[{"title":"Fluently specifying taint-flow queries with fluentTQL","year":"2022","status":"public","author":[{"id":"41936","last_name":"Piskachev","orcid":"0000-0003-4424-5838","first_name":"Goran","full_name":"Piskachev, Goran"},{"full_name":"Späth, Johannes","last_name":"Späth","first_name":"Johannes"},{"id":"13693","full_name":"Budde, Ingo","orcid":"https://orcid.org/0000-0003-0124-6291","first_name":"Ingo","last_name":"Budde"},{"id":"59256","orcid":"0000-0003-3470-3647","last_name":"Bodden","first_name":"Eric","full_name":"Bodden, Eric"}],"date_updated":"2022-10-20T12:36:23Z","intvolume":"        27","page":"1–33","publisher":"Springer","_id":"33836","language":[{"iso":"eng"}],"user_id":"15249","volume":27,"issue":"5","publication":"Empirical Software Engineering","citation":{"mla":"Piskachev, Goran, et al. “Fluently Specifying Taint-Flow Queries with FluentTQL.” <i>Empirical Software Engineering</i>, vol. 27, no. 5, Springer, 2022, pp. 1–33.","ama":"Piskachev G, Späth J, Budde I, Bodden E. Fluently specifying taint-flow queries with fluentTQL. <i>Empirical Software Engineering</i>. 2022;27(5):1–33.","bibtex":"@article{Piskachev_Späth_Budde_Bodden_2022, title={Fluently specifying taint-flow queries with fluentTQL}, volume={27}, number={5}, journal={Empirical Software Engineering}, publisher={Springer}, author={Piskachev, Goran and Späth, Johannes and Budde, Ingo and Bodden, Eric}, year={2022}, pages={1–33} }","apa":"Piskachev, G., Späth, J., Budde, I., &#38; Bodden, E. (2022). Fluently specifying taint-flow queries with fluentTQL. <i>Empirical Software Engineering</i>, <i>27</i>(5), 1–33.","ieee":"G. Piskachev, J. Späth, I. Budde, and E. Bodden, “Fluently specifying taint-flow queries with fluentTQL,” <i>Empirical Software Engineering</i>, vol. 27, no. 5, pp. 1–33, 2022.","short":"G. Piskachev, J. Späth, I. Budde, E. Bodden, Empirical Software Engineering 27 (2022) 1–33.","chicago":"Piskachev, Goran, Johannes Späth, Ingo Budde, and Eric Bodden. “Fluently Specifying Taint-Flow Queries with FluentTQL.” <i>Empirical Software Engineering</i> 27, no. 5 (2022): 1–33."},"date_created":"2022-10-20T12:34:04Z","type":"journal_article","department":[{"_id":"76"},{"_id":"662"}]},{"citation":{"ama":"Krishnamurthy R, Piskachev G, Bodden E. To what extent can we analyze Kotlin programs using existing Java taint analysis tools? Published online 2022.","bibtex":"@article{Krishnamurthy_Piskachev_Bodden_2022, series={IEEE International Working Conference on Source Code Analysis and Manipulation (SCAM)}, title={To what extent can we analyze Kotlin programs using existing Java taint analysis tools?}, author={Krishnamurthy, Ranjith and Piskachev, Goran and Bodden, Eric}, year={2022}, collection={IEEE International Working Conference on Source Code Analysis and Manipulation (SCAM)} }","mla":"Krishnamurthy, Ranjith, et al. <i>To What Extent Can We Analyze Kotlin Programs Using Existing Java Taint Analysis Tools?</i> 2022.","chicago":"Krishnamurthy, Ranjith, Goran Piskachev, and Eric Bodden. “To What Extent Can We Analyze Kotlin Programs Using Existing Java Taint Analysis Tools?” IEEE International Working Conference on Source Code Analysis and Manipulation (SCAM), 2022.","short":"R. Krishnamurthy, G. Piskachev, E. Bodden, (2022).","apa":"Krishnamurthy, R., Piskachev, G., &#38; Bodden, E. (2022). <i>To what extent can we analyze Kotlin programs using existing Java taint analysis tools?</i>","ieee":"R. Krishnamurthy, G. Piskachev, and E. Bodden, “To what extent can we analyze Kotlin programs using existing Java taint analysis tools?” 2022."},"department":[{"_id":"76"},{"_id":"662"}],"type":"conference","date_created":"2022-10-20T12:38:09Z","date_updated":"2022-10-20T12:38:32Z","author":[{"first_name":"Ranjith","orcid":"0000-0002-0906-5463","last_name":"Krishnamurthy","full_name":"Krishnamurthy, Ranjith","id":"78060"},{"id":"41936","orcid":"0000-0003-4424-5838","first_name":"Goran","last_name":"Piskachev","full_name":"Piskachev, Goran"},{"id":"59256","first_name":"Eric","orcid":"0000-0003-3470-3647","last_name":"Bodden","full_name":"Bodden, Eric"}],"status":"public","title":"To what extent can we analyze Kotlin programs using existing Java taint analysis tools?","year":"2022","user_id":"15249","language":[{"iso":"eng"}],"_id":"33838","series_title":"IEEE International Working Conference on Source Code Analysis and Manipulation (SCAM)"},{"date_updated":"2022-10-20T12:37:44Z","author":[{"id":"41936","last_name":"Piskachev","first_name":"Goran","orcid":"0000-0003-4424-5838","full_name":"Piskachev, Goran"},{"id":"3901","orcid":"http://orcid.org/0000-0002-8679-6673","last_name":"Dziwok","first_name":"Stefan","full_name":"Dziwok, Stefan"},{"id":"13616","full_name":"Koch, Thorsten","last_name":"Koch","first_name":"Thorsten"},{"full_name":"Merschjohann, Sven","last_name":"Merschjohann","first_name":"Sven","id":"11394"},{"id":"59256","last_name":"Bodden","first_name":"Eric","orcid":"0000-0003-3470-3647","full_name":"Bodden, Eric"}],"status":"public","year":"2022","title":"How far are German companies in improving security through static program analysis tools?","user_id":"15249","language":[{"iso":"eng"}],"_id":"33837","series_title":"IEEE Secure Development Conference (SecDev)","citation":{"bibtex":"@article{Piskachev_Dziwok_Koch_Merschjohann_Bodden_2022, series={IEEE Secure Development Conference (SecDev)}, title={How far are German companies in improving security through static program analysis tools?