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247 lines
5.2 KiB
C++
247 lines
5.2 KiB
C++
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//=====================================================
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// File : x86_timer.hh
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// Author : L. Plagne <laurent.plagne@edf.fr)>
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// Copyright (C) EDF R&D, mar d<>c 3 18:59:35 CET 2002
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//=====================================================
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//
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// This program is free software; you can redistribute it and/or
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// modify it under the terms of the GNU General Public License
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// as published by the Free Software Foundation; either version 2
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// of the License, or (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with this program; if not, write to the Free Software
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// Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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//
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#ifndef _X86_TIMER_HH
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#define _X86_TIMER_HH
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#include <sys/time.h>
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#include <sys/resource.h>
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#include <unistd.h>
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#include <sys/times.h>
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//#include "system_time.h"
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#define u32 unsigned int
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#include <asm/msr.h>
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#include "utilities.h"
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#include <map>
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#include <fstream>
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#include <string>
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#include <iostream>
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// frequence de la becanne en Hz
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//#define FREQUENCY 648000000
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//#define FREQUENCY 1400000000
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#define FREQUENCY 1695000000
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using namespace std;
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class X86_Timer {
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public :
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X86_Timer( void ):_frequency(FREQUENCY),_nb_sample(0)
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{
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MESSAGE("X86_Timer Default Ctor");
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}
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inline void start( void ){
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rdtsc(_click_start.n32[0],_click_start.n32[1]);
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}
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inline void stop( void ){
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rdtsc(_click_stop.n32[0],_click_stop.n32[1]);
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}
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inline double frequency( void ){
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return _frequency;
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}
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double get_elapsed_time_in_second( void ){
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return (_click_stop.n64-_click_start.n64)/double(FREQUENCY);
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}
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unsigned long long get_click( void ){
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return (_click_stop.n64-_click_start.n64);
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}
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inline void find_frequency( void ){
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time_t initial, final;
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int dummy=2;
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initial = time(0);
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start();
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do {
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dummy+=2;
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}
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while(time(0)==initial);
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// On est au debut d'un cycle d'une seconde !!!
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initial = time(0);
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start();
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do {
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dummy+=2;
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}
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while(time(0)==initial);
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final=time(0);
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stop();
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// INFOS("fine grained time : "<< get_elapsed_time_in_second());
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// INFOS("coarse grained time : "<< final-initial);
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_frequency=_frequency*get_elapsed_time_in_second()/double(final-initial);
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/// INFOS("CPU frequency : "<< _frequency);
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}
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void add_get_click( void ){
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_nb_sample++;
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_counted_clicks[get_click()]++;
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fill_history_clicks();
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}
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void dump_statistics(string filemane){
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ofstream outfile (filemane.c_str(),ios::out) ;
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std::map<unsigned long long , unsigned long long>::iterator itr;
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for(itr=_counted_clicks.begin() ; itr!=_counted_clicks.end() ; itr++)
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{
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outfile << (*itr).first << " " << (*itr).second << endl ;
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}
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outfile.close();
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}
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void dump_history(string filemane){
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ofstream outfile (filemane.c_str(),ios::out) ;
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for(int i=0 ; i<_history_mean_clicks.size() ; i++)
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{
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outfile << i << " "
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<< _history_mean_clicks[i] << " "
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<< _history_shortest_clicks[i] << " "
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<< _history_most_occured_clicks[i] << endl ;
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}
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outfile.close();
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}
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double get_mean_clicks( void ){
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std::map<unsigned long long,unsigned long long>::iterator itr;
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unsigned long long mean_clicks=0;
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for(itr=_counted_clicks.begin() ; itr!=_counted_clicks.end() ; itr++)
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{
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mean_clicks+=(*itr).second*(*itr).first;
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}
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return mean_clicks/double(_nb_sample);
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}
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double get_shortest_clicks( void ){
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return double((*_counted_clicks.begin()).first);
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}
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void fill_history_clicks( void ){
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_history_mean_clicks.push_back(get_mean_clicks());
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_history_shortest_clicks.push_back(get_shortest_clicks());
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_history_most_occured_clicks.push_back(get_most_occured_clicks());
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}
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double get_most_occured_clicks( void ){
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unsigned long long moc=0;
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unsigned long long max_occurence=0;
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std::map<unsigned long long,unsigned long long>::iterator itr;
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for(itr=_counted_clicks.begin() ; itr!=_counted_clicks.end() ; itr++)
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{
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if (max_occurence<=(*itr).second){
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max_occurence=(*itr).second;
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moc=(*itr).first;
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}
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}
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return double(moc);
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}
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void clear( void )
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{
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_counted_clicks.clear();
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_history_mean_clicks.clear();
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_history_shortest_clicks.clear();
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_history_most_occured_clicks.clear();
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_nb_sample=0;
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}
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private :
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union
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{
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unsigned long int n32[2] ;
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unsigned long long n64 ;
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} _click_start;
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union
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{
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unsigned long int n32[2] ;
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unsigned long long n64 ;
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} _click_stop;
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double _frequency ;
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map<unsigned long long,unsigned long long> _counted_clicks;
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vector<double> _history_mean_clicks;
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vector<double> _history_shortest_clicks;
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vector<double> _history_most_occured_clicks;
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unsigned long long _nb_sample;
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};
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#endif
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