The Go framework can interact with native code through CGO and SWIG: CGO allows direct calls to C functions, generating conversion wrappers between Go parameters and C types. SWIG generates wrapper code that interfaces C/C++ code with Go code, providing high-level abstraction and customization.
Go framework extensions interoperate with native code
In Go applications, we often need to interact with native code, For example, calling a C library or using system calls. Go provides two main mechanisms to achieve this: CGO and SWIG.
CGO
CGO allows calling C functions directly from Go code. It works by using the compiler to generate a wrapper that converts Go parameters to C types and calls C code.
import "C" func main() { C.puts(C.CString("Hello from Go!")) }
SWIG
SWIG (Simplified Wrapper and Interface Generator) is a tool that generates wrapper code that automatically interfaces C/C++ code with Go code. SWIG provides a higher level of abstraction and customization than CGO, but it requires additional setup.
swig -go -c++ mymodule.i go build -ldflags=-extldflags="-static"
Practical case
Use CGO to call the C library to parse JSON
Suppose we have a file named The C library of libjson
, which provides the function of parsing JSON strings. We can use CGO to call this library:
package main /* #cgo LDFLAGS: -ljson #include <stdio.h> #include <stdlib.h> void parse_json(const char* json_string); */ import "C" func main() { input := "{"foo":"bar"}" C.parse_json(C.CString(input)) }
Use SWIG to call C++ classes
Suppose we have a C++ class named MyClass
, which Has member functions that perform calculations. We can use SWIG to generate wrapper code:
// MyClass.h class MyClass { public: int compute(int a, int b); };
modules MyModule { interface MyClass { function compute(a, b); }; };
Then we can call MyClass
with Go code:
package main // #cgo CFLAGS: -I../cpp // #cgo LDFLAGS: -L../cpp -lMyModule // #include "MyModule_wrap.h" import "C" func main() { obj := MyClass_new() defer MyClass_delete(obj) result := int(C.MyClass_compute(obj, 10, 20)) println(result) }
By using CGO or SWIG, we can easily convert native The code integrates with Go applications, extending the functionality of the framework and interacting with the underlying system.
The above is the detailed content of Golang framework extension interoperates with native code. For more information, please follow other related articles on the PHP Chinese website!

Go's "strings" package provides rich features to make string operation efficient and simple. 1) Use strings.Contains() to check substrings. 2) strings.Split() can be used to parse data, but it should be used with caution to avoid performance problems. 3) strings.Join() is suitable for formatting strings, but for small datasets, looping = is more efficient. 4) For large strings, it is more efficient to build strings using strings.Builder.

Go uses the "strings" package for string operations. 1) Use strings.Join function to splice strings. 2) Use the strings.Contains function to find substrings. 3) Use the strings.Replace function to replace strings. These functions are efficient and easy to use and are suitable for various string processing tasks.

ThebytespackageinGoisessentialforefficientbyteslicemanipulation,offeringfunctionslikeContains,Index,andReplaceforsearchingandmodifyingbinarydata.Itenhancesperformanceandcodereadability,makingitavitaltoolforhandlingbinarydata,networkprotocols,andfileI

Go uses the "encoding/binary" package for binary encoding and decoding. 1) This package provides binary.Write and binary.Read functions for writing and reading data. 2) Pay attention to choosing the correct endian (such as BigEndian or LittleEndian). 3) Data alignment and error handling are also key to ensure the correctness and performance of the data.

The"bytes"packageinGooffersefficientfunctionsformanipulatingbyteslices.1)Usebytes.Joinforconcatenatingslices,2)bytes.Bufferforincrementalwriting,3)bytes.Indexorbytes.IndexByteforsearching,4)bytes.Readerforreadinginchunks,and5)bytes.SplitNor

Theencoding/binarypackageinGoiseffectiveforoptimizingbinaryoperationsduetoitssupportforendiannessandefficientdatahandling.Toenhanceperformance:1)Usebinary.NativeEndianfornativeendiannesstoavoidbyteswapping.2)BatchReadandWriteoperationstoreduceI/Oover

Go's bytes package is mainly used to efficiently process byte slices. 1) Using bytes.Buffer can efficiently perform string splicing to avoid unnecessary memory allocation. 2) The bytes.Equal function is used to quickly compare byte slices. 3) The bytes.Index, bytes.Split and bytes.ReplaceAll functions can be used to search and manipulate byte slices, but performance issues need to be paid attention to.

The byte package provides a variety of functions to efficiently process byte slices. 1) Use bytes.Contains to check the byte sequence. 2) Use bytes.Split to split byte slices. 3) Replace the byte sequence bytes.Replace. 4) Use bytes.Join to connect multiple byte slices. 5) Use bytes.Buffer to build data. 6) Combined bytes.Map for error processing and data verification.


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

PhpStorm Mac version
The latest (2018.2.1) professional PHP integrated development tool

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

Zend Studio 13.0.1
Powerful PHP integrated development environment

WebStorm Mac version
Useful JavaScript development tools

SublimeText3 Chinese version
Chinese version, very easy to use
