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On the Sensitivity to Errors in Homomorphic Computing: Single Transient Bit-flip Client-side Error Characterization

Authors

Do you know Matías Mazzanti?You can claim authorship or link another user.Do you know Vattana Chan?You can claim authorship or link another user.Do you know Karthik Swaminathan?You can claim authorship or link another user.Do you know Augusto Vega?You can claim authorship or link another user.Do you know Esteban Mocskos?You can claim authorship or link another user.Do you know Radha Venkatagiri?You can claim authorship or link another user.

Abstract

Homomorphic Encryption (HE) enables computation on encrypted data without decryption and is a key primitive for privacy-preserving computation in sensitive domains such as healthcare, finance, and government. Its security relies on noise injection, which introduces intrinsic error sensitivity and raises concerns about the fault tolerance of HE systems, as hardware- and software-induced faults can evade traditional detection mechanisms and lead to silent data corruption. In this work, we analyze the sensitivity of HE to bit-level faults, focusing on the CKKS (Cheon--Kim--Kim--Song) scheme widely used for approximate arithmetic in AI and machine learning workloads. We identify homomorphic multiplication as the most error-sensitive operation in practical HE pipelines and characterize how faults propagate and amplify through it, exposing a critical robustness vulnerability and motivating the need for more resilient HE deployments.

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Publication notes

Author note
3 pages, 3 figures