| name | flyweight |
| description | Apply, review, or refactor code using the Flyweight design pattern. Use this skill when the problem matches the pattern's structural forces, especially in Kotlin/JVM backend systems. Do not force the pattern when a simpler language or framework feature is sufficient.
|
Flyweight
Objective
Reduce memory usage by sharing immutable intrinsic state across many fine-grained objects.
Trigger conditions
Use this skill when at least two of these signals are present:
- Very large numbers of similar objects dominate memory.
- Most object state is immutable and repeated.
- Extrinsic context can be supplied by callers.
Do not select the pattern from its name alone. First identify the design forces,
the axis of change, the ownership of state, and the required lifecycle.
Do not use when
- No measurement shows memory pressure.
- Shared state is mutable.
- Lookup/caching complexity costs more than the memory saved.
Canonical participants
Flyweight, ConcreteFlyweight, FlyweightFactory, Context, Client.
Decision workflow
- Describe the concrete design problem without naming a pattern.
- Identify what varies and what must remain stable.
- Establish the client-facing contract.
- Assign each responsibility to a participant.
- Prefer composition over inheritance unless inheritance is intrinsic to the pattern.
- Preserve domain invariants and dependency direction.
- Implement the smallest viable version.
- Add tests proving substitutability, collaboration, and failure behavior.
- Compare the result with a simpler alternative.
- Record why this pattern is justified.
Kotlin implementation guidance
- Prefer immutable values and constructor injection.
- Use
sealed interface or sealed class where the implementation set is closed.
- Use
fun interface for single-operation strategies, factories, handlers, or observers.
- Use coroutines for asynchronous boundaries; do not expose blocking behavior as
suspend.
- Avoid Java-style ceremony when Kotlin language features already encode the intent.
- Keep framework annotations at adapters or composition roots when possible.
- Make concurrency, cancellation, idempotency, and error semantics explicit.
Reference implementation
data class IconStyle(
val glyph: String,
val fontFamily: String
)
object IconStyleFactory {
private val cache = mutableMapOf<Pair<String, String>, IconStyle>()
@Synchronized
fun get(glyph: String, fontFamily: String): IconStyle =
cache.getOrPut(glyph to fontFamily) {
IconStyle(glyph, fontFamily)
}
}
data class PositionedIcon(
val x: Int,
val y: Int,
val style: IconStyle
)
The example is intentionally minimal. Adapt naming and boundaries to the domain;
do not copy it as production architecture without evaluating lifecycle, failures,
observability, and concurrency.
Review checklist
Testing strategy
- Contract-test every interchangeable implementation.
- Test client behavior against fakes through the abstraction.
- Verify invalid state, ordering, and failure propagation.
- Add concurrency tests where instances or shared state cross coroutine boundaries.
- Use integration tests only for adapter/framework behavior; keep pattern semantics unit-testable.
Common failure modes
- Pattern-first design: selecting a named pattern before understanding the problem.
- Ceremony without variability: interfaces and classes that have only one permanent implementation.
- Leaky abstractions: clients depend on concrete implementation details.
- Hidden operational semantics: latency, retries, transactions, or thread safety are obscured.
- Misplaced business rules: orchestration wrappers become the actual domain model.
Output expected from the agent
When applying this skill, produce:
- A force analysis.
- A pattern-fit verdict:
APPLY, CONSIDER, or REJECT.
- The proposed participants mapped to domain names.
- A minimal implementation plan.
- Kotlin code or a patch.
- Tests.
- Trade-offs and rejected alternatives.
- Migration and rollback notes when refactoring existing code.
Related patterns and alternatives
Object Pool, Cache, Prototype
Source basis
Derived from the classic GoF pattern catalog and the public pattern description at:
https://refactoring.guru/design-patterns/flyweight.
Do not reproduce proprietary diagrams or paid content. Use the source for conceptual
orientation and create original domain-specific explanations and examples.