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OpenCL* Device Fission for CPU Performance

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Download OpenCL* Device Fission for CPU Performance [PDF 762KB]  

Автор: Последнее обновление: 31.05.2019 - 14:10
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Programming for Multicore and Many-core Products including Intel® Xeon® processors and Intel® Xeon Phi™ X100 Product Family coprocessors

The programming models in use today, used for multicore processors every day, are available for many-core coprocessors as well. Therefore, explaining how to program both Intel Xeon processors and Intel Xeon Phi coprocessor is best done by explaining the options for parallel programming. This paper provides the foundation for understanding how multicore processors and many-core coprocessors are...
Автор: James R. (Blackbelt) Последнее обновление: 14.06.2019 - 12:10
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Workshop: Optimizing OpenCL applications for Intel® Xeon Phi™ Coprocessor

The Intel® Xeon Phi™ Coprocessor is designed for highly parallel, high performance demanding applications.

Автор: Arik Narkis (Intel) Последнее обновление: 06.07.2019 - 16:30
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Intel® SDK for OpenCL* Applications XE 2013 Release Notes

Intel® SDK for OpenCL* Applications XE 2013 Release Notes Content
Автор: Jeffrey Mott (Intel) Последнее обновление: 31.05.2019 - 14:10
Article

Using the Intel® SDK for OpenCL™ Applications XE 2013 with the Intel® Xeon Phi™ Coprocessor

Chapter 1 – Introduction

 

Автор: Sumedh N. (Intel) Последнее обновление: 06.07.2019 - 16:30
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Using Basic Capabilities of Multi-Device Systems with OpenCL™

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Автор: Последнее обновление: 31.05.2019 - 14:10
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Monte Carlo Method for Stock Options Pricing Sample

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Автор: Последнее обновление: 31.05.2019 - 14:40
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Working with Intel® Code Builder for OpenCL™ API on Systems Equipped with Intel® Xeon Phi™ x100 Coprocessor

Due to the recent restructuring in OpenCL™ Technology, the Intel® Code Builder for OpenCL™ replaces the Intel® SDK for OpenCL™ Applications.

Автор: Nguyen, Loc Q (Intel) Последнее обновление: 06.07.2019 - 17:10
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N-Body Simulation Project at Cal Poly

The goal of the N-Body problem is to predict the motion of a set of n objects interacting with each other by some force, e.g. the gravitational force. N-Body simulations have been used in particles simulation such as astrophysical and molecular dynamics simulations. There are a number of approaches for solving the N-Body problem, such as the Barnes-Hut algorithm, the Fast Multipole method, the...
Автор: Nguyen, Loc Q (Intel) Последнее обновление: 21.03.2019 - 12:08
Article

Classical Molecular Dynamics Simulations with LAMMPS Optimized for Knights Landing

LAMMPS is an open-source software package that simulates classical molecular dynamics. As it supports many energy models and simulation options, its versatility has made it a popular choice. It was first developed at Sandia National Laboratories to use large-scale parallel computation.
Автор: WILLIAM B. (Intel) Последнее обновление: 21.03.2019 - 12:00