Jörg Kreiker

dblp:k/JorgKreiker · also Jörg Bauer 0001 · DBLP profile ↗
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7ranked-venue papers
5as first author
1since 2021 · last 2022
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Software engineering, systems software and programming languages · 5 · 4 first-authorTheory of computation · 2 · 1 first-author · 1 since 2021Databases, data management, data science and information retrieval · 1 · 1 first-author
YearPublicationVenuePosition
2022 Local higher-order fixpoint iteration
Florian Bruse, Jörg Kreiker, Martin Lange 0001, Marco Sälzer
Inf. Comput.2
2010 Shape Analysis of Low-Level C with Overlapping Structures
Jörg Kreiker, Helmut Seidl, Vesal Vojdani
VMCAI1
2008 A Modal-Logic Based Graph Abstraction
Jörg Kreiker, Iovka Boneva, Marcos E. Kurbán, Arend Rensink
ICGT1
2008 Relational Analysis of Correlation
Jörg Kreiker, Flemming Nielson, Hanne Riis Nielson, Henrik Pilegaard
SAS1
2007 Mind the Shapes: Abstraction Refinement Via Topology Invariants
Jörg Kreiker, Tobe Toben, Bernd Westphal
ATVA1
2007 Static Analysis of Dynamic Communication Systems by Partner Abstraction
Jörg Kreiker, Reinhard Wilhelm
SAS1
2005 A semantics for procedure local heaps and its abstractions
abstract
The goal of this work is to develop compile-time algorithms for automatically verifying properties of imperative programs that manipulate dynamically allocated storage. The paper presents an analysis method that uses a characterization of a procedure's behavior in which parts of the heap not relevant to the procedure are ignored. The paper has two main parts: The first part introduces a non-standard concrete semantics, LSL, in which called procedures are only passed parts of the heap. In this semantics, objects are treated specially when they separate the "local heap" that can be mutated by a procedure from the rest of the heap, which---from the viewpoint of that procedure---is non-accessible and immutable. The second part concerns abstract interpretation of LSL and develops a new static-analysis algorithm using canonical abstraction.
Noam Rinetzky, Jörg Kreiker, Thomas W. Reps, Shmuel Sagiv, Reinhard Wilhelm
POPL2