Zobrazeno 1 - 10
of 15
pro vyhledávání: '"Connor Imes"'
Autor:
Ahsan Pervaiz, Yao Hsiang Yang, Adam Duracz, Ferenc Bartha, Ryuichi Sai, Connor Imes, Robert Cartwright, Krishna Palem, Shan Lu, Henry Hoffmann
Publikováno v:
Proceedings of the 2022 ACM SIGPLAN International Symposium on New Ideas, New Paradigms, and Reflections on Programming and Software.
Autor:
Yang Hu, Connor Imes, Xuanang Zhao, Souvik Kundu, Peter A. Beerel, Stephen P. Crago, John Paul Walters
Publikováno v:
2022 25th Euromicro Conference on Digital System Design (DSD).
Publikováno v:
2021 IEEE High Performance Extreme Computing Conference (HPEC).
Autor:
Robert Cartwright, Yan Pei, Krishna V. Palem, Connor Imes, Saeid Barati, Andrew Wright, Ryuichi Sai, Henry Hoffmann, Keshav Pingali, Ferenc Bartha, Swarnendu Biswas, Arvind, Dung Nguyen, Jason E. Miller, Yao-Hsiang Yang, Sizhuo Zhang, Adam Duracz, Nikita Mishra, Donald S. Fussell
Publikováno v:
IEEE Software. 36:73-82
Our software framework, Proteus, treats adaptation as a first-class object, enabling rapid development of robust, adaptive applications. Proteus developers specify their programs' intent and adaptable components (or knobs). A control-theoretic runtim
Autor:
Ajitesh Srivastava, Naifeng Zhang, Alexei Colin, Viktor K. Prasanna, John Paul Walters, Connor Imes
Publikováno v:
ESPM2@SC
As HPC progresses toward exascale, writing applications that are highly efficient, portable, and support programmer productivity is becoming more challenging than ever. The growing scale, diversity, and heterogeneity in compute platforms increases th
Publikováno v:
2020 IEEE/ACM 6th Workshop on the LLVM Compiler Infrastructure in HPC (LLVM-HPC) and Workshop on Hierarchical Parallelism for Exascale Computing (HiPar).
As the number of processor cores and sockets on HPC compute nodes increase and systems expose more hierarchical non-uniform memory access (NUMA) architectures, efficiently scaling applications within even a single shared memory system is becoming mor
Publikováno v:
ASPLOS
Many modern computing systems must provide reliable latency with minimal energy. Two central challenges arise when allocating system resources to meet these conflicting goals: (1) complexity modern hardware exposes diverse resources with complicated
Publikováno v:
ICAC
Dynamic voltage and frequency scaling (DVFS) has been the cornerstone of innumerable software approaches to meeting application timing requirements with minimal energy. However, recent trends in technology—e.g., moving voltage converters on chip—
Publikováno v:
ICPP
Resource scheduling in high performance computing (HPC) usually aims to minimize application runtime rather than optimize for energy efficiency. Most existing research on reducing power and energy consumption imposes the constraint that little or no
Autor:
Connor Imes, Henry Hoffmann
Publikováno v:
ACM SIGBED Review. 11:49-54
This paper explores the problem of energy optimization in embedded platforms. Specifically, it studies resource allocation strategies for meeting performance constraints with minimal energy consumption. We present a comparison of solutions for both h