Getting it into your agent
One page per mod, every tool's command on it. A separate URL per tool would split the same page into five that compete with each other.
npx agentmods add instructions/codester1000/raindrop-mcp/mcp-devgit clone --depth 1 https://github.com/codester1000/raindrop-mcpWhat it costs to keep this loaded
Counted locally with the o200k_base tokenizer, which is exact for GPT models; Claude uses its own tokenizer and its counts differ. Treat this as one consistent yardstick across the catalogue rather than a bill. Prices are per million input tokens.
| Model | Per session | Once invoked |
|---|---|---|
| Fable 5 | $0.00696 | $0.00696 |
| Opus 5 | $0.00348 | $0.00348 |
| Sonnet 5 | $0.00139 | $0.00139 |
| Haiku 4.5 | $0.00070 | $0.00070 |
Grade A, and why
raindrop-mcp mcp-dev.instructions.md scanned grade A with 0 findings against 26 rules in 11 categories — prompt injection, anti-refusal, data exfiltration, privilege escalation, supply chain, agent snooping, system-prompt leakage, SSRF and excessive agency — measured yesterday.
A static scan of the body, not an audit. Every finding is printed with the line that produced it so you can judge whether it matters here. A mod is markdown that instructs an agent; that is exactly why what it instructs is worth reading.
Nothing flagged
None of the 26 patterns this scan looks for appear in this file: no shell pipes, no recursive deletes, no credential paths, no hidden text, no instruction-override or anti-refusal phrasing, no agent-config snooping. That is not a guarantee, it is the absence of the things that are checkable.
This is a copy
100% identical to raindrop-mcp mcp-dev.instructions.md — 0 lines differ, which has more behind it and is treated as the original. This page carries a canonical link to it rather than competing with it.
How it starts
The opening of the file, as written. The whole thing — 40 lines — stays where its author put it; the contents beside it link to each section on GitHub.
GitHub Copilot Instructions for MCP Server Development
MCP Server Design Patterns
- Protocol Compliance: All server logic must strictly follow the Model Context Protocol (MCP) specification. Reference MCP docs and LLMs integration guide.
- Transport Abstraction: Implement transport-agnostic logic. Use interfaces and dependency injection for HTTP, STDIO, or custom transports.
- Service Layer: Encapsulate business logic in service classes. Each service should be stateless, testable, and expose clear async methods for protocol operations.
- Schema Validation: Use
zodfor all input/output validation. Define schemas for requests, responses, and errors. Validate at the transport boundary. - Error Handling: Centralize error handling. Return MCP-compliant error objects with descriptive messages and codes.
- Manifest & Tooling: Expose a manifest endpoint/tool for host integration. Manifest must declare all supported operations, schemas, and metadata.
- Extensibility: Design for easy addition of new tools/operations. Use a registry or factory pattern for tool handlers.
- Testing: Use Vitest for all tests. Place tests in
tests/and cover protocol, service, and transport logic. - Logging: Use a configurable logger. Avoid
console.logfor STDIO servers; use structured logging and log levels. - Async/Await: All operations must be async.
- Type Safety: Use TypeScript interfaces and types for all protocol objects.
- Configuration: Use environment variables and config files for secrets, endpoints, and options.
- Documentation: Document all public classes, methods, and schemas.
Tool Implementation Patterns
- Tool Registration: Register each tool in a central registry or manifest. Use a factory or mapping to resolve tool handlers by name.
- Tool Handler Structure: Implement each tool as a class or function with a clear async
runorexecutemethod. Accept validated input, return structured output. - Schema-Driven: Define input/output schemas with
zod. Validate all tool calls at runtime. - Error Propagation: Catch errors in tool handlers and return MCP-compliant error objects.
- Resource Access: For resource tools (e.g., collections, bookmarks), encapsulate resource logic in dedicated service classes. Use dependency injection for external APIs.
- Declarative Manifest: Ensure all tools and resources are declared in the manifest with their schemas, descriptions, and metadata.
- Isolation: Tools should be stateless and not share mutable state. Use context objects for per-request data.
- Extensibility: New tools/resources should be easy to add by implementing a handler and updating the manifest/registry.
What this file has done since we first saw it
Hashed on every crawl. A supply-chain change to an agent config is a question of when, not whether, so the history is kept rather than the latest state alone.
- yesterday First seen · 40 lines · 696 tokens per session scan A 7f7ed3f363e5
raindrop-mcp mcp-dev.instructions.md is an instructions file published in the GitHub repository codester1000/raindrop-mcp (0 stars, last pushed 8mo ago), licensed MIT. It adds 696 tokens to every session, about $0.0035 per session on Opus 5. A static security scan graded it A with 0 findings. It is 100% identical to raindrop-mcp mcp-dev.instructions.md, differing in 0 lines, and is treated as a copy.
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