}, author={Piskachev, Goran and Dziwok, Stefan and Koch, Thorsten and Merschjohann, Sven and Bodden, Eric}, year={2022}, collection={IEEE Secure Development Conference (SecDev)} }","ama":"Piskachev G, Dziwok S, Koch T, Merschjohann S, Bodden E. How far are German companies in improving security through static program analysis tools? Published online 2022.","mla":"Piskachev, Goran, et al. <i>How Far Are German Companies in Improving Security through Static Program Analysis Tools?</i> 2022.","chicago":"Piskachev, Goran, Stefan Dziwok, Thorsten Koch, Sven Merschjohann, and Eric Bodden. “How Far Are German Companies in Improving Security through Static Program Analysis Tools?” IEEE Secure Development Conference (SecDev), 2022.","short":"G. Piskachev, S. Dziwok, T. Koch, S. Merschjohann, E. Bodden, (2022).","ieee":"G. Piskachev, S. Dziwok, T. Koch, S. Merschjohann, and E. Bodden, “How far are German companies in improving security through static program analysis tools?” 2022.","apa":"Piskachev, G., Dziwok, S., Koch, T., Merschjohann, S., &#38; Bodden, E. (2022). <i>How far are German companies in improving security through static program analysis tools?</i>"},"department":[{"_id":"76"},{"_id":"662"}],"type":"conference","date_created":"2022-10-20T12:37:14Z"},{"related_material":{"link":[{"url":"https://arxiv.org/abs/2209.11103","relation":"confirmation"}]},"abstract":[{"text":"Recent studies have revealed that 87 % to 96 % of the Android apps using cryptographic APIs have a misuse which may cause security vulnerabilities. As previous studies did not conduct a qualitative examination of the validity and severity of the findings, our objective was to understand the findings in more depth. We analyzed a set of 936 open-source Java applications for cryptographic misuses. Our study reveals that 88.10 % of the analyzed applications fail to use cryptographic APIs securely. Through our manual analysis of a random sample, we gained new insights into effective false positives. For example, every fourth misuse of the frequently misused JCA class MessageDigest is an effective false positive due to its occurrence in a non-security context. As we wanted to gain deeper insights into the security implications of these misuses, we created an extensive vulnerability model for cryptographic API misuses. Our model includes previously undiscussed attacks in the context of cryptographic APIs such as DoS attacks. This model reveals that nearly half of the misuses are of high severity, e.g., hard-coded credentials and potential Man-in-the-Middle attacks.","lang":"eng"}],"citation":{"short":"A.-K. Wickert, L. Baumgärtner, M. Schlichtig, M. Mezini, To Fix or Not to Fix: A Critical Study of Crypto-Misuses in the Wild, 2022.","chicago":"Wickert, Anna-Katharina, Lars Baumgärtner, Michael Schlichtig, and Mira Mezini. <i>To Fix or Not to Fix: A Critical Study of Crypto-Misuses in the Wild</i>, 2022. <a href=\"https://doi.org/10.48550/ARXIV.2209.11103\">https://doi.org/10.48550/ARXIV.2209.11103</a>.","ieee":"A.-K. Wickert, L. Baumgärtner, M. Schlichtig, and M. Mezini, <i>To Fix or Not to Fix: A Critical Study of Crypto-misuses in the Wild</i>. 2022.","apa":"Wickert, A.-K., Baumgärtner, L., Schlichtig, M., &#38; Mezini, M. (2022). <i>To Fix or Not to Fix: A Critical Study of Crypto-misuses in the Wild</i>. <a href=\"https://doi.org/10.48550/ARXIV.2209.11103\">https://doi.org/10.48550/ARXIV.2209.11103</a>","bibtex":"@book{Wickert_Baumgärtner_Schlichtig_Mezini_2022, title={To Fix or Not to Fix: A Critical Study of Crypto-misuses in the Wild}, DOI={<a href=\"https://doi.org/10.48550/ARXIV.2209.11103\">10.48550/ARXIV.2209.11103</a>}, author={Wickert, Anna-Katharina and Baumgärtner, Lars and Schlichtig, Michael and Mezini, Mira}, year={2022} }","ama":"Wickert A-K, Baumgärtner L, Schlichtig M, Mezini M. <i>To Fix or Not to Fix: A Critical Study of Crypto-Misuses in the Wild</i>.; 2022. doi:<a href=\"https://doi.org/10.48550/ARXIV.2209.11103\">10.48550/ARXIV.2209.11103</a>","mla":"Wickert, Anna-Katharina, et al. <i>To Fix or Not to Fix: A Critical Study of Crypto-Misuses in the Wild</i>. 2022, doi:<a href=\"https://doi.org/10.48550/ARXIV.2209.11103\">10.48550/ARXIV.2209.11103</a>."},"department":[{"_id":"76"}],"type":"misc","date_created":"2022-10-28T13:21:05Z","date_updated":"2022-10-28T13:26:39Z","author":[{"full_name":"Wickert, Anna-Katharina","last_name":"Wickert","first_name":"Anna-Katharina"},{"first_name":"Lars","last_name":"Baumgärtner","full_name":"Baumgärtner, Lars"},{"last_name":"Schlichtig","orcid":"0000-0001-6600-6171","first_name":"Michael","full_name":"Schlichtig, Michael","id":"32312"},{"full_name":"Mezini, Mira","first_name":"Mira","last_name":"Mezini"}],"status":"public","year":"2022","title":"To Fix or Not to Fix: A Critical Study of Crypto-misuses in the Wild","user_id":"32312","doi":"10.48550/ARXIV.2209.11103","language":[{"iso":"eng"}],"_id":"33959"},{"doi":"10.1109/msec.2022.3185845","language":[{"iso":"eng"}],"intvolume":"        20","date_updated":"2024-05-06T11:33:14Z","publication_status":"published","author":[{"last_name":"Massacci","first_name":"Fabio","full_name":"Massacci, Fabio"},{"first_name":"Antonino","last_name":"Sabetta","full_name":"Sabetta, Antonino"},{"full_name":"Mirkovic, Jelena","last_name":"Mirkovic","first_name":"Jelena"},{"full_name":"Murray, Toby","first_name":"Toby","last_name":"Murray"},{"last_name":"Okhravi","first_name":"Hamed","full_name":"Okhravi, Hamed"},{"full_name":"Mannan, Mohammad","first_name":"Mohammad","last_name":"Mannan"},{"last_name":"Rocha","first_name":"Anderson","full_name":"Rocha, Anderson"},{"id":"59256","first_name":"Eric","orcid":"0000-0003-3470-3647","last_name":"Bodden","full_name":"Bodden, Eric"},{"last_name":"Geer","first_name":"Daniel E.","full_name":"Geer, Daniel E."