Skip to the end of the images gallery Navigation umschalten
Skip to the beginning of the images gallery Navigation umschalten
Formal Verification of Concurrent Embedded Software
Band 1: Kiel Computer Science Series 2016
ePUB
7,2 MB
DRM: Wasserzeichen
ISBN-13: 9783741221163
Verlag: Books on Demand
Erscheinungsdatum: 02.05.2016
Sprache: Englisch
erhältlich als:
5,99 €
inkl. MwSt.
sofort verfügbar als Download
Bitte beachten Sie, dass Sie dieses E-Book nicht auf einem Amazon Kindle lesen können, sondern ausschließlich auf Geräten mit einer Software, die epub-Dateien anzeigen kann. Mehr Informationen
Du schreibst?
Erfüll dir deinen Traum, schreibe deine Geschichte und mach mit BoD ein Buch daraus!
Mehr InfosAutomotive software is mainly concerned with safety critical systems and the functional correctness of the software is very important. Thus static software analysis, being able to detect runtime errors in software, has become a standard in the automotive domain. The most critical runtime error is one which only occurs sporadically and is therefore very difficult to detect and reproduce. The introduction of multicore hardware enables an execution of the software in real parallel. A reason for such an error is e.g., a race condition. Hence, the risk of critical race conditions increases.
This thesis introduces the MEMICS software verification approach. In order to produce precise results, MEMICS works based on the formal verification technique, bounded model checking. The internal model is able to represent an entire automotive control unit, including the hardware configuration as well as real-time operating systems like AUTOSAR and OSEK. The proof engine used to check the model is a newly developed interval constraint solver with an embedded memory model. MEMICS is able to detect common runtime errors, like e.g., a division by zero, as well as concurrent ones, like e.g., a critical race condition.
This thesis introduces the MEMICS software verification approach. In order to produce precise results, MEMICS works based on the formal verification technique, bounded model checking. The internal model is able to represent an entire automotive control unit, including the hardware configuration as well as real-time operating systems like AUTOSAR and OSEK. The proof engine used to check the model is a newly developed interval constraint solver with an embedded memory model. MEMICS is able to detect common runtime errors, like e.g., a division by zero, as well as concurrent ones, like e.g., a critical race condition.
Eigene Bewertung schreiben
Es sind momentan noch keine Pressestimmen vorhanden.