A Simpler Variant of Universally Composable Security for Standard Multiparty Computation

نویسندگان

  • Ran Canetti
  • Asaf Cohen
  • Yehuda Lindell
چکیده

In this paper, we present a simpler and more restricted variant of the universally composable security (UC) framework that is suitable for “standard” two-party and multiparty computation tasks. Many of the complications of the UC framework exist in order to enable more general tasks than classic secure computation. This generality may be a barrier to entry for those who are used to the stand-alone model of secure computation and wish to work with universally composable security but are overwhelmed by the differences. The variant presented here (called simplified universally composable security, or just SUC) is closer to the definition of security for multiparty computation in the stand-alone setting. The main difference is that a protocol in the SUC framework runs with a fixed set of parties who know each other’s identities ahead of time, and machines cannot be added dynamically to the execution. As a result, the definitions of polynomial time and protocol composition are much simpler. In addition, the SUC framework has authenticated channels built in, as is standard in previous definitions of security, and all communication is done via the adversary in order to enable arbitrary scheduling of messages. Due to these differences, not all cryptographic tasks can be expressed in the SUC framework. Nevertheless, standard secure computation tasks (like secure function evaluation) can be expressed. Importantly, we show a natural security-preserving transformation from protocols in the SUC model to protocols in the full-fledged UC model. Consequently, the UC composition theorem holds in the SUC model, and any protocol that is proven secure under SUC can be transformed to a protocol that is secure in the UC model.

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

Universally Composable Adaptive Oblivious Transfer

In an oblivious transfer (OT) protocol, a Sender with messages M1, . . . ,MN and a Receiver with indices σ1, . . . , σk ∈ [1, N ] interact in such a way that at the end the Receiver obtains Mσ1 , . . . ,Mσk without learning anything about the other messages and the Sender does not learn anything about σ1, . . . , σk. In an adaptive protocol, the Receiver may obtain Mσi−1 before deciding on σi. ...

متن کامل

Universally Composable Efficient Multiparty Computation from Threshold Homomorphic Encryption

We present a new general multiparty computation protocol for the cryptographic scenario which is universally composable — in particular, it is secure against an active and adaptive adversary, corrupting any minority of the parties. The protocol is as efficient as the best known statically secure solutions, in particular the number of bits broadcast (which dominates the complexity) is Ω(nk|C|), ...

متن کامل

Adaptively Secure, Universally Composable, Multiparty Computation in Constant Rounds

Cryptographic protocols with adaptive security ensure that security holds against an adversary who can dynamically determine which parties to corrupt as the protocol progresses—or even after the protocol is finished. In the setting where all parties may potentially be corrupted, and secure erasure is not assumed, it has been a long-standing open question to design secure-computation protocols w...

متن کامل

Oblivious Transfer in the Universally Composable Security Model

A new promising direction in cryptography, started almost twenty years ago, is the field of Secure Multiparty Computation. In this scenario a set of players want to compute some functions on their inputs, but they don’t trust each other so they don’t want to disclose their inputs to each other. The purpose of this thesis is to investigate the Oblivious Transfer primitive, one of the fundamental...

متن کامل

Universally Composable Secure Mobile Agent Computation

We study the security challenges faced by the mobile agent paradigm, where code travels and performs computations on remote hosts in an autonomous manner. We define universally composable security for mobile agent computation that is geared toward a complex networking environment where arbitrary protocol instances may be executing concurrently. Our definition provides security for all the parti...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:
  • IACR Cryptology ePrint Archive

دوره 2014  شماره 

صفحات  -

تاریخ انتشار 2014