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    • 1. 发明授权
    • Prioritization for conflict arbitration in transactional memory management
    • 事务性内存管理中冲突仲裁的优先级
    • US09170844B2
    • 2015-10-27
    • US12348216
    • 2009-01-02
    • Robert J. BlaineyC. Brian HallThomas J. Heller, Jr.Mark F. Wilding
    • Robert J. BlaineyC. Brian HallThomas J. Heller, Jr.Mark F. Wilding
    • G06F9/50G06F9/52G06F9/46G06F13/16
    • G06F9/5016G06F9/467G06F9/526G06F13/1605
    • Embodiments of the present invention provide a method, system and computer program product for software prioritization of concurrent transactions for embedded conflict arbitration in transactional memory management. In an embodiment of the invention, a method for software prioritization of concurrent transactions for embedded conflict arbitration in transactional memory management can include setting different hardware registers with different priority values for correspondingly different transactions in a transactional memory system configured for transactional memory management according to respective priority values specified by priority assignment logic in external software support for the system. The method also can include detecting a conflict amongst the transactions in the system. Finally, the method can include applying conflict arbitration within the system based upon the priority values specified by the priority assignment logic in the external software support for the system.
    • 本发明的实施例提供了一种用于在事务性存储器管理中的嵌入式冲突仲裁的并发事务的软件优先化的方法,系统和计算机程序产品。 在本发明的一个实施例中,用于事务性存储器管理中的嵌入式冲突仲裁的并行事务的软件优先化的方法可以包括:根据相应的事务存储器管理配置用于事务性存储器管理的事务存储器系统中的相应不同的事务,设置具有不同优先级值的不同硬件寄存器 通过外部软件对系统的优先级分配逻辑指定的优先级值。 该方法还可以包括检测系统中的事务之间的冲突。 最后,该方法可以包括基于在系统的外部软件支持中由优先级分配逻辑指定的优先级值在系统内应用冲突仲裁。
    • 2. 发明申请
    • PRIORITIZATION FOR CONFLICT ARBITRATION IN TRANSACTIONAL MEMORY MANAGEMENT
    • 交易性内存管理中的冲突仲裁优先权
    • US20100174840A1
    • 2010-07-08
    • US12348216
    • 2009-01-02
    • Robert J. BlaineyC. Brian HallThomas J. Heller, JR.Mark F. Wilding
    • Robert J. BlaineyC. Brian HallThomas J. Heller, JR.Mark F. Wilding
    • G06F13/374
    • G06F9/5016G06F9/467G06F9/526G06F13/1605
    • Embodiments of the present invention provide a method, system and computer program product for software prioritization of concurrent transactions for embedded conflict arbitration in transactional memory management. In an embodiment of the invention, a method for software prioritization of concurrent transactions for embedded conflict arbitration in transactional memory management can include setting different hardware registers with different priority values for correspondingly different transactions in a transactional memory system configured for transactional memory management according to respective priority values specified by priority assignment logic in external software support for the system. The method also can include detecting a conflict amongst the transactions in the system. Finally, the method can include applying conflict arbitration within the system based upon the priority values specified by the priority assignment logic in the external software support for the system.
    • 本发明的实施例提供了一种用于在事务性存储器管理中的嵌入式冲突仲裁的并发事务的软件优先化的方法,系统和计算机程序产品。 在本发明的一个实施例中,用于事务性存储器管理中的嵌入式冲突仲裁的并行事务的软件优先化的方法可以包括:根据相应的事务存储器管理配置用于事务性存储器管理的事务存储器系统中的相应不同的事务,设置具有不同优先权值的不同硬件寄存器 通过外部软件对系统的优先级分配逻辑指定的优先级值。 该方法还可以包括检测系统中的事务之间的冲突。 最后,该方法可以包括基于在系统的外部软件支持中由优先级分配逻辑指定的优先级值在系统内应用冲突仲裁。
    • 5. 发明授权
    • Defensive heap memory management
    • 防御堆内存管理
    • US07827375B2
    • 2010-11-02
    • US11626691
    • 2007-01-24
    • Alexander AbrashkevichMark F. Wilding
    • Alexander AbrashkevichMark F. Wilding
    • G06F12/00G06F13/00
    • G06F11/366G06F12/023
    • A data structure, method and system are provided incorporating a general purpose memory allocator and defensive heap memory manager. This provides an ability to reliably detect various types of memory errors, dynamically enable or disable memory debugging, enhance success of read and write operations using various memory verification techniques. Further, through separation of control information associated with allocated and free chunks of memory from the chunks themselves (separation of metadata from actual data), enhanced protection of vital information about the heap memory layout in general is provided. The heap memory manager uses read, write, and execute protected heap header walls and pool header walls and may, for each pool and memory block, separately use hidden front and back Memory Debug Information Areas (MDIAs) with checksums and well-known signature fields thereby enhancing overall memory management.
