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On the characterization of OpenCL dwarfs on fixed and reconfigurable platforms

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Autore
Krommydas, K.; Feng, W. C.; Owaida, M.; Antonopoulos, C. D.; Bellas, N.
Data
2014
DOI
10.1109/ASAP.2014.6868650
Soggetto
benchmarking
CPU
dwarfs
evaluation
FPGA
GPU
OpenCL
OpenDwarfs
performance characterization
Digital signal processing
Field programmable gate arrays (FPGA)
Hardware
Parallel architectures
Program processors
Reconfigurable hardware
Fixed platforms
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Abstract
The proliferation of heterogeneous computing platforms presents the parallel computing community with new challenges. One such challenge entails evaluating the efficacy of such parallel architectures and identifying the architectural innovations that ultimately benefit applications. To address this challenge, we need benchmarks that capture the execution patterns (i.e., dwarfs or motifs) of applications, both present and future, in order to guide future hardware design. Furthermore, we desire a common programming model for the benchmarks that facilitates code portability across a wide variety of different processors (e.g., CPU, APU, GPU, FPGA, DSP) and computing environments (e.g., embedded, mobile, desktop, server). As such, we present the latest release of OpenDwarfs, a benchmark suite that currently realizes the Berkeley dwarfs in OpenCL, a vendor-agnostic and open-standard computing language for parallel computing. Using OpenDwarfs, we characterize a diverse set of fixed and reconfigurable parallel platforms: multicore CPUs, discrete and integrated GPUs, Intel Xeon Phi coprocessor, as well as a FPGA. We describe the computation and communication patterns exposed by a representative set of dwarfs, obtain relevant profiling data and execution information, and draw conclusions that highlight the complex interplay between dwarfs' patterns and the underlying hardware architecture of modern parallel platforms. © 2014 IEEE.
URI
http://hdl.handle.net/11615/30052
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