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Architecture Paradigm Client Server

skill-athola-claude-night-market-architecture-paradigm-client-server · by athola

Applies client-server architecture for web/mobile apps. Use when designing systems with centralized backend services, trust boundaries, or offline-first sync.

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Install

$ agentstack add skill-athola-claude-night-market-architecture-paradigm-client-server

✓ scanned · ✓ verified, works with Claude Code, Cursor, and more.

Security review

✓ Passed

No issues found. Passed automated security review. · v0.1.0 How review works →

  • Prompt-injection patterns
  • Secret / credential exfiltration
  • Dangerous shell & filesystem operations
  • Untrusted network calls
  • Known-malicious package signatures

What it can access

  • Network access No
  • Filesystem access No
  • Shell / process execution No
  • Environment & secrets No
  • Dynamic code execution No

From automated source analysis of v0.1.0. “Used” means the capability is present in the source — more access means more to trust, not that it’s unsafe.

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Reliability & compatibility

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Declared compatibility

Claude CodeClaude Desktop

Compatibility is declared by the source manifest. End-to-end runtime verification is coming, see below.

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About

The Client-Server and Peer-to-Peer Paradigms

When to Employ This Paradigm

  • For traditional applications that have centralized services, such as web or mobile clients communicating with backend APIs.
  • For systems exploring decentralized or "offline-first" capabilities that rely on peer-to-peer synchronization.
  • To formally document trust boundaries, client-server version negotiation, and API evolution strategies.

Adoption Steps

  1. Define Responsibilities: Clearly delineate which logic and data reside on the client versus the server, with the goal of minimizing duplication.
  2. Document the Contracts: Formally document all APIs, data schemas, authentication flows, and any capability negotiation required for handling different client versions.
  3. Plan for Version Skew: Implement a strategy to manage different client and server versions, such as using feature flags, Accept headers for content negotiation, or semantic versioning for APIs.
  4. Address Connectivity Issues: If the application is not purely client-server, design for intermittent connectivity. This may involve implementing offline caching, data synchronization protocols, or peer discovery and membership services.
  5. Secure All Communications: Enforce the use of TLS for all data in transit. Implement authorization policies, rate limiting, and detailed telemetry for every endpoint.

Key Deliverables

  • An Architecture Decision Record (ADR) that covers the roles of clients, servers, and peers, defines the trust boundaries, and outlines deployment assumptions.
  • Formal API or protocol specifications, along with a suite of compatibility tests.
  • Runbooks detailing the coordination required for rollouts, such as client release waves, backward-compatibility support, or operational procedures for a peer-to-peer network.

Risks & Mitigations

  • "Chatty" Clients:
  • Mitigation: A client making too many small requests can lead to poor performance. Consolidate API calls using patterns like the Façade or Gateway, and implement caching strategies on the client or at the network edge.
  • "Thick" Clients with Duplicated Logic:
  • Mitigation: When clients contain too much business logic, it often becomes duplicated and out-of-sync with the server. Share validation logic by packaging it in a common library or move the rules definitively to the server.
  • Peer-to-Peer Data Conflicts:
  • Mitigation: In a peer-to-peer model, data conflicts are inevitable. Design formal conflict resolution strategies (e.g., CRDTs, last-write-wins) and consensus mechanisms from the beginning.

Concrete Components

These vocabulary items name the concrete tools and abstractions that show up when the paradigm is implemented. They are not required dependencies and they are not part of the skill's `tools:` frontmatter (which is reserved for Claude Code tool restrictions). Use this list to disambiguate during architecture discussions.

  • `api-contract-generator`: produces machine-readable OpenAPI/RPC contracts the client and server share
  • `networking-debugger`: captures request/response traces for diagnosing latency, retries, and timeout issues

Exit Criteria

  • [ ] An ADR is produced naming client roles, server roles (and peer roles if applicable), trust

boundaries, and the API versioning strategy chosen.

  • [ ] A formal API or protocol specification exists (OpenAPI, protobuf, or equivalent) covering

all documented endpoints or capabilities.

  • [ ] The version-skew strategy (feature flags, Accept headers, or semantic versioning) is

documented before any client or server code is written.

  • [ ] If offline-first or P2P capability is included, the conflict-resolution strategy (CRDT,

last-write-wins, or consensus mechanism) is named in the ADR.

Source & license

This open-source skill is cataloged on AgentStack and links to its original source — we do not rehost the code.

Install and usage instructions live in the source repository linked above.

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Versions

  • v0.1.0 Imported from the upstream source.