Page 323 - 《软件学报》2026年第6期
P. 323

2642                                                       软件学报  2026  年第  37  卷第  6  期


                      cloud. IEEE Trans. on Services Computing, 2024, 17(3): 1239–1251. [doi: 10.1109/TSC.2023.3311586]
                 [51]   Wang Q, Hu DH, Li M, Yang GM. Secure and flexible wildcard queries. IEEE Trans. on Information Forensics and Security, 2024, 19:
                      7374–7388. [doi: 10.1109/TIFS.2024.3430056]
                 [52]   Shen H, Yu CG, Susilo W, Chen YT, Zhang MW. An efficient graph encryption scheme supporting shortest path fuzzy queries. IEEE
                      Trans. on Information Forensics and Security, 2025, 20: 8687–8700. [doi: 10.1109/TIFS.2025.3599388]
                 [53]   Kyodo News. Japan local gov’t hard drives with personal info sold in online auction. 2019. https://english.kyodonews.net/news/2019/12/
                      e4d56ade9dd3-local-govt-hard-drives-with-personal-info-sold-in-online-auction.html
                 [54]   Kissel R, Regenscheid A, Scholl M, Stine K. Guidelines for media sanitization. National Institute of Standards and Technology, NIST
                      SP 800–88r1, 2014. [doi: 10.6028/NIST.SP.800-88r1]
                 [55]   China  Association  of  Communication  Enterprises.  T/CAICI  80-2024  Data  security  requirements  and  evaluation  methods  for  Data
                      Destruction in storage media. 2024 (in Chinese). https://www.cssn.net.cn/cssn/productDetail/0751693eb1eb67025c4d2ddba83b952a
                 [56]   Reardon J, Basin D, Capkun S. SoK: Secure data deletion. In: Proc. of the 2013 IEEE Symp. on Security and Privacy. Berkeley: IEEE,
                      2013. 301–315. [doi: 10.1109/SP.2013.28]
                 [57]   Ma  A,  Dragga  C,  Arpaci-Dusseau  AC,  Arpaci-Dusseau  RH,  Mckusick  MK.  Ffsck:  The  fast  file-system  checker.  ACM  Trans.  on
                      Storage, 2014, 10(1): 2. [doi: 10.1145/2560011]
                 [58]   Mykletun  E,  Narasimha  M,  Tsudik  G.  Authentication  and  integrity  in  outsourced  databases.  ACM  Trans.  on  Storage,  2006,  2(2):
                      107–138. [doi: 10.1145/1149976.1149977]
                 [59]   Shi RZ, Cheng RZ, Fu YQ, Han B, Cheng Y, Chen SQ. Centralization in the decentralized Web: Challenges and opportunities in IPFS
                      data management. In: Proc. of the 2025 ACM Web Conf. Sydney: ACM, 2025. 4068–4076. [doi: 10.1145/3696410.3714627]
                 [60]   Dong HW, Zhang C, Li GL, Feng JH. Survey on cloud-native databases. Ruan Jian Xue Bao/Journal of Software, 2024, 35(2): 899–926
                      (in Chinese with English abstract). http://www.jos.org.cn/1000-9825/6952.htm [doi: 10.13328/j.cnki.jos.006952]
                 [61]   Liu JW, Shen HY, Chi HM, Narman HS, Yang YY, Cheng L, Chung W. A low-cost multi-failure resilient replication scheme for high-
                      data availability in cloud storage. IEEE/ACM Trans. on Networking, 2021, 29(4): 1436–1451. [doi: 10.1109/TNET.2020.3027814]
                 [62]   McKeen F, Alexandrovich I, Berenzon A, Rozas CV, Shafi H, Shanbhogue V, Savagaonkar UR. Innovative instructions and software
                      model for isolated execution. In: Proc. of the 2nd Int’l Workshop on Hardware and Architectural Support for Security and Privacy
                      (HASP). Tel-Aviv: ACM, 2013. 10. [doi: 10.1145/2487726.2488368]
                 [63]   Intel®.  Intel®  Trust  Domain  Extensions.  2022.  https://www.intel.com/content/dam/develop/external/us/en/documents/tdx-whitepaper-
                      final9-17.pdf
                 [64]   Kaplan D, Powell J, Woller T. AMD memory encryption. 2021. https://docs.amd.com/api/khub/documents/ZcsCCmeL80dbtuf_VlGpvw/
                      content
                 [65]   Pinto S, Santos N. Demystifying ARM TrustZone: A comprehensive survey. ACM Computing Surveys, 2019, 51(6): 130. [doi: 10.1145/
                      3291047]
                 [66]   Li M, Chen YF, Lal C, Conti M, Martinelli F, Alazab M. Nereus: Anonymous and secure ride-hailing service based on private smart
                      contracts. IEEE Trans. on Dependable and Secure Computing, 2023, 20(4): 2849–2866. [doi: 10.1109/TDSC.2022.3192367]
                 [67]   Wang WH, Liu WJ, Chen HB, Wang XF, Tian HL, Lin DD. Trust beyond border: Lightweight, verifiable user isolation for protecting in-
                      enclave services. IEEE Trans. on Dependable and Secure Computing, 2023, 20(1): 522–538. [doi: 10.1109/TDSC.2021.3138427]
                 [68]   Gentry  C.  Fully  homomorphic  encryption  using  ideal  lattices.  In:  Proc.  of  the  41st  Annual  ACM  Symp.  on  Theory  of  Computing
                      (STOC). Bethesda: ACM, 2009. 169–178. [doi: 10.1145/1536414.1536440]
                 [69]   Acar A, Aksu H, Uluagac AS, Conti M. A survey on homomorphic encryption schemes: Theory and implementation. ACM Computing
                      Surveys, 2019, 51(4): 79. [doi: 10.1145/3214303]
                 [70]   Cheon JH, Kim A, Kim M, Song Y. Homomorphic encryption for arithmetic of approximate numbers. In: Proc. of the 23rd Int’l Conf.
                      on the Theory and Applications of Cryptology and Information Security. Hong Kong: Springer, 2017. 409–437. [doi: 10.1007/978-3-319-
                      70694-8_15]
                 [71]   Viand A, Jattke P, Haller M, Hithnawi A. HECO: Fully homomorphic encryption compiler. In: Proc. of the 32nd USENIX Security
                      Symp. Anaheim: USENIX Association, 2023. 4715–4732.
                 [72]   MITRE. CVE-2018-8009. 2018. https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2018-8009
                 [73]   Zhang YH, Deng RH, Xu SM, Sun JF, Li Q, Zheng D. Attribute-based encryption for cloud computing access control: A survey. ACM
                      Computing Surveys, 2021, 53(4): 83. [doi: 10.1145/3398036]
                 [74]   Ying ZB, Jiang WJ, Liu XM, Xu SM, Deng RH. Reliable policy updating under efficient policy hidden fine-grained access control
                      framework for cloud data sharing. IEEE Trans. on Services Computing, 2022, 15(6): 3485–3498. [doi: 10.1109/TSC.2021.3096177]
   318   319   320   321   322   323   324   325   326   327   328