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The Java Pathfinder Workshop 2019

Published: 03 May 2020 Publication History
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  • Abstract

    Java Path nder (JPF) was originally developed as an explicit- state software model checker, and subsequently evolved into an extensible Java bytecode analysis framework that has been suc- cessfully used to implement techniques such as symbolic and con- colic execution, compositional veri cation, parallel execution, in- cremental program analysis, and many more.
    To share recent research progress with JPF and related tools among the community, we have organized the annual JPF work- shop with the Automated Software Engineering Conference (ASE) 2019, held in San Diego, California, USA. We invited submissions about on-going and existing research, experience, and position papers on topics (1) related to JPF, its extensions and applica- tions in various domains; and (2) Java/Android program analysis in general. This paper gives an overview of all presentations and papers of the workshop, as well the results of the discussions.

    References

    [1]
    Almaawi, A., Converse, H., Gligoric, M., Misailovic, S., and Khurshid, S. Quantifying the exploration of the Korat solver for imperative constraints. SIGSOFT Softw. Eng. Notes 44, 4 (Dec. 2019), 15.
    [2]
    Berglund, L., and Artho, C. Method summaries for JPF. SIGSOFT Softw. Eng. Notes 44, 4 (Dec. 2019), 16.
    [3]
    Chen, Z., Yu, H., Wang, J., and Dong, W. Symbolic veri cation of regular properties for Java programs. SIGSOFT Softw. Eng. Notes 44, 4 (Dec. 2019), 17.
    [4]
    Hooker, J., Aldous, P., Mercer, E., Ogles, B., Storey, K., and Powell, S. J. JPF-HJ: A tool for task parallel program analysis. SIGSOFT Softw. Eng. Notes 44, 4 (Dec. 2019), 19.
    [5]
    Le, X.-B. D., Pasareanu, C., Padhye, R., Lo, D., Visser, W., and Sen, K. Sa ron: Adaptive grammar-based fuzzing for worst-case analysis. SIGSOFT Softw. Eng. Notes 44, 4 (Dec. 2019), 14.
    [6]
    Namakonov, E., Mercer, E., Parizek, P., and Storey, K. Symbolic data race detection for Habanero programs. SIGSOFT Softw. Eng. Notes 44, 4 (Dec. 2019), 18.
    [7]
    Noller, Y., Nguyen, H. L., Tang, M., Kehrer, T., and Grunske, L. Complete shadow symbolic execution with Java PathFinder. SIGSOFT Softw. Eng. Notes 44, 4 (Dec. 2019), 15{16.
    [8]
    Saha, S., Eiers, W., Kadron, I. B., Bang, L., and Bultan, T. Incremental attack synthesis. SIGSOFT Softw. Eng. Notes 44, 4 (Dec. 2019), 16.
    [9]
    Storey, K., Mercer, E., and Parizek, P. A sound dynamic partial order reduction engine for Java Path nder. SIGSOFT Softw. Eng. Notes 44, 4 (Dec. 2019), 15.

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      Published In

      cover image ACM SIGSOFT Software Engineering Notes
      ACM SIGSOFT Software Engineering Notes  Volume 45, Issue 2
      April 2020
      25 pages
      ISSN:0163-5948
      DOI:10.1145/3385678
      Issue’s Table of Contents
      Permission to make digital or hard copies of part or all of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for third-party components of this work must be honored. For all other uses, contact the Owner/Author.

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      Association for Computing Machinery

      New York, NY, United States

      Publication History

      Published: 03 May 2020
      Published in SIGSOFT Volume 45, Issue 2

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