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    • 15. 发明授权
    • Universal addressing system for a digital data processing system
    • 数字数据处理系统的通用寻址系统
    • US4821184A
    • 1989-04-11
    • US647272
    • 1984-09-04
    • Gerald F. ClancyCraig J. MundieStephen I. SchleimerSteven J. WallachRichard G. Bratt
    • Gerald F. ClancyCraig J. MundieStephen I. SchleimerSteven J. WallachRichard G. Bratt
    • G06F9/44G06F12/00
    • G06F9/4428
    • A universal addressing system for use in a digital data processing system including a universal memory for storing data including instructions and at least one local system having access to the universal memory. The universal memory is organized into objects, and each item of data is associated with an object. Each object is specified by a unique identifier, and data is addressed by means of a logical address which specifies the UID of the object containing the data and the offset of the data in the object. A processor in the local system responds to instructions by providing memory operation specifiers to the universal memory. Each memory operation specifier specifies a memory operation and a logical address. The offset in the logical address may specify any bit in the object. The memory operation specifier also specifies a length in bits. The universal memory responds to the memory operation specifier by performing the operation specified by the memory operation specifier on the data item beginning at the location specified by the logical address and containing the specified number of bits.
    • 一种用于数字数据处理系统的通用寻址系统,包括用于存储包括指令的数据的通用存储器和至少一个具有访问通用存储器的本地系统。 通用存储器被组织成对象,并且每个数据项与对象相关联。 每个对象由唯一的标识符指定,并且数据通过逻辑地址来寻址,该逻辑地址指定包含数据的对象的UID和对象中数据的偏移量。 本地系统中的处理器通过向通用存储器提供存储器操作说明符来响应指令。 每个存储器操作说明符指定存储器操作和逻辑地址。 逻辑地址中的偏移可以指定对象中的任何位。 存储器操作说明符还指定长度(以位为单位)。 通用存储器通过执行由存储器操作说明符对由逻辑地址指定的位置开始并包含指定位数的数据项指定的操作来响应存储器操作说明符。
    • 20. 发明授权
    • Digital data processing system
    • 数字数据处理系统
    • US4493024A
    • 1985-01-08
    • US266406
    • 1981-05-22
    • Ward Baxter, IIGerald F. ClancyRonald H. GrunerCraig J. MundieBrett L. BachmanStephen R. RedfieldWilliam N. CoderThomas M. JonesDavid L. HousemanCharles J. YoungSteven M. Haeffele
    • Ward Baxter, IIGerald F. ClancyRonald H. GrunerCraig J. MundieBrett L. BachmanStephen R. RedfieldWilliam N. CoderThomas M. JonesDavid L. HousemanCharles J. YoungSteven M. Haeffele
    • G06F9/318G06F9/35G06F13/00
    • G06F9/30192G06F9/35
    • A data processing system having a flexible internal structure, protected from and effecitvely invisible to users, with multilevel control and stack mechanisms and capability of performing multiple, concurrent operations, and providing a flexible, simplified interface to users. The system is internally comprised of a plurality of separate, independent processors, each having a separate microinstruction control and at least one separate, independent port to a central communications and memory node. The communications and memory node is an independent processor having separate, independent microinstruction control and comprised of a plurality of independently operating, microinstruction controlled processors capable of performing multiple, concurrent memory and communications operations. Addressing mechanisms allow permanent, unique identification of information and an extremely large address space accessible and common to all such systems. Addresses are independent of system physical configuration. Information is identified to bit granular level and to information type and format. Protection mechanisms provide variable access rights associated with individual bodies of information. User language instructions are transformed into dialect coded, uniform, intermediate level instructions to provide equal facility of execution for all user languages. Operands are referred to by uniform format names which are transformed, by internal mechanisms transparent to users, into addresses.
    • 具有灵活的内部结构的数据处理系统,具有多层次的控制和堆栈机制以及执行多个并发操作的能力,并为用户提供灵活,简化的界面,保护用户不受任何用户无害的影响。 该系统内部由多个独立的独立处理器组成,每个独立的处理器具有单独的微指令控制和至少一个独立于中央通信和存储器节点的独立端口。 通信和存储器节点是具有独立且独立的微指令控制的独立处理器,并且包括能够执行多个并发存储器和通信操作的多个独立操作的微指令控制的处理器。 寻址机制允许永久,唯一的信息识别和所有这些系统可访问和共同的极大的地址空间。 地址与系统物理配置无关。 信息被识别为细粒度级别和信息类型和格式。 保护机制提供与个体信息相关联的可变访问权限。 用户语言指令被转换为方言编码的,统一的中间级指令,以便为所有用户语言提供相同的执行功能。 操作数由统一格式名称引用,通过对用户透明的内部机制转换为地址。