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							| @@ -88,7 +88,6 @@ Thumbs.db | |||||||
| # build directory # | # build directory # | ||||||
| ################### | ################### | ||||||
| build*/* | build*/* | ||||||
| Documentation/_build |  | ||||||
|  |  | ||||||
| # IDE related files # | # IDE related files # | ||||||
| ##################### | ##################### | ||||||
|   | |||||||
							
								
								
									
										61
									
								
								.travis.yml
									
									
									
									
									
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							| @@ -0,0 +1,61 @@ | |||||||
|  | language: cpp | ||||||
|  |  | ||||||
|  | cache: | ||||||
|  |   directories: | ||||||
|  |     - clang | ||||||
|  |  | ||||||
|  | matrix: | ||||||
|  |   include: | ||||||
|  |     - os:        osx | ||||||
|  |       osx_image: xcode8.3 | ||||||
|  |       compiler: clang | ||||||
|  |       env: PREC=single | ||||||
|  |     - os:        osx | ||||||
|  |       osx_image: xcode8.3 | ||||||
|  |       compiler: clang | ||||||
|  |       env: PREC=double | ||||||
|  |        | ||||||
|  | before_install: | ||||||
|  |     - export GRIDDIR=`pwd` | ||||||
|  |     - if [[ "$TRAVIS_OS_NAME" == "linux" ]] && [[ "$CC" == "clang" ]] && [ ! -e clang/bin ]; then wget $CLANG_LINK; tar -xf `basename $CLANG_LINK`; mkdir clang; mv clang+*/* clang/; fi | ||||||
|  |     - if [[ "$TRAVIS_OS_NAME" == "linux" ]] && [[ "$CC" == "clang" ]]; then export PATH="${GRIDDIR}/clang/bin:${PATH}"; fi | ||||||
|  |     - if [[ "$TRAVIS_OS_NAME" == "linux" ]] && [[ "$CC" == "clang" ]]; then export LD_LIBRARY_PATH="${GRIDDIR}/clang/lib:${LD_LIBRARY_PATH}"; fi | ||||||
|  |     - if [[ "$TRAVIS_OS_NAME" == "osx" ]]; then brew update; fi | ||||||
|  |     - if [[ "$TRAVIS_OS_NAME" == "osx" ]]; then brew install libmpc openssl; fi | ||||||
|  |      | ||||||
|  | install: | ||||||
|  |     - export CWD=`pwd` | ||||||
|  |     - echo $CWD | ||||||
|  |     - export CC=$CC$VERSION | ||||||
|  |     - export CXX=$CXX$VERSION | ||||||
|  |     - echo $PATH | ||||||
|  |     - which autoconf | ||||||
|  |     - autoconf  --version | ||||||
|  |     - which automake | ||||||
|  |     - automake  --version | ||||||
|  |     - which $CC | ||||||
|  |     - $CC  --version | ||||||
|  |     - which $CXX | ||||||
|  |     - $CXX --version | ||||||
|  |     - if [[ "$TRAVIS_OS_NAME" == "osx" ]]; then export LDFLAGS='-L/usr/local/lib'; fi | ||||||
|  |     - if [[ "$TRAVIS_OS_NAME" == "osx" ]]; then export EXTRACONF='--with-openssl=/usr/local/opt/openssl'; fi | ||||||
|  |      | ||||||
|  | script: | ||||||
|  |     - ./bootstrap.sh | ||||||
|  |     - mkdir build | ||||||
|  |     - cd build | ||||||
|  |     - mkdir lime | ||||||
|  |     - cd lime | ||||||
|  |     - mkdir build | ||||||
|  |     - cd build | ||||||
|  |     - wget http://usqcd-software.github.io/downloads/c-lime/lime-1.3.2.tar.gz | ||||||
|  |     - tar xf lime-1.3.2.tar.gz | ||||||
|  |     - cd lime-1.3.2 | ||||||
|  |     - ./configure --prefix=$CWD/build/lime/install | ||||||
|  |     - make -j4 | ||||||
|  |     - make install | ||||||
|  |     - cd $CWD/build | ||||||
|  |     - ../configure --enable-precision=$PREC --enable-simd=SSE4 --enable-comms=none --with-lime=$CWD/build/lime/install ${EXTRACONF} | ||||||
|  |     - make -j4  | ||||||
|  |     - ./benchmarks/Benchmark_dwf --threads 1 --debug-signals | ||||||
|  |     - make check | ||||||
| @@ -37,9 +37,7 @@ directory | |||||||
| #endif | #endif | ||||||
|  |  | ||||||
|  //disables and intel compiler specific warning (in json.hpp) |  //disables and intel compiler specific warning (in json.hpp) | ||||||
| #ifdef __ICC |  | ||||||
| #pragma warning disable 488   | #pragma warning disable 488   | ||||||
| #endif |  | ||||||
|  |  | ||||||
| #ifdef __NVCC__ | #ifdef __NVCC__ | ||||||
|  //disables nvcc specific warning in json.hpp |  //disables nvcc specific warning in json.hpp | ||||||
|   | |||||||
| @@ -47,9 +47,9 @@ Author: paboyle <paboyle@ph.ed.ac.uk> | |||||||
| #include <Grid/perfmon/PerfCount.h> | #include <Grid/perfmon/PerfCount.h> | ||||||
| #include <Grid/util/Util.h> | #include <Grid/util/Util.h> | ||||||
| #include <Grid/log/Log.h> | #include <Grid/log/Log.h> | ||||||
| #include <Grid/allocator/Allocator.h> | #include <Grid/allocator/AlignedAllocator.h> | ||||||
| #include <Grid/simd/Simd.h> | #include <Grid/simd/Simd.h> | ||||||
| #include <Grid/threads/ThreadReduction.h> | #include <Grid/threads/Threads.h> | ||||||
| #include <Grid/serialisation/Serialisation.h> | #include <Grid/serialisation/Serialisation.h> | ||||||
| #include <Grid/util/Sha.h> | #include <Grid/util/Sha.h> | ||||||
| #include <Grid/communicator/Communicator.h>  | #include <Grid/communicator/Communicator.h>  | ||||||
|   | |||||||
| @@ -6,7 +6,6 @@ | |||||||
| /////////////////// | /////////////////// | ||||||
| #include <cassert> | #include <cassert> | ||||||
| #include <complex> | #include <complex> | ||||||
| #include <memory> |  | ||||||
| #include <vector> | #include <vector> | ||||||
| #include <array> | #include <array> | ||||||
| #include <string> | #include <string> | ||||||
| @@ -28,7 +27,4 @@ | |||||||
| /////////////////// | /////////////////// | ||||||
| #include "Config.h" | #include "Config.h" | ||||||
|  |  | ||||||
| #ifdef TOFU |  | ||||||
| #undef GRID_COMMS_THREADS |  | ||||||
| #endif |  | ||||||
| #endif /* GRID_STD_H */ | #endif /* GRID_STD_H */ | ||||||
|   | |||||||
| @@ -18,28 +18,21 @@ | |||||||
| #pragma push_macro("__CUDA_ARCH__") | #pragma push_macro("__CUDA_ARCH__") | ||||||
| #pragma push_macro("__NVCC__") | #pragma push_macro("__NVCC__") | ||||||
| #pragma push_macro("__CUDACC__") | #pragma push_macro("__CUDACC__") | ||||||
| #undef __CUDA_ARCH__ |  | ||||||
| #undef __NVCC__ | #undef __NVCC__ | ||||||
| #undef __CUDACC__ | #undef __CUDACC__ | ||||||
|  | #undef __CUDA_ARCH__ | ||||||
| #define __NVCC__REDEFINE__ | #define __NVCC__REDEFINE__ | ||||||
| #endif  | #endif  | ||||||
|  |  | ||||||
| /* SYCL save and restore compile environment*/ | /* SYCL save and restore compile environment*/ | ||||||
| #ifdef GRID_SYCL | #ifdef __SYCL_DEVICE_ONLY__   | ||||||
| #pragma push | #pragma push | ||||||
| #pragma push_macro("__SYCL_DEVICE_ONLY__") | #pragma push_macro("__SYCL_DEVICE_ONLY__") | ||||||
| #undef __SYCL_DEVICE_ONLY__ | #undef __SYCL_DEVICE_ONLY__ | ||||||
|  | #undef EIGEN_USE_SYCL | ||||||
| #define EIGEN_DONT_VECTORIZE | #define EIGEN_DONT_VECTORIZE | ||||||
| //#undef EIGEN_USE_SYCL |  | ||||||
| #define __SYCL__REDEFINE__ |  | ||||||
| #endif | #endif | ||||||
|  |  | ||||||
| /* HIP save and restore compile environment*/ |  | ||||||
| #ifdef GRID_HIP |  | ||||||
| #pragma push |  | ||||||
| #pragma push_macro("__HIP_DEVICE_COMPILE__") |  | ||||||
| #endif |  | ||||||
| #define EIGEN_NO_HIP |  | ||||||
|  |  | ||||||
| #include <Grid/Eigen/Dense> | #include <Grid/Eigen/Dense> | ||||||
| #include <Grid/Eigen/unsupported/CXX11/Tensor> | #include <Grid/Eigen/unsupported/CXX11/Tensor> | ||||||
| @@ -58,12 +51,6 @@ | |||||||
| #pragma pop | #pragma pop | ||||||
| #endif | #endif | ||||||
|  |  | ||||||
| /*HIP restore*/ |  | ||||||
| #ifdef __HIP__REDEFINE__ |  | ||||||
| #pragma pop_macro("__HIP_DEVICE_COMPILE__") |  | ||||||
| #pragma pop |  | ||||||
| #endif |  | ||||||
|  |  | ||||||
| #if defined __GNUC__ | #if defined __GNUC__ | ||||||
| #pragma GCC diagnostic pop | #pragma GCC diagnostic pop | ||||||
| #endif | #endif | ||||||
|   | |||||||
| @@ -21,8 +21,7 @@ if BUILD_HDF5 | |||||||
|   extra_headers+=serialisation/Hdf5Type.h |   extra_headers+=serialisation/Hdf5Type.h | ||||||
| endif | endif | ||||||
|  |  | ||||||
|  | all: version-cache | ||||||
| all: version-cache Version.h |  | ||||||
|  |  | ||||||
| version-cache: | version-cache: | ||||||
| 	@if [ `git status --porcelain | grep -v '??' | wc -l` -gt 0 ]; then\ | 	@if [ `git status --porcelain | grep -v '??' | wc -l` -gt 0 ]; then\ | ||||||
| @@ -43,7 +42,7 @@ version-cache: | |||||||
| 	fi;\ | 	fi;\ | ||||||
| 	rm -f vertmp | 	rm -f vertmp | ||||||
|  |  | ||||||
| Version.h: version-cache | Version.h: | ||||||
| 	cp version-cache Version.h | 	cp version-cache Version.h | ||||||
|  |  | ||||||
| .PHONY: version-cache | .PHONY: version-cache | ||||||
| @@ -54,19 +53,6 @@ Version.h: version-cache | |||||||
| include Make.inc | include Make.inc | ||||||
| include Eigen.inc | include Eigen.inc | ||||||
|  |  | ||||||
| extra_sources+=$(WILS_FERMION_FILES) |  | ||||||
| extra_sources+=$(STAG_FERMION_FILES) |  | ||||||
| if BUILD_ZMOBIUS |  | ||||||
|   extra_sources+=$(ZWILS_FERMION_FILES) |  | ||||||
| endif |  | ||||||
| if BUILD_GPARITY |  | ||||||
|   extra_sources+=$(GP_FERMION_FILES) |  | ||||||
| endif |  | ||||||
| if BUILD_FERMION_REPS |  | ||||||
|   extra_sources+=$(ADJ_FERMION_FILES) |  | ||||||
|   extra_sources+=$(TWOIND_FERMION_FILES) |  | ||||||
| endif |  | ||||||
|  |  | ||||||
| lib_LIBRARIES = libGrid.a | lib_LIBRARIES = libGrid.a | ||||||
|  |  | ||||||
| CCFILES += $(extra_sources) | CCFILES += $(extra_sources) | ||||||
|   | |||||||
| @@ -29,11 +29,9 @@ Author: Peter Boyle <paboyle@ph.ed.ac.uk> | |||||||
| #ifndef GRID_ALGORITHMS_H | #ifndef GRID_ALGORITHMS_H | ||||||
| #define GRID_ALGORITHMS_H | #define GRID_ALGORITHMS_H | ||||||
|  |  | ||||||
| NAMESPACE_CHECK(algorithms); |  | ||||||
| #include <Grid/algorithms/SparseMatrix.h> | #include <Grid/algorithms/SparseMatrix.h> | ||||||
| #include <Grid/algorithms/LinearOperator.h> | #include <Grid/algorithms/LinearOperator.h> | ||||||
| #include <Grid/algorithms/Preconditioner.h> | #include <Grid/algorithms/Preconditioner.h> | ||||||
| NAMESPACE_CHECK(SparseMatrix); |  | ||||||
|  |  | ||||||
| #include <Grid/algorithms/approx/Zolotarev.h> | #include <Grid/algorithms/approx/Zolotarev.h> | ||||||
| #include <Grid/algorithms/approx/Chebyshev.h> | #include <Grid/algorithms/approx/Chebyshev.h> | ||||||
| @@ -43,12 +41,10 @@ NAMESPACE_CHECK(SparseMatrix); | |||||||
| #include <Grid/algorithms/approx/Forecast.h> | #include <Grid/algorithms/approx/Forecast.h> | ||||||
| #include <Grid/algorithms/approx/RemezGeneral.h> | #include <Grid/algorithms/approx/RemezGeneral.h> | ||||||
| #include <Grid/algorithms/approx/ZMobius.h> | #include <Grid/algorithms/approx/ZMobius.h> | ||||||
| NAMESPACE_CHECK(approx); |  | ||||||
| #include <Grid/algorithms/iterative/Deflation.h> | #include <Grid/algorithms/iterative/Deflation.h> | ||||||
| #include <Grid/algorithms/iterative/ConjugateGradient.h> | #include <Grid/algorithms/iterative/ConjugateGradient.h> | ||||||
| NAMESPACE_CHECK(ConjGrad); |  | ||||||
| #include <Grid/algorithms/iterative/BiCGSTAB.h> | #include <Grid/algorithms/iterative/BiCGSTAB.h> | ||||||
| NAMESPACE_CHECK(BiCGSTAB); |  | ||||||
| #include <Grid/algorithms/iterative/ConjugateResidual.h> | #include <Grid/algorithms/iterative/ConjugateResidual.h> | ||||||
| #include <Grid/algorithms/iterative/NormalEquations.h> | #include <Grid/algorithms/iterative/NormalEquations.h> | ||||||
| #include <Grid/algorithms/iterative/SchurRedBlack.h> | #include <Grid/algorithms/iterative/SchurRedBlack.h> | ||||||
| @@ -66,9 +62,7 @@ NAMESPACE_CHECK(BiCGSTAB); | |||||||
| #include <Grid/algorithms/iterative/ImplicitlyRestartedLanczos.h> | #include <Grid/algorithms/iterative/ImplicitlyRestartedLanczos.h> | ||||||
| #include <Grid/algorithms/iterative/PowerMethod.h> | #include <Grid/algorithms/iterative/PowerMethod.h> | ||||||
|  |  | ||||||
| NAMESPACE_CHECK(PowerMethod); |  | ||||||
| #include <Grid/algorithms/CoarsenedMatrix.h> | #include <Grid/algorithms/CoarsenedMatrix.h> | ||||||
| NAMESPACE_CHECK(CoarsendMatrix); |  | ||||||
| #include <Grid/algorithms/FFT.h> | #include <Grid/algorithms/FFT.h> | ||||||
|  |  | ||||||
| #endif | #endif | ||||||
|   | |||||||
										
