DocumentCode :
2026721
Title :
Analysis of asymmetric 3D DRAM architecture in combination with L2 cache size reduction
Author :
Schoenberger, Alex ; Hofmann, Klaus
Author_Institution :
Integrated Electron. Syst. Lab., Tech. Univ. Darmstadt, Darmstadt, Germany
fYear :
2015
fDate :
20-24 July 2015
Firstpage :
123
Lastpage :
128
Abstract :
Memory is a heterogeneous complex in modern systems. Access time and bandwidth improvement of DRAM using die-stacking technology can only be evaluated by interacting with hardware components like underlying cache, CPU and software components like executed application and processed input. In this work we analyze encoding and decoding processes of JPEG2000 algorithm execution on MIPS I core for different picture sizes. Thereby we can observe that for picture sizes below particular critical value the DRAM share of execution time reaches max. 4%. Any DRAM improvement for this case would not lead to significant performance gain of whole system. Starting with particular picture size depending on last-level cache size the acceleration effect of cache falls off and DRAM influence rises up to 25% and remains for larger pictures. System-level estimation shows that our suggested 3D DRAM architecture can reduce that rise down to a third and is partially able to adopt cache functionality.
Keywords :
DRAM chips; cache storage; image coding; 3D DRAM architecture; CPU; JPEG2000 algorithm; L2 cache size reduction; MIPS I core; access time; asymmetric 3D DRAM architecture; bandwidth improvement; cache functionality; die-stacking technology; last-level cache size; picture sizes; software components; underlying cache; Computer architecture; Decoding; Delays; Encoding; Random access memory; Runtime; Three-dimensional displays; 3D DRAM; JPEG2000; L2 Cache; locality principle;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High Performance Computing & Simulation (HPCS), 2015 International Conference on
Conference_Location :
Amsterdam
Print_ISBN :
978-1-4673-7812-3
Type :
conf
DOI :
10.1109/HPCSim.2015.7237030
Filename :
7237030
Link To Document :
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