ExplorerComputer ScienceCybersecurity
Research PaperResearchia:202608.06014

Hardware Design and Security in the Era of Chiplets and LLMs

Johann Knechtel

Abstract

The semiconductor industry is undergoing a dual revolution: the shift toward heterogeneous 2.5D chiplet systems and the integration of Large Language Models (LLMs) into Electronic Design Automation (EDA) flows. While these paradigms offer unprecedented benefits in yield, modularity, design productivity, etc., they radically expand the hardware attack surface. This paper provides a unified analysis of these frontiers, ranging from attacks on chiplet systems (including hardware stacks for LLM acce...

Submitted: August 6, 2026Subjects: Cybersecurity; Computer Science

Description / Details

The semiconductor industry is undergoing a dual revolution: the shift toward heterogeneous 2.5D chiplet systems and the integration of Large Language Models (LLMs) into Electronic Design Automation (EDA) flows. While these paradigms offer unprecedented benefits in yield, modularity, design productivity, etc., they radically expand the hardware attack surface. This paper provides a unified analysis of these frontiers, ranging from attacks on chiplet systems (including hardware stacks for LLM acceleration) across architectural, logical, and physical levels, to various exploits against LLM-driven EDA pipelines. To secure chiplet systems, we review a powerful defense approach that leverages 2.5D split manufacturing and active interposers for physically isolated Root of Trust (RoT) architectures. To secure LLM-driven EDA pipelines, we first identify native threats and then review state-of-the-art defense techniques. Finally, we discuss how LLM systems can advance hardware security efforts for modern systems, including chiplets.


Source: arXiv:2608.05063v1 - http://arxiv.org/abs/2608.05063v1 PDF: https://arxiv.org/pdf/2608.05063v1 Original Link: http://arxiv.org/abs/2608.05063v1

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Submission Info
Date:
Aug 6, 2026
Topic:
Computer Science
Area:
Cybersecurity
Comments:
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