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readings [2019/12/12 21:44] rahberareadings [2020/02/01 23:54] (current) – external edit 127.0.0.1
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 ===== Guides on how to review papers critically ===== ===== Guides on how to review papers critically =====
-  * Lecture slides: {{onur-comparch-f19-how-to-do-the-paper-reviews.pdf |PDF}} {{onur-comparch-f19-how-to-do-the-paper-reviews.ppt |PPT}}+  * Guidelines on How to Do Paper Reviews 
 +      * {{youtube>link:tOL6FANAJ8c|Video}} 
 +      * Lecture slides: {{onur-comparch-f19-how-to-do-the-paper-reviews.pdf |PDF}} {{onur-comparch-f19-how-to-do-the-paper-reviews.ppt |PPT}}
   * Example reviews on "Main Memory Scaling: Challenges and Solution Directions" [[https://people.inf.ethz.ch/omutlu/pub/main-memory-scaling_springer15.pdf|(link to the paper)]]   * Example reviews on "Main Memory Scaling: Challenges and Solution Directions" [[https://people.inf.ethz.ch/omutlu/pub/main-memory-scaling_springer15.pdf|(link to the paper)]]
       * {{review-chapter.pdf | Review 1}}       * {{review-chapter.pdf | Review 1}}
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   * Example review on "Staged memory scheduling: Achieving high performance and scalability in heterogeneous systems" [[https://people.inf.ethz.ch/omutlu/pub/staged-memory-scheduling_isca12.pdf|(link to the paper)]]   * Example review on "Staged memory scheduling: Achieving high performance and scalability in heterogeneous systems" [[https://people.inf.ethz.ch/omutlu/pub/staged-memory-scheduling_isca12.pdf|(link to the paper)]]
       * {{review-sms.pdf | Review 1}}       * {{review-sms.pdf | Review 1}}
 +  * Guidelines on How to Deliver Paper Review Presentations
 +      * {{youtube>link:Rh5XynlJrSM|Video}}
  
 ===== Lecture 1 (19.09 Thu.) ===== ===== Lecture 1 (19.09 Thu.) =====
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   * {{https://people.inf.ethz.ch/omutlu/pub/gatekeeper_FPGA-genome-prealignment-accelerator_bionformatics17.pdf|M. Alser, H. Hassan, H. Xin, O. Ergin, O. Mutlu, C. Alkan, "GateKeeper: A New Hardware Architecture for Accelerating Pre-Alignment in DNA Short Read Mapping,” Bioinformatics, 2017}}   * {{https://people.inf.ethz.ch/omutlu/pub/gatekeeper_FPGA-genome-prealignment-accelerator_bionformatics17.pdf|M. Alser, H. Hassan, H. Xin, O. Ergin, O. Mutlu, C. Alkan, "GateKeeper: A New Hardware Architecture for Accelerating Pre-Alignment in DNA Short Read Mapping,” Bioinformatics, 2017}}
   * {{https://people.inf.ethz.ch/omutlu/pub/magnet-understanding-improving-genome-prealignment_ipsi17.pdf|M. Alser, O. Mutlu, and C. Alkan, "MAGNET: Understanding and Improving the Accuracy of Genome Pre-Alignment Filtering," IPSI Transactions on Internet Research, 2017}}   * {{https://people.inf.ethz.ch/omutlu/pub/magnet-understanding-improving-genome-prealignment_ipsi17.pdf|M. Alser, O. Mutlu, and C. Alkan, "MAGNET: Understanding and Improving the Accuracy of Genome Pre-Alignment Filtering," IPSI Transactions on Internet Research, 2017}}
