arXiv:2509.11555cs.CRcs.AI2025-09被引 2

打造无需信任的隐私容器框架,让Web3应用安全运行于多方可信环境。

Dstack: A Zero Trust Framework for Confidential Containers

  • 通过可移植的隐私容器实现跨异构环境安全迁移。
  • 用智能合约管理代码,确保透明且不可篡改的治理机制。
  • 无需中心化机构验证身份,保障应用身份可验证与抗审查。

Web3应用需要在不依赖中心化信任机构的前提下,保障执行过程的机密性与完整性。尽管可信执行环境(TEEs)为机密计算提供了潜力,但现有实现方案在应用于Web3场景时仍面临安全性可靠性不足、抗审查能力弱及厂商锁定等问题。本文提出dstack,一个将原始TEE技术转化为真正零信任平台的综合性框架。核心创新包括:(1) 可移植隐私容器,支持跨异构TEE环境的无缝工作负载迁移并维持安全保证;(2) 去中心化代码管理,利用智能合约实现对TEE应用的透明治理;(3) 可验证域管理,无需中心化权威即可确保应用身份的安全与可验证性。上述创新通过三个核心组件实现:dstack-OS、dstack-KMS 和 dstack-Gateway。实验证明,dstack在保持实际可用性的同时,提供全面的安全保障,兼具虚拟机级TEE性能优势与Web3所需的无信任特性。

原文摘要 · Abstract (English)

Web3 applications require execution platforms that maintain confidentiality and integrity without relying on centralized trust authorities. While Trusted Execution Environments (TEEs) offer promising capabilities for confidential computing, current implementations face significant limitations when applied to Web3 contexts, particularly in security reliability, censorship resistance, and vendor independence. This paper presents dstack, a comprehensive framework that transforms raw TEE technology into a true Zero Trust platform. We introduce three key innovations: (1) Portable Confidential Containers that enable seamless workload migration across heterogeneous TEE environments while maintaining security guarantees, (2) Decentralized Code Management that leverages smart contracts for transparent governance of TEE applications, and (3) Verifiable Domain Management that ensures secure and verifiable application identity without centralized authorities. These innovations are implemented through three core components: dstack-OS, dstack-KMS, and dstack-Gateway. Together, they demonstrate how to achieve both the performance advantages of VM-level TEE solutions and the trustless guarantees required by Web3 applications. Our evaluation shows that dstack provides comprehensive security guarantees while maintaining practical usability for real-world applications.

零信任隐私计算Web3容器安全

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