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    • 2. 发明授权
    • Tester of cryptographic service providers
    • 加密服务提供商测试人员
    • US07079648B2
    • 2006-07-18
    • US09876697
    • 2001-06-07
    • Daniel C. GriffinMonica I. Ene-PietrosanuKlaus U. SchutzGlenn D. Pittaway
    • Daniel C. GriffinMonica I. Ene-PietrosanuKlaus U. SchutzGlenn D. Pittaway
    • H04K1/00G06F9/44
    • G06F21/577
    • An implementation of a technology, described herein, for ensuring reliability, stability, and adherence to a given set of security conformance standards for cryptographic program modules. An implementation of the present claimed invention is a debugging and testing tool for customized cryptographic service providers (“CSPs”). A CSP has a cryptographic type and functionality level within that type. The CSPs are tested based various test classifications. The crypto sub-system of the OS has a set of application program interface (“API”) that manage cryptographic procedures called “CryptoAPI.” For a CSP to be considered reliable, stable, and in compliance with a given set of security conformance standards, it must successfully operate with the CryptoAPI in a reliable and stable manner and it must react appropriately for the given security conformance standards. The CSPs are tested in order of increasing complexity/sophistication in functionality from simplest to most complex. This abstract itself is not intended to limit the scope of this patent. The scope of the present invention is pointed out in the appending claims.
    • 本文描述的技术的实现,用于确保加密程序模块的给定的一组安全一致性标准的可靠性,稳定性和遵守性。 本发明的实现是用于定制加密服务提供商(“CSP”)的调试和测试工具。 CSP具有该类型的加密类型和功能级别。 根据各种测试分类测试CSP。 OS的加密子系统具有一组应用程序接口(“API”),用于管理称为“CryptoAPI”的加密过程。 CSP被认为是可靠的,稳定的,并且符合给定的安全一致性标准,它必须以可靠和稳定的方式成功运行CryptoAPI,并且必须对给定的安全一致性标准做出适当的反应。 按照从简单到最复杂的功能越来越复杂/复杂化的顺序对CSP进行了测试。 本摘要本身并不旨在限制本专利的范围。 在所附权利要求中指出了本发明的范围。