


default search action
Witawas Srisa-an
Person information
Refine list

refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [i7]Samitha Somathilaka, Adrian Ratwatte, Sasitharan Balasubramaniam, Mehmet Can Vuran
, Witawas Srisa-an, Pietro Liò:
Wet TinyML: Chemical Neural Network Using Gene Regulation and Cell Plasticity. CoRR abs/2403.08549 (2024) - [i6]Salomé Perez-Rosero, Robert Dyer, Samuel W. Flint, Shane McIntosh, Witawas Srisa-an:
WIA-SZZ: Work Item Aware SZZ. CoRR abs/2411.12740 (2024) - 2023
- [j21]Frances Cleary
, Witawas Srisa-an
, David C. Henshall
, Sasitharan Balasubramaniam
:
Emerging AI Technologies Inspiring the Next Generation of E-Textiles. IEEE Access 11: 56494-56508 (2023) - [c56]Tianqi Fang, Lisong Xu, Witawas Srisa-an:
Efficient Verification of Timing-Related Network Functions in High-Speed Hardware. INFOCOM 2023: 1-10 - [c55]Tianqi Fang, Lisong Xu, Witawas Srisa-an, Jay Patel:
Evaluation of the ProgHW/SW Architectural Design Space of Bandwidth Estimation. PAM 2023: 257-283 - [i5]Frances Cleary, Witawas Srisa-an, David C. Henshall, Sasitharan Balasubramaniam:
Dynamic Field Programmable Logic-Driven Soft Exosuit. CoRR abs/2302.08365 (2023) - [i4]Frances Cleary, Witawas Srisa-an, David C. Henshall, Sasitharan Balasubramaniam:
Emerging AI Technologies Inspiring the Next Generation of E-textiles. CoRR abs/2303.03205 (2023) - 2022
- [c54]Bruno Vieira Resende e Silva, Clay Stevens
, Niloofar Mansoor, Witawas Srisa-an
, Tingting Yu, Hamid Bagheri:
SAINTDroid: Scalable, Automated Incompatibility Detection for Android. DSN 2022: 567-579 - [i3]Frances Cleary, Witawas Srisa-an, Beatriz Gil, Jaideep Kesavan, Tobias Engel, David C. Henshall, Sasitharan Balasubramaniam:
Wearable uBrain: Fabric Based-Spiking Neural Network. CoRR abs/2202.12984 (2022) - 2021
- [j20]Lichao Sun
, Bokai Cao, Ji Wang
, Witawas Srisa-an
, Philip S. Yu, Alex D. Leow, Stephen Checkoway:
Kollector: Detecting Fraudulent Activities on Mobile Devices Using Deep Learning. IEEE Trans. Mob. Comput. 20(4): 1465-1476 (2021) - [j19]Yujuan Tan
, Congcong Xu, Jing Xie, Zhichao Yan
, Hong Jiang
, Witawas Srisa-an
, Xianzhang Chen
, Duo Liu
:
Improving the Performance of Deduplication-Based Storage Cache via Content-Driven Cache Management Methods. IEEE Trans. Parallel Distributed Syst. 32(1): 214-228 (2021) - [c53]Zhen Hu, Bruno Vieira Resende e Silva, Hamid Bagheri, Witawas Srisa-an
, Gregg Rothermel, Jackson Dinh:
SEMEO: A Semantic Equivalence Analysis Framework for Obfuscated Android Applications. MobiQuitous 2021: 322-346 - [c52]Shakthi Bachala, Yutaka Tsutano, Witawas Srisa-an, Gregg Rothermel, Jackson Dinh, Yuanjiu Hu:
ReHAna: An Efficient Program Analysis Framework to Uncover Reflective Code in Android. MobiQuitous 2021: 347-374 - 2020
- [j18]Mohannad Alhanahnah
, Qiben Yan
, Hamid Bagheri, Hao Zhou, Yutaka Tsutano, Witawas Srisa-an
, Xiapu Luo
:
DINA: Detecting Hidden Android Inter-App Communication in Dynamic Loaded Code. IEEE Trans. Inf. Forensics Secur. 15: 2782-2797 (2020) - [j17]Yujuan Tan
, Baiping Wang, Zhichao Yan
, Witawas Srisa-an
, Xianzhang Chen
, Duo Liu
:
