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Principles of Verifiable RTL Design

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Release : 2007-05-08
Genre : Technology & Engineering
Kind : eBook
Book Rating : 160/5 ( reviews)

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Book Synopsis Principles of Verifiable RTL Design by : Lionel Bening

Download or read book Principles of Verifiable RTL Design written by Lionel Bening. This book was released on 2007-05-08. Available in PDF, EPUB and Kindle. Book excerpt: 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.

Principles of Verifiable RTL Design

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Author :
Release : 2001-05-31
Genre : Computers
Kind : eBook
Book Rating : 685/5 ( reviews)

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Book Synopsis Principles of Verifiable RTL Design by : Lionel Bening

Download or read book Principles of Verifiable RTL Design written by Lionel Bening. This book was released on 2001-05-31. Available in PDF, EPUB and Kindle. Book excerpt: The first edition of Principles of Verifiable RTL Design offered a common sense method for simplifying and unifying assertion specification by creating a set of predefined specification modules that could be instantiated within the designer's RTL. Since the release of the first edition, an entire industry-wide initiative for assertion specification has emerged based on ideas presented in the first edition. This initiative, known as the Open Verification Library Initiative (www.verificationlib.org), provides an assertion interface standard that enables the design engineer to capture many interesting properties of the design and precludes the need to introduce new HDL constructs (i.e., extensions to Verilog are not required). Furthermore, this standard enables the design engineer to `specify once,' then target the same RTL assertion specification over multiple verification processes, such as traditional simulation, semi-formal and formal verification tools. The Open Verification Library Initiative is an empowering technology that will benefit design and verification engineers while providing unity to the EDA community (e.g., providers of testbench generation tools, traditional simulators, commercial assertion checking support tools, symbolic simulation, and semi-formal and formal verification tools). The second edition of Principles of Verifiable RTL Design expands the discussion of assertion specification by including a new chapter entitled `Coverage, Events and Assertions'. All assertions exampled are aligned with the Open Verification Library Initiative proposed standard. Furthermore, the second edition provides expanded discussions on the following topics: start-up verification; the place for 4-state simulation; race conditions; RTL-style-synthesizable RTL (unambiguous mapping to gates); more `bad stuff'. The goal of the second edition is to keep the topic current. Principles of Verifiable RTL Design, A Functional Coding Style Supporting Verification Processes, Second Edition tells you how you can write Verilog to describe chip designs at the RTL 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.

Principles of Verifiable Rtl Design

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Author :
Release : 2014-09-01
Genre :
Kind : eBook
Book Rating : 177/5 ( reviews)

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Book Synopsis Principles of Verifiable Rtl Design by : Lionel Bening

Download or read book Principles of Verifiable Rtl Design written by Lionel Bening. This book was released on 2014-09-01. Available in PDF, EPUB and Kindle. Book excerpt:

Principles of Verifiable RTL Design

Download Principles of Verifiable RTL Design PDF Online Free

Author :
Release : 2007-05-08
Genre : Technology & Engineering
Kind : eBook
Book Rating : 312/5 ( reviews)

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Book Synopsis Principles of Verifiable RTL Design by : Lionel Bening

Download or read book Principles of Verifiable RTL Design written by Lionel Bening. This book was released on 2007-05-08. Available in PDF, EPUB and Kindle. Book excerpt: System designers, computer scientists and engineers have c- tinuously invented and employed notations for modeling, speci- ing, simulating, documenting, communicating, teaching, verifying and controlling the designs of digital systems. Initially these s- tems were represented via electronic and fabrication details. F- lowing C. E. Shannon’s revelation of 1948, logic diagrams and Boolean equations were used to represent digital systems in a fa- ion that de-emphasized electronic and fabrication detail while revealing logical behavior. A small number of circuits were made available to remove the abstraction of these representations when it was desirable to do so. As system complexity grew, block diagrams, timing charts, sequence charts, and other graphic and symbolic notations were found to be useful in summarizing the gross features of a system and describing how it operated. In addition, it always seemed necessary or appropriate to augment these documents with lengthy verbal descriptions in a natural language. While each notation was, and still is, a perfectly valid means of expressing a design, lack of standardization, conciseness, and f- mal definitions interfered with communication and the understa- ing between groups of people using different notations. This problem was recognized early and formal languages began to evolve in the 1950s when I. S. Reed discovered that flip-flop input equations were equivalent to a register transfer equation, and that xvi tor-like notation. Expanding these concepts Reed developed a no- tion that became known as a Register Transfer Language (RTL).

Principles of VLSI RTL Design

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Author :
Release : 2011-05-04
Genre : Technology & Engineering
Kind : eBook
Book Rating : 960/5 ( reviews)

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Book Synopsis Principles of VLSI RTL Design by : Sanjay Churiwala

Download or read book Principles of VLSI RTL Design written by Sanjay Churiwala. This book was released on 2011-05-04. Available in PDF, EPUB and Kindle. Book excerpt: Since register transfer level (RTL) design is less about being a bright engineer, and more about knowing the downstream implications of your work, this book explains the impact of design decisions taken that may give rise later in the product lifecycle to issues related to testability, data synchronization across clock domains, synthesizability, power consumption, routability, etc., all which are a function of the way the RTL was originally written. Readers will benefit from a highly practical approach to the fundamentals of these topics, and will be given clear guidance regarding necessary safeguards to observe during RTL design.

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