}],"publication_identifier":{"issn":["1540-7993","1558-4046"]},"year":"2022","title":"“Free” as in Freedom to Protest?","department":[{"_id":"76"}],"type":"journal_article","date_created":"2024-05-06T11:32:59Z","issue":"5","publication":"IEEE Security &amp; Privacy","volume":20,"user_id":"15249","_id":"53952","publisher":"Institute of Electrical and Electronics Engineers (IEEE)","page":"16-21","status":"public","citation":{"bibtex":"@article{Massacci_Sabetta_Mirkovic_Murray_Okhravi_Mannan_Rocha_Bodden_Geer_2022, title={“Free” as in Freedom to Protest?}, volume={20}, DOI={<a href=\"https://doi.org/10.1109/msec.2022.3185845\">10.1109/msec.2022.3185845</a>}, number={5}, journal={IEEE Security &#38;amp; Privacy}, publisher={Institute of Electrical and Electronics Engineers (IEEE)}, author={Massacci, Fabio and Sabetta, Antonino and Mirkovic, Jelena and Murray, Toby and Okhravi, Hamed and Mannan, Mohammad and Rocha, Anderson and Bodden, Eric and Geer, Daniel E.}, year={2022}, pages={16–21} }","ama":"Massacci F, Sabetta A, Mirkovic J, et al. “Free” as in Freedom to Protest? <i>IEEE Security &#38;amp; Privacy</i>. 2022;20(5):16-21. doi:<a href=\"https://doi.org/10.1109/msec.2022.3185845\">10.1109/msec.2022.3185845</a>","mla":"Massacci, Fabio, et al. “‘Free’ as in Freedom to Protest?” <i>IEEE Security &#38;amp; Privacy</i>, vol. 20, no. 5, Institute of Electrical and Electronics Engineers (IEEE), 2022, pp. 16–21, doi:<a href=\"https://doi.org/10.1109/msec.2022.3185845\">10.1109/msec.2022.3185845</a>.","short":"F. Massacci, A. Sabetta, J. Mirkovic, T. Murray, H. Okhravi, M. Mannan, A. Rocha, E. Bodden, D.E. Geer, IEEE Security &#38;amp; Privacy 20 (2022) 16–21.","chicago":"Massacci, Fabio, Antonino Sabetta, Jelena Mirkovic, Toby Murray, Hamed Okhravi, Mohammad Mannan, Anderson Rocha, Eric Bodden, and Daniel E. Geer. “‘Free’ as in Freedom to Protest?” <i>IEEE Security &#38;amp; Privacy</i> 20, no. 5 (2022): 16–21. <a href=\"https://doi.org/10.1109/msec.2022.3185845\">https://doi.org/10.1109/msec.2022.3185845</a>.","ieee":"F. Massacci <i>et al.</i>, “‘Free’ as in Freedom to Protest?,” <i>IEEE Security &#38;amp; Privacy</i>, vol. 20, no. 5, pp. 16–21, 2022, doi: <a href=\"https://doi.org/10.1109/msec.2022.3185845\">10.1109/msec.2022.3185845</a>.","apa":"Massacci, F., Sabetta, A., Mirkovic, J., Murray, T., Okhravi, H., Mannan, M., Rocha, A., Bodden, E., &#38; Geer, D. E. (2022). “Free” as in Freedom to Protest? <i>IEEE Security &#38;amp; Privacy</i>, <i>20</i>(5), 16–21. <a href=\"https://doi.org/10.1109/msec.2022.3185845\">https://doi.org/10.1109/msec.2022.3185845</a>"}},{"citation":{"apa":"Schubert, P., Gazzillo, P., Patterson, Z., Braha, J., Schiebel, F. B., Hermann, B., Wei, S., &#38; Bodden, E. (2022). Static data-flow analysis for software product lines in C. <i>Automated Software Engineering</i>, <i>29</i>(1), Article 35. <a href=\"https://doi.org/10.1007/s10515-022-00333-1\">https://doi.org/10.1007/s10515-022-00333-1</a>","ieee":"P. Schubert <i>et al.</i>, “Static data-flow analysis for software product lines in C,” <i>Automated Software Engineering</i>, vol. 29, no. 1, Art. no. 35, 2022, doi: <a href=\"https://doi.org/10.1007/s10515-022-00333-1\">10.1007/s10515-022-00333-1</a>.","chicago":"Schubert, Philipp, Paul Gazzillo, Zach Patterson, Julian Braha, Fabian Benedikt Schiebel, Ben Hermann, Shiyi Wei, and Eric Bodden. “Static Data-Flow Analysis for Software Product Lines in C.” <i>Automated Software Engineering</i> 29, no. 1 (2022). <a href=\"https://doi.org/10.1007/s10515-022-00333-1\">https://doi.org/10.1007/s10515-022-00333-1</a>.","short":"P. Schubert, P. Gazzillo, Z. Patterson, J. Braha, F.B. Schiebel, B. Hermann, S. Wei, E. Bodden, Automated Software Engineering 29 (2022).","mla":"Schubert, Philipp, et al. “Static Data-Flow Analysis for Software Product Lines in C.” <i>Automated Software Engineering</i>, vol. 29, no. 1, 35, Springer Science and Business Media LLC, 2022, doi:<a href=\"https://doi.org/10.1007/s10515-022-00333-1\">10.1007/s10515-022-00333-1</a>.","ama":"Schubert P, Gazzillo P, Patterson Z, et al. Static data-flow analysis for software product lines in C. <i>Automated Software Engineering</i>. 