PARAM: A Microprocessor Hardened for Power Side-Channel Attack Resistance


연구 분야: Analysis



학회: 2020 IEEE International Symposium on Hardware Oriented Security and Trust (HOST)


초록

The power consumption of a microprocessor is a huge channel for information leakage. While the most popular exploitation of this channel is to recover cryptographic keys from embedded devices, other applications such as mobile app fingerprinting, reverse engineering of firmware, and password recovery are growing threats. Countermeasures proposed so far are tuned to specific applications, such as crypto-implementations. They are not scalable to the large number and variety of applications that typically run on a general purpose microprocessor.In this paper, we investigate the design of a microprocessor, called PARAM with increased resistance to power based sidechannel attacks. To design PARAM, we start with identifying the most leaking modules in an open-source RISC V processor. We evaluate the leakage in these modules and then add suitable countermeasures. The countermeasures depend on the cause of leakage in each module and can vary from simple modifications of the HDL code ensuring secure translation by the EDA tools, to obfuscating data and address lines thus breaking correlation with the processor's power consumption. The resultant processor is instantiated on the SASEBO-GIII FPGA board and found to resist Differential Power Analysis even after one million power traces. Compared to contemporary countermeasures for power side-channel attacks, overheads in area and frequency are minimal.


Author Profile
Muhammad Arsath K F

Department of Computer Science and Engineering Indian Institute of Technology Madras India

Andorra
Author Profile
Vinod Ganesan

Department of Computer Science and Engineering Indian Institute of Technology Madras India

Andorra
Author Profile
Rahul Bodduna

Department of Computer Science and Engineering Indian Institute of Technology Madras India

Andorra

📄 논문 정보

발행 연도 2020년
인용수 18
출판 국가 Andorra
사이트 IEEE
좋아요 수 0

연관 논문 목록 (141건)