| Z. Fang, L. Zhang, J. Carter, S. McKee, and W. Hsieh. Reevaluating online superpage promotion with hardware support. In Proceedings of the 7th International 94 IEEE Symposium on High Performance Computer Architecture, Monterrey, Mexico, Jan. 2001. |
....of misses. Bala et al. 3] focus in specifically on interprocess communication activities, and illustrate software techniques for lowering miss penalties on software managed TLBs. Superpaging is another well investigated technique to boost the coverage of the TLB and better utilize its capacity [31, 32, 30, 12]. Studies have looked at hardware and operating system support for providing superpage translations in the TLB. Recent work in this area [12] is investigating memory controller support for remapping pages so that there is more scope for creating superpage entries (without incurring the overheads ....
....on software managed TLBs. Superpaging is another well investigated technique to boost the coverage of the TLB and better utilize its capacity [31, 32, 30, 12] Studies have looked at hardware and operating system support for providing superpage translations in the TLB. Recent work in this area [12] is investigating memory controller support for remapping pages so that there is more scope for creating superpage entries (without incurring the overheads of copying) While most of the prior work has looked at lowering TLB misses or miss handling costs, the issue of hiding tolerating TLB fills ....
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Z. Fang, L. Zhang, J. Carter, S. McKee, and W. Hsieh. Re-evaluating Online Superpage Promotion with Hardware Support. In Proceedings of the Seventh International Symposium on High Performance Computer Architecture, pages 63--72, January 2001.
....should be necessary and the system should run in commodity machines. Furthermore, in the absence of memory contention, the system should be able with essentially zero overhead to minimize the e ect of capacity TLB misses. Finally, the cost of each TLB should not increased. 1 Many researchers [3, 8, 4, 2] suggest that the miss penalty will be larger when supporting superpages, but there is no reason for that: HP UX is a counterexample. Although it provides non adaptive support, adaptability can be obtained without modifying the TLB miss path if promotion decisions are made elsewhere. 2.1 Promotion ....
Z. Fang, L. Zhang, J. Carter, S. McKee, and W. Hsieh. Reevaluating online superpage promotion with hardware support. In Proc. 7th International IEEE Symposium on High Performance Computer Architecture, Jan. 2001.
No context found.
Z. Fang, L. Zhang, J. Carter, W. Hsieh, and S. McKee. Reevaluating online superpage promotion with hardware support. In Proceedings of the Seventh IEEE Symposium on High Performance Computer Architecture, pages 63-72, Nuevo Leon, Mexico, Jan. 2001.
.... vector elements in parallel [HPCA 00, SPAA 00] guiding the development of analytic models to perform cost benefit analyses of applying each optimization; working closely with six graduate students to design and evaluate Impulse enabled memory optimizations [PACT 99, ISCA Memory Wall Workshop 00, HPCA 01] and to study the applicability of integrated program and data transformations (when restructuring arrays via data copying or remapping) and assisting with project management and support [Intel 01] Overcoming the Memory Wall for SMP Systems Most current research on bridging the ....
Z. Fang, L. Zhang, J.B. Carter, S.A. McKee, W.C. Hsieh, "Reevaluating Online Superpage Promotion with Hardware Support", Proc. 7th International IEEE Symposium on High Performance Computer Architecture, January 2001.
No context found.
Z. Fang, L. Zhang, J. Carter, S. McKee, and W. Hsieh. Reevaluating online superpage promotion with hardware support. In Proceedings of the 7th International 94 IEEE Symposium on High Performance Computer Architecture, Monterrey, Mexico, Jan. 2001.
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