System and method for retiring approximately simultaneously a gr

Electrical computers and digital processing systems: processing – Dynamic instruction dependency checking – monitoring or... – Commitment control or register bypass

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712217, G06F 938

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06131157&

ABSTRACT:
An system and method for retiring instructions in a superscalar microprocessor which executes a program comprising a set of instructions having a predetermined program order, the retirement system for simultaneously retiring groups of instructions executed in or out of order by the microprocessor. The retirement system comprises a done block for monitoring the status of the instructions to determine which instruction or group of instructions have been executed, a retirement control block for determining whether each executed instruction is retirable, a temporary buffer for storing results of instructions executed out of program order, and a register array for storing retirable-instruction results. In addition, the retirement control block further controls the retiring of a group of instructions determined to be retirable, by simultaneously transferring their results from the temporary buffer to the register array, and retires instructions executed in order by storing their results directly in the register array. The method comprises the steps of monitoring the status of the instructions to determine which group of instructions have been executed, determining whether each executed instruction is retirable, storing results of instructions executed out of program order in a temporary buffer, storing retirable-instruction results in a register array and retiring a group of retirable instructions by simultaneously transferring their results from the temporary buffer to the register array, and retiring instructions executed in order by storing their results directly in the register array.

REFERENCES:
patent: 4626989 (1986-12-01), Torii
patent: 4675806 (1987-06-01), Uchida
patent: 4722049 (1988-01-01), Lahti
patent: 4807115 (1989-02-01), Torng
patent: 4823201 (1989-04-01), Simon et al.
patent: 4903196 (1990-02-01), Pomerene et al.
patent: 4942525 (1990-07-01), Shintani et al.
patent: 5067069 (1991-11-01), Fite et al.
patent: 5072364 (1991-12-01), Jardine et al.
patent: 5109495 (1992-04-01), Fite et al.
patent: 5125083 (1992-06-01), Fite et al.
patent: 5148536 (1992-09-01), Witek et al.
patent: 5167026 (1992-11-01), Murray et al.
patent: 5179673 (1993-01-01), Stelly, Jr. et al.
patent: 5197132 (1993-03-01), Steely, Jr. et al.
patent: 5214763 (1993-05-01), Blaner et al.
patent: 5222240 (1993-06-01), Patel
patent: 5226126 (1993-07-01), McFarland et al.
patent: 5230068 (1993-07-01), Van Dyke et al.
patent: 5251306 (1993-10-01), Tran
patent: 5317720 (1994-05-01), Stamm et al.
patent: 5345569 (1994-09-01), Tran
patent: 5355457 (1994-10-01), Shebanow et al.
patent: 5367660 (1994-11-01), Gat et al.
patent: 5390355 (1995-02-01), Horst
patent: 5398330 (1995-03-01), Johnson
patent: 5430888 (1995-07-01), Witek et al.
patent: 5442757 (1995-08-01), McFarland et al.
patent: 5487156 (1996-01-01), Popescu et al.
patent: 5560032 (1996-09-01), Nguyen et al.
patent: 5561776 (1996-10-01), Popescu et al.
patent: 5568624 (1996-10-01), Sites et al.
patent: 5574927 (1996-11-01), Scantlin
patent: 5592636 (1997-01-01), Popescu et al.
patent: 5625837 (1997-04-01), Popescu et al.
patent: 5627983 (1997-05-01), Popescu et al.
patent: 5630149 (1997-05-01), Bluhm
patent: 5651125 (1997-07-01), Witt et al.
patent: 5708841 (1998-01-01), Popescu et al.
patent: 5768575 (1998-06-01), McFarland et al.
patent: 5778210 (1998-07-01), Henstrom et al.
patent: 5797025 (1998-08-01), Popescu et al.
patent: 5826055 (1998-10-01), Wang et al.
patent: 5832205 (1998-11-01), Kelly et al.
patent: 5832293 (1998-11-01), Popescu et al.
patent: 5961629 (1999-10-01), Nguyen et al.
IBM Journal of Research and Development, vol. 34, No. 1, Jan. 1990, pp. 1-70.
Smith et al., "Implementation of Precise Interrupts in Pipelined Processors," Proceedings of the 12th Annual International Sympsium on Computer Architecture, Jun. 1985, pp. 36-44.
Wedig, R.G., Detection of Concurrency In Directly Executed Language Instruction Streams, (Dissertation), Jun. 1982, pp. 1-179.
Agerwala et al., "High Performance Reduced Instruction Set Processors," IBM Research Division, Mar. 31, 1987, pp. 1-61.
Gross et al., "Optimizing Delayed Branches," Proceedings of the 5th Annual Workshop on Microprogramming, Oct. 5-7, 1982, pp. 114-120.
Tjaden et al., "Representation of Concurrency with Ordering Matrices," IEEE Trans. On Computers, vol. C-22, No. 8, August 1973, pp. 752-761.
Tjaden, Representation and Detection of Concurrency Using Ordering Matrices, (Dissertation), 1972, pp. 1-199.
Foster et al., "Percolation of Code to Enhance Parallel Dispatching and Execution," IEEE Trans. On Computers, Dec. 1971, pp. 1411-1415.
Thornton, J.E., Design of a Computer: The Control Data 6600, Control Data Corporation, 1970, pp. 58-140.
Weiss et al., "Instruction Issue Logic in Pipelined Supercomputers," Reprinted from IEEE Trans. on Computers, vol. C-33, No. 11, Nov. 1984, pp. 1013-1022.
Tomasulo, R.M., "An Efficient Algorithm for Exploiting Multiple Arithmetic Units," IBM Journal, vol. 11, Jan. 1967, pp. 25-33.
Tjaden et al., "Detection and Parallel Execution of Independent Instructions," IEEE Trans. On Computers, vol. C-19, No. 10, Oct. 1970, pp. 889-895.
Smith et al., "Limits on Multiple Instruction Issue," Proceedings of the 3rd International Conference on Architectural Support for Programming Languages and Operating Systems, Apr. 1989, pp. 290-302.
Pleszkun et al., "The Performance Potential of Multiple Functional Unit Processors," Proceedings of the 15th Annual Symposium on Computer Architecture, Jun. 1988, pp. 37-44.
Pleszkun et al., "WISQ: A Restartable Architecture Using Queues," Proceedings of the 14th International Symposium on Computer Architecture, Jun. 1987, pp. 290-299.
Patt et al., "Critical Issues Regarding HPS, A High Performance Microarchitecture," Proceedings of the 18th Annual Workshop on Microprogramming, Dec. 1985, pp. 109-116.
Hwu et al., "Checkpoint Repair for High-Performance Out-of-Order Execution Machines," IEEE Trans. On Computers, vol. C-36, No. 12, Dec. 1987, pp. 1496-1514.
Patt et al., "HPS, A New Microarchitecture: Rationale and Introduction," Proceedings of the 18th Annual Workshop on Microprogramming, Dec. 1985, pp. 103-108.
Keller, R.M., "Look-Ahead Processors," Computing Surveys, vol. 7, No. 4, Dec. 1975, pp. 177-195.
Jouppi et al., "Available Instruction-Level Parallelism for Superscalar and Superpipelined Machines," Proceedings of the 3rd International Conference on Architectural Support for Programming Languages and Operating Systems, Apr. 1989, pp. 272-282.
Hwu et al., "HPSm, a High Performance Restricted Data Flow Architecture Having Minimal Functionality," Proceedings from ISCA-13, Tokyo, Japan, Jun. 2-5, 1986, pp. 297-306.
Hwu et al., "Exploiting Parallel Microprocessor Microarchitectures with a Compiler Code Generator," Proceedings of the 15th Annual Symposium on Computer Architecture, Jun. 1988, pp. 45-53.
Colwell et al., "A VLIW Architecture for a Trace Scheduling Compiler," Proceedings of the 2nd International Conference on Architectural Support for Programming Languages and Operating Systems, Oct. 1987, pp. 180-192.
Uht, A.K., "An Efficient Hardware Algorithm to Extract Concurrency From General-Purpose Code," Proceedings of the 19th Annual Hawaii International Conference on System Sciences, 1986, pp. 41-50.
Charlesworth, A.E., "An Approach to Scientific Array Processing: The Architectural Design of the AP-120B/FPS-164 Family," Computer, vol. 14, Sep. 1981, pp. 18-27.
Acosta, Ramon D. et al., "An Instruction Issuing Approach to Enhancing Performance in Multiple Functional Unit Processors," IEEE Transactions On Computers, vol. C-35, No. 9, Sep. 1986, pp. 815-828.
Johnson, William M., Super-Scalar Processor Design, (Dissertation), Copyright 1989, 134 pages.
Sohi, Gurindar S. and Sriram Vajapeyam, "Instruction Issue Logic For High-Performance, Interruptable Pipelined Processors," Conference Proceedings of the 14th Annual International Symposium on Computer Architecture, Jun. 2-5, 1987, pp. 27-34.
HPS, A New Microarchitecture: Rationale and Introduction, Yale N. Patt, Wen-Mei Hwu and MIchael C. Shebanow, The 18.sup.th Annual Workshop on Micropr

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