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Anycast-Aware Transport for Content Delivery Networks

机译:用于内容交付网络的Anycast感知传输

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Anycast-based content delivery networks (CDNs) have many properties that make them ideal for the large scale distribution of content on the Internet. However, because routing changes can result in a change of the endpoint that terminates the TCP session, TCP session disruption remains a concern for anycast CDNs, especially for large file downloads. In this paper we demonstrate that this problem does not require any complex solutions. In particular, we present the design of a simple, yet efficient, mechanism to handle session disruptions due to endpoint changes. With our mechanism, a client can continue the download of the content from the point at which it was before the endpoint change. Furthermore, CDN servers purge the TCP connection state quickly to handle frequent switching with low system overhead.We demonstrate experimentally the effectiveness of our proposed mechanism and show that more complex mechanisms are not required. Specifically, we find that our mechanism maintains high download throughput even with a reasonably high rate of endpoint switching, which is attractive for load balancing scenarios. Moreover, our results show that edge servers can purge TCP connection state after a single timeout-triggered retransmission without any tangible impact on ongoing connections. Besides improving server performance, this behavior improves the resiliency of the CDN to certain denial of service attacks.
机译:任何基于Active的内容传递网络(CDN)具有许多属性,使其成为Internet上的大规模分布的理想选择。但是,由于路由更改可能导致终止TCP会话的端点的更改,因此TCP会话中断仍然是AnyCast CDN的关注,尤其是对于大型文件下载。在本文中,我们证明了这个问题不需要任何复杂的解决方案。特别是,我们展示了一种简单但有效的机制来处理因端点变化而处理会话中断的机制。通过我们的机制,客户端可以从端点变化之前继续下载内容。此外,CDN服务器快速吹扫TCP连接状态,以处理低系统开销的频繁切换。 我们实际证明了我们提出机制的有效性,并表明不需要更复杂的机制。具体来说,我们发现我们的机制即使具有相当高的端点切换速率,也可以保持高下载吞吐量,这对于负载平衡方案具有吸引力。此外,我们的结果表明,边缘服务器可以在单个超时触发重传后净化TCP连接状态,而不会对正在进行的连接的任何切实影响。除了提高服务器性能外,此行为还提高了CDN对某些拒绝服务攻击的弹性。

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