首页> 外文会议>IEEE Computer Security Foundations Symposium >UC-Secure Non-Interactive Public-Key Encryption
【24h】

UC-Secure Non-Interactive Public-Key Encryption

机译:UC安全的非交互式公钥加密

获取原文

摘要

The universal composability (UC) framework enables the modular design of cryptographic protocols by allowing arbitrary compositions of lower-level building blocks. Publickey encryption is unarguably a very important such building block. However, so far no UC-functionality exists that offers non-interactive encryption necessary for modular protocol construction. We provide an ideal functionality for non-committing encryption (i.e., public-key encryption secure against adaptive corruptions) with locally generated, and therefore non-interactive, ciphertexts. As a sanity check, we also provide a property-based security notion that we prove to be equivalent to the UC notion. We then show that the encryption scheme of Camenisch et al. (SCN'16) based on trapdoor permutations securely implements our notion in the random-oracle model without assuming secure erasures. This is the best one can hope to achieve as standard-model constructions do not exist due to the uninstantiability of round-optimal adaptively secure message transfer in the standard model (Nielsen, Crypto '02). We illustrate the modular reusability of our functionality by constructing the first non-interactive signcryption scheme secure against adaptive corruptions without secure erasures in the UC framework.
机译:通用可组合性(UC)框架通过允许允许较低级构建块的任意组成来实现Cryptography协议的模块化设计。 PublicKey加密是毫无轨道的一个非常重要的这样的构建块。然而,到目前为止,不存在提供模块化协议构造所需的非交互式加密的UC功能。我们提供了具有本地生成的非提交加密(即,公钥加密)的非提交加密(即公钥加密),因此提供了非交互式密文。作为理智检查,我们还提供了基于属性的安全概念,我们证明了等同于UC概念。然后我们表明Camenisch等人的加密方案。 (SCN'16)基于Trapdoor排列,安全地在随机内容模型中实现了我们的概念,而不假设安全擦除。这是最好的一个人可以希望实现标准模型结构由于在标准型号(Nielsen,Crypto '02)中的圆形最佳自适应安全消息传输不稳定,因此不存在。我们通过构建第一个非交互式签名方案来解除适应性损坏而无需安全擦除,说明了我们功能的模块化可重用性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号