An integrated approach to cryptographic mitigation of denial-of-service attacks

Jothi Rangasamy, D. Stebila, C. Boyd, J. G. Nieto
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引用次数: 18

Abstract

Gradual authentication is a principle proposed by Meadows as a way to tackle denial-of-service attacks on network protocols by gradually increasing the confidence in clients before the server commits resources. In this paper, we propose an efficient method that allows a defending server to authenticate its clients gradually with the help of some fast-to-verify measures. Our method integrates hash-based client puzzles along with a special class of digital signatures supporting fast verification. Our hash-based client puzzle provides finer granularity of difficulty and is proven secure in the puzzle difficulty model of Chen et al. (2009). We integrate this with the fast-verification digital signature scheme proposed by Bernstein (2000, 2008). These schemes can be up to 20 times faster for client authentication compared to RSA-based schemes. Our experimental results show that, in the Secure Sockets Layer (SSL) protocol, fast verification digital signatures can provide a 7% increase in connections per second compared to RSA signatures, and our integration of client puzzles with client authentication imposes no performance penalty on the server since puzzle verification is a part of signature verification.
拒绝服务攻击的加密缓解集成方法
渐进式认证是Meadows提出的一种原则,通过在服务器提交资源之前逐渐增加对客户端的信任来解决网络协议的拒绝服务攻击。在本文中,我们提出了一种有效的方法,允许防御服务器借助一些快速验证措施逐步对其客户端进行身份验证。我们的方法集成了基于哈希的客户端谜题以及一类支持快速验证的特殊数字签名。我们基于哈希的客户端谜题提供了更精细的难度粒度,并且在Chen等人(2009)的谜题难度模型中被证明是安全的。我们将其与Bernstein(2000,2008)提出的快速验证数字签名方案相结合。与基于rsa的方案相比,这些方案的客户端身份验证速度可以快20倍。我们的实验结果表明,在安全套接字层(SSL)协议中,与RSA签名相比,快速验证数字签名可以提供每秒7%的连接数增加,并且我们将客户端谜题与客户端身份验证集成在一起,不会对服务器造成性能损失,因为谜题验证是签名验证的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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