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Titlebook: Distributed Computing and Networking; 13th International C Luciano Bononi,Ajoy K. Datta,Archan Misra Conference proceedings 2012 Springer-V

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Conference proceedings 2012 researchers and practitioners to exchange ideas and share best practices, ICDCN also hosts as a forum for PhD students to discuss their research ideas and get quality feedback from the well-renowned experts in the field of distributed computing and computer networking.
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https://doi.org/10.1007/978-1-349-07627-7 The only solution that uses a constant number of buffers per link was introduced in [1]. However the solution works only on a chain networks. In this paper, we propose a snap-stabilizing algorithm for the message forwarding problem that uses a constant number of buffers per link as in [1] but works on tree topologies.
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Conference proceedings 2012Kong, China, during January 3-6, 2012..The 36 revised full papers and 1 short paper presented together with 4 poster papers were carefully reviewed and selected from 100 submissions. The papers address all current issues in the field of distributed computing and networking. Being a leading forum for
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A Protocol for the Atomic Capture of Multiple Molecules on Large Scale Platforms,ributed and highly dynamic platforms, expressing this coordination calls for alternative programming models. The chemical programming paradigm, which models applications as chemical solutions where molecules representing digital entities involved in the computation, react together to produce a resul
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,Lifting the Barriers – Reducing Latencies with Transparent Transactional Memory,onal memory, on the other hand, allows speculative execution so that it can hide the latencies that are inherent to distributed systems..In this paper, we discuss how transactional memory can carry over to code that uses Java’s synchronization means i.e. monitors and volatiles. We show that we can g
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Snap-Stabilizing Message Forwarding Algorithm on Tree Topologies,works on this problem provide solutions that either use a significant number of buffers (that is . buffers per processor, where . is the number of processors in the network) making the solution not scalable or, they reserve all the buffers from the sender to the receiver to forward only one message.
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