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    • 1. 发明申请
    • ASSESSING INTELLECTUAL PROPERTY INCORPORATED IN SOFTWARE PRODUCTS
    • 评估软件产品中的知识产权
    • US20100223490A1
    • 2010-09-02
    • US12395879
    • 2009-03-02
    • Heather Maria HintonJeffrey R. Dean
    • Heather Maria HintonJeffrey R. Dean
    • G06F11/28G06F11/07G06N5/02
    • G06F11/3604G06N5/02
    • A method, system, and computer usable program product for assessing third-party IP that may be incorporated in a software product are provided in the illustrative embodiments. An instance of the third-party's intellectual property is identified in a component of the product. The instance is classified as actionable, or not actionable. A remediation action is identified for an actionable instance. An entry is created in a remediation report, the entry including information identifying the actionable instance, the remediation action, or a combination thereof. The remediation report is published. A context of the actionable instance may be determined. Based on the context and the actionable instance, a remediation rule may be selected and executed from a set of remediation rules. The output of the remediation rule may be reported as the remediation action in the remediation report. Performing the remediation action may cause manipulation or initiation of a workflow.
    • 在说明性实施例中提供了用于评估可并入软件产品中的第三方IP的方法,系统和计算机可用程序产品。 在产品的一个组成部分中确定了第三方知识产权的一个实例。 该实例被分类为可操作的或不可操作的。 为可操作的实例识别修复操作。 在修复报告中创建条目,该条目包括标识可操作实例的信息,修复操作或其组合。 修复报告已发布。 可以确定可动作实例的上下文。 基于上下文和可操作实例,可以从一组修复规则中选择和执行修复规则。 补救规则的输出可能会报告为补救报告中的补救措施。 执行修复操作可能会导致操作或启动工作流。
    • 2. 发明申请
    • CODE COMPONENT LEVEL INTELLECTUAL PROPERTY REMEDIATION
    • 代码组件级知识产权补救
    • US20100223592A1
    • 2010-09-02
    • US12395964
    • 2009-03-02
    • HEATHER MARIA HINTONJeffrey R. Dean
    • HEATHER MARIA HINTONJeffrey R. Dean
    • G06F9/44
    • G06F21/10G06F8/70
    • A method, system, and computer usable program product for code component level IP remediation are provided in the illustrative embodiments. An actionable instance of the third-party's intellectual property is identified in a component of the product. A component model of the product is constructed. The actionable instance of the third-party's intellectual property is associated with a component in the component model. A graphical representation of the component model is created. Information about a type of license associated with the actionable instance is added to the graphical representation of the component. The graphical representation is published. The actionable instance may be identified based on the type of the license associated with the third-party's intellectual property, a context of the inclusion, or both. A remediation action is identified for the actionable instance. Information corresponding to the remediation action is added to the component using visual highlights in the graphical representation.
    • 在说明性实施例中提供了用于代码组件级IP修复的方法,系统和计算机可用程序产品。 第三方知识产权的可操作实例在产品的一个组件中被识别。 构建产品的组件模型。 第三方知识产权的可操作实例与组件模型中的组件相关联。 创建组件模型的图形表示。 关于与可执行实例关联的许可证类型的信息被添加到组件的图形表示。 图形表示已发布。 可操作实例可以基于与第三方的知识产权相关的许可证的类型,包含的上下文或两者来识别。 为可操作实例确定了修复操作。 与补救措施相对应的信息使用图形表示中的视觉亮点添加到组件。
    • 3. 发明申请
    • Secure Bytecode Instrumentation Facility
    • 安全的字节码仪表设施
    • US20100122090A1
    • 2010-05-13
    • US12693839
    • 2010-01-26
    • Jeffrey R. DeanAlberto Giammaria
    • Jeffrey R. DeanAlberto Giammaria
    • H04L9/32
    • G06F21/54G06F21/52
    • A secure bytecode instrumentation facility, wherein a new code fragment is registered in an encrypted registry by first extracting a digital certificate from a specified code fragment location. A certification authority (CA) in the digital certificate is compared against a list of registered trusted certification authorities in the registry. If the CA is in the registry list, the code fragment origin in the digital certificate is compared against a list of registered trusted origins in the registry. If the code fragment origin is in the registry list, a determination is made as to whether the code fragment is authentic. If so, the information of the code fragment is recorded into the registry. The injection of code fragments may begin upon the initialization of the instrumentation facility if the encrypted registry has not been corrupted since last accessed, and if the code fragment content matches code fragment information in the registry.