											
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							| @@ -1,3 +1,4 @@ | |||||||
|  |  | ||||||
| /************************************************************************************* | /************************************************************************************* | ||||||
|  |  | ||||||
|     Grid physics library, www.github.com/paboyle/Grid  |     Grid physics library, www.github.com/paboyle/Grid  | ||||||
| @@ -36,6 +37,7 @@ Author: Peter Boyle <paboyle@ph.ed.ac.uk> | |||||||
| #endif | #endif | ||||||
| #endif | #endif | ||||||
|  |  | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); | NAMESPACE_BEGIN(Grid); | ||||||
|  |  | ||||||
| template<class scalar> struct FFTW { }; | template<class scalar> struct FFTW { }; | ||||||
| @@ -136,7 +138,7 @@ public: | |||||||
|     flops=0; |     flops=0; | ||||||
|     usec =0; |     usec =0; | ||||||
|     Coordinate layout(Nd,1); |     Coordinate layout(Nd,1); | ||||||
|     sgrid = new GridCartesian(dimensions,layout,processors,*grid); |     sgrid = new GridCartesian(dimensions,layout,processors); | ||||||
|   }; |   }; | ||||||
|      |      | ||||||
|   ~FFT ( void)  { |   ~FFT ( void)  { | ||||||
| @@ -182,14 +184,14 @@ public: | |||||||
|     pencil_gd[dim] = G*processors[dim]; |     pencil_gd[dim] = G*processors[dim]; | ||||||
|        |        | ||||||
|     // Pencil global vol LxLxGxLxL per node |     // Pencil global vol LxLxGxLxL per node | ||||||
|     GridCartesian pencil_g(pencil_gd,layout,processors,*vgrid); |     GridCartesian pencil_g(pencil_gd,layout,processors); | ||||||
|        |        | ||||||
|     // Construct pencils |     // Construct pencils | ||||||
|     typedef typename vobj::scalar_object sobj; |     typedef typename vobj::scalar_object sobj; | ||||||
|     typedef typename sobj::scalar_type   scalar; |     typedef typename sobj::scalar_type   scalar; | ||||||
|        |        | ||||||
|     Lattice<sobj> pgbuf(&pencil_g); |     Lattice<sobj> pgbuf(&pencil_g); | ||||||
|     autoView(pgbuf_v , pgbuf, CpuWrite); |     auto pgbuf_v = pgbuf.View(); | ||||||
|  |  | ||||||
|     typedef typename FFTW<scalar>::FFTW_scalar FFTW_scalar; |     typedef typename FFTW<scalar>::FFTW_scalar FFTW_scalar; | ||||||
|     typedef typename FFTW<scalar>::FFTW_plan   FFTW_plan; |     typedef typename FFTW<scalar>::FFTW_plan   FFTW_plan; | ||||||
| @@ -230,18 +232,15 @@ public: | |||||||
|     result = source; |     result = source; | ||||||
|     int pc = processor_coor[dim]; |     int pc = processor_coor[dim]; | ||||||
|     for(int p=0;p<processors[dim];p++) { |     for(int p=0;p<processors[dim];p++) { | ||||||
|       { |  | ||||||
| 	autoView(r_v,result,CpuRead); |  | ||||||
| 	autoView(p_v,pgbuf,CpuWrite); |  | ||||||
|       thread_for(idx, sgrid->lSites(),{ |       thread_for(idx, sgrid->lSites(),{ | ||||||
|           Coordinate cbuf(Nd); |           Coordinate cbuf(Nd); | ||||||
|           sobj s; |           sobj s; | ||||||
| 	  sgrid->LocalIndexToLocalCoor(idx,cbuf); | 	  sgrid->LocalIndexToLocalCoor(idx,cbuf); | ||||||
| 	  peekLocalSite(s,r_v,cbuf); | 	  peekLocalSite(s,result,cbuf); | ||||||
| 	  cbuf[dim]+=((pc+p) % processors[dim])*L; | 	  cbuf[dim]+=((pc+p) % processors[dim])*L; | ||||||
| 	  pokeLocalSite(s,p_v,cbuf); | 	  //            cbuf[dim]+=p*L; | ||||||
|  | 	  pokeLocalSite(s,pgbuf,cbuf); | ||||||
|       }); |       }); | ||||||
|       } |  | ||||||
|       if (p != processors[dim] - 1) { |       if (p != processors[dim] - 1) { | ||||||
| 	result = Cshift(result,dim,L); | 	result = Cshift(result,dim,L); | ||||||
|       } |       } | ||||||
| @@ -270,19 +269,15 @@ public: | |||||||
|     flops+= flops_call*NN; |     flops+= flops_call*NN; | ||||||
|        |        | ||||||
|     // writing out result |     // writing out result | ||||||
|     { |  | ||||||
|       autoView(pgbuf_v,pgbuf,CpuRead); |  | ||||||
|       autoView(result_v,result,CpuWrite); |  | ||||||
|     thread_for(idx,sgrid->lSites(),{ |     thread_for(idx,sgrid->lSites(),{ | ||||||
| 	Coordinate clbuf(Nd), cgbuf(Nd); | 	Coordinate clbuf(Nd), cgbuf(Nd); | ||||||
| 	sobj s; | 	sobj s; | ||||||
| 	sgrid->LocalIndexToLocalCoor(idx,clbuf); | 	sgrid->LocalIndexToLocalCoor(idx,clbuf); | ||||||
| 	cgbuf = clbuf; | 	cgbuf = clbuf; | ||||||
| 	cgbuf[dim] = clbuf[dim]+L*pc; | 	cgbuf[dim] = clbuf[dim]+L*pc; | ||||||
| 	peekLocalSite(s,pgbuf_v,cgbuf); | 	peekLocalSite(s,pgbuf,cgbuf); | ||||||
| 	pokeLocalSite(s,result_v,clbuf); | 	pokeLocalSite(s,result,clbuf); | ||||||
|     }); |     }); | ||||||
|     } |  | ||||||
|     result = result*div; |     result = result*div; | ||||||
|        |        | ||||||
|     // destroying plan |     // destroying plan | ||||||
|   | |||||||
| @@ -52,7 +52,6 @@ public: | |||||||
|   virtual void AdjOp  (const Field &in, Field &out) = 0; // Abstract base |   virtual void AdjOp  (const Field &in, Field &out) = 0; // Abstract base | ||||||
|   virtual void HermOpAndNorm(const Field &in, Field &out,RealD &n1,RealD &n2)=0; |   virtual void HermOpAndNorm(const Field &in, Field &out,RealD &n1,RealD &n2)=0; | ||||||
|   virtual void HermOp(const Field &in, Field &out)=0; |   virtual void HermOp(const Field &in, Field &out)=0; | ||||||
|   virtual ~LinearOperatorBase(){}; |  | ||||||
| }; | }; | ||||||
|  |  | ||||||
|  |  | ||||||
| @@ -508,7 +507,7 @@ class SchurStaggeredOperator :  public SchurOperatorBase<Field> { | |||||||
|   virtual  void MpcDag   (const Field &in, Field &out){ |   virtual  void MpcDag   (const Field &in, Field &out){ | ||||||
|     Mpc(in,out); |     Mpc(in,out); | ||||||
|   } |   } | ||||||
|   virtual void MpcDagMpc(const Field &in, Field &out) { |   virtual void MpcDagMpc(const Field &in, Field &out,RealD &ni,RealD &no) { | ||||||
|     assert(0);// Never need with staggered |     assert(0);// Never need with staggered | ||||||
|   } |   } | ||||||
| }; | }; | ||||||
| @@ -531,16 +530,6 @@ public: | |||||||
| template<class Field> class LinearFunction { | template<class Field> class LinearFunction { | ||||||
| public: | public: | ||||||
|   virtual void operator() (const Field &in, Field &out) = 0; |   virtual void operator() (const Field &in, Field &out) = 0; | ||||||
|  |  | ||||||
|   virtual void operator() (const std::vector<Field> &in, std::vector<Field> &out) |  | ||||||
|   { |  | ||||||
|     assert(in.size() == out.size()); |  | ||||||
|  |  | ||||||
|     for (unsigned int i = 0; i < in.size(); ++i) |  | ||||||
|     { |  | ||||||
|       (*this)(in[i], out[i]); |  | ||||||
|     } |  | ||||||
|   } |  | ||||||
| }; | }; | ||||||
|  |  | ||||||
| template<class Field> class IdentityLinearFunction : public LinearFunction<Field> { | template<class Field> class IdentityLinearFunction : public LinearFunction<Field> { | ||||||
| @@ -586,7 +575,6 @@ class HermOpOperatorFunction : public OperatorFunction<Field> { | |||||||
| template<typename Field> | template<typename Field> | ||||||
| class PlainHermOp : public LinearFunction<Field> { | class PlainHermOp : public LinearFunction<Field> { | ||||||
| public: | public: | ||||||
|   using LinearFunction<Field>::operator(); |  | ||||||
|   LinearOperatorBase<Field> &_Linop; |   LinearOperatorBase<Field> &_Linop; | ||||||
|        |        | ||||||
|   PlainHermOp(LinearOperatorBase<Field>& linop) : _Linop(linop)  |   PlainHermOp(LinearOperatorBase<Field>& linop) : _Linop(linop)  | ||||||
| @@ -600,7 +588,6 @@ public: | |||||||
| template<typename Field> | template<typename Field> | ||||||
| class FunctionHermOp : public LinearFunction<Field> { | class FunctionHermOp : public LinearFunction<Field> { | ||||||
| public: | public: | ||||||
|   using LinearFunction<Field>::operator();  |  | ||||||
|   OperatorFunction<Field>   & _poly; |   OperatorFunction<Field>   & _poly; | ||||||
|   LinearOperatorBase<Field> &_Linop; |   LinearOperatorBase<Field> &_Linop; | ||||||
|        |        | ||||||
|   | |||||||
| @@ -30,19 +30,13 @@ Author: Azusa Yamaguchi <ayamaguc@staffmail.ed.ac.uk> | |||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); | NAMESPACE_BEGIN(Grid); | ||||||
|  |  | ||||||
| template<class Field> using Preconditioner =  LinearFunction<Field> ; |  | ||||||
|  |  | ||||||
| /* |  | ||||||
| template<class Field> class Preconditioner :  public LinearFunction<Field> {  | template<class Field> class Preconditioner :  public LinearFunction<Field> {  | ||||||
|   using LinearFunction<Field>::operator(); |  | ||||||
|   virtual void operator()(const Field &src, Field & psi)=0; |   virtual void operator()(const Field &src, Field & psi)=0; | ||||||
| }; | }; | ||||||
| */ |  | ||||||
|  |  | ||||||
| template<class Field> class TrivialPrecon :  public Preconditioner<Field> {  | template<class Field> class TrivialPrecon :  public Preconditioner<Field> {  | ||||||
| public: | public: | ||||||
|   using Preconditioner<Field>::operator(); |   void operator()(const Field &src, Field & psi){ | ||||||
|   virtual void operator()(const Field &src, Field & psi){ |  | ||||||
|     psi = src; |     psi = src; | ||||||
|   } |   } | ||||||
|   TrivialPrecon(void){}; |   TrivialPrecon(void){}; | ||||||
|   | |||||||
| @@ -48,7 +48,6 @@ public: | |||||||
|   virtual  void Mdiag    (const Field &in, Field &out)=0; |   virtual  void Mdiag    (const Field &in, Field &out)=0; | ||||||
|   virtual  void Mdir     (const Field &in, Field &out,int dir, int disp)=0; |   virtual  void Mdir     (const Field &in, Field &out,int dir, int disp)=0; | ||||||
|   virtual  void MdirAll  (const Field &in, std::vector<Field> &out)=0; |   virtual  void MdirAll  (const Field &in, std::vector<Field> &out)=0; | ||||||
|   virtual ~SparseMatrixBase() {}; |  | ||||||
| }; | }; | ||||||
|  |  | ||||||
| ///////////////////////////////////////////////////////////////////////////////////////////// | ///////////////////////////////////////////////////////////////////////////////////////////// | ||||||
| @@ -73,7 +72,7 @@ public: | |||||||
|   virtual  void MeooeDag    (const Field &in, Field &out)=0; |   virtual  void MeooeDag    (const Field &in, Field &out)=0; | ||||||
|   virtual  void MooeeDag    (const Field &in, Field &out)=0; |   virtual  void MooeeDag    (const Field &in, Field &out)=0; | ||||||
|   virtual  void MooeeInvDag (const Field &in, Field &out)=0; |   virtual  void MooeeInvDag (const Field &in, Field &out)=0; | ||||||
|   virtual ~CheckerBoardedSparseMatrixBase() {}; |  | ||||||
| }; | }; | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); | NAMESPACE_END(Grid); | ||||||
|   | |||||||
| @@ -122,14 +122,12 @@ class BiCGSTAB : public OperatorFunction<Field> | |||||||
|  |  | ||||||
|         LinearCombTimer.Start(); |         LinearCombTimer.Start(); | ||||||
|         bo = beta * omega; |         bo = beta * omega; | ||||||
| 	{ |         auto p_v = p.View(); | ||||||
| 	  autoView( p_v , p, AcceleratorWrite); |         auto r_v = r.View(); | ||||||
| 	  autoView( r_v , r, AcceleratorRead); |         auto v_v = v.View(); | ||||||
| 	  autoView( v_v , v, AcceleratorRead); |  | ||||||
|         accelerator_for(ss, p_v.size(), Field::vector_object::Nsimd(),{ |         accelerator_for(ss, p_v.size(), Field::vector_object::Nsimd(),{ | ||||||
|           coalescedWrite(p_v[ss], beta*p_v(ss) - bo*v_v(ss) + r_v(ss)); |           coalescedWrite(p_v[ss], beta*p_v(ss) - bo*v_v(ss) + r_v(ss)); | ||||||
|         }); |         }); | ||||||
| 	} |  | ||||||
|         LinearCombTimer.Stop(); |         LinearCombTimer.Stop(); | ||||||
|         LinalgTimer.Stop(); |         LinalgTimer.Stop(); | ||||||
|  |  | ||||||
| @@ -144,20 +142,16 @@ class BiCGSTAB : public OperatorFunction<Field> | |||||||
|         alpha = rho / Calpha.real(); |         alpha = rho / Calpha.real(); | ||||||
|  |  | ||||||
|         LinearCombTimer.Start(); |         LinearCombTimer.Start(); | ||||||
| 	{ |         auto h_v = h.View(); | ||||||
| 	  autoView( p_v , p, AcceleratorRead); |         auto psi_v = psi.View(); | ||||||
| 	  autoView( r_v , r, AcceleratorRead); |  | ||||||
| 	  autoView( v_v , v, AcceleratorRead); |  | ||||||
| 	  autoView( psi_v,psi, AcceleratorRead); |  | ||||||
| 	  autoView( h_v  ,  h, AcceleratorWrite); |  | ||||||
| 	  autoView( s_v  ,  s, AcceleratorWrite); |  | ||||||
|         accelerator_for(ss, h_v.size(), Field::vector_object::Nsimd(),{ |         accelerator_for(ss, h_v.size(), Field::vector_object::Nsimd(),{ | ||||||
|           coalescedWrite(h_v[ss], alpha*p_v(ss) + psi_v(ss)); |           coalescedWrite(h_v[ss], alpha*p_v(ss) + psi_v(ss)); | ||||||
|         }); |         }); | ||||||
|  |          | ||||||
|  |         auto s_v = s.View(); | ||||||
|         accelerator_for(ss, s_v.size(), Field::vector_object::Nsimd(),{ |         accelerator_for(ss, s_v.size(), Field::vector_object::Nsimd(),{ | ||||||
|           coalescedWrite(s_v[ss], -alpha*v_v(ss) + r_v(ss)); |           coalescedWrite(s_v[ss], -alpha*v_v(ss) + r_v(ss)); | ||||||
|         }); |         }); | ||||||
|         } |  | ||||||
|         LinearCombTimer.Stop(); |         LinearCombTimer.Stop(); | ||||||
|         LinalgTimer.Stop(); |         LinalgTimer.Stop(); | ||||||
|  |  | ||||||
| @@ -172,17 +166,11 @@ class BiCGSTAB : public OperatorFunction<Field> | |||||||
|         omega = Comega.real() / norm2(t); |         omega = Comega.real() / norm2(t); | ||||||
|  |  | ||||||
|         LinearCombTimer.Start(); |         LinearCombTimer.Start(); | ||||||
| 	{ |         auto t_v = t.View(); | ||||||
| 	  autoView( psi_v,psi, AcceleratorWrite); |  | ||||||
| 	  autoView( r_v , r, AcceleratorWrite); |  | ||||||
| 	  autoView( h_v , h, AcceleratorRead); |  | ||||||
| 	  autoView( s_v , s, AcceleratorRead); |  | ||||||
| 	  autoView( t_v , t, AcceleratorRead); |  | ||||||
|         accelerator_for(ss, psi_v.size(), Field::vector_object::Nsimd(),{ |         accelerator_for(ss, psi_v.size(), Field::vector_object::Nsimd(),{ | ||||||
|           coalescedWrite(psi_v[ss], h_v(ss) + omega * s_v(ss)); |           coalescedWrite(psi_v[ss], h_v(ss) + omega * s_v(ss)); | ||||||
|           coalescedWrite(r_v[ss], -omega * t_v(ss) + s_v(ss)); |           coalescedWrite(r_v[ss], -omega * t_v(ss) + s_v(ss)); | ||||||
|         }); |         }); | ||||||
| 	} |  | ||||||
|         LinearCombTimer.Stop(); |         LinearCombTimer.Stop(); | ||||||
|  |  | ||||||
|         cp = norm2(r); |         cp = norm2(r); | ||||||
|   | |||||||
| @@ -37,7 +37,6 @@ template<class FieldD, class FieldF, typename std::enable_if< getPrecision<Field | |||||||
| class MixedPrecisionBiCGSTAB : public LinearFunction<FieldD>  | class MixedPrecisionBiCGSTAB : public LinearFunction<FieldD>  | ||||||
| { | { | ||||||
|   public:                                                 |   public:                                                 | ||||||
|     using LinearFunction<FieldD>::operator(); |  | ||||||
|     RealD   Tolerance; |     RealD   Tolerance; | ||||||
|     RealD   InnerTolerance; // Initial tolerance for inner CG. Defaults to Tolerance but can be changed |     RealD   InnerTolerance; // Initial tolerance for inner CG. Defaults to Tolerance but can be changed | ||||||
|     Integer MaxInnerIterations; |     Integer MaxInnerIterations; | ||||||
|   | |||||||
| @@ -140,15 +140,13 @@ public: | |||||||
|       b = cp / c; |       b = cp / c; | ||||||
|  |  | ||||||
|       LinearCombTimer.Start(); |       LinearCombTimer.Start(); | ||||||
|       { |       auto psi_v = psi.View(); | ||||||
| 	autoView( psi_v , psi, AcceleratorWrite); |       auto p_v   = p.View(); | ||||||
| 	autoView( p_v   , p,   AcceleratorWrite); |       auto r_v   = r.View(); | ||||||
| 	autoView( r_v   , r,   AcceleratorWrite); |  | ||||||
|       accelerator_for(ss,p_v.size(), Field::vector_object::Nsimd(),{ |       accelerator_for(ss,p_v.size(), Field::vector_object::Nsimd(),{ | ||||||
| 	  coalescedWrite(psi_v[ss], a      *  p_v(ss) + psi_v(ss)); | 	  coalescedWrite(psi_v[ss], a      *  p_v(ss) + psi_v(ss)); | ||||||
| 	  coalescedWrite(p_v[ss]  , b      *  p_v(ss) + r_v  (ss)); | 	  coalescedWrite(p_v[ss]  , b      *  p_v(ss) + r_v  (ss)); | ||||||
|       }); |       }); | ||||||
|       } |  | ||||||
|       LinearCombTimer.Stop(); |       LinearCombTimer.Stop(); | ||||||
|       LinalgTimer.Stop(); |       LinalgTimer.Stop(); | ||||||
|  |  | ||||||
|   | |||||||
| @@ -36,7 +36,6 @@ NAMESPACE_BEGIN(Grid); | |||||||
|     typename std::enable_if< getPrecision<FieldF>::value == 1, int>::type = 0>  |     typename std::enable_if< getPrecision<FieldF>::value == 1, int>::type = 0>  | ||||||
|   class MixedPrecisionConjugateGradient : public LinearFunction<FieldD> { |   class MixedPrecisionConjugateGradient : public LinearFunction<FieldD> { | ||||||
|   public:                                                 |   public:                                                 | ||||||
|     using LinearFunction<FieldD>::operator(); |  | ||||||
|     RealD   Tolerance; |     RealD   Tolerance; | ||||||
|     RealD   InnerTolerance; //Initial tolerance for inner CG. Defaults to Tolerance but can be changed |     RealD   InnerTolerance; //Initial tolerance for inner CG. Defaults to Tolerance but can be changed | ||||||
|     Integer MaxInnerIterations; |     Integer MaxInnerIterations; | ||||||
|   | |||||||
| @@ -33,19 +33,16 @@ namespace Grid { | |||||||
| template<class Field> | template<class Field> | ||||||
| class ZeroGuesser: public LinearFunction<Field> { | class ZeroGuesser: public LinearFunction<Field> { | ||||||
| public: | public: | ||||||
|   using LinearFunction<Field>::operator(); |  | ||||||
|     virtual void operator()(const Field &src, Field &guess) { guess = Zero(); }; |     virtual void operator()(const Field &src, Field &guess) { guess = Zero(); }; | ||||||
| }; | }; | ||||||
| template<class Field> | template<class Field> | ||||||
| class DoNothingGuesser: public LinearFunction<Field> { | class DoNothingGuesser: public LinearFunction<Field> { | ||||||
| public: | public: | ||||||
|   using LinearFunction<Field>::operator(); |  | ||||||
|   virtual void operator()(const Field &src, Field &guess) {  }; |   virtual void operator()(const Field &src, Field &guess) {  }; | ||||||
| }; | }; | ||||||
| template<class Field> | template<class Field> | ||||||
| class SourceGuesser: public LinearFunction<Field> { | class SourceGuesser: public LinearFunction<Field> { | ||||||
| public: | public: | ||||||
