TY - CHAP A1 - van Aerssen, Max A1 - Leich, Christian A1 - Schmidt, Holger A1 - Al Ali, Salar A1 - Benni, Abdulkader A1 - Tanz, Jakob T1 - CopypastaVulGuard - A browser extension to prevent copy and paste spreading of vulnerable source code in forum posts T2 - ARES '22: Proceedings of the 17th International Conference on Availability, Reliability and Security N2 - Forums such as Stack Overflow are used by many software developers to find a solution for a given coding problem. Found solutions, i.e. forum posts containing relevant source code, are utilized in a copy and paste manner. This behavior carries the risk that vulnerabilities contained in the source code of the forum posts are spread. Software developers should be able to identify vulnerable source code at an early stage, thereby preventing copying the corresponding source code. In this paper, we introduce the tool CopypastaVulGuard that identifies vulnerable source code in forum posts and allows software developers to omit the source code by marking the forum posts as dangerous. Our tool consists of a browser extension and a management application capable to address as examples SQL injections, remote code executions and deprecated functions based on a dump of the archive.org Stack Overflow data set. We present an evaluation of our tool's possible impact and relevance considering pros/cons and selected research questions. Y1 - 2022 U6 - https://doi.org/10.1145/3538969.3538973 SP - 1 EP - 8 PB - Association for Computing Machinery CY - New York ER - TY - CHAP A1 - Schwittek, Widura A1 - Schmidt, Holger A1 - Eicker, Stefan A1 - Heisel, Maritta ED - Filipe, Joaquim ED - Liu, Kecheng T1 - Towards a Common Body of Knowledge for Engineering Secure Software and Services T2 - Proceedings of the International Conference on Knowledge Management and Information Sharing N2 - Interdisciplinary communities involve people and knowledge from different disciplines in addressing a common challenge. Differing perspectives, processes, methods, tools, vocabularies, and standards are problems that arise in this context. We present an approach to support bringing together disciplines based on a common body of knowledge (CBK), in which knowledge from different disciplines is collected, integrated, and structured. The novelty of our approach is twofold: first, it introduces a CBK ontology, which allows one to semantically enrich contents in order to be able to query the CBK in a more elaborate way afterwards. Second, it heavily relies on user participation in building up a CBK, making use of the Semantic MediaWiki as a platform to support collaborative writing. The CBK ontology is backed by a conceptual framework, consisting of concepts to structure the knowledge, to provide access options to it, and to build up a common terminology. To ensure a high quality of the provided contents and to sustain the community’s commitment, we further present organizational means as part of our approach. We demonstrate our work using the example of a Network of Excellence EU project, which aims at bringing together researchers and practitioners from services computing, security and software engineering. KW - common body of knowledge KW - knowledge management KW - software engineering KW - security engineering KW - services computing Y1 - 2011 SP - 369 EP - 374 PB - SciTePress - Science and Technology Publications CY - Paris ER - TY - CHAP A1 - Schwittek, Widura A1 - Schmidt, Holger A1 - Beckers, Kristian A1 - Eicker, Stefan A1 - Faßbender, Stephan A1 - Heisel, Maritta T1 - A Common Body of Knowledge for Engineering Secure Software and Services T2 - 2012 Seventh International Conference on Availability, Reliability and Security N2 - The discipline of engineering secure software and services brings together researchers and practitioners from software, services, and security engineering. This interdisciplinary community is fairly new, it is still not well integrated and is therefore confronted with differing perspectives, processes, methods, tools, vocabularies, and standards. We present a Common Body of Knowledge (CBK) to overcome the aforementioned problems. We capture use cases from research and practice to derive requirements for the CBK. Our CBK collects, integrates, and structures knowledge from the