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Built for the Claude Code community with Claude Code by @mertduzgun

Independent project, not affiliated with Anthropic

RPCS1 Agent Tuner

travisbergen2/rpcs1-sdk
HTTPregistry active
Summary

Wraps the RPCS-1 recommendation engine to tune AI agent parameters based on environmental dynamics. Exposes one tool, recommend_agent_configuration, that translates entropy, predictability, stakes, and commitment style into concrete LLM settings like temperature and attention windows. The logic implements the Matching Principle from IMM Paper 9: high-entropy environments get short attention windows, low-entropy get long ones. Useful when you're diagnosing why an agent oscillates between extremes, freezes in ambiguous contexts, or overcommits in volatile situations. The public server at rpcs1.dev/mcp runs read-only with hourly rate limits and OAuth via PKCE. Python and TypeScript SDKs available if you want to embed the logic directly.

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RPCS-1 SDK — AI Agent Tuner

Diagnose whether deployed AI agents are matched to their operating environment.

A configuration framework for AI agents that translates environmental characteristics (entropy, stakes, predictability) into specific LLM parameter recommendations — grounded in RPCS-1 receiver dynamics.

Repository Structure

rpcs1-sdk/
├── packages/core/          # TypeScript recommendation engine (@rpcs1/core)
├── sdk/python/             # Python SDK (pip install rpcs1)
└── .github/workflows/      # CI/CD

Quick Start — Python SDK

pip install rpcs1
from rpcs1 import recommend_params

config = recommend_params(
    task_description="Customer support agent",
    environment_entropy="dynamic",
    environment_predictability="somewhat_predictable",
    stakes="high",
    target_platform="anthropic",
)

print(config.platform_parameters.temperature)   # e.g. 0.52
print(config.predicted_regime)                  # 'stable'
print(config.reasoning)                         # cites Matching Principle

Quick Start — TypeScript Core

import { recommend } from '@rpcs1/core';

const rec = recommend({
  task: { task_summary: 'Customer support agent' },
  environment: {
    entropy: 'dynamic',
    predictability: 'somewhat_predictable',
    stakes: 'high',
    context_relevance: 'medium',
    commitment_style: 'cautious',
  },
  target_platform: 'anthropic',
});

console.log(rec.platform_parameters.temperature);
console.log(rec.predicted_regime);

Development

# Install dependencies
npm ci --include=optional

# Build and test TypeScript core
npm run build --workspace=@rpcs1/core
npm run test --workspace=@rpcs1/core

# Test Python SDK
cd sdk/python
pip install -e ".[dev]"
pytest -v

The Matching Principle

The SDK implements Pred-09-5 from IMM Paper 9:

Stable receivers in an environment with entropy H satisfy TI ~ 1/H.

High-entropy environments → short attention windows (TI ~ 10). Low-entropy environments → long attention windows (TI ~ 90).

Every parameter recommendation traces back to this principle or the basin stability geometry (oscillation/overload/freeze boundary conditions).

Web App

Interactive tuner: https://rpcs1.dev

MCP Server

RPCS-1 is also available as a public, anonymous, read-only MCP server:

https://rpcs1.dev/mcp

It exposes one focused tool:

  • recommend_agent_configuration — use when designing, tuning, or diagnosing an AI agent against environmental entropy, predictability, stakes, context horizon, and commitment style.

Connection details and client compatibility notes are available at https://rpcs1.dev/docs/mcp. Practical coding, support, and research examples are available at https://rpcs1.dev/docs/examples.

Hyperagent uses the fixed public OAuth client hyperagent-rpcs1 with PKCE and the registered callback https://hyperagent.com/api/mcp-servers/callback. No client secret is required.

The MCP surface intentionally wraps the existing deterministic recommendation engine. Broader communication, market, and decision-analysis tools should be added only after their scoring contracts are implemented and tested in the core package.

Discovery metadata:

  • OpenAPI: https://rpcs1.dev/openapi.json
  • LLM overview: https://rpcs1.dev/llms.txt
  • MCP Registry manifest: server.json

Production controls:

  • MCP_HOURLY_LIMIT controls per-instance MCP throttling (default: 120 requests per IP/hour).
  • MCP_MAX_BODY_BYTES limits request bodies (default: 65536 bytes).
  • MCP_ALLOWED_HOSTS is a comma-separated production host allowlist.
  • MCP_OAUTH_JWT_SECRET signs short-lived OAuth authorization codes and access tokens.
  • /api/health reports deployment and MCP readiness metadata.

For globally consistent abuse protection across Vercel instances, configure a Vercel Firewall rate-limit rule for /mcp. The in-process limiter is defense in depth, not a distributed quota.

Glama Docker checks should build and launch the local STDIO server, not connect to the hosted https://rpcs1.dev/mcp endpoint. Use this build spec:

{
  "buildSteps": [
    "npm ci --include=optional",
    "npm run build --workspace=@rpcs1/core",
    "npm run build --workspace=@rpcs1/mcp-server"
  ],
  "cmdArguments": [
    "mcp-proxy",
    "--",
    "node",
    "packages/mcp-server/dist/index.js"
  ],
  "environmentVariablesJsonSchema": {
    "type": "object",
    "properties": {},
    "required": []
  },
  "placeholderArguments": {}
}

License

MIT

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UpdatedJun 9, 2026
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