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    • 2. 发明申请
    • NETWORK BANDWIDTH DETECTION AND DISTRIBUTION
    • 网络带宽检测和分配
    • US20120213077A1
    • 2012-08-23
    • US13460617
    • 2012-04-30
    • Yutaka TakedaJames E. MarrStephen C. DetwilerAttila VassPayton R. White
    • Yutaka TakedaJames E. MarrStephen C. DetwilerAttila VassPayton R. White
    • H04L12/26
    • H04L47/525H04L29/06H04L29/08072H04L47/50H04L47/521
    • Prioritizing network traffic among two or more distinct channels of communication within a single application in a node configured to communicate with one or more other nodes over a network is disclosed. For a particular time quantum, a bandwidth quantum may be distributed amongst two or more communication channels according to priorities associated with those channels. Ready data for each channel may be transmitted over a network path up to the size of the reserved portion for that channel and not greater than a path maximum transmission unit (MTU) size for a network path. This abstract is provided to comply with the rules requiring an abstract that will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims.
    • 公开了在被配置为通过网络与一个或多个其他节点进行通信的节点内的单个应用中的两个或更多个不同的通信通道之间的优先级网络流量。 对于特定的时间量,带宽量可以根据与这些信道相关联的优先级分布在两个或更多个通信信道之中。 每个信道的就绪数据可以通过网络路径发送,直到该信道的保留部分的大小,并且不大于网络路径的路径最大传输单元(MTU)大小。 提供本摘要以符合要求抽象的规则,允许搜索者或其他读者快速确定技术公开内容的主题。 提交它的理解是,它不会用于解释或限制权利要求的范围或含义。
    • 8. 发明授权
    • Atomic operation involving processors with different memory transfer operation sizes
    • 具有不同内存传输操作大小的处理器的原子操作
    • US07398368B2
    • 2008-07-08
    • US11291306
    • 2005-12-01
    • James E. MarrJohn P. BatesAttila VassTatsuya Iwamoto
    • James E. MarrJohn P. BatesAttila VassTatsuya Iwamoto
    • G06F12/00
    • G06F9/3879G06F9/526G06F2209/521
    • Atomic operations may be implemented on a processor system having a main memory and two or more processors including a power processor element (PPE) and a synergistic processor element (SPE) that operate on different sized register lines. A main memory address containing a primitive is divided into a parity byte and two or more portions, wherein the parity byte includes at least one bit. A value of the parity byte determines which of the two or more portions is a valid portion and which of them is an invalid portion. The primitive is of a memory size that is larger than a maximum size for atomic operation with the PPE and less than or equal to a maximum size for atomic operation with the SPE. Read with reservation and conditional write instructions are used by both the PPE and SPE to access or update a value of the atomic.
    • 原子操作可以在具有主存储器和两个或更多个处理器的处理器系统上实现,所述处理器包括在不同大小的寄存器线上操作的功率处理器元件(PPE)和协同处理器元件(SPE)。 包含原语的主存储器地址被划分为奇偶校验字节和两个或多个部分,其中奇偶校验字节包括至少一个位。 奇偶校验字节的值确定两个或多个部分中的哪一个是有效部分,哪些是无效部分。 原始内存大小大于使用PPE进行原子操作的最大大小,小于或等于使用SPE进行原子操作的最大大小。 读取预留和条件写入指令由PPE和SPE使用来访问或更新原子的值。
    • 10. 发明授权
    • Network communication protocol for large scale distribution of streaming content
    • 网络通信协议大规模分发流媒体内容
    • US07613979B1
    • 2009-11-03
    • US11296642
    • 2005-12-07
    • James E. MarrPayton R. WhiteAttila VassGary Zalewski
    • James E. MarrPayton R. WhiteAttila VassGary Zalewski
    • H03M13/00H04L1/18
    • H03M13/3761
    • Forward error correction may be implemented in a network having first, second and third nodes. The second node receives streaming media message packets and one or more check packets from an upstream first node. The second node transmits the message packets and check packets to a downstream third node. The second node uses the check packets to decode missing message packets and transmits the decoded missing packets to the third node before the missing message packets are to be presented by the third node. The third node may receive message packets and a first set of check packets from the second node and a second set of check packets from the first node. The third node may use check packets from both sets to decode missing message packets.
    • 可以在具有第一,第二和第三节点的网络中实现前向纠错。 第二节点从上游第一节点接收流媒体消息分组和一个或多个检查分组。 第二节点将消息包发送到下游第三节点。 第二节点使用检查分组来解码丢失的消息分组,并且在第三节点出现丢失的消息分组之前将解码的丢失分组发送到第三节点。 第三节点可以接收来自第二节点的消息分组和第一组校验分组以及来自第一节点的第二组校验分组。 第三节点可以使用来自两个集合的检查分组来解码丢失的消息分组。