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dft_tools/test/triqs/gfs/gf_positive_and_negative_matsubara.cpp

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//#define TRIQS_ARRAYS_ENFORCE_BOUNDCHECK
#include <triqs/gfs.hpp>
#include <triqs/gfs/local/functions.hpp>
using namespace triqs::gfs;
#define TEST(X) std::cout << BOOST_PP_STRINGIZE((X)) << " ---> "<< (X) <<std::endl<<std::endl;
int main() {
try {
double beta =1;int n_im_freq=400;
auto G = gf<imfreq, scalar_valued> {{beta, Fermion, n_im_freq,false}};
auto G_pos_only = gf<imfreq, scalar_valued> {{beta, Fermion, n_im_freq,true}};
TEST(G.mesh().positive_only());
TEST(G_pos_only.mesh().positive_only());
//std::cout << G.singularity() << std::endl ;
triqs::clef::placeholder<0> om_;
G(om_) << 1/(om_ + 2.3);
G_pos_only(om_) << 1/(om_ + 2.3);
auto n = triqs::gfs::density(G);
auto n_pos_only = triqs::gfs::density(G_pos_only);
TEST(n);
TEST(n_pos_only);
// test hdf5
//H5::H5File file("gf_scalar.h5", H5F_ACC_TRUNC);
//h5_write(file, "g", G);
//h5_write(file, "gm", reinterpret_scalar_valued_gf_as_matrix_valued(G));
}
TRIQS_CATCH_AND_ABORT;
}