|   using LinearFunction<Field>::operator(); |  | ||||||
|   virtual void operator()(const Field &src, Field &guess) { guess = src; }; |   virtual void operator()(const Field &src, Field &guess) { guess = src; }; | ||||||
| }; | }; | ||||||
|  |  | ||||||
| @@ -57,24 +54,15 @@ class DeflatedGuesser: public LinearFunction<Field> { | |||||||
| private: | private: | ||||||
|   const std::vector<Field> &evec; |   const std::vector<Field> &evec; | ||||||
|   const std::vector<RealD> &eval; |   const std::vector<RealD> &eval; | ||||||
|   const unsigned int       N; |  | ||||||
|  |  | ||||||
| public: | public: | ||||||
|   using LinearFunction<Field>::operator(); |  | ||||||
|  |  | ||||||
|   DeflatedGuesser(const std::vector<Field> & _evec,const std::vector<RealD> & _eval) |   DeflatedGuesser(const std::vector<Field> & _evec,const std::vector<RealD> & _eval) : evec(_evec), eval(_eval) {}; | ||||||
|   : DeflatedGuesser(_evec, _eval, _evec.size()) |  | ||||||
|   {} |  | ||||||
|  |  | ||||||
|   DeflatedGuesser(const std::vector<Field> & _evec, const std::vector<RealD> & _eval, const unsigned int _N) |  | ||||||
|   : evec(_evec), eval(_eval), N(_N) |  | ||||||
|   { |  | ||||||
|     assert(evec.size()==eval.size()); |  | ||||||
|     assert(N <= evec.size()); |  | ||||||
|   }  |  | ||||||
|  |  | ||||||
|   virtual void operator()(const Field &src,Field &guess) { |   virtual void operator()(const Field &src,Field &guess) { | ||||||
|     guess = Zero(); |     guess = Zero(); | ||||||
|  |     assert(evec.size()==eval.size()); | ||||||
|  |     auto N = evec.size(); | ||||||
|     for (int i=0;i<N;i++) { |     for (int i=0;i<N;i++) { | ||||||
|       const Field& tmp = evec[i]; |       const Field& tmp = evec[i]; | ||||||
|       axpy(guess,TensorRemove(innerProduct(tmp,src)) / eval[i],tmp,guess); |       axpy(guess,TensorRemove(innerProduct(tmp,src)) / eval[i],tmp,guess); | ||||||
| @@ -91,7 +79,6 @@ private: | |||||||
|   const std::vector<RealD>       &eval_coarse; |   const std::vector<RealD>       &eval_coarse; | ||||||
| public: | public: | ||||||
|    |    | ||||||
|   using LinearFunction<FineField>::operator(); |  | ||||||
|   LocalCoherenceDeflatedGuesser(const std::vector<FineField>   &_subspace, |   LocalCoherenceDeflatedGuesser(const std::vector<FineField>   &_subspace, | ||||||
| 				const std::vector<CoarseField> &_evec_coarse, | 				const std::vector<CoarseField> &_evec_coarse, | ||||||
| 				const std::vector<RealD>       &_eval_coarse) | 				const std::vector<RealD>       &_eval_coarse) | ||||||
|   | |||||||
| @@ -67,7 +67,6 @@ public: | |||||||
| template<class Fobj,class CComplex,int nbasis> | template<class Fobj,class CComplex,int nbasis> | ||||||
| class ProjectedHermOp : public LinearFunction<Lattice<iVector<CComplex,nbasis > > > { | class ProjectedHermOp : public LinearFunction<Lattice<iVector<CComplex,nbasis > > > { | ||||||
| public: | public: | ||||||
|   using LinearFunction<Lattice<iVector<CComplex,nbasis > > >::operator(); |  | ||||||
|   typedef iVector<CComplex,nbasis >           CoarseSiteVector; |   typedef iVector<CComplex,nbasis >           CoarseSiteVector; | ||||||
|   typedef Lattice<CoarseSiteVector>           CoarseField; |   typedef Lattice<CoarseSiteVector>           CoarseField; | ||||||
|   typedef Lattice<CComplex>   CoarseScalar; // used for inner products on fine field |   typedef Lattice<CComplex>   CoarseScalar; // used for inner products on fine field | ||||||
| @@ -98,7 +97,6 @@ public: | |||||||
| template<class Fobj,class CComplex,int nbasis> | template<class Fobj,class CComplex,int nbasis> | ||||||
| class ProjectedFunctionHermOp : public LinearFunction<Lattice<iVector<CComplex,nbasis > > > { | class ProjectedFunctionHermOp : public LinearFunction<Lattice<iVector<CComplex,nbasis > > > { | ||||||
| public: | public: | ||||||
|   using LinearFunction<Lattice<iVector<CComplex,nbasis > > >::operator(); |  | ||||||
|   typedef iVector<CComplex,nbasis >           CoarseSiteVector; |   typedef iVector<CComplex,nbasis >           CoarseSiteVector; | ||||||
|   typedef Lattice<CoarseSiteVector>           CoarseField; |   typedef Lattice<CoarseSiteVector>           CoarseField; | ||||||
|   typedef Lattice<CComplex>   CoarseScalar; // used for inner products on fine field |   typedef Lattice<CComplex>   CoarseScalar; // used for inner products on fine field | ||||||
|   | |||||||
| @@ -43,7 +43,7 @@ NAMESPACE_BEGIN(Grid); | |||||||
| template<class Field> | template<class Field> | ||||||
| class PrecGeneralisedConjugateResidual : public LinearFunction<Field> { | class PrecGeneralisedConjugateResidual : public LinearFunction<Field> { | ||||||
| public:                                                 | public:                                                 | ||||||
|   using LinearFunction<Field>::operator(); |  | ||||||
|   RealD   Tolerance; |   RealD   Tolerance; | ||||||
|   Integer MaxIterations; |   Integer MaxIterations; | ||||||
|   int verbose; |   int verbose; | ||||||
|   | |||||||
| @@ -1,242 +0,0 @@ | |||||||
| /************************************************************************************* |  | ||||||
|  |  | ||||||
|     Grid physics library, www.github.com/paboyle/Grid  |  | ||||||
|  |  | ||||||
|     Source file: ./lib/algorithms/iterative/PrecGeneralisedConjugateResidual.h |  | ||||||
|  |  | ||||||
|     Copyright (C) 2015 |  | ||||||
|  |  | ||||||
| Author: Azusa Yamaguchi <ayamaguc@staffmail.ed.ac.uk> |  | ||||||
| Author: Peter Boyle <paboyle@ph.ed.ac.uk> |  | ||||||
|  |  | ||||||
|     This program is free software; you can redistribute it and/or modify |  | ||||||
|     it under the terms of the GNU General Public License as published by |  | ||||||
|     the Free Software Foundation; either version 2 of the License, or |  | ||||||
|     (at your option) any later version. |  | ||||||
|  |  | ||||||
|     This program is distributed in the hope that it will be useful, |  | ||||||
|     but WITHOUT ANY WARRANTY; without even the implied warranty of |  | ||||||
|     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the |  | ||||||
|     GNU General Public License for more details. |  | ||||||
|  |  | ||||||
|     You should have received a copy of the GNU General Public License along |  | ||||||
|     with this program; if not, write to the Free Software Foundation, Inc., |  | ||||||
|     51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. |  | ||||||
|  |  | ||||||
|     See the full license in the file "LICENSE" in the top level distribution directory |  | ||||||
| *************************************************************************************/ |  | ||||||
| /*  END LEGAL */ |  | ||||||
| #ifndef GRID_PREC_GCR_NON_HERM_H |  | ||||||
| #define GRID_PREC_GCR_NON_HERM_H |  | ||||||
|  |  | ||||||
| /////////////////////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
| //VPGCR Abe and Zhang, 2005. |  | ||||||
| //INTERNATIONAL JOURNAL OF NUMERICAL ANALYSIS AND MODELING |  | ||||||
| //Computing and Information Volume 2, Number 2, Pages 147-161 |  | ||||||
| //NB. Likely not original reference since they are focussing on a preconditioner variant. |  | ||||||
| //    but VPGCR was nicely written up in their paper |  | ||||||
| /////////////////////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
| NAMESPACE_BEGIN(Grid); |  | ||||||
|  |  | ||||||
| #define GCRLogLevel std::cout << GridLogMessage <<std::string(level,'\t')<< " Level "<<level<<" "  |  | ||||||
|  |  | ||||||
| template<class Field> |  | ||||||
| class PrecGeneralisedConjugateResidualNonHermitian : public LinearFunction<Field> { |  | ||||||
| public:                                                 |  | ||||||
|   using LinearFunction<Field>::operator(); |  | ||||||
|   RealD   Tolerance; |  | ||||||
|   Integer MaxIterations; |  | ||||||
|   int verbose; |  | ||||||
|   int mmax; |  | ||||||
|   int nstep; |  | ||||||
|   int steps; |  | ||||||
|   int level; |  | ||||||
|   GridStopWatch PrecTimer; |  | ||||||
|   GridStopWatch MatTimer; |  | ||||||
|   GridStopWatch LinalgTimer; |  | ||||||
|  |  | ||||||
|   LinearFunction<Field>     &Preconditioner; |  | ||||||
|   LinearOperatorBase<Field> &Linop; |  | ||||||
|  |  | ||||||
|   void Level(int lv) { level=lv; }; |  | ||||||
|  |  | ||||||
|   PrecGeneralisedConjugateResidualNonHermitian(RealD tol,Integer maxit,LinearOperatorBase<Field> &_Linop,LinearFunction<Field> &Prec,int _mmax,int _nstep) :  |  | ||||||
|     Tolerance(tol),  |  | ||||||
|     MaxIterations(maxit), |  | ||||||
|     Linop(_Linop), |  | ||||||
|     Preconditioner(Prec), |  | ||||||
|     mmax(_mmax), |  | ||||||
|     nstep(_nstep) |  | ||||||
|   {  |  | ||||||
|     level=1; |  | ||||||
|     verbose=1; |  | ||||||
|   }; |  | ||||||
|  |  | ||||||
|   void operator() (const Field &src, Field &psi){ |  | ||||||
|  |  | ||||||
|     psi=Zero(); |  | ||||||
|     RealD cp, ssq,rsq; |  | ||||||
|     ssq=norm2(src); |  | ||||||
|     rsq=Tolerance*Tolerance*ssq; |  | ||||||
|        |  | ||||||
|     Field r(src.Grid()); |  | ||||||
|  |  | ||||||
|     PrecTimer.Reset(); |  | ||||||
|     MatTimer.Reset(); |  | ||||||
|     LinalgTimer.Reset(); |  | ||||||
|  |  | ||||||
|     GridStopWatch SolverTimer; |  | ||||||
|     SolverTimer.Start(); |  | ||||||
|  |  | ||||||
|     steps=0; |  | ||||||
|     for(int k=0;k<MaxIterations;k++){ |  | ||||||
|  |  | ||||||
|       cp=GCRnStep(src,psi,rsq); |  | ||||||
|  |  | ||||||
|       GCRLogLevel <<"PGCR("<<mmax<<","<<nstep<<") "<< steps <<" steps cp = "<<cp<<" target "<<rsq <<std::endl; |  | ||||||
|  |  | ||||||
|       if(cp<rsq) { |  | ||||||
|  |  | ||||||
| 	SolverTimer.Stop(); |  | ||||||
|  |  | ||||||
| 	Linop.Op(psi,r); |  | ||||||
| 	axpy(r,-1.0,src,r); |  | ||||||
| 	RealD tr = norm2(r); |  | ||||||
| 	GCRLogLevel<<"PGCR: Converged on iteration " <<steps |  | ||||||
| 		 << " computed residual "<<sqrt(cp/ssq) |  | ||||||
| 		 << " true residual "    <<sqrt(tr/ssq) |  | ||||||
| 		 << " target "           <<Tolerance <<std::endl; |  | ||||||
|  |  | ||||||
| 	GCRLogLevel<<"PGCR Time elapsed: Total  "<< SolverTimer.Elapsed() <<std::endl; |  | ||||||
| 	return; |  | ||||||
|       } |  | ||||||
|  |  | ||||||
|     } |  | ||||||
|     GCRLogLevel<<"Variable Preconditioned GCR did not converge"<<std::endl; |  | ||||||
|     //    assert(0); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   RealD GCRnStep(const Field &src, Field &psi,RealD rsq){ |  | ||||||
|  |  | ||||||
|     RealD cp; |  | ||||||
|     ComplexD a, b; |  | ||||||
|     //    ComplexD zAz; |  | ||||||
|     RealD zAAz; |  | ||||||
|     ComplexD rq; |  | ||||||
|  |  | ||||||
|     GridBase *grid = src.Grid(); |  | ||||||
|  |  | ||||||
|     Field r(grid); |  | ||||||
|     Field z(grid); |  | ||||||
|     Field tmp(grid); |  | ||||||
|     Field ttmp(grid); |  | ||||||
|     Field Az(grid); |  | ||||||
|  |  | ||||||
|     //////////////////////////////// |  | ||||||
|     // history for flexible orthog |  | ||||||
|     //////////////////////////////// |  | ||||||
|     std::vector<Field> q(mmax,grid); |  | ||||||
|     std::vector<Field> p(mmax,grid); |  | ||||||
|     std::vector<RealD> qq(mmax); |  | ||||||
|        |  | ||||||
|     GCRLogLevel<< "PGCR nStep("<<nstep<<")"<<std::endl; |  | ||||||
|  |  | ||||||
|     ////////////////////////////////// |  | ||||||
|     // initial guess x0 is taken as nonzero. |  | ||||||
|     // r0=src-A x0 = src |  | ||||||
|     ////////////////////////////////// |  | ||||||
|     MatTimer.Start(); |  | ||||||
|     Linop.Op(psi,Az); |  | ||||||
|     //    zAz = innerProduct(Az,psi); |  | ||||||
|     zAAz= norm2(Az); |  | ||||||
|     MatTimer.Stop(); |  | ||||||
|      |  | ||||||
|  |  | ||||||
|     LinalgTimer.Start(); |  | ||||||
|     r=src-Az; |  | ||||||
|     LinalgTimer.Stop(); |  | ||||||
|     GCRLogLevel<< "PGCR true residual r = src - A psi   "<<norm2(r) <<std::endl; |  | ||||||
|      |  | ||||||
|     ///////////////////// |  | ||||||
|     // p = Prec(r) |  | ||||||
|     ///////////////////// |  | ||||||
|  |  | ||||||
|     PrecTimer.Start(); |  | ||||||
|     Preconditioner(r,z); |  | ||||||
|     PrecTimer.Stop(); |  | ||||||
|  |  | ||||||
|     MatTimer.Start(); |  | ||||||
|     Linop.Op(z,Az); |  | ||||||
|     MatTimer.Stop(); |  | ||||||
|  |  | ||||||
|     LinalgTimer.Start(); |  | ||||||
|  |  | ||||||
|     //    zAz = innerProduct(Az,psi); |  | ||||||
|     zAAz= norm2(Az); |  | ||||||
|  |  | ||||||
|     //p[0],q[0],qq[0]  |  | ||||||
|     p[0]= z; |  | ||||||
|     q[0]= Az; |  | ||||||
|     qq[0]= zAAz; |  | ||||||
|      |  | ||||||
|     cp =norm2(r); |  | ||||||
|     LinalgTimer.Stop(); |  | ||||||
|  |  | ||||||
|     for(int k=0;k<nstep;k++){ |  | ||||||
|  |  | ||||||
|       steps++; |  | ||||||
|  |  | ||||||
|       int kp     = k+1; |  | ||||||
|       int peri_k = k %mmax; |  | ||||||
|       int peri_kp= kp%mmax; |  | ||||||
|  |  | ||||||
|       LinalgTimer.Start(); |  | ||||||
|       rq= innerProduct(q[peri_k],r); // what if rAr not real? |  | ||||||
|       a = rq/qq[peri_k]; |  | ||||||
|  |  | ||||||
|       axpy(psi,a,p[peri_k],psi);          |  | ||||||
|  |  | ||||||
|       cp = axpy_norm(r,-a,q[peri_k],r); |  | ||||||
|       LinalgTimer.Stop(); |  | ||||||
|  |  | ||||||
|       GCRLogLevel<< "PGCR step["<<steps<<"]  resid " << cp << " target " <<rsq<<std::endl;  |  | ||||||
|  |  | ||||||
|       if((k==nstep-1)||(cp<rsq)){ |  | ||||||
| 	return cp; |  | ||||||
|       } |  | ||||||
|  |  | ||||||
|  |  | ||||||
|       PrecTimer.Start(); |  | ||||||
|       Preconditioner(r,z);// solve Az = r |  | ||||||
|       PrecTimer.Stop(); |  | ||||||
|  |  | ||||||
|       MatTimer.Start(); |  | ||||||
|       Linop.Op(z,Az); |  | ||||||
|       MatTimer.Stop(); |  | ||||||
|       //      zAz = innerProduct(Az,psi); |  | ||||||
|       zAAz= norm2(Az); |  | ||||||
|  |  | ||||||
|       LinalgTimer.Start(); |  | ||||||
|  |  | ||||||
|       q[peri_kp]=Az; |  | ||||||
|       p[peri_kp]=z; |  | ||||||
|  |  | ||||||
|       int northog = ((kp)>(mmax-1))?(mmax-1):(kp);  // if more than mmax done, we orthog all mmax history. |  | ||||||
|       for(int back=0;back<northog;back++){ |  | ||||||
|  |  | ||||||
| 	int peri_back=(k-back)%mmax;   	  assert((k-back)>=0); |  | ||||||
|  |  | ||||||
| 	b=-real(innerProduct(q[peri_back],Az))/qq[peri_back]; |  | ||||||
| 	p[peri_kp]=p[peri_kp]+b*p[peri_back]; |  | ||||||
| 	q[peri_kp]=q[peri_kp]+b*q[peri_back]; |  | ||||||
|  |  | ||||||
|       } |  | ||||||
|       qq[peri_kp]=norm2(q[peri_kp]); // could use axpy_norm |  | ||||||
|       LinalgTimer.Stop(); |  | ||||||
|     } |  | ||||||
|     assert(0); // never reached |  | ||||||
|     return cp; |  | ||||||
|   } |  | ||||||
| }; |  | ||||||
| NAMESPACE_END(Grid); |  | ||||||
| #endif |  | ||||||
| @@ -132,31 +132,6 @@ namespace Grid { | |||||||
|       (*this)(_Matrix,in,out,guess); |       (*this)(_Matrix,in,out,guess); | ||||||
|     } |     } | ||||||
|  |  | ||||||
|     void RedBlackSource(Matrix &_Matrix, const std::vector<Field> &in, std::vector<Field> &src_o)  |  | ||||||
|     { |  | ||||||
|       GridBase *grid = _Matrix.RedBlackGrid(); |  | ||||||
|       Field tmp(grid); |  | ||||||
|       int nblock = in.size(); |  | ||||||
|       for(int b=0;b<nblock;b++){ |  | ||||||
| 	RedBlackSource(_Matrix,in[b],tmp,src_o[b]); |  | ||||||
|       } |  | ||||||
|     } |  | ||||||
|     // James can write his own deflated guesser |  | ||||||
|     // with optimised code for the inner products |  | ||||||
|     //    RedBlackSolveSplitGrid(); |  | ||||||
|     //    RedBlackSolve(_Matrix,src_o,sol_o);  |  | ||||||
|  |  | ||||||
|     void RedBlackSolution(Matrix &_Matrix, const std::vector<Field> &in, const std::vector<Field> &sol_o, std::vector<Field> &out) |  | ||||||
|     { |  | ||||||
|       GridBase *grid = _Matrix.RedBlackGrid(); |  | ||||||
|       Field tmp(grid); |  | ||||||
|       int nblock = in.size(); |  | ||||||
|       for(int b=0;b<nblock;b++) { |  | ||||||
| 	pickCheckerboard(Even,tmp,in[b]); |  | ||||||
| 	RedBlackSolution(_Matrix,sol_o[b],tmp,out[b]); |  | ||||||
|       } |  | ||||||
|     } |  | ||||||
|  |  | ||||||
|     template<class Guesser> |     template<class Guesser> | ||||||
|     void operator()(Matrix &_Matrix, const std::vector<Field> &in, std::vector<Field> &out,Guesser &guess)  |     void operator()(Matrix &_Matrix, const std::vector<Field> &in, std::vector<Field> &out,Guesser &guess)  | ||||||
|     { |     { | ||||||
| @@ -175,27 +150,22 @@ namespace Grid { | |||||||
|       //////////////////////////////////////////////// |       //////////////////////////////////////////////// | ||||||
|       // Prepare RedBlack source |       // Prepare RedBlack source | ||||||
|       //////////////////////////////////////////////// |       //////////////////////////////////////////////// | ||||||
|       RedBlackSource(_Matrix,in,src_o); |       for(int b=0;b<nblock;b++){ | ||||||
| 	//      for(int b=0;b<nblock;b++){ | 	RedBlackSource(_Matrix,in[b],tmp,src_o[b]); | ||||||
| 	//	RedBlackSource(_Matrix,in[b],tmp,src_o[b]); |       } | ||||||
| 	//      } |  | ||||||
|        |  | ||||||
|       //////////////////////////////////////////////// |       //////////////////////////////////////////////// | ||||||
|       // Make the guesses |       // Make the guesses | ||||||
|       //////////////////////////////////////////////// |       //////////////////////////////////////////////// | ||||||
|       if ( subGuess ) guess_save.resize(nblock,grid); |       if ( subGuess ) guess_save.resize(nblock,grid); | ||||||
|  |  | ||||||
|        |  | ||||||
|       if(useSolnAsInitGuess) { |  | ||||||
|       for(int b=0;b<nblock;b++){ |       for(int b=0;b<nblock;b++){ | ||||||
|  |         if(useSolnAsInitGuess) { | ||||||
|           pickCheckerboard(Odd, sol_o[b], out[b]); |           pickCheckerboard(Odd, sol_o[b], out[b]); | ||||||
|         } |  | ||||||
|         } else { |         } else { | ||||||
|         guess(src_o, sol_o);  |           guess(src_o[b],sol_o[b]);  | ||||||
|         } |         } | ||||||
|  |  | ||||||
| 	if ( subGuess ) {  | 	if ( subGuess ) {  | ||||||
|         for(int b=0;b<nblock;b++){ |  | ||||||
| 	  guess_save[b] = sol_o[b]; | 	  guess_save[b] = sol_o[b]; | ||||||
| 	} | 	} | ||||||
|       } |       } | ||||||
|   | |||||||
							
