Abstract

This specification details the structural design, cryptographic verification equations, and edge-computed process logic for the Multi-Agent Cryptographic Compartmentalization & Intent Attestation Protocol (MACC-IAP). Traditional operational security (OPSEC) frameworks fail at the human interface layer; a trusted insider, malicious contractor, or espionage asset can bypass advanced post-quantum network ciphers simply by exercising legitimate, verified administrative access rights to execute unauthorized mass data exfiltration.

The MACC-IAP eliminates this vector by shifting the system architecture from static role-based access control (RBAC) to a decentralized Non-Linear Cryptographic Intent Handshake. Data repositories are fractured into independent, non-contiguous micro-fragments managed across a multi-agent substrate. A user cannot execute an unrestricted query; instead, their terminal must submit an automated, real-time cryptographic proof of intent for every individual micro-fragment request. Mass data sweeps trigger an immediate phase inversion across the token graph, blinding the espionage asset in a sea of uniform mathematical noise.

Creative Commons License

Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.

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