UVM based verification platform for CAN controller with asynchronous interface

For Controller Area Network(CAN) controller with asynchronous interface, a randomized and reusable function verification platform based on Universal Verification Methodology(UVM) is designed and implemented. The platform is built using object-oriented UVM classes. The code is more reusable and the d...

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Main Authors: Sun Weidong, Hu Xiaogang
Format: Article
Language:zho
Published: National Computer System Engineering Research Institute of China 2024-01-01
Series:Dianzi Jishu Yingyong
Subjects:
Online Access:http://www.chinaaet.com/article/3000163437
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author Sun Weidong
Hu Xiaogang
author_facet Sun Weidong
Hu Xiaogang
author_sort Sun Weidong
collection DOAJ
description For Controller Area Network(CAN) controller with asynchronous interface, a randomized and reusable function verification platform based on Universal Verification Methodology(UVM) is designed and implemented. The platform is built using object-oriented UVM classes. The code is more reusable and the development time is shorter. The introduction of a more randomized incentive accelerates the convergence speed of functional verification, and the random incentive is closer to the actual application of the chip. The automatic comparison mechanism can output the result report in real time, which is convenient for problem debugging.
format Article
id doaj-art-a1f970635a654dbcabdb782b06039ea6
institution OA Journals
issn 0258-7998
language zho
publishDate 2024-01-01
publisher National Computer System Engineering Research Institute of China
record_format Article
series Dianzi Jishu Yingyong
spelling doaj-art-a1f970635a654dbcabdb782b06039ea62025-08-20T02:24:13ZzhoNational Computer System Engineering Research Institute of ChinaDianzi Jishu Yingyong0258-79982024-01-015013540DOI: 10.16157/j.issn.0258-7998.2341013000163437UVM based verification platform for CAN controller with asynchronous interfaceSun Weidong0Hu Xiaogang1The 58th Research Institute of China Electronics Technology Group Corporation, Wuxi 214072,ChinaThe 58th Research Institute of China Electronics Technology Group Corporation, Wuxi 214072,ChinaFor Controller Area Network(CAN) controller with asynchronous interface, a randomized and reusable function verification platform based on Universal Verification Methodology(UVM) is designed and implemented. The platform is built using object-oriented UVM classes. The code is more reusable and the development time is shorter. The introduction of a more randomized incentive accelerates the convergence speed of functional verification, and the random incentive is closer to the actual application of the chip. The automatic comparison mechanism can output the result report in real time, which is convenient for problem debugging.http://www.chinaaet.com/article/3000163437ic design verificationuniversal verification methodologyreusable verification platformcontroller area networ
spellingShingle Sun Weidong
Hu Xiaogang
UVM based verification platform for CAN controller with asynchronous interface
Dianzi Jishu Yingyong
ic design verification
universal verification methodology
reusable verification platform
controller area networ
title UVM based verification platform for CAN controller with asynchronous interface
title_full UVM based verification platform for CAN controller with asynchronous interface
title_fullStr UVM based verification platform for CAN controller with asynchronous interface
title_full_unstemmed UVM based verification platform for CAN controller with asynchronous interface
title_short UVM based verification platform for CAN controller with asynchronous interface
title_sort uvm based verification platform for can controller with asynchronous interface
topic ic design verification
universal verification methodology
reusable verification platform
controller area networ
url http://www.chinaaet.com/article/3000163437
work_keys_str_mv AT sunweidong uvmbasedverificationplatformforcancontrollerwithasynchronousinterface
AT huxiaogang uvmbasedverificationplatformforcancontrollerwithasynchronousinterface