AbstractA current challenge for computer users is to fully exploit performance of new Multicore systems. We propose a methodology for students in computational science to analyze the effect of memory hierarchy on application performance. The analysis is proposed in a experimental environment consisting of different systems with different configurations of memory hierarchy. New Multicore systems put tremendous pressure on memory hierarchy systems. The pressure is because, unfortunately, the effectiveness of the computing power offered by Multicore is affected by the data communications inter-chip and off-chip to the memory hierarchy, leading to significant problems in performance for many parallel applications. In the scope of computer scien...
In this paper we describe how to apply powerful performance analysis techniques to understand the be...
In this paper we describe how to apply powerful performance analysis techniques to understand the be...
This online course organised in cooperation with NHR@FAU covers performance engineering approaches o...
AbstractA current challenge for computer users is to fully exploit performance of new Multicore syst...
The multicore era has initiated a move to ubiquitous parallelization of software. In the process, co...
As the number of compute cores per chip continues to rise faster than the total amount of available ...
Hierarchical memory is a cornerstone of modern hardware design because it provides high memory perfo...
Performance and scalability of high performance scientific applications on large scale parallel mach...
Hierarchical memory is a cornerstone of modern hardware design because it provides high memory perfo...
This paper introduces a resource allocation framework specifically tailored for addressing the probl...
We have developed a hierarchical performance bounding methodology that attempts to explain the perfo...
Advances in technology have resulted in a widening of the gap between computing speed and memory acc...
AbstractNowadays, the study of high-performance computing (HPC) is one of the essential aspects of p...
Systems for high performance computing are getting increasingly complex. On the one hand, the number...
The gap between CPU speed and memory speed in modern com-puter systems is widening as new generation...
In this paper we describe how to apply powerful performance analysis techniques to understand the be...
In this paper we describe how to apply powerful performance analysis techniques to understand the be...
This online course organised in cooperation with NHR@FAU covers performance engineering approaches o...
AbstractA current challenge for computer users is to fully exploit performance of new Multicore syst...
The multicore era has initiated a move to ubiquitous parallelization of software. In the process, co...
As the number of compute cores per chip continues to rise faster than the total amount of available ...
Hierarchical memory is a cornerstone of modern hardware design because it provides high memory perfo...
Performance and scalability of high performance scientific applications on large scale parallel mach...
Hierarchical memory is a cornerstone of modern hardware design because it provides high memory perfo...
This paper introduces a resource allocation framework specifically tailored for addressing the probl...
We have developed a hierarchical performance bounding methodology that attempts to explain the perfo...
Advances in technology have resulted in a widening of the gap between computing speed and memory acc...
AbstractNowadays, the study of high-performance computing (HPC) is one of the essential aspects of p...
Systems for high performance computing are getting increasingly complex. On the one hand, the number...
The gap between CPU speed and memory speed in modern com-puter systems is widening as new generation...
In this paper we describe how to apply powerful performance analysis techniques to understand the be...
In this paper we describe how to apply powerful performance analysis techniques to understand the be...
This online course organised in cooperation with NHR@FAU covers performance engineering approaches o...