From Flatland to Forest: Exploring Pareto-optimal Design through RTL Hierarchy Trees
Donger Luo, Qi Sun, Xingheng Li, Cheng Zhuo, Bei Yu, Hao Geng
Abstract
The growing complexity of modern hardware has created vast design spaces that are difficult to explore efficiently. Current design space exploration (DSE) methods treat designs as flat parameter vectors, failing to leverage the rich structural information inherent in hardware architectures. This paper presents a novel RTL hierarchy aware approach to microarchitecture DSE that exploits the natural structure of hardware designs. We propose an RTL hierarchy aware kernel that enables direct comparison of RTL hierarchies, preserving their structural characteristics. Our method incorporates module importance derived from hierarchical synthesis reports through a weighted kernel extension. Additionally, we introduce a clustering method that leverages the proposed kernel to identify distinct architectural patterns, enabling efficient parallel evaluation. Experimental results and ablation studies on a Gemmini-based RISC-V SoC demonstrate the superiority of our approach.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext fcd9eff3-77e7-4e6f-9309-9e2906357b1aBuilds on3
- Gemmini: Enabling Systematic Deep-Learning Architecture Evaluation via Full-Stack IntegrationHasan Genc, Seah Kim, Alon Amid, Ameer Haj-Ali et al.DAC 2021 · 325 citations
- Graph Representation Learning for Microarchitecture Design Space ExplorationXiaoling Yi, Jialin Lu, Xiankui Xiong, Dong Xu et al.DAC 2023 · 22 citations
- Towards Automated RISC-V Microarchitecture Design with Reinforcement LearningChen Bai, Jianwang Zhai, Yuzhe Ma, Bei Yu et al.AAAI 2024 · 20 citations
Related papers
- A Model-Specific End-to-End Design Methodology for Resource-Constrained TinyML HardwareYanchi Dong, Tianyu Jia, Kaixuan Du, Yiqi Jing et al.DAC 2023 · 10 citations
- microSCALE: Static Analysis for Microarchitectural Side-channel Leakage EvaluationAkshay Kumar E, Pranav Krishna N, Annapurna Valiveti, Pallavi Borkar et al.USENIX Security 2026
- HardFails: Insights into Software-Exploitable Hardware BugsGhada Dessouky, David Gens, Patrick Haney, Garrett Persyn et al.USENIX Security 2019 · 149 citations
- ADVISOR: Approximate Computing-frienDly High-LeVel Synthesis DesIgn Space ExplORerBaharealsadat Parchamdar, Benjamin Carrión SchäferDAC 2025 · 1 citation
- GSIM: Accelerating RTL Simulation for Large-Scale DesignsLu Chen, Dingyi Zhao, Zihao Yu, Ninghui Sun et al.DAC 2025 · 1 citation
