Cute-Lock: Behavioral and Structural Multi-Key Logic Locking Using Time Base Keys

Fuente: arXiv
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Main Authors: Lopez, Kevin, Rezaei, Amin
Format: Preprint
Published: 2025
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author Lopez, Kevin
Rezaei, Amin
author_facet Lopez, Kevin
Rezaei, Amin
contents The outsourcing of semiconductor manufacturing raises security risks, such as piracy and overproduction of hardware intellectual property. To overcome this challenge, logic locking has emerged to lock a given circuit using additional key bits. While single-key logic locking approaches have demonstrated serious vulnerability to a wide range of attacks, multi-key solutions, if carefully designed, can provide a reliable defense against not only oracle-guided logic attacks, but also removal and dataflow attacks. In this paper, using time base keys, we propose, implement and evaluate a family of secure multi-key logic locking algorithms called Cute-Lock that can be applied both in RTL-level behavioral and netlist-level structural representations of sequential circuits. Our extensive experimental results under a diverse range of attacks confirm that, compared to vulnerable state-of-the-art methods, employing the Cute-Lock family drives attacking attempts to a dead end without additional overhead.
format Preprint
id arxiv_https___arxiv_org_abs_2501_17402
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Cute-Lock: Behavioral and Structural Multi-Key Logic Locking Using Time Base Keys
Lopez, Kevin
Rezaei, Amin
Cryptography and Security
The outsourcing of semiconductor manufacturing raises security risks, such as piracy and overproduction of hardware intellectual property. To overcome this challenge, logic locking has emerged to lock a given circuit using additional key bits. While single-key logic locking approaches have demonstrated serious vulnerability to a wide range of attacks, multi-key solutions, if carefully designed, can provide a reliable defense against not only oracle-guided logic attacks, but also removal and dataflow attacks. In this paper, using time base keys, we propose, implement and evaluate a family of secure multi-key logic locking algorithms called Cute-Lock that can be applied both in RTL-level behavioral and netlist-level structural representations of sequential circuits. Our extensive experimental results under a diverse range of attacks confirm that, compared to vulnerable state-of-the-art methods, employing the Cute-Lock family drives attacking attempts to a dead end without additional overhead.
title Cute-Lock: Behavioral and Structural Multi-Key Logic Locking Using Time Base Keys
topic Cryptography and Security
url https://arxiv.org/abs/2501.17402