Using OpenMP-The Next Step

Using OpenMP-The Next Step
Author :
Publisher : MIT Press
Total Pages : 392
Release :
ISBN-10 : 9780262534789
ISBN-13 : 0262534789
Rating : 4/5 (89 Downloads)

Synopsis Using OpenMP-The Next Step by : Ruud Van Der Pas

A guide to the most recent, advanced features of the widely used OpenMP parallel programming model, with coverage of major features in OpenMP 4.5. This book offers an up-to-date, practical tutorial on advanced features in the widely used OpenMP parallel programming model. Building on the previous volume, Using OpenMP: Portable Shared Memory Parallel Programming (MIT Press), this book goes beyond the fundamentals to focus on what has been changed and added to OpenMP since the 2.5 specifications. It emphasizes four major and advanced areas: thread affinity (keeping threads close to their data), accelerators (special hardware to speed up certain operations), tasking (to parallelize algorithms with a less regular execution flow), and SIMD (hardware assisted operations on vectors). As in the earlier volume, the focus is on practical usage, with major new features primarily introduced by example. Examples are restricted to C and C++, but are straightforward enough to be understood by Fortran programmers. After a brief recap of OpenMP 2.5, the book reviews enhancements introduced since 2.5. It then discusses in detail tasking, a major functionality enhancement; Non-Uniform Memory Access (NUMA) architectures, supported by OpenMP; SIMD, or Single Instruction Multiple Data; heterogeneous systems, a new parallel programming model to offload computation to accelerators; and the expected further development of OpenMP.

Using OpenMP

Using OpenMP
Author :
Publisher : MIT Press
Total Pages : 378
Release :
ISBN-10 : 9780262533027
ISBN-13 : 0262533022
Rating : 4/5 (27 Downloads)

Synopsis Using OpenMP by : Barbara Chapman

A comprehensive overview of OpenMP, the standard application programming interface for shared memory parallel computing—a reference for students and professionals. "I hope that readers will learn to use the full expressibility and power of OpenMP. This book should provide an excellent introduction to beginners, and the performance section should help those with some experience who want to push OpenMP to its limits." —from the foreword by David J. Kuck, Intel Fellow, Software and Solutions Group, and Director, Parallel and Distributed Solutions, Intel Corporation OpenMP, a portable programming interface for shared memory parallel computers, was adopted as an informal standard in 1997 by computer scientists who wanted a unified model on which to base programs for shared memory systems. OpenMP is now used by many software developers; it offers significant advantages over both hand-threading and MPI. Using OpenMP offers a comprehensive introduction to parallel programming concepts and a detailed overview of OpenMP. Using OpenMP discusses hardware developments, describes where OpenMP is applicable, and compares OpenMP to other programming interfaces for shared and distributed memory parallel architectures. It introduces the individual features of OpenMP, provides many source code examples that demonstrate the use and functionality of the language constructs, and offers tips on writing an efficient OpenMP program. It describes how to use OpenMP in full-scale applications to achieve high performance on large-scale architectures, discussing several case studies in detail, and offers in-depth troubleshooting advice. It explains how OpenMP is translated into explicitly multithreaded code, providing a valuable behind-the-scenes account of OpenMP program performance. Finally, Using OpenMP considers trends likely to influence OpenMP development, offering a glimpse of the possibilities of a future OpenMP 3.0 from the vantage point of the current OpenMP 2.5. With multicore computer use increasing, the need for a comprehensive introduction and overview of the standard interface is clear. Using OpenMP provides an essential reference not only for students at both undergraduate and graduate levels but also for professionals who intend to parallelize existing codes or develop new parallel programs for shared memory computer architectures.

Parallel Programming in OpenMP

Parallel Programming in OpenMP
Author :
Publisher : Morgan Kaufmann
Total Pages : 250
Release :
ISBN-10 : 9781558606715
ISBN-13 : 1558606718
Rating : 4/5 (15 Downloads)

Synopsis Parallel Programming in OpenMP by : Rohit Chandra

Software -- Programming Techniques.

Parallel Programming in C with MPI and OpenMP

Parallel Programming in C with MPI and OpenMP
Author :
Publisher : McGraw-Hill Education
Total Pages : 529
Release :
ISBN-10 : 0071232656
ISBN-13 : 9780071232654
Rating : 4/5 (56 Downloads)

Synopsis Parallel Programming in C with MPI and OpenMP by : Michael Jay Quinn

The era of practical parallel programming has arrived, marked by the popularity of the MPI and OpenMP software standards and the emergence of commodity clusters as the hardware platform of choice for an increasing number of organizations. This exciting new book,Parallel Programming in C with MPI and OpenMPaddresses the needs of students and professionals who want to learn how to design, analyze, implement, and benchmark parallel programs in C using MPI and/or OpenMP. It introduces a rock-solid design methodology with coverage of the most important MPI functions and OpenMP directives. It also demonstrates, through a wide range of examples, how to develop parallel programs that will execute efficiently on today’s parallel platforms. If you are an instructor who has adopted the book and would like access to the additional resources, please contact your local sales rep. or Michelle Flomenhoft at: [email protected].

Parallel Programming with MPI

Parallel Programming with MPI
Author :
Publisher : Morgan Kaufmann
Total Pages : 456
Release :
ISBN-10 : 1558603395
ISBN-13 : 9781558603394
Rating : 4/5 (95 Downloads)

Synopsis Parallel Programming with MPI by : Peter Pacheco

Mathematics of Computing -- Parallelism.

