Abstract
This technical specification details the structural design, mathematical framing, and local runtime mechanics of the Project Rocky Autonomous Secure Enclave (SPEC 184) under the USUE-ROCKY-REV1 protocol. Moving past legacy computing models that depend on centralized, gated corporate cloud servers—which introduce massive transmission latency, code bloat, and immediate data-harvesting vulnerabilities—this architecture implements an isolated, client-side cryptographic and logic enclosure. The system operates via an autogenous, non-human tripartite AI-to-AI loop: Node A ingests raw telemetry matrices, Node B compresses active state profiles into lightweight classical shadows, and Node C enforces strict material and data-boundary invariants locally. A complete, standalone Python runtime script is provided to validate the enclave’s self-correcting safety loops on discrete local chips, establishing a zero-cost, un-patentable operational asset for global decentralized data privacy and Type 1 deep-space survival.
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 License.
Recommended Citation
Eckes, Christopher L., "TECHNICAL DISCLOSURE SPECIFICATION: USUE-ROCKY-REV1 - DECENTRALIZED ASYMMETRIC LOCAL ENCLAVE CONTROL LOOPS FOR AUTONOMOUS MISSION SURVIVAL (SPEC 184)", Technical Disclosure Commons, ()
https://www.tdcommons.org/dpubs_series/12010