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IEEE Transactions on Computing

发表于:IEEE Software · 年份:2020 · DOI:10.1109/mc.2019.2959903

Topics Cloud Comput., 2019, pp. 1–16. doi: 10.5555/3357034 .3357054. 10. W. Lloyd, S. Ramesh, S. Chinthalapati, L. Ly, and S. Pallickara, “Serverless computing: An investigation of factors influencing microservice performance,” in Proc. IEEE Int. Conf. Cloud Eng., 2018, pp. 159–169. doi: 10.1109/ IC2E.2018.00039. 11. A. Hall and U. Ramachandran, “An execution model for serverless functions at the edge,” in Proc. Int. Conf. Internet-of Things Design Implementation, 2019, pp. 225–236. doi: 10.1145/3302505.3310084. 12. S. Shillaker and P. Pietzuch, “Faasm: Lightweight isolation for efficient stateful serverless computing,” 2020, arXiv:2002.09344. 13. R. Wahbe, S. Lucco, T. E. Anderson, and S. L. Graham, “Efficient software-based fault isolation,” in Proc. ACM Symp. Oper. Syst. Princ. (SOSP), 1993, pp. 203–216. doi: 10.1145/168619.168635. 14. “WebAssembly system interface,” WebAssembly Community Group, 2020. [Online]. Available: https://github .com/WebAssembly/WASI 15. “The V8 JavaScript engine,” Google, Mountain View, CA, 2020. [Online]. Available: https://github .com/v8/v8 16. “Lucet, the sandboxing WebAssembly compiler,” Byte Alliance, 2020. [Online]. Available: https://github .com/bytecodealliance/lucet 17. “The Second State WebAssembly Virtual Machine,” Second State, 2020. [Online]. Available: https://github .com/second-state/SSVM 18. “WAVM is a WebAssembly virtual machine, designed for use in non-web applications,” WAVM, 2020. [Online]. Available: https://wavm.github.io/ 19...