H. Vijayakumar, Guruprasad Jakka, S. Rueda, Joshua Schiffman, T. Jaeger
{"title":"完整性墙:从强制访问控制策略中查找攻击面","authors":"H. Vijayakumar, Guruprasad Jakka, S. Rueda, Joshua Schiffman, T. Jaeger","doi":"10.1145/2414456.2414500","DOIUrl":null,"url":null,"abstract":"Protecting host system integrity in the face of determined adversaries remains a major problem. Despite advances in program development and access control, attackers continue to compromise systems forcing security practitioners to regularly react to such breaches. While security practitioners may eventually learn which entry points in programs must be defended over a software's lifetime, new software and configuration options are frequently introduced, opening additional vulnerabilities to adversaries. The application developers' problem is to identify the program entry points accessible to adversaries and provide necessary defenses at these entry points before the adversaries use these to compromise the program. Unfortunately, this is a race that developers often lose. While some program vulnerable entry points are well-known (mostly network), the complexity of host systems makes it difficult to prevent local exploits should attackers gain control of any unprivileged processing. The question we explore in this paper is whether the program entry points accessible to adversaries can be found proactively, so defenses at these entry points can also be developed proactively.","PeriodicalId":72308,"journal":{"name":"Asia CCS '22 : proceedings of the 2022 ACM Asia Conference on Computer and Communications Security : May 30-June 3, 2022, Nagasaki, Japan. ACM Asia Conference on Computer and Communications Security (17th : 2022 : Nagasaki-shi, Japan ; ...","volume":null,"pages":null},"PeriodicalIF":0.0000,"publicationDate":"2012-05-02","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"44","resultStr":"{\"title\":\"Integrity walls: finding attack surfaces from mandatory access control policies\",\"authors\":\"H. Vijayakumar, Guruprasad Jakka, S. Rueda, Joshua Schiffman, T. Jaeger\",\"doi\":\"10.1145/2414456.2414500\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Protecting host system integrity in the face of determined adversaries remains a major problem. Despite advances in program development and access control, attackers continue to compromise systems forcing security practitioners to regularly react to such breaches. While security practitioners may eventually learn which entry points in programs must be defended over a software's lifetime, new software and configuration options are frequently introduced, opening additional vulnerabilities to adversaries. The application developers' problem is to identify the program entry points accessible to adversaries and provide necessary defenses at these entry points before the adversaries use these to compromise the program. Unfortunately, this is a race that developers often lose. While some program vulnerable entry points are well-known (mostly network), the complexity of host systems makes it difficult to prevent local exploits should attackers gain control of any unprivileged processing. 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Integrity walls: finding attack surfaces from mandatory access control policies
Protecting host system integrity in the face of determined adversaries remains a major problem. Despite advances in program development and access control, attackers continue to compromise systems forcing security practitioners to regularly react to such breaches. While security practitioners may eventually learn which entry points in programs must be defended over a software's lifetime, new software and configuration options are frequently introduced, opening additional vulnerabilities to adversaries. The application developers' problem is to identify the program entry points accessible to adversaries and provide necessary defenses at these entry points before the adversaries use these to compromise the program. Unfortunately, this is a race that developers often lose. While some program vulnerable entry points are well-known (mostly network), the complexity of host systems makes it difficult to prevent local exploits should attackers gain control of any unprivileged processing. The question we explore in this paper is whether the program entry points accessible to adversaries can be found proactively, so defenses at these entry points can also be developed proactively.