Kevin Normoyle

dblp:67/6608 · DBLP profile ↗
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3ranked-venue papers
0as first author
0since 2021 · last 2004
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Systems, architecture and hardware · 1Computer networks · 1Software engineering, systems software and programming languages · 1Applied, interdisciplinary, general and emerging computing · 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
2 papers
Electronic design automation · 60% Processor architecture and microarchitecture · 17% Memory systems · 15%

Topics — the 9 heaviest of 9, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Electronic design automation › hardware verification and test
functional verification
0.012004
Verification: what works and what doesn't · DAC 2004
Electronic design automation › hardware verification and test
hardware verification
0.012004
Verification: what works and what doesn't · DAC 2004
Electronic design automation
hardware simulation
0.012004
Verification: what works and what doesn't · DAC 2004
Memory systems
cache design
0.011995
The design of the microarchitecture of UltraSPARC-I · Proc. IEEE 1995
Processor architecture and microarchitecture › microprocessor design › processor core design
in-order execution
0.011995
The design of the microarchitecture of UltraSPARC-I · Proc. IEEE 1995
Memory systems
memory hierarchy
0.011995
The design of the microarchitecture of UltraSPARC-I · Proc. IEEE 1995
Interconnection networks and networks-on-chip
on-chip interconnect
0.011995
The design of the microarchitecture of UltraSPARC-I · Proc. IEEE 1995
Processor architecture and microarchitecture
superscalar processor
0.011995
The design of the microarchitecture of UltraSPARC-I · Proc. IEEE 1995
Processor architecture and microarchitecture › microprocessor design › processor core design
functional units
0.011995
The design of the microarchitecture of UltraSPARC-I · Proc. IEEE 1995

Methods — techniques the papers use, named apart from their topics

microarchitecture tradeoff analysis · 0.0
YearPublicationVenuePosition
2004 Verification: what works and what doesn't
abstract
Today's leading chip and system companies are faced with ever increasing design verification challenges; industry studies reveal that as much as 50% of the total schedule is being spent in verification. Large companies, with almost infinite resources, have shown that throwing CPU cycles and people at the simulation problem still doesn't guarantee a level of coverage desired by the design team.
Francine Bacchini, Robert F. Damiano, Bob Bentley, Kurt Baty, Kevin Normoyle, Makoto Ishii, Einat Yogev
DAC5
2002 Innovative Verification Techniques Used in the Implementation of a Third-Generation 1.1GHz 64b Microprocessor
Victor Melamed, Harry Stuimer, David Wilkins, Lawrence Chang, Kevin Normoyle, Sutikshan Bhutani
FORTE5
1995 The design of the microarchitecture of UltraSPARC-I
abstract
The realization of a high performance modern microprocessor involves hundreds of person-years of conception, logic design, circuit design, layout drawing, etc. In order to leverage effectively the 5-10 millions of transistors available, careful microarchitecture tradeoff analysis must be performed. This paper describes not only the microarchitecture of UltraSPARC-I, a 167 MHz 64-b four-way superscalar processor, but more importantly it presents the analysis and tradeoffs that were made "en route" to the final chip. Among several issues, the in-order execution model is compared with alternatives, variations of the issue-width of the machine as well as the number of functional units are described, subtle features that are part of the memory hierarchy are explained, and the advantages of the packet-switched interconnect are exposed.
Marc Tremblay, Dale Greenley, Kevin Normoyle
Proc. IEEE3