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167 lines
4.3 KiB

#include <LiDIA/bigfloat.h>
#include <LiDIA/timer.h>
int main (int argc, char * argv[])
{
int repetitions = 1;
if ((argc >= 3) && !strcmp(argv[1],"-r")) {
repetitions = atoi(argv[2]);
argc -= 2; argv += 2;
}
if (argc < 1)
exit(1);
bigfloat::precision(1000);
cerr << "pi\n";
{ bigfloat p;
{ timer t; t.set_print_mode(0); t.start_timer();
p = Pi();
t.stop_timer(); cerr << t << endl;
}
{ timer t; t.set_print_mode(0); t.start_timer();
for (int rep = repetitions; rep > 0; rep--)
{ bigfloat p = Pi(); }
t.stop_timer(); cerr << t << endl;
}
cout << p << endl << endl;
}
cerr << "gamma\n";
{ bigfloat p;
{ timer t; t.set_print_mode(0); t.start_timer();
p = Euler();
t.stop_timer(); cerr << t << endl;
}
{ timer t; t.set_print_mode(0); t.start_timer();
for (int rep = repetitions; rep > 0; rep--)
{ bigfloat p = Euler(); }
t.stop_timer(); cerr << t << endl;
}
cout << p << endl << endl;
}
cerr << "e\n";
{ bigfloat p = E();
{ timer t; t.set_print_mode(0); t.start_timer();
for (int rep = repetitions; rep > 0; rep--)
{ bigfloat p = E(); }
t.stop_timer(); cerr << t << endl;
}
cout << p << endl << endl;
}
cerr << "sqrt(3)\n";
{ bigfloat p = sqrt((bigfloat)3);
{ timer t; t.set_print_mode(0); t.start_timer();
for (int rep = repetitions; rep > 0; rep--)
{ bigfloat p = sqrt((bigfloat)3); }
t.stop_timer(); cerr << t << endl;
}
cout << p << endl << endl;
}
cerr << "exp(log(2))\n";
{ bigfloat p = exp(log((bigfloat)2));
{ timer t; t.set_print_mode(0); t.start_timer();
for (int rep = repetitions; rep > 0; rep--)
{ bigfloat p = exp(log((bigfloat)2)); }
t.stop_timer(); cerr << t << endl;
}
cout << p << endl << endl;
}
cerr << "log(exp(2))\n";
{ bigfloat p = log(exp((bigfloat)2));
{ timer t; t.set_print_mode(0); t.start_timer();
for (int rep = repetitions; rep > 0; rep--)
{ bigfloat p = log(exp((bigfloat)2)); }
t.stop_timer(); cerr << t << endl;
}
cout << p << endl << endl;
}
cerr << "sin(pi/3)\n";
{ bigfloat p = sin(Pi()/3);
{ timer t; t.set_print_mode(0); t.start_timer();
for (int rep = repetitions; rep > 0; rep--)
{ bigfloat p = sin(Pi()/3); }
t.stop_timer(); cerr << t << endl;
}
cout << p << endl << endl;
}
cerr << "cos(pi/3)\n";
{ bigfloat p = cos(Pi()/3);
{ timer t; t.set_print_mode(0); t.start_timer();
for (int rep = repetitions; rep > 0; rep--)
{ bigfloat p = cos(Pi()/3); }
t.stop_timer(); cerr << t << endl;
}
cout << p << endl << endl;
}
cerr << "arcsin(sqrt(3)/2)\n";
{ bigfloat p = asin(sqrt((bigfloat)3)/2);
{ timer t; t.set_print_mode(0); t.start_timer();
for (int rep = repetitions; rep > 0; rep--)
{ bigfloat p = asin(sqrt((bigfloat)3)/2); }
t.stop_timer(); cerr << t << endl;
}
cout << p << endl << endl;
}
cerr << "arccos(sqrt(3)/2)\n";
{ bigfloat p = acos(sqrt((bigfloat)3)/2);
{ timer t; t.set_print_mode(0); t.start_timer();
for (int rep = repetitions; rep > 0; rep--)
{ bigfloat p = acos(sqrt((bigfloat)3)/2); }
t.stop_timer(); cerr << t << endl;
}
cout << p << endl << endl;
}
cerr << "sinh(log(2))\n";
{ bigfloat p = sinh(log((bigfloat)2));
{ timer t; t.set_print_mode(0); t.start_timer();
for (int rep = repetitions; rep > 0; rep--)
{ bigfloat p = sinh(log((bigfloat)2)); }
t.stop_timer(); cerr << t << endl;
}
cout << p << endl << endl;
}
cerr << "cosh(log(2))\n";
{ bigfloat p = cosh(log((bigfloat)2));
{ timer t; t.set_print_mode(0); t.start_timer();
for (int rep = repetitions; rep > 0; rep--)
{ bigfloat p = cosh(log((bigfloat)2)); }
t.stop_timer(); cerr << t << endl;
}
cout << p << endl << endl;
}
cerr << "arsinh(pi)\n";
{ bigfloat p = asinh(Pi());
{ timer t; t.set_print_mode(0); t.start_timer();
for (int rep = repetitions; rep > 0; rep--)
{ bigfloat p = asinh(Pi()); }
t.stop_timer(); cerr << t << endl;
}
cout << p << endl << endl;
}
cerr << "arcosh(pi)\n";
{ bigfloat p = acosh(Pi());
{ timer t; t.set_print_mode(0); t.start_timer();
for (int rep = repetitions; rep > 0; rep--)
{ bigfloat p = acosh(Pi()); }
t.stop_timer(); cerr << t << endl;
}
cout << p << endl << endl;
}
}