Functional Verification of Programmable Embedded Architectures: A Top-Down Approach

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Validation of programmable architectures, consisting of processor cores, coprocessors, and memory subsystems, is one of the major bottlenecks in current System-On-Chip Design Methodology. A critical challenge in validation of such systems is the lack of a golden reference model. As a result, many existing validation techniques employ a bottom-up approach to design verification, where the functionality of an existing architecture is, in essence, reverse-engineered from its implementation. Traditional validation techniques employ different reference models depending on the abstraction level and verification task, resulting in potential inconsistencies between multiple reference models. This book presents a top-down validation methodology that complements the existing bottom-up approaches. It leverages the system architecture’s knowledge about the behaviour of the design through architecture specification using an Architecture Description Language (ADL). The authors also address two fundamental challenges in functional verification: lack of a golden reference model, and lack of a comprehensive functional coverage metric.

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Bibliographic information

Title
Functional Verification of Programmable Embedded Architectures: A Top-Down Approach
Author
Edition
1st ed.
Publisher
ISBN
8181288563
Length
xx+180p.,Tables; Figures
Subjects