APMigration: Improving Performance of Hybrid Memory Performance via An Adaptive Page Migration Method. IEEE Trans. Parallel Distributed Syst. 31(2): 266-278 (2020) - [c51]Tianqi Fang, Lisong Xu, Witawas Srisa-an:
Automated Field-based Decomposition to Accelerate Model Checking FPGA-based TCP/IP. ICC 2020: 1-7
2010 – 2019
- 2019
- [j16]Yutaka Tsutano, Shakthi Bachala, Witawas Srisa-an, Gregg Rothermel, Jackson Dinh:
Jitana: A modern hybrid program analysis framework for android platforms. J. Comput. Lang. 52: 55-71 (2019) - [c50]Mohannad Alhanahnah, Qiben Yan
, Hamid Bagheri, Hao Zhou, Yutaka Tsutano, Witawas Srisa-an, Xiapu Luo:
Detecting Vulnerable Android Inter-App Communication in Dynamically Loaded Code. INFOCOM 2019: 550-558 - [c49]Zhiqiang Li, Jun Sun, Qiben Yan
, Witawas Srisa-an, Yutaka Tsutano:
Obfusifier: Obfuscation-Resistant Android Malware Detection System. SecureComm (1) 2019: 214-234 - 2018
- [j15]Tingting Yu
, Witawas Srisa-an
, Myra B. Cohen, Gregg Rothermel:
A hybrid approach to testing for nonfunctional faults in embedded systems using genetic algorithms. Softw. Test. Verification Reliab. 28(7) (2018) - [j14]Jin Li, Lichao Sun
, Qiben Yan
, Zhiqiang Li, Witawas Srisa-an
, Heng Ye
:
Significant Permission Identification for Machine-Learning-Based Android Malware Detection. IEEE Trans. Ind. Informatics 14(7): 3216-3225 (2018) - [j13]Yujuan Tan
, Baiping Wang, Jian Wen, Zhichao Yan
, Hong Jiang
, Witawas Srisa-an
:
Improving Restore Performance in Deduplication-Based Backup Systems via a Fine-Grained Defragmentation Approach. IEEE Trans. Parallel Distributed Syst. 29(10): 2254-2267 (2018) - [c48]Kun Suo, Jia Rao, Hong Jiang, Witawas Srisa-an:
Characterizing and optimizing hotspot parallel garbage collection on multicore systems. EuroSys 2018: 35:1-35:15 - [c47]Mengmei Ye, Jonathan Sherman, Witawas Srisa-an
, Sheng Wei:
TZSlicer: Security-aware dynamic program slicing for hardware isolation. HOST 2018: 17-24 - [c46]Zhichao Yan, Hong Jiang, Witawas Srisa-an
, Sharad C. Seth, Yujuan Tan:
Leverage Redundancy in Hardware Transactional Memory to Improve Cache Reliability. ICPP 2018: 60:1-60:10 - [c45]Zhiqiang Li, Jun Sun, Qiben Yan
, Witawas Srisa-an, Shakthi Bachala:
GranDroid: Graph-Based Detection of Malicious Network Behaviors in Android Applications. SecureComm (1) 2018: 264-280 - [c44]Mengmei Ye, Myra B. Cohen, Witawas Srisa-an, Sheng Wei:
EvoIsolator: Evolving Program Slices for Hardware Isolation Based Security. SSBSE 2018: 377-382 - 2017
- [c43]Lichao Sun
, Xiaokai Wei, Jiawei Zhang, Lifang He, Philip S. Yu, Witawas Srisa-an
:
Contaminant removal for Android malware detection systems. IEEE BigData 2017: 1053-1062 - [c42]Junjie Qian, Hong Jiang, Witawas Srisa-an
, Sharad C. Seth, Stan Skelton, Joseph Moore:
Energy-efficient I/O Thread Schedulers for NVMe SSDs on NUMA. CCGrid 2017: 569-578 - [c41]Yutaka Tsutano, Shakthi Bachala, Witawas Srisa-an, Gregg Rothermel, Jackson Dinh:
An efficient, robust, and scalable approach for analyzing interacting android apps. ICSE 2017: 324-334 - [c40]Lichao Sun, Yuqi Wang, Bokai Cao, Philip S. Yu, Witawas Srisa-an, Alex D. Leow:
Sequential Keystroke Behavioral Biometrics for Mobile User Identification via Multi-view Deep Learning. ECML/PKDD (3) 2017: 228-240 - [e2]Stephen M. Blackburn, Christoph Bockisch, Michael Haupt, Tony Hosking
