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Jeremy G. Siek: [Publications] [Author Rank by year] [Co-authors] [Prefers] [Cites] [Cited by]

Publications of Author

  1. Jeremy Siek, Walid Taha
    A Semantic Analysis of C++ Templates. [Citation Graph (0, 0)][DBLP]
    ECOOP, 2006, pp:304-327 [Conf]
  2. Jeremy G. Siek, Andrew Lumsdaine
    The Matrix Template Library: A Unifying Framework for Numerical Linear Algebra. [Citation Graph (0, 0)][DBLP]
    ECOOP Workshops, 1998, pp:466-467 [Conf]
  3. Jeremy G. Siek, Andrew Lumsdaine
    A Rational Approach to Portable High Performance: The Basic Linear Algebra Instruction Set (BLAIS) and the Fixed Algorithm Size Template (FAST) Library. [Citation Graph (0, 0)][DBLP]
    ECOOP Workshops, 1998, pp:468-469 [Conf]
  4. Jeremy G. Siek, Andrew Lumsdaine
    Language Requirements for Large-Scale Generic Libraries. [Citation Graph (0, 0)][DBLP]
    GPCE, 2005, pp:405-421 [Conf]
  5. Sibylle Schupp, D. P. Gregor, B. Osman, David R. Musser, Jeremy G. Siek, Lie-Quan Lee, Andrew Lumsdaine
    Concept-Based Component Libraries and Optimizing Compilers. [Citation Graph (0, 0)][DBLP]
    IPDPS, 2002, pp:- [Conf]
  6. Lie-Quan Lee, Jeremy G. Siek, Andrew Lumsdaine
    Generic Graph Algorithms for Sparse Matrix Ordering. [Citation Graph (0, 0)][DBLP]
    ISCOPE, 1999, pp:120-129 [Conf]
  7. Jeremy G. Siek, Andrew Lumsdaine
    The Matrix Template Library: A Generic Programming Approach to High Performance Numerical Linear Algebra. [Citation Graph (0, 0)][DBLP]
    ISCOPE, 1998, pp:59-70 [Conf]
  8. Josh Bloch, Jaakko Järvi, David R. Musser, Sibylle Schupp, Jeremy G. Siek
    LCSD: library-centric software design. [Citation Graph (0, 0)][DBLP]
    OOPSLA Companion, 2006, pp:618- [Conf]
  9. Ronald Garcia, Jaakko Järvi, Andrew Lumsdaine, Jeremy G. Siek, Jeremiah Willcock
    A comparative study of language support for generic programming. [Citation Graph (0, 0)][DBLP]
    OOPSLA, 2003, pp:115-134 [Conf]
  10. Douglas Gregor, Jaakko Järvi, Jeremy G. Siek, Bjarne Stroustrup, Gabriel Dos Reis, Andrew Lumsdaine
    Concepts: linguistic support for generic programming in C++. [Citation Graph (0, 0)][DBLP]
    OOPSLA, 2006, pp:291-310 [Conf]
  11. Lie-Quan Lee, Jeremy G. Siek, Andrew Lumsdaine
    The Generic Graph Component Library. [Citation Graph (0, 0)][DBLP]
    OOPSLA, 1999, pp:399-414 [Conf]
  12. Jeremy G. Siek
    Modular generics. [Citation Graph (0, 0)][DBLP]
    OOPSLA Companion, 2004, pp:54-55 [Conf]
  13. Seth Fogarty, Emir Pasalic, Jeremy Siek, Walid Taha
    Concoqtion: indexed types now! [Citation Graph (0, 0)][DBLP]
    PEPM, 2007, pp:112-121 [Conf]
  14. Jaakko Järvi, Douglas Gregor, Jeremiah Willcock, Andrew Lumsdaine, Jeremy G. Siek
    Algorithm specialization in generic programming: challenges of constrained generics in C++. [Citation Graph (0, 0)][DBLP]
    PLDI, 2006, pp:272-282 [Conf]
  15. Jeremy G. Siek, Andrew Lumsdaine
    Essential language support for generic programming. [Citation Graph (0, 0)][DBLP]
    PLDI, 2005, pp:73-84 [Conf]
  16. Ronald Garcia, Jaakko Järvi, Andrew Lumsdaine, Jeremy G. Siek, Jeremiah Willcock
    An extended comparative study of language support for generic programming. [Citation Graph (0, 0)][DBLP]
    J. Funct. Program., 2007, v:17, n:2, pp:145-205 [Journal]
  17. Jeremy Siek, Walid Taha
    Gradual Typing for Objects. [Citation Graph (0, 0)][DBLP]
    ECOOP, 2007, pp:2-27 [Conf]
  18. Jeremy G. Siek, Andrew Lumsdaine
    A Language for Generic Programming in the Large [Citation Graph (0, 0)][DBLP]
    CoRR, 2007, v:0, n:, pp:- [Journal]

  19. An efficient software transactional memory using commit-time invalidation. [Citation Graph (, )][DBLP]


  20. Exploring the Design Space of Higher-Order Casts. [Citation Graph (, )][DBLP]


  21. Generating Empirically Optimized Composed Matrix Kernels from MATLAB Prototypes. [Citation Graph (, )][DBLP]


  22. Build to order linear algebra kernels. [Citation Graph (, )][DBLP]


  23. General purpose languages should be metalanguages. [Citation Graph (, )][DBLP]


  24. Threesomes, with and without blame. [Citation Graph (, )][DBLP]


  25. Automating the generation of composed linear algebra kernels. [Citation Graph (, )][DBLP]


  26. Gradual typing with unification-based inference. [Citation Graph (, )][DBLP]


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