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On Password Guessing with GPUs and FPGAs

机译:使用GPU和FPGA进行密码猜测

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Passwords are still by far the most widely used form of user authentication, for applications ranging from online banking or corporate network access to storage encryption. Password guessing thus poses a serious threat for a multitude of applications. Modern password hashes are specifically designed to slow down guessing attacks. However, having exact measures for the rate of password guessing against determined attackers is non-trivial but important for evaluating the security for many systems. Moreover, such information may be valuable for designing new password hashes, such as in the ongoing password hashing competition (PHC). In this work, we investigate two popular password hashes, bcrypt and scrypt, with respect to implementations on non-standard computing platforms. Both functions were specifically designed to only allow slow-rate password derivation and, thus, guessing rates. We develop a methodology for fairly comparing different implementations of password hashes, and apply this methodology to our own implementation of scrypt on GPUs, as well as existing implementations of bcrypt and scrypt on GPUs and FPGAs.
机译:密码仍然是迄今为止最广泛使用的用户身份验证形式,适用于从在线银行或公司网络访问到存储加密的各种应用。因此,密码猜测对众多应用程序构成了严重威胁。现代密码哈希是专门设计用于减缓猜测攻击的速度。但是,针对确定的攻击者使用准确的密码猜测率的措施并非易事,但对于评估许多系统的安全性却很重要。此外,此类信息对于设计新的密码哈希可能很有价值,例如在进行中的密码哈希竞赛(PHC)中。在这项工作中,针对非标准计算平台上的实现,我们研究了两个流行的密码哈希bcrypt和scrypt。这两个功能经过专门设计,仅允许低速密码派生,从而允许猜测速度。我们开发了一种方法,用于公平地比较密码哈希的不同实现,并将此方法应用于我们自己在GPU上的scrypt实施以及在GPU和FPGA上现有的bcrypt和scrypt实施。

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