Suchergebnisse - Theory of computation Semantics and reasoning Program reasoning Invariants
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Autoren: et al.
Quelle: Psychonomic bulletin & review [Psychon Bull Rev] 2025 Dec; Vol. 32 (6), pp. 2507-2556. Date of Electronic Publication: 2025 Jul 03.
Publikationsart: Journal Article; Review
Info zur Zeitschrift: Publisher: Springer] Country of Publication: United States NLM ID: 9502924 Publication Model: Print-Electronic Cited Medium: Internet ISSN: 1531-5320 (Electronic) Linking ISSN: 10699384 NLM ISO Abbreviation: Psychon Bull Rev Subsets: MEDLINE
MeSH-Schlagworte: Quantum Theory* , Cognition* , Models, Psychological* , Probability Theory*, Humans ; Decision Making ; Judgment
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Schlagwörter: Symbolic Computation, Formal Methods, Loop Analysis, Polynomial Invariants
Dateibeschreibung: application/pdf
Relation: Is Part Of LIPIcs, Volume 272, 48th International Symposium on Mathematical Foundations of Computer Science (MFCS 2023); https://drops.dagstuhl.de/entities/document/10.4230/LIPIcs.MFCS.2023.4
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Index Begriffe: Symbolic Computation, Formal Methods, Loop Analysis, Polynomial Invariants, InProceedings, Text, doc-type:ResearchArticle, publishedVersion
URL:
https://drops.dagstuhl.de/entities/document/10.4230/LIPIcs.MFCS.2023.4
Is Part Of LIPIcs, Volume 272, 48th International Symposium on Mathematical Foundations of Computer Science (MFCS 2023) -
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Weitere Verfasser: et al.
Quelle: https://inria.hal.science/inria-00595783 ; [Research Report] RR-7627, INRIA. 2011, pp.31.
Schlagwörter: ACM: F.: Theory of Computation/F.3: LOGICS AND MEANINGS OF PROGRAMS/F.3.1: Specifying and Verifying and Reasoning about Programs, [INFO.INFO-PL]Computer Science [cs]/Programming Languages [cs.PL]
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Resource Type: eBook.
Schlagworte: Automatic theorem proving--Congresses, Computer logic--Congresses, Artificial intelligence
Categories: COMPUTERS / Computer Science, COMPUTERS / Artificial Intelligence / General, COMPUTERS / Software Development & Engineering / General, COMPUTERS / Hardware / General
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Resource Type: eBook.
Categories: COMPUTERS / Computer Science, COMPUTERS / Artificial Intelligence / General, COMPUTERS / Software Development & Engineering / General, COMPUTERS / Hardware / General
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Weitere Verfasser: et al.
Quelle: Modeling and Analysis of Information Systems; Том 26, № 4 (2019); 502-519 ; Моделирование и анализ информационных систем; Том 26, № 4 (2019); 502-519 ; 2313-5417 ; 1818-1015
Dateibeschreibung: application/pdf
Relation: https://www.mais-journal.ru/jour/article/view/1273/929; De Angelis E., Fioravanti F., Pettorossi A., Proietti M., “Lemma Generation for Horn Clause Satisfiability: A Preliminary Study”, VPT 2019, EPTCS, 299, 2019, 4–18.; Apt K. R., Olderog E.-R., “Fifty years of Hoare’s logic”, Formal Aspects of Computing, 31:6 (2019), 751–807.; Blanchard A., Loulergue F., Kosmatov N., “Towards Full Proof Automation in Frama-C Using Auto-active Verification”, NFM 2019, LNCS, 11460, 2019, 88–105.; De Carvalho D. et al., “Teaching Programming and Design-by-Contract”, ICL 2018, AISC, 916, 2019, 68–76.; Denney E., Fischer B., “Explaining Verification Conditions”, AMAST 2008, LNCS, 5140, 2008, 145–159.; Efremov D., Mandrykin M., Khoroshilov A., “Deductive Verification of Unmodified Linux Kernel Library Functions”, ISoLA 2018, LNCS, 11245, 2018, 216–234.; Fraer R., “Tracing the Origins of Verification Conditions”, AMAST 1996, LNCS, 1101, 1996, 241–255.; Galeotti J. P., Furia C. A., May E., Fraser G., Zeller A., “Inferring Loop Invariants by Mutation, Dynamic Analysis, and Static Checking”, IEEE Transactions on Software Engineering, 41:10 (2015), 1019–1037.; Hahnle R., Huisman M., “Deductive Software Verification: From Pen-and-Paper Proofs to Industrial Tools”, Computing and Software Science, LNCS, 10000, 2019, 