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    • 1. 发明申请
    • EXECUTING PROGRAMS BASED ON USER-SPECIFIED CONSTRAINTS
    • 基于用户指定的约束执行程序
    • US20080059557A1
    • 2008-03-06
    • US11851345
    • 2007-09-06
    • Peter DeSantisQuinton HooleRoland Paterson-JonesAllan VermeulenLuis CabreraMarvin Theimer
    • Peter DeSantisQuinton HooleRoland Paterson-JonesAllan VermeulenLuis CabreraMarvin Theimer
    • G06F9/46G06F15/173
    • G06F9/5044G06F2209/506
    • Techniques are described for managing execution of programs on multiple computing systems, such as based at least in part of user-specified constraints. For example, constraints related to execution of a program may be based on a desired relative location of a host computing system to execute a copy of the program with respect to an indicated target (e.g., computing systems executing other copies of the program or copies of another indicated program), on particular geographic locations, and/or on factors not based on location (e.g., cost of use of a particular computing system, capabilities available from a particular computing system, etc.). Some or all of the multiple computing systems may be part of a program execution service for executing multiple programs on behalf of multiple users, and each may provide multiple virtual machines that are each capable of executing one or more programs for one or more users.
    • 描述了用于管理多个计算系统上的程序的执行的技术,例如至少部分地基于用户指定的约束。 例如,与程序的执行有关的约束可以基于主机计算系统相对于所指示的目标执行程序的副本的期望的相对位置(例如,执行程序的其他副本的计算系统或副本 另一个指定的程序),特定地理位置和/或不基于位置的因素(例如,特定计算系统的使用成本,特定计算系统可用的能力等)。 多个计算系统中的一些或全部可以是代表多个用户执行多个程序的程序执行服务的一部分,并且每个可以提供多个虚拟机,每个虚拟机能够为一个或多个用户执行一个或多个程序。
    • 2. 发明申请
    • Automated generation of computer-executable compensation procedures for previously executed methods
    • 为先前执行的方法自动生成计算机可执行的补偿程序
    • US20050177774A1
    • 2005-08-11
    • US10763526
    • 2004-01-23
    • George CopelandLuis Cabrera
    • George CopelandLuis Cabrera
    • G06F11/00
    • G06F11/28
    • Mechanisms for executing a transaction such that it may be undone after being committed. The mechanism maintains a mapping between each of a number of groups of one or more direct methods with a corresponding group of one or more inversion methods, that, when executed, causes the computing system to at least partially undo the effects of the execution of the corresponding group of direct methods. Upon beginning a transaction, the computing system runs a one or more groups of one or more direct methods that are part of the transaction. The mapping is then used to identify the corresponding group(s) of inversion methods. The identities of each corresponding group of inversion methods are then saved to a compensation record. The transaction is then committed, and the compensation record is saved to a persistent media along with a transaction identifier.
    • 执行交易的机制,使其在被提交后可能被撤销。 该机制维持一组或多个直接方法中的每组之间的映射与相应的一组或多种反转方法的映射,即当被执行时,使计算系统至少部分地撤销执行的效果 相应组的直接方法。 在开始事务时,计算系统运行作为事务一部分的一个或多个一个或多个直接方法组。 然后使用映射来识别相应的反演方法组。 然后将每个相应组的反转方法的身份保存到补偿记录。 然后提交事务,并将补偿记录与事务标识符一起保存到持久介质。
    • 4. 发明申请
    • ADAPTIVE RECOVERY FROM SYSTEM FAILURE FOR APPLICATION INSTANCES THAT GOVERN MESSAGE TRANSACTIONS
    • 系统故障自适应恢复用于实施消息交易的应用程序实例
    • US20080098261A1
    • 2008-04-24
    • US11955236
    • 2007-12-12
    • Luis CabreraGeorge Copeland
    • Luis CabreraGeorge Copeland
    • G06F11/14
    • G06F11/1402G06F11/1441G06F11/1443
    • Mechanisms for adaptively entering and exiting recovery mode. When a message is received from a particular message transaction, the appropriate processing instance is loaded from persistent memory to system memory. The processing instance then determines from its own state information whether or not it is in recovery mode. This indication of recovery or normal mode may be set by a system-wide recovery detection module. If the processing instance determines that it is in normal mode, then the processing instance executes code appropriate for normal operation without needing to execute any recovery code at all. If, on the other hand, the processing instance determines that it is in recovery mode, then it executes recovery code. Once the recovery code has completed successfully, the processing instance may then cause its own normal mode.
