Deterministic Safety & Cybersecurity Governance
Physical robotics requires absolute safety assurance. Luminus Labs engineers deterministic kernel isolation, ASIL-D safety fallback mechanisms, and zero-trust API boundaries across all R&D deployments.
Kernel-Level Determinism Safeguards
Actuation control loops run with SCHED_FIFO scheduling priorities. Built-in kernel watchdogs automatically trigger mechanical fail-safe states if jitter exceeds defined bounds.
- Sub-microsecond deadline monitoring
- Zero-memory allocation in critical paths
Bitstric Encrypted Telemetry
All telemetry streams sent between hardware rigs and research observers pass through mTLS (Mutual TLS) encrypted tunnels using Bitstric hardware key vaults.
- Hardware-backed TPM 2.0 key storage
- Ephemeral session tokens (`bs_anon_session`)
Responsible Vulnerability Disclosure
If you discover a potential vulnerability in Luminus Labs binaries, ROS2 packages, or API endpoints, please report it directly to Bitstric Security Office. We offer bounties for responsibly disclosed zero-day vulnerabilities.
