Formalizing a framework for dynamic slicing of program dependence graphs in Isabelle/HOL

被引:0
作者
Wasserrab, Daniel [1 ]
Lochbihler, Andreas [1 ]
机构
[1] Univ Karlsruhe, Karlsruhe, Germany
来源
THEOREM PROVING IN HIGHER ORDER LOGICS, PROCEEDINGS | 2008年 / 5170卷
关键词
D O I
暂无
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
Slicing is a widely-used technique with applications in e.g. compiler technology and software security. Thus verification of algorithms in these areas is often based on the correctness of slicing, which should ideally be proven independent of concrete programming languages and with the help of well-known verifying techniques such as proof assistants. As a first step in this direction, this contribution presents a framework for dynamic slicing based on control flow and program dependence graphs and machine checked in Isabelle/HOL. Abstracting from concrete syntax we base the framework on a graph representation of the program fulfilling certain structural and well-formedness properties.
引用
收藏
页码:294 / 309
页数:16
相关论文
共 50 条
[11]   Formalizing and Proving a Typing Result for Security Protocols in Isabelle/HOL [J].
Hess, Andreas Viktor ;
Modersheim, Sebastian .
2017 IEEE 30TH COMPUTER SECURITY FOUNDATIONS SYMPOSIUM (CSF), 2017, :451-463
[12]   Formalizing Network Flow Algorithms: A Refinement Approach in Isabelle/HOL [J].
Lammich, Peter ;
Sefidgar, S. Reza .
JOURNAL OF AUTOMATED REASONING, 2019, 62 (02) :261-280
[13]   Formalizing Network Flow Algorithms: A Refinement Approach in Isabelle/HOL [J].
Peter Lammich ;
S. Reza Sefidgar .
Journal of Automated Reasoning, 2019, 62 :261-280
[14]   Algebras for Program Correctness in Isabelle/HOL [J].
Armstrong, Alasdair ;
Gomes, Victor Bf ;
Struth, Georg .
RELATIONAL AND ALGEBRAIC METHODS IN COMPUTER SCIENCE (RAMICS 2014), 2014, 8428 :49-64
[15]   Formalizing the Cox–Ross–Rubinstein Pricing of European Derivatives in Isabelle/HOL [J].
Mnacho Echenim ;
Hervé Guiol ;
Nicolas Peltier .
Journal of Automated Reasoning, 2020, 64 :737-765
[16]   Abstract program slicing on dependence condition graphs [J].
Halder, Raju ;
Cortesi, Agostino .
SCIENCE OF COMPUTER PROGRAMMING, 2013, 78 (09) :1240-1263
[17]   Formalizing the LLL Basis Reduction Algorithm and the LLL Factorization Algorithm in Isabelle/HOL [J].
René Thiemann ;
Ralph Bottesch ;
Jose Divasón ;
Max W. Haslbeck ;
Sebastiaan J. C. Joosten ;
Akihisa Yamada .
Journal of Automated Reasoning, 2020, 64 :827-856
[18]   Formalizing the Metatheory of Logical Calculi and Automatic Provers in Isabelle/HOL (Invited Talk) [J].
Blanchette, Jasmin Christian .
PROCEEDINGS OF THE 8TH ACM SIGPLAN INTERNATIONAL CONFERENCE ON CERTIFIED PROGRAMS AND PROOFS (CPP' 19), 2019, :1-13
[19]   Formalizing the Cox-Ross-Rubinstein Pricing of European Derivatives in Isabelle/HOL [J].
Echenim, Mnacho ;
Guiol, Herve ;
Peltier, Nicolas .
JOURNAL OF AUTOMATED REASONING, 2020, 64 (04) :737-765
[20]   Formalizing the LLL Basis Reduction Algorithm and the LLL Factorization Algorithm in Isabelle/HOL [J].
Thiemann, Rene ;
Bottesch, Ralph ;
Divason, Jose ;
HasIbeck, Max W. ;
Joosten, Sebastiaan J. C. ;
Yamada, Akihisa .
JOURNAL OF AUTOMATED REASONING, 2020, 64 (05) :827-856