As power has become the pre-eminent design constraint for future HPC systems, computational efficiency is being emphasized over simply peak performance. Recently, static benchmark codes have been used to find a power efficient architecture. Unfortunately, because compilers generate sub-optimal code, benchmark performance can be a poor indicator of the performance potential of architecture design points. Therefore, we present hardware/software cotuning as a novel approach for system design, in which traditional architecture space exploration is tightly coupled with software auto-tuning for delivering substantial improvements in area and power efficiency. We demonstrate the proposed methodology by exploring the parameter space of a Tensilica-...
We are witnessing a dramatic change in computer architecture due to the multicore paradigm shift, as...
AbstractTwo decades of microprocessor architecture driven by quantitative 90/10 optimization has del...
Energy consumption is one of the top challenges for achieving the next generation of supercomputing....
As power has become the pre-eminent design constraint for future HPC systems, computational efficien...
Technology scaling trends have enabled the exponential growth of computing power. However, the perfo...
We present an auto-tuning approach to optimize application performance on emerging multicore archite...
High Performance Computing (HPC) aims at providing reasonably fast computing solutions to both scien...
The landscape of High Performance Computing (HPC) system architectures keeps expanding with new tech...
Cavazos, JohnAs the high-performance computing (HPC) community continues the push towards exascale ...
High Performance Computing (HPC) has become an indispensable tool for the scientific community to pe...
Power and energy efficiency are important challenges for the High Performance Computing (HPC) commun...
High Performance Computing (HPC) aims at providing reasonably fast computing solutions to scientific...
We are witnessing a dramatic change in computer architecture due to the multicore paradigm shift, as...
In order to operate within power supply constraints, the next generation of supercomputers must be e...
In recent years reducing power has become a critical design goal for high-performance microprocessor...
We are witnessing a dramatic change in computer architecture due to the multicore paradigm shift, as...
AbstractTwo decades of microprocessor architecture driven by quantitative 90/10 optimization has del...
Energy consumption is one of the top challenges for achieving the next generation of supercomputing....
As power has become the pre-eminent design constraint for future HPC systems, computational efficien...
Technology scaling trends have enabled the exponential growth of computing power. However, the perfo...
We present an auto-tuning approach to optimize application performance on emerging multicore archite...
High Performance Computing (HPC) aims at providing reasonably fast computing solutions to both scien...
The landscape of High Performance Computing (HPC) system architectures keeps expanding with new tech...
Cavazos, JohnAs the high-performance computing (HPC) community continues the push towards exascale ...
High Performance Computing (HPC) has become an indispensable tool for the scientific community to pe...
Power and energy efficiency are important challenges for the High Performance Computing (HPC) commun...
High Performance Computing (HPC) aims at providing reasonably fast computing solutions to scientific...
We are witnessing a dramatic change in computer architecture due to the multicore paradigm shift, as...
In order to operate within power supply constraints, the next generation of supercomputers must be e...
In recent years reducing power has become a critical design goal for high-performance microprocessor...
We are witnessing a dramatic change in computer architecture due to the multicore paradigm shift, as...
AbstractTwo decades of microprocessor architecture driven by quantitative 90/10 optimization has del...
Energy consumption is one of the top challenges for achieving the next generation of supercomputing....