-  * {{https://arxiv.org/pdf/1809.07858.pdf|M. Alser, H. Hassan, A. Kumar, O. Mutlu, and C. Alkan, "SLIDER: Fast and Efficient Computation of Banded Sequence Alignment," arXiv 2018}}+  * {{alser2018slider.pdf|M. Alser, H. Hassan, A. Kumar, O. Mutlu, and C. Alkan, "SLIDER: Fast and Efficient Computation of Banded Sequence Alignment," arXiv 2018}}
   * {{https://arxiv.org/pdf/1711.01177.pdf|J.S. Kim, D. Senol Cali, H. Xin, D. Lee, S. Ghose, M. Alser, H. Hassan, O. Ergin, C. Alkan, and O. Mutlu, "GRIM-Filter: Fast Seed Location Filtering in DNA Read Mapping Using Processing-in-Memory Technologies," to appear in BMC Genomics, 2018}}   * {{https://arxiv.org/pdf/1711.01177.pdf|J.S. Kim, D. Senol Cali, H. Xin, D. Lee, S. Ghose, M. Alser, H. Hassan, O. Ergin, C. Alkan, and O. Mutlu, "GRIM-Filter: Fast Seed Location Filtering in DNA Read Mapping Using Processing-in-Memory Technologies," to appear in BMC Genomics, 2018}}
   * {{https://arxiv.org/pdf/1711.08774.pdf|D. Senol Cali, J.S. Kim, S. Ghose, C. Alkan, and O. Mutlu, “Nanopore Sequencing Technology and Tools for Genome Assembly: Computational Analysis of the Current State, Bottlenecks and Future Directions,”  to appear in Briefings in Bioinformatics, 2018}}   * {{https://arxiv.org/pdf/1711.08774.pdf|D. Senol Cali, J.S. Kim, S. Ghose, C. Alkan, and O. Mutlu, “Nanopore Sequencing Technology and Tools for Genome Assembly: Computational Analysis of the Current State, Bottlenecks and Future Directions,”  to appear in Briefings in Bioinformatics, 2018}}
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 === Described in detail during lecture 5: === === Described in detail during lecture 5: ===
  
-  * {{https://academic.oup.com/bioinformatics/article/32/11/1632/1742696|X. Hongyi, S. Nahar, R. Zhu, J. Emmons, G. Pekhimenko, C. Kingsford, C. Alkan, and O. Mutlu, “Optimal Seed Solver: optimizing seed selection in read mapping”, Bioinformatics, 2016}} 
   * {{https://bmcgenomics.biomedcentral.com/track/pdf/10.1186/1471-2164-14-S1-S13|H. Xin, D. Lee, F. Hormozdiari, S. Yedkar, O. Mutlu, and C, Alkan, "Accelerating read mapping with FastHASH," BMC Genomics, 2013}}   * {{https://bmcgenomics.biomedcentral.com/track/pdf/10.1186/1471-2164-14-S1-S13|H. Xin, D. Lee, F. Hormozdiari, S. Yedkar, O. Mutlu, and C, Alkan, "Accelerating read mapping with FastHASH," BMC Genomics, 2013}}
   * {{https://people.inf.ethz.ch/omutlu/pub/shifted-hamming-distance_bioinformatics15.pdf|H. Xin, J. Greth, J. Emmons, G. Pekhimenko, C. Kingsford, C. Alkan, and O. Mutlu, "Shifted Hamming Distance: A Fast and Accurate SIMD-friendly Filter to Accelerate Alignment Verification in Read Mapping,” Bioinformatics, 2015}}   * {{https://people.inf.ethz.ch/omutlu/pub/shifted-hamming-distance_bioinformatics15.pdf|H. Xin, J. Greth, J. Emmons, G. Pekhimenko, C. Kingsford, C. Alkan, and O. Mutlu, "Shifted Hamming Distance: A Fast and Accurate SIMD-friendly Filter to Accelerate Alignment Verification in Read Mapping,” Bioinformatics, 2015}}