2022;29(1). doi:<a href=\"https://doi.org/10.1007/s10515-022-00333-1\">10.1007/s10515-022-00333-1</a>","bibtex":"@article{Schubert_Gazzillo_Patterson_Braha_Schiebel_Hermann_Wei_Bodden_2022, title={Static data-flow analysis for software product lines in C}, volume={29}, DOI={<a href=\"https://doi.org/10.1007/s10515-022-00333-1\">10.1007/s10515-022-00333-1</a>}, number={135}, journal={Automated Software Engineering}, publisher={Springer Science and Business Media LLC}, author={Schubert, Philipp and Gazzillo, Paul and Patterson, Zach and Braha, Julian and Schiebel, Fabian Benedikt and Hermann, Ben and Wei, Shiyi and Bodden, Eric}, year={2022} }"},"project":[{"name":"SFB 901 - B4: SFB 901 - Subproject B4","_id":"12"},{"_id":"3","name":"SFB 901 - B: SFB 901 - Project Area B"},{"name":"SFB 901: SFB 901","_id":"1"}],"oa":"1","status":"public","publisher":"Springer Science and Business Media LLC","_id":"30511","volume":29,"user_id":"15249","publication":"Automated Software Engineering","issue":"1","abstract":[{"lang":"eng","text":"<jats:title>Abstract</jats:title><jats:p>Many critical codebases are written in C, and most of them use preprocessor directives to encode variability, effectively encoding software product lines. These preprocessor directives, however, challenge any static code analysis. SPLlift, a previously presented approach for analyzing software product lines, is limited to Java programs that use a rather simple feature encoding and to analysis problems with a finite and ideally small domain. Other approaches that allow the analysis of real-world C software product lines use special-purpose analyses, preventing the reuse of existing analysis infrastructures and ignoring the progress made by the static analysis community. This work presents <jats:sc>VarAlyzer</jats:sc>, a novel static analysis approach for software product lines. <jats:sc>VarAlyzer</jats:sc> first transforms preprocessor constructs to plain C while preserving their variability and semantics. It then solves any given distributive analysis problem on transformed product lines in a variability-aware manner. <jats:sc>VarAlyzer</jats:sc> ’s analysis results are annotated with feature constraints that encode in which configurations each result holds. Our experiments with 95 compilation units of OpenSSL show that applying <jats:sc>VarAlyzer</jats:sc> enables one to conduct inter-procedural, flow-, field- and context-sensitive data-flow analyses on entire product lines for the first time, outperforming the product-based approach for highly-configurable systems.</jats:p>"}],"date_created":"2022-03-25T07:41:26Z","department":[{"_id":"76"}],"keyword":["inter-procedural static analysis","software product lines","preprocessor","LLVM","C/C++"],"type":"journal_article","author":[{"id":"60543","first_name":"Philipp","last_name":"Schubert","orcid":"0000-0002-8674-1859","full_name":"Schubert, Philipp"},{"last_name":"Gazzillo","first_name":"Paul","full_name":"Gazzillo, Paul"},{"last_name":"Patterson","first_name":"Zach","full_name":"Patterson, Zach"},{"full_name":"Braha, Julian","last_name":"Braha","first_name":"Julian"},{"id":"55745","full_name":"Schiebel, Fabian Benedikt","last_name":"Schiebel","first_name":"Fabian Benedikt","orcid":"0009-0008-6867-9802"},{"first_name":"Ben","orcid":"0000-0001-9848-2017","last_name":"Hermann","full_name":"Hermann, Ben","id":"66173"},{"first_name":"Shiyi","last_name":"Wei","full_name":"Wei, Shiyi"},{"first_name":"Eric","orcid":"0000-0003-3470-3647","last_name":"Bodden","full_name":"Bodden, Eric","id":"59256"}],"publication_identifier":{"issn":["0928-8910","1573-7535"]},"title":"Static data-flow analysis for software product lines in C","year":"2022","intvolume":"        29","article_type":"original","date_updated":"2025-12-04T10:42:38Z","publication_status":"published","language":[{"iso":"eng"}],"main_file_link":[{"url":"https://link.springer.com/article/10.1007/s10515-022-00333-1","open_access":"1"}],"article_number":"35","alternative_title":["Revoking the preprocessor’s special role"],"doi":"10.1007/s10515-022-00333-1"},{"date_created":"2021-11-02T05:13:49Z","department":[{"_id":"77"},{"_id":"76"}],"type":"journal_article","publication":"Empirical Software Engineering","abstract":[{"lang":"eng","text":"Due to the lack of established real-world benchmark suites for static taint analyses of Android applications, evaluations of these analyses are often restricted and hard to compare. Even in evaluations that do use real-world apps, details about the ground truth in those apps are rarely documented, which makes it difficult to compare and reproduce the results. To push Android taint analysis research forward, this paper thus recommends criteria for constructing real-world benchmark suites for this specific domain, and presents TaintBench, the first real-world malware benchmark suite with documented taint flows. TaintBench benchmark apps include taint flows with complex structures, and addresses static challenges that are commonly agreed on by the community. Together with the TaintBench suite, we introduce the TaintBench framework, whose goal is to simplify real-world benchmarking of Android taint analyses. First, a usability test shows that the framework improves experts’ performance and perceived usability when documenting and inspecting taint flows. Second, experiments using TaintBench reveal new insights for the taint analysis tools Amandroid and FlowDroid: (i) They are less effective on real-world malware apps than on synthetic benchmark apps. (ii) Predefined lists of sources and sinks heavily impact the tools’ accuracy. (iii) Surprisingly, up-to-date versions of both tools are less accurate than their predecessors."