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Cryptology ePrint Archive

Fast Isogeny Evaluation on Binary Curves Quick Draw Queries: Lightweight Searchable Public-key Ciphertexts with Hidden Structures via Non-Interactive Key Exchange A Constructive Treatment of Authentication Boolean Arithmetic over $\mathbb{F}_2$ from Group Commutators HAWK with Hint: Algebraic Key Recovery from Side-Channel Leakage Post-Quantum Secure k-Times Traceable Ring Signature A Key Schedule Design and Evaluation under Boundary Round-Key Leakage 2G2T: Constant-Size, Statistically Sound MSM Outsourcing Proximity Signatures Breaking Optimized HQC: The First Cache-Timing Full Decryption Oracle Key-Recovery Attack in Post-Quantum Cryptography Efficient Partially Blind Signatures from Isogenies Evaluating PQC KEMs, Combiners, and Cascade Encryption via Adaptive IND-CPA Testing Using Deep Learning High-Throughput Side-Channel-Protected Stream Cipher Hardware for 6G Systems Efficient e = 3 Threshold RSA via Integer Coordinates for Intel SGX Zeal: PIR for Non-Cooperative Databases VEIL: Lightweight Zero-Knowledge for Hash-Based Multilinear Proof Systems Witness-Indistinguishable Arguments of Knowledge and One-Way Functions The many faces of Schnorr: a touch-up Open Problems in List Decoding and Correlated Agreement Compressed Key Exchange Protocol from Orientations of Large Discriminant Using AVX-512 SPLASH: SPeculative Leakage-Adaptive Secure Hardware An Efficient Identity-Based Blind Signature Scheme from SM9 Efficient Batch Threshold Encryption Using Partial Fraction Techniques A note on the Unsuitability of LIGA for Linkable Ring Signatures: The perils of non-commutativity Verification Facade: Masquerading Insecure Cryptographic Implementations as Verified Code Cryptographic Implications of Worst-Case Hardness of Time-Bounded Kolmogorov Complexity Efficient Merkle-Tree Consistent Accumulator FLOSS: Fast Linear Online Secret-Shared Shuffling Which Privacy Blanket is Optimal in the Shuffle Model? Applications of Bruhat-Chevalley-Renner Decomposition to Metric-Aware Code-Based Cryptography
AgentCrypt: Advancing Privacy and (Secure) Computation in...
Harish Karth · 2025-12-09 · via Cryptology ePrint Archive

Paper 2025/2216

AgentCrypt: Advancing Privacy and (Secure) Computation in AI Agent Collaboration

, J.P. Morgan AI Research, J.P. Morgan AI Research, J.P. Morgan AlgoCRYPT Center of Excellence

Yue Guo, J.P. Morgan AI Research, J.P. Morgan AlgoCRYPT Center of Excellence

Leo de Castro, J.P. Morgan AI Research, J.P. Morgan AlgoCRYPT Center of Excellence

Antigoni Polychroniadou, J.P. Morgan AI Research, J.P. Morgan AlgoCRYPT Center of Excellence

Leo Ardon, J.P. Morgan AI Research

Udari Madhushani Sehwag, J.P. Morgan AI Research

Sumitra Ganesh, J.P. Morgan AI Research

Manuela Veloso, J.P. Morgan AI Research, J.P. Morgan AlgoCRYPT Center of Excellence

Abstract

As AI agents increasingly operate in real-world, multi-agent environments, ensuring reliable and context-aware privacy in agent communication is critical, especially to comply with evolving regulatory requirements. Traditional access controls are insufficient, as privacy risks in agentic applications often arise after access is granted; agents may use information in ways that compromise privacy, such as messaging humans, sharing context with other agents, making tool calls, persisting data, or generating arbitrary functions of private information. Existing approaches often treat privacy as a binary constraint, whether data is shareable or not, overlooking nuanced, role-specific, and computation-dependent privacy needs essential for regulatory compliance. Agents, including those based on large language models, are inherently probabilistic and heuristic. There is no formal guarantee of how an agent will behave for any query, making them ill-suited for operations critical to security. To address this, we introduce AgentCrypt, a three-tiered framework for fine-grained, secure agent communication that adds a protection layer atop any AI agent platform. AgentCrypt spans unrestricted data exchange (Level 1) to fully encrypted computation using techniques such as homomorphic encryption (Level 3). Unlike much of the recent work, our approach guarantees that the privacy of tagged data is always preserved—even when the underlying AI model makes errors. AgentCrypt ensures privacy across diverse interactions and enables computation on otherwise inaccessible data, overcoming barriers such as data silos. We implemented and tested it with Langgraph and Google ADK, demonstrating versatility across platforms. We also introduce a benchmark dataset simulating privacy-critical tasks at all privacy levels, enabling systematic evaluation and fostering the development of regulatable machine learning systems for secure agent communication and computation.

Note: Updated version with revised privacy-preserving functionality levels and security definitions

BibTeX

@misc{cryptoeprint:2025/2216,
      author = {Harish Karthikeyan and Yue Guo and Leo de Castro and Antigoni Polychroniadou and Leo Ardon and Udari Madhushani Sehwag and Sumitra Ganesh and Manuela Veloso},
      title = {{AgentCrypt}: Advancing Privacy and (Secure) Computation in {AI} Agent Collaboration},
      howpublished = {Cryptology {ePrint} Archive, Paper 2025/2216},
      year = {2025},
      url = {https://eprint.iacr.org/2025/2216}
}