								
								
									
										154
									
								
								Grid/allocator/AlignedAllocator.cc
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										154
									
								
								Grid/allocator/AlignedAllocator.cc
									
									
									
									
									
										Normal file
									
								
							| @@ -0,0 +1,154 @@ | |||||||
|  | #include <Grid/GridCore.h> | ||||||
|  | #include <fcntl.h> | ||||||
|  |  | ||||||
|  | NAMESPACE_BEGIN(Grid); | ||||||
|  |  | ||||||
|  | MemoryStats *MemoryProfiler::stats = nullptr; | ||||||
|  | bool         MemoryProfiler::debug = false; | ||||||
|  |  | ||||||
|  | int PointerCache::NcacheSmall = PointerCache::NcacheSmallMax; | ||||||
|  | #ifdef GRID_CUDA | ||||||
|  | int PointerCache::Ncache      = 32; | ||||||
|  | #else  | ||||||
|  | int PointerCache::Ncache      = 8; | ||||||
|  | #endif | ||||||
|  | int PointerCache::Victim; | ||||||
|  | int PointerCache::VictimSmall; | ||||||
|  | PointerCache::PointerCacheEntry PointerCache::Entries[PointerCache::NcacheMax]; | ||||||
|  | PointerCache::PointerCacheEntry PointerCache::EntriesSmall[PointerCache::NcacheSmallMax]; | ||||||
|  |  | ||||||
|  | void PointerCache::Init(void) | ||||||
|  | { | ||||||
|  |   char * str; | ||||||
|  |  | ||||||
|  |   str= getenv("GRID_ALLOC_NCACHE_LARGE"); | ||||||
|  |   if ( str ) Ncache = atoi(str); | ||||||
|  |   if ( (Ncache<0) || (Ncache > NcacheMax)) Ncache = NcacheMax; | ||||||
|  |  | ||||||
|  |   str= getenv("GRID_ALLOC_NCACHE_SMALL"); | ||||||
|  |   if ( str ) NcacheSmall = atoi(str); | ||||||
|  |   if ( (NcacheSmall<0) || (NcacheSmall > NcacheSmallMax)) NcacheSmall = NcacheSmallMax; | ||||||
|  |  | ||||||
|  |   //  printf("Aligned alloocator cache: large %d/%d small %d/%d\n",Ncache,NcacheMax,NcacheSmall,NcacheSmallMax); | ||||||
|  | } | ||||||
|  | void *PointerCache::Insert(void *ptr,size_t bytes)  | ||||||
|  | { | ||||||
|  |   if (bytes < GRID_ALLOC_SMALL_LIMIT )  | ||||||
|  |     return Insert(ptr,bytes,EntriesSmall,NcacheSmall,VictimSmall); | ||||||
|  |   return Insert(ptr,bytes,Entries,Ncache,Victim);   | ||||||
|  | } | ||||||
|  | void *PointerCache::Insert(void *ptr,size_t bytes,PointerCacheEntry *entries,int ncache,int &victim)  | ||||||
|  | { | ||||||
|  | #ifdef GRID_OMP | ||||||
|  |   assert(omp_in_parallel()==0); | ||||||
|  | #endif  | ||||||
|  |  | ||||||
|  |   void * ret = NULL; | ||||||
|  |   int v = -1; | ||||||
|  |  | ||||||
|  |   for(int e=0;e<ncache;e++) { | ||||||
|  |     if ( entries[e].valid==0 ) { | ||||||
|  |       v=e;  | ||||||
|  |       break; | ||||||
|  |     } | ||||||
|  |   } | ||||||
|  |  | ||||||
|  |   if ( v==-1 ) { | ||||||
|  |     v=victim; | ||||||
|  |     victim = (victim+1)%ncache; | ||||||
|  |   } | ||||||
|  |  | ||||||
|  |   if ( entries[v].valid ) { | ||||||
|  |     ret = entries[v].address; | ||||||
|  |     entries[v].valid = 0; | ||||||
|  |     entries[v].address = NULL; | ||||||
|  |     entries[v].bytes = 0; | ||||||
|  |   } | ||||||
|  |  | ||||||
|  |   entries[v].address=ptr; | ||||||
|  |   entries[v].bytes  =bytes; | ||||||
|  |   entries[v].valid  =1; | ||||||
|  |  | ||||||
|  |   return ret; | ||||||
|  | } | ||||||
|  |  | ||||||
|  | void *PointerCache::Lookup(size_t bytes) | ||||||
|  | { | ||||||
|  |   if (bytes < GRID_ALLOC_SMALL_LIMIT )  | ||||||
|  |     return Lookup(bytes,EntriesSmall,NcacheSmall); | ||||||
|  |   return Lookup(bytes,Entries,Ncache); | ||||||
|  | } | ||||||
|  | void *PointerCache::Lookup(size_t bytes,PointerCacheEntry *entries,int ncache)  | ||||||
|  | { | ||||||
|  | #ifdef GRID_OMP | ||||||
|  |   assert(omp_in_parallel()==0); | ||||||
|  | #endif  | ||||||
|  |   for(int e=0;e<ncache;e++){ | ||||||
|  |     if ( entries[e].valid && ( entries[e].bytes == bytes ) ) { | ||||||
|  |       entries[e].valid = 0; | ||||||
|  |       return entries[e].address; | ||||||
|  |     } | ||||||
|  |   } | ||||||
|  |   return NULL; | ||||||
|  | } | ||||||
|  |  | ||||||
|  |  | ||||||
|  | void check_huge_pages(void *Buf,uint64_t BYTES) | ||||||
|  | { | ||||||
|  | #ifdef __linux__ | ||||||
|  |   int fd = open("/proc/self/pagemap", O_RDONLY); | ||||||
|  |   assert(fd >= 0); | ||||||
|  |   const int page_size = 4096; | ||||||
|  |   uint64_t virt_pfn = (uint64_t)Buf / page_size; | ||||||
|  |   off_t offset = sizeof(uint64_t) * virt_pfn; | ||||||
|  |   uint64_t npages = (BYTES + page_size-1) / page_size; | ||||||
|  |   uint64_t pagedata[npages]; | ||||||
|  |   uint64_t ret = lseek(fd, offset, SEEK_SET); | ||||||
|  |   assert(ret == offset); | ||||||
|  |   ret = ::read(fd, pagedata, sizeof(uint64_t)*npages); | ||||||
|  |   assert(ret == sizeof(uint64_t) * npages); | ||||||
|  |   int nhugepages = npages / 512; | ||||||
|  |   int n4ktotal, nnothuge; | ||||||
|  |   n4ktotal = 0; | ||||||
|  |   nnothuge = 0; | ||||||
|  |   for (int i = 0; i < nhugepages; ++i) { | ||||||
|  |     uint64_t baseaddr = (pagedata[i*512] & 0x7fffffffffffffULL) * page_size; | ||||||
|  |     for (int j = 0; j < 512; ++j) { | ||||||
|  |       uint64_t pageaddr = (pagedata[i*512+j] & 0x7fffffffffffffULL) * page_size; | ||||||
|  |       ++n4ktotal; | ||||||
|  |       if (pageaddr != baseaddr + j * page_size) | ||||||
|  | 	++nnothuge; | ||||||
|  |     } | ||||||
|  |   } | ||||||
|  |   int rank = CartesianCommunicator::RankWorld(); | ||||||
|  |   printf("rank %d Allocated %d 4k pages, %d not in huge pages\n", rank, n4ktotal, nnothuge); | ||||||
|  | #endif | ||||||
|  | } | ||||||
|  |  | ||||||
|  | std::string sizeString(const size_t bytes) | ||||||
|  | { | ||||||
|  |   constexpr unsigned int bufSize = 256; | ||||||
|  |   const char             *suffixes[7] = {"", "K", "M", "G", "T", "P", "E"}; | ||||||
|  |   char                   buf[256]; | ||||||
|  |   size_t                 s     = 0; | ||||||
|  |   double                 count = bytes; | ||||||
|  |    | ||||||
|  |   while (count >= 1024 && s < 7) | ||||||
|  |     { | ||||||
|  |       s++; | ||||||
|  |       count /= 1024; | ||||||
|  |     } | ||||||
|  |   if (count - floor(count) == 0.0) | ||||||
|  |     { | ||||||
|  |       snprintf(buf, bufSize, "%d %sB", (int)count, suffixes[s]); | ||||||
|  |     } | ||||||
|  |   else | ||||||
|  |     { | ||||||
|  |       snprintf(buf, bufSize, "%.1f %sB", count, suffixes[s]); | ||||||
|  |     } | ||||||
|  |    | ||||||
|  |   return std::string(buf); | ||||||
|  | } | ||||||
|  |  | ||||||
|  | NAMESPACE_END(Grid); | ||||||
|  |  | ||||||
| @@ -26,10 +26,129 @@ Author: Peter Boyle <paboyle@ph.ed.ac.uk> | |||||||
|     See the full license in the file "LICENSE" in the top level distribution directory |     See the full license in the file "LICENSE" in the top level distribution directory | ||||||
| *************************************************************************************/ | *************************************************************************************/ | ||||||
| /*  END LEGAL */ | /*  END LEGAL */ | ||||||
| #pragma once | #ifndef GRID_ALIGNED_ALLOCATOR_H | ||||||
|  | #define GRID_ALIGNED_ALLOCATOR_H | ||||||
|  |  | ||||||
|  | #ifdef HAVE_MALLOC_MALLOC_H | ||||||
|  | #include <malloc/malloc.h> | ||||||
|  | #endif | ||||||
|  | #ifdef HAVE_MALLOC_H | ||||||
|  | #include <malloc.h> | ||||||
|  | #endif | ||||||
|  |  | ||||||
|  | #ifdef HAVE_MM_MALLOC_H | ||||||
|  | #include <mm_malloc.h> | ||||||
|  | #endif | ||||||
|  |  | ||||||
|  | #define POINTER_CACHE | ||||||
|  | #define GRID_ALLOC_ALIGN (2*1024*1024) | ||||||
|  | #define GRID_ALLOC_SMALL_LIMIT (4096) | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); | NAMESPACE_BEGIN(Grid); | ||||||
|  |  | ||||||
|  | // Move control to configure.ac and Config.h? | ||||||
|  |  | ||||||
|  | class PointerCache { | ||||||
|  | private: | ||||||
|  | /*Pinning pages is costly*/ | ||||||
|  | /*Could maintain separate large and small allocation caches*/ | ||||||
|  | /* Could make these configurable, perhaps up to a max size*/ | ||||||
|  |   static const int NcacheSmallMax=128;  | ||||||
|  |   static const int NcacheMax=16; | ||||||
|  |   static int NcacheSmall; | ||||||
|  |   static int Ncache; | ||||||
|  |  | ||||||
|  |   typedef struct {  | ||||||
|  |     void *address; | ||||||
|  |     size_t bytes; | ||||||
|  |     int valid; | ||||||
|  |   } PointerCacheEntry; | ||||||
|  |      | ||||||
|  |   static PointerCacheEntry Entries[NcacheMax]; | ||||||
|  |   static int Victim; | ||||||
|  |   static PointerCacheEntry EntriesSmall[NcacheSmallMax]; | ||||||
|  |   static int VictimSmall; | ||||||
|  |  | ||||||
|  | public: | ||||||
|  |   static void Init(void); | ||||||
|  |   static void *Insert(void *ptr,size_t bytes) ; | ||||||
|  |   static void *Insert(void *ptr,size_t bytes,PointerCacheEntry *entries,int ncache,int &victim) ; | ||||||
|  |   static void *Lookup(size_t bytes) ; | ||||||
|  |   static void *Lookup(size_t bytes,PointerCacheEntry *entries,int ncache) ; | ||||||
|  | }; | ||||||
|  |  | ||||||
|  | std::string sizeString(size_t bytes); | ||||||
|  |  | ||||||
|  | struct MemoryStats | ||||||
|  | { | ||||||
|  |   size_t totalAllocated{0}, maxAllocated{0},  | ||||||
|  |     currentlyAllocated{0}, totalFreed{0}; | ||||||
|  | }; | ||||||
|  |      | ||||||
|  | class MemoryProfiler | ||||||
|  | { | ||||||
|  | public: | ||||||
|  |   static MemoryStats *stats; | ||||||
|  |   static bool        debug; | ||||||
|  | }; | ||||||
|  |  | ||||||
|  | #ifdef GRID_NVCC | ||||||
|  | #define profilerCudaMeminfo \ | ||||||
|  |   { size_t f, t ; cudaMemGetInfo ( &f,&t); std::cout << GridLogDebug << "[Memory debug] Cuda free "<<f<<"/"<<t << std::endl;} | ||||||
|  | #else | ||||||
|  | #define profilerCudaMeminfo | ||||||
|  | #endif | ||||||
|  |  | ||||||
|  | #define memString(bytes) std::to_string(bytes) + " (" + sizeString(bytes) + ")" | ||||||
|  | #define profilerDebugPrint						\ | ||||||
|  |   if (MemoryProfiler::stats)						\ | ||||||
|  |     {									\ | ||||||
|  |       auto s = MemoryProfiler::stats;					\ | ||||||
|  |       std::cout << GridLogDebug << "[Memory debug] Stats " << MemoryProfiler::stats << std::endl; \ | ||||||
|  |       std::cout << GridLogDebug << "[Memory debug] total  : " << memString(s->totalAllocated) \ | ||||||
|  | 		<< std::endl;						\ | ||||||
|  |       std::cout << GridLogDebug << "[Memory debug] max    : " << memString(s->maxAllocated) \ | ||||||
|  | 		<< std::endl;						\ | ||||||
|  |       std::cout << GridLogDebug << "[Memory debug] current: " << memString(s->currentlyAllocated) \ | ||||||
|  | 		<< std::endl;						\ | ||||||
|  |       std::cout << GridLogDebug << "[Memory debug] freed  : " << memString(s->totalFreed) \ | ||||||
|  | 		<< std::endl;						\ | ||||||
|  |     }									\ | ||||||
|  |   profilerCudaMeminfo; | ||||||
|  |  | ||||||
|  | #define profilerAllocate(bytes)						\ | ||||||
|  |   if (MemoryProfiler::stats)						\ | ||||||
|  |     {									\ | ||||||
|  |       auto s = MemoryProfiler::stats;					\ | ||||||
|  |       s->totalAllocated     += (bytes);					\ | ||||||
|  |       s->currentlyAllocated += (bytes);					\ | ||||||
|  |       s->maxAllocated        = std::max(s->maxAllocated, s->currentlyAllocated); \ | ||||||
|  |     }									\ | ||||||
|  |   if (MemoryProfiler::debug)						\ | ||||||
|  |     {									\ | ||||||
|  |       std::cout << GridLogDebug << "[Memory debug] allocating " << memString(bytes) << std::endl; \ | ||||||
|  |       profilerDebugPrint;						\ | ||||||
|  |     } | ||||||
|  |  | ||||||
|  | #define profilerFree(bytes)						\ | ||||||
|  |   if (MemoryProfiler::stats)						\ | ||||||
|  |     {									\ | ||||||
|  |       auto s = MemoryProfiler::stats;					\ | ||||||
|  |       s->totalFreed         += (bytes);					\ | ||||||
|  |       s->currentlyAllocated -= (bytes);					\ | ||||||
|  |     }									\ | ||||||
|  |   if (MemoryProfiler::debug)						\ | ||||||
|  |     {									\ | ||||||
|  |       std::cout << GridLogDebug << "[Memory debug] freeing " << memString(bytes) << std::endl; \ | ||||||
|  |       profilerDebugPrint;						\ | ||||||
|  |     } | ||||||
|  |  | ||||||
|  | void check_huge_pages(void *Buf,uint64_t BYTES); | ||||||
|  |  | ||||||
|  | //////////////////////////////////////////////////////////////////// | ||||||
|  | // A lattice of something, but assume the something is SIMDized. | ||||||
|  | //////////////////////////////////////////////////////////////////// | ||||||
|  |  | ||||||
| template<typename _Tp> | template<typename _Tp> | ||||||
| class alignedAllocator { | class alignedAllocator { | ||||||
| public:  | public:  | ||||||
| @@ -53,131 +172,89 @@ public: | |||||||
|   {  |   {  | ||||||
|     size_type bytes = __n*sizeof(_Tp); |     size_type bytes = __n*sizeof(_Tp); | ||||||
|     profilerAllocate(bytes); |     profilerAllocate(bytes); | ||||||
|     _Tp *ptr = (_Tp*) MemoryManager::CpuAllocate(bytes); |  | ||||||
|     assert( ( (_Tp*)ptr != (_Tp *)NULL ) ); |  | ||||||
|  | #ifdef POINTER_CACHE | ||||||
|  |     _Tp *ptr = (_Tp *) PointerCache::Lookup(bytes); | ||||||
|  | #else | ||||||
|  |     pointer ptr = nullptr; | ||||||
|  | #endif | ||||||
|  |  | ||||||
|  | #ifdef GRID_NVCC | ||||||
|  |     //////////////////////////////////// | ||||||
|  |     // Unified (managed) memory | ||||||
|  |     //////////////////////////////////// | ||||||
|  |     if ( ptr == (_Tp *) NULL ) { | ||||||
|  |       //      printf(" alignedAllocater cache miss %ld bytes ",bytes);      BACKTRACEFP(stdout); | ||||||
|  |       auto err = cudaMallocManaged((void **)&ptr,bytes); | ||||||
|  |       if( err != cudaSuccess ) { | ||||||
|  | 	ptr = (_Tp *) NULL; | ||||||
|  | 	std::cerr << " cudaMallocManaged failed for " << bytes<<" bytes " <<cudaGetErrorString(err)<< std::endl; | ||||||
|  | 	assert(0); | ||||||
|  |       } | ||||||
|  |     }  | ||||||
|  |     assert( ptr != (_Tp *)NULL); | ||||||
|  | #else  | ||||||
|  |     ////////////////////////////////////////////////////////////////////////////////////////// | ||||||
|  |     // 2MB align; could make option probably doesn't need configurability | ||||||
|  |     ////////////////////////////////////////////////////////////////////////////////////////// | ||||||
|  |   #ifdef HAVE_MM_MALLOC_H | ||||||
