cxuu/golang-skills

go-interfaces

Use when defining or implementing Go interfaces, designing abstractions, creating mockable boundaries for testing, or composing types through embedding.

All-time #9485 First seen Jan 27, 2026
8-week activity · all time api

Installation

$ npx skills add cxuu/golang-skills --skill go-interfaces

Summary

  • Use when defining or implementing Go interfaces, designing abstractions, creating mockable boundaries for testing, or composing types through embedding.
  • Also use when deciding whether to accept an interface or return a concrete type, or using type assertions or type switches, even if the user doesn't explicitly mention interfaces.
  • Does not cover generics-based polymorphism (see go-generics).

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More details

Agent compatibility

Declared targets from SKILL.md / docs. Unmarked agents are not listed — the skill may still install via the CLI.

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Repository health

Stars 158
License LICENSE
Default branch main
Open issues 0
Status Active

Skill metadata

Parsed from SKILL.md frontmatter.

Allowed toolsBash(bash:*)

Package contents

Files included with this skill beyond the listing page.

  • skill md SKILL.md 5,716 B
  • docs SUMMARY.md 412 B

History

  1. First seen on skills.sh
  2. First recorded snapshot · 1,100 installs

SKILL.md

Go Interfaces and Composition

Resource Routing

  • scripts/check-interface-compliance.sh - Run as a heuristic to find exported interfaces that may need compile-time assertions.
  • scripts/check-interface-compliance.go - Implementation helper invoked by check-interface-compliance.sh; patch this when changing method-set analysis.
  • references/EMBEDDING.md - Read when embedding interfaces or structs in public APIs.
  • references/RECEIVER-TYPE.md - Read when pointer/value receivers affect interface satisfaction.

Accept Interfaces, Return Concrete Types

Interfaces belong in the package that consumes values, not the package that implements them. Return concrete (usually pointer or struct) types from constructors so new methods can be added without refactoring.

// Good: consumer defines the interface it needs
package consumer

type Thinger interface { Thing() bool }

func Foo(t Thinger) string { ... }
// Good: producer returns concrete type
package producer

type Thinger struct{ ... }
func (t Thinger) Thing() bool { ... }
func NewThinger() Thinger { return Thinger{ ... } }
// Bad: producer defines and returns its own interface
package producer

type Thinger interface { Thing() bool }
type defaultThinger struct{ ... }
func NewThinger() Thinger { return defaultThinger{ ... } }

Do not define interfaces before they are used. Without a realistic example of usage, it is too difficult to see whether an interface is even necessary.


Generality: Hide Implementation, Expose Interface

If a type exists only to implement an interface with no exported methods beyond that interface, return the interface from constructors to hide the implementation:

func NewHash() hash.Hash32 {
    return &myHash{}  // unexported type
}

Benefits: implementation can change without affecting callers, substituting algorithms requires only changing the constructor call.


Type Assertions: Comma-Ok Idiom

Without checking, a failed assertion causes a runtime panic. Always use the comma-ok idiom to test safely:

str, ok := value.(string)
if ok {
    fmt.Printf("string value is: %q\n", str)
}

To check if a value implements an interface:

if _, ok := val.(json.Marshaler); ok {
    fmt.Printf("value %v implements json.Marshaler\n", val)
}

Type Switch

It's idiomatic to reuse the variable name (t := t.(type)) — the variable has the correct type in each case branch. When a case lists multiple types (case int, int64:), the variable has the interface type.


Embedding

Avoid embedding types in public structs — the inner type's full method set becomes part of your public API. Use unexported fields instead.


Interface Satisfaction Checks

Use a blank identifier assignment to verify a type implements an interface at compile time:

var _ json.Marshaler = (*RawMessage)(nil)

This causes a compile error if *RawMessage doesn't implement json.Marshaler.

Use this pattern when:

  • There are no static conversions that would verify the interface automatically
  • The type must satisfy an interface for correct behavior (e.g., custom JSON

marshaling)

  • Interface changes should break compilation, not silently degrade

Don't add these checks for every interface — only when no other static conversion would catch the error.

Validation: After defining interfaces or implementations, run bash scripts/check-interface-compliance.sh to verify all concrete types have compile-time var _ I = (*T)(nil) checks.


Receiver Type

If in doubt, use a pointer receiver. Don't mix receiver types on a single type — if any method needs a pointer, use pointers for all methods. Use value receivers only for small, immutable types (Point, time.Time) or basic types.


Quick Reference

Concept Pattern Notes
Consumer owns interface Define interfaces where used Not in the implementing package
Safe type assertion v, ok := x.(Type) Returns zero value + false
Type switch switch v := x.(type) Variable has correct type per case
Interface embedding type RW interface { Reader; Writer } Union of methods
Struct embedding type S struct { *T } Promotes T's methods
Interface check var _ I = (*T)(nil) Compile-time verification
Generality Return interface from constructor Hide implementation

Related Skills

  • Interface naming: See [go-naming](../go-naming/SKILL.md) when naming interfaces (the -er suffix convention) or choosing receiver names
  • Error types: See [go-error-handling](../go-error-handling/SKILL.md) when implementing the error interface, custom error types, or errors.As matching
  • Generics vs interfaces: See [go-generics](../go-generics/SKILL.md) when deciding whether generics are needed or an interface already suffices
  • Functional options: See [go-functional-options](../go-functional-options/SKILL.md) when using an interface-based Option pattern for flexible constructors
  • Defensive boundaries: See [go-defensive](../go-defensive/SKILL.md) when interface assertions are one part of a broader API-boundary hardening pass