   * {{https://people.inf.ethz.ch/omutlu/pub/gatekeeper_FPGA-genome-prealignment-accelerator_bionformatics17.pdf|M. Alser, H. Hassan, H. Xin, O. Ergin, O. Mutlu, C. Alkan, "GateKeeper: A New Hardware Architecture for Accelerating Pre-Alignment in DNA Short Read Mapping,” Bioinformatics, 2017}}   * {{https://people.inf.ethz.ch/omutlu/pub/gatekeeper_FPGA-genome-prealignment-accelerator_bionformatics17.pdf|M. Alser, H. Hassan, H. Xin, O. Ergin, O. Mutlu, C. Alkan, "GateKeeper: A New Hardware Architecture for Accelerating Pre-Alignment in DNA Short Read Mapping,” Bioinformatics, 2017}}
   * {{https://people.inf.ethz.ch/omutlu/pub/magnet-understanding-improving-genome-prealignment_ipsi17.pdf|M. Alser, O. Mutlu, and C. Alkan, "MAGNET: Understanding and Improving the Accuracy of Genome Pre-Alignment Filtering," IPSI Transactions on Internet Research, 2017}}   * {{https://people.inf.ethz.ch/omutlu/pub/magnet-understanding-improving-genome-prealignment_ipsi17.pdf|M. Alser, O. Mutlu, and C. Alkan, "MAGNET: Understanding and Improving the Accuracy of Genome Pre-Alignment Filtering," IPSI Transactions on Internet Research, 2017}}
-  * {{s41525-018-0049-5.pdf | M. Alser,  H. Hassan,  A. Kumar,  O. Mutlu,  C. Alkan, "Shouji: A Fast and Efficient Pre-alignment Filter for Sequence Alignment," Bioinformatics, 2019}} +  * {{https://people.inf.ethz.ch/omutlu/pub/shouji-genome-prealignment-filter_bionformatics19.pdf | M. Alser,  H. Hassan,  A. Kumar,  O. Mutlu,  C. Alkan, "Shouji: A Fast and Efficient Pre-alignment Filter for Sequence Alignment," Bioinformatics, 2019}} 
-  * {{https://arxiv.org/pdf/1711.01177.pdf|J.S. Kim, D. Senol Cali, H. Xin, D. Lee, S. Ghose, M. Alser, H. Hassan, O. Ergin, C. Alkan, and O. Mutlu, "GRIM-Filter: Fast Seed Location Filtering in DNA Read Mapping Using Processing-in-Memory Technologies," to appear in BMC Genomics, 2018}} +  * {{https://arxiv.org/pdf/1711.01177.pdf|J.S. Kim, D. Senol Cali, H. Xin, D. Lee, S. Ghose, M. Alser, H. Hassan, O. Ergin, C. Alkan, and O. Mutlu, "GRIM-Filter: Fast Seed Location Filtering in DNA Read Mapping Using Processing-in-Memory Technologies," BMC Genomics, 2018}} 
-  * {{https://arxiv.org/pdf/1711.08774.pdf|D. Senol Cali, J.S. Kim, S. Ghose, C. Alkan, and O. Mutlu, “Nanopore Sequencing Technology and Tools for Genome Assembly: Computational Analysis of the Current State, Bottlenecks and Future Directions,”  to appear in Briefings in Bioinformatics, 2018}}+  * {{p199-turakhia.pdf|Y. Turakhia, G. Bejerano, and W.J. Dally, "Darwin: A Genomics Co-processor Provides up to 15,000× acceleration on long read assembly," ASPLOS, 2018}}  
 +  * {{https://arxiv.org/pdf/1711.08774.pdf|D. Senol Cali, J.S. Kim, S. Ghose, C. Alkan, and O. Mutlu, “Nanopore Sequencing Technology and Tools for Genome Assembly: Computational Analysis of the Current State, Bottlenecks and Future Directions,” Briefings in Bioinformatics, 2018}}
  
  
 === Suggested (lecture 5): === === Suggested (lecture 5): ===
  
-  * {{https://people.inf.ethz.ch/omutlu/pub/dram-row-hammer_isca14.pdf|Y. Kim, R. Daly, J. Kim, C. Fallin, J.H. Lee, D. Lee, C. Wilkerson, K. Lai, O. Mutlu, "Flipping Bits in Memory Without Accessing Them: An Experimental Study of DRAM Disturbance Errors," ISCA 2014}} 
   * {{https://mitpress.mit.edu/books/introduction-bioinformatics-algorithms|N.C. Jones, P.A. Pevzner, and P. Pevzner, “An introduction to bioinformatics algorithms,” MIT press, 2004}}   * {{https://mitpress.mit.edu/books/introduction-bioinformatics-algorithms|N.C. Jones, P.A. Pevzner, and P. Pevzner, “An introduction to bioinformatics algorithms,” MIT press, 2004}}
-  * {{http://genome-scale.info|V. Mäkinen, D. Belazzougui, F. Cunial, and A.I. Tomescu, “Genome-scale algorithm design,” Cambridge University Press, 2015}}+  * {{http://www.genome-scale.info|V. Mäkinen, D. Belazzougui, F. Cunial, and A.I. Tomescu, “Genome-scale algorithm design,” Cambridge University Press, 2015}}
   * {{41525_2018_Article_49.pdf|L. Farnaes, A. Hildreth, N. M. Sweeney, M. M. Clark, S. Chowdhury, S. Nahas, J. A. Cakici, W. Benson, RH. Kaplan, R. Kronick, MN. Bainbridge, J. Friedman, JJ. Gold, Y. Ding, N. Veeraraghavan, D. Dimmock, SF. Kingsmore. "Rapid Whole-genome Sequencing Decreases Infant Morbidity and Cost of Hospitalization." NPJ genomic medicine 3, no. 1 2018}}   * {{41525_2018_Article_49.pdf|L. Farnaes, A. Hildreth, N. M. Sweeney, M. M. Clark, S. Chowdhury, S. Nahas, J. A. Cakici, W. Benson, RH. Kaplan, R. Kronick, MN. Bainbridge, J. Friedman, JJ. Gold, Y. Ding, N. Veeraraghavan, D. Dimmock, SF. Kingsmore. "Rapid Whole-genome Sequencing Decreases Infant Morbidity and Cost of Hospitalization." NPJ genomic medicine 3, no. 1 2018}}
   * {{https://www.nature.com/articles/ng.437|C. Alkan, J.M. Kidd, T. Marques-Bonet, G. Aksay, F. Antonacci, F. Hormozdiari, J.O. Kitzman, C. Baker, M. Malig, O. Mutlu, S.C. Sahinalp, R.A. Gibbs, E.E. Eichler, "Personalized copy number and segmental duplication maps using next-generation sequencing”, Nature Genetics, 2009}}   * {{https://www.nature.com/articles/ng.437|C. Alkan, J.M. Kidd, T. Marques-Bonet, G. Aksay, F. Antonacci, F. Hormozdiari, J.O. Kitzman, C. Baker, M. Malig, O. Mutlu, S.C. Sahinalp, R.A. Gibbs, E.E. Eichler, "Personalized copy number and segmental duplication maps using next-generation sequencing”, Nature Genetics, 2009}}
-  * {{https://arxiv.org/pdf/1809.07858.pdf|M. Alser, H. Hassan, A. Kumar, O. Mutlu, and C. Alkan, "SLIDER: Fast and Efficient Computation of Banded Sequence Alignment," arXiv 2018}}+  * {{https://academic.oup.com/bioinformatics/article/32/11/1632/1742696|X. Hongyi, S. Nahar, R. Zhu, J. Emmons, G. Pekhimenko, C. Kingsford, C. Alkan, and OMutlu, “Optimal Seed Solver: optimizing seed selection in read mapping”, Bioinformatics, 2016}} 
