An important aspect of High-Performance Computing (HPC) system design is the choice of main memory capacity. This choice becomes increasingly important now that 3D-stacked memories are entering the market. Compared with conventional Dual In-line Memory Modules (DIMMs), 3D memory chiplets provide better performance and energy efficiency but lower memory capacities. Therefore, the adoption of 3D-stacked memories in the HPC domain depends on whether we can find use cases that require much less memory than is available now. This study analyzes the memory capacity requirements of important HPC benchmarks and applications. We find that the High-Performance Conjugate Gradients (HPCG) benchmark could be an important success story for 3D-stacked ...
Abstract—Memory size has long limited large-scale appli-cations on high-performance computing (HPC) ...
Abstract—Memory size has long limited large-scale appli-cations on high-performance computing (HPC) ...
There is a need to increase performance under the same power and area envelope to achieve Exascale t...
An important aspect of High-Performance Computing (HPC) system design is the choice of main memory c...
An important aspect of High-Performance Computing (HPC) system design is the choice of main memory c...
This study analyzes the memory capacity requirements of important HPC benchmarks and applications. W...
An important aspect of High-Performance Computing (HPC) system design is the choice of main memory c...
This study analyzes the memory capacity requirements of important HPC benchmarks and applications. W...
A major contributor to the deployment and operational costs of a large-scale high-performance comput...
A major contributor to the deployment and operational costs of a large-scale high-performance comput...
Over the last three decades, innovations in the memory subsystem were primarily targeted at overcomi...
Current HPC systems provide memory resources that are statically configured and tightly coupled with...
Artículo invitado, publicado en las actas del congreso por IEEE Society Press. Páginas 320 a 328. IS...
Disaggregated memory has recently been proposed as a way to allow flexible and fine-grained allocati...
First defined two decades ago, the memory wall remains a fundamental limitation to system performanc...
Abstract—Memory size has long limited large-scale appli-cations on high-performance computing (HPC) ...
Abstract—Memory size has long limited large-scale appli-cations on high-performance computing (HPC) ...
There is a need to increase performance under the same power and area envelope to achieve Exascale t...
An important aspect of High-Performance Computing (HPC) system design is the choice of main memory c...
An important aspect of High-Performance Computing (HPC) system design is the choice of main memory c...
This study analyzes the memory capacity requirements of important HPC benchmarks and applications. W...
An important aspect of High-Performance Computing (HPC) system design is the choice of main memory c...
This study analyzes the memory capacity requirements of important HPC benchmarks and applications. W...
A major contributor to the deployment and operational costs of a large-scale high-performance comput...
A major contributor to the deployment and operational costs of a large-scale high-performance comput...
Over the last three decades, innovations in the memory subsystem were primarily targeted at overcomi...
Current HPC systems provide memory resources that are statically configured and tightly coupled with...
Artículo invitado, publicado en las actas del congreso por IEEE Society Press. Páginas 320 a 328. IS...
Disaggregated memory has recently been proposed as a way to allow flexible and fine-grained allocati...
First defined two decades ago, the memory wall remains a fundamental limitation to system performanc...
Abstract—Memory size has long limited large-scale appli-cations on high-performance computing (HPC) ...
Abstract—Memory size has long limited large-scale appli-cations on high-performance computing (HPC) ...
There is a need to increase performance under the same power and area envelope to achieve Exascale t...