
Principles of Verifiable RTL Design
A functional coding style supporting verification processes in Verilog
Springer (Publisher)
Published on 12. April 2013
Book
Paperback/Softback
XVII, 253 pages
978-1-4757-7313-2 (ISBN)
Description
Principles of Verifiable RTL Design: A Functional Coding Style
Supporting Verification Processes in Verilog
explains how you can write Verilog to describe chip designs at the RT-level in a manner that cooperates with verification processes. This cooperation can return an order of magnitude improvement in performance and capacity from tools such as simulation and equivalence checkers. It reduces the labor costs of coverage and formal model checking by facilitating communication between the design engineer and the verification engineer. It also orients the RTL style to provide more useful results from the overall verification process.
The intended audience for Principles of Verifiable RTL Design: A Functional Coding Style Supporting Verification Processes in Verilog is engineers and students who need an introduction to various design verification processes and a supporting functional Verilog RTL coding style. A second intended audience is engineers who have been through introductory training in Verilog and now want to develop good RTL writing practices for verification. A third audience is Verilog language instructors who are using a general text on Verilog as the course textbook but want to enrich their lectures with an emphasis on verification. A fourth audience is engineers with substantial Verilog experience who want to improve their Verilog practice to work better with RTL Verilog verification tools. A fifth audience is design consultants searching for proven verification-centric methodologies. A sixth audience is EDA verification tool implementers who want some suggestions about a minimal Verilog verification subset.
Principles of Verifiable RTL Design: A Functional Coding Style Supporting Verification Processes in Verilog is based on the reality that comes from actual large-scale product design process and tool experience.
The intended audience for Principles of Verifiable RTL Design: A Functional Coding Style Supporting Verification Processes in Verilog is engineers and students who need an introduction to various design verification processes and a supporting functional Verilog RTL coding style. A second intended audience is engineers who have been through introductory training in Verilog and now want to develop good RTL writing practices for verification. A third audience is Verilog language instructors who are using a general text on Verilog as the course textbook but want to enrich their lectures with an emphasis on verification. A fourth audience is engineers with substantial Verilog experience who want to improve their Verilog practice to work better with RTL Verilog verification tools. A fifth audience is design consultants searching for proven verification-centric methodologies. A sixth audience is EDA verification tool implementers who want some suggestions about a minimal Verilog verification subset.
Principles of Verifiable RTL Design: A Functional Coding Style Supporting Verification Processes in Verilog is based on the reality that comes from actual large-scale product design process and tool experience.
More details
Edition
Softcover reprint of the original 1st ed. 2000
Language
English
Place of publication
New York
United States
Target group
Professional and scholarly
Research
Illustrations
19 s/w Abbildungen
XVII, 253 p. 19 illus.
Dimensions
Height: 235 mm
Width: 155 mm
Thickness: 15 mm
Weight
417 gr
ISBN-13
978-1-4757-7313-2 (9781475773132)
DOI
10.1007/b116517
Schweitzer Classification
Other editions
Additional editions
Lionel Bening | Lionel Bening | Harry Foster
Principles of Verifiable RTL Design
A Functional Coding Style Supporting Verification Processes in Verilog
Book
02/2000
Kluwer Academic Publishers
€89.13
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Content
The Verification Process.- RTL Methodology Basics.- RTL Logic Simulation.- RTL Formal Verification.- Verifiable RTL Style.- The Bad Stuff.- Verifiable RTL Tutorial.- Principles of Verifiable RTL Design.