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Titlebook: Verified Software: Theories, Tools, Experiments; First IFIP TC 2/WG 2 Bertrand Meyer,Jim Woodcock Book 2008 Springer-Verlag Berlin Heidelbe

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楼主: AMASS
发表于 2025-3-23 10:25:02 | 显示全部楼层
Automatic Verification of Strongly Dynamic Software Systemsy such systems are dynamically allocated and deallocated, and that for both sets, no bounds are statically known. In this position paper, we describe the progress we have made in automated verification of strongly dynamic systems using abstract interpretation with three-valued logical structures. We
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Reasoning about Object Structures Using Ownerships whose fields are primitive values, but are unsound for invariants involving more complex object structures..We have developed an ownership model, which allows one to structure the object store and to restrict reference passing and the operations that can be performed on references. We use this mod
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Scalable Specification and Reasoning: Challenges for Program Logic This paper discusses the scientific challenges that this poses for research in program logic. Some recent work on separation logic is described, and test problems that would be useful in measuring advances on modular reasoning are suggested.
发表于 2025-3-24 02:15:36 | 显示全部楼层
Lessons from the JML Projects from a shared specification language, and thus holds several lessons for the verifying compiler grand challenge. An important lesson is that the project should focus considerable resources on specification language design, which still contains many open research problems. Another important lesson
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Integrating Static Checking and Interactive Verification: Supporting Multiple Theories and Provers ie nature. Unfortunately, ESC comes at a cost: a host of logical and practical completeness and soundness issues. Interactive verification technology, on the other hand, is usually complete and sound, but requires a large amount of mathematical and practical expertise. Most programmers can be expecte
发表于 2025-3-24 12:09:28 | 显示全部楼层
Automated Test Generation and Verified Softwareist with testing and should be developed in ways that improve, supplement, and exploit the value of testing. I describe automated test generation, which uses technology from formal methods to mechanize the construction of test cases, and discuss some of the research challenges in this area.
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