    • 提供了包含通用存储器分配器和防御堆存储器管理器的数据结构,方法和系统。 这提供了可靠地检测各种类型的存储器错误,动态地启用或禁用存储器调试的能力,使用各种存储器验证技术增强了读取和写入操作的成功。 此外,通过分离与分组本身的分配的和自由的存储块相关联的控制信息(元数据与实际数据的分离),提供了关于堆存储器布局的重要信息的增强保护。 堆内存管理器使用读,写和执行保护的堆标头墙和池标题墙,并且对于每个池和内存块,可以分别使用具有校验和和公知签名字段的隐藏的前端和后端内存调试信息区域(MDI) 从而增强整体内存管理。
    • 6. 发明授权
    • Dynamic cluster database architecture
    • 动态集群数据库架构
    • US07447693B2
    • 2008-11-04
    • US10390812
    • 2003-03-17
    • Mark F. WildingMatthew A. Huras
    • Mark F. WildingMatthew A. Huras
    • G06F7/00G06F17/30
    • G06F17/30575G06F17/30362Y10S707/99931Y10S707/99938Y10S707/99953
    • A distributed database management system implemented on a cluster of computers. The cluster including disks organized as data nodes. The data nodes being locally connected to one or more computers in the cluster. The distributed database management system includes a distributed database manager layer having a lock manager, a resource manager, and an architecture manager. The lock manager serializes access to the data nodes in the cluster. The resource manager maintains a data representation of the resources of each computer in the cluster and makes the data available to other computers in the cluster to facilitate access to the resources by the other computers. The architecture manager defines logical ownership relationships between data nodes and computers in the cluster to permit the architecture of the database to be dynamically reconfigured to provide improved performance.
    • 在一组计算机上实现的分布式数据库管理系统。 集群包括组织为数据节点的磁盘。 数据节点本地连接到集群中的一台或多台计算机。 分布式数据库管理系统包括具有锁管理器,资源管理器和架构管理器的分布式数据库管理器层。 锁定管理器将访问集群中的数据节点序列化。 资源管理器维护集群中每台计算机的资源的数据表示,并使数据可用于集群中的其他计算机,以便其他计算机访问资源。 架构管理员定义集群中数据节点和计算机之间的逻辑所有权关系,以允许动态重新配置数据库的体系结构以提供改进的性能。
    • 9. 发明授权
    • Defensive heap memory management
    • 防御堆内存管理
    • US07181585B2
    • 2007-02-20
    • US10427085
    • 2003-04-30
    • Alexander AbrashkevichMark F. Wilding
    • Alexander AbrashkevichMark F. Wilding
    • G06F12/00G06F13/00
    • G06F12/023
    • A data structure, method and system are provided incorporating a general purpose memory allocator and defensive heap memory manager. This provides an ability to reliably detect various types of memory errors, dynamically enable or disable memory debugging, enhance success of read and write operations using various memory verification techniques. Further, through separation of control information associated with allocated and free chunks of memory from the chunks themselves (separation of metadata from actual data), enhanced protection of vital information about the heap memory layout in general is provided. The heap memory manager uses read, write, and execute protected heap header walls and pool header walls and may, for each pool and memory block, separately use hidden front and back Memory Debug Information Areas (MDIAs) with checksums and well-known signature fields thereby enhancing overall memory management.
    • 提供了包含通用存储器分配器和防御堆存储器管理器的数据结构,方法和系统。 这提供了可靠地检测各种类型的存储器错误,动态地启用或禁用存储器调试的能力,使用各种存储器验证技术增强了读取和写入操作的成功。 此外,通过分离与分组本身的分配的和空闲的存储块相关联的控制信息(元数据与实际数据的分离),提供了关于堆存储器布局的重要信息的增强保护。 堆内存管理器使用读,写和执行保护的堆标头墙和池标题墙,并且对于每个池和内存块,可以分别使用具有校验和和公知签名字段的隐藏的前端和后端内存调试信息区域(MDI) 从而增强整体内存管理。