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    • 2. 发明授权
    • Secure communication between processes in cloud
    • 在云中的进程之间进行安全的通信
    • US09503447B2
    • 2016-11-22
    • US14168026
    • 2014-01-30
    • Svetoslav ManolovDiyan YordanovPetio PetevBojidar Kadrev
    • Svetoslav ManolovDiyan YordanovPetio PetevBojidar Kadrev
    • G06F15/16H04L29/06H04L29/08G06F9/54
    • H04L63/0823G06F9/54H04L63/168H04L67/02H04L67/10H04L67/1031H04L67/1036H04L67/42
    • Secure communication between processes in cloud platform may be performed by receiving a request from a client application process hosted in an application virtual machine at a load balancer. A first secure communication channel is established between the client application process and the load balancer. The first secure communication channel is encrypted with the client certificate. The first secure communication channel is terminated at the load balancer. A service process in a service virtual machine is identified based on the request received from the client application process. A new request is sent to the service virtual machine to establish a second secure communication channel between the load balancer and the service virtual machine. The load balancer certificate signed by the internal certificate authority is validated at the service virtual machine. Upon successful validation of the load balancer certificate, the second secure communication channel is accepted at the service virtual machine.
    • 可以通过在负载平衡器处接收来自托管在应用虚拟机中的客户端应用进程的请求来执行云平台中的进程之间的安全通信。 在客户端应用进程和负载平衡器之间建立第一个安全通信通道。 第一个安全通信通道用客户端证书加密。 第一个安全通信通道在负载平衡器处终止。 基于从客户端应用进程接收到的请求,识别服务虚拟机中的服务进程。 向服务虚拟机发送新请求,以在负载均衡器和服务虚拟机之间建立第二安全通信信道。 由内部认证机构签名的负载平衡器证书在服务虚拟机上进行验证。 在成功验证负载平衡器证书后,服务虚拟机接受第二安全通信通道。
    • 7. 发明申请
    • SECURE COMMUNICATION BETWEEN PROCESSES IN CLOUD
    • 云中的安全通信
    • US20150215308A1
    • 2015-07-30
    • US14168026
    • 2014-01-30
    • Svetoslav ManolovDiyan YordanovPetio PetevBojidar Kadrev
    • Svetoslav ManolovDiyan YordanovPetio PetevBojidar Kadrev
    • H04L29/06G06F9/50H04L29/08
    • H04L63/0823G06F9/54H04L63/168H04L67/02H04L67/10H04L67/1031H04L67/1036H04L67/42
    • Secure communication between processes in cloud platform may be performed by receiving a request from a client application process hosted in an application virtual machine at a load balancer. A first secure communication channel is established between the client application process and the load balancer. The first secure communication channel is encrypted with the client certificate. The first secure communication channel is terminated at the load balancer. A service process in a service virtual machine is identified based on the request received from the client application process. A new request is sent to the service virtual machine to establish a second secure communication channel between the load balancer and the service virtual machine. The load balancer certificate signed by the internal certificate authority is validated at the service virtual machine. Upon successful validation of the load balancer certificate, the second secure communication channel is accepted at the service virtual machine.
    • 可以通过在负载平衡器处接收来自托管在应用虚拟机中的客户端应用进程的请求来执行云平台中的进程之间的安全通信。 在客户端应用进程和负载平衡器之间建立第一个安全通信通道。 第一个安全通信通道用客户端证书加密。 第一个安全通信通道在负载平衡器处终止。 基于从客户端应用进程接收到的请求,识别服务虚拟机中的服务进程。 向服务虚拟机发送新请求,以在负载均衡器和服务虚拟机之间建立第二安全通信信道。 由内部认证机构签名的负载平衡器证书在服务虚拟机上进行验证。 在成功验证负载平衡器证书后,服务虚拟机接受第二安全通信通道。
    • 8. 发明授权
    • Persistent data management with different isolation levels
    • 持续的数据管理具有不同的隔离级别
    • US07653628B2
    • 2010-01-26
    • US10836693
    • 2004-04-30
    • Svetoslav ManolovIvo Simeonov
    • Svetoslav ManolovIvo Simeonov
    • G06F17/30
    • G06F17/3048G06F17/30359Y10S707/99937
    • A method is described for managing an application's cached persistent data with different isolation levels. The different isolation levels include: 1) requesting a lock for a first item of database data in response to the first item of database data not being cached and not yet having been used by the application; 2) requesting a lock for a second item of cached database data in response to the second item of database data being updated for a first time by the application; and, 3) requesting a lock for a third item of cached database data in response to it being confirmed that the third item of database data will need to be updated in its database.
    • 描述了一种用于管理具有不同隔离级别的应用程序缓存的持久性数据的方法。 不同的隔离级别包括:1)响应于数据库数据的第一项未被缓存并且尚未被应用使用,请求对数据库数据的第一项的锁定; 2)响应于由应用程序第一次更新的数据库数据的第二项请求针对第二缓存数据库数据项的锁定; 以及3)响应于确认数据库数据的第三项需要在其数据库中更新,请求对第三项缓存的数据库数据进行锁定。
    • 9. 发明授权
    • Cascade delete using a backward reference persistent data target object within a unidirectional relational database relationship
    • 在单向关系数据库关系中使用向后引用持久性数据目标对象进行级联删除
    • US07634483B2
    • 2009-12-15
    • US11270961
    • 2005-11-09
    • Svetoslav Manolov
    • Svetoslav Manolov
    • G06F17/30
    • G06F17/30595G06F17/30607Y10S707/99942
    • A method is described for making a change in an object oriented relational database in which objects that represent items of persistent data are related to other objects that represent items of persistent data. The method comprises referring to a backward reference contained in a first object that does not have visibility to a second object that the first object is in a unidirectional relationship with. The first object represents a first item of persistent data. The second object represents another item of persistent data. The backward reference identifies the second object. The method also comprises removing the unidirectional relationship, adding a new unidirectional relationship from a third object to the first object, and modifying the backward reference to identify the third object rather than the second object. A cascade delete method that uses a backward reference is also described.
    • 描述了一种用于在面向对象的关系数据库中进行改变的方法,其中表示持久数据项的对象与表示持久数据项的其他对象相关。 该方法包括引用包含在第一对象中的对第二对象不具有第一对象与第一对象处于单向关系的可见性的后向引用。 第一个对象表示第一个持久数据项。 第二个对象表示另一个持久数据项。 反向引用标识第二个对象。 该方法还包括去除单向关系,从第三对象向第一对象添加新的单向关系,以及修改反向引用以识别第三对象而不是第二对象。 还描述了使用反向引用的级联删除方法。