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    • 3. 发明授权
    • Methods and structure for implementing security in systems that utilize small computer system interface enclosure services
    • 在使用小型计算机系统接口机箱服务的系统中实现安全性的方法和结构
    • US08898772B2
    • 2014-11-25
    • US13487516
    • 2012-06-04
    • Saurabh B. KhanvilkarMandar JoshiKaushalender Aggarwal
    • Saurabh B. KhanvilkarMandar JoshiKaushalender Aggarwal
    • H04L29/06G06F7/04G06F15/16G06F17/30
    • G06F21/85G06F21/6218G06F2221/2141
    • Methods and structure are provided for implementing security features in SCSI Enclosure Services (SES) systems. The system comprises an SES device server, which includes a frontend interface, control unit, and backend interface. The frontend interface is operable to receive SES commands generated by Small Computer System Interface (SCSI) devices, and the backend interface is operable to manage operations of at least one peripheral device communicatively coupled with the SES device server based on received SES commands. The control unit is operable to determine whether a SCSI initiator that generated an SES command is an authorized device. The control unit is further operable to perform the SES command in response to determining that the SCSI initiator is an authorized device, and is further operable to reject the SES command in response to determining that the SCSI initiator is not an authorized device.
    • 提供了方法和结构,用于实现SCSI机箱服务(SES)系统中的安全功能。 该系统包括SES设备服务器,其包括前端接口,控制单元和后端接口。 所述前端接口可操作以接收由小型计算机系统接口(SCSI)设备生成的SES命令,并且所述后端接口可操作以基于所接收的SES命令来管理与所述SES设备服务器通信耦合的至少一个外围设备的操作。 控制单元可操作以确定产生SES命令的SCSI启动器是否是授权设备。 控制单元还可操作以响应于确定SCSI启动器是授权设备来执行SES命令,并且还可操作以响应于确定SCSI启动器不是授权设备来拒绝SES命令。
    • 4. 发明授权
    • Methods and structure enhancing zone configuration in a serial attached SCSI environment
    • 串行连接SCSI环境中的方法和结构增强区配置
    • US08898342B2
    • 2014-11-25
    • US13546715
    • 2012-07-11
    • Mandar JoshiSaurabh B. KhanvilkarKaushalender Aggarwal
    • Mandar JoshiSaurabh B. KhanvilkarKaushalender Aggarwal
    • G06F3/00
    • H04L49/00G06F13/4022G06F2213/0028
    • Methods and structure are provided for enhancing zone configuration processes in a Serial Attached SCSI (SAS) architecture. The method includes embedding, at a SAS initiator, a ZONE UNLOCK request within a Serial Management Protocol (SMP) ZONE ACTIVATE command. The method also comprises transmitting the SMP ZONE ACTIVATE command to a SAS expander, and receiving, at the SAS expander, the SMP ZONE ACTIVATE command. Further, the method includes detecting, at the SAS expander, the ZONE UNLOCK request within the SMP ZONE ACTIVATE COMMAND. Additionally, the method includes copying, at the SAS expander, shadow SAS zoning data from a memory of the expander to current SAS zoning data at the memory of the expander responsive to acquiring the SMP ZONE ACTIVATE command. The method also comprises unlocking the SAS expander responsive to extracting the ZONE UNLOCK request from the SMP ZONE ACTIVATE command.
    • 提供了方法和结构,用于增强串行连接SCSI(SAS)架构中的区域配置过程。 该方法包括在SAS启动器下嵌入串行管理协议(SMP)ZONE ACTIVATE命令中的ZONE UNLOCK请求。 该方法还包括将SMP ZONE ACTIVATE命令发送到SAS扩展器,并在SAS扩展器处接收SMP ZONE ACTIVATE命令。 此外,该方法包括在SAS扩展器处检测SMP区激活命令中的ZONE UNLOCK请求。 此外,该方法包括:响应于获取SMP ZONE ACTIVATE命令,在SAS扩展器处将影子SAS分区数据从扩展器的存储器复制到扩展器的存储器处的当前SAS分区数据。 该方法还包括响应于从SMP ZONE ACTIVATE命令提取ZONE UNLOCK请求来解锁SAS扩展器。
    • 6. 发明授权
    • Method and apparatus for combining uncacheable write data into
cache-line-sized write buffers
    • 将不可写入写入数据组合成高速缓存行大小的写入缓冲器的方法和装置
    • US5561780A
    • 1996-10-01
    • US176395
    • 1993-12-30
    • Andy GlewNitin SarangdharMandar Joshi
    • Andy GlewNitin SarangdharMandar Joshi
    • G06F12/08
    • G06F12/0895G06F12/0888G06F12/0804
    • The write-combining buffer combines data from separate data write operations into cache-line-sized buffer units for uncacheable types of data, such as frame buffer data. The write-combining buffer is implemented within a microprocessor having a data cache unit storing cacheable data within cache-lines. The data cache unit includes components and circuitry provided for efficiently inputting and outputting cache-line-sized units of data. By combining many uncacheable data write operations within a single cache-line-sized buffer, the circuitry and techniques employed for processing cache-lines are exploited in the processing of uncacheable data as well. A particular implementation is described wherein uncacheable data units corresponding to graphics write operations within an out-of-order microprocessor are combined into cache-line-sized buffers, then transmitted to a frame buffer using a burst mode eviction. Processor ordering requirements are ignored and global observability is relaxed for the graphics write operations. If the cache line sized buffer is not full when evicted, then a sequence of one or more burst-mode partial writes are employed to evict all data within the cache line sized buffer. If partial writes are employed, no delay between the partial writes is required.
