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Table of Contents
Why do type constraints be needed?
The basic form of type constraints
Common usage of type constraints
Use constraints provided by the standard library
Custom type constraints
Things that are easy to ignore in actual development
Home Backend Development Golang What are type constraints in golang generics

What are type constraints in golang generics

Jul 14, 2025 am 03:04 AM

<p>Type constraints are used in Go generics to limit acceptable types ranges, ensuring that generic functions or operations of types are suitable for specific collections. Its core functions include: 1. Ensure the legality of the operation, such as the constraints required to be Ordered when using the > operator; 2. Provide standard interfaces, such as comparable and constraints.Ordered, etc.; 3. Support custom constraints, such as limited int or float64; 4. Provide common constraints such as Signed, Unsigned, Float, etc. through the standard library; 5. Avoid abuse of joint types and pay attention to performance impacts to achieve safe and flexible generic programming. </p> <p><img src="/static/imghw/default1.png" data-src="https://img.php.cn/upload/article/000/000/000/175243344231086.jpg" class="lazy" alt="What are type constraints in golang generics"></p> <p> Type constraints in Go generics are a mechanism used to limit acceptable types in generic functions or generic types. Simply put, it determines which specific types can be used in generic code. </p> <img src="/static/imghw/default1.png" data-src="https://img.php.cn/upload/article/000/000/000/175243344370112.jpeg" class="lazy" alt="What are type constraints in golang generics"><h3 id="Why-do-type-constraints-be-needed"> Why do type constraints be needed?</h3> <p> The core advantage of generics is "write once, suitable for multiple types", but not all types are suitable for the same operation. For example, you want to write a function that compares the size of two values: </p> <img src="/static/imghw/default1.png" data-src="https://img.php.cn/upload/article/000/000/000/175243344432203.jpeg" class="lazy" alt="What are type constraints in golang generics"><pre class='brush:php;toolbar:false;'> func Max[T someConstraint](a, b T) T { if a > b { Return a } Return b }</pre><p> In this example, <code>T</code> must support the <code>></code> operator, while types such as slices and structures do not necessarily support it. At this time, <strong>type constraints</strong> are needed to ensure that the incoming type has certain capabilities.</p><hr /><h3 id="The-basic-form-of-type-constraints"> The basic form of type constraints</h3><p> Type constraints in Go are usually an interface, but unlike traditional interfaces, it does not define a method set, but a allowed type set. </p><img src="/static/imghw/default1.png" data-src="https://img.php.cn/upload/article/000/000/000/175243344546459.jpeg" class="lazy" alt="What are type constraints in golang generics" /><p> The simplest type constraint is to use predefined <code>comparable</code> or <code>constraints.Ordered</code> :</p><pre class='brush:php;toolbar:false;'> func Max[T constraints.Ordered](a, b T) T { // ... }</pre><ul><li> <code>comparable</code> : indicates that this type supports <code>==</code> and <code>!=</code> operations.</li><li> <code>constraints.Ordered</code> : means that this type supports <code><</code> , <code>></code> , <code><=</code> , <code>>=</code> and other comparison operations, currently including numeric types and strings.</li></ul><p> You can also customize constraints, such as allowing only int and float64:</p><pre class='brush:php;toolbar:false;'> type Number interface { int | int32 | int64 | float32 | float64 } func Sum[T Number](a, b T) T { return ab }</pre><p> Here <code>|</code> represents the relationship of "or", that is, any of these types can be passed.</p><hr /><h3 id="Common-usage-of-type-constraints"> Common usage of type constraints</h3><h4 id="Use-constraints-provided-by-the-standard-library"> Use constraints provided by the standard library</h4><p> Go's <code>golang.org/x/exp/constraints</code> package provides some common constraints, such as:</p><ul><li> <code>Signed</code> : All signed integer types (int, int8, int16, ...)</li><li> <code>Unsigned</code> : Unsigned integer type (uint, uint8, ...)</li><li> <code>Integer</code> : All integer types</li><li> <code>Float</code> : float32, float64</li><li> <code>Ordered</code> : sortable types such as integers, floating point numbers, strings, etc.</li></ul><p> You can import and use this:</p><pre class='brush:php;toolbar:false;'> import ( "golang.org/x/exp/constraints" ) func Min[T constraints.Ordered](x, y T) T { if x < y { Return x } return y }</pre><h4 id="Custom-type-constraints"> Custom type constraints</h4><p> If you have some collection of specific types, such as only allowing string and []byte:</p><pre class='brush:php;toolbar:false;'> type MyStringType interface { string | []byte } func PrintLength[T MyStringType](s T) { fmt.Println(len(s)) }</pre><p> This allows this constraint to be reused in multiple places.</p> <hr> <h3 id="Things-that-are-easy-to-ignore-in-actual-development"> Things that are easy to ignore in actual development</h3> <ul> <li> <strong>You cannot use generic functions for any type</strong> : Although generics make the code more general, you should also note that not all logic can be abstracted into unified processing. For example, structure field access, method calls, etc. all require explicit constraints.</li> <li> <strong>Generics are not always better</strong> : the Go compiler generates a copy of the function for each concrete type at compile time, so generic functions that are too complex may affect the compilation time and binary volume.</li> <li> <strong>Don't abuse union types</strong> : For example, <code>int | string | struct{}</code> combinations are not very meaningful, but will confuse logic.</li> </ul> <hr> <p> Basically that's it. Only by mastering type constraints can you write safe and flexible generic code.</p>

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