A Circuit-Breaker Conformance Profile for AI Incidents
Vishwa Kumaresh, Cherishma Subhasa, Samridhi Makkar
Pausing an AI agent can leave previously authorized tool calls executable. We develop an Incident Circuit Breaker conformance profile combining sink-side epoch checks, a shared exposure budget, and a separate forensic channel. An executable reference broker, in- dependent receipt checker, and fault-injection harness test this contract. Across 1,000 synthetic queued-action trials, a dispatch-only halt permits all 4,473 stale commits; sink fencing permits none. The full profile completes all 912 benign tasks within its budget, but only 91.2% of the unfiltered task set. A finite model explores 72 states and 162 transitions without a budget violation; a deliberately non-atomic variant admits 16 reser- vations against a budget of 12. We prove conditional revocation and exposure bounds, and specify evidence a third party can request. These results establish local conformance, not production containment or prevention of a historical intrusion. The contribution is a falsifiable incident-response contract built from established security mechanisms.
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Cite this work
@misc {
title={
(HckPrj) A Circuit-Breaker Conformance Profile for AI Incidents
},
author={
Vishwa Kumaresh, Cherishma Subhasa, Samridhi Makkar
},
date={
},
organization={Apart Research},
note={Research submission to the research sprint hosted by Apart.},
howpublished={https://apartresearch.com}
}


