Willem-Paul de Roever; Frank de Boer; Ulrich Hanneman; Jozef Hooman; Yassine Lakhnech; Mannes Poel; Job Zwiers Cambridge University Press (2012) Pehmeäkantinen kirja
Frank S. de Boer; Marcello M. Bonsangue; Susanne Graf; Willem-Paul de Roever Springer-Verlag Berlin and Heidelberg GmbH & Co. KG (2006) Pehmeäkantinen kirja
Frank S.de Boer; Marcello Bonsangue; Susanne Graf; Willem-Paul de Roever Springer-Verlag Berlin and Heidelberg GmbH & Co. KG (2003) Pehmeäkantinen kirja
Willem-Paul de Roever; Frank de Boer; Ulrich Hanneman; Jozef Hooman; Yassine Lakhnech; Mannes Poel; Job Zwiers Cambridge University Press (2001) Kovakantinen kirja
Frank S. de Boer; Marcello M. Bonsangue; Susanne Graf; Willem-Paul de Roever Springer-Verlag Berlin and Heidelberg GmbH & Co. KG (2007) Pehmeäkantinen kirja
Frank S. de Boer; Marcello M. Bonsangue; Susanne Graf; Willem-Paul de Roever Springer-Verlag Berlin and Heidelberg GmbH & Co. KG (2005) Pehmeäkantinen kirja
Frank S. de Boer; Marcello M. Bonsangue; Stefan Hallerstede; Michael Leuschel Springer-Verlag Berlin and Heidelberg GmbH & Co. KG (2011) Pehmeäkantinen kirja
Frank de Boer; Ferruccio Damiani; Reiner Hähnle; Einar Broch Johnsen; Eduard Kamburjan Springer International Publishing AG (2024) Pehmeäkantinen kirja
Frank S. de Boer; Marcello M. Bonsangue; Susanne Graf; Willem-Paul de Roever Springer-Verlag Berlin and Heidelberg GmbH & Co. KG (2004) Pehmeäkantinen kirja
Bernhard Beckert; Ferruccio Damiani; Frank S. de Boer; Marcello M. Bonsangue Springer-Verlag Berlin and Heidelberg GmbH & Co. KG (2013) Pehmeäkantinen kirja
This is a systematic and comprehensive introduction both to compositional proof methods for the state-based verification of concurrent programs, such as the assumption-commitment and rely-guarantee paradigms, and to noncompositional methods, whose presentation culminates in an exposition of the communication-closed-layers (CCL) paradigm for verifying network protocols. Compositional concurrency verification methods reduce the verification of a concurrent program to the independent verification of its parts. If those parts are tightly coupled, one additionally needs verification methods based on the causal order between events. These are presented using CCL. The semantic approach followed here allows a systematic presentation of all these concepts in a unified framework which highlights essential concepts. This 2001 book is self-contained, guiding the reader from advanced undergraduate level. Every method is illustrated by examples, and a picture gallery of some of the subject's key figures complements the text.