}],"language":[{"iso":"eng"}],"main_file_link":[{"open_access":"1","url":"https://link.springer.com/content/pdf/10.1007/s10664-021-10013-5.pdf"}],"doi":"10.1007/s10664-021-10013-5","author":[{"full_name":"Luo, Linghui","last_name":"Luo","first_name":"Linghui"},{"id":"22398","full_name":"Pauck, Felix","last_name":"Pauck","first_name":"Felix"},{"id":"41936","orcid":"0000-0003-4424-5838","first_name":"Goran","last_name":"Piskachev","full_name":"Piskachev, Goran"},{"full_name":"Benz, Manuel","last_name":"Benz","first_name":"Manuel"},{"full_name":"Pashchenko, Ivan","last_name":"Pashchenko","first_name":"Ivan"},{"full_name":"Mory, Martin","orcid":"0000-0001-5609-0031","first_name":"Martin","last_name":"Mory","id":"65667"},{"orcid":"0000-0003-3470-3647","last_name":"Bodden","first_name":"Eric","full_name":"Bodden, Eric","id":"59256"},{"id":"66173","first_name":"Ben","last_name":"Hermann","orcid":"0000-0001-9848-2017","full_name":"Hermann, Ben"},{"first_name":"Fabio","last_name":"Massacci","full_name":"Massacci, Fabio"}],"publication_identifier":{"issn":["1382-3256","1573-7616"]},"title":"TaintBench: Automatic real-world malware benchmarking of Android taint analyses","year":"2021","publication_status":"published","date_updated":"2022-01-06T06:57:32Z","oa":"1","citation":{"ama":"Luo L, Pauck F, Piskachev G, et al. TaintBench: Automatic real-world malware benchmarking of Android taint analyses. <i>Empirical Software Engineering</i>. Published online 2021. doi:<a href=\"https://doi.org/10.1007/s10664-021-10013-5\">10.1007/s10664-021-10013-5</a>","bibtex":"@article{Luo_Pauck_Piskachev_Benz_Pashchenko_Mory_Bodden_Hermann_Massacci_2021, title={TaintBench: Automatic real-world malware benchmarking of Android taint analyses}, DOI={<a href=\"https://doi.org/10.1007/s10664-021-10013-5\">10.1007/s10664-021-10013-5</a>}, journal={Empirical Software Engineering}, author={Luo, Linghui and Pauck, Felix and Piskachev, Goran and Benz, Manuel and Pashchenko, Ivan and Mory, Martin and Bodden, Eric and Hermann, Ben and Massacci, Fabio}, year={2021} }","mla":"Luo, Linghui, et al. “TaintBench: Automatic Real-World Malware Benchmarking of Android Taint Analyses.” <i>Empirical Software Engineering</i>, 2021, doi:<a href=\"https://doi.org/10.1007/s10664-021-10013-5\">10.1007/s10664-021-10013-5</a>.","chicago":"Luo, Linghui, Felix Pauck, Goran Piskachev, Manuel Benz, Ivan Pashchenko, Martin Mory, Eric Bodden, Ben Hermann, and Fabio Massacci. “TaintBench: Automatic Real-World Malware Benchmarking of Android Taint Analyses.” <i>Empirical Software Engineering</i>, 2021. <a href=\"https://doi.org/10.1007/s10664-021-10013-5\">https://doi.org/10.1007/s10664-021-10013-5</a>.","short":"L. Luo, F. Pauck, G. Piskachev, M. Benz, I. Pashchenko, M. Mory, E. Bodden, B. Hermann, F. Massacci, Empirical Software Engineering (2021).","apa":"Luo, L., Pauck, F., Piskachev, G., Benz, M., Pashchenko, I., Mory, M., Bodden, E., Hermann, B., &#38; Massacci, F. (2021). TaintBench: Automatic real-world malware benchmarking of Android taint analyses. <i>Empirical Software Engineering</i>. <a href=\"https://doi.org/10.1007/s10664-021-10013-5\">https://doi.org/10.1007/s10664-021-10013-5</a>","ieee":"L. Luo <i>et al.</i>, “TaintBench: Automatic real-world malware benchmarking of Android taint analyses,” <i>Empirical Software Engineering</i>, 2021, doi: <a href=\"https://doi.org/10.1007/s10664-021-10013-5\">10.1007/s10664-021-10013-5</a>."},"project":[{"_id":"1","name":"SFB 901"},{"name":"SFB 901 - Project Area B","_id":"3"},{"_id":"12","name":"SFB 901 - Subproject B4"}],"_id":"27045","user_id":"15249","ddc":["000"],"status":"public"},{"date_created":"2021-11-04T13:58:35Z","department":[{"_id":"76"}],"type":"dissertation","citation":{"short":"L. Luo, Improving Real-World Applicability of Static Taint Analysis, Universität Paderborn, 2021.","chicago":"Luo, Linghui. <i>Improving Real-World Applicability of Static Taint Analysis</i>. Universität Paderborn, 2021.","apa":"Luo, L. (2021). <i>Improving Real-World Applicability of Static Taint Analysis</i>. Universität Paderborn.","ieee":"L. Luo, <i>Improving Real-World Applicability of Static Taint Analysis</i>. 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Universität Paderborn, 2021."},"related_material":{"link":[{"relation":"confirmation","url":"https://www.bodden.de/pubs/phdLuo.pdf"}]},"language":[{"iso":"eng"}],"_id":"27158","publisher":"Universität Paderborn","user_id":"15249","author":[{"full_name":"Luo, Linghui","first_name":"Linghui","last_name":"Luo"}],"status":"public","year":"2021","title":"Improving Real-World Applicability of Static Taint Analysis","date_updated":"2022-01-06T06:57:35Z"},{"publication_status":"published","date_updated":"2022-01-06T06:55:06Z","year":"2021","title":"Using Architectural Runtime Verification for Offline Data Analysis","status":"public","author":[{"id":"48144","full_name":"Stockmann, Lars","first_name":"Lars","last_name":"Stockmann"},{"full_name":"Laux, Sven","first_name":"Sven","last_name":"Laux"},{"id":"59256","full_name":"Bodden, Eric","orcid":"0000-0003-3470-3647","first_name":"Eric","last_name":"Bodden"}],"publication_identifier":{"issn":["2589-2258"]},"user_id":"5786","doi":"10.2991/jase.d.210205.001","main_file_link":[{"url":"https://www.bodden.de/pubs/sb21architectural.pdf"}],"language":[{"iso":"eng"}],"_id":"21595","publication":"Journal of Automotive Software Engineering","citation":{"bibtex":"@article{Stockmann_Laux_Bodden_2021, title={Using