SuperFlow: A Fully-Customized RTL-to-GDS Design Automation Flow for Adiabatic Quantum-Flux-Parametron Superconducting Circuits

Fuente: arXiv
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Main Authors: Xie, Yanyue, Dong, Peiyan, Yuan, Geng, Li, Zhengang, Zabihi, Masoud, Wu, Chao, Chang, Sung-En, Zhang, Xufeng, Lin, Xue, Ding, Caiwen, Yoshikawa, Nobuyuki, Chen, Olivia, Wang, Yanzhi
Format: Preprint
Published: 2024
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author Xie, Yanyue
Dong, Peiyan
Yuan, Geng
Li, Zhengang
Zabihi, Masoud
Wu, Chao
Chang, Sung-En
Zhang, Xufeng
Lin, Xue
Ding, Caiwen
Yoshikawa, Nobuyuki
Chen, Olivia
Wang, Yanzhi
author_facet Xie, Yanyue
Dong, Peiyan
Yuan, Geng
Li, Zhengang
Zabihi, Masoud
Wu, Chao
Chang, Sung-En
Zhang, Xufeng
Lin, Xue
Ding, Caiwen
Yoshikawa, Nobuyuki
Chen, Olivia
Wang, Yanzhi
contents Superconducting circuits, like Adiabatic Quantum-Flux-Parametron (AQFP), offer exceptional energy efficiency but face challenges in physical design due to sophisticated spacing and timing constraints. Current design tools often neglect the importance of constraint adherence throughout the entire design flow. In this paper, we propose SuperFlow, a fully-customized RTL-to-GDS design flow tailored for AQFP devices. SuperFlow leverages a synthesis tool based on CMOS technology to transform any input RTL netlist to an AQFP-based netlist. Subsequently, we devise a novel place-and-route procedure that simultaneously considers wirelength, timing, and routability for AQFP circuits. The process culminates in the generation of the AQFP circuit layout, followed by a Design Rule Check (DRC) to identify and rectify any layout violations. Our experimental results demonstrate that SuperFlow achieves 12.8% wirelength improvement on average and 12.1% better timing quality compared with previous state-of-the-art placers for AQFP circuits.
format Preprint
id arxiv_https___arxiv_org_abs_2407_18209
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle SuperFlow: A Fully-Customized RTL-to-GDS Design Automation Flow for Adiabatic Quantum-Flux-Parametron Superconducting Circuits
Xie, Yanyue
Dong, Peiyan
Yuan, Geng
Li, Zhengang
Zabihi, Masoud
Wu, Chao
Chang, Sung-En
Zhang, Xufeng
Lin, Xue
Ding, Caiwen
Yoshikawa, Nobuyuki
Chen, Olivia
Wang, Yanzhi
Emerging Technologies
Hardware Architecture
Superconducting circuits, like Adiabatic Quantum-Flux-Parametron (AQFP), offer exceptional energy efficiency but face challenges in physical design due to sophisticated spacing and timing constraints. Current design tools often neglect the importance of constraint adherence throughout the entire design flow. In this paper, we propose SuperFlow, a fully-customized RTL-to-GDS design flow tailored for AQFP devices. SuperFlow leverages a synthesis tool based on CMOS technology to transform any input RTL netlist to an AQFP-based netlist. Subsequently, we devise a novel place-and-route procedure that simultaneously considers wirelength, timing, and routability for AQFP circuits. The process culminates in the generation of the AQFP circuit layout, followed by a Design Rule Check (DRC) to identify and rectify any layout violations. Our experimental results demonstrate that SuperFlow achieves 12.8% wirelength improvement on average and 12.1% better timing quality compared with previous state-of-the-art placers for AQFP circuits.
title SuperFlow: A Fully-Customized RTL-to-GDS Design Automation Flow for Adiabatic Quantum-Flux-Parametron Superconducting Circuits
topic Emerging Technologies
Hardware Architecture
url https://arxiv.org/abs/2407.18209