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    • 3. 发明申请
    • METHOD, OPERATING SYSTEM, AND COMPUTING DEVICE FOR PROCESSING A COMPUTER PROGRAM
    • 用于编辑计算机程序的程序,操作系统和控制装置
    • WO2006015945A3
    • 2006-06-08
    • PCT/EP2005053621
    • 2005-07-25
    • BOSCH GMBH ROBERTWEIBERLE REINHARDMUELLER BERNDHARTER WERNERKOTTKE THOMASCOLLANI YORCKGMEHLICH RAINER
    • WEIBERLE REINHARDMUELLER BERNDHARTER WERNERKOTTKE THOMASCOLLANI YORCKGMEHLICH RAINER
    • G06F11/14
    • G06F11/1438G06F11/1479
    • The invention relates to a method for processing a computer program (23) on a computing device (20), particularly a microprocessor (22). Said computer program (23) comprises several program objects that are configured as tasks, for example. Transient and permanent errors are detected during the time the computer program (23) is processed on the computing device (20). In order to be able to constructively treat transient errors when the same occur in a computer system such that the operability and the operational safety of the computer system are reestablished within the shortest possible error tolerance interval, a program object that has already been fed for processing is converted into a defined state and is restarted from said defined state when an error is detected. Said program object represents a run time object of the computer program, a task, for example. According to the inventive method, one or several tasks which continue to be processed or have already been processed when the error occurs can be restarted and executed.
    • 本发明涉及一种用于在计算设备(20)上,特别是在微处理器(22)上处理计算机程序(23)的方法。 计算机程序(23)包括例如被设计为任务的多个程序对象。 在处理计算设备(20)上的计算机程序(23)期间,检测到瞬态和永久性错误。 为了能够以这样的建设性地在计算机系统中的瞬态错误的事件来处理这些,该计算机系统的可操作性和可靠性是在很短的尽可能容错时间重新建立,提出的是,对于检测到错误中的至少一个程序对象已处理 被提供,转移到一个确定的状态并从此重新启动。 程序对象例如是计算机程序(23)的运行时对象,即所谓的任务。 为了本发明的目的,当错误发生或者已经被执行时仍然执行的一个任务或者多个任务可以被重新启动并且被执行。
    • 7. 发明申请
    • METHOD FOR FORMING A SIGNATURE AND TRANSMITTING DATA
    • 程序供签署教育和传输数据
    • WO2004045131A3
    • 2004-09-16
    • PCT/DE0303691
    • 2003-11-06
    • BOSCH GMBH ROBERTZF LENKSYSTEME GMBHZARGA HEIKELBOEHL EBERHARDHARTER WERNER
    • ZARGA HEIKELBOEHL EBERHARDHARTER WERNER
    • H04L1/00
    • H04L1/0041
    • The invention relates to a method for transmitting data, in which a first signature (S) is formed according to a predefinable signature generation method (SBV), depending on the data (D) to be transmitted, the first signature (S) is transmitted together with the data (D), a second signature (S') is generated according to the signature generation method, depending on the data that has been transmitted (D') and the first signature (S) is compared with the second signature (S'). The aim of the invention is to reduce the error masking probability during the transmission of data (D) using a signature analysis. To achieve this, the data to be transmitted is inverted (D), the first signature (S) is formed according to the predefinable signature generation method (SBV), depending on the data to be transmitted (D) and the inverted data (Di), the first signature (S) and the data (D) are transmitted, the transmitted data (D') is inverted, the second signature (S') is generated according to the signature generation method, depending on the inverted data (Di') and the transmitted data (D'), and the first signature (S) is compared with the second signature (S').
    • 本发明涉及一种用于传输,其中数据,可预先设定的签名形成方法(SBV)的第一签名(S),作为数据的功能后的方法将被发送(D)形成,所述第一签名(S)与数据一起(D)发送的 “响应于所发送的数据(D按照签名形成方法和所述第一签名(S)到所述第二签名(S“))进行比较而形成的第二签名(S)”。 为了监测的数据的传输(D),以减小所述误差由签名分析的手段掩蔽概率,所以建议将要发送的数据(D)中的依赖性的预定签名的形成方法(SBV)之后被反转,以发送该数据(D)和 反转数据(Di)和所述第一签名(S)上形成,所述第一签名(S)和数据(D)将被发送,所发送的数据(D“)被反转,在这些反转数据(DI的依赖性”)和 发送的数据(D“)根据签名形成方法(SBV)第二签名(S”)形成,并且所述第一签名(S)到所述第二签名(S“)相比较。