206_wagner.jpg

David Wagner

Usable Security Electronic Voting Security Program Analysis For Security Sensor Network Security Applied Cryptography
733 Soda Hall
University of California at Berkeley CS Faculty Uc berkeley

About

David Wagner earned an A. B. in Mathematics from Princeton, and M.S./Ph.D. degrees from UC Berkeley where he was advised by Eric Brewer. His research interests include computer security, systems security, usable security, and program analysis for security. He has previously worked on security for wearable devices, smartphone security, software security, electronic voting, wireless security, sensor network security, and applied cryptography. He has published two books and over 90 peer-reviewed scientific papers. Wagner is part of Berkeley's security research group. He was a PI for the Intel Science and Technology Center for Secure Computing and an active member of the TRUST and ACCURATE centers, is part of the Science of Security project. His software includes: OpenCount, a tool to help with auditing of elections conducted using optical-scan paper ballots; Joe-E, a Java-based programming language for secure programming; html-sanitizer-testbed, a suite of tests to probe the security of a HTML sanitizer; and CQual++, a tool for type inference analysis of C and C++ code. Wagner is a member of the U.S. Election Assistance Commission (EAC)'s Technical Guidelines Development Committee, tasked with assisting the EAC in drafting the Voluntary Voting System Guidelines. He was on the program committees of NDSS (2015, 2016), the WWW Security and Privacy track (2016), Usenix Security (2015), MObile Security Technologies (2015), and the Symposium On Usable Privacy and Security (2015). Wagner also served on the committee for the NSA Award for the Best Scientific Cybersecurity Paper, and on the editorial boards for CACM Research Highlights, and the Journal of Election Technology and Systems (JETS). He is a committed and active member of the open-access publication community.

Research Performance Summary

406
Total Papers
91292
Total Citations
106
H-Index
1976-2025
Active Research Span

First Recorded Paper

EFFECT OF OXYGEN ENRICHED INSPIRED GAS ON INTRAMYOCARDIAL OXYGEN-TENSION FOLLOWING EXPERIMENTAL CORONARY-ARTERY LIGATION-FAILURE OF INFARCTED AND ISCHEMIC MUSCLE TO DEMONSTRATE …

Year: 1976

Citations: 0

Venue: CLINICAL RESEARCH 24 (2), A84-A84

Latest Recorded Paper

Towards Controllable Language Models With Instruction Hierarchies

Year: 2025

Citations: 0

Venue: N/A

Last 10 Years Publication Activity

This timeline shows the professor's yearly publication activity.

2025
16
2024
11
2023
9
2022
5
2021
13
2020
7
2019
6
2018
10
2017
12
2016
11
2015
8

Publication Venues and Collaboration

Journal, Conference, and Book Publication Breakdown

Conference 210
Journal 17
Book 15

Top Coauthors

Wagner Chen

Research Impact by Period

2025-2026

Period Stats
Papers 16
Citations 360
Avg. Citations / Paper 22.5
H-Index 7

2020-2024

Period Stats
Papers 45
Citations 2521
Avg. Citations / Paper 56
H-Index 23

2015-2019

Period Stats
Papers 47
Citations 25830
Avg. Citations / Paper 549.6
H-Index 28

2010-2014

Period Stats
Papers 55
Citations 11304
Avg. Citations / Paper 205.5
H-Index 31

2005-2009

Period Stats
Papers 74
Citations 4487
Avg. Citations / Paper 60.6
H-Index 34

2000-2004

Period Stats
Papers 92
Citations 35505
Avg. Citations / Paper 385.9
H-Index 46

1995-1999

Period Stats
Papers 57
Citations 9776
Avg. Citations / Paper 171.5
H-Index 32

1990-1994

Period Stats
Papers 8
Citations 1430
Avg. Citations / Paper 178.8
H-Index 3

1985-1989

Period Stats
Papers 6
Citations 34
Avg. Citations / Paper 5.7
H-Index 2

1980-1984

Period Stats
Papers 2
Citations 9
Avg. Citations / Paper 4.5
H-Index 2

1975-1979

Period Stats
Papers 4
Citations 36
Avg. Citations / Paper 9
H-Index 2

Contact and Professional Links

Contact Information

daw@cs.berkeley.edu
5106422758

Detected Research Keywords

Against Prompt Injection Real Time Cryptanalysis Time Cryptanalysis A5 Defending Against Prompt Wireless Sensor Networks Cryptanalysis A5 Pc Cryptographic Voting Protocols Defending Against Adversarial Finite Element Method Finite Element Analysis