|  |     if ( ptr == (_Tp *) NULL ) ptr = (_Tp *) _mm_malloc(bytes,GRID_ALLOC_ALIGN); | ||||||
|  |   #else | ||||||
|  |     if ( ptr == (_Tp *) NULL ) ptr = (_Tp *) memalign(GRID_ALLOC_ALIGN,bytes); | ||||||
|  |   #endif | ||||||
|  |     assert( ptr != (_Tp *)NULL); | ||||||
|  |  | ||||||
|  |     ////////////////////////////////////////////////// | ||||||
|  |     // First touch optimise in threaded loop  | ||||||
|  |     ////////////////////////////////////////////////// | ||||||
|  |     uint64_t *cp = (uint64_t *)ptr; | ||||||
|  |     thread_for(n,bytes/sizeof(uint64_t), { // need only one touch per page | ||||||
|  |       cp[n]=0; | ||||||
|  |     }); | ||||||
|  | #endif | ||||||
|     return ptr; |     return ptr; | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   void deallocate(pointer __p, size_type __n)  |   void deallocate(pointer __p, size_type __n) {  | ||||||
|   {  |  | ||||||
|     size_type bytes = __n * sizeof(_Tp); |     size_type bytes = __n * sizeof(_Tp); | ||||||
|  |  | ||||||
|     profilerFree(bytes); |     profilerFree(bytes); | ||||||
|     MemoryManager::CpuFree((void *)__p,bytes); |  | ||||||
|  | #ifdef POINTER_CACHE | ||||||
|  |     pointer __freeme = (pointer)PointerCache::Insert((void *)__p,bytes); | ||||||
|  | #else  | ||||||
|  |     pointer __freeme = __p; | ||||||
|  | #endif | ||||||
|  |  | ||||||
|  | #ifdef GRID_NVCC | ||||||
|  |     if ( __freeme ) cudaFree((void *)__freeme); | ||||||
|  | #else  | ||||||
|  |   #ifdef HAVE_MM_MALLOC_H | ||||||
|  |     if ( __freeme ) _mm_free((void *)__freeme);  | ||||||
|  |   #else | ||||||
|  |     if ( __freeme ) free((void *)__freeme); | ||||||
|  |   #endif | ||||||
|  | #endif | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   // FIXME: hack for the copy constructor: it must be avoided to avoid single thread loop |   // FIXME: hack for the copy constructor, eventually it must be avoided | ||||||
|   void construct(pointer __p, const _Tp& __val) { assert(0);}; |   void construct(pointer __p, const _Tp& __val) { new((void *)__p) _Tp(__val); }; | ||||||
|  |   //void construct(pointer __p, const _Tp& __val) { }; | ||||||
|   void construct(pointer __p) { }; |   void construct(pointer __p) { }; | ||||||
|   void destroy(pointer __p) { }; |   void destroy(pointer __p) { }; | ||||||
| }; | }; | ||||||
| template<typename _Tp>  inline bool operator==(const alignedAllocator<_Tp>&, const alignedAllocator<_Tp>&){ return true; } | template<typename _Tp>  inline bool operator==(const alignedAllocator<_Tp>&, const alignedAllocator<_Tp>&){ return true; } | ||||||
| template<typename _Tp>  inline bool operator!=(const alignedAllocator<_Tp>&, const alignedAllocator<_Tp>&){ return false; } | template<typename _Tp>  inline bool operator!=(const alignedAllocator<_Tp>&, const alignedAllocator<_Tp>&){ return false; } | ||||||
|  |  | ||||||
| ////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
| // Unified virtual memory |  | ||||||
| ////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
| template<typename _Tp> |  | ||||||
| class uvmAllocator { |  | ||||||
| public:  |  | ||||||
|   typedef std::size_t     size_type; |  | ||||||
|   typedef std::ptrdiff_t  difference_type; |  | ||||||
|   typedef _Tp*       pointer; |  | ||||||
|   typedef const _Tp* const_pointer; |  | ||||||
|   typedef _Tp&       reference; |  | ||||||
|   typedef const _Tp& const_reference; |  | ||||||
|   typedef _Tp        value_type; |  | ||||||
|  |  | ||||||
|   template<typename _Tp1>  struct rebind { typedef uvmAllocator<_Tp1> other; }; |  | ||||||
|   uvmAllocator() throw() { } |  | ||||||
|   uvmAllocator(const uvmAllocator&) throw() { } |  | ||||||
|   template<typename _Tp1> uvmAllocator(const uvmAllocator<_Tp1>&) throw() { } |  | ||||||
|   ~uvmAllocator() throw() { } |  | ||||||
|   pointer       address(reference __x)       const { return &__x; } |  | ||||||
|   size_type  max_size() const throw() { return size_t(-1) / sizeof(_Tp); } |  | ||||||
|  |  | ||||||
|   pointer allocate(size_type __n, const void* _p= 0) |  | ||||||
|   {  |  | ||||||
|     size_type bytes = __n*sizeof(_Tp); |  | ||||||
|     profilerAllocate(bytes); |  | ||||||
|     _Tp *ptr = (_Tp*) MemoryManager::SharedAllocate(bytes); |  | ||||||
|     assert( ( (_Tp*)ptr != (_Tp *)NULL ) ); |  | ||||||
|     return ptr; |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   void deallocate(pointer __p, size_type __n)  |  | ||||||
|   {  |  | ||||||
|     size_type bytes = __n * sizeof(_Tp); |  | ||||||
|     profilerFree(bytes); |  | ||||||
|     MemoryManager::SharedFree((void *)__p,bytes); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   void construct(pointer __p, const _Tp& __val) { new((void *)__p) _Tp(__val); }; |  | ||||||
|   void construct(pointer __p) { }; |  | ||||||
|   void destroy(pointer __p) { }; |  | ||||||
| }; |  | ||||||
| template<typename _Tp>  inline bool operator==(const uvmAllocator<_Tp>&, const uvmAllocator<_Tp>&){ return true; } |  | ||||||
| template<typename _Tp>  inline bool operator!=(const uvmAllocator<_Tp>&, const uvmAllocator<_Tp>&){ return false; } |  | ||||||
|  |  | ||||||
| //////////////////////////////////////////////////////////////////////////////// |  | ||||||
| // Device memory |  | ||||||
| //////////////////////////////////////////////////////////////////////////////// |  | ||||||
| template<typename _Tp> |  | ||||||
| class devAllocator { |  | ||||||
| public:  |  | ||||||
|   typedef std::size_t     size_type; |  | ||||||
|   typedef std::ptrdiff_t  difference_type; |  | ||||||
|   typedef _Tp*       pointer; |  | ||||||
|   typedef const _Tp* const_pointer; |  | ||||||
|   typedef _Tp&       reference; |  | ||||||
|   typedef const _Tp& const_reference; |  | ||||||
|   typedef _Tp        value_type; |  | ||||||
|  |  | ||||||
|   template<typename _Tp1>  struct rebind { typedef devAllocator<_Tp1> other; }; |  | ||||||
|   devAllocator() throw() { } |  | ||||||
|   devAllocator(const devAllocator&) throw() { } |  | ||||||
|   template<typename _Tp1> devAllocator(const devAllocator<_Tp1>&) throw() { } |  | ||||||
|   ~devAllocator() throw() { } |  | ||||||
|   pointer       address(reference __x)       const { return &__x; } |  | ||||||
|   size_type  max_size() const throw() { return size_t(-1) / sizeof(_Tp); } |  | ||||||
|  |  | ||||||
|   pointer allocate(size_type __n, const void* _p= 0) |  | ||||||
|   {  |  | ||||||
|     size_type bytes = __n*sizeof(_Tp); |  | ||||||
|     profilerAllocate(bytes); |  | ||||||
|     _Tp *ptr = (_Tp*) MemoryManager::AcceleratorAllocate(bytes); |  | ||||||
|     assert( ( (_Tp*)ptr != (_Tp *)NULL ) ); |  | ||||||
|     return ptr; |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   void deallocate(pointer __p, size_type __n)  |  | ||||||
|   {  |  | ||||||
|     size_type bytes = __n * sizeof(_Tp); |  | ||||||
|     profilerFree(bytes); |  | ||||||
|     MemoryManager::AcceleratorFree((void *)__p,bytes); |  | ||||||
|   } |  | ||||||
|   void construct(pointer __p, const _Tp& __val) { }; |  | ||||||
|   void construct(pointer __p) { }; |  | ||||||
|   void destroy(pointer __p) { }; |  | ||||||
| }; |  | ||||||
| template<typename _Tp>  inline bool operator==(const devAllocator<_Tp>&, const devAllocator<_Tp>&){ return true; } |  | ||||||
| template<typename _Tp>  inline bool operator!=(const devAllocator<_Tp>&, const devAllocator<_Tp>&){ return false; } |  | ||||||
|  |  | ||||||
| //////////////////////////////////////////////////////////////////////////////// | //////////////////////////////////////////////////////////////////////////////// | ||||||
| // Template typedefs | // Template typedefs | ||||||
| //////////////////////////////////////////////////////////////////////////////// | //////////////////////////////////////////////////////////////////////////////// | ||||||
| #ifdef ACCELERATOR_CSHIFT | template<class T> using commAllocator = alignedAllocator<T>; | ||||||
| // Cshift on device | template<class T> using Vector     = std::vector<T,alignedAllocator<T> >;            | ||||||
| template<class T> using cshiftAllocator = devAllocator<T>; | template<class T> using commVector = std::vector<T,alignedAllocator<T> >; | ||||||
| #else | template<class T> using Matrix     = std::vector<std::vector<T,alignedAllocator<T> > >; | ||||||
| // Cshift on host |  | ||||||
| template<class T> using cshiftAllocator = std::allocator<T>; |  | ||||||
| #endif |  | ||||||
|  |  | ||||||
| template<class T> using Vector        = std::vector<T,uvmAllocator<T> >;            |  | ||||||
| template<class T> using stencilVector = std::vector<T,alignedAllocator<T> >;            |  | ||||||
| template<class T> using commVector = std::vector<T,devAllocator<T> >; |  | ||||||
| template<class T> using cshiftVector = std::vector<T,cshiftAllocator<T> >; |  | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); | NAMESPACE_END(Grid); | ||||||
|  |  | ||||||
|  | #endif | ||||||
|   | |||||||
| @@ -1,4 +0,0 @@ | |||||||
| #pragma once |  | ||||||
| #include <Grid/allocator/MemoryStats.h> |  | ||||||
| #include <Grid/allocator/MemoryManager.h> |  | ||||||
| #include <Grid/allocator/AlignedAllocator.h> |  | ||||||
| @@ -1,300 +0,0 @@ | |||||||
| #include <Grid/GridCore.h> |  | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); |  | ||||||
|  |  | ||||||
| /*Allocation types, saying which pointer cache should be used*/ |  | ||||||
| #define Cpu      (0) |  | ||||||
| #define CpuSmall (1) |  | ||||||
| #define Acc      (2) |  | ||||||
| #define AccSmall (3) |  | ||||||
| #define Shared   (4) |  | ||||||
| #define SharedSmall (5) |  | ||||||
| #undef GRID_MM_VERBOSE  |  | ||||||
| uint64_t total_shared; |  | ||||||
| uint64_t total_device; |  | ||||||
| uint64_t total_host;; |  | ||||||
| void MemoryManager::PrintBytes(void) |  | ||||||
| { |  | ||||||
|   std::cout << " MemoryManager : ------------------------------------ "<<std::endl; |  | ||||||
|   std::cout << " MemoryManager : PrintBytes "<<std::endl; |  | ||||||
|   std::cout << " MemoryManager : ------------------------------------ "<<std::endl; |  | ||||||
|   std::cout << " MemoryManager : "<<(total_shared>>20)<<" shared      Mbytes "<<std::endl; |  | ||||||
|   std::cout << " MemoryManager : "<<(total_device>>20)<<" accelerator Mbytes "<<std::endl; |  | ||||||
|   std::cout << " MemoryManager : "<<(total_host>>20)  <<" cpu         Mbytes "<<std::endl; |  | ||||||
|   uint64_t cacheBytes; |  | ||||||
|   cacheBytes = CacheBytes[Cpu]; |  | ||||||
|   std::cout << " MemoryManager : "<<(cacheBytes>>20) <<" cpu cache Mbytes "<<std::endl; |  | ||||||
|   cacheBytes = CacheBytes[Acc]; |  | ||||||
|   std::cout << " MemoryManager : "<<(cacheBytes>>20) <<" acc cache Mbytes "<<std::endl; |  | ||||||
|   cacheBytes = CacheBytes[Shared]; |  | ||||||
|   std::cout << " MemoryManager : "<<(cacheBytes>>20) <<" shared cache Mbytes "<<std::endl; |  | ||||||
|    |  | ||||||
| #ifdef GRID_CUDA |  | ||||||
|   cuda_mem(); |  | ||||||
| #endif |  | ||||||
|    |  | ||||||
| } |  | ||||||
|  |  | ||||||
| ////////////////////////////////////////////////////////////////////// |  | ||||||
| // Data tables for recently freed pooiniter caches |  | ||||||
| ////////////////////////////////////////////////////////////////////// |  | ||||||
| MemoryManager::AllocationCacheEntry MemoryManager::Entries[MemoryManager::NallocType][MemoryManager::NallocCacheMax]; |  | ||||||
| int MemoryManager::Victim[MemoryManager::NallocType]; |  | ||||||
| int MemoryManager::Ncache[MemoryManager::NallocType] = { 2, 8, 2, 8, 2, 8 }; |  | ||||||
| uint64_t MemoryManager::CacheBytes[MemoryManager::NallocType]; |  | ||||||
| ////////////////////////////////////////////////////////////////////// |  | ||||||
| // Actual allocation and deallocation utils |  | ||||||
| ////////////////////////////////////////////////////////////////////// |  | ||||||
| void *MemoryManager::AcceleratorAllocate(size_t bytes) |  | ||||||
| { |  | ||||||
|   total_device+=bytes; |  | ||||||
|   void *ptr = (void *) Lookup(bytes,Acc); |  | ||||||
|   if ( ptr == (void *) NULL ) { |  | ||||||
|     ptr = (void *) acceleratorAllocDevice(bytes); |  | ||||||
|   } |  | ||||||
| #ifdef GRID_MM_VERBOSE |  | ||||||
|   std::cout <<"AcceleratorAllocate "<<std::endl; |  | ||||||
|   PrintBytes(); |  | ||||||
| #endif |  | ||||||
|   return ptr; |  | ||||||
| } |  | ||||||
| void  MemoryManager::AcceleratorFree    (void *ptr,size_t bytes) |  | ||||||
| { |  | ||||||
|   total_device-=bytes; |  | ||||||
|   void *__freeme = Insert(ptr,bytes,Acc); |  | ||||||
|   if ( __freeme ) { |  | ||||||
|     acceleratorFreeDevice(__freeme); |  | ||||||
|   } |  | ||||||
| #ifdef GRID_MM_VERBOSE |  | ||||||
|   std::cout <<"AcceleratorFree "<<std::endl; |  | ||||||
|   PrintBytes(); |  | ||||||
| #endif |  | ||||||
| } |  | ||||||
| void *MemoryManager::SharedAllocate(size_t bytes) |  | ||||||
| { |  | ||||||
|   total_shared+=bytes; |  | ||||||
|   void *ptr = (void *) Lookup(bytes,Shared); |  | ||||||
|   if ( ptr == (void *) NULL ) { |  | ||||||
|     ptr = (void *) acceleratorAllocShared(bytes); |  | ||||||
|   } |  | ||||||
| #ifdef GRID_MM_VERBOSE |  | ||||||
|   std::cout <<"SharedAllocate "<<std::endl; |  | ||||||
|   PrintBytes(); |  | ||||||
| #endif |  | ||||||
|   return ptr; |  | ||||||
| } |  | ||||||
| void  MemoryManager::SharedFree    (void *ptr,size_t bytes) |  | ||||||
| { |  | ||||||
|   total_shared-=bytes; |  | ||||||
|   void *__freeme = Insert(ptr,bytes,Shared); |  | ||||||
|   if ( __freeme ) { |  | ||||||
|     acceleratorFreeShared(__freeme); |  | ||||||
|   } |  | ||||||
| #ifdef GRID_MM_VERBOSE |  | ||||||
|   std::cout <<"SharedFree "<<std::endl; |  | ||||||
|   PrintBytes(); |  | ||||||
| #endif |  | ||||||
| } |  | ||||||
| #ifdef GRID_UVM |  | ||||||
| void *MemoryManager::CpuAllocate(size_t bytes) |  | ||||||
| { |  | ||||||
|   total_host+=bytes; |  | ||||||
|   void *ptr = (void *) Lookup(bytes,Cpu); |  | ||||||
|   if ( ptr == (void *) NULL ) { |  | ||||||
|     ptr = (void *) acceleratorAllocShared(bytes); |  | ||||||
|   } |  | ||||||
| #ifdef GRID_MM_VERBOSE |  | ||||||
|   std::cout <<"CpuAllocate "<<std::endl; |  | ||||||
|   PrintBytes(); |  | ||||||
| #endif |  | ||||||
|   return ptr; |  | ||||||
| } |  | ||||||
| void  MemoryManager::CpuFree    (void *_ptr,size_t bytes) |  | ||||||
