Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/4590
Title: Linear approximation and differential attacks on logic locking techniques
Authors: Bairwa, Ghanshyam
Mandal, Souvik
Nikhil, Tatavarthy Venkat
Mazumdar, Bodhisatwa
Keywords: Embedded systems;Keys (for locks);Locks (fasteners);Side channel attack;VLSI circuits;Input differential;Key gate;Linear approximations;Logic locking;Output differential;Computer circuits
Issue Date: 2019
Publisher: Institute of Electrical and Electronics Engineers Inc.
Citation: Bairwa, G., Mandal, S., Nikhil, T. V., & Mazumdar, B. (2019). Linear approximation and differential attacks on logic locking techniques. Paper presented at the Proceedings - 32nd International Conference on VLSI Design, VLSID 2019 - Held Concurrently with 18th International Conference on Embedded Systems, ES 2019, 365-370. doi:10.1109/VLSID.2019.00081
Abstract: Logic locking is a protection technique for outsourced integrated circuit (IC) designs that thwarts IC piracy and IC counterfeiting by untrusted foundries. In logic locking, the key gates used for masking the circuit adds to the area overhead of the original circuit, and hence increases the power consumption too. In this paper, we mount linear approximation attacks and differential attacks on random logic locking (RLL), fault-analysis based logic locking (FLL), and strong logic locking (SLL) techniques. We present our results on ISCAS’85 benchmark circuits. In linear approximation attack, the combinatorial blocks partitioned and expressed as linear expressions to derive a relation between the key inputs and the primary inputs of the circuit. In differential attacks, we could recover the embedded secret key in device with attack effort lesser than exhaustive search attack. © 2019 IEEE.
URI: https://doi.org/10.1109/VLSID.2019.00081
https://dspace.iiti.ac.in/handle/123456789/4590
ISBN: 9781728104096
Type of Material: Conference Paper
Appears in Collections:Department of Computer Science and Engineering

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