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Can golang variadic parameters be used for interface types?

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Release: 2024-04-30 10:27:01
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In Go language, variable parameters cannot be directly applied to interface types. The solution is to use type assertions, assert the interface type to a specific interface type, and then use variadic syntax. For example, define a Printer interface, implement two structures ConsolePrinter and FilePrinter, and use type assertions in the MyFunction function to assert a variable number of parameters of the Printer interface type as the Printer interface and call the Print method.

Can golang variadic parameters be used for interface types?

#Are variable parameters in Go language applicable to interface types?

In the Go language, variable parameters (...T syntax) are a kind of syntactic sugar used to represent functions or methods that accept any number of parameters of the same type. However, it cannot be applied directly to interface types.

Interface type and variable parameters

The interface type defines a set of methods, but it does not contain any implementation itself. Therefore, interface types cannot be instantiated, nor can variadic syntax be used directly.

// 定义一个接口类型
type MyInterface interface {
    Method(arg string)
}

// 以下代码无效,因为接口类型不能作为可变参数
func MyFunction(args ...MyInterface) {}
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Solution: Use type assertion

To use interface types as variadic parameters, you need to use type assertions. Type assertions allow the type of a variable to be dynamically checked and converted to a specific interface type at runtime.

The following is a method to correctly implement a variable parameter interface type using type assertions:

func MyFunction(args ...interface{}) {
    for _, arg := range args {
        // 类型断言为 MyInterface 类型
        if iface, ok := arg.(MyInterface); ok {
            iface.Method("some string")
        } else {
            // 处理非 MyInterface 类型的参数
        }
    }
}
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Practical case

The following is a practical case using a variable parameter interface type:

type Printer interface {
    Print(msg string)
}

type ConsolePrinter struct{}
func (p *ConsolePrinter) Print(msg string) { fmt.Println(msg) }

type FilePrinter struct {
    fileName string
}
func (p *FilePrinter) Print(msg string) {
    f, err := os.OpenFile(p.fileName, os.O_APPEND|os.O_CREATE|os.O_WRONLY, 0644)
    if err != nil {
        panic(err)
    }
    defer f.Close()

    f.WriteString(msg + "\n")
}

func main() {
    printers := []Printer{
        &ConsolePrinter{},
        &FilePrinter{fileName: "output.txt"},
    }

    MyFunction(printers...)
}
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This code defines two structures that implement the Printer interface: ConsolePrinter and FilePrinter. MyFunction Receives a variable number of Printer interface types and uses type assertions to assert each parameter as a Printer interface and call the Print method .

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