| { |  | ||||||
|   total_host-=bytes; |  | ||||||
|   NotifyDeletion(_ptr); |  | ||||||
|   void *__freeme = Insert(_ptr,bytes,Cpu); |  | ||||||
|   if ( __freeme ) {  |  | ||||||
|     acceleratorFreeShared(__freeme); |  | ||||||
|   } |  | ||||||
| #ifdef GRID_MM_VERBOSE |  | ||||||
|   std::cout <<"CpuFree "<<std::endl; |  | ||||||
|   PrintBytes(); |  | ||||||
| #endif |  | ||||||
| } |  | ||||||
| #else |  | ||||||
| void *MemoryManager::CpuAllocate(size_t bytes) |  | ||||||
| { |  | ||||||
|   total_host+=bytes; |  | ||||||
|   void *ptr = (void *) Lookup(bytes,Cpu); |  | ||||||
|   if ( ptr == (void *) NULL ) { |  | ||||||
|     ptr = (void *) acceleratorAllocCpu(bytes); |  | ||||||
|   } |  | ||||||
| #ifdef GRID_MM_VERBOSE |  | ||||||
|   std::cout <<"CpuAllocate "<<std::endl; |  | ||||||
|   PrintBytes(); |  | ||||||
| #endif |  | ||||||
|   return ptr; |  | ||||||
| } |  | ||||||
| void  MemoryManager::CpuFree    (void *_ptr,size_t bytes) |  | ||||||
| { |  | ||||||
|   total_host-=bytes; |  | ||||||
|   NotifyDeletion(_ptr); |  | ||||||
|   void *__freeme = Insert(_ptr,bytes,Cpu); |  | ||||||
|   if ( __freeme ) {  |  | ||||||
|     acceleratorFreeCpu(__freeme); |  | ||||||
|   } |  | ||||||
| #ifdef GRID_MM_VERBOSE |  | ||||||
|   std::cout <<"CpuFree "<<std::endl; |  | ||||||
|   PrintBytes(); |  | ||||||
| #endif |  | ||||||
| } |  | ||||||
| #endif |  | ||||||
|  |  | ||||||
| ////////////////////////////////////////// |  | ||||||
| // call only once |  | ||||||
| ////////////////////////////////////////// |  | ||||||
| void MemoryManager::Init(void) |  | ||||||
| { |  | ||||||
|  |  | ||||||
|   char * str; |  | ||||||
|   int Nc; |  | ||||||
|    |  | ||||||
|   str= getenv("GRID_ALLOC_NCACHE_LARGE"); |  | ||||||
|   if ( str ) { |  | ||||||
|     Nc = atoi(str); |  | ||||||
|     if ( (Nc>=0) && (Nc < NallocCacheMax)) { |  | ||||||
|       Ncache[Cpu]=Nc; |  | ||||||
|       Ncache[Acc]=Nc; |  | ||||||
|       Ncache[Shared]=Nc; |  | ||||||
|     } |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   str= getenv("GRID_ALLOC_NCACHE_SMALL"); |  | ||||||
|   if ( str ) { |  | ||||||
|     Nc = atoi(str); |  | ||||||
|     if ( (Nc>=0) && (Nc < NallocCacheMax)) { |  | ||||||
|       Ncache[CpuSmall]=Nc; |  | ||||||
|       Ncache[AccSmall]=Nc; |  | ||||||
|       Ncache[SharedSmall]=Nc; |  | ||||||
|     } |  | ||||||
|   } |  | ||||||
|  |  | ||||||
| } |  | ||||||
|  |  | ||||||
| void MemoryManager::InitMessage(void) { |  | ||||||
|  |  | ||||||
| #ifndef GRID_UVM |  | ||||||
|   std::cout << GridLogMessage << "MemoryManager Cache "<< MemoryManager::DeviceMaxBytes <<" bytes "<<std::endl; |  | ||||||
| #endif |  | ||||||
|    |  | ||||||
|   std::cout << GridLogMessage<< "MemoryManager::Init() setting up"<<std::endl; |  | ||||||
| #ifdef ALLOCATION_CACHE |  | ||||||
|   std::cout << GridLogMessage<< "MemoryManager::Init() cache pool for recent allocations: SMALL "<<Ncache[CpuSmall]<<" LARGE "<<Ncache[Cpu]<<std::endl; |  | ||||||
| #endif |  | ||||||
|    |  | ||||||
| #ifdef GRID_UVM |  | ||||||
|   std::cout << GridLogMessage<< "MemoryManager::Init() Unified memory space"<<std::endl; |  | ||||||
| #ifdef GRID_CUDA |  | ||||||
|   std::cout << GridLogMessage<< "MemoryManager::Init() Using cudaMallocManaged"<<std::endl; |  | ||||||
| #endif |  | ||||||
| #ifdef GRID_HIP |  | ||||||
|   std::cout << GridLogMessage<< "MemoryManager::Init() Using hipMallocManaged"<<std::endl; |  | ||||||
| #endif |  | ||||||
| #ifdef GRID_SYCL |  | ||||||
|   std::cout << GridLogMessage<< "MemoryManager::Init() Using SYCL malloc_shared"<<std::endl; |  | ||||||
| #endif |  | ||||||
| #else |  | ||||||
|   std::cout << GridLogMessage<< "MemoryManager::Init() Non unified: Caching accelerator data in dedicated memory"<<std::endl; |  | ||||||
| #ifdef GRID_CUDA |  | ||||||
|   std::cout << GridLogMessage<< "MemoryManager::Init() Using cudaMalloc"<<std::endl; |  | ||||||
| #endif |  | ||||||
| #ifdef GRID_HIP |  | ||||||
|   std::cout << GridLogMessage<< "MemoryManager::Init() Using hipMalloc"<<std::endl; |  | ||||||
| #endif |  | ||||||
| #ifdef GRID_SYCL |  | ||||||
|   std::cout << GridLogMessage<< "MemoryManager::Init() Using SYCL malloc_device"<<std::endl; |  | ||||||
| #endif |  | ||||||
| #endif |  | ||||||
|  |  | ||||||
| } |  | ||||||
|  |  | ||||||
| void *MemoryManager::Insert(void *ptr,size_t bytes,int type)  |  | ||||||
| { |  | ||||||
| #ifdef ALLOCATION_CACHE |  | ||||||
|   bool small = (bytes < GRID_ALLOC_SMALL_LIMIT); |  | ||||||
|   int cache = type + small; |  | ||||||
|   return Insert(ptr,bytes,Entries[cache],Ncache[cache],Victim[cache],CacheBytes[cache]);   |  | ||||||
| #else |  | ||||||
|   return ptr; |  | ||||||
| #endif |  | ||||||
| } |  | ||||||
|  |  | ||||||
| void *MemoryManager::Insert(void *ptr,size_t bytes,AllocationCacheEntry *entries,int ncache,int &victim, uint64_t &cacheBytes)  |  | ||||||
| { |  | ||||||
|   assert(ncache>0); |  | ||||||
| #ifdef GRID_OMP |  | ||||||
|   assert(omp_in_parallel()==0); |  | ||||||
| #endif  |  | ||||||
|  |  | ||||||
|   void * ret = NULL; |  | ||||||
|   int v = -1; |  | ||||||
|  |  | ||||||
|   for(int e=0;e<ncache;e++) { |  | ||||||
|     if ( entries[e].valid==0 ) { |  | ||||||
|       v=e;  |  | ||||||
|       break; |  | ||||||
|     } |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   if ( v==-1 ) { |  | ||||||
|     v=victim; |  | ||||||
|     victim = (victim+1)%ncache; |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   if ( entries[v].valid ) { |  | ||||||
|     ret = entries[v].address; |  | ||||||
|     cacheBytes -= entries[v].bytes; |  | ||||||
|     entries[v].valid = 0; |  | ||||||
|     entries[v].address = NULL; |  | ||||||
|     entries[v].bytes = 0; |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   entries[v].address=ptr; |  | ||||||
|   entries[v].bytes  =bytes; |  | ||||||
|   entries[v].valid  =1; |  | ||||||
|   cacheBytes += bytes; |  | ||||||
|  |  | ||||||
|   return ret; |  | ||||||
| } |  | ||||||
|  |  | ||||||
| void *MemoryManager::Lookup(size_t bytes,int type) |  | ||||||
| { |  | ||||||
| #ifdef ALLOCATION_CACHE |  | ||||||
|   bool small = (bytes < GRID_ALLOC_SMALL_LIMIT); |  | ||||||
|   int cache = type+small; |  | ||||||
|   return Lookup(bytes,Entries[cache],Ncache[cache],CacheBytes[cache]); |  | ||||||
| #else |  | ||||||
|   return NULL; |  | ||||||
| #endif |  | ||||||
| } |  | ||||||
|  |  | ||||||
| void *MemoryManager::Lookup(size_t bytes,AllocationCacheEntry *entries,int ncache,uint64_t & cacheBytes)  |  | ||||||
| { |  | ||||||
|   assert(ncache>0); |  | ||||||
| #ifdef GRID_OMP |  | ||||||
|   assert(omp_in_parallel()==0); |  | ||||||
| #endif  |  | ||||||
|   for(int e=0;e<ncache;e++){ |  | ||||||
|     if ( entries[e].valid && ( entries[e].bytes == bytes ) ) { |  | ||||||
|       entries[e].valid = 0; |  | ||||||
|       cacheBytes -= entries[e].bytes; |  | ||||||
|       return entries[e].address; |  | ||||||
|     } |  | ||||||
|   } |  | ||||||
|   return NULL; |  | ||||||
| } |  | ||||||
|  |  | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); |  | ||||||
|  |  | ||||||
| @@ -1,182 +0,0 @@ | |||||||
| /************************************************************************************* |  | ||||||
|  |  | ||||||
|     Grid physics library, www.github.com/paboyle/Grid  |  | ||||||
|  |  | ||||||
|     Source file: ./lib/MemoryManager.h |  | ||||||
|  |  | ||||||
|     Copyright (C) 2015 |  | ||||||
|  |  | ||||||
| Author: Azusa Yamaguchi <ayamaguc@staffmail.ed.ac.uk> |  | ||||||
| Author: Peter Boyle <paboyle@ph.ed.ac.uk> |  | ||||||
|  |  | ||||||
|     This program is free software; you can redistribute it and/or modify |  | ||||||
|     it under the terms of the GNU General Public License as published by |  | ||||||
|     the Free Software Foundation; either version 2 of the License, or |  | ||||||
|     (at your option) any later version. |  | ||||||
|  |  | ||||||
|     This program is distributed in the hope that it will be useful, |  | ||||||
|     but WITHOUT ANY WARRANTY; without even the implied warranty of |  | ||||||
|     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the |  | ||||||
|     GNU General Public License for more details. |  | ||||||
|  |  | ||||||
|     You should have received a copy of the GNU General Public License along |  | ||||||
|     with this program; if not, write to the Free Software Foundation, Inc., |  | ||||||
|     51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. |  | ||||||
|  |  | ||||||
|     See the full license in the file "LICENSE" in the top level distribution directory |  | ||||||
| *************************************************************************************/ |  | ||||||
| /*  END LEGAL */ |  | ||||||
| #pragma once |  | ||||||
| #include <list>  |  | ||||||
| #include <unordered_map>   |  | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); |  | ||||||
|  |  | ||||||
| // Move control to configure.ac and Config.h? |  | ||||||
|  |  | ||||||
| #define GRID_ALLOC_SMALL_LIMIT (4096) |  | ||||||
|  |  | ||||||
| /*Pinning pages is costly*/ |  | ||||||
| //////////////////////////////////////////////////////////////////////////// |  | ||||||
| // Advise the LatticeAccelerator class |  | ||||||
| //////////////////////////////////////////////////////////////////////////// |  | ||||||
| enum ViewAdvise { |  | ||||||
|  AdviseDefault       = 0x0,    // Regular data |  | ||||||
|  AdviseInfrequentUse = 0x1     // Advise that the data is used infrequently.  This can |  | ||||||
|                                // significantly influence performance of bulk storage. |  | ||||||
|   |  | ||||||
|  // AdviseTransient      = 0x2,   // Data will mostly be read.  On some architectures |  | ||||||
|                                // enables read-only copies of memory to be kept on |  | ||||||
|                                // host and device. |  | ||||||
|  |  | ||||||
|  // AdviseAcceleratorWriteDiscard = 0x4  // Field will be written in entirety on device |  | ||||||
|  |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| //////////////////////////////////////////////////////////////////////////// |  | ||||||
| // View Access Mode |  | ||||||
| //////////////////////////////////////////////////////////////////////////// |  | ||||||
| enum ViewMode { |  | ||||||
|   AcceleratorRead  = 0x01, |  | ||||||
|   AcceleratorWrite = 0x02, |  | ||||||
|   AcceleratorWriteDiscard = 0x04, |  | ||||||
|   CpuRead  = 0x08, |  | ||||||
|   CpuWrite = 0x10, |  | ||||||
|   CpuWriteDiscard = 0x10 // same for now |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| class MemoryManager { |  | ||||||
| private: |  | ||||||
|  |  | ||||||
|   //////////////////////////////////////////////////////////// |  | ||||||
|   // For caching recently freed allocations |  | ||||||
|   //////////////////////////////////////////////////////////// |  | ||||||
|   typedef struct {  |  | ||||||
|     void *address; |  | ||||||
|     size_t bytes; |  | ||||||
|     int valid; |  | ||||||
|   } AllocationCacheEntry; |  | ||||||
|  |  | ||||||
|   static const int NallocCacheMax=128;  |  | ||||||
|   static const int NallocType=6; |  | ||||||
|   static AllocationCacheEntry Entries[NallocType][NallocCacheMax]; |  | ||||||
|   static int Victim[NallocType]; |  | ||||||
|   static int Ncache[NallocType]; |  | ||||||
|   static uint64_t CacheBytes[NallocType]; |  | ||||||
|  |  | ||||||
|   ///////////////////////////////////////////////// |  | ||||||
|   // Free pool |  | ||||||
|   ///////////////////////////////////////////////// |  | ||||||
|   static void *Insert(void *ptr,size_t bytes,int type) ; |  | ||||||
|   static void *Lookup(size_t bytes,int type) ; |  | ||||||
|   static void *Insert(void *ptr,size_t bytes,AllocationCacheEntry *entries,int ncache,int &victim,uint64_t &cbytes) ; |  | ||||||
|   static void *Lookup(size_t bytes,AllocationCacheEntry *entries,int ncache,uint64_t &cbytes) ; |  | ||||||
|  |  | ||||||
|   static void PrintBytes(void); |  | ||||||
|  public: |  | ||||||
|   static void Init(void); |  | ||||||
|   static void InitMessage(void); |  | ||||||
|   static void *AcceleratorAllocate(size_t bytes); |  | ||||||
|   static void  AcceleratorFree    (void *ptr,size_t bytes); |  | ||||||
|   static void *SharedAllocate(size_t bytes); |  | ||||||
|   static void  SharedFree    (void *ptr,size_t bytes); |  | ||||||
|   static void *CpuAllocate(size_t bytes); |  | ||||||
|   static void  CpuFree    (void *ptr,size_t bytes); |  | ||||||
|  |  | ||||||
|   //////////////////////////////////////////////////////// |  | ||||||
|   // Footprint tracking |  | ||||||
|   //////////////////////////////////////////////////////// |  | ||||||
|   static uint64_t     DeviceBytes; |  | ||||||
|   static uint64_t     DeviceLRUBytes; |  | ||||||
|   static uint64_t     DeviceMaxBytes; |  | ||||||
|   static uint64_t     HostToDeviceBytes; |  | ||||||
|   static uint64_t     DeviceToHostBytes; |  | ||||||
|   static uint64_t     HostToDeviceXfer; |  | ||||||
|   static uint64_t     DeviceToHostXfer; |  | ||||||
|   |  | ||||||
|  private: |  | ||||||
| #ifndef GRID_UVM |  | ||||||
|   ////////////////////////////////////////////////////////////////////// |  | ||||||
|   // Data tables for ViewCache |  | ||||||
|   ////////////////////////////////////////////////////////////////////// |  | ||||||
|   typedef std::list<uint64_t> LRU_t; |  | ||||||
|   typedef typename LRU_t::iterator LRUiterator; |  | ||||||
|   typedef struct {  |  | ||||||
|     int        LRU_valid; |  | ||||||
|     LRUiterator LRU_entry; |  | ||||||
|     uint64_t CpuPtr; |  | ||||||
|     uint64_t AccPtr; |  | ||||||
|     size_t   bytes; |  | ||||||
|     uint32_t transient; |  | ||||||
|     uint32_t state; |  | ||||||
|     uint32_t accLock; |  | ||||||
|     uint32_t cpuLock; |  | ||||||
|   } AcceleratorViewEntry; |  | ||||||
|    |  | ||||||
|   typedef std::unordered_map<uint64_t,AcceleratorViewEntry> AccViewTable_t; |  | ||||||
|   typedef typename AccViewTable_t::iterator AccViewTableIterator ; |  | ||||||
|  |  | ||||||
|   static AccViewTable_t AccViewTable; |  | ||||||
|   static LRU_t LRU; |  | ||||||
|  |  | ||||||
|   ///////////////////////////////////////////////// |  | ||||||
|   // Device motion |  | ||||||
