boost/libs/math/reporting/performance/rsqrt_performance.cpp
2021-10-05 21:37:46 +02:00

48 lines
1.6 KiB
C++

// (C) Copyright Nick Thompson 2020.
// Use, modification and distribution are subject to the
// Boost Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include <random>
#include <benchmark/benchmark.h>
#include <boost/math/special_functions/rsqrt.hpp>
#include <boost/multiprecision/float128.hpp>
#include <boost/multiprecision/mpfr.hpp>
#include <boost/multiprecision/cpp_bin_float.hpp>
using boost::multiprecision::number;
using boost::multiprecision::mpfr_float_backend;
using boost::multiprecision::float128;
using boost::multiprecision::cpp_bin_float_50;
using boost::multiprecision::cpp_bin_float_100;
using boost::math::rsqrt;
template<class Real>
void Rsqrt(benchmark::State& state)
{
std::random_device rd;
std::mt19937_64 mt(rd());
std::uniform_real_distribution<long double> unif(1,100);
Real x = static_cast<Real>(unif(mt));
for (auto _ : state)
{
benchmark::DoNotOptimize(rsqrt(x));
x += std::numeric_limits<Real>::epsilon();
}
}
BENCHMARK_TEMPLATE(Rsqrt, float);
BENCHMARK_TEMPLATE(Rsqrt, double);
BENCHMARK_TEMPLATE(Rsqrt, long double);
BENCHMARK_TEMPLATE(Rsqrt, float128);
BENCHMARK_TEMPLATE(Rsqrt, number<mpfr_float_backend<100>>);
BENCHMARK_TEMPLATE(Rsqrt, number<mpfr_float_backend<200>>);
BENCHMARK_TEMPLATE(Rsqrt, number<mpfr_float_backend<300>>);
BENCHMARK_TEMPLATE(Rsqrt, number<mpfr_float_backend<400>>);
BENCHMARK_TEMPLATE(Rsqrt, number<mpfr_float_backend<1000>>);
BENCHMARK_TEMPLATE(Rsqrt, cpp_bin_float_50);
BENCHMARK_TEMPLATE(Rsqrt, cpp_bin_float_100);
BENCHMARK_MAIN();