Conditional Encryption with Applications to Secure Personalized Password Typo Correction

Mohammad Hassan Ameri, Jeremiah Blocki
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Abstract

We introduce the notion of a conditional encryption scheme as an extension of public key encryption. In addition to the standard public key algorithms ($\mathsf{KG}$, $\mathsf{Enc}$, $\mathsf{Dec}$) for key generation, encryption and decryption, a conditional encryption scheme for a binary predicate $P$ adds a new conditional encryption algorithm $\mathsf{CEnc}$. The conditional encryption algorithm $c=\mathsf{CEnc}_{pk}(c_1,m_2,m_3)$ takes as input the public encryption key $pk$, a ciphertext $c_1 = \mathsf{Enc}_{pk}(m_1)$ for an unknown message $m_1$, a control message $m_2$ and a payload message $m_3$ and outputs a conditional ciphertext $c$. Intuitively, if $P(m_1,m_2)=1$ then the conditional ciphertext $c$ should decrypt to the payload message $m_3$. On the other hand if $P(m_1,m_2) = 0$ then the ciphertext should not leak any information about the control message $m_2$ or the payload message $m_3$ even if the attacker already has the secret decryption key $sk$. We formalize the notion of conditional encryption secrecy and provide concretely efficient constructions for a set of predicates relevant to password typo correction. Our practical constructions utilize the Paillier partially homomorphic encryption scheme as well as Shamir Secret Sharing. We prove that our constructions are secure and demonstrate how to use conditional encryption to improve the security of personalized password typo correction systems such as TypTop. We implement a C++ library for our practically efficient conditional encryption schemes and evaluate the performance empirically. We also update the implementation of TypTop to utilize conditional encryption for enhanced security guarantees and evaluate the performance of the updated implementation.
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条件加密与个性化密码错别字校正安全应用
我们引入了条件加密方案的概念,作为公钥加密的扩展。除了用于密钥生成、加密和解密的标准公钥算法($\mathsf{KG}$, $\mathsf{Enc}$, $\mathsf{Dec}$)之外,二元谓词 $P$ 的条件加密算法还增加了一个新的条件加密算法 $\mathsf{CEnc}$。条件加密算法$c=\mathsf{CEnc}_{pk}(c_1,m_2,m_3)$的输入是公开加密密钥$pk$、未知信息$m_1$的密文$c_1 = \mathsf{Enc}_{pk}(m_1)$、控制信息$m_2$和有效载荷信息$m_3$,并输出条件密文$c$。直观地说,如果 $P(m_1,m_2)=1$,那么条件密码文 $c$ 应解密为有效载荷信息 $m_3$。另一方面,如果 $P(m_1,m_2)=0$,那么即使攻击者已经掌握了解密密钥 $sk$,密文也不会泄露任何有关控制信息 $m_2$ 或有效信息 $m_3$ 的信息。我们正式提出了条件加密保密的概念,并为一组与密码错字校正相关的谓词提供了具体有效的结构。我们的实际构造利用了派利尔(Paillier)部分同态加密算法和沙米尔秘密共享(Shamir Secret Sharing)。我们证明了我们的构造是安全的,并演示了如何使用条件加密来提高 TypTop 等个性化密码错别字纠正系统的安全性。我们为我们实际有效的条件加密算法实现了一个 C++ 库,并对其性能进行了经验评估。我们还更新了 TypTop 的实现,以利用条件加密来增强安全保证,并评估了更新后实现的性能。
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