Architectural Runtime Verification for Offline Data Analysis}, DOI={<a href=\"https://doi.org/10.2991/jase.d.210205.001\">10.2991/jase.d.210205.001</a>}, journal={Journal of Automotive Software Engineering}, author={Stockmann, Lars and Laux, Sven and Bodden, Eric}, year={2021} }","ama":"Stockmann L, Laux S, Bodden E. Using Architectural Runtime Verification for Offline Data Analysis. <i>Journal of Automotive Software Engineering</i>. Published online 2021. doi:<a href=\"https://doi.org/10.2991/jase.d.210205.001\">10.2991/jase.d.210205.001</a>","mla":"Stockmann, Lars, et al. “Using Architectural Runtime Verification for Offline Data Analysis.” <i>Journal of Automotive Software Engineering</i>, 2021, doi:<a href=\"https://doi.org/10.2991/jase.d.210205.001\">10.2991/jase.d.210205.001</a>.","short":"L. Stockmann, S. Laux, E. Bodden, Journal of Automotive Software Engineering (2021).","chicago":"Stockmann, Lars, Sven Laux, and Eric Bodden. “Using Architectural Runtime Verification for Offline Data Analysis.” <i>Journal of Automotive Software Engineering</i>, 2021. <a href=\"https://doi.org/10.2991/jase.d.210205.001\">https://doi.org/10.2991/jase.d.210205.001</a>.","ieee":"L. Stockmann, S. Laux, and E. 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Universität Paderborn, 2021."},"user_id":"5786","main_file_link":[{"url":"https://www.bodden.de/pubs/phdFischer.pdf"}],"_id":"21596","publisher":"Universität Paderborn","language":[{"iso":"eng"}],"date_updated":"2022-01-06T06:55:06Z","year":"2021","title":"Computing on Encrypted Data using Trusted Execution Environments","status":"public","author":[{"last_name":"Fischer","first_name":"Andreas","full_name":"Fischer, Andreas"}]},{"publication":"International Symposium on Advanced Security on Software and Systems (ASSS)","citation":{"short":"P. Holzinger, E. Bodden, International Symposium on Advanced Security on Software and Systems (ASSS) (2021).","chicago":"Holzinger, Philipp, and Eric Bodden. “A Systematic Hardening of Java’s Information Hiding.” <i>International Symposium on Advanced Security on Software and Systems (ASSS)</i>, 2021.","ieee":"P. Holzinger and E. 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Dealing with Variability in API Misuse Specification. <i>European Conference on Object-Oriented Programming (ECOOP)</i>. Published online 2021.","mla":"Bonifacio, Rodrigo, et al. “Dealing with Variability in API Misuse Specification.” <i>European Conference on Object-Oriented Programming (ECOOP)</i>, 2021.","chicago":"Bonifacio, Rodrigo, Stefan Krüger, Krishna Narasimhan, Eric Bodden, and Mira Mezini. “Dealing with Variability in API Misuse Specification.” <i>European Conference on Object-Oriented Programming (ECOOP)</i>, 2021.","short":"R. Bonifacio, S. Krüger, K. Narasimhan, E. Bodden, M. Mezini, European Conference on Object-Oriented Programming (ECOOP) (2021).","ieee":"R. Bonifacio, S. Krüger, K. Narasimhan, E. Bodden, and M. Mezini, “Dealing with Variability in API Misuse Specification,” <i>European Conference on Object-Oriented Programming (ECOOP)</i>, 2021.","apa":"Bonifacio, R., Krüger, S., Narasimhan, K., Bodden, E., &#38; Mezini, M. (2021). Dealing with Variability in API Misuse Specification. <i>European Conference on Object-Oriented Programming (ECOOP)</i>."},"date_created":"2021-04-08T11:25:43Z","type":"journal_article","department":[{"_id":"76"}]},{"doi":"10.1109/iccq51190.2021.9392986","user_id":"5786","_id":"23374","language":[{"iso":"eng"}],"date_updated":"2022-01-06T06:55:50Z","publication_status":"published","author":[{"full_name":"Kummita, Sriteja","last_name":"Kummita","first_name":"Sriteja"},{"full_name":"Piskachev, Goran","first_name":"Goran","last_name":"Piskachev"},{"full_name":"Spath, Johannes","last_name":"Spath","first_name":"Johannes"},{"full_name":"Bodden, Eric","first_name":"Eric","last_name":"Bodden"}],"year":"2021","status":"public","title":"Qualitative and Quantitative Analysis of Callgraph Algorithms for Python","department":[{"_id":"241"},{"_id":"662"},{"_id":"76"}],"type":"conference","date_created":"2021-08-09T12:01:11Z","citation":{"apa":"Kummita, S., Piskachev, G., Spath, J., &#38; Bodden, E. (2021). Qualitative and Quantitative Analysis of Callgraph Algorithms for Python. <i>2021 International Conference on Code Quality (ICCQ)</i>. <a href=\"https://doi.org/10.1109/iccq51190.2021.9392986\">https://doi.org/10.1109/iccq51190.2021.9392986</a>","ieee":"S. Kummita, G. Piskachev, J. Spath, and E. Bodden, “Qualitative and Quantitative Analysis of Callgraph Algorithms for Python,” 2021, doi: <a href=\"https://doi.org/10.1109/iccq51190.2021.9392986\">10.1109/iccq51190.2021.9392986</a>.","chicago":"Kummita, Sriteja, Goran Piskachev, Johannes Spath, and Eric Bodden. “Qualitative and Quantitative Analysis of Callgraph Algorithms for Python.” In <i>2021 International Conference on Code Quality (ICCQ)</i>, 2021. <a href=\"https://doi.org/10.1109/iccq51190.2021.9392986\">https://doi.org/10.1109/iccq51190.2021.9392986</a>.","short":"S. Kummita, G. Piskachev, J. Spath, E. Bodden, in: 2021 International Conference on Code Quality (ICCQ), 2021.","mla":"Kummita, Sriteja, et al. “Qualitative and Quantitative Analysis of Callgraph Algorithms for Python.” <i>2021 International Conference on Code Quality (ICCQ)</i>, 2021, doi:<a