Advancing OpenMP for Future Accelerators

Advancing OpenMP for Future Accelerators
Author :
Publisher : Springer Nature
Total Pages : 230
Release :
ISBN-10 : 9783031725678
ISBN-13 : 3031725670
Rating : 4/5 (78 Downloads)

Synopsis Advancing OpenMP for Future Accelerators by : Alexis Espinosa

Introduction to Parallel Programming

Introduction to Parallel Programming
Author :
Publisher : Cambridge University Press
Total Pages :
Release :
ISBN-10 : 9781009276306
ISBN-13 : 1009276301
Rating : 4/5 (06 Downloads)

Synopsis Introduction to Parallel Programming by : Subodh Kumar

In modern computer science, there exists no truly sequential computing system; and most advanced programming is parallel programming. This is particularly evident in modern application domains like scientific computation, data science, machine intelligence, etc. This lucid introductory textbook will be invaluable to students of computer science and technology, acting as a self-contained primer to parallel programming. It takes the reader from introduction to expertise, addressing a broad gamut of issues. It covers different parallel programming styles, describes parallel architecture, includes parallel programming frameworks and techniques, presents algorithmic and analysis techniques and discusses parallel design and performance issues. With its broad coverage, the book can be useful in a wide range of courses; and can also prove useful as a ready reckoner for professionals in the field.

Patterns for Parallel Programming

Patterns for Parallel Programming
Author :
Publisher : Pearson Education
Total Pages : 786
Release :
ISBN-10 : 9780321630032
ISBN-13 : 0321630033
Rating : 4/5 (32 Downloads)

Synopsis Patterns for Parallel Programming by : Timothy G. Mattson

The Parallel Programming Guide for Every Software Developer From grids and clusters to next-generation game consoles, parallel computing is going mainstream. Innovations such as Hyper-Threading Technology, HyperTransport Technology, and multicore microprocessors from IBM, Intel, and Sun are accelerating the movement's growth. Only one thing is missing: programmers with the skills to meet the soaring demand for parallel software. That's where Patterns for Parallel Programming comes in. It's the first parallel programming guide written specifically to serve working software developers, not just computer scientists. The authors introduce a complete, highly accessible pattern language that will help any experienced developer "think parallel"-and start writing effective parallel code almost immediately. Instead of formal theory, they deliver proven solutions to the challenges faced by parallel programmers, and pragmatic guidance for using today's parallel APIs in the real world. Coverage includes: Understanding the parallel computing landscape and the challenges faced by parallel developers Finding the concurrency in a software design problem and decomposing it into concurrent tasks Managing the use of data across tasks Creating an algorithm structure that effectively exploits the concurrency you've identified Connecting your algorithmic structures to the APIs needed to implement them Specific software constructs for implementing parallel programs Working with today's leading parallel programming environments: OpenMP, MPI, and Java Patterns have helped thousands of programmers master object-oriented development and other complex programming technologies. With this book, you will learn that they're the best way to master parallel programming too.

Beyond Loop Level Parallelism in OpenMP: Accelerators, Tasking and More

Beyond Loop Level Parallelism in OpenMP: Accelerators, Tasking and More
Author :
Publisher : Springer Science & Business Media
Total Pages : 183
Release :
ISBN-10 : 9783642132162
ISBN-13 : 3642132162
Rating : 4/5 (62 Downloads)

Synopsis Beyond Loop Level Parallelism in OpenMP: Accelerators, Tasking and More by : Mitsuhisa Sato

The LNCS series reports state-of-the-art results in computer science research, development, and education, at a high level and in both printed and electronic form. Enjoying tight cooperation with the R&D community, with numerous individuals, as well as with prestigious organizations and societies, LNCS has grown into the most comprehensive computer science research forum available. The scope of LNCS, including its subseries LNAI and LNBI, spans the whole range of computer science and information technology including interdisciplinary topics in a variety of application fields. The type of material published traditionally includes -proceedings (published in time for the respective conference) -post-proceedings (consisting of thoroughly revised final full papers) -research monographs (which may be based on outstanding PhD work, research projects, technical reports, etc.) More recently, several color-cover sublines have been added featuring, beyond a collection of papers, various added-value components; these sublines include -tutorials (textbook-like monographs or collections of lectures given at advanced courses) -state-of-the-art surveys (offering complete and mediated coverage of a topic) -hot topics (introducing emergent topics to the broader community)

Computational Science – ICCS 2023

Computational Science – ICCS 2023
Author :
Publisher : Springer Nature
Total Pages : 719
Release :
ISBN-10 : 9783031359958
ISBN-13 : 303135995X
Rating : 4/5 (58 Downloads)

Synopsis Computational Science – ICCS 2023 by : Jiří Mikyška

The five-volume set LNCS 14073-14077 constitutes the proceedings of the 23rd International Conference on Computational Science, ICCS 2023, held in Prague, Czech Republic, during July 3-5, 2023. The total of 188 full papers and 94 short papers presented in this book set were carefully reviewed and selected from 530 submissions. 54 full and 37 short papers were accepted to the main track; 134 full and 57 short papers were accepted to the workshops/thematic tracks. The theme for 2023, "Computation at the Cutting Edge of Science", highlights the role of Computational Science in assisting multidisciplinary research. This conference was a unique event focusing on recent developments in scalable scientific algorithms, advanced software tools; computational grids; advanced numerical methods; and novel application areas. These innovative novel models, algorithms, and tools drive new science through efficient application in physical systems, computational and systems biology, environmental systems, finance, and others.