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Minimizing Trust in Hardware Wallets with Two Factor Signatures

机译:最大限度地减少具有两个因素签名的硬件钱包的信任

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We introduce the notion of two-factor signatures (2FS), a generalization of a two-out-of-two threshold signature scheme in which one of the parties is a hardware token which can store a high-entropy secret, and the other party is a human who knows a low-entropy password. The security (unforgeability) property of 2FS requires that an external adversary corrupting either party (the token or the computer the human is using) cannot forge a signature. This primitive is useful in contexts like hardware cryptocurrency wallets in which a signature conveys the authorization of a transaction. By the above security property, a hardware wallet implementing a two-factor signature scheme is secure against attacks mounted by a malicious hardware vendor; in contrast, all currently used wallet systems break under such an attack (and as such are not secure under our definition). We construct efficient provably-secure 2FS schemes which produce either Schnorr signature (assuming the DLOG assumption), or EC-DSA signatures (assuming security of EC-DSA and the CDH assumption) in the Random Oracle Model, and evaluate the performance of implementations of them. Our EC-DSA based 2FS scheme can directly replace currently used hardware wallets for Bitcoin and other major cryptocurrencies to enable security against malicious hardware vendors.
机译:我们介绍了双因素签名(2FS)的概念,概括了两种阈值签名方案的两种阈值签名方案,其中一个方是一个可以存储高熵秘密和另一方的硬件令牌是一个了解低熵密码的人。 2FS的安全性(不可认证)属性要求将任何一方(令牌或计算机使用的令牌或计算机)腐败的外部反对者无法伪造。该原语在类似于硬件加密货币等上下文中有用的,其中签名传达了交易的授权。通过上述安全性,实现双因素签名方案的硬件钱包是防止由恶意硬件供应商安装的攻击的安全性;相比之下,所有目前使用的钱包系统都在这样的攻击下打破(因此在我们的定义下不安全)。我们构建高效的可克定安全的2FS方案,它在随机的Oracle模型中产生了Schnorr签名(假设DLOG假设)(假设EC-DSA和CDH假设的安全性),并评估实现的性能他们。我们基于EC-DSA的2FS方案可以直接替换目前用于比特币和其他主要加密货币的硬件钱包,以实现对恶意硬件供应商的安全性。

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