EDBT 2026 Demo / reviewers in the wild / expert
John Griswell
dblp:91/5445
· DBLP profile ↗
2ranked-venue papers
0as first author
0since 2021 · last 2006
—ORCID · none
Domains — the database's venue-derived domains; a paper can count in several
Systems, architecture and hardware · 1Software engineering, systems software and programming languages · 1
Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.
| Computer architecture, parallel and distributed computing, and storage systems
1 paper |
Energy-efficient computing · 70% Processor architecture and microarchitecture · 30% |
Topics — the 4 heaviest of 4, each with the papers that count most for it
| Topic | Weight | Papers | Last | Evidence papers |
|---|---|---|---|---|
Energy-efficient computing
clock gating |
0.1 | 1 | 2005 | Stretching the Limits of Clock-Gating Efficiency in Server-Class Processors · HPCA 2005 |
Processor architecture and microarchitecture › pipelining
pipeline design |
0.1 | 1 | 2005 | Stretching the Limits of Clock-Gating Efficiency in Server-Class Processors · HPCA 2005 |
Energy-efficient computing
power management |
0.1 | 1 | 2005 | Stretching the Limits of Clock-Gating Efficiency in Server-Class Processors · HPCA 2005 |
Energy-efficient computing
leakage power |
0.0 | 1 | 2005 | Stretching the Limits of Clock-Gating Efficiency in Server-Class Processors · HPCA 2005 |
Methods — techniques the papers use, named apart from their topics
transparent pipeline clock-gating · 0.1elastic pipeline clock-gating · 0.1
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2006 | Automatic testcase synthesis and performance model validation for high performance PowerPC processorsabstractThe latest high-performance IBM PowerPC microprocessor, the POWERS chip, poses challenges for performance model validation. The current state-of-the-art is to use simple hand-coded bandwidth and latency testcases, but these are not comprehensive for processors as complex as the POWER5 chip. Applications and benchmark suites such as SPEC CPU are difficult to set up or take too long to execute on functional models or even on detailed performance models. We present an automatic testcase synthesis methodology to address these concerns. By basing testcase synthesis on the workload characteristics of an application, source code is created that largely represents the performance of the application, but which executes in a fraction of the runtime. We synthesize representative PowerPC versions of the SPEC2000, STREAM, TPC-C and Java benchmarks, compile and execute them, and obtain an average IPC within 2.4% of the average IPC of the original benchmarks and with many similar average workload characteristics. The synthetic testcases often execute two orders of magnitude faster than the original applications, typically in less than 300K instructions, making performance model validation for today's complex processors feasible. Robert H. Bell Jr., Rajiv R. Bhatia, Lizy Kurian John, Jeffrey Stuecheli, John Griswell, Yiliu Tu, Louis Capps, Anton Blanchard, Ravel Thai |
ISPASS | 5 |
| 2005 | Stretching the Limits of Clock-Gating Efficiency in Server-Class ProcessorsabstractClock-gating has been introduced as the primary means of dynamic power management in recent high-end commercial microprocessors. The temperature drop resulting from active power reduction can result in additional leakage power savings in future processors. In this paper we first examine the realistic benefits and limits of clock-gating in current generation high-performance processors (e.g. of the POWER4/spl trade/ or POWER5/spl trade/ class). We then look beyond classical clock-gating: we examine additional opportunities to avoid unnecessary clocking in real workload executions. In particular, we examine the power reduction benefits of a couple of newly invented schemes called transparent pipeline clock-gating and elastic pipeline clock-gating. Based on our experiences with current designs, we try to bound the practical limits of clock gating efficiency in future microprocessors. Hans M. Jacobson, Pradip Bose, Alper Buyuktosunoglu, Victor V. Zyuban, Richard J. Eickemeyer, Lee Eisen, John Griswell, Doug Logan, Balaram Sinharoy, Joel M. Tendler |
HPCA | 8 |