| S. N. Adya, M. Yildiz, I. L. Markov, P. G. Villarrubia, P. N. Parakh, and P. H. Madden, "Benchmarking for large-scale placement and beyond," in Proc. Int. Symp. Physical Design, 2003, pp. 95--103. |
....4 on average. Compared to the mini interconnect approach, the mixed approach reduces half perimeter wirelength by 3 with almost the same runtime on average. 4. Experimental results Our placement tool is implemented in C. We compared our placement tool based on different algorithms with Dragon [5, 18]. Each placement is run only once. Only the results of IBM01, IBM07, IBM09 and IBMll benchmarks are depicted in Figure 6. The last point of every curve is the result of Dragon. Compared to Dragon, Figure 5 illustrates a point where the placement quality is slightly worse when the runtime decreases ....
....our fast placer s result and slow placer s result are compared in Table 1. 50 200 250 I BM07 BM09 X BMII I The lastpoint of every curve is the result of Dragon Figure 6. Placement wirelength vs. placement runtimes for different benchmarks. The results in Table 1 are also compared to Cape [18] in Figure 7. Dragon and our placer show significantly better ability to produce routable placement. For ibm01, ibm07 and ibm08, Cape fails to produce routable placement (without routing violation) For the rest of the circuits, compared to Cape, even our fast algorithm can reduce the routed ....
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Saurabh Adya, M. Yildiz, I. L. Markov, P. G. Villarrubia, P. N. Parakh and P. H. Madden, "Benchmarking for Large-scale Placement and Beyond",International Symposium on Physical Design, pages 95-104, 2003.
....Introduction The standard cell placement problem has drawn extensive research attention in the VLSI CAD field. Many algorithms have been proposed for placement problem [ 17 ] for example, min cut placement [8, 9] simulated annealing [10] analytical method [11, 12] and forcedirected approach [ 1 ]. Though the placement problem has been studied for more than thirty years, major advances have been made on this topic in recent years. Yet there are some fundamental questions unanswered. The placement cube can provide a framework for understanding the placement problem. The placement cube ....
S. N. Adya, I. L. Markov, P. G. Villarrubia, P. Parakh, M. C. Yildiz, and P. H. Madden, "Benchmarking for Large-Scale Placement and Beyond," International Symposium on Physical Design, April 2003.
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S. Adya, M. C. YILDIZ, I. L. Markov, P. G. Villarubia, P. Parakh, and P. H. Madden. Benchmarking for large-scale placement and beyond. In Proc. Int. Symp. on Physical Design, 2003.
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S. N. Adya et al., "Benchmarking for Large-Scale Placement and Beyond," ISPD 2003, pp. 95-103.
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S. N. Adya et al., "Benchmarking for Large-Scale Placement and Beyond," ISPD 2003, pp. 95-103.
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S. N. Adya, M. Yildiz, I. L. Markov, P. G. Villarrubia, P. N. Parakh, and P. H. Madden, "Benchmarking for large-scale placement and beyond," in Proc. Int. Symp. Physical Design, 2003, pp. 95--103.
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S. N. Adya, M. Yildiz, I. L. Markov, P. G. Villarrubia, P. N. Parakh, and P. H. Madden. Benchmarking for large-scale placement and beyond. In Proc. Intl. Symp. on Physical Design (ISPD), pages 95--103, 2003.
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ADYA,S.,YILDIZ, M., MARKOV, I., VILLARRUBIA,P.,PARAKH,P.,AND MADDEN,P. 2003. Benchmarking for large-scale placement and beyond. In Proceedings of the International Symposium on Physical Design. 95--103.
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S. N. Adya et al., "Benchmarking for Large-Scale Placement and Beyond", Proc. ACM/IEEE Intl. Symp. Physical Design, 2003, pp. 95-103.
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S. N. Adya, M. Yildiz, I. L. Markov, P. G. Villarrubia, P. N. Parakh, and P. H. Madden. Benchmarking for large-scale placement and beyond. In Proc. Intl. Symp. on Physical Design (ISPD), pages 95--103, 2003.
No context found.
S. N. Adya, M. Yildiz, I. L. Markov, P. G. Villarrubia, P. N. Parakh, and P. H. Madden, "Benchmarking for large-scale placement and beyond," in Proc. Int. Symp. Physical Design, 2003, pp. 95--103.
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