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    • 1. 发明授权
    • Technologies for code failure proneness estimation
    • 技术代码失败倾向估计
    • US07926036B2
    • 2011-04-12
    • US11740722
    • 2007-04-26
    • Nachiappan NagappanThirumalesh Bhat
    • Nachiappan NagappanThirumalesh Bhat
    • G06F9/44G06F9/445
    • G06F11/3616
    • The present examples provide technologies for estimating code failure proneness probabilities for a code set and/or the files that make up the set. The code set being evaluated is typically comprised of binary and/or source files that embody the software for which the estimates are desired. The estimates are typically based on a set of selected code metrics, the code metrics typically selected based on corresponding failures of a previous version of the software. A historically variant metric feedback factor may also be calculated and code metric values classified relative to a baseline code set embodying the previous version of the software.
    • 本示例提供了用于估计代码集的代码失败倾向概率和/或构成集合的文件的技术。 正在评估的代码集通常包含二进制和/或源文件,这些文件体现了希望估计的软件。 估计通常基于一组所选择的代码度量,代码度量通常基于先前版本的软件的相应故障来选择。 还可以计算历史上可变的度量反馈因子,并且相对于体现软件的先前版本的基线代码集分类的代码度量值。
    • 4. 发明授权
    • Technologies for code failure proneness estimation
    • 技术代码失败倾向估计
    • US08332822B2
    • 2012-12-11
    • US13042404
    • 2011-03-07
    • Nachiappan NagappanThirumalesh Bhat
    • Nachiappan NagappanThirumalesh Bhat
    • G06F9/44G06F9/45
    • G06F11/3616
    • The present examples provide technologies for estimating code failure proneness probabilities for a code set and/or the files that make up the set. The code set being evaluated is typically comprised of binary and/or source files that embody the software for which the estimates are desired. The estimates are typically based on a set of selected code metrics, the code metrics typically selected based on corresponding failures of a previous version of the software. A historically variant metric feedback factor may also be calculated and code metric values classified relative to a baseline code set embodying the previous version of the software.
    • 本示例提供了用于估计代码集的代码失败倾向概率和/或构成集合的文件的技术。 正在评估的代码集通常包含二进制和/或源文件,这些文件体现了希望估计的软件。 估计通常基于一组所选择的代码度量,代码度量通常基于先前版本的软件的相应故障来选择。 还可以计算历史上可变的度量反馈因子,并且相对于体现软件的先前版本的基线代码集分类的代码度量值。
    • 7. 发明申请
    • Analysis of pipelined networks
    • 流水线网络分析
    • US20050172175A1
    • 2005-08-04
    • US11093913
    • 2005-03-30
    • Thirumalesh BhatMark WodrichEvan Cacka
    • Thirumalesh BhatMark WodrichEvan Cacka
    • H04L1/22H04L12/24H04L12/26G06F11/00
    • H04L43/0823H04L1/22H04L41/046H04L41/0659H04L43/06
    • This invention relates to a diagnostic tool for networks that process messages in stages such as pipelined networks. In a pipelined network comprising tiers of servers, each tier of servers communicates only with adjacent tiers in a communications flow that processes messages in a sequence of tiers. The tool requires a controller located locally with respect to the pipelined network for generating messages to be processed by the pipelined network. Communication paths connect the controller to each tier of the pipelined network. A program executing at the controller detects a failure of the processing of the message by the pipelined network and receives diagnostic information from the tiers after the failure is detected. The diagnoses based on the retrieved information can proceed either manually or automatically, depending on how the information is collected. In order to automate the diagnosis, the program executing on the controller includes commands for sequentially analyzing each tier in the pipelined network in order to isolate the tier in which the failure occurred. For manual diagnosis, the program includes commands for simultaneously (or almost simultaneously) requesting information from each tier upon network failure. In the manual approach, distributed agents at all of the tiers gather information about the operating of the tier at the time of network failure.