345–373.; Heras J., Komendantskaya E., Johansson M., Maclean E., “Proof-Pattern Recognition and Lemma Discovery in ACL2”, LPAR 2013, LNCS, 8312, 2013, 389–406.; Johansson M., “Lemma Discovery for Induction”, CICM 2019, LNCS, 11617, 2019, 125–139.; Khazeev M., Mazzara M., De Carvalho D., Aslam H., “Towards A Broader Acceptance of Formal Verification Tools: The Role of Education”, 2019, arXiv:abs/1906.01430.; Kondratyev D. A., “Automated Error Localization in C Programs.”, bitbucket.org/Kondratyev/verify-c-light.; Kondratyev D., “Implementing the Symbolic Method of Verification in the C-Light Project”, PSI 2017, LNCS, 10742, 2018, 227–240.; Кондратьев Д. А., Марьясов И. В., Непомнящий В. А., “Автоматизация верификации C-программ с использованием символического метода элиминации инвариантов циклов”, Моделирование и анализ информационных систем, 25:5 (2018), 491–505; Kondratyev D. A., Promsky A. V., “Developing a Self-Applicable Verification System. Theory and Practice”, Automatic Control and Computer Sciences, 49:7 (2015), 445–452.; Kondratyev D. A., Promsky A. V., “Towards Automated Error Localization in C Programs with Loops”, System Informatics, 2019, № 14, 31–44.; Kondratyev D., Promsky A., “Proof Strategy for Automated Sisal Program Verification”, TOOLS 2019, LNCS, 11771, 2019, 113-120.; Konighofer R., Toegl R., Bloem R., “Automatic Error Localization for Software Using Deductive Verification”, HVC 2014, LNCS, 8855, 2014, 92–98.; Kov´acs L., “Symbolic Computation and Automated Reasoning for Program Analysis”, IFM 2016, LNCS, 9681, 2016, 20–27.; Leino K. R. M., Millstein T., Saxe J. B., “Generating Error Traces from VerificationCondition Counterexamples”, Science of Computer Programming, 55:1–3 (2005), 209–226.; Li J., Sun J., Li L., Loc Le Q., Lin S-W., “Automatic Loop Invariant Generation and Refinement through Selective Sampling”, ASE 2017, 2017, 782–792.; Lin Y., Bundy A., Grov G., Maclean E., “Automating Event-B invariant proofs by rippling and proof patching”, Formal Aspects of Computing, 31:1 (2019), 95–129.; Maryasov I. V., Nepomniaschy V. A., Promsky A. V., Kondratyev D. A., “Automatic C Program Verification Based on Mixed Axiomatic Semantics”, Automatic Control and Computer Sciences, 48:7 (2014), 407–414.; Moore J. S., “Milestones from the Pure Lisp Theorem Prover to ACL2”, Formal Aspects of Computing, 31:6 (2019), 699–732.; Moriconi M., Schwarts R. L., “Automatic Construction of Verification Condition Generators From Hoare Logics”, ICALP 1981, LNCS, 115, 1981, 363–377.; Nepomniaschy V. A., “Symbolic Method of Verification of Definite Iterations over Altered Data Structures”, Programming and Computer Software, 31:1 (2005), 1–9.; Reger G., Voronkov A., “Induction in Saturation-Based Proof Search”, CADE 2019, LNCS, 11716, 2019, 477–494.; Srivastava S., Gulwani S., Foster J. S., “Template-Based Program Verification and Program Synthesis”, International Journal on Software Tools for Technology Transfer, 15:5–6 (2013), 497–518.; Tuerk T., “Local Reasoning about While-Loops”, VSTTE 2010. Workshop Proceedings, 2010, 29–39.; Volkov G., Mandrykin M., Efremov D., “Lemma Functions for Frama-C: C Programs as Proofs”, 2018 Ivannikov Ispras Open Conference (ISPRAS), 2018, 31–38.; Yang W., Fedyukovich G., Gupta A., “Lemma Synthesis for Automating Induction over Algebraic Data Types”, CP 2019, LNCS, 11802, 2019, 600-617.
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Autoren: Fields, Chris
Quelle: Cognitive Processing; Aug2013, Vol. 14 Issue 3, p217-229, 13p
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Resource Type: eBook.
Schlagworte: Computer science
Categories: COMPUTERS / General
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Resource Type: eBook.
Schlagworte: Information theory, Software engineering--Congresses, Computer software--Congresses, Computer systems
Categories: COMPUTERS / Computer Science, COMPUTERS / Computer Architecture, COMPUTERS / Database Administration & Management, COMPUTERS / Information Theory, COMPUTERS / Hardware / General, MATHEMATICS / Applied, MATHEMATICS / Logic
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