{"id":164861,"date":"2013-01-01T00:00:00","date_gmt":"2013-01-01T00:00:00","guid":{"rendered":"https:\/\/www.microsoft.com\/en-us\/research\/msr-research-item\/posthat-and-all-that-automating-abstract-interpretation\/"},"modified":"2018-10-16T21:06:15","modified_gmt":"2018-10-17T04:06:15","slug":"posthat-and-all-that-automating-abstract-interpretation","status":"publish","type":"msr-research-item","link":"https:\/\/www.microsoft.com\/en-us\/research\/publication\/posthat-and-all-that-automating-abstract-interpretation\/","title":{"rendered":"PostHat and All That: Automating Abstract Interpretation"},"content":{"rendered":"
Abstract interpretation provides an elegant formalism for performing program analysis. Unfortunately, designing and implementing a sound, precise, scalable, and extensible abstract interpreter is di\ufb03cult. In this paper, we describe an approach to creating correct-by-construction abstract interpreters that also attain the fundamental limits on precision that abstract-interpretation theory establishes. Our approach requires the analysis designer to implement only a small number of operations. In particular, we describe a systematic method for implementing an abstract interpreter that solves the following problem: Given program P, and an abstract domain A, \ufb01nd the most-precise inductive A-invariant for P.<\/p>\n<\/div>\n
<\/p>\n","protected":false},"excerpt":{"rendered":"
Abstract interpretation provides an elegant formalism for performing program analysis. Unfortunately, designing and implementing a sound, precise, scalable, and extensible abstract interpreter is di\ufb03cult. In this paper, we describe an approach to creating correct-by-construction abstract interpreters that also attain the fundamental limits on precision that abstract-interpretation theory establishes. Our approach requires the analysis designer to […]<\/p>\n","protected":false},"featured_media":0,"template":"","meta":{"msr-url-field":"","msr-podcast-episode":"","msrModifiedDate":"","msrModifiedDateEnabled":false,"ep_exclude_from_search":false,"_classifai_error":"","footnotes":""},"msr-content-type":[3],"msr-research-highlight":[],"research-area":[13560],"msr-publication-type":[193716],"msr-product-type":[],"msr-focus-area":[],"msr-platform":[],"msr-download-source":[],"msr-locale":[268875],"msr-post-option":[],"msr-field-of-study":[],"msr-conference":[],"msr-journal":[],"msr-impact-theme":[],"msr-pillar":[],"class_list":["post-164861","msr-research-item","type-msr-research-item","status-publish","hentry","msr-research-area-programming-languages-software-engineering","msr-locale-en_us"],"msr_publishername":"Elsevier","msr_edition":"The Fourth Workshop on Tools for Automatic Program Analysis 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