    • 写组合缓冲器将来自单独数据写入操作的数据组合成用于不可缓存类型的数据(例如帧缓冲器数据)的高速缓存行大小的缓冲器单元。 写组合缓冲器在具有数据高速缓存单元的微处理器内实现,该缓存单元在高速缓存行中存储可缓存数据。 数据高速缓存单元包括用于有效地输入和输出高速缓存行大小的数据单元的组件和电路。 通过在单个高速缓存行大小的缓冲器中组合许多不可缓存的数据写操作,用于处理高速缓存行的电路和技术也用于处理不可缓存的数据。 描述了特定实现,其中对应于无序微处理器内的图形写入操作的不可缓存的数据单元组合成高速缓存行大小的缓冲器,然后使用突发模式驱逐发送到帧缓冲器。 处理器排序要求被忽略,并且图形写入操作放宽了全局可观察性。 如果缓存行大小的缓冲区在被驱逐时不满,则采用一个或多个突发模式部分写入的序列来驱逐高速缓存行大小的缓冲区内的所有数据。 如果采用部分写入,则不需要部分写入之间的延迟。
    • 7. 发明申请
    • METHODS AND STRUCTURE ENHANCING ZONE CONFIGURATION IN A SERIAL ATTACHED SCSI ENVIRONMENT
    • 串行连接SCSI环境中的方法和结构增强区域配置
    • US20140019645A1
    • 2014-01-16
    • US13546715
    • 2012-07-11
    • Mandar JoshiSaurabh B. KhanvilkarKaushalender Aggarwal
    • Mandar JoshiSaurabh B. KhanvilkarKaushalender Aggarwal
    • G06F3/00
    • H04L49/00G06F13/4022G06F2213/0028
    • Methods and structure are provided for enhancing zone configuration processes in a Serial Attached SCSI (SAS) architecture. The method includes embedding, at a SAS initiator, a ZONE UNLOCK request within a Serial Management Protocol (SMP) ZONE ACTIVATE command. The method also comprises transmitting the SMP ZONE ACTIVATE command to a SAS expander, and receiving, at the SAS expander, the SMP ZONE ACTIVATE command. Further, the method includes detecting, at the SAS expander, the ZONE UNLOCK request within the SMP ZONE ACTIVATE COMMAND. Additionally, the method includes copying, at the SAS expander, shadow SAS zoning data from a memory of the expander to current SAS zoning data at the memory of the expander responsive to acquiring the SMP ZONE ACTIVATE command. The method also comprises unlocking the SAS expander responsive to extracting the ZONE UNLOCK request from the SMP ZONE ACTIVATE command.
    • 提供了方法和结构,用于增强串行连接SCSI(SAS)架构中的区域配置过程。 该方法包括在SAS启动器下嵌入串行管理协议(SMP)ZONE ACTIVATE命令中的ZONE UNLOCK请求。 该方法还包括将SMP ZONE ACTIVATE命令发送到SAS扩展器,并在SAS扩展器处接收SMP ZONE ACTIVATE命令。 此外,该方法包括在SAS扩展器处检测SMP区激活命令中的ZONE UNLOCK请求。 此外,该方法包括:响应于获取SMP ZONE ACTIVATE命令,在SAS扩展器处将影子SAS分区数据从扩展器的存储器复制到扩展器的存储器处的当前SAS分区数据。 该方法还包括响应于从SMP ZONE ACTIVATE命令提取ZONE UNLOCK请求来解锁SAS扩展器。
    • 8. 发明申请
    • METHOD AND SYSTEM FOR PRIORITY BASED (1:1)n ETHERNET PROTECTION
    • 基于优先级(1:1)的以太网保护方法与系统
    • US20120281525A1
    • 2012-11-08
    • US13101615
    • 2011-05-05
    • Venkata Ramana Kiran AddankiArun SahaMandar Joshi
    • Venkata Ramana Kiran AddankiArun SahaMandar Joshi
    • G06F11/00
    • H04L49/557H04L49/351
    • A method and system for priority based (1:1)n Ethernet protection. The method and system includes assigning a priority to each of the flows associated with a working path. Upon fail of one or more of the working paths checking available bandwidth and priority of the flows. Once the request is complete, switching one or more flows to the protection path based on at least the priority of the flow, the bandwidth of the working path and the available bandwidth on the protection path. If a newly failed working path has a higher priority flow then dropping a flow from the protection path to a pending state. Once a working path has recovered, reverting the flow back to the working path and possibly admitting pending data to the protection path if the bandwidth and prioritization requirements are met.
    • 一种基于优先级(1:1)n以太网保护的方法和系统。 该方法和系统包括为与工作路径相关联的每个流分配优先级。 在一个或多个工作路径失败时,检查可用带宽和流的优先级。 一旦请求完成,至少基于流的优先级,工作路径的带宽和保护路径上的可用带宽,将一个或多个流切换到保护路径。 如果新故障工作路径具有较高优先级流,则将流从保护路径丢弃到挂起状态。 一旦工作路径恢复,如果满足带宽和优先级要求,则将流程还原回工作路径,并可能将待处理数据接收到保护路径。