different disciplines based on an ontology that allows one to semantically enrich content to be able to query the CBK. The CBK heavily relies on user participation, making use of the Semantic MediaWiki as a platform to support collaborative writing. The ontology is complemented by a conceptual framework, consisting of concepts to structure the knowledge and to provide access to it, and a means to build a common terminology. We also present organizational factors covering dissemination and quality assurance. KW - software engineering KW - security engineering KW - services computing KW - common body of knowledge KW - interdisciplinary Y1 - 2012 UR - https://ieeexplore.ieee.org/document/6329223 SN - 978-1-4673-2244-7 U6 - https://doi.org/10.1109/ARES.2012.31 N1 - Sie haben Zugriff auf den Volltext innerhalb des HSD Campus. VL - NESSoS, ICT-2009.1.4 Trustworthy ICT, Grant No. 25698 SP - 499 EP - 506 PB - IEEE CY - Prague ER - TY - CHAP A1 - Schmidt, Holger A1 - Wentzlaff, Ina ED - Gruhn, Volker ED - Oquendo, Flavio T1 - Preserving Software Quality Characteristics from Requirements Analysis to Architectural Design T2 - Software Architecture: Third European Workshop, EWSA 2006, Nantes, France, September 4-5, 2006, Revised Selected Papers Y1 - 2006 UR - https://link.springer.com/chapter/10.1007/11966104_14 SN - 978-3-540-69271-3 U6 - https://doi.org/10.1007/11966104_14 VL - LNCS, 4344 SP - 189 EP - 203 PB - Springer CY - Berlin, Heidelberg ER - TY - RPRT A1 - Schmidt, Holger A1 - Jürjens, Jan T1 - UMLsec4UML2 - Adopting UMLsec to Support UML2 T2 - LS 14 Software Engineering mit dem Schwerpunkt Entwicklung evolutionsfähiger Software und Systeme N2 - In this paper, we present an approach to adopt UMLsec, which is defined for UML 1.5, to support the current UML version 2.3. The new profile UMLsec4UML2 is technically constructed as a UML profile diagram, which is equipped with a number of integrity conditions expressed using OCL. Consequently, the UMLsec4UML2-profile can be loaded in any Eclipse-based EMF- and MDT-compatible UML editing tool to develop and analyze different kinds of security models. The OCL constraints replace the static checks of the tool support for the old UMLsec defined for UML 1.5. Thus, the UMLsec4UML2-profile not only provides the whole expresiveness of UML2.3 for security modeling, it also brings considerably more freedom in selecting a basic UML editing tool, and it integrates modeling and analyzing security models. Since UML2.3 comprises new diagram types, as well as new model elements and new semantics of diagram types already contained in UML1.5, we consider a number of these changes in detail. More specifically, we consider composite structure and sequence diagrams with respect to modeling security properties according to the original version of UMLsec. The goal is to use UMLsec4UML2 to specify architectural security patterns. KW - UMLsec KW - UML2 KW - OCL KW - security architecture KW - security pattern Y1 - 2011 UR - https://eldorado.tu-dortmund.de/handle/2003/27602?locale=de U6 - https://doi.org/10.17877/DE290R-990 N1 - Der Bericht kann über die angebenen URL aufgerufen werden. PB - Technische Hochschule Dortmund CY - Dortmund ER - TY - CHAP A1 - Schmidt, Holger A1 - Jürjens, Jan ED - Mouratidis, Haralambos ED - Rolland, Colette T1 - Connecting Security Requirements Analysis and Secure Design Using Patterns and UMLsec T2 - Advanced Information Systems Engineering: 23rd International Conference, CAiSE 2011, London, UK, June 20-24, 2011. Proceedings KW - security requirement KW - secure design KW - architectual pattern Y1 - 2011 UR - https://link.springer.com/chapter/10.1007/978-3-642-21640-4_28 SN - 978-3-642-21639-8 U6 - https://doi.org/10.1007/978-3-642-21640-4_28 VL - LNCS, 6741 SP - 367 EP - 382 PB - Springer CY - Berlin, Heidelberg ER - TY - CHAP A1 - Schmidt, Holger A1 - Hatebur, Denis A1 - Heisel, Maritta ED - Mouratidis, Haralambos T1 - A Pattern-Based Method to Develop Secure Software T2 - Software Engineering for Secure Systems: Industrial and Research Perspectives N2 - The authors present a security engineering process based on security problem frames and concretized security problem frames. Both kinds of frames constitute patterns for analyzing security problems and associated solution