 +  * {{alser2018slider.pdf|M. Alser, H. Hassan, A. Kumar, O. Mutlu, and C. Alkan, "SLIDER: Fast and Efficient Computation of Banded Sequence Alignment," arXiv 2018}}
  
  
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   * {{https://arxiv.org/pdf/1904.09724.pdf|Onur Mutlu and Jeremie Kim, "RowHammer: A Retrospective," TCAD, 2019}}   * {{https://arxiv.org/pdf/1904.09724.pdf|Onur Mutlu and Jeremie Kim, "RowHammer: A Retrospective," TCAD, 2019}}
  
-===== Lecture 7 (10.10 Fri.) =====+===== Lecture 7 (10.10 Thu.) =====
  
 === Described in detail during lecture 7: === === Described in detail during lecture 7: ===
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 ===== Lecture 8 (11.10 Fri.) ===== ===== Lecture 8 (11.10 Fri.) =====
- === Recommended (lecture 8): ===+ === Suggested (lecture 8): ===
   * {{https://people.inf.ethz.ch/omutlu/pub/ramulator_dram_simulator-ieee-cal15.pdf| Yoongu Kim, Weikun Yang, and Onur Mutlu, "Ramulator: A Fast and Extensible DRAM Simulator," CAL, 2015. }}   * {{https://people.inf.ethz.ch/omutlu/pub/ramulator_dram_simulator-ieee-cal15.pdf| Yoongu Kim, Weikun Yang, and Onur Mutlu, "Ramulator: A Fast and Extensible DRAM Simulator," CAL, 2015. }}
   * {{https://people.inf.ethz.ch/omutlu/pub/tesseract-pim-architecture-for-graph-processing_isca15.pdf| Junwhan Ahn, Sungpack Hong, Sungjoo Yoo, Onur Mutlu, and Kiyoung Choi, "A Scalable Processing-in-Memory Accelerator for Parallel Graph Processing," ISCA, 2015.}}   * {{https://people.inf.ethz.ch/omutlu/pub/tesseract-pim-architecture-for-graph-processing_isca15.pdf| Junwhan Ahn, Sungpack Hong, Sungjoo Yoo, Onur Mutlu, and Kiyoung Choi, "A Scalable Processing-in-Memory Accelerator for Parallel Graph Processing," ISCA, 2015.}}
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   * {{memory-dvfs_icac11.pdf| H. David, C. Fallin, E. Gorbatov, U.R. Hanebutte, O. Mutlu, "Memory Power Management via Dynamic Voltage/Frequency Scaling," ICAC, 2011.}}   * {{memory-dvfs_icac11.pdf| H. David, C. Fallin, E. Gorbatov, U.R. Hanebutte, O. Mutlu, "Memory Power Management via Dynamic Voltage/Frequency Scaling," ICAC, 2011.}}
  
-===== Lecture 12 (25.10 Thu.) =====+===== Lecture 12 (25.10 Fri.) =====
  
 === Described in detail during lecture 12: === === Described in detail during lecture 12: ===
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 ===== Lecture 21b (5.12 Thu.) ===== ===== Lecture 21b (5.12 Thu.) =====
 === Described in detail during lecture 21b === === Described in detail during lecture 21b ===
-   * {{a_low-overhead_coherence_solution_for_multiprocessors_with_private_cache_memories.pdf|MSPapamarcos and J. H. Patel, "A low-overhead coherence solution for multiprocessors with private cache memories,ISCA 1984}}+   * {{How-to-Make-a-Multiprocessor-Computer-That-Correctly-Executes-Multiprocess-Programs.pdf|LLamport. "How to Make a Multiprocessor Computer That Correctly Executes Multiprocess Programs". IEEE Trans. 1979}}
  
 === Suggested (lecture 21b): === === Suggested (lecture 21b): ===
