PROCESSING SYSTEM, RELATED INTEGRATED CIRCUIT, DEVICE AND METHOD

    公开(公告)号:US20240283736A1

    公开(公告)日:2024-08-22

    申请号:US18440216

    申请日:2024-02-13

    CPC classification number: H04L45/566 H04L45/745 H04L61/2546

    Abstract: A hardware network accelerator comprises a plurality of Ethernet communication interfaces, a plurality of memories, and a further memory. Each memory stores records comprising destination IP data identifying a destination IP address range. The further memory stores further records, wherein each record comprises next-hop data indicating a next-hop IP address, next-hop enable data, and network port data indicating an Ethernet communication interface. Each Ethernet communication interface is configured to obtain an IP packet, access in parallel the memories in order to read the records, select a record having a destination IP address range containing the destination IP address of the IP packet, read the further record associated with the selected record from the further memory, and select the indicated Ethernet communication interface. The selected Ethernet communication interface is configured to transmit an Ethernet frame comprising the IP packet based on the next-hop enable data and next-hop data.

    SAFE SCHEDULER FOR FINITE STATE DETERMINISTIC APPLICATION
    2.
    发明申请
    SAFE SCHEDULER FOR FINITE STATE DETERMINISTIC APPLICATION 有权
    用于有限状态决定性应用的安全调度器

    公开(公告)号:US20150268133A1

    公开(公告)日:2015-09-24

    申请号:US14218482

    申请日:2014-03-18

    Abstract: A safety system monitors faults in an embedded control system. The embedded control system is modeled to produce one or more model check values by calculating how many clock cycles will pass between an initialization time point and at least one event time point for a specific event. The initialization time point is a certain point in an initialization function of a scheduler in the embedded control system. The at least one event time point is an expected number of clock cycles to pass before a specific event occurs. In operation, the embedded control system is initialized, a current clock cycle counter value is retrieved at a certain point in the initialization, and either an occurrence or an absence of an occurrence of a scheduled event is recognized. A current clock cycle value is recorded upon the recognition, and a mathematic check value is produced from the clock cycle value stored at the certain point in the initialization and the clock cycle value recorded upon the recognition. Subsequently, the model check value is compared to the mathematic check value, and action is taken based on the comparison.

    Abstract translation: 安全系统监控嵌入式控制系统中的故障。 嵌入式控制系统被建模为通过计算在特定事件的初始化时间点和至少一个事件时间点之间经过多少个时钟周期来产生一个或多个模型检查值。 初始化时间点是嵌入式控制系统中的调度器的初始化功能中的某一点。 至少一个事件时间点是在特定事件发生之前要通过的期望数量的时钟周期。 在操作中,初始化嵌入式控制系统,在初始化中的某一点检索当前的时钟周期计数器值,并且识别调度事件的发生或不存在。 在识别时记录当前时钟周期值,并且从存储在初始化中的某一点的时钟周期值和在识别时记录的时钟周期值产生数学校验值。 随后,将模型检查值与数学检查值进行比较,并根据比较进行动作。

    Safe scheduler for finite state deterministic application
    3.
    发明授权
    Safe scheduler for finite state deterministic application 有权
    用于有限状态确定性应用的安全调度器

    公开(公告)号:US09558052B2

    公开(公告)日:2017-01-31

    申请号:US14218482

    申请日:2014-03-18

    Abstract: A safety system monitors faults in an embedded control system. The embedded control system is modeled to produce one or more model check values by calculating how many clock cycles will pass between an initialization time point and at least one event time point for a specific event. The initialization time point is a certain point in an initialization function of a scheduler in the embedded control system. The at least one event time point is an expected number of clock cycles to pass before a specific event occurs. In operation, the embedded control system is initialized, a current clock cycle counter value is retrieved at a certain point in the initialization, and either an occurrence or an absence of an occurrence of a scheduled event is recognized. A current clock cycle value is recorded upon the recognition, and a mathematic check value is produced from the clock cycle value stored at the certain point in the initialization and the clock cycle value recorded upon the recognition. Subsequently, the model check value is compared to the mathematic check value, and action is taken based on the comparison.

    Abstract translation: 安全系统监控嵌入式控制系统中的故障。 嵌入式控制系统被建模为通过计算在特定事件的初始化时间点和至少一个事件时间点之间经过多少个时钟周期来产生一个或多个模型检查值。 初始化时间点是嵌入式控制系统中的调度器的初始化功能中的某一点。 至少一个事件时间点是在特定事件发生之前要通过的期望数量的时钟周期。 在操作中,初始化嵌入式控制系统,在初始化中的某一点检索当前的时钟周期计数器值,并且识别调度事件的发生或不存在。 在识别时记录当前时钟周期值,并且从存储在初始化中的某一点的时钟周期值和在识别时记录的时钟周期值产生数学校验值。 随后,将模型检查值与数学检查值进行比较,并根据比较进行动作。

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