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Distributed FFT with configurable backend
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jglaser/dfftlib
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dfftlib 0.2 - Distributed FFT library ===================================== This library supports fast d-dimensional distributed FFT over MPI, using a local FFT library as a hardware-optimized backend. The supported local FFT implementations include host (MKL) and CUDA device (CUFFT) implementations. The local FFT functions have been abstracted in a way that allows adding new backends easily. All standard MPI implementations are supported. In addition, the library supports "CUDA-aware" MPI-libraries (MVAPICH2 >= 1.8, OpenMPI 1.7). Please see their documentation for how to enable CUDA-MPI communication. The distributed FFT is based upon a modified algorithm from "Parallel Scientific Computation", Rob H. Bisseling, Oxford University Press 2004. INSTALLATION ------------ To install, type $ tar xvfz dfftlib-0.2.tar.gz $ mkdir dfftlib-build $ cd dfftlib-build $ cmake -D CMAKE_INSTALL_PREFIX=<your-install-root> ../dfftlib-0.2 $ make install Prerequisites (optional): - CUDA (tested with 5.0) - Intel MKL (tested with 11.0.4.183) If no CUDA toolkit is available, only the host backend will be built. If MKL is not available, an internal radix-2 FFT routine will be used. Using the internal FFT is not recommended for benchmarking. DOCUMENTATION ------------- The documentation is rudimentary at this point. For examples, please have a look at the unit tests, test/unit_test_host.c and test/unit_test_cuda.c. LIMITATIONS ----------- All FFT dimensions have to be powers of two. The number of processor has to be a power of two as well. CONTACT ------- Author contact: [email protected]
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