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Grid/benchmarks/Grid_memory_bandwidth.cc

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#include <Grid.h>
using namespace std;
using namespace Grid;
using namespace Grid::QCD;
int main (int argc, char ** argv)
{
Grid_init(&argc,&argv);
std::vector<int> simd_layout({1,2,2,2});
std::vector<int> mpi_layout ({1,1,1,1});
const int Nvec=8;
typedef Lattice< iVector< vReal,Nvec> > LatticeVec;
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int Nloop=1000;
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std::cout << "===================================================================================================="<<std::endl;
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std::cout << "= Benchmarking fused AXPY bandwidth"<<std::endl;
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std::cout << "===================================================================================================="<<std::endl;
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std::cout << " L "<<"\t\t"<<"bytes"<<"\t\t"<<"GB/s"<<std::endl;
std::cout << "----------------------------------------------------------"<<std::endl;
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for(int lat=4;lat<=32;lat+=4){
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std::vector<int> latt_size ({lat,lat,lat,lat});
GridCartesian Grid(latt_size,simd_layout,mpi_layout);
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//GridParallelRNG pRNG(&Grid); pRNG.SeedRandomDevice();
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LatticeVec z(&Grid); //random(pRNG,z);
LatticeVec x(&Grid); //random(pRNG,x);
LatticeVec y(&Grid); //random(pRNG,y);
double a=2.0;
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double start=usecond();
for(int i=0;i<Nloop;i++){
// z=a*x+y;
// inline void axpy(Lattice<vobj> &ret,double a,const Lattice<vobj> &lhs,const Lattice<vobj> &rhs){
axpy(z,a,x,y);
}
double stop=usecond();
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double time = (stop-start)/Nloop*1000;
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double bytes=3*lat*lat*lat*lat*Nvec*sizeof(Real);
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std::cout<<std::setprecision(2) << lat<<"\t\t"<<bytes<<"\t\t"<<bytes/time<<std::endl;
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}
std::cout << "===================================================================================================="<<std::endl;
std::cout << "= Benchmarking a*x + y bandwidth"<<std::endl;
std::cout << "===================================================================================================="<<std::endl;
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std::cout << " L "<<"\t\t"<<"bytes"<<"\t\t"<<"GB/s"<<"\t\tGB/s (eff)"<<std::endl;
std::cout << "----------------------------------------------------------"<<std::endl;
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for(int lat=4;lat<=32;lat+=4){
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std::vector<int> latt_size ({lat,lat,lat,lat});
GridCartesian Grid(latt_size,simd_layout,mpi_layout);
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//GridParallelRNG pRNG(&Grid); pRNG.SeedRandomDevice();
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LatticeVec z(&Grid); //random(pRNG,z);
LatticeVec x(&Grid); //random(pRNG,x);
LatticeVec y(&Grid); //random(pRNG,y);
double a=2.0;
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double start=usecond();
for(int i=0;i<Nloop;i++){
z=a*x+y;
}
double stop=usecond();
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double time = (stop-start)/Nloop*1000;
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double effbytes=3*lat*lat*lat*lat*Nvec*sizeof(Real);
double bytes=5*lat*lat*lat*lat*Nvec*sizeof(Real);
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std::cout<<std::setprecision(2) << lat<<"\t\t"<<bytes<<"\t\t"<<bytes/time<<"\t\t"<<effbytes/time<<std::endl;
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}
std::cout << "===================================================================================================="<<std::endl;
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std::cout << "= Benchmarking SCALE bandwidth"<<std::endl;
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std::cout << "===================================================================================================="<<std::endl;
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std::cout << " L "<<"\t\t"<<"bytes"<<"\t\t"<<"GB/s"<<std::endl;
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for(int lat=4;lat<=32;lat+=4){
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std::vector<int> latt_size ({lat,lat,lat,lat});
GridCartesian Grid(latt_size,simd_layout,mpi_layout);
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//GridParallelRNG pRNG(&Grid); pRNG.SeedRandomDevice();
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LatticeVec z(&Grid); //random(pRNG,z);
LatticeVec x(&Grid); //random(pRNG,x);
LatticeVec y(&Grid); //random(pRNG,y);
RealD a=2.0;
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double start=usecond();
for(int i=0;i<Nloop;i++){
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x=a*z;
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}
double stop=usecond();
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double time = (stop-start)/Nloop*1000;
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double bytes=2*lat*lat*lat*lat*Nvec*sizeof(Real);
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std::cout <<std::setprecision(2) << lat<<"\t\t"<<bytes<<"\t\t"<<bytes/time<<std::endl;
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}
std::cout << "===================================================================================================="<<std::endl;
std::cout << "= Benchmarking READ bandwidth"<<std::endl;
std::cout << "===================================================================================================="<<std::endl;
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std::cout << " L "<<"\t\t"<<"bytes"<<"\t\t"<<"GB/s"<<std::endl;
std::cout << "----------------------------------------------------------"<<std::endl;
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for(int lat=4;lat<=32;lat+=4){
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std::vector<int> latt_size ({lat,lat,lat,lat});
GridCartesian Grid(latt_size,simd_layout,mpi_layout);
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//GridParallelRNG pRNG(&Grid); pRNG.SeedRandomDevice();
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LatticeVec z(&Grid); //random(pRNG,z);
LatticeVec x(&Grid); //random(pRNG,x);
LatticeVec y(&Grid); //random(pRNG,y);
RealD a=2.0;
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ComplexD nn;
double start=usecond();
for(int i=0;i<Nloop;i++){
nn=norm2(x);
}
double stop=usecond();
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double time = (stop-start)/Nloop*1000;
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double bytes=lat*lat*lat*lat*Nvec*sizeof(Real);
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std::cout<<std::setprecision(2) << lat<<"\t\t"<<bytes<<"\t\t"<<bytes/time<<std::endl;
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}
Grid_finalize();
}