, Hridesh Rajan, Witawas Srisa-an, Matthias Grimmer, Adam Welc:
Proceedings of the 9th ACM SIGPLAN International Workshop on Virtual Machines and Intermediate Languages, Vancouver, BC, Canada, October 23 - 27, 2017. ACM 2017, ISBN 978-1-4503-5519-3 [contents] - [i2]Lichao Sun, Yuqi Wang, Bokai Cao, Philip S. Yu, Witawas Srisa-an, Alex D. Leow:
Sequential Keystroke Behavioral Biometrics for Mobile User Identification via Multi-view Deep Learning. CoRR abs/1711.02703 (2017) - [i1]Lichao Sun, Xiaokai Wei, Jiawei Zhang, Lifang He
, Philip S. Yu, Witawas Srisa-an:
Contaminant Removal for Android Malware Detection Systems. CoRR abs/1711.02715 (2017) - 2016
- [c39]Supat Rattanasuksun, Tingting Yu, Witawas Srisa-an
, Gregg Rothermel:
RRF: A Race Reproduction Framework for Use in Debugging Process-Level Races. ISSRE 2016: 162-172 - [c38]Lichao Sun
, Zhiqiang Li, Qiben Yan
, Witawas Srisa-an
, Yu Pan:
SigPID: significant permission identification for android malware detection. MALWARE 2016: 59-66 - [c37]Zhiqiang Li, Lichao Sun, Qiben Yan
, Witawas Srisa-an, Zhenxiang Chen:
DroidClassifier: Efficient Adaptive Mining of Application-Layer Header for Classifying Android Malware. SecureComm 2016: 597-616 - [c36]Junjie Qian, Witawas Srisa-an, Sharad C. Seth, Hong Jiang, Du Li, Pan Yi:
Exploiting FIFO Scheduler to Improve Parallel Garbage Collection Performance. VEE 2016: 109-121 - [e1]Antony L. Hosking
, Witawas Srisa-an
:
Proceedings of the 8th International Workshop on Virtual Machines and Intermediate Languages, VMIL@SPLASH 2016, Amsterdam, The Netherlands, October 31, 2016. ACM 2016, ISBN 978-1-4503-4645-0 [contents] - 2015
- [c35]Junjie Qian, Du Li, Witawas Srisa-an, Hong Jiang, Sharad C. Seth:
Factors affecting scalability of multithreaded Java applications on manycore systems. ISPASS 2015: 167-168 - [c34]Junjie Qian, Witawas Srisa-an, Du Li, Hong Jiang, Sharad C. Seth, Yaodong Yang:
SmartStealing: Analysis and Optimization of Work Stealing in Parallel Garbage Collection for Java VM. PPPJ 2015: 170-181 - 2014
- [j12]Tingting Yu, Ahyoung Sung, Witawas Srisa-an, Gregg Rothermel:
An approach to testing commercial embedded systems. J. Syst. Softw. 88: 207-230 (2014) - [c33]Tingting Yu, Witawas Srisa-an, Gregg Rothermel:
SimRT: an automated framework to support regression testing for data races. ICSE 2014: 48-59 - [c32]Tingting Yu, Witawas Srisa-an, Myra B. Cohen, Gregg Rothermel:
SimLatte: A Framework to Support Testing for Worst-Case Interrupt Latencies in Embedded Software. ICST 2014: 313-322 - 2013
- [c31]Tingting Yu, Witawas Srisa-an, Gregg Rothermel:
An empirical comparison of the fault-detection capabilities of internal oracles. ISSRE 2013: 11-20 - [c30]Tingting Yu, Witawas Srisa-an, Gregg Rothermel:
SimRacer: an automated framework to support testing for process-level races. ISSTA 2013: 167-177 - 2012
- [c29]Tingting Yu, Witawas Srisa-an, Gregg Rothermel:
SimTester: a controllable and observable testing framework for embedded systems. VEE 2012: 51-62 - 2011
- [c28]Tingting Yu, Ahyoung Sung, Witawas Srisa-an
, Gregg Rothermel:
Using Property-Based Oracles when Testing Embedded System Applications. ICST 2011: 100-109 - [c27]Du Li, Witawas Srisa-an, Matthew B. Dwyer
:
SOS: saving time in dynamic race detection with stationary analysis. OOPSLA 2011: 35-50 - [c26]Du Li, Witawas Srisa-an:
Quarantine: a framework to mitigate memory errors in JNI applications. PPPJ 2011: 1-10 - 2010
- [c25]Ahyoung Sung, Witawas Srisa-an
, Gregg Rothermel, Tingting Yu:
Testing Inter-layer and Inter-task Interactions in RTES Applications. APSEC 2010: 260-269 - [c24]Witawas Srisa-an
, Myra B. Cohen, Yu Shang, Mithuna Soundararaj:
A self-adjusting code cache manager to balance start-up time and memory usage. CGO 2010: 82-91
2000 – 2009
- 2009
- [c23]Xiaohua Guan, Witawas Srisa-an
, ChengHuan Jia:
Investigating the effects of using different nursery sizing policies on performance. ISMM 2009: 59-68 - 2008
- [j11]Feng Xian, Witawas Srisa-an, Hong Jiang:
Garbage collection: Java application servers' Achilles heel. Sci. Comput. Program. 70(2-3): 89-110 (2008) - [c22]Feng Xian, Witawas Srisa-an, Hong Jiang:
Contention-aware scheduler: unlocking execution parallelism in multithreaded java programs. OOPSLA 2008: 163-180 - 2007
- [c21]Feng Xian, Witawas Srisa-an, ChengHuan Jia, Hong Jiang:
AS-GC: An Efficient Generational Garbage Collector for Java Application Servers. ECOOP 2007: 126-150 - [c20]Feng Xian, Witawas Srisa-an, Hong Jiang:
Allocation-phase aware thread scheduling policies to improve garbage collection performance. ISMM 2007: 79-90 - [c19]Feng Xian, Witawas Srisa-an, Hong Jiang:
Microphase: an approach to proactively invoking garbage collection for improved performance. OOPSLA 2007: 77-96 - 2006
- [j10]David J. Anthony, Witawas Srisa-an, Michael Leung:
An Empirical Study of the Code Pitching Mechanism in the .NET Framework. J. Object Technol. 5(3): 107-127 (2006) - [c18]Feng Xian, Witawas Srisa-an, Hong Jiang:
Evaluating Hardware Support for Reference Counting Using Software Configurable Processors. ASAP 2006: 297-302 - [c17]Myra B. Cohen, Shiu Beng Kooi, Witawas Srisa-an:
Clustering the heap in multi-threaded applications for improved garbage collection. GECCO 2006: 1901-1908 - [c16]Feng Xian, Witawas Srisa-an, Hong Jiang:
Service oriented garbage collection: improving performance and robustness of application servers. OOPSLA Companion 2006: 661-662 - [c15]Feng Xian, Witawas Srisa-an, Hong Jiang:
Investigating throughput degradation behavior of Java application servers: a view from inside a virtual machine. PPPJ 2006: 40-49 - 2005
- [j9]Witawas Srisa-an, Mulyadi Oey:
Remote Objects: The Next Garbage Collection Challenge. J. Object Technol. 4(4): 154-172 (2005) - [c14]Paul A. Griffin, Witawas Srisa-an, J. Morris Chang:
An energy efficient garbage collector for java embedded devices. LCTES 2005: 230-238 - [c13]Feng Xian, Witawas Srisa-an, Hong Jiang:
Fortune teller: improving garbage collection performance in server environment using live objects prediction. OOPSLA Companion 2005: 246-248 - [c12]Witawas Srisa-an, Mulyadi Oey, Sebastian G. Elbaum:
Garbage Collection in the Presence of Remote Objects: An Empirical Study. OTM Conferences (2) 2005: 1065-1082 - [c11]Paul A. Griffin, Witawas Srisa-an, J. Morris Chang:
On designing a low-power garbage collector for java embedded devices: a case study. SAC 2005: 868-873 - 2004
- [j8]Chia-Tien Dan Lo, Witawas Srisa-an, J. Morris Chang:
The design and analysis of a quantitative simulator for dynamic memory management. J. Syst. Softw. 72(3): 443-453 (2004) - [c10]Wei Huang, Yang Qian, Witawas Srisa-an, J. Morris Chang:
Object allocation and memory contention study of Java multithreaded applications. IPCCC 2004: 375-382 - [c9]Wei Huang, Witawas Srisa-an, J. Morris Chang:
Dynamic pretenuring schemes for generational garbage collection. ISPASS 2004: 133-140 - 2003
- [j7]Witawas Srisa-an, Chia-Tien Dan Lo, J. Morris Chang:
Active Memory Processor: A Hardware Garbage Collector for Real-Time Java Embedded Devices. IEEE Trans. Mob. Comput. 2(2): 89-101 (2003) - 2002
- [j6]J. Morris Chang, Witawas Srisa-an, Chia-Tien Dan Lo, Edward F. Gehringer
:
DMMX: Dynamic memory management extensions. J. Syst. Softw. 63(3): 187-199 (2002) - [j5]Witawas Srisa-an, Chia-Tien Dan Lo, J. Morris Chang:
Object resizing and reclamation through the use of hardware bit-maps. Microprocess. Microsystems 25(9-10): 459-467 (2002) - [j4]Witawas Srisa-an, Chia-Tien Dan Lo, J. Morris Chang:
A performance perspective on the Active Memory System. Microprocess. Microsystems 26(9-10): 421-432 (2002) - [c8]Witawas Srisa-an, Chia-Tien Dan Lo, J. Morris Chang:
Performance Enhancements to the Active Memory System. ICCD 2002: 249- - [c7]Chia-Tien Dan Lo, Witawas Srisa-an
, J. Morris Chang:
A Multithreaded Concurrent Garbage Collector Parallelizing the New Instruction in Java. IPDPS 2002 - 2001
- [j3]J. Morris Chang, Woo Hyong Lee, Witawas Srisa-an:
A study of the allocation behavior of C++ programs. J. Syst. Softw. 57(2): 107-118 (2001) - [j2]Chia-Tien Dan Lo, Witawas Srisa-an, J. Morris Chang:
A study of page replacement performance in garbage collection heap. J. Syst. Softw. 58(3): 235-245 (2001) - [c6]Witawas Srisa-an, Chia-Tien Dan Lo, J. Morris Chang:
A Performance Analysis of the Active Memory System. ICCD 2001: 493-496 - [c5]Yang Qian, Witawas Srisa-an, Therapon Skotiniotis, J. Morris Chang:
Cycle accurate thread timer for linux environment. ISPASS 2001: 38-44 - 2000
- [j1]Witawas Srisa-an, Chia-Tien Dan Lo, J. Morris Chang:
A hardware implementation of realloc function. Integr. 28(2): 173-184 (2000) - [c4]Witawas Srisa-an, Chia-Tien Dan Lo, J. Morris Chang:
Scalable Hardware-Algorithm for Mark-Sweep Garbage Collection. EUROMICRO 2000: 1274-1281 - [c3]J. Morris Chang, Witawas Srisa-an, Chia-Tien Dan Lo:
Architectural Support for Dynamic Memory Management. ICCD 2000: 99-104 - [c2]Witawas Srisa-an, J. Morris Chang, Chia-Tien Dan Lo:
Do generational schemes improve the garbage collection efficiency? ISPASS 2000: 58-63 - [c1]Chia-Tien Dan Lo, Witawas Srisa-an
, J. Morris Chang:
A quantitative simulator for dynamic memory managers. ISPASS 2000: 64-69
Coauthor Index

manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from ,
, and
to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and
to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2025-01-21 00:08 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint