firstName string lastName string } func changeName(p *Person) { p.firstName = "Bob" } func main() { person := Person { firstName: "Alice", lastName: "Dow", } changeName(&person) fmt.Println(person) }
Running the code will get the following output:
{Bob Dow}
In this case, the variable person in function main is in the function changeName was modified. This happens because &person and p are two different pointers to the same structure stored at the same memory address.
Variables cannot be modified
We have no other choice but to pass by value. So this variable cannot be modified downstream. Vice versa, if a variable is expected to be modified, it must be passed through a pointer.
The variable is a large structure
If the variable is a large structure and performance is an issue, it is best to pass the variable through a pointer. This avoids copying the entire structure in memory.
The variable is a map or slice
Map and slice in Go are reference types and should be passed by value.
Passing by value is usually less expensive
Even though Go looks a bit like C, its compiler works differently. C's analogy doesn't always work with Go. Passing by value may be less expensive than passing by pointer in Go. This happens because Go uses escape analysis to determine whether the variable can be safely allocated on the function's stack frame, which may be much less expensive than allocating the variable on the heap. Passing by value simplifies escape analysis in Go and provides better assignment opportunities for variables.
Summary
The difference between pointer passing and value passing
1. Pointer passing It is an address, not the data in the address. It transfers less data and is more efficient than value transfer. In general, pointers can be used instead of value transfers.
2. When the pointer is passed, the modification of the space data pointed to by the pointer in the calling function will affect the caller. Because they point to the same area, the pointer transfer will not affect the caller's data.
Related recommendations: golang tutorial
The above is the detailed content of What is the difference between pointer passing and value passing in golang?. For more information, please follow other related articles on the PHP Chinese website!

Golangisidealforperformance-criticalapplicationsandconcurrentprogramming,whilePythonexcelsindatascience,rapidprototyping,andversatility.1)Forhigh-performanceneeds,chooseGolangduetoitsefficiencyandconcurrencyfeatures.2)Fordata-drivenprojects,Pythonisp

Golang achieves efficient concurrency through goroutine and channel: 1.goroutine is a lightweight thread, started with the go keyword; 2.channel is used for secure communication between goroutines to avoid race conditions; 3. The usage example shows basic and advanced usage; 4. Common errors include deadlocks and data competition, which can be detected by gorun-race; 5. Performance optimization suggests reducing the use of channel, reasonably setting the number of goroutines, and using sync.Pool to manage memory.

Golang is more suitable for system programming and high concurrency applications, while Python is more suitable for data science and rapid development. 1) Golang is developed by Google, statically typing, emphasizing simplicity and efficiency, and is suitable for high concurrency scenarios. 2) Python is created by Guidovan Rossum, dynamically typed, concise syntax, wide application, suitable for beginners and data processing.

Golang is better than Python in terms of performance and scalability. 1) Golang's compilation-type characteristics and efficient concurrency model make it perform well in high concurrency scenarios. 2) Python, as an interpreted language, executes slowly, but can optimize performance through tools such as Cython.

Go language has unique advantages in concurrent programming, performance, learning curve, etc.: 1. Concurrent programming is realized through goroutine and channel, which is lightweight and efficient. 2. The compilation speed is fast and the operation performance is close to that of C language. 3. The grammar is concise, the learning curve is smooth, and the ecosystem is rich.

The main differences between Golang and Python are concurrency models, type systems, performance and execution speed. 1. Golang uses the CSP model, which is suitable for high concurrent tasks; Python relies on multi-threading and GIL, which is suitable for I/O-intensive tasks. 2. Golang is a static type, and Python is a dynamic type. 3. Golang compiled language execution speed is fast, and Python interpreted language development is fast.

Golang is usually slower than C, but Golang has more advantages in concurrent programming and development efficiency: 1) Golang's garbage collection and concurrency model makes it perform well in high concurrency scenarios; 2) C obtains higher performance through manual memory management and hardware optimization, but has higher development complexity.

Golang is widely used in cloud computing and DevOps, and its advantages lie in simplicity, efficiency and concurrent programming capabilities. 1) In cloud computing, Golang efficiently handles concurrent requests through goroutine and channel mechanisms. 2) In DevOps, Golang's fast compilation and cross-platform features make it the first choice for automation tools.


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

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

Hot Article

Hot Tools

Atom editor mac version download
The most popular open source editor

SublimeText3 Linux new version
SublimeText3 Linux latest version

SublimeText3 Mac version
God-level code editing software (SublimeText3)

SublimeText3 English version
Recommended: Win version, supports code prompts!

SAP NetWeaver Server Adapter for Eclipse
Integrate Eclipse with SAP NetWeaver application server.