approaches. They are arranged in a pattern system that makes dependencies between them explicit. The authors describe step-by-step how the pattern system can be used to analyze a given security problem and how solution approaches can be found. Afterwards, the security problems and the solution approaches are formally modeled in detail. The formal models serve to prove that the solution approaches are correct solutions to the security problems. Furthermore, the formal models of the solution approaches constitute a formal specification of the software to be developed. Then, the specification is implemented by generic security components and generic security architectures, which constitute architectural patterns. Finally, the generic security components and the generic security architecture that composes them are refined and the result is a secure software product built from existing and/or tailor-made security components. KW - security KW - problems Y1 - 2011 SN - 978-1-61520-837-1 U6 - https://doi.org/10.4018/978-1-61520-837-1.ch003 SP - 32 EP - 74 PB - IGI Global CY - Hershey ER - TY - CHAP A1 - Schmidt, Holger A1 - Hatebur, Denis A1 - Heisel, Maritta T1 - Developing Secure Software Using UML Patterns T2 - Intelligent systems: Concepts, methodologies, tools, and applications Y1 - 2018 SN - 9781522556435 U6 - https://doi.org/10.4018/978-1-5225-5643-5.ch022 SP - 551 EP - 592 PB - IGI Global CY - Hershey, Pennsylvania ER - TY - RPRT A1 - Schmidt, Holger A1 - Gondolf, Jeremy A1 - Haufs-Brusberg, Peter T1 - Studie zur Information Security Awareness in kleinen und mittleren Unternehmen (KMU) T1 - Study on Information Security Awareness in Small and Medium-sized Enterprises (SMEs) N2 - Der Bereich der Informationssicherheit stellt große und insbesondere kleine und mittlere Unternehmen (KMU) vor erhebliche Herausforderungen. Zunehmende Angriffe auf IT-Systeme und Infrastrukturen haben die Informationssicherheit zum kritischen Erfolgsfaktor gemacht. Neben klassischen Zielen und Bereichen der Informationssicherheit hat vor allem die Security Awareness - das Sicherheitsbewusstsein aller Mitarbeiter eines Unternehmens - an Bedeutung gewonnen. Security Awareness bezieht sich auf jegliches Wissen und Handeln der Mitarbeiter eines Unternehmens und ist daher ein bedeutsamer Baustein zur ganzheitlichen Gewährleistung von Informationssicherheit. Die Motivation zur Entwicklung und Einführung von Informationssicherheit und insbesondere Security Awareness geht in großen Unternehmen vor allem von externen Faktoren, so z. B. der Regulierung von Branchen, aus und ist mittels globaler Standards, Normen und Frameworks implementiert. KMU sind grundsätzlich keinen geringeren Risiken als große Unternehmen ausgesetzt, verfügen jedoch nur selten über vergleichbare Schutzmaßnahmen hinsichtlich Informationssicherheit. Im Rahmen des Projekts wurden externe Anforderungen für große Unternehmen analysiert und hinsichtlich der Eignung als Grundlage für KMU bewertet. Das Projekt thematisiert weiterhin die Messbarkeit von Security Awareness sowie die in großen Unternehmen eingesetzten Maßnahmen zur Gewährleistung von Security Awareness besonders hinsichtlich ihrer Eignung für KMU. T3 - Berichte zu HSD-intern geförderten Forschungsprojekten - 1 KW - information security KW - awareness KW - sicherheit KW - KMU Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:hbz:due62-opus-11880 SN - 2625-3690 PB - Hochschule Düsseldorf CY - Düsseldorf ER - TY - JOUR A1 - Schmidt, Holger T1 - Threat and Risk-Driven Security Requirements Engineering JF - International Journal of Mobile Computing and Multimedia Communications N2 - In this paper, the author aim to present a threat and risk-driven methodology to security requirements engineering. The chosen approach has a strong focus on gathering, modeling, and analyzing the environment in which a secure ICT-system to be built is located. The knowledge about the environment comprises threat and risk models. As presented in the paper, this security-relevant knowledge is used to assess the adequacy of security mechanisms, which are then selected to establish security requirements. KW - security KW - security engineering Y1 - 2011 U6 - https://doi.org/10.4018/jmcmc.2011010103 SN - 1937-9412 VL - 3 IS - 1 SP - 35 EP - 50 PB - IGI Global ER -