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Service Virtualization Using a Non-von Neumann Parallel, Distributed, and Scalable Computing Model

机译:使用非冯·诺依曼并行,分布式和可扩展计算模型的服务虚拟化

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This paper describes a prototype implementing a high degree of transaction resilience in distributed software systems using a non-von Neumann computing model exploiting parallelism in computing nodes. The prototype incorporates fault, configuration, accounting, performance, and security (FCAPS) management using a signaling network overlay and allows the dynamic control of a set of distributed computing elements in a network. Each node is a computing entity endowed with self-management and signaling capabilities to collaborate with similar nodes in a network. The separation of parallel computing and management channels allows the end-to-end transaction management of computing tasks (provided by the autonomous distributed computing elements) to be implemented as network-level FCAPS management. While the new computing model is operating system agnostic, a Linux, Apache, MySQL, PHP/Perl/Python (LAMP) based services architecture is implemented in a prototype to demonstrate end-to-end transaction management with auto-scaling, self-repair, dynamic performance management and distributed transaction security assurance. The implementation is made possible by a non-von Neumann middleware library providing Linux process management through multi-threaded parallel execution of self-management and signaling abstractions. We did not use Hypervisors, Virtual machines, or layers of complex virtualization management systems in implementing this prototype.
机译:本文介绍了一个原型,该原型使用非冯·诺依曼计算模型在分布式软件系统中实现了高度的交易弹性,该模型利用了计算节点中的并行性。该原型使用信令网络覆盖图结合了故障,配置,计费,性能和安全性(FCAPS)管理,并允许对网络中的一组分布式计算元素进行动态控制。每个节点都是一个具有自我管理和信令功能的计算实体,可以与网络中的类似节点进行协作。并行计算和管理通道的分离允许将计算任务的端到端事务管理(由自主分布式计算元素提供)实现为网络级FCAPS管理。尽管新的计算模型与操作系统无关,但是在原型中实现了基于Linux,Apache,MySQL,PHP / Perl / Python(LAMP)的服务体系结构,以演示具有自动扩展,自我修复的端到端事务管理。 ,动态性能管理和分布式事务安全保证。非冯·诺依曼中间件库使实现成为可能,该库通过自我管理和信号抽象的多线程并行执行来提供Linux进程管理。在实现此原型时,我们没有使用虚拟机监控程序,虚拟机或复杂的虚拟化管理系统层。

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