    • 本发明涉及一种在诸如流水线网络等阶段处理消息的网络的诊断工具。 在包括服务器层的流水线网络中,每层服务器仅在以层级顺序处理消息的通信流中仅与相邻层进行通信。 该工具需要一个位于流水线网络本地的控制器,用于生成要由流水线网络处理的消息。 通信路径将控制器连接到流水线网络的每一层。 在控制器执行的程序检测到流水线网络处理消息的故障,并且在检测到故障之后从层中接收诊断信息。 根据检索到的信息的诊断可以手动或自动进行,具体取决于信息的收集方式。 为了使诊断自动化,在控制器上执行的程序包括用于顺序地分析流水线网络中的每个层的命令,以便隔离发生故障的层。 对于手动诊断,程序包括在网络故障时同时(或几乎同时)从每个层请求信息的命令。 在手动方法中,所有层级的分布式代理在网络故障时收集有关层的操作的信息。
    • 8. 发明授权
    • Analysis of pipelined networks
    • 流水线网络分析
    • US07487384B2
    • 2009-02-03
    • US11953814
    • 2007-12-10
    • Thirumalesh BhatMark WodrichEvan C. Cacka
    • Thirumalesh BhatMark WodrichEvan C. Cacka
    • G06F11/00
    • H04L43/0823H04L1/22H04L41/046H04L41/0659H04L43/06
    • This invention relates to a diagnostic tool for networks that process messages in stages such as pipelined networks. In a pipelined network comprising tiers of servers, each tier of servers communicates only with adjacent tiers in a communications flow that processes messages in a sequence of tiers. The tool requires a controller located locally with respect to the pipelined network for generating messages to be processed by the pipelined network. Communication paths connect the controller to each tier of the pipelined network. A program executing at the controller detects a failure of the processing of the message by the pipelined network and receives diagnostic information from the tiers after the failure is detected. The diagnoses based on the retrieved information can proceed either manually or automatically, depending on how the information is collected. In order to automate the diagnosis, the program executing on the controller includes commands for sequentially analyzing each tier in the pipelined network in order to isolate the tier in which the failure occurred. For manual diagnosis, the program includes commands for simultaneously (or almost simultaneously) requesting information from each tier upon network failure. In the manual approach, distributed agents at all of the tiers gather information about the operating of the tier at the time of network failure.
    • 本发明涉及一种在诸如流水线网络等阶段处理消息的网络的诊断工具。 在包括服务器层的流水线网络中,每层服务器仅在以层级顺序处理消息的通信流中仅与相邻层进行通信。 该工具需要一个位于流水线网络本地的控制器,用于生成要由流水线网络处理的消息。 通信路径将控制器连接到流水线网络的每一层。 在控制器执行的程序检测到流水线网络处理消息的故障,并且在检测到故障之后从层中接收诊断信息。 根据检索到的信息的诊断可以手动或自动进行,具体取决于信息的收集方式。 为了使诊断自动化,在控制器上执行的程序包括用于顺序地分析流水线网络中的每个层的命令,以便隔离发生故障的层。 对于手动诊断,程序包括在网络故障时同时(或几乎同时)从每个层请求信息的命令。 在手动方法中,所有层级的分布式代理在网络故障时收集有关层的操作的信息。
    • 10. 发明申请
    • ANALYSIS OF PIPELINED NETWORKS
    • 管道网络分析
    • US20080148099A1
    • 2008-06-19
    • US11953814
    • 2007-12-10
    • Thirumalesh BhatMark WodrichEvan C. Cacka
    • Thirumalesh BhatMark WodrichEvan C. Cacka
    • G06F11/00
    • H04L43/0823H04L1/22H04L41/046H04L41/0659H04L43/06
    • This invention relates to a diagnostic tool for networks that process messages in stages such as pipelined networks. In a pipelined network comprising tiers of servers, each tier of servers communicates only with adjacent tiers in a communications flow that processes messages in a sequence of tiers. The tool requires a controller located locally with respect to the pipelined network for generating messages to be processed by the pipelined network. Communication paths connect the controller to each tier of the pipelined network. A program executing at the controller detects a failure of the processing of the message by the pipelined network and receives diagnostic information from the tiers after the failure is detected. The diagnoses based on the retrieved information can proceed either manually or automatically, depending on how the information is collected. In order to automate the diagnosis, the program executing on the controller includes commands for sequentially analyzing each tier in the pipelined network in order to isolate the tier in which the failure occurred. For manual diagnosis, the program includes commands for simultaneously (or almost simultaneously) requesting information from each tier upon network failure. In the manual approach, distributed agents at all of the tiers gather information about the operating of the tier at the time of network failure.
    • 本发明涉及一种在诸如流水线网络等阶段处理消息的网络的诊断工具。 在包括服务器层的流水线网络中,每层服务器仅在以层级顺序处理消息的通信流中仅与相邻层进行通信。 该工具需要一个位于流水线网络本地的控制器,用于生成要由流水线网络处理的消息。 通信路径将控制器连接到流水线网络的每一层。 在控制器执行的程序检测到流水线网络处理消息的故障,并且在检测到故障之后从层中接收诊断信息。 根据检索到的信息的诊断可以手动或自动进行,具体取决于信息的收集方式。 为了使诊断自动化,在控制器上执行的程序包括用于顺序地分析流水线网络中的每个层的命令,以便隔离发生故障的层。 对于手动诊断,程序包括在网络故障时同时(或几乎同时)从每个层请求信息的命令。 在手动方法中,所有层级的分布式代理在网络故障时收集有关层的操作的信息。