In today's digital age, the ease of data collection, transfer, and storage continue to shape modern society and the ways we interact with our world. The advantages are numerous, but there is also an increased risk of information unintentionally falling into the wrong hands. Finding methods of protecting sensitive information at the hardware level is of utmost importance, and in this paper, we aim to provide a survey on recent developments in attacks on lightweight hardware-based security primitives (LHSPs) designed to do just that. Specifically, we provide an analysis of the attack resilience of these proposed LHSPs in an attempt to bring awareness to any vulnerabilities that may exist. We do this in the hope that it will encourage the continued development of attack countermeasures as well as completely new methods of data protection in order to prevent the discussed methods of attack from remaining viable in the future. The types of LHSPs discussed include physical unclonable functions (PUFs) and true random number generators (TRNGs), with a primary emphasis placed on PUFs.
翻译:在当今的数码时代,数据收集、转让和储存的便捷性继续影响现代社会和我们与世界互动的方式。这些优势很多,但也增加了信息无意落入坏人手中的风险。在硬件一级寻求保护敏感信息的方法至关重要。在本文件中,我们的目标是对攻击轻量的硬件安全原始材料(LHSPs)的最近事态发展进行调查。具体地说,我们分析了这些拟议的LHSPs的攻击应变能力,以便使人们认识到可能存在的任何弱点。我们这样做是为了希望这将鼓励继续发展攻击性反措施以及全新的数据保护方法,以防止所讨论的攻击方法在今后继续可行。讨论的LHSPs类型包括有形的不可调理的功能和真正的随机数发电机,主要侧重于PUFs。