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    • 82. 发明公开
    • TEST DEVICE
    • 测试设备
    • EP2642394A1
    • 2013-09-25
    • EP12746751.2
    • 2012-01-23
    • NTT DOCOMO, INC.
    • ASANO, KoichiTSUJI, Hiroyuki
    • G06F11/28G06F11/36H04M1/24
    • G06F11/3668G06F11/3672G06F11/3684G06F11/3692H04M1/24
    • A testing device for evaluating operations of software installed in a mobile terminal includes a scenario selecting unit configured to select a scenario that includes information for causing the mobile terminal to execute a function that should be operated by the mobile terminal, a scenario execution determining unit configured to determine whether the scenario selected by the scenario selecting unit is executable, a scenario execution unit configured to execute the scenario determined to be executable by the scenario execution determining unit, and a scenario execution result determining unit configured to determine whether an execution result of the scenario executed by the scenario execution unit is the same as a result expected beforehand. The scenario execution determining unit determines whether the scenario selected by the scenario selecting unit is executable based on the execution result of the scenario executed by the scenario execution unit in the past.
    • 一种用于评估安装在移动终端中的软件的操作的测试设备,包括:场景选择单元,被配置为选择包括用于使移动终端执行应该由移动终端操作的功能的信息的场景;场景执行确定单元, 确定由场景选择单元选择的场景是否可执行;场景执行单元,配置为执行被确定为可由场景执行确定单元执行的场景;场景执行结果确定单元,配置为确定场景执行确定单元的执行结果 场景执行单元执行的场景与预先预期的结果相同。 场景执行确定单元基于过去脚本执行单元执行的脚本的执行结果,确定脚本选择单元选择的脚本是否可执行。
    • 84. 发明公开
    • SOFTWARE MAINTENANCE SUPPORTING DEVICE AND ELECTRONIC CONTROL DEVICE VERIFIED BY THE SAME
    • 设备相关配套软件维护,因此经过电子控制装置
    • EP2597566A1
    • 2013-05-29
    • EP10854985.8
    • 2010-07-20
    • Hitachi, Ltd.
    • YOSHIMURA, KentaroFUKUDA, TakeshiATARASHI, Yoshitaka
    • G06F9/44G06F11/28
    • G06F8/70G06F8/75G06F11/3604
    • The invention relates to a software maintenance supporting device which analyzes and displays the structure of software, and its object is to divide software into clusters including plural variables and illustrate the result of the division.
      A software maintenance supporting device according to the invention includes variable dependence relation analysis means for extracting variable dependence relation data from a source code, and variable cluster analysis means for dividing software into clusters including plural variables, using a variable dependence relation. Also, an inter-variable dependence relation is illustrated as a directed graph in which a variable is expressed as a node and a dependence relation is expressed as a link, and variables belonging to the same cluster are highlighted.
    • 本发明涉及一个软件维护支撑装置,其分析并显示的软件的结构,并且其目的在于,软件划分成集群包括多个变量,并且示出了分割的结果。 甲软件维护支撑装置gemäß到本发明包括可变依赖关系分析装置,用于从源代码中提取可变依赖关系数据,和可变聚类分析装置,用于将软件装入簇,包括多个变量,使用可变依赖关系。 因此,为了相互依存关系变量被示出为向图中哪一个节点和一个依赖关系被过表达为纽带,并且属于同一群集变量被突出显示可变是过表达的。
    • 86. 发明公开
    • Method and apparatus for verifying the integrity of software code during execution and apparatus for generating such software code
    • 用于执行和设备期间验证的软件代码的完整性用于制造这样的软件代码的方法和设备
    • EP2362314A1
    • 2011-08-31
    • EP10305164.5
    • 2010-02-18
    • Thomson Licensing
    • Monsifrot, AntoineSalmon-Legagneur, Charles
    • G06F11/28G06F21/00
    • G06F11/28G06F21/125
    • Self-modifying software code comprising a number of modules (F1, F2) that each may be modified to be in a plurality of states (S1, S1 ) during execution. In order to verify the integrity of such code, the different states of the code are calculated. For each state a checksum, e.g. a hash value, is generated for at least part of the code. During execution the state of the code is changed (320), modifying (330) a module (F1, F2), and an integrity check is performed (340) using the checksum for the state of the code. The checksum may be stored in a look-up table (434) or it may be embedded in the integrity verification function. A state variable (S) indicating the state of the modules may be used to look-up the checksum in the table (434). Possible states of a module is encrypted and decrypted. Also provided is an apparatus (420) for generating protected software code (430).
    • 自修改软件代码包括多个模块(F1,F2)的各做了可以被修改以在状态(S1,S1)的执行期间复数。 为了验证搜索代码的完整性,代码的不同状态进行计算。 对于每个状态的校验,E.G. 一个散列值,是对代码的至少一部分生成。 期间执行的代码的状态改变(320),修改(330)的模块(F1,F2),以及完整性检查被执行(340)使用的代码的状态的校验和。 校验和可以被存储在查找表(434),或者它可以被嵌入在完整性验证功能。 状态变量(S)表示的模块的状态可以被用来查找校验在该表(434)。 一个模块的可能的状态被加密和解密。 这样提供了一种用于产生受保护的软件代码(430)的装置(420)。
    • 89. 发明公开
    • Process flow analysis based on processing artifacts
    • Vorgangsflussanalyse basierend auf Verarbeitungsartifakten
    • EP2037365A2
    • 2009-03-18
    • EP08251660.0
    • 2008-05-09
    • Accenture Global Services GmbH
    • Neft, Mark
    • G06F11/28
    • G06F11/28G06F9/45516G06F11/3466G06F2201/86G06F2201/865
    • A plurality of reporting elements are applied to a process, which reporting elements, during operation of the process, generate processing artifacts each including a coordination identification (relative to a specific item flowing through the process), a service identification and a time stamp. Thereafter, flow of the item through the process may be analyzed based on the processing artifacts. The processing artifacts may be stored locally at each reporting element or centrally. In the presently preferred embodiment, the analysis of the flow of an item through the process includes generating an industry-standard representation of the flow based on the processing artifacts. In this manner, the present invention provides for a complete analysis of a given process, particularly business processes, through the collection of relatively simple, easily-generated processing artifacts.
    • 多个报告元素被应用于过程,在该过程的操作期间,报告元素生成每个包括协调标识(相对于流经该过程的特定项)的处理工件,服务标识和时间戳。 此后,可以基于处理伪像分析通过该过程的物品的流动。 处理工件可以在本地存储在每个报告单元或集中。 在当前优选的实施例中,通过该过程对物品流的分析包括基于处理伪影生成流的行业标准表示。 以这种方式,本发明通过收集相对简单,容易生成的处理工件来提供给定过程,特别是业务流程的完整分析。