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 ===== Lecture 23 (12.12 Thu.) ===== ===== Lecture 23 (12.12 Thu.) =====
 === Described in detail during lecture 23 === === Described in detail during lecture 23 ===
 +   * {{p239-gottlieb.pdf| A. Gottlieb, R. Grishman, C. P. Kruskal, K, P. McAuliffe, L. Rudolph, M. Snir, "The NYU Ultracomputer - Designing an MIMD Shared Memory Parallel Computer", ISCA 1998}} 
 +   * {{0211027.pdf| L. G. Valiant, "A Scheme for Fast Parallel Communication", SIAM Journal on Computing, 1982}} 
 +   * {{https://people.inf.ethz.ch/omutlu/pub/bless_isca09.pdf| T. Moscibroda and O. Mutlu, "A Case for Bufferless Routing in On-Chip Networks", ISCA 2009}}
 === Suggested (lecture 23): === === Suggested (lecture 23): ===
 +   * {{p168-patel.pdf| J. Patel, "Performance of Processor-Memory Interconnections for Multiprocessors", ISCA 1979}}
 +      * {{https://people.inf.ethz.ch/omutlu/pub/hierarchical-rings-with-deflection_sbacpad14.pdf| R. Ausavarungnirun, C. Fallin, X. Yu, K. Chang, G. Nazario, R. Das, G. Loh, and O. Mutlu, "Design and Evaluation of Hierarchical Rings with Deflection Routing", SBAC-PAD 2014}}
 +   * {{https://arxiv.org/pdf/1602.06005.pdf| R. Ausavarungnirun, C. Fallin, X. Yu, K. Chang, G. Nazario, R. Das, G. Loh, and O. Mutlu, "A Case for Hierarchical Rings with Deflection Routing: An Energy-Efficient On-Chip Communication Substrate", PARCO 2016}}
 +   * {{p272-leiserson.pdf| C. E. Leiserson, Z. S. Abuhamdeh, D. C. Douglas, C. R. Feynman, M. N. Ganmukhi, J. V. Hill, D. Hillis, B. C. Kuszmaul, M. A. St. Pierre, D. S. Wells, M. C. Wong, Shaw-Wen Yang, R. Zak, "The network architecture of the Connection Machine CM-5", SPAA 1992}}
 +   * {{p22-seitz.pdf| C. L. Seitz, "The cosmic cube", CACM 1985}}
 +   * {{p278-glass.pdf| C. J. Glass, L. M. Ni, "The turn model for adaptive routing", ISCA 1992}}
 +   * {{p263-valiant.pdf| L.G. Valiant, G.J. Brebner, "Universal schemes for parallel communication", STOC 1981}}
 +   * {{https://people.inf.ethz.ch/omutlu/pub/maze-routing_nocs15.pdf| M. Fattah, A. Airola, R. Ausavarungnirun, N. Mirzaei, P. Liljeberg, J. Plosila, S. Mohammadi, T. Pahikkala, O. Mutlu, and H. Tenhunen, "A Low-Overhead, Fully-Distributed, Guaranteed-Delivery Routing Algorithm for Faulty Network-on-Chips", NOCS, 2015}}
 +   * {{P2626.pdf| P. Baran, "On Distributed Communication Networks", RAND Technical Report, 1962}}
 +   * {{https://people.inf.ethz.ch/omutlu/pub/bufferless-and-minimally-buffered-deflection-routing_springer14.pdf| C. Fallin, G. Nazario, X. Yu, K. Chang, R. Ausavarungnirun, O. Mutlu, "Bufferless and Minimally-Buffered Deflection Routing", Invited Book Chapter in Routing Algorithms in Networks-on-Chip, Springer, 2014}}
 +   * {{https://people.inf.ethz.ch/omutlu/pub/chipper_hpca11.pdf| C. Fallin, C. Craik, and O. Mutlu, "CHIPPER: A Low-Complexity Bufferless Deflection Router", HPCA 2011}}
