By Paulo Esteves Veríssimo, Nuno Ferreira Neves, Miguel Pupo Correia (auth.), Rogério de Lemos, Cristina Gacek, Alexander Romanovsky (eds.)
As software program platforms turn into increasingly more ubiquitous, the problems of dependability turn into an increasing number of severe. on condition that recommendations to those matters has to be deliberate initially of the layout technique, it truly is acceptable that those concerns be addressed on the architectural level.
This booklet is galvanized through the ICSE 2002 Workshop on Architecting in charge structures; it really is dedicated to present subject matters suitable for making improvements to the state-of-the-art for architecting dependability. a few of the thirteen peer-reviewed papers offered have been in the beginning offered on the workshop, others have been invited so one can in achieving efficient and whole insurance of all correct points. The papers are equipped in topical sections on
- architectures for dependability
- fault tolerance in software program architectures
- dependability research in software program architectures
- business experience.
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Extra resources for Architecting Dependable Systems
G. smart cards, appliance boards) may serve to amplify the trustworthiness of these special components. In Figure 7a we see an example of an architecture featuring LTCs (local trusted components). Inter-component communication should 26 Paulo Esteves Ven'ssimo et al. (a) (b) Fig. 7. Using trusted components: (a) Local; (b) Distributed ensure that correct components enjoy the properties of the LTC despite malicious faults. On the other hand, the implementation of the LTC should ensure that malicious components, such as the one on the right of Figure 7a, do not undermine the operation of the LTC, making it work incorrectly.
Execution and no message is ever delivered, or if they terminate, then they will all deliver the same message. No assumptions are made about the behaviour of malicious (recipient) processes. They might decide to deliver the correct message, a distinct message or no message. The protocol -BRM (Byzantine Reliable Multicast)- is executed by a set of distributed processes. , they can crash, delay or not transmit some messages, generate messages inconsistent with the protocol, or collude with other faulty processes with malicious intent.
Distributed Systems for System Architects. Kluwer Academic Publishers (2001) 34. : Cesiumspray: A precise and accurate global clock service for large-scale systems. Journal of Real-Time Systems 12 (1997) 243-294 35. : Uncertainty and predictability: Can they be reconciled? In: Future Directions in Distributed Computing. Springer-Verlag LNCS 2584 (2003) 36. , Fetzer, C : The Timely Computing Base: Timely actions in the presence of uncertain timeliness. In: Proceedings of the International Conference on Dependable Systems and Networks.
Architecting Dependable Systems by Paulo Esteves Veríssimo, Nuno Ferreira Neves, Miguel Pupo Correia (auth.), Rogério de Lemos, Cristina Gacek, Alexander Romanovsky (eds.)