    • 一种安全的字节码检测设备,其中通过首先从指定的代码片段位置提取数字证书,将新的代码片段注册在加密的注册表中。 将数字证书中的证书颁发机构(CA)与注册表中注册的受信任的证书颁发机构的列表进行比较。 如果CA在注册表列表中,将数字证书中的代码片段来源与注册表中注册的受信任来源的列表进行比较。 如果代码片段起点在注册表列表中,则确定代码片段是否是真实的。 如果是这样,代码片段的信息被记录到注册表中。 如果加密注册表自上次访问以来没有被破坏,并且代码片段内容与注册表中的代码片段信息相匹配,则注入代码片段可以在初始化检测工具之后开始。
    • 4. 发明授权
    • Secure bytecode instrumentation facility
    • 安全的字节码仪表设施
    • US08122256B2
    • 2012-02-21
    • US12693839
    • 2010-01-26
    • Jeffrey R. DeanAlberto Giammaria
    • Jeffrey R. DeanAlberto Giammaria
    • H04L29/06
    • G06F21/54G06F21/52
    • A secure bytecode instrumentation facility, wherein a new code fragment is registered in an encrypted registry by first extracting a digital certificate from a specified code fragment location. A certification authority (CA) in the digital certificate is compared against a list of registered trusted certification authorities in the registry. If the CA is in the registry list, the code fragment origin in the digital certificate is compared against a list of registered trusted origins in the registry. If the code fragment origin is in the registry list, a determination is made as to whether the code fragment is authentic. If so, the information of the code fragment is recorded into the registry. The injection of code fragments may begin upon the initialization of the instrumentation facility if the encrypted registry has not been corrupted since last accessed, and if the code fragment content matches code fragment information in the registry.
    • 一种安全的字节码仪器设施,其中通过首先从指定的代码片段位置提取数字证书,将新的代码片段注册在加密的注册表中。 将数字证书中的证书颁发机构(CA)与注册表中注册的受信任的证书颁发机构的列表进行比较。 如果CA在注册表列表中,将数字证书中的代码片段来源与注册表中注册的受信任来源的列表进行比较。 如果代码片段起点在注册表列表中,则确定代码片段是否是真实的。 如果是这样,代码片段的信息被记录到注册表中。 如果加密注册表自上次访问以来没有被破坏,并且代码片段内容与注册表中的代码片段信息相匹配,则注入代码片段可以在初始化检测工具之后开始。
    • 5. 发明授权
    • Secure bytecode instrumentation facility
    • 安全的字节码仪表设施
    • US07788730B2
    • 2010-08-31
    • US11333452
    • 2006-01-17
    • Jeffrey R. DeanAlberto Giammaria
    • Jeffrey R. DeanAlberto Giammaria
    • H04L29/06H04L9/32
    • G06F21/54G06F21/52
    • A secure bytecode instrumentation facility, wherein a new code fragment is registered in an encrypted registry by first extracting a digital certificate from a specified code fragment location. A certification authority (CA) in the digital certificate is compared against a list of registered trusted certification authorities in the registry. If the CA is in the registry list, the code fragment origin in the digital certificate is compared against a list of registered trusted origins in the registry. If the code fragment origin is in the registry list, a determination is made as to whether the code fragment is authentic. If so, the information of the code fragment is recorded into the registry. The injection of code fragments may begin upon the initialization of the instrumentation facility if the encrypted registry has not been corrupted since last accessed, and if the code fragment content matches code fragment information in the registry.
    • 一种安全的字节码仪器设施,其中通过首先从指定的代码片段位置提取数字证书,将新的代码片段注册在加密的注册表中。 将数字证书中的证书颁发机构(CA)与注册表中注册的受信任的证书颁发机构的列表进行比较。 如果CA在注册表列表中,将数字证书中的代码片段来源与注册表中注册的受信任来源的列表进行比较。 如果代码片段起点在注册表列表中,则确定代码片段是否是真实的。 如果是这样,代码片段的信息被记录到注册表中。 如果加密注册表自上次访问以来没有被破坏,并且代码片段内容与注册表中的代码片段信息相匹配,则注入代码片段可以在初始化检测工具之后开始。