/* * This file is part of Healpix_cxx. * * Healpix_cxx is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 2 of the License, or * (at your option) any later version. * * Healpix_cxx is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with Healpix_cxx; if not, write to the Free Software * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA * * For more information about HEALPix, see http://healpix.jpl.nasa.gov */ /* * Healpix_cxx is being developed at the Max-Planck-Institut fuer Astrophysik * and financially supported by the Deutsches Zentrum fuer Luft- und Raumfahrt * (DLR). */ /* * Copyright (C) 2003-2010 Max-Planck-Society * Author: Martin Reinecke */ #include "powspec.h" #include "lsconstants.h" using namespace std; void PowSpec::dealloc() { tt_.dealloc(); gg_.dealloc(); cc_.dealloc(); tg_.dealloc(); tc_.dealloc(); gc_.dealloc(); } void PowSpec::assertArraySizes() const { planck_assert((num_specs==1) || (num_specs==4) || (num_specs==6), "incorrect number of spectral components"); if (num_specs==1) planck_assert(multiequal(tsize(0),gg_.size(),cc_.size(),tg_.size(), tc_.size(),gc_.size()), "incorrect array sizes"); if (num_specs==4) { planck_assert(multiequal(tt_.size(),gg_.size(),cc_.size(),tg_.size()), "incorrect array sizes"); planck_assert(multiequal(tsize(0),tc_.size(),gc_.size()), "incorrect array sizes"); } if (num_specs==6) planck_assert(multiequal(tt_.size(),gg_.size(),cc_.size(),tg_.size(), tc_.size(),gc_.size()), "incorrect array sizes"); } bool PowSpec::consistentAutoPowspec() const { for (tsize l=0; l=4) for (tsize l=0; lsqrt(tt_[l]*gg_[l])) return false; } if (num_specs==6) for (tsize l=0; lsqrt(tt_[l]*cc_[l])) return false; if (abs(gc_[l])>sqrt(gg_[l]*cc_[l])) return false; } return true; } void PowSpec::Set(arr &tt_new) { dealloc(); num_specs = 1; tt_.transfer(tt_new); //FIXME: temporarily relaxed to allow cross-spectra if (!consistentAutoPowspec()) cerr << "Warning: negative values in TT spectrum" << endl; } void PowSpec::Set(arr &tt_new, arr &gg_new, arr &cc_new, arr &tg_new) { dealloc(); num_specs = 4; tt_.transfer(tt_new); gg_.transfer(gg_new); cc_.transfer(cc_new); tg_.transfer(tg_new); assertArraySizes(); } void PowSpec::Set(arr &tt_new, arr &gg_new, arr &cc_new, arr &tg_new, arr &tc_new, arr &gc_new) { Set (tt_new, gg_new, cc_new, tg_new); num_specs = 6; tc_.transfer(tc_new); gc_.transfer(gc_new); assertArraySizes(); } void PowSpec::smoothWithGauss (double fwhm) { planck_assert (num_specs<=4, "not yet implemented for num_specs>4"); double sigma = fwhm*fwhm2sigma; double fact_pol = exp(2*sigma*sigma); for (tsize l=0; l1) { gg_[l] *= f2*f2; cc_[l] *= f2*f2; tg_[l] *= f1*f2; } } }