//===================================================== // File : bench.hh // Author : L. Plagne // Copyright (C) EDF R&D, lun sep 30 14:23:16 CEST 2002 //===================================================== // // This program 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. // // This program 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 this program; if not, write to the Free Software // Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. // #ifndef BENCH_HH #define BENCH_HH #include "btl.hh" #include "bench_parameter.hh" #include #include "utilities.h" #include "size_lin_log.hh" #include "xy_file.hh" #include #include #include "timers/portable_perf_analyzer.hh" // #include "timers/mixed_perf_analyzer.hh" // #include "timers/x86_perf_analyzer.hh" // #include "timers/STL_perf_analyzer.hh" #ifdef HAVE_MKL extern "C" void cblas_saxpy(const int, const float, const float*, const int, float *, const int); #endif using namespace std; template class Perf_Analyzer, class Action> BTL_DONT_INLINE void bench( int size_min, int size_max, int nb_point ) { if (BtlConfig::skipAction(Action::name())) return; string filename="bench_"+Action::name()+".dat"; INFOS("starting " < tab_mflops(nb_point); std::vector tab_sizes(nb_point); // matrices and vector size calculations size_lin_log(nb_point,size_min,size_max,tab_sizes); std::vector oldSizes; std::vector oldFlops; bool hasOldResults = read_xy_file(filename, oldSizes, oldFlops, true); int oldi = oldSizes.size() - 1; // loop on matrix size Perf_Analyzer perf_action; for (int i=nb_point-1;i>=0;i--) { //INFOS("size=" <=0 && oldSizes[oldi]>tab_sizes[i]) --oldi; if (oldi>=0 && oldSizes[oldi]==tab_sizes[i]) { if (oldFlops[oldi] "; else std::cout << "\t < "; std::cout << oldFlops[oldi]; } --oldi; } std::cout << " MFlops (" << nb_point-i << "/" << nb_point << ")" << std::endl; } if (!BtlConfig::Instance.overwriteResults) { if (hasOldResults) { // merge the two data std::vector newSizes; std::vector newFlops; unsigned int i=0; unsigned int j=0; while (i BTL_DONT_INLINE void bench( int size_min, int size_max, int nb_point ){ // if the rdtsc is not available : bench(size_min,size_max,nb_point); // if the rdtsc is available : // bench(size_min,size_max,nb_point); // Only for small problem size. Otherwise it will be too long // bench(size_min,size_max,nb_point); // bench(size_min,size_max,nb_point); } #endif