|   ///////////////////////////////////////////////// |  | ||||||
|   static void  Create(uint64_t CpuPtr,size_t bytes,ViewMode mode,ViewAdvise hint); |  | ||||||
|   static void  EvictVictims(uint64_t bytes); // Frees up <bytes> |  | ||||||
|   static void  Evict(AcceleratorViewEntry &AccCache); |  | ||||||
|   static void  Flush(AcceleratorViewEntry &AccCache); |  | ||||||
|   static void  Clone(AcceleratorViewEntry &AccCache); |  | ||||||
|   static void  AccDiscard(AcceleratorViewEntry &AccCache); |  | ||||||
|   static void  CpuDiscard(AcceleratorViewEntry &AccCache); |  | ||||||
|  |  | ||||||
|   //  static void  LRUupdate(AcceleratorViewEntry &AccCache); |  | ||||||
|   static void  LRUinsert(AcceleratorViewEntry &AccCache); |  | ||||||
|   static void  LRUremove(AcceleratorViewEntry &AccCache); |  | ||||||
|    |  | ||||||
|   // manage entries in the table |  | ||||||
|   static int                  EntryPresent(uint64_t CpuPtr); |  | ||||||
|   static void                 EntryCreate(uint64_t CpuPtr,size_t bytes,ViewMode mode,ViewAdvise hint); |  | ||||||
|   static void                 EntryErase (uint64_t CpuPtr); |  | ||||||
|   static AccViewTableIterator EntryLookup(uint64_t CpuPtr); |  | ||||||
|   static void                 EntrySet   (uint64_t CpuPtr,AcceleratorViewEntry &entry); |  | ||||||
|  |  | ||||||
|   static void     AcceleratorViewClose(uint64_t AccPtr); |  | ||||||
|   static uint64_t AcceleratorViewOpen(uint64_t  CpuPtr,size_t bytes,ViewMode mode,ViewAdvise hint); |  | ||||||
|   static void     CpuViewClose(uint64_t Ptr); |  | ||||||
|   static uint64_t CpuViewOpen(uint64_t  CpuPtr,size_t bytes,ViewMode mode,ViewAdvise hint); |  | ||||||
| #endif |  | ||||||
|   static void NotifyDeletion(void * CpuPtr); |  | ||||||
|  |  | ||||||
|  public: |  | ||||||
|   static void Print(void); |  | ||||||
|   static void PrintState( void* CpuPtr); |  | ||||||
|   static int   isOpen   (void* CpuPtr); |  | ||||||
|   static void  ViewClose(void* CpuPtr,ViewMode mode); |  | ||||||
|   static void *ViewOpen (void* CpuPtr,size_t bytes,ViewMode mode,ViewAdvise hint); |  | ||||||
|  |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); |  | ||||||
|  |  | ||||||
|  |  | ||||||
| @@ -1,505 +0,0 @@ | |||||||
| #include <Grid/GridCore.h> |  | ||||||
| #ifndef GRID_UVM |  | ||||||
|  |  | ||||||
| #warning "Using explicit device memory copies" |  | ||||||
| NAMESPACE_BEGIN(Grid); |  | ||||||
| //#define dprintf(...) printf ( __VA_ARGS__ ); fflush(stdout); |  | ||||||
| #define dprintf(...) |  | ||||||
|  |  | ||||||
|  |  | ||||||
| //////////////////////////////////////////////////////////// |  | ||||||
| // For caching copies of data on device |  | ||||||
| //////////////////////////////////////////////////////////// |  | ||||||
| MemoryManager::AccViewTable_t MemoryManager::AccViewTable; |  | ||||||
| MemoryManager::LRU_t MemoryManager::LRU; |  | ||||||
|    |  | ||||||
| //////////////////////////////////////////////////////// |  | ||||||
| // Footprint tracking |  | ||||||
| //////////////////////////////////////////////////////// |  | ||||||
| uint64_t  MemoryManager::DeviceBytes; |  | ||||||
| uint64_t  MemoryManager::DeviceLRUBytes; |  | ||||||
| uint64_t  MemoryManager::DeviceMaxBytes = 1024*1024*128; |  | ||||||
| uint64_t  MemoryManager::HostToDeviceBytes; |  | ||||||
| uint64_t  MemoryManager::DeviceToHostBytes; |  | ||||||
| uint64_t  MemoryManager::HostToDeviceXfer; |  | ||||||
| uint64_t  MemoryManager::DeviceToHostXfer; |  | ||||||
|  |  | ||||||
| //////////////////////////////////// |  | ||||||
| // Priority ordering for unlocked entries |  | ||||||
| //  Empty |  | ||||||
| //  CpuDirty  |  | ||||||
| //  Consistent |  | ||||||
| //  AccDirty |  | ||||||
| //////////////////////////////////// |  | ||||||
| #define Empty         (0x0)  /*Entry unoccupied  */ |  | ||||||
| #define CpuDirty      (0x1)  /*CPU copy is golden, Acc buffer MAY not be allocated*/ |  | ||||||
| #define Consistent    (0x2)  /*ACC copy AND CPU copy are valid */ |  | ||||||
| #define AccDirty      (0x4)  /*ACC copy is golden */ |  | ||||||
| #define EvictNext     (0x8)  /*Priority for eviction*/ |  | ||||||
|  |  | ||||||
| ///////////////////////////////////////////////// |  | ||||||
| // Mechanics of data table maintenance |  | ||||||
| ///////////////////////////////////////////////// |  | ||||||
| int   MemoryManager::EntryPresent(uint64_t CpuPtr) |  | ||||||
| { |  | ||||||
|   if(AccViewTable.empty()) return 0; |  | ||||||
|  |  | ||||||
|   auto count = AccViewTable.count(CpuPtr);  assert((count==0)||(count==1)); |  | ||||||
|   return count; |  | ||||||
| } |  | ||||||
| void  MemoryManager::EntryCreate(uint64_t CpuPtr,size_t bytes,ViewMode mode,ViewAdvise hint) |  | ||||||
| { |  | ||||||
|   assert(!EntryPresent(CpuPtr)); |  | ||||||
|   AcceleratorViewEntry AccCache; |  | ||||||
|   AccCache.CpuPtr = CpuPtr; |  | ||||||
|   AccCache.AccPtr = (uint64_t)NULL; |  | ||||||
|   AccCache.bytes  = bytes; |  | ||||||
|   AccCache.state  = CpuDirty; |  | ||||||
|   AccCache.LRU_valid=0; |  | ||||||
|   AccCache.transient=0; |  | ||||||
|   AccCache.accLock=0; |  | ||||||
|   AccCache.cpuLock=0; |  | ||||||
|   AccViewTable[CpuPtr] = AccCache; |  | ||||||
| } |  | ||||||
| MemoryManager::AccViewTableIterator MemoryManager::EntryLookup(uint64_t CpuPtr) |  | ||||||
| { |  | ||||||
|   assert(EntryPresent(CpuPtr)); |  | ||||||
|   auto AccCacheIterator = AccViewTable.find(CpuPtr); |  | ||||||
|   assert(AccCacheIterator!=AccViewTable.end()); |  | ||||||
|   return AccCacheIterator; |  | ||||||
| } |  | ||||||
| void MemoryManager::EntryErase(uint64_t CpuPtr) |  | ||||||
| { |  | ||||||
|   auto AccCache = EntryLookup(CpuPtr); |  | ||||||
|   AccViewTable.erase(CpuPtr); |  | ||||||
| } |  | ||||||
| void  MemoryManager::LRUinsert(AcceleratorViewEntry &AccCache) |  | ||||||
| { |  | ||||||
|   assert(AccCache.LRU_valid==0); |  | ||||||
|   if (AccCache.transient) {  |  | ||||||
|     LRU.push_back(AccCache.CpuPtr); |  | ||||||
|     AccCache.LRU_entry = --LRU.end(); |  | ||||||
|   } else { |  | ||||||
|     LRU.push_front(AccCache.CpuPtr); |  | ||||||
|     AccCache.LRU_entry = LRU.begin(); |  | ||||||
|   } |  | ||||||
|   AccCache.LRU_valid = 1; |  | ||||||
|   DeviceLRUBytes+=AccCache.bytes; |  | ||||||
| } |  | ||||||
| void  MemoryManager::LRUremove(AcceleratorViewEntry &AccCache) |  | ||||||
| { |  | ||||||
|   assert(AccCache.LRU_valid==1); |  | ||||||
|   LRU.erase(AccCache.LRU_entry); |  | ||||||
|   AccCache.LRU_valid = 0; |  | ||||||
|   DeviceLRUBytes-=AccCache.bytes; |  | ||||||
| } |  | ||||||
| ///////////////////////////////////////////////// |  | ||||||
| // Accelerator cache motion & consistency logic |  | ||||||
| ///////////////////////////////////////////////// |  | ||||||
| void MemoryManager::AccDiscard(AcceleratorViewEntry &AccCache) |  | ||||||
| { |  | ||||||
|   /////////////////////////////////////////////////////////// |  | ||||||
|   // Remove from Accelerator, remove entry, without flush |  | ||||||
|   // Cannot be locked. If allocated Must be in LRU pool. |  | ||||||
|   /////////////////////////////////////////////////////////// |  | ||||||
|   assert(AccCache.state!=Empty); |  | ||||||
|    |  | ||||||
|    dprintf("MemoryManager: Discard(%llx) %llx\n",(uint64_t)AccCache.CpuPtr,(uint64_t)AccCache.AccPtr);  |  | ||||||
|   assert(AccCache.accLock==0); |  | ||||||
|   assert(AccCache.cpuLock==0); |  | ||||||
|   assert(AccCache.CpuPtr!=(uint64_t)NULL); |  | ||||||
|   if(AccCache.AccPtr) { |  | ||||||
|     AcceleratorFree((void *)AccCache.AccPtr,AccCache.bytes); |  | ||||||
|     DeviceBytes   -=AccCache.bytes; |  | ||||||
|     LRUremove(AccCache); |  | ||||||
|     dprintf("MemoryManager: Free(%llx) LRU %lld Total %lld\n",(uint64_t)AccCache.AccPtr,DeviceLRUBytes,DeviceBytes);   |  | ||||||
|   } |  | ||||||
|   uint64_t CpuPtr = AccCache.CpuPtr; |  | ||||||
|   EntryErase(CpuPtr); |  | ||||||
| } |  | ||||||
|  |  | ||||||
| void MemoryManager::Evict(AcceleratorViewEntry &AccCache) |  | ||||||
| { |  | ||||||
|   /////////////////////////////////////////////////////////////////////////// |  | ||||||
|   // Make CPU consistent, remove from Accelerator, remove entry |  | ||||||
|   // Cannot be locked. If allocated must be in LRU pool. |  | ||||||
|   /////////////////////////////////////////////////////////////////////////// |  | ||||||
|   assert(AccCache.state!=Empty); |  | ||||||
|    |  | ||||||
|   dprintf("MemoryManager: Evict(%llx) %llx\n",(uint64_t)AccCache.CpuPtr,(uint64_t)AccCache.AccPtr);  |  | ||||||
|   assert(AccCache.accLock==0); |  | ||||||
|   assert(AccCache.cpuLock==0); |  | ||||||
|   if(AccCache.state==AccDirty) { |  | ||||||
|     Flush(AccCache); |  | ||||||
|   } |  | ||||||
|   assert(AccCache.CpuPtr!=(uint64_t)NULL); |  | ||||||
|   if(AccCache.AccPtr) { |  | ||||||
|     AcceleratorFree((void *)AccCache.AccPtr,AccCache.bytes); |  | ||||||
|     DeviceBytes   -=AccCache.bytes; |  | ||||||
|     LRUremove(AccCache); |  | ||||||
|     dprintf("MemoryManager: Free(%llx) footprint now %lld \n",(uint64_t)AccCache.AccPtr,DeviceBytes);   |  | ||||||
|   } |  | ||||||
|   uint64_t CpuPtr = AccCache.CpuPtr; |  | ||||||
|   EntryErase(CpuPtr); |  | ||||||
| } |  | ||||||
| void MemoryManager::Flush(AcceleratorViewEntry &AccCache) |  | ||||||
| { |  | ||||||
|   assert(AccCache.state==AccDirty); |  | ||||||
|   assert(AccCache.cpuLock==0); |  | ||||||
|   assert(AccCache.accLock==0); |  | ||||||
|   assert(AccCache.AccPtr!=(uint64_t)NULL); |  | ||||||
|   assert(AccCache.CpuPtr!=(uint64_t)NULL); |  | ||||||
|   acceleratorCopyFromDevice((void *)AccCache.AccPtr,(void *)AccCache.CpuPtr,AccCache.bytes); |  | ||||||
|   dprintf("MemoryManager: Flush  %llx -> %llx\n",(uint64_t)AccCache.AccPtr,(uint64_t)AccCache.CpuPtr); fflush(stdout); |  | ||||||
|   DeviceToHostBytes+=AccCache.bytes; |  | ||||||
|   DeviceToHostXfer++; |  | ||||||
|   AccCache.state=Consistent; |  | ||||||
| } |  | ||||||
| void MemoryManager::Clone(AcceleratorViewEntry &AccCache) |  | ||||||
| { |  | ||||||
|   assert(AccCache.state==CpuDirty); |  | ||||||
|   assert(AccCache.cpuLock==0); |  | ||||||
|   assert(AccCache.accLock==0); |  | ||||||
|   assert(AccCache.CpuPtr!=(uint64_t)NULL); |  | ||||||
|   if(AccCache.AccPtr==(uint64_t)NULL){ |  | ||||||
|     AccCache.AccPtr=(uint64_t)AcceleratorAllocate(AccCache.bytes); |  | ||||||
|     DeviceBytes+=AccCache.bytes; |  | ||||||
|   } |  | ||||||
|   dprintf("MemoryManager: Clone %llx <- %llx\n",(uint64_t)AccCache.AccPtr,(uint64_t)AccCache.CpuPtr); fflush(stdout); |  | ||||||
|   acceleratorCopyToDevice((void *)AccCache.CpuPtr,(void *)AccCache.AccPtr,AccCache.bytes); |  | ||||||
|   HostToDeviceBytes+=AccCache.bytes; |  | ||||||
|   HostToDeviceXfer++; |  | ||||||
|   AccCache.state=Consistent; |  | ||||||
| } |  | ||||||
|  |  | ||||||
| void MemoryManager::CpuDiscard(AcceleratorViewEntry &AccCache) |  | ||||||
| { |  | ||||||
|   assert(AccCache.state!=Empty); |  | ||||||
|   assert(AccCache.cpuLock==0); |  | ||||||
|   assert(AccCache.accLock==0); |  | ||||||
|   assert(AccCache.CpuPtr!=(uint64_t)NULL); |  | ||||||
|   if(AccCache.AccPtr==(uint64_t)NULL){ |  | ||||||
|     AccCache.AccPtr=(uint64_t)AcceleratorAllocate(AccCache.bytes); |  | ||||||
|     DeviceBytes+=AccCache.bytes; |  | ||||||
|   } |  | ||||||
|   AccCache.state=AccDirty; |  | ||||||
| } |  | ||||||
|  |  | ||||||
| ///////////////////////////////////////////////////////////////////////////////// |  | ||||||
| // View management |  | ||||||
| ///////////////////////////////////////////////////////////////////////////////// |  | ||||||
| void MemoryManager::ViewClose(void* Ptr,ViewMode mode) |  | ||||||
| { |  | ||||||
|   if( (mode==AcceleratorRead)||(mode==AcceleratorWrite)||(mode==AcceleratorWriteDiscard) ){ |  | ||||||
|     AcceleratorViewClose((uint64_t)Ptr); |  | ||||||
|   } else if( (mode==CpuRead)||(mode==CpuWrite)){ |  | ||||||
|     CpuViewClose((uint64_t)Ptr); |  | ||||||
|   } else {  |  | ||||||
|     assert(0); |  | ||||||
|   } |  | ||||||
| } |  | ||||||
| void *MemoryManager::ViewOpen(void* _CpuPtr,size_t bytes,ViewMode mode,ViewAdvise hint) |  | ||||||
| { |  | ||||||
|   uint64_t CpuPtr = (uint64_t)_CpuPtr; |  | ||||||
|   if( (mode==AcceleratorRead)||(mode==AcceleratorWrite)||(mode==AcceleratorWriteDiscard) ){ |  | ||||||
|     return (void *) AcceleratorViewOpen(CpuPtr,bytes,mode,hint); |  | ||||||
|   } else if( (mode==CpuRead)||(mode==CpuWrite)){ |  | ||||||
|     return (void *)CpuViewOpen(CpuPtr,bytes,mode,hint); |  | ||||||
|   } else {  |  | ||||||
|     assert(0); |  | ||||||
|     return NULL; |  | ||||||
|   } |  | ||||||
| } |  | ||||||
| void  MemoryManager::EvictVictims(uint64_t bytes) |  | ||||||
| { |  | ||||||
|   while(bytes+DeviceLRUBytes > DeviceMaxBytes){ |  | ||||||
|     if ( DeviceLRUBytes > 0){ |  | ||||||
|       assert(LRU.size()>0); |  | ||||||
|       uint64_t victim = LRU.back(); |  | ||||||
|       auto AccCacheIterator = EntryLookup(victim); |  | ||||||
|       auto & AccCache = AccCacheIterator->second; |  | ||||||
|       Evict(AccCache); |  | ||||||
|     } |  | ||||||
|   } |  | ||||||
| } |  | ||||||
| uint64_t MemoryManager::AcceleratorViewOpen(uint64_t CpuPtr,size_t bytes,ViewMode mode,ViewAdvise hint) |  | ||||||
| { |  | ||||||
|   //////////////////////////////////////////////////////////////////////////// |  | ||||||
|   // Find if present, otherwise get or force an empty |  | ||||||
|   //////////////////////////////////////////////////////////////////////////// |  | ||||||
|   if ( EntryPresent(CpuPtr)==0 ){ |  | ||||||
|     EntryCreate(CpuPtr,bytes,mode,hint); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   auto AccCacheIterator = EntryLookup(CpuPtr); |  | ||||||
|   auto & AccCache = AccCacheIterator->second; |  | ||||||
|   if (!AccCache.AccPtr) { |  | ||||||
|     EvictVictims(bytes);  |  | ||||||
|   }  |  | ||||||
|   assert((mode==AcceleratorRead)||(mode==AcceleratorWrite)||(mode==AcceleratorWriteDiscard)); |  | ||||||
|  |  | ||||||
|   assert(AccCache.cpuLock==0);  // Programming error |  | ||||||
|  |  | ||||||
|   if(AccCache.state!=Empty) { |  | ||||||
|     dprintf("ViewOpen found entry %llx %llx : %lld %lld\n", |  | ||||||
| 		    (uint64_t)AccCache.CpuPtr, |  | ||||||
