#include <Grid.h> using namespace std; using namespace Grid; using namespace Grid::QCD; #define parallel_for PARALLEL_FOR_LOOP for int main (int argc, char ** argv) { Grid_init(&argc,&argv); std::vector<int> latt_size = GridDefaultLatt(); std::vector<int> simd_layout = GridDefaultSimd(Nd,vComplex::Nsimd()); std::vector<int> mpi_layout = GridDefaultMpi(); GridCartesian Grid(latt_size,simd_layout,mpi_layout); GridRedBlackCartesian RBGrid(latt_size,simd_layout,mpi_layout); int threads = GridThread::GetThreads(); std::cout<<GridLogMessage << "Grid is setup to use "<<threads<<" threads"<<std::endl; std::vector<int> seeds({1,2,3,4}); GridParallelRNG pRNG(&Grid); pRNG.SeedRandomDevice(); LatticeGaugeField U(&Grid); SU3::HotConfiguration(pRNG,U); double beta = 1.0; double c1 = 0.331; PlaqPlusRectangleActionR Action(beta,c1); // WilsonGaugeActionR Action(beta); ComplexD S = Action.S(U); // get the deriv of phidag MdagM phi with respect to "U" LatticeGaugeField UdSdU(&Grid); Action.deriv(U,UdSdU); //////////////////////////////////// // Modify the gauge field a little //////////////////////////////////// RealD dt = 0.0001; LatticeColourMatrix mommu(&Grid); LatticeColourMatrix forcemu(&Grid); LatticeGaugeField mom(&Grid); LatticeGaugeField Uprime(&Grid); for(int mu=0;mu<Nd;mu++){ SU3::GaussianLieAlgebraMatrix(pRNG, mommu); // Traceless antihermitian momentum; gaussian in lie alg PokeIndex<LorentzIndex>(mom,mommu,mu); // fourth order exponential approx parallel_for(auto i=mom.begin();i<mom.end();i++){ // exp(pmu dt) * Umu Uprime[i](mu) = U[i](mu) + mom[i](mu)*U[i](mu)*dt ; } } ComplexD Sprime = Action.S(Uprime); ////////////////////////////////////////////// // Use derivative to estimate dS ////////////////////////////////////////////// LatticeComplex dS(&Grid); dS = zero; for(int mu=0;mu<Nd;mu++){ auto UdSdUmu = PeekIndex<LorentzIndex>(UdSdU,mu); mommu = PeekIndex<LorentzIndex>(mom,mu); // Update gauge action density // U = exp(p dt) U // dU/dt = p U // so dSdt = trace( dUdt dSdU) = trace( p UdSdUmu ) dS = dS - trace(mommu*UdSdUmu)*dt*2.0; } Complex dSpred = sum(dS); std::cout << GridLogMessage << " S "<<S<<std::endl; std::cout << GridLogMessage << " Sprime "<<Sprime<<std::endl; std::cout << GridLogMessage << "dS "<<Sprime-S<<std::endl; std::cout << GridLogMessage << "pred dS "<< dSpred <<std::endl; std::cout<< GridLogMessage << "Done" <<std::endl; Grid_finalize(); }