 +   * {{https://people.inf.ethz.ch/omutlu/pub/minimally-buffered-deflection-router_nocs12.pdf| C. Fallin, G. Nazario, X. Yu, K. Chang, R. Ausavarungnirun, and O. Mutlu, "MinBD: Minimally-Buffered Deflection Routing for Energy-Efficient Interconnect", NOCS 2012}}
 +
 +===== Lecture 24 (13.12 Fri.) =====
 +=== Described in detail during lecture 24: ===
 +  * {{05749724.pdf|C. Fallin, C. Craik, and O. Mutlu, "CHIPPER: A Low-Complexity Bufferless Deflection Router", HPCA 2011}}
 +  * {{bufferless_springer14.pdf|C. Fallin, G. Nazario, X. Yu, K. Chang, R. Ausavarungnirun, and O. Mutlu, "Bufferless and Minimally-Buffered Deflection Routing", Routing Algorithms in Networks-on-Chip (invited book chapter), 2014}}
 +  * {{06209256.pdf|C. Fallin, G. Nazario, X. Yu, K. Chang, R. Ausavarungnirun, and O. Mutlu, "MinBD: Minimally-Buffered Deflection Routing for Energy-Efficient Interconnect", NOCS 2012}}
 +
 +=== Suggested (lecture 24): ===
 +  * {{app-aware-noc_micro09.pdf|R. Das, O. Mutlu, T. Moscibroda, and C. R. Das, "Application-Aware Prioritization Mechanisms for On-Chip Networks", MICRO 2009}}
 +  * {{https://people.inf.ethz.ch/omutlu/pub/hetero-adaptive-source-throttling_sbacpad12.pdf|K. Chang, R. Ausavarungnirun, C. Fallin, and O. Mutlu, "HAT: Heterogeneous Adaptive Throttling for On-Chip Networks,"
 +SBAC-PAD, 2012}}
 +  * {{bless_isca09.pdf|T. Moscibroda and O. Mutlu, "A Case for Bufferless Routing in On-Chip Networks", ISCA 2009}}
 +  * {{06970669.pdf|R. Ausavarungnirun, C. Fallin, X. Yu, K. Chang, G. Nazario, R. Das, G. H. Loh, and O. Mutlu, "Design and Evaluation of Hierarchical Rings with Deflection Routing", SBAC-PAD 2014}}
 +  * {{1-s2.0-s0167819116000399-main.pdf|R. Ausavarungnirun, C. Fallin, X. Yu, K. Chang, G. Nazario, R. Das, G. H.Loh, and O. Mutlu, "A Case for Hierarchical Rings with Deflection Routing: An Energy-Efficient On-Chip Communication Substrate", PARCO 2016}}
 +  * {{p106-das.pdf|R. Das, O. Mutlu, T. Moscibroda, and C.R. Das, "Aergia: Exploiting Packet Latency Slack in On-Chip Networks", ISCA 2010}}
 +  * {{https://people.inf.ethz.ch/omutlu/pub/pvc-qos_micro09.pdf|B. Grot, S.W. Keckler, O. Mutlu, "Preemptive Virtual Clock: A Flexible, Efficient, and Cost-effective QoS Scheme for Networks-on-Chip", MICRO 2009}}
 +  * {{p401-grot.pdf|B. Grot, J. Hestness, S. W. Keckler, and O. Mutlu, "Kilo-NOC: A Heterogeneous Network-on-Chip Architecture for Scalability and Service Guarantees", ISCA 2011}}
 +  * {{https://people.inf.ethz.ch/omutlu/pub/onchip-network-congestion-scalability_sigcomm2012.pdf|G. Nychis, C. Fallin, T. Moscibroda, O. Mutlu, and S. Seshan, "On-Chip Networks from a Networking Perspective: Congestion and Scalability in Many-core Interconnects," SIGCOMM, 2012}}
 +  * {{http://users.ece.cmu.edu/~omutlu/pub/noc-congestion_hotnets10.pdf|G. Nychis, C. Falling, T. Moscibroda, O. Mutlu, "Next Generation On-chip Networks: What Kind of Congestion Control Do We Need?" HotNets 2010}}
readings.1576187076.txt.gz · Last modified: 2019/12/12 21:44 by rahbera