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#include <iostream>
#include <emmintrin.h>
#include <boost/date_time/posix_time/posix_time_types.hpp>
using namespace boost::posix_time;
namespace bench_sse
{
template <class T>
void resize_array(T*& t, size_t size)
{
t = reinterpret_cast<T*>(_mm_malloc(sizeof(T)*size,16));
}
template <class T>
void build_array(T*& t, size_t size)
{
for(size_t i = 0; i < size; ++i)
{
t[i] = i/4.0;
}
}
template <class T>
struct packet_traits;
template <>
struct packet_traits<float>
{
typedef __m128 type;
static const size_t size = 4;
};
template <>
struct packet_traits<double>
{
typedef __m128d type;
static const size_t size = 2;
};
template <class T>
struct unpacket_traits;
template <>
struct unpacket_traits<__m128>
{
typedef float type;
static const size_t size = 4;
};
template <>
struct unpacket_traits<__m128d>
{
typedef double type;
static const size_t size = 2;
};
inline __m128 nx_add_p(const __m128& a, const __m128& b) { return _mm_add_ps(a,b); }
inline __m128d nx_add_p(const __m128d& a, const __m128d& b) { return _mm_add_pd(a,b); }
inline __m128 nx_load_p(const float* a) { return _mm_load_ps(a); }
inline __m128d nx_load_p(const double* a) { return _mm_load_pd(a); }
inline void nx_store_p(float* to, const __m128& from) { _mm_store_ps(to,from); }
inline void nx_store_p(double* to, const __m128d& from) { _mm_store_pd(to,from); }
inline __m128 nx_loadu_p(const float* a) { return _mm_loadu_ps(a); }
inline __m128d nx_loadu_p(const double* a) { return _mm_loadu_pd(a); }
inline void nx_storeu_p(float* to, const __m128& from) { _mm_storeu_ps(to,from); }
inline void nx_storeu_p(double* to, const __m128d& from) { _mm_storeu_pd(to,from); }
template <int N>
struct sse_bench;
template <>
struct sse_bench<0>
{
static const size_t size = 8;
static const size_t number = 4000000;
};
template <>
struct sse_bench<1>
{
static const size_t size = 100;
static const size_t number = 1000000;
};
template <>
struct sse_bench<2>
{
static const size_t size = 1000;
static const size_t number = 100000;
};
template <>
struct sse_bench<3>
{
static const size_t size = 10000;
static const size_t number = 10000;
};
template <class T>
long time_add(T*& t1, T*& t2, T*& res, size_t size, size_t number)
{
build_array(t1,size);
build_array(t2,size);
ptime pt1(microsec_clock::local_time());
for(size_t j = 0; j < number; ++j)
{
for(size_t i = 0; i < size; ++i)
res[i] = t1[i] + t2[i];
}
ptime pt2(microsec_clock::local_time());
time_duration d = pt2-pt1;
return d.total_milliseconds();
}
template <class T>
long time_add_sse(T*& t1, T*& t2, T*& res, size_t size, size_t number)
{
build_array(t1,size);
build_array(t2,size);
ptime pt1(microsec_clock::local_time());
size_t inc = packet_traits<T>::size;
for(size_t j = 0; j < number; ++j)
{
for(size_t i = 0; i < size; i += inc)
nx_store_p(res+i, nx_add_p(nx_load_p(t1+i),
nx_load_p(t2+i)
)
);
}
ptime pt2(microsec_clock::local_time());
time_duration d = pt2-pt1;
return d.total_milliseconds();
}
template <class T>
long time_add_sse_u(T*& t1, T*& t2, T*& res,size_t size, size_t number)
{
build_array(t1,size);
build_array(t2,size);
ptime pt1(microsec_clock::local_time());
size_t inc = packet_traits<T>::size;
for(size_t j = 0; j < number; ++j)
{
for(size_t i = 0; i < size; i += inc)
nx_storeu_p(res+i, nx_add_p(nx_loadu_p(t1+i),
nx_loadu_p(t2+i)
)
);
}
ptime pt2(microsec_clock::local_time());
time_duration d = pt2-pt1;
return d.total_milliseconds();
}
template <class T, int N>
void single_bench_add()
{
sse_bench<N> b;
T* t1, *t2, *tres;
resize_array(t1,b.size);
resize_array(t2,b.size);
resize_array(tres,b.size);
T* ts1, *ts2, *tsres;
resize_array(ts1,b.size);
resize_array(ts2,b.size);
resize_array(tsres,b.size);
T *tu1, *tu2, *tures;
tu1 = new T[b.size];
tu2 = new T[b.size];
tures = new T[b.size];
std::cout << "Size = " << b.size << " - Iteration = " << b.number << std::endl;
std::cout << "Single add : " << time_add(t1,t2,tres,b.size,b.number) << std::endl;
std::cout << "Parallel add : " << time_add_sse(ts1,ts2,tsres,b.size,b.number) << std::endl;
std::cout << "Unaligned add : " << time_add_sse_u(tu1,tu2,tures,b.size,b.number) << std::endl;
std::cout << "Single add : " << time_add(t1,t2,tres,b.size,b.number) << std::endl;
std::cout << "Parallel add : " << time_add_sse(ts1,ts2,tsres,b.size,b.number) << std::endl;
std::cout << "Unaligned add : " << time_add_sse_u(tu1,tu2,tures,b.size,b.number) << std::endl;
std::cout << std::endl;
_mm_free(t1);
_mm_free(t2);
_mm_free(tres);
_mm_free(ts1);
_mm_free(ts2);
_mm_free(tsres);
delete[] tu1;
delete[] tu2,
delete[] tures;
}
template <class T>
void bench_add()
{
single_bench_add<T,0>();
single_bench_add<T,1>();
single_bench_add<T,2>();
single_bench_add<T,3>();
}
}
int main(int agc, char* argv[])
{
std::cout << "FLOAT" << std::endl << std::endl;
bench_sse::bench_add<float>();
std::cout << "DOUBLE" << std::endl << std::endl;
bench_sse::bench_add<double>();
return 0;
} |