Media Summary: In this video from SC12, Michael Wolfe from The Portland Group discusses the origins of the Due to their intensive computational workload, materials science codes have been and still are among those which mostly benefit ... The DO CONCURRENT statement, introduced as standard in Fortran 2008, means that applied loops can be executed in parallel.

Openacc Programming For Gpu S - Detailed Analysis & Overview

In this video from SC12, Michael Wolfe from The Portland Group discusses the origins of the Due to their intensive computational workload, materials science codes have been and still are among those which mostly benefit ... The DO CONCURRENT statement, introduced as standard in Fortran 2008, means that applied loops can be executed in parallel. OVERFLOW is an overset, structured computational fluid dynamics (CFD) code written in Fortran which is widely used in the ... First of a series of presentations is a full Numerical ocean models have been developed to study and replicate the ocean's state and understand its impact on climate, ...

The fourth in a series of tutorials for the NCAR and university research communities.

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OpenACC programming for GPU s
9. OpenACC offloading on the P-100 Nvidia GPUs
PGI's Michael Wolfe on OpenACC Directives for GPUs
10. OpenACC offloading on the A-100 Nvidia GPUs
Porting Large-Scale Materials Science Codes to GPUs for Next Generation Exascale Architectures
Evaluation of GPU Offloading Method Using Fortran Standard Parallelization
Porting OVERFLOW CFD Code to GPUs  To Hackathons and Beyond
Introduction to OpenACC on x86 CPU and GPU
Office Hour #1: Introduction to OpenACC
GPU Implementation and Optimization of Numerical Ocean Model with OpenACC
GPU Series: Directive-Based Programming with OpenACC (1 of 2)
Programming Nvidia GPUs with OpenACC Directives
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OpenACC programming for GPU s

OpenACC programming for GPU s

...

9. OpenACC offloading on the P-100 Nvidia GPUs

9. OpenACC offloading on the P-100 Nvidia GPUs

OpenACC

PGI's Michael Wolfe on OpenACC Directives for GPUs

PGI's Michael Wolfe on OpenACC Directives for GPUs

In this video from SC12, Michael Wolfe from The Portland Group discusses the origins of the

10. OpenACC offloading on the A-100 Nvidia GPUs

10. OpenACC offloading on the A-100 Nvidia GPUs

OpenACC

Porting Large-Scale Materials Science Codes to GPUs for Next Generation Exascale Architectures

Porting Large-Scale Materials Science Codes to GPUs for Next Generation Exascale Architectures

Due to their intensive computational workload, materials science codes have been and still are among those which mostly benefit ...

Evaluation of GPU Offloading Method Using Fortran Standard Parallelization

Evaluation of GPU Offloading Method Using Fortran Standard Parallelization

The DO CONCURRENT statement, introduced as standard in Fortran 2008, means that applied loops can be executed in parallel.

Porting OVERFLOW CFD Code to GPUs  To Hackathons and Beyond

Porting OVERFLOW CFD Code to GPUs To Hackathons and Beyond

OVERFLOW is an overset, structured computational fluid dynamics (CFD) code written in Fortran which is widely used in the ...

Introduction to OpenACC on x86 CPU and GPU

Introduction to OpenACC on x86 CPU and GPU

First of a series of presentations is a full

Office Hour #1: Introduction to OpenACC

Office Hour #1: Introduction to OpenACC

The 1st office hour session of the

GPU Implementation and Optimization of Numerical Ocean Model with OpenACC

GPU Implementation and Optimization of Numerical Ocean Model with OpenACC

Numerical ocean models have been developed to study and replicate the ocean's state and understand its impact on climate, ...

GPU Series: Directive-Based Programming with OpenACC (1 of 2)

GPU Series: Directive-Based Programming with OpenACC (1 of 2)

The fourth in a series of tutorials for the NCAR and university research communities.

Programming Nvidia GPUs with OpenACC Directives

Programming Nvidia GPUs with OpenACC Directives

In this video from the

Advanced OpenACC Profiling - Lecture #1, May 2016

Advanced OpenACC Profiling - Lecture #1, May 2016

This is the 1st lecture of the Advanced