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    • 4. 发明授权
    • Electronic trading system
    • 电子交易系统
    • US08768807B2
    • 2014-07-01
    • US13466818
    • 2012-05-08
    • Peter Richard Horsfall
    • Peter Richard Horsfall
    • G06Q40/00
    • G06Q40/04G06Q30/08G06Q40/00
    • An anonymous trading system comprises one or more matching engines, one or more market distributors and one or more trader terminals for input of orders from institutions trading on the system. The trader terminals are connected to the system through bank nodes. A broker terminal is connected through a bank node and enables voice brokers to trade on the system on behalf of client traders. The voice brokers terminal can be configured for any client trader and will display the market view for that trader. Trades in which the broker terminal participates are not concluded until a manual credit check has been performed.
    • 匿名交易系统包括一个或多个匹配引擎,一个或多个市场分销商和一个或多个交易者终端,用于输入在系统上交易的机构的订单。 交易者终端通过银行节点连接到系统。 经纪人终端通过银行节点连接,并使代理客户交易者能够使语音代理商在系统上进行交易。 可以为任何客户交易者配置语音代理终端,并显示该交易者的市场视图。 经纪人终端参与的交易在执行手动信用检查之前尚未结束。
    • 6. 发明授权
    • Virtualization software migrating workload between processing circuitries while making architectural states available transparent to operating system
    • 虚拟化软件在处理电路之间迁移工作负载,同时使体系结构状态对操作系统具有透明度
    • US08418187B2
    • 2013-04-09
    • US12659234
    • 2010-03-01
    • Peter Richard GreenhalghRichard Roy Grisenthwaite
    • Peter Richard GreenhalghRichard Roy Grisenthwaite
    • G06F9/50
    • G06F9/5088G06F1/3293G06F9/5094Y02D10/122Y02D10/22Y02D10/32Y02D50/20
    • A data processing apparatus has first processing circuitry which is architecturally compatible with second processing circuitry, but with the first processing circuitry being miero-architccturally different from the second processing circuitry. A switch controller performs a handover operation to transfer performance of the workload from source processing circuitry to destination processing circuitry, with the source processing circuitry being one of the first and second processing circuitry and the destination processing circuitry being the other of the first and second processing circuitry. During the handover operation, the switch controller causes the source processing circuitry to makes it current architectural state available to the destination processing circuitry and is necessary for the destination processing circuitry to successfully lake over performance of the workload from the source processing circuitry. The switch controller masks predetermined processor specific configuration information such that the transfer of the workload is transparent to that operating system.
    • 数据处理装置具有在结构上与第二处理电路兼容的第一处理电路,但是第一处理电路与第二处理电路具有不同的结构。 开关控制器执行切换操作以将工作负载的性能从源处理电路传送到目的地处理电路,源处理电路是第一和第二处理电路之一,目的地处理电路是第一和第二处理中的另一个 电路。 在切换操作期间,交换机控制器使得源处理电路使得目前处理电路可用的当前体系结构状态,并且对于目的地处理电路来说,成功地从源处理电路中对工作负载的性能成功过滤是必要的。 交换机控制器屏蔽预定的处理器特定配置信息,使得工作负载的传输对于该操作系统是透明的。
    • 7. 发明申请
    • Electronic Trading System
    • 电子交易系统
    • US20120226596A1
    • 2012-09-06
    • US13466818
    • 2012-05-08
    • Peter Richard Horsfall
    • Peter Richard Horsfall
    • G06Q40/04
    • G06Q40/04G06Q30/08G06Q40/00
    • An anonymous trading system comprises one or more matching engines, one or more market distributors and one or more trader terminals for input of orders from institutions trading on the system. The trader terminals are connected to the system through bank nodes. A broker terminal is connected through a bank node and enables voice brokers to trade on the system on behalf of client traders. The voice brokers terminal can be configured for any client trader and will display the market view for that trader. Trades in which the broker terminal participates are not concluded until a manual credit check has been performed.
    • 匿名交易系统包括一个或多个匹配引擎,一个或多个市场分销商和一个或多个交易者终端,用于输入在系统上交易的机构的订单。 交易者终端通过银行节点连接到系统。 经纪人终端通过银行节点连接,并使代理客户交易者能够使语音代理商在系统上进行交易。 可以为任何客户交易者配置语音代理终端,并显示该交易者的市场视图。 经纪人终端参与的交易在执行手动信用检查之前尚未结束。
    • 10. 发明申请
    • Data processing apparatus and method for switching a workload between first and second processing circuitry
    • US20110213935A1
    • 2011-09-01
    • US12659235
    • 2010-03-01
    • Peter Richard GreenhalghRichard Roy Grisenthwaite
    • Peter Richard GreenhalghRichard Roy Grisenthwaite
    • G06F15/76G06F12/08G06F9/02
    • G06F1/3203G06F1/3293G06F9/5094Y02D10/122Y02D10/22
    • A data processing apparatus and method are provided for switching performance of a workload between two processing circuits. The data processing apparatus has first processing circuitry which is architecturally compatible with second processing circuitry, but with the first processing circuitry being micro-architecturally different from the second processing circuitry. At any point in time, a workload consisting of at least one application and at least one operating system for running that application is performed by one of the first processing circuitry and the second processing circuitry. A switch controller is responsive to a transfer stimulus to perform a handover operation to transfer performance of the workload from source processing circuitry to destination processing circuitry, with the source processing circuitry being one of the first and second processing circuitry and the destination processing circuitry being the other of the first and second processing circuitry. The switch controller is arranged, during the handover operation, to cause the source processing circuitry to make its current architectural state available to the destination processing circuitry, the current architectural state being that state not available from shared memory shared between the first and second processing circuitry at a time the handover operation is initiated, and that is necessary for the destination processing circuitry to successfully take over performance of the workload from the source processing circuitry. Further, the source processing circuitry and second processing circuitry implement an accelerated mechanism to make the current architectural state available to the destination processing circuitry without routing of the current architectural state via the shared memory. Since the accelerated mechanism is quick and energy efficient, it increases the number of situations it which it is energy efficient to make the switch from one processing circuitry to the other.