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Assume-guarantee synthesis for digital contract signing

机译:数字合同签署的假设保证综合

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We study the automatic synthesis of fair non-repudiation protocols, a class of fair exchange protocols, used for digital contract signing. First, we show how to specify the objectives of the participating agents and the trusted third party as path formulas in linear temporal logic and prove that the satisfaction of these objectives imply fairness; a property required of fair exchange protocols. We then show that weak (co-operative) co-synthesis and classical (strictly competitive) co-synthesis fail, whereas assume-guarantee synthesis (AGS) succeeds. We demonstrate the success of AGS as follows: (a) any solution of AGS is attack-free; no subset of participants can violate the objectives of the other participants; (b) the Asokan-Shoup-Waidner certified mail protocol that has known vulnerabilities is not a solution of AGS; (c) the Kremer-Markowitch non-repudiation protocol is a solution of AGS; and (d) AGS presents a new and symmetric fair non-repudiation protocol that is attack-free. To our knowledge this is the first application of synthesis to fair non-repudiation protocols, and our results show how synthesis can both automatically discover vulnerabilities in protocols and generate correct protocols. The solution to AGS can be computed efficiently as the secure equilibrium solution of three-player graph games.
机译:我们研究了用于数字合同签署的公平不可否认协议(一类公平交换协议)的自动综合。首先,我们展示了如何在线性时间逻辑中指定参与主体和受信任第三方的目标作为路径公式,并证明满足这些目标意味着公平。公平交换协议要求的属性。然后,我们证明了弱的(合作)协作和经典的(严格竞争)协作失败,而假设担保合成(AGS)成功。我们通过以下方式证明AGS的成功:(a)AGS的任何解决方案都是无攻击的;参与者的任何子集都不能违反其他参与者的目标; (b)具有已知漏洞的经Asokan-Shoup-Waidner认证的邮件协议不是AGS的解决方案; (c)Kremer-Markowitch不可否认协议是AGS的解决方案; (d)AGS提出了一种新的,对称的,公平的,不可抵赖的,无攻击的协议。据我们所知,这是将合成技术首次应用到公平的不可否认协议中,我们的结果表明合成技术既可以自动发现协议中的漏洞又可以生成正确的协议。 AGS的解决方案可以有效地计算为三人图博弈的安全平衡解决方案。

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