Principles of functional verification

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1. Verfasser: Meyer, Andreas, (Andreas S.) (VerfasserIn)
Format: Elektronisch E-Book
Sprache:English
Veröffentlicht: Amsterdam Newnes 2003
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500 |a As design complexity in chips and devices continues to rise, so, too, does the demand for functional verification. Principles of Functional Verification is a hands-on, practical text that will help train professionals in the field of engineering on the methodology and approaches to verification. In practice, the architectural intent of a device is necessarily abstract. The implementation process, however, must define the detailed mechanisms to achieve the architectural goals. Based on a decade of experience, Principles of Functional Verification intends to pinpoint the issues, provide strategies to solve the issues, and present practical applications for narrowing the gap between architectural intent and implementation. The book is divided into three parts, each building upon the chapters within the previous part. Part One addresses why functional verification is necessary, its definition and goals. In Part Two, the heart of the methodology and approaches to solving verification issues are examined. Each chapter in this part ends with exercises to apply what was discussed in the chapter. Part Three looks at practical applications, discussing project planning, resource requirements, and costs. Each chapter throughout all three parts will open with Key Objectives, focal points the reader can expect to review in the chapter. * Takes a "holistic" approach to verification issues * Approach is not restricted to one language * Discussed the verification process, not just how to use the verification language 
500 |a Part One: Why Functional Verification is Necessary; Definition and Goals; Architecture; A Look at What is Being Verified; Part Two: How Functional Verification Works; Determining the Validity of the Model; Verification Methods; Random Testing; Co-Simulation; Measuring Verification Quality; Verification Languages; Part Three: Application of Functional Verification; The Verification Plan; Projecting Costs; Summary: The Project; Verification Languages: Testbuilder, Vera, E; Other Project Verification Tools: Bug-tracking Systems; Other Project Verification Tools: Revision & Release Control Systems 
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Datensatz im Suchindex

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Principles of functional verification Andreas Meyer
Amsterdam Newnes 2003
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As design complexity in chips and devices continues to rise, so, too, does the demand for functional verification. Principles of Functional Verification is a hands-on, practical text that will help train professionals in the field of engineering on the methodology and approaches to verification. In practice, the architectural intent of a device is necessarily abstract. The implementation process, however, must define the detailed mechanisms to achieve the architectural goals. Based on a decade of experience, Principles of Functional Verification intends to pinpoint the issues, provide strategies to solve the issues, and present practical applications for narrowing the gap between architectural intent and implementation. The book is divided into three parts, each building upon the chapters within the previous part. Part One addresses why functional verification is necessary, its definition and goals. In Part Two, the heart of the methodology and approaches to solving verification issues are examined. Each chapter in this part ends with exercises to apply what was discussed in the chapter. Part Three looks at practical applications, discussing project planning, resource requirements, and costs. Each chapter throughout all three parts will open with Key Objectives, focal points the reader can expect to review in the chapter. * Takes a "holistic" approach to verification issues * Approach is not restricted to one language * Discussed the verification process, not just how to use the verification language
Part One: Why Functional Verification is Necessary; Definition and Goals; Architecture; A Look at What is Being Verified; Part Two: How Functional Verification Works; Determining the Validity of the Model; Verification Methods; Random Testing; Co-Simulation; Measuring Verification Quality; Verification Languages; Part Three: Application of Functional Verification; The Verification Plan; Projecting Costs; Summary: The Project; Verification Languages: Testbuilder, Vera, E; Other Project Verification Tools: Bug-tracking Systems; Other Project Verification Tools: Revision & Release Control Systems
TECHNOLOGY & ENGINEERING / Electronics / Circuits / Integrated bisacsh
TECHNOLOGY & ENGINEERING / Electronics / Circuits / General bisacsh
Integrated circuits / Verification fast
Integrated circuits Verification
http://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=104792 Aggregator Volltext
spellingShingle Meyer, Andreas, (Andreas S.)
Principles of functional verification
TECHNOLOGY & ENGINEERING / Electronics / Circuits / Integrated bisacsh
TECHNOLOGY & ENGINEERING / Electronics / Circuits / General bisacsh
Integrated circuits / Verification fast
Integrated circuits Verification
title Principles of functional verification
title_auth Principles of functional verification
title_exact_search Principles of functional verification
title_full Principles of functional verification Andreas Meyer
title_fullStr Principles of functional verification Andreas Meyer
title_full_unstemmed Principles of functional verification Andreas Meyer
title_short Principles of functional verification
title_sort principles of functional verification
topic TECHNOLOGY & ENGINEERING / Electronics / Circuits / Integrated bisacsh
TECHNOLOGY & ENGINEERING / Electronics / Circuits / General bisacsh
Integrated circuits / Verification fast
Integrated circuits Verification
topic_facet TECHNOLOGY & ENGINEERING / Electronics / Circuits / Integrated
TECHNOLOGY & ENGINEERING / Electronics / Circuits / General
Integrated circuits / Verification
Integrated circuits Verification
url http://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=104792
work_keys_str_mv AT meyerandreasandreass principlesoffunctionalverification