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Dive into the research topics where Michael Ignatowski is active.

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Featured researches published by Michael Ignatowski.


high performance distributed computing | 2014

TOP-PIM: throughput-oriented programmable processing in memory

Dong Ping Zhang; Nuwan Jayasena; Alexander Lyashevsky; Joseph L. Greathouse; Lifan Xu; Michael Ignatowski

As computation becomes increasingly limited by data movement and energy consumption, exploiting locality throughout the memory hierarchy becomes critical to continued performance scaling. Moving computation closer to memory presents an opportunity to reduce both energy and data movement overheads. We explore the use of 3D die stacking to move memory-intensive computations closer to memory. This approach to processing in memory addresses some drawbacks of prior research on in-memory computing and is commercially viable in the foreseeable future. Because 3D stacking provides increased bandwidth, we study throughput-oriented computing using programmable GPU compute units across a broad range of benchmarks, including graph and HPC applications. We also introduce a methodology for rapid design space exploration by analytically predicting performance and energy of in-memory processors based on metrics obtained from execution on todays GPU hardware. Our results show that, on average, viable PIM configurations show moderate performance losses (27%) in return for significant energy efficiency improvements (76\% reduction in EDP) relative to a representative mainstream GPU at 22nm technology. At 16nm technology, on average, viable PIM configurations are performance competitive with a representative mainstream GPU (7% speedup) and provide even greater energy efficiency improvements (85\% reduction in EDP).


Archive | 2012

Die-stacked memory device providing data translation

Gabriel H. Loh; Bradford M. Beckmann; James M. O'Connor; Michael Ignatowski; Michael J. Schulte; Lisa R. Hsu; Nuwan Jayasena


Archive | 2012

Stacked memory device with helper processor

Yasuko Watanabe; Gabriel H. Loh; James M. O'Connor; Michael Ignatowski; Nuwan Jayasena


Archive | 2012

Quality of service support using stacked memory device with logic die

Lisa R. Hsu; Gabriel H. Loh; Bradford M. Beckmann; Michael Ignatowski


Archive | 2012

DIE-STACKED MEMORY DEVICE WITH RECONFIGURABLE LOGIC

Nuwan Jayasena; Michael J. Schulte; Gabriel H. Loh; Michael Ignatowski


Archive | 2012

CACHE COHERENCY USING DIE-STACKED MEMORY DEVICE WITH LOGIC DIE

Gabriel H. Loh; Bradford M. Beckmann; Lisa R. Hsu; Michael Ignatowski; Michael J. Schulte


Archive | 2012

STACKED MEMORY DEVICE WITH METADATA MANGEMENT

Gabriel H. Loh; James M. O'Connor; Bradford M. Beckmann; Michael Ignatowski


Archive | 2012

PREFETCHING FUNCTIONALITY ON A LOGIC DIE STACKED WITH MEMORY

Gabriel H. Loh; Nuwan Jayasena; James M. O'Connor; Michael J. Schulte; Michael Ignatowski


Archive | 2011

Memory architecture for read-modify-write operations

Gabriel H. Loh; James M. O'Connor; Michael Ignatowski; Nuwan Jayasena; Bradford M. Beckmann


Archive | 2012

METHOD AND APPARATUS FOR CONTROLLING STATE INFORMATION RETENTION IN AN APPARATUS

David E. Mayhew; Mark D. Hummel; Michael Ignatowski

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Lisa R. Hsu

Advanced Micro Devices

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Mark Nutter

Advanced Micro Devices

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