//g++ -O3 -g0 -DNDEBUG sparse_product.cpp -I.. -I/home/gael/Coding/LinearAlgebra/mtl4/ -DDENSITY=0.005 -DSIZE=10000 && ./a.out //g++ -O3 -g0 -DNDEBUG sparse_product.cpp -I.. -I/home/gael/Coding/LinearAlgebra/mtl4/ -DDENSITY=0.05 -DSIZE=2000 && ./a.out // -DNOGMM -DNOMTL -DCSPARSE // -I /home/gael/Coding/LinearAlgebra/CSparse/Include/ /home/gael/Coding/LinearAlgebra/CSparse/Lib/libcsparse.a #ifndef SIZE #define SIZE 650000 #endif #ifndef DENSITY #define DENSITY 0.01 #endif #ifndef REPEAT #define REPEAT 1 #endif #include "BenchSparseUtil.h" #ifndef MINDENSITY #define MINDENSITY 0.0004 #endif #ifndef NBTRIES #define NBTRIES 10 #endif #define BENCH(X) \ timer.reset(); \ for (int _j=0; _j=MINDENSITY; density*=0.5) { //fillMatrix(density, rows, cols, sm1); fillMatrix2(7, rows, cols, sm1); // dense matrices #ifdef DENSEMATRIX { std::cout << "Eigen Dense\t" << density*100 << "%\n"; DenseMatrix m1(rows,cols); eiToDense(sm1, m1); timer.reset(); timer.start(); for (int k=0; k m1(sm1); // std::cout << "Eigen dyn-sparse\t" << m1.nonZeros()/float(m1.rows()*m1.cols())*100 << "%\n"; // // BENCH(for (int k=0; k gmmV1(cols), gmmV2(cols); Map >(&gmmV1[0], cols) = v1; Map >(&gmmV2[0], cols) = v2; BENCH( asm("#myx"); gmm::mult(m1, gmmV1, gmmV2); asm("#myy"); ) std::cout << " a * v:\t" << timer.value() << endl; BENCH( gmm::mult(gmm::transposed(m1), gmmV1, gmmV2); ) std::cout << " a' * v:\t" << timer.value() << endl; } #endif #ifndef NOUBLAS { std::cout << "ublas sparse\t" << density*100 << "%\n"; UBlasSparse m1(rows,cols); eiToUblas(sm1, m1); boost::numeric::ublas::vector uv1, uv2; eiToUblasVec(v1,uv1); eiToUblasVec(v2,uv2); // std::vector gmmV1(cols), gmmV2(cols); // Map >(&gmmV1[0], cols) = v1; // Map >(&gmmV2[0], cols) = v2; BENCH( uv2 = boost::numeric::ublas::prod(m1, uv1); ) std::cout << " a * v:\t" << timer.value() << endl; // BENCH( boost::ublas::prod(gmm::transposed(m1), gmmV1, gmmV2); ) // std::cout << " a' * v:\t" << timer.value() << endl; } #endif // MTL4 #ifndef NOMTL { std::cout << "MTL4\t" << density*100 << "%\n"; MtlSparse m1(rows,cols); eiToMtl(sm1, m1); mtl::dense_vector mtlV1(cols, 1.0); mtl::dense_vector mtlV2(cols, 1.0); timer.reset(); timer.start(); for (int k=0; k