| 		    (uint64_t)CpuPtr, |  | ||||||
| 		    (uint64_t)AccCache.bytes, |  | ||||||
| 		    (uint64_t)bytes); |  | ||||||
|     assert(AccCache.CpuPtr == CpuPtr); |  | ||||||
|     assert(AccCache.bytes  ==bytes); |  | ||||||
|   } |  | ||||||
| /* |  | ||||||
|  *  State transitions and actions |  | ||||||
|  * |  | ||||||
|  *  Action  State   StateNext         Flush    Clone |  | ||||||
|  * |  | ||||||
|  *  AccRead  Empty   Consistent        -        Y |  | ||||||
|  *  AccWrite Empty   AccDirty          -        Y |  | ||||||
|  *  AccRead  CpuDirty Consistent       -        Y |  | ||||||
|  *  AccWrite CpuDirty AccDirty         -        Y |  | ||||||
|  *  AccRead  Consistent Consistent     -        -  |  | ||||||
|  *  AccWrite Consistent AccDirty       -        -  |  | ||||||
|  *  AccRead  AccDirty   AccDirty       -        -  |  | ||||||
|  *  AccWrite AccDirty   AccDirty       -        -  |  | ||||||
|  */ |  | ||||||
|   if(AccCache.state==Empty) { |  | ||||||
|     assert(AccCache.LRU_valid==0); |  | ||||||
|     AccCache.CpuPtr = CpuPtr; |  | ||||||
|     AccCache.AccPtr = (uint64_t)NULL; |  | ||||||
|     AccCache.bytes  = bytes; |  | ||||||
|     AccCache.state  = CpuDirty;   // Cpu starts primary |  | ||||||
|     if(mode==AcceleratorWriteDiscard){ |  | ||||||
|       CpuDiscard(AccCache); |  | ||||||
|       AccCache.state  = AccDirty;   // Empty + AcceleratorWrite=> AccDirty |  | ||||||
|     } else if(mode==AcceleratorWrite){ |  | ||||||
|       Clone(AccCache); |  | ||||||
|       AccCache.state  = AccDirty;   // Empty + AcceleratorWrite=> AccDirty |  | ||||||
|     } else { |  | ||||||
|       Clone(AccCache); |  | ||||||
|       AccCache.state  = Consistent; // Empty + AccRead => Consistent |  | ||||||
|     } |  | ||||||
|     AccCache.accLock= 1; |  | ||||||
|   } else if(AccCache.state==CpuDirty ){ |  | ||||||
|     if(mode==AcceleratorWriteDiscard) { |  | ||||||
|       CpuDiscard(AccCache); |  | ||||||
|       AccCache.state  = AccDirty;   // CpuDirty + AcceleratorWrite=> AccDirty |  | ||||||
|     } else if(mode==AcceleratorWrite) { |  | ||||||
|       Clone(AccCache); |  | ||||||
|       AccCache.state  = AccDirty;   // CpuDirty + AcceleratorWrite=> AccDirty |  | ||||||
|     } else { |  | ||||||
|       Clone(AccCache); |  | ||||||
|       AccCache.state  = Consistent; // CpuDirty + AccRead => Consistent |  | ||||||
|     } |  | ||||||
|     AccCache.accLock++; |  | ||||||
|     dprintf("Copied CpuDirty entry into device accLock %d\n",AccCache.accLock); |  | ||||||
|   } else if(AccCache.state==Consistent) { |  | ||||||
|     if((mode==AcceleratorWrite)||(mode==AcceleratorWriteDiscard)) |  | ||||||
|       AccCache.state  = AccDirty;   // Consistent + AcceleratorWrite=> AccDirty |  | ||||||
|     else |  | ||||||
|       AccCache.state  = Consistent; // Consistent + AccRead => Consistent |  | ||||||
|     AccCache.accLock++; |  | ||||||
|     dprintf("Consistent entry into device accLock %d\n",AccCache.accLock); |  | ||||||
|   } else if(AccCache.state==AccDirty) { |  | ||||||
|     if((mode==AcceleratorWrite)||(mode==AcceleratorWriteDiscard)) |  | ||||||
|       AccCache.state  = AccDirty; // AccDirty + AcceleratorWrite=> AccDirty |  | ||||||
|     else |  | ||||||
|       AccCache.state  = AccDirty; // AccDirty + AccRead => AccDirty |  | ||||||
|     AccCache.accLock++; |  | ||||||
|     dprintf("AccDirty entry into device accLock %d\n",AccCache.accLock); |  | ||||||
|   } else { |  | ||||||
|     assert(0); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   // If view is opened on device remove from LRU |  | ||||||
|   if(AccCache.LRU_valid==1){ |  | ||||||
|     // must possibly remove from LRU as now locked on GPU |  | ||||||
|     LRUremove(AccCache); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   int transient =hint; |  | ||||||
|   AccCache.transient= transient? EvictNext : 0; |  | ||||||
|  |  | ||||||
|   return AccCache.AccPtr; |  | ||||||
| } |  | ||||||
| //////////////////////////////////// |  | ||||||
| // look up & decrement lock count |  | ||||||
| //////////////////////////////////// |  | ||||||
| void MemoryManager::AcceleratorViewClose(uint64_t CpuPtr) |  | ||||||
| { |  | ||||||
|   auto AccCacheIterator = EntryLookup(CpuPtr); |  | ||||||
|   auto & AccCache = AccCacheIterator->second; |  | ||||||
|  |  | ||||||
|   assert(AccCache.cpuLock==0); |  | ||||||
|   assert(AccCache.accLock>0); |  | ||||||
|  |  | ||||||
|   AccCache.accLock--; |  | ||||||
|  |  | ||||||
|   // Move to LRU queue if not locked and close on device |  | ||||||
|   if(AccCache.accLock==0) { |  | ||||||
|     LRUinsert(AccCache); |  | ||||||
|   } |  | ||||||
| } |  | ||||||
| void MemoryManager::CpuViewClose(uint64_t CpuPtr) |  | ||||||
| { |  | ||||||
|   auto AccCacheIterator = EntryLookup(CpuPtr); |  | ||||||
|   auto & AccCache = AccCacheIterator->second; |  | ||||||
|  |  | ||||||
|   assert(AccCache.cpuLock>0); |  | ||||||
|   assert(AccCache.accLock==0); |  | ||||||
|  |  | ||||||
|   AccCache.cpuLock--; |  | ||||||
| } |  | ||||||
| /* |  | ||||||
|  *  Action  State   StateNext         Flush    Clone |  | ||||||
|  * |  | ||||||
|  *  CpuRead  Empty   CpuDirty          -        - |  | ||||||
|  *  CpuWrite Empty   CpuDirty          -        - |  | ||||||
|  *  CpuRead  CpuDirty CpuDirty         -        - |  | ||||||
|  *  CpuWrite CpuDirty CpuDirty         -        -  |  | ||||||
|  *  CpuRead  Consistent Consistent     -        -  |  | ||||||
|  *  CpuWrite Consistent CpuDirty       -        -  |  | ||||||
|  *  CpuRead  AccDirty   Consistent     Y        - |  | ||||||
|  *  CpuWrite AccDirty   CpuDirty       Y        - |  | ||||||
|  */ |  | ||||||
| uint64_t MemoryManager::CpuViewOpen(uint64_t CpuPtr,size_t bytes,ViewMode mode,ViewAdvise transient) |  | ||||||
| { |  | ||||||
|   //////////////////////////////////////////////////////////////////////////// |  | ||||||
|   // Find if present, otherwise get or force an empty |  | ||||||
|   //////////////////////////////////////////////////////////////////////////// |  | ||||||
|   if ( EntryPresent(CpuPtr)==0 ){ |  | ||||||
|     EntryCreate(CpuPtr,bytes,mode,transient); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   auto AccCacheIterator = EntryLookup(CpuPtr); |  | ||||||
|   auto & AccCache = AccCacheIterator->second; |  | ||||||
|  |  | ||||||
|   if (!AccCache.AccPtr) { |  | ||||||
|      EvictVictims(bytes); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   assert((mode==CpuRead)||(mode==CpuWrite)); |  | ||||||
|   assert(AccCache.accLock==0);  // Programming error |  | ||||||
|  |  | ||||||
|   if(AccCache.state!=Empty) { |  | ||||||
|     assert(AccCache.CpuPtr == CpuPtr); |  | ||||||
|     assert(AccCache.bytes==bytes); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   if(AccCache.state==Empty) { |  | ||||||
|     AccCache.CpuPtr = CpuPtr; |  | ||||||
|     AccCache.AccPtr = (uint64_t)NULL; |  | ||||||
|     AccCache.bytes  = bytes; |  | ||||||
|     AccCache.state  = CpuDirty; // Empty + CpuRead/CpuWrite => CpuDirty |  | ||||||
|     AccCache.accLock= 0; |  | ||||||
|     AccCache.cpuLock= 1; |  | ||||||
|   } else if(AccCache.state==CpuDirty ){ |  | ||||||
|     // AccPtr dont care, deferred allocate |  | ||||||
|     AccCache.state = CpuDirty; // CpuDirty +CpuRead/CpuWrite => CpuDirty |  | ||||||
|     AccCache.cpuLock++; |  | ||||||
|   } else if(AccCache.state==Consistent) { |  | ||||||
|     assert(AccCache.AccPtr != (uint64_t)NULL); |  | ||||||
|     if(mode==CpuWrite) |  | ||||||
|       AccCache.state = CpuDirty;   // Consistent +CpuWrite => CpuDirty |  | ||||||
|     else  |  | ||||||
|       AccCache.state = Consistent; // Consistent +CpuRead  => Consistent |  | ||||||
|     AccCache.cpuLock++; |  | ||||||
|   } else if(AccCache.state==AccDirty) { |  | ||||||
|     assert(AccCache.AccPtr != (uint64_t)NULL); |  | ||||||
|     Flush(AccCache); |  | ||||||
|     if(mode==CpuWrite) AccCache.state = CpuDirty;   // AccDirty +CpuWrite => CpuDirty, Flush |  | ||||||
|     else            AccCache.state = Consistent; // AccDirty +CpuRead  => Consistent, Flush |  | ||||||
|     AccCache.cpuLock++; |  | ||||||
|   } else { |  | ||||||
|     assert(0); // should be unreachable |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   AccCache.transient= transient? EvictNext : 0; |  | ||||||
|  |  | ||||||
|   return AccCache.CpuPtr; |  | ||||||
| } |  | ||||||
| void  MemoryManager::NotifyDeletion(void *_ptr) |  | ||||||
| { |  | ||||||
|   // Look up in ViewCache |  | ||||||
|   uint64_t ptr = (uint64_t)_ptr; |  | ||||||
|   if(EntryPresent(ptr)) { |  | ||||||
|     auto e = EntryLookup(ptr); |  | ||||||
|     AccDiscard(e->second); |  | ||||||
|   } |  | ||||||
| } |  | ||||||
| void  MemoryManager::Print(void) |  | ||||||
| { |  | ||||||
|   PrintBytes(); |  | ||||||
|   std::cout << GridLogDebug << "--------------------------------------------" << std::endl; |  | ||||||
|   std::cout << GridLogDebug << "Memory Manager                             " << std::endl; |  | ||||||
|   std::cout << GridLogDebug << "--------------------------------------------" << std::endl; |  | ||||||
|   std::cout << GridLogDebug << DeviceBytes   << " bytes allocated on device " << std::endl; |  | ||||||
|   std::cout << GridLogDebug << DeviceLRUBytes<< " bytes evictable on device " << std::endl; |  | ||||||
|   std::cout << GridLogDebug << DeviceMaxBytes<< " bytes max on device       " << std::endl; |  | ||||||
|   std::cout << GridLogDebug << HostToDeviceXfer << " transfers        to   device " << std::endl; |  | ||||||
|   std::cout << GridLogDebug << DeviceToHostXfer << " transfers        from device " << std::endl; |  | ||||||
|   std::cout << GridLogDebug << HostToDeviceBytes<< " bytes transfered to   device " << std::endl; |  | ||||||
|   std::cout << GridLogDebug << DeviceToHostBytes<< " bytes transfered from device " << std::endl; |  | ||||||
|   std::cout << GridLogDebug << AccViewTable.size()<< " vectors " << LRU.size()<<" evictable"<< std::endl; |  | ||||||
|   std::cout << GridLogDebug << "--------------------------------------------" << std::endl; |  | ||||||
|   std::cout << GridLogDebug << "CpuAddr\t\tAccAddr\t\tState\t\tcpuLock\taccLock\tLRU_valid "<<std::endl; |  | ||||||
|   std::cout << GridLogDebug << "--------------------------------------------" << std::endl; |  | ||||||
|   for(auto it=AccViewTable.begin();it!=AccViewTable.end();it++){ |  | ||||||
|     auto &AccCache = it->second; |  | ||||||
|      |  | ||||||
|     std::string str; |  | ||||||
|     if ( AccCache.state==Empty    ) str = std::string("Empty"); |  | ||||||
|     if ( AccCache.state==CpuDirty ) str = std::string("CpuDirty"); |  | ||||||
|     if ( AccCache.state==AccDirty ) str = std::string("AccDirty"); |  | ||||||
|     if ( AccCache.state==Consistent)str = std::string("Consistent"); |  | ||||||
|  |  | ||||||
|     std::cout << GridLogDebug << "0x"<<std::hex<<AccCache.CpuPtr<<std::dec |  | ||||||
| 	      << "\t0x"<<std::hex<<AccCache.AccPtr<<std::dec<<"\t" <<str |  | ||||||
| 	      << "\t" << AccCache.cpuLock |  | ||||||
| 	      << "\t" << AccCache.accLock |  | ||||||
| 	      << "\t" << AccCache.LRU_valid<<std::endl; |  | ||||||
|   } |  | ||||||
|   std::cout << GridLogDebug << "--------------------------------------------" << std::endl; |  | ||||||
|  |  | ||||||
| }; |  | ||||||
| int   MemoryManager::isOpen   (void* _CpuPtr)  |  | ||||||
| {  |  | ||||||
|   uint64_t CpuPtr = (uint64_t)_CpuPtr; |  | ||||||
|   if ( EntryPresent(CpuPtr) ){ |  | ||||||
|     auto AccCacheIterator = EntryLookup(CpuPtr); |  | ||||||
|     auto & AccCache = AccCacheIterator->second; |  | ||||||
|     return AccCache.cpuLock+AccCache.accLock; |  | ||||||
|   } else {  |  | ||||||
|     return 0; |  | ||||||
|   } |  | ||||||
| } |  | ||||||
|  |  | ||||||
| void MemoryManager::PrintState(void* _CpuPtr) |  | ||||||
| { |  | ||||||
|   uint64_t CpuPtr = (uint64_t)_CpuPtr; |  | ||||||
|  |  | ||||||
|   if ( EntryPresent(CpuPtr) ){ |  | ||||||
|     auto AccCacheIterator = EntryLookup(CpuPtr); |  | ||||||
|     auto & AccCache = AccCacheIterator->second; |  | ||||||
|     std::string str; |  | ||||||
|     if ( AccCache.state==Empty    ) str = std::string("Empty"); |  | ||||||
|     if ( AccCache.state==CpuDirty ) str = std::string("CpuDirty"); |  | ||||||
|     if ( AccCache.state==AccDirty ) str = std::string("AccDirty"); |  | ||||||
|     if ( AccCache.state==Consistent)str = std::string("Consistent"); |  | ||||||
|     if ( AccCache.state==EvictNext) str = std::string("EvictNext"); |  | ||||||
|  |  | ||||||
|     std::cout << GridLogMessage << "CpuAddr\t\tAccAddr\t\tState\t\tcpuLock\taccLock\tLRU_valid "<<std::endl; |  | ||||||
|     std::cout << GridLogMessage << "0x"<<std::hex<<AccCache.CpuPtr<<std::dec |  | ||||||
|     << "\t0x"<<std::hex<<AccCache.AccPtr<<std::dec<<"\t" <<str |  | ||||||
|     << "\t" << AccCache.cpuLock |  | ||||||
|     << "\t" << AccCache.accLock |  | ||||||
|     << "\t" << AccCache.LRU_valid<<std::endl; |  | ||||||
|  |  | ||||||
|   } else { |  | ||||||
|     std::cout << GridLogMessage << "No Entry in AccCache table." << std::endl;  |  | ||||||
|   } |  | ||||||
| } |  | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); |  | ||||||
|  |  | ||||||
| #endif |  | ||||||
| @@ -1,27 +0,0 @@ | |||||||
| #include <Grid/GridCore.h> |  | ||||||
| #ifdef GRID_UVM |  | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); |  | ||||||
| ///////////////////////////////////////////////////////////////////////////////// |  | ||||||
| // View management is 1:1 address space mapping |  | ||||||
| ///////////////////////////////////////////////////////////////////////////////// |  | ||||||
| uint64_t  MemoryManager::DeviceBytes; |  | ||||||
| uint64_t  MemoryManager::DeviceLRUBytes; |  | ||||||
| uint64_t  MemoryManager::DeviceMaxBytes = 1024*1024*128; |  | ||||||
| uint64_t  MemoryManager::HostToDeviceBytes; |  | ||||||
| uint64_t  MemoryManager::DeviceToHostBytes; |  | ||||||
| uint64_t  MemoryManager::HostToDeviceXfer; |  | ||||||
| uint64_t  MemoryManager::DeviceToHostXfer; |  | ||||||
|  |  | ||||||
| void  MemoryManager::ViewClose(void* AccPtr,ViewMode mode){}; |  | ||||||
| void *MemoryManager::ViewOpen(void* CpuPtr,size_t bytes,ViewMode mode,ViewAdvise hint){ return CpuPtr; }; |  | ||||||
| int   MemoