7a4dabfc1a
This restores 1.8 hash rockets because they look nicer with e.g. `depends_on :foo => :bar`
85 lines
3.1 KiB
Ruby
85 lines
3.1 KiB
Ruby
class Fftw < Formula
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desc "C routines to compute the Discrete Fourier Transform"
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homepage "http://www.fftw.org"
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url "http://www.fftw.org/fftw-3.3.5.tar.gz"
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sha256 "8ecfe1b04732ec3f5b7d279fdb8efcad536d555f9d1e8fabd027037d45ea8bcf"
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bottle do
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cellar :any
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sha256 "6732254af0d37777ffd9ae7a4dc16d672def6656cdd85c4d8f1e96a53571e123" => :sierra
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sha256 "8961b3780e24d67c520deccf222aa12ce95f41eba1b6d7a7181e83bda9e4a99e" => :el_capitan
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sha256 "d7358e5c3e9426c245425ab0d4fe29659d7bdb41158bedb43ab0c2433b165c69" => :yosemite
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sha256 "f31992664fb2c54ae917c6e31a44e4a798b4ff062fbc66e50fcf7f56c418c791" => :mavericks
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end
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option "with-fortran", "Enable Fortran bindings"
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option :universal
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option "with-mpi", "Enable MPI parallel transforms"
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option "with-openmp", "Enable OpenMP parallel transforms"
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depends_on :fortran => :optional
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depends_on :mpi => [:cc, :optional]
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needs :openmp if build.with? "openmp"
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def install
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args = ["--enable-shared",
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"--disable-debug",
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"--prefix=#{prefix}",
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"--enable-threads",
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"--disable-dependency-tracking"]
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simd_args = ["--enable-sse2"]
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simd_args << "--enable-avx" if ENV.compiler == :clang && Hardware::CPU.avx? && !build.bottle?
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simd_args << "--enable-avx2" if ENV.compiler == :clang && Hardware::CPU.avx2? && !build.bottle?
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args << "--disable-fortran" if build.without? "fortran"
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args << "--enable-mpi" if build.with? "mpi"
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args << "--enable-openmp" if build.with? "openmp"
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ENV.universal_binary if build.universal?
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# single precision
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# enable-sse2, enable-avx and enable-avx2 work for both single and double precision
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system "./configure", "--enable-single", *(args + simd_args)
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system "make", "install"
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# clean up so we can compile the double precision variant
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system "make", "clean"
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# double precision
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# enable-sse2, enable-avx and enable-avx2 work for both single and double precision
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system "./configure", *(args + simd_args)
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system "make", "install"
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# clean up so we can compile the long-double precision variant
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system "make", "clean"
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# long-double precision
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# no SIMD optimization available
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system "./configure", "--enable-long-double", *args
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system "make", "install"
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end
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test do
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# Adapted from the sample usage provided in the documentation:
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# http://www.fftw.org/fftw3_doc/Complex-One_002dDimensional-DFTs.html
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(testpath/"fftw.c").write <<-TEST_SCRIPT.undent
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#include <fftw3.h>
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int main(int argc, char* *argv)
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{
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fftw_complex *in, *out;
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fftw_plan p;
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long N = 1;
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in = (fftw_complex*) fftw_malloc(sizeof(fftw_complex) * N);
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out = (fftw_complex*) fftw_malloc(sizeof(fftw_complex) * N);
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p = fftw_plan_dft_1d(N, in, out, FFTW_FORWARD, FFTW_ESTIMATE);
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fftw_execute(p); /* repeat as needed */
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fftw_destroy_plan(p);
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fftw_free(in); fftw_free(out);
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return 0;
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}
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TEST_SCRIPT
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system ENV.cc, "-o", "fftw", "fftw.c", "-lfftw3", *ENV.cflags.to_s.split
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system "./fftw"
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end
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end
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