
High Performance Computing by John Levesque
High Performance Computing: Programming and Applications presents techniques that address new performance issues in the programming of high performance computing (HPC) applications. Omitting tedious details, the book discusses hardware architecture concepts and programming techniques that are the most pertinent to application developers for achieving high performance. Even though the text concentrates on C and Fortran, the techniques described can be applied to other languages, such as C++ and Java.
Drawing on their experience with chips from AMD and systems, interconnects, and software from Cray Inc., the authors explore the problems that create bottlenecks in attaining good performance. They cover techniques that pertain to each of the three levels of parallelism:
- Message passing between the nodes
- Shared memory parallelism on the nodes or the multiple instruction, multiple data (MIMD) units on the accelerator
- Vectorization on the inner level
After discussing architectural and software challenges, the book outlines a strategy for porting and optimizing an existing application to a large massively parallel processor (MPP) system. With a look toward the future, it also introduces the use of general purpose graphics processing units (GPGPUs) for carrying out HPC computations. A companion website at www.hybridmulticoreoptimization.com contains all the examples from the book, along with updated timing results on the latest released processors.
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Fundamentals of Multicore Software Development
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Methods and Applications of Autonomous Experimentation
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The Green Computing Book
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Peer-to-Peer Computing
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Contemporary High Performance Computing
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Introduction to the Simulation of Dynamics Using Simulink
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Introduction to Scheduling
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Introduction to Reversible Computing
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Grid Computing
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The End of Error
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GPU Parallel Program Development Using CUDA
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Software Engineering for Science
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Parallel Programming with Co-arrays
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Scientific Computing with Multicore and Accelerators
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Data-Intensive Science
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Introduction to Modeling and Simulation with MATLAB (R) and Python
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Introduction to Computational Models with Python
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Every Bit Counts
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Introduction to High Performance Computing for Scientists and Engineers
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Elements of Parallel Computing
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Fundamentals of Parallel Multicore Architecture
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Programming for Hybrid Multi/Manycore MPP Systems
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Computational Methods in Plasma Physics
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Unmatched
John Levesque works in the Chief Technology Office at Cray Inc., where he is responsible for application performance on Cray’s HPC systems. He is also director of Cray’s Supercomputing Center of Excellence at the Oak Ridge National Laboratory (ORNL). ORNL was the first site to install a Petaflop Cray XT5 system, Jaguar; as of June 2010, it is the fastest computer in the world according to the TOP500 list.
For the past 40 years, Mr. Levesque has optimized scientific application programs for successful HPC systems. He is an expert in application tuning and compiler analysis of scientific applications.
Gene Wagenbreth is a senior system programmer in the Information Sciences Institute at the University of Southern California, where he is applying GPGPU technology in sparse matrix solvers, image tomography, and real-time computational fluid dynamics. He also presents courses on the use and programming of GPUs.
Since the 1970s, Mr. Wagenbreth has worked with most of the highest performance computers, including Cray models, other vector processors, hypercubes, and clusters. He has worked with shared and distributed memory computers using MPI, OpenMP, pthreads, and other techniques. He has also applied parallel processing in numerous fields, including seismic analysis, reservoir simulation, weather forecasting, and battlefield simulations.
| SKU | Unavailable |
| ISBN 13 | 9781138372689 |
| ISBN 10 | 1138372684 |
| Title | High Performance Computing |
| Author | John Levesque |
| Series | Chapman And Hall Crc Computational Science |
| Condition | Unavailable |
| Binding Type | Paperback |
| Publisher | CRC Press LLC |
| Year published | 2018-09-10 |
| Number of pages | 244 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |























