Concurrent Objects And Beyond

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Concurrent Objects and Beyond

This Festschrift volume includes a collection of papers written in honor of the accomplishments of Professor Yonezawa on the occasion of his 65th birthday in 2012. With a few exceptions, the papers in this Festschrift were presented at an international symposium celebrating this occasion. Also included are reprints of two of Professor Yonezawa's most influential papers on the programming language ABCL. The volume is a testament strong and lasting impact Professor Yonezawa's research accomplishments as well as the inspiration he has been to colleagues and students alike.
Beyond Bounded Communication: Unifying Theories in Concurrent Computation

Author: Pasquale De Marco
language: en
Publisher: Pasquale De Marco
Release Date: 2025-03-17
Concurrent computation is a rapidly growing field that studies the behavior of systems composed of multiple interacting components. These systems are often found in a wide range of applications, including operating systems, distributed systems, real-time systems, and embedded systems. The study of concurrent computation is challenging due to the inherent complexity of these systems. One of the main challenges is that the behavior of a concurrent system depends not only on the individual components but also on the interactions between them. This makes it difficult to predict and reason about the behavior of these systems. Another challenge in concurrent computation is the need for concurrency control. Concurrency control is a set of techniques used to ensure that multiple components can access and modify shared resources in a safe and consistent manner. Without proper concurrency control, concurrent systems can suffer from a variety of problems, such as deadlocks, race conditions, and data corruption. **Beyond Bounded Communication: Unifying Theories in Concurrent Computation** provides a comprehensive introduction to the foundations of concurrent computation. It covers a wide range of topics, including models of computation, process calculi, Petri nets, event structures, and process algebras. The book also discusses various techniques for the analysis and verification of concurrent systems, including model checking, process verification, and performance analysis. This book is unique in its focus on unifying theories in concurrent computation. It shows how different theories can be used to model and analyze the same system, and it highlights the strengths and weaknesses of each approach. This unified approach provides a deeper understanding of the fundamental principles of concurrent computation and allows readers to choose the most appropriate theory for their specific needs. **Beyond Bounded Communication: Unifying Theories in Concurrent Computation** is an essential resource for undergraduate and graduate students in computer science, as well as practitioners who are interested in learning more about concurrent computation. The book is written in a clear and accessible style and assumes no prior knowledge of the subject. If you like this book, write a review!
The Unified Modeling Language. “UML”'98: Beyond the Notation

This volume contains mainly the revised versions of papers presented at the wo- shop '98, "Beyond the Notation", that took place in Mulhouse, France on June 3-4, 1998. We thank all those that have made this possible, and particularly all the people in Mulhouse that worked hard to make this meeting a success, with such a short delay between the announcement and the realization. We are specially grateful to Nathalie Gaertner, who put in a tremendous amount of effort in the initial preparation of the workshop. We were pleasantly surprised of the quality of the submitted material and of the level of the technical exchanges at the Mulhouse meeting. More than one hundred attendees, from about twenty different countries, representing the main actors in the UML research and development scene, gathered in Mulhouse for two full study days. We would like to express our deepest appreciation to the authors of submitted - pers, the editorial committee for this volume, the program committee for the initial workshop, the external referees, and many others who contributed towards the final contents of this volume. April 1999 Jean Bézivin Pierre-Alain Muller