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CAIO — Cryptographically Attested Internet Overlay
A small, dense reference prototype for one question: when an autonomous agent acts on a network, how do you cryptographically prove who it is, what it's allowed to do, and whether it's telling the truth about what it actually did?
⚠️ Reference prototype, not production security software. Deliberately small enough to read in full in one sitting (~110 lines of actual logic). See "Known Limitations" below before using this for anything real.
Quick start
git clone https://github.com/kaymyg/caio.git
cd caio
pip install -r requirements-dev.txt
pip install -e .
python -m caio.demo # see it work end to end
pytest -q --cov=caio --cov-report=term-missing
Expected demo output:
Lineage verified: True
Valid transaction: {'status': 200, 'level': 'NORMAL', 'route': 'VERIFIED_OVERLAY'}
Divergence attack: {'status': 500, 'reason': 'terminated'}
Audit verified: True
What it actually does
Six small components, each independently testable:
LineageChain— a hash-linked, Ed25519-signed chain from a human root through devices/runtimes down to individual agents and sub-agents. Each link is signed by its parent, so a node can't fabricate its own ancestry.verify()walks the whole chain and catches any tampered node or forged signature.Ledger— capability/resource delegation with real conservation: a parent can only delegate compute/network/child-creation budget it actually has, and delegating debits the parent atomically (thread-safe viaRLock). No double-spending a budget across two children.Lease— a signed, time-boxed, nonce-scoped capability grant listing exactly which capabilities and endpoints an agent may use. Replay is blocked by tracking spent nonces; tampering is blocked because the signature covers the full canonical payload.EvidenceGraph/Level— the core idea: collect what the agent claims it did, what the host independently observed, and what the network independently observed, then check whether they agree. A generic mismatch escalates toCAPABILITY_REDUCTION; specific dangerous host actions escalate straight toQUARANTINE; a disallowed network target escalates toNETWORK_RESTRICTION; host and network violations together escalate toTERMINATED.Audit— a hash-chained, tamper-evident log (prev+hashper entry, same shape as a blockchain's block-linking) of every lease issuance and evaluation.verify()detects any alteration, reordering, or deletion.Gateway— ties all of the above together into one call:transact()validates the lease, checks replay, checks agent key-binding, records evidence from all three perspectives, evaluates the defense level, and returns an HTTP-style status.
Relationship to other projects
CAIO isn't a from-scratch idea — it's a deliberate synthesis of mechanisms already built and independently tested across several sibling projects. Each one validated a piece of this in isolation:
| Mechanism in CAIO | Proven independently in |
|---|---|
| Signed capability leases with trust-state gating | ubda-engine — Data Access Capabilities, trust-state thresholds |
| Graduated escalation on breach (not binary allow/deny) | hydra-cage — five-plane containment, eight-stage breach transition |
| Multi-perspective divergence detection (claim vs. reality) | multi-agent-mcl — behavioral vs. actual policy vector comparison |
| Risk-scored gating before an action executes | lean-agent-governance — pre-runtime prompt/diff risk scoring |
| Hash-chained, independently-verifiable integrity | kaysentinel — canonical hashing, structural + semantic verification gates |
CAIO takes the smallest working version of each of those ideas and wires
them into one coherent request path (Gateway.transact()), rather than
five separate systems. It's meant to be the concrete answer to "what would
it look like if these five ideas had to cooperate in a single call."
Known Limitations
Stated plainly rather than buried, since that's the standard the rest of this account's projects hold themselves to:
- The agent key-binding check is a local consistency check, not a real
network challenge-response protocol.
Gateway.transact()signs a freshly generated nonce with theagent_private_keypassed directly into the call and immediately verifies it — this proves internal consistency (the key matches what the lease claims), not that the request travelled over an authenticated channel. A real deployment needs an actual challenge issued over the wire. Lease.issued_atis never validated, onlyexpires_at. A lease claiming to be issued in the future still passesGateway.valid().- Host-divergence detection checks two hardcoded action strings
(
CRITICAL_TAMPER,UNSANCTIONED_EXEC), not general anomaly detection. Any other kind of claim/host mismatch reachesCAPABILITY_REDUCTIONat most, notQUARANTINE— that's intentional graduated response, not a bug, but it means the detector's actual coverage is narrower than "catches divergence" might suggest at a glance. - Everything is in-memory.
Ledger,Audit, andEvidenceGraphstate don't survive a process restart; there's no persistence layer. - Single-process only. No distributed consensus on lineage, ledger balances, or audit log state across multiple gateway instances.
Contributing
Bug reports, new divergence scenarios, and PRs are welcome — see
CONTRIBUTING.md for setup and what CI checks.
Security
Found a way to forge lineage, double-spend a ledger balance, replay a
nonce, or make the audit log lie about tampering? Please see
SECURITY.md for how to report it responsibly rather than
opening a public issue.
Changelog
See CHANGELOG.md.
License
MIT — see LICENSE.
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