Progettazione strategica e context mapping
Applicare pattern di progettazione strategica, come anti-corruption layer e shared kernel, per gestire le relazioni tra diversi Bounded Context.
Progettazione strategica e context mapping è una lezione SaaS Architecture & Startup Engineering gratuita su CoddyKit. Questa è la lezione 3 di 4. Puoi leggere la lezione completa qui gratuitamente — poi esercitati direttamente nel browser con un editor di codice integrato e un tutor IA disponibile 24/7. Fa parte del percorso di apprendimento SaaS Architecture & Startup Engineering, e i tuoi progressi si sincronizzano tra il web e l'app CoddyKit. Il corso SaaS Architecture & Startup Engineering include 4 lezioni in totale.
Parti di questa lezione non sono ancora state tradotte e vengono mostrate in inglese.
Strategic Design: The Big Picture
Domain-Driven Design (DDD) isn't just about writing code! Strategic Design helps us understand the large-scale structure of our system. It's about identifying core business domains and how they interact.
This high-level view is crucial for building complex, maintainable, and scalable SaaS applications.
Bounded Contexts & Their Borders
Remember Bounded Contexts from previous lessons? They define clear boundaries for distinct parts of your domain, each with its own language and model.
But what happens when different contexts need to communicate? That's where strategic design patterns come into play to manage these interactions.
Context Mapping: Visualizing Interactions
Context Mapping is the process of identifying and visualizing the relationships between your Bounded Contexts. It helps teams:
- Understand dependencies.
- Manage integration points.
- Choose the right collaboration patterns.
It's like drawing a map of your entire system's domain interactions.
Shared Kernel: Common Ground
A Shared Kernel is a small, agreed-upon subset of the domain model that is shared by two or more Bounded Contexts. This means the teams working on these contexts must coordinate changes to this shared code.
- Pros: Reduces duplication, ensures consistency for core concepts.
- Cons: Creates tight coupling, changes require significant coordination.
Best for: Very stable, core concepts that rarely change (e.g., a common 'User ID' or 'Product SKU').
Customer/Supplier: Upstream & Downstream
In a Customer/Supplier relationship, one Bounded Context (the 'Customer') explicitly depends on another (the 'Supplier'). The Supplier commits to meeting the Customer's needs.
- Upstream: The Supplier context, producing data or services.
- Downstream: The Customer context, consuming data or services.
Best for: Internal service integrations where the supplier team has an incentive to support the customer's requirements.
Conformist: Going with the Flow
A Conformist relationship means the Downstream context simply adopts the Upstream's model and language, even if it's not perfectly suited. There's no translation layer.
- Pros: Simple integration, less work for the Downstream team.
- Cons: Downstream is vulnerable to upstream changes; the model might not fit perfectly.
Best for: When the Upstream context is dominant (e.g., a third-party API) and you have no leverage to influence its design.
OHS & Published Language: Clear Contracts
An Open Host Service (OHS) explicitly defines a public protocol or API for other contexts to interact with it. A Published Language (PL) is the well-documented, standardized language (e.g., JSON schema) used by the OHS.
Together, they provide a stable, documented interface for integration, much like a public API.
Best for: When you want to offer a service to many different consumers, internal or external, with a clear contract.
Anti-Corruption Layer: The Protector
An Anti-Corruption Layer (ACL) acts as a translation buffer between two Bounded Contexts. It protects the Downstream context from the complexities, undesirable aspects, or legacy model of the Upstream system.
It prevents the 'corruption' of your clean domain model by an external or legacy system.
Best for: Interacting with legacy systems, third-party APIs, or a conformist upstream whose model doesn't align with your domain.
Other Useful Patterns
While the previous patterns are very common, others exist:
- Partnership: Two contexts with mutual dependency, requiring close coordination between teams.
- Separate Ways: Two contexts that have no relationship, solving similar problems independently (e.g., two completely different products in a suite).
Choosing the right pattern depends on team dynamics, domain complexity, and the system's evolution.
Protecting Your Context
Your modern "User Profile" Bounded Context needs to integrate with a legacy user management system that has an outdated and confusing data model. You want to ensure your clean context isn't negatively impacted by the legacy system's complexities.
Recap: Strategic Design Mastery
We've explored how Strategic Design helps manage relationships between Bounded Contexts. Understanding patterns like Shared Kernel, Customer/Supplier, Conformist, Open Host Service / Published Language, and especially the Anti-Corruption Layer, is vital.
Use Context Mapping to visualize these relationships and make informed architectural decisions for your SaaS product!
Domande Frequenti
La lezione «Progettazione strategica e context mapping» è gratuita?
Sì — il testo completo di «Progettazione strategica e context mapping» è gratuito qui sul web. Per esercitarvi in modo interattivo (un editor di codice integrato e un tutor IA 24/7) e sbloccare il resto del corso SaaS Architecture & Startup Engineering, passa a CoddyKit PRO. Il corso SaaS Architecture & Startup Engineering include 4 lezioni in totale.
Cosa imparerò in «Progettazione strategica e context mapping»?
Applicare pattern di progettazione strategica, come anti-corruption layer e shared kernel, per gestire le relazioni tra diversi Bounded Context. Eserciti SaaS Architecture & Startup Engineering con codice pratico che esegui direttamente nel browser, e un tutor IA 24/7 risponde alle tue domande mentre lavori sulla lezione.
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Tutte le lezioni di questo corso
- Bounded Context e aggregati
- Event Storming per i microservizi
- Progettazione strategica e context mapping
- Linguaggio ubiquo e modello di dominio