    • 自适应进入和退出恢复模式的机制。 当从特定消息事务接收到消息时,适当的处理实例从持久存储器加载到系统存储器。 然后,处理实例从其自身状态信息确定其是否处于恢复模式。 恢复或正常模式的指示可以由系统范围的恢复检测模块来设置。 如果处理实例确定它处于正常模式,则处理实例执行适合于正常操作的代码,而不需要执行任何恢复代码。 另一方面,如果处理实例确定它处于恢复模式,则执行恢复代码。 恢复代码成功完成后,处理实例可能会导致其自己的正常模式。
    • 7. 发明申请
    • Deterministic rule-based dispatch of objects to code
    • 确定性的基于规则的调度对象到代码
    • US20050198108A1
    • 2005-09-08
    • US10763530
    • 2004-01-23
    • Luis CabreraGeorge Copeland
    • Luis CabreraGeorge Copeland
    • G06F9/44G06F9/00G06F9/42G06F9/46G06F15/16
    • G06F9/547G06F9/449G06F9/548
    • Deterministic rule-based dispatch of the data structure to a group of one or more methods. After accessing the data structure to be processed, a list of rules is evaluated to identify multiple rules that apply to the dispatch of the data structure. Each of these multiple rules specifies a different group of one or more methods to which the data structure should be dispatched. The multiple rules are resolved to a single prevailing rule that will be applied for the dispatch of the data structure. Then, the computing system dispatches the data structure to the group of one or more methods specified by the prevailing rule. The rule evaluation and prioritization is deterministic for ease in debugging since it may be determined which group of one or more methods processed a data structure should a performance problem arise during the processing. Furthermore, rules may be added, amended, or deleted dynamically.
    • 确定性的基于规则的数据结构调度到一组或多个方法。 在访问要处理的数据结构之后,将对规则列表进行评估,以确定适用于数据结构调度的多个规则。 这些多个规则中的每一个规定了要分配数据结构的一个或多个方法的不同组。 多个规则被解决为将应用于数据结构调度的单一主要规则。 然后,计算系统将数据结构分派到由普遍规则指定的一种或多种方法的组中。 规则评估和优先次序对于易于调试是确定性的,因为可以确定在处理期间出现性能问题时,哪一组一个或多个方法处理数据结构。 此外,可以动态添加,修改或删除规则。
    • 9. 发明申请
    • ADAPTIVE RECOVERY FROM SYSTEM FAILURE FOR APPLICATION INSTANCES THAT GOVERN MESSAGE TRANSACTIONS
    • 系统故障自适应恢复用于实施消息交易的应用程序实例
    • US20070168723A1
    • 2007-07-19
    • US11627344
    • 2007-01-25
    • Luis CabreraGeorge Copeland
    • Luis CabreraGeorge Copeland
    • G06F11/00
    • G06F11/1402G06F11/1441G06F11/1443
    • Mechanisms for adaptively entering and exiting recovery mode. When a message is received from a particular message transaction, the appropriate processing instance is loaded from persistent memory to system memory. The processing instance then determines from its own state information whether or not it is in recovery mode. This indication of recovery or normal mode may be set by a system-wide recovery detection module. If the processing instance determines that it is in normal mode, then the processing instance executes code appropriate for normal operation without needing to execute any recovery code at all. If, on the other hand, the processing instance determines that it is in recovery mode, then it executes recovery code. Once the recovery code has completed successfully, the processing instance may then cause its own normal mode.
    • 自适应进入和退出恢复模式的机制。 当从特定消息事务接收到消息时,适当的处理实例从持久存储器加载到系统存储器。 然后,处理实例从其自身状态信息确定其是否处于恢复模式。 恢复或正常模式的指示可以由系统范围的恢复检测模块来设置。 如果处理实例确定它处于正常模式,则处理实例执行适合于正常操作的代码,而不需要执行任何恢复代码。 另一方面,如果处理实例确定它处于恢复模式,则执行恢复代码。 恢复代码成功完成后,处理实例可能会导致其自己的正常模式。