PDF-[eBOOK]-Deep Belief Nets in C++ and CUDA C: Volume 2: Autoencoding in the Complex Domain
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The Desired Brand Effect Stand Out in a Saturated Market with a Timeless Brand
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[eBOOK]-Deep Belief Nets in C++ and CUDA C: Volume 2: Autoencoding in the Complex Domain: Transcript
The Desired Brand Effect Stand Out in a Saturated Market with a Timeless Brand. heterogeneous programming. Katia Oleinik. koleinik@bu.edu. Scientific Computing and Visualization. Boston . University. Architecture. NVIDIA Tesla M2070: . Core clock: 1.15GHz . Single instruction . 448 CUDA cores . . Acknowledgement: the lecture materials are based on the materials in NVIDIA teaching center CUDA course materials, including materials from Wisconsin (. Negrut. ), North Carolina Charlotte (. Wikinson. Prof. . O. . Nierstrasz. Roadmap. Definition:. places, transitions, inputs, outputs. firing enabled transitions. Modelling:. concurrency and synchronization. Properties of nets:. liveness, boundedness. A Tutorial. Based on:. Petri Nets and Industrial Applications: A Tutorial. Petri Net Intro.. Often used for description of distributed systems. Provide a graphical notation for stepwise processes. Choice. © Dan Negrut, . 2012. UW-Madison. Dan Negrut. Simulation-Based Engineering Lab. Wisconsin Applied Computing Center. Department of Mechanical Engineering. Department of . Electrical and Computer Engineering. Nick Russell. Arthur H. M. . ter. . Hofstede. Acknowledgement. These slides . summarize the content of Chapter 2 of the book:. A.H.M. ter Hofstede, W. van der Aalst, M. Adams, N. Russell.. Modern . Business Process . Martin Burtscher. Department of Computer Science. High-End CPUs and GPUs. Xeon X7550 Tesla C2050. Cores 8 (superscalar) 448 (simple). Active threads 2 per core 48 per core. Frequency 2 GHz 1.15 GHz. CS 501:CS Seminar. Min Xian. Assistant Professor. Department of Computer Science. University of Idaho. Image from NVIDIA. Researchers:. Geoff Hinton. Yann . LeCun. Andrew Ng. Yoshua. . Bengio. …. Slideshow 45, Mathematics. Mr Richard Sasaki. Objectives. Understand how nets are built. Be able to build nets for various shapes using scissors and glue. Be able to categorise shapes using a Venn Diagram. A Constraint Propagation Perspective. Rina . Dechter. Bozhena. Bidyuk. Robert. Mateescu. Emma. Rollon. Distributed Belief Propagation. Distributed Belief Propagation. 1. 2. 3. 4. 4. 3. 2. 1. 5. 5. 5. What is CUDA?. Data Parallelism. Host-Device model. Thread execution. Matrix-multiplication . GPU revised!. What is CUDA?. C. ompute . D. evice . U. nified . A. rchitecture. Programming interface to GPU. Defines much more than an API. A language . Hardware Specifications. PA0. Let’s look into your first assignment and figure some things out.. HELLOCUDA.CU. HELLOCUDA.CU. Pointers to GPU land. dev_a. Agenda. Text book / resources. Eclipse . Nsight. , NVIDIA Visual Profiler. Available libraries. Questions. Certificate dispersal. (Optional) Multiple GPUs: Where’s Pixel-Waldo?. Text Book / Resources. The Desired Brand Effect Stand Out in a Saturated Market with a Timeless Brand
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