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Gigabit ATM: another technical mistake?

机译:千兆ATM:另一个技术错误?

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Abstract: Once upon a time, or more precisely during February 1988 at the CCITT Seoul plenary, and definitely arriving as a revolution, ATM hit the hard-core B-ISDN circuit-switching gang. Initiated by the Telecoms' camp, but, surprisingly, soon to be pushed by computer minded people, ATM's generic technological history is somewhat richer than single-sided stories. Here are two classical elements of that history: Firstly, together with X.25, ATM suffers from the connection versus datagram dichotomy, well known for more than twenty years. Secondly, and lesser known, ATM's use of cells in support of the 'I' of B-ISDN was questioned from the very beginning by the packet switching camp. Furthermore, in this context, there are two other essential elements to be considered: Firstly, the exponential growth of the Internet and later intranets, using Internet technology, sparked by the success of the Web and the WINTEL alliance, resulted in a corresponding demand for both aggregate and end-system network bandwidth. Secondly, servers, historically restricted to the exclusive club of HIPPI-equipped supercomputers, suddenly become ordinary high-end PCs with 64-bit wide PCI busses - definitely aiming at the Gigabit. Here, if your aim is for Gigabit ATM with 5000-transactions per second classical supercomputers, a 65K ATM MTU - as implemented by Cray - might be okay. Following Clark and others, another part of the story is the adoption and redefinition, by the IETF, of the Telecoms' notion of 'Integrated Services' and QoS mechanisms. The quest for low-delay IP packet forwarding, perhaps possible over ATM cut-throughs, has resulted in the switching versus/or integrated-with-routing movement. However, a blow for ATM may be the recent results concerning fast routing table lookup algorithms. This, by making Gigabit routing possible using ordinary Pentium processors may eventually render the much prophesized ATM switching performance unnecessary. Recently, with the rise of Gigabit Ethernet, many of the elements mentioned above are now being presented by standard 'Gigabit Ethernet and Gigabit ATM - friends or foes' conferences. In- depth analyses are given concerning the canonical elements of such a setting: legacy, new use requirements, manageability, security LAN-WAN, architectures, standards, technologies and products, complexity, evolution-transition strategies, manufacturers, player organizations etc. Often in such conferences, Fiber Channel, being one of Gigabit Ethernet's physical media, is presented as the only other Gigabit LAN technology. In an attempt to sum up: Given the present state of ATM deployment measured in terms of functionalities and sophistication, after ten years of CCCITT/ITU and almost as many years of ATM Forum effort, does the question still being asked now represent the answer - ATM is or was a mistake! And, if not in general, Gigabit ATM is a technical failure! Or, are there some elements still missing? Here's a technical and a political example: !5
机译:摘要:曾几何时,或更确切地说是在1988年2月于首尔国际电信标准化委员会全体会议期间,无疑是一次革命,ATM成为了核心B-ISDN电路交换帮派。 ATM由电信阵营发起,但令人惊讶的是,不久之后将由计算机专家推动,ATM的通用技术历史比单方面的故事更丰富。这是该历史的两个经典元素:首先,与X.25一起,ATM受到连接与数据报二分法的困扰,这已经有20多年了。其次,鲜为人知的是,分组交换阵营从一开始就质疑ATM使用信元来支持B-ISDN的“ I”。此外,在这种情况下,还需要考虑其他两个基本要素:首先,在互联网和WINTEL联盟成功的推动下,使用互联网技术的Internet和后来的Intranet的指数增长导致了对Internet的相应需求。聚合和最终系统网络带宽。其次,历史上仅限于配备HIPPI的超级计算机俱乐部的服务器,突然变成了具有64位宽PCI总线的普通高端PC-绝对是针对千兆位的。在这里,如果您的目标是具有每秒5000个事务的经典超级计算机的千兆ATM,那么由Cray实施的65K ATM MTU可能就可以了。继Clark和其他人之后,故事的另一部分是IETF对电信公司“集成服务”和QoS机制的概念的采用和重新定义。对低延迟IP数据包转发的追求(可能是通过ATM直通方式实现的)导致了交换与/或路由选择集成。但是,对ATM的打击可能是有关快速路由表查找算法的最新结果。通过使用普通的奔腾处理器使千兆路由成为可能,最终可能使不必要的预言ATM交换性能变得不必要。最近,随着千兆以太网的兴起,上述许多要素现在都通过标准的“千兆以太网和千兆ATM –朋友或敌人”会议进行介绍。对这种设置的规范要素进行了深入分析:传统,新使用要求,可管理性,安全性LAN-WAN,体系结构,标准,技术和产品,复杂性,演进过渡策略,制造商,参与者组织等。在此类会议中,作为千兆以太网物理媒体之一的光纤通道被视为唯一的其他千兆LAN技术。尝试总结一下:鉴于按照功能和复杂程度衡量的ATM部署的当前状态,经过CCCITT / ITU十年的努力以及ATM论坛工作了几乎多年之后,现在仍然要问的问题代表了答案- ATM是或曾经是错误!而且,即使不是一般情况,千兆ATM也是技术故障!或者,是否仍然缺少某些元素?这是一个技术性的和政治性的示例:!5

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