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Title: |
US7509457:
Non-homogeneous multi-processor system with shared memory
[ Derwent Title ]

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Country: |
US United States of America

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Inventor: |
Altman, Erik Richter; Danbury, CT, United States of America
Capek, Peter George; Ossining, NY, United States of America
Gschwind, Michael Karl; Chappaqua, NY, United States of America
Johns, Charles Ray; Austin, TX, United States of America
Hofstee, Harm Peter; Austin, TX, United States of America
Hopkins, Martin E.; Bronxville, NY, United States of America
Kahle, James Allan; Austin, TX, United States of America
Sathaye, Sumedh W.; Cary, NC, United States of America
Wellman, John-David; Hopewell Junction, NY, United States of America
Nair, Ravi; Briarcliff Manor, NY, United States of America

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Assignee: |
International Business Machines Corporation, Armonk, NY, United States of America
other patents from INTERNATIONAL BUSINESS MACHINES CORPORATION (280070) (approx. 44,393)
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Published / Filed: |
2009-03-24
/ 2005-02-24

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Application Number: |
US2005000065537

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IPC Code: |
Advanced:
G06F 12/00;
Core:
more...

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ECLA Code: |
H04L29/06S16G; H04L29/08N9;

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U.S. Class: |
711/119;
711/147;
711/150;

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Field of Search: |
711/119,147,150

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Priority Number: |

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Abstract: |
A computer architecture and programming model for high speed processing over broadband networks are provided. The architecture employs a consistent modular structure, a common computing module and uniform software cells. The common computing module includes a control processor, a plurality of processing units, a plurality of local memories from which the processing units process programs, a direct memory access controller and a shared main memory. A synchronized system and method for the coordinated reading and writing of data to and from the shared main memory by the processing units also are provided. A hardware sandbox structure is provided for security against the corruption of data among the programs being processed by the processing units. The uniform software cells contain both data and applications and are structured for processing by any of the processors of the network. Each software cell is uniquely identified on the network.

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Attorney, Agent or Firm: |
Van Leeuwen & Van Leeuwen ;
Talpis, Matthew B. ;

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Primary / Asst. Examiners: |
Shah, Sanjiv; Yu, Jae U

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INPADOC Legal Status: |
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Parent Case: |
RELATED APPLICATIONS
This application is a Continuation of U.S. patent application Ser. No. 09/816,004, filed on Mar. 22, 2001 (U.S. Pat. No. 7,233,998, issued Jun. 19, 2007) titled “Computer Architecture and Software Cells for Broadband Networks,” and has at least one of the same inventors as the above referenced U.S. Patent Application.

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Family: |
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Claim |
1. A system comprising: one or more first processors with a first cache memory and a first address translation mechanism that translates addresses consistent with a set of page table entries, wherein each of the first processors include a reduced instruction set computer architecture with memory access governed by page and segment tables, and the set of page table entries is consistent with the reduced instruction set computer architecture; a system memory that is directly accessible by the one or more first processors; one or more second processors with an attached direct memory access controller with a second address translation mechanism that translates addresses consistent with the set of page table entries, wherein the second processors are single instruction multiple data processors with a unified register file and sequential instruction set semantics, and wherein each of the second processors include a local memory that is a non-cache type of memory; wherein the direct memory access controller transmits commands between the first processors and the second processors with the second processors accessing the system memory by issuing direct memory access commands that specify virtual memory addresses with the direct memory access controller translating between the virtual memory addresses and real memory addresses; wherein the direct memory access controller provides synchronization between the one or more first processors and the one or more second processors; wherein at least one of the commands is selected from the group consisting of copying data to a local storage area included in the second processors, initiating execution on the second processors at a specific address location, copying data from the local storage are included in the second processor to a main memory location, transmitting a notification event from the second processor to the first processor, and suspending execution of one of the second processors; and a bus interconnecting the first processors and the second processors, the bus supporting coherent direct memory access, wherein the first processors, the second processors, and the bus are implemented on a single silicon die substrate.

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