L2 — Mempacks Inference Core

Trust that knowledge hasn't been tampered with.

Cryptographic Integrity for Knowledge Packs

In enterprise environments, the integrity of AI knowledge packs is a security concern. Signed Deltas use cryptographic signatures to ensure that memory packs haven't been modified between creation and deployment. Every delta — the change between one version and the next — is cryptographically signed by its author and verified at load time. This creates an unbreakable chain of trust from knowledge creation to AI behavior.

What Signed Deltas delivers

01

Cryptographic Verification

Every pack and delta is signed with the author's key. Verification at load time ensures no tampering occurred between creation and deployment.

02

Chain of Custody

The complete history of who created, modified, reviewed, and approved each knowledge pack is cryptographically attested. Full provenance for every piece of AI knowledge.

03

Tamper Detection

Any unauthorized modification to a memory pack is detected before it can affect AI behavior. Corrupted or tampered packs are rejected at load time.

04

Regulatory Compliance

For regulated industries, cryptographic signing provides the non-repudiation and integrity verification that compliance frameworks require for AI knowledge management.

How it connects across the stack

Signed Deltas works in concert with other layers in the intelligence stack — each connection amplifying the capability of both components.

Versioned PacksDomain OverlaysGovernance (Audit Logs)Rollout Gates

Why it matters

Guarantee the integrity of your AI knowledge base. In environments where AI decisions have legal, financial, or safety implications, signed deltas provide the cryptographic assurance that the knowledge driving those decisions is authentic and unmodified.

See Signed Deltas in action

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