href=\"https://doi.org/10.1109/iccq51190.2021.9392986\">10.1109/iccq51190.2021.9392986</a>.","ama":"Kummita S, Piskachev G, Spath J, Bodden E. Qualitative and Quantitative Analysis of Callgraph Algorithms for Python. In: <i>2021 International Conference on Code Quality (ICCQ)</i>. ; 2021. doi:<a href=\"https://doi.org/10.1109/iccq51190.2021.9392986\">10.1109/iccq51190.2021.9392986</a>","bibtex":"@inproceedings{Kummita_Piskachev_Spath_Bodden_2021, title={Qualitative and Quantitative Analysis of Callgraph Algorithms for Python}, DOI={<a href=\"https://doi.org/10.1109/iccq51190.2021.9392986\">10.1109/iccq51190.2021.9392986</a>}, booktitle={2021 International Conference on Code Quality (ICCQ)}, author={Kummita, Sriteja and Piskachev, Goran and Spath, Johannes and Bodden, Eric}, year={2021} }"},"publication":"2021 International Conference on Code Quality (ICCQ)"},{"year":"2021","title":"SootFX: A Static Code Feature Extraction Tool for Java and Android","status":"public","author":[{"first_name":"Kadiray","last_name":"Karakaya","full_name":"Karakaya, Kadiray"},{"full_name":"Bodden, Eric","first_name":"Eric","last_name":"Bodden"}],"publication_status":"published","date_updated":"2022-02-24T15:45:43Z","publisher":"IEEE","_id":"30084","user_id":"70410","doi":"10.1109/scam52516.2021.00030","publication":"2021 IEEE 21st International Working Conference on Source Code Analysis and Manipulation (SCAM)","citation":{"ieee":"K. Karakaya and E. Bodden, “SootFX: A Static Code Feature Extraction Tool for Java and Android,” 2021, doi: <a href=\"https://doi.org/10.1109/scam52516.2021.00030\">10.1109/scam52516.2021.00030</a>.","apa":"Karakaya, K., &#38; Bodden, E. (2021). SootFX: A Static Code Feature Extraction Tool for Java and Android. <i>2021 IEEE 21st International Working Conference on Source Code Analysis and Manipulation (SCAM)</i>. <a href=\"https://doi.org/10.1109/scam52516.2021.00030\">https://doi.org/10.1109/scam52516.2021.00030</a>","chicago":"Karakaya, Kadiray, and Eric Bodden. “SootFX: A Static Code Feature Extraction Tool for Java and Android.” In <i>2021 IEEE 21st International Working Conference on Source Code Analysis and Manipulation (SCAM)</i>. IEEE, 2021. <a href=\"https://doi.org/10.1109/scam52516.2021.00030\">https://doi.org/10.1109/scam52516.2021.00030</a>.","short":"K. Karakaya, E. Bodden, in: 2021 IEEE 21st International Working Conference on Source Code Analysis and Manipulation (SCAM), IEEE, 2021.","mla":"Karakaya, Kadiray, and Eric Bodden. “SootFX: A Static Code Feature Extraction Tool for Java and Android.” <i>2021 IEEE 21st International Working Conference on Source Code Analysis and Manipulation (SCAM)</i>, IEEE, 2021, doi:<a href=\"https://doi.org/10.1109/scam52516.2021.00030\">10.1109/scam52516.2021.00030</a>.","bibtex":"@inproceedings{Karakaya_Bodden_2021, title={SootFX: A Static Code Feature Extraction Tool for Java and Android}, DOI={<a href=\"https://doi.org/10.1109/scam52516.2021.00030\">10.1109/scam52516.2021.00030</a>}, booktitle={2021 IEEE 21st International Working Conference on Source Code Analysis and Manipulation (SCAM)}, publisher={IEEE}, author={Karakaya, Kadiray and Bodden, Eric}, year={2021} }","ama":"Karakaya K, Bodden E. SootFX: A Static Code Feature Extraction Tool for Java and Android. In: <i>2021 IEEE 21st International Working Conference on Source Code Analysis and Manipulation (SCAM)</i>. IEEE; 2021. doi:<a href=\"https://doi.org/10.1109/scam52516.2021.00030\">10.1109/scam52516.2021.00030</a>"},"date_created":"2022-02-24T15:44:42Z","type":"conference","department":[{"_id":"76"}]},{"project":[{"name":"SFB 901 - Project Area B","_id":"3"},{"name":"SFB 901 - Subproject B4","_id":"12"},{"_id":"1","name":"SFB 901"}],"abstract":[{"text":"Static analysis is used to automatically detect bugs and security breaches, and aids compileroptimization. Whole-program analysis (WPA) can yield high precision, however causes long analysistimes and thus does not match common software-development workflows, making it often impracticalto use for large, real-world applications.This paper thus presents the design and implementation ofModAlyzer, a novel static-analysisapproach that aims at accelerating whole-program analysis by making the analysis modular andcompositional. It shows how to computelossless, persisted summaries for callgraph, points-to anddata-flow information, and it reports under which circumstances this function-level compositionalanalysis outperforms WPA.We implementedModAlyzeras an extension to LLVM and PhASAR, and applied it to 12 real-world C and C++ applications. At analysis time,ModAlyzermodularly and losslessly summarizesthe analysis effect of the library code those applications share, hence avoiding its repeated re-analysis.The experimental results show that the reuse of these summaries can save, on average, 72% ofanalysis time over WPA. Moreover, because it is lossless, the module-wise analysis fully retainsprecision and recall. Surprisingly, as our results show, it sometimes even yields precision superior toWPA. The initial summary generation, on average, takes about 3.67 times as long as WPA.","lang":"eng"}],"citation":{"bibtex":"@inproceedings{Schubert_Hermann_Bodden_2021, title={Lossless, Persisted Summarization of Static Callgraph, Points-To and Data-Flow Analysis}, booktitle={European Conference on Object-Oriented Programming (ECOOP)}, author={Schubert, Philipp and Hermann, Ben and Bodden, Eric}, year={2021} }","ama":"Schubert P, Hermann B, Bodden E. Lossless, Persisted Summarization of Static Callgraph, Points-To and Data-Flow Analysis. In: <i>European Conference on Object-Oriented Programming (ECOOP)</i>. ; 2021.","short":"P. Schubert, B. Hermann, E. Bodden, in: European Conference on Object-Oriented Programming (ECOOP), 2021.","chicago":"Schubert, Philipp, Ben Hermann, and Eric Bodden. “Lossless, Persisted Summarization of Static Callgraph, Points-To and Data-Flow Analysis.” In <i>European Conference on Object-Oriented Programming (ECOOP)</i>, 2021.","ieee":"P. Schubert, B. Hermann, and E. Bodden, “Lossless, Persisted Summarization of Static Callgraph, Points-To and Data-Flow Analysis,” 2021.","apa":"Schubert, P., Hermann, B., &#38; Bodden, E. (2021). Lossless, Persisted Summarization of Static Callgraph, Points-To and Data-Flow Analysis. <i>European Conference on Object-Oriented Programming (ECOOP)</i>.","mla":"Schubert, Philipp, et al. “Lossless, Persisted Summarization of Static Callgraph, Points-To and Data-Flow Analysis.” <i>European Conference on Object-Oriented Programming (ECOOP)</i>, 2021."},"publication":"European Conference on Object-Oriented Programming (ECOOP)","oa":"1","department":[{"_id":"76"}],"type":"conference","date_created":"2021-04-08T11:24:59Z","date_updated":"2022-03-25T07:49:35Z","author":[{"full_name":"Schubert, Philipp","orcid":"0000-0002-8674-1859","last_name":"Schubert","first_name":"Philipp","id":"60543"},{"orcid":"0000-0001-9848-2017","first_name":"Ben","last_name":"Hermann","full_name":"Hermann, Ben","id":"66173"},{"id":"59256","orcid":"0000-0003-3470-3647","first_name":"Eric","last_name":"Bodden","full_name":"Bodden, Eric"}],"status":"public","title":"Lossless, Persisted Summarization of Static Callgraph, Points-To and Data-Flow Analysis","year":"2021","user_id":"60543","language":[{"iso":"eng"}],"_id":"21598","main_file_link":[{"url":"https://drops.dagstuhl.de/opus/volltexte/2021/14045/","open_access":"1"}]},{"date_created":"2021-10-18T12:53:15Z","department":[{"_id":"76"},{"_id":"662"}],"type":"conference","citation":{"chicago":"Piskachev, Goran, Ranjith Krishnamurthy, and Eric Bodden. “SecuCheck: Engineering Configurable Taint Analysis for Software Developers.” In <i>2021 IEEE 21st International Working Conference on Source Code Analysis and Manipulation (SCAM)</i>, 2021.","short":"G. Piskachev, R. Krishnamurthy, E. Bodden, in: 2021 IEEE 21st International Working Conference on Source Code Analysis and Manipulation (SCAM), 2021.","apa":"Piskachev, G., Krishnamurthy, R., &#38; Bodden, E. (2021). SecuCheck: Engineering configurable taint analysis for software developers. <i>2021 IEEE 21st International Working Conference on Source Code Analysis and Manipulation (SCAM)</i>.","ieee":"G. Piskachev, R. Krishnamurthy, and E. Bodden, “SecuCheck: Engineering configurable taint analysis for software developers,” 2021.","ama":"Piskachev G, Krishnamurthy R, Bodden E. SecuCheck: Engineering configurable taint analysis for software developers. In: <i>2021 IEEE 21st International Working Conference on Source Code Analysis and Manipulation (SCAM)</i>. ; 2021.","bibtex":"@inproceedings{Piskachev_Krishnamurthy_Bodden_2021, title={SecuCheck: Engineering configurable taint analysis for software developers}, booktitle={2021 IEEE 21st International Working Conference on Source Code Analysis and Manipulation (SCAM)}, author={Piskachev, Goran and Krishnamurthy, Ranjith and Bodden, Eric}, year={2021} }","mla":"Piskachev, Goran, et al. “SecuCheck: Engineering Configurable Taint Analysis for Software Developers.” <i>2021 IEEE 21st International Working Conference on Source Code Analysis and Manipulation (SCAM)</i>, 2021."},"publication":"2021 IEEE 21st International Working Conference on Source Code Analysis and Manipulation (SCAM)","_id":"26407","language":[{"iso":"eng"}],"user_id":"15249","author":[{"id":"41936","last_name":"Piskachev","orcid":"0000-0003-4424-5838","first_name":"Goran","full_name":"Piskachev, Goran"},{"full_name":"Krishnamurthy, Ranjith","last_name":"Krishnamurthy","first_name":"Ranjith"},{"orcid":"0000-0003-3470-3647","first_name":"Eric","last_name":"Bodden","full_name":"Bodden, Eric","id":"59256"}],"status":"public","title":"SecuCheck: Engineering configurable taint analysis for software developers","year":"2021","date_updated":"2022-10-20T12:44:31Z"},{"user_id":"15249","_id":"22463","language":[{"iso":"eng"}],"date_updated":"2022-10-20T13:11:45Z","title":"IDE Support for Cloud-Based Static Analyses","year":"2021","status":"public","author":[{"last_name":"Luo","first_name":"Linghui","full_name":"Luo, Linghui"},{"last_name":"Schäf","first_name":"Martin","full_name":"Schäf, Martin"},{"full_name":"Sanchez, Daniel","last_name":"Sanchez","first_name":"Daniel"},{"id":"59256","full_name":"Bodden, Eric","orcid":"0000-0003-3470-3647","last_name":"Bodden","first_name":"Eric"}],"type":"conference","department":[{"_id":"76"}],"date_created":"2021-06-17T10:18:05Z","publication":"Proceedings of the 29th ACM Joint Meeting on European Software Engineering Conference and Symposium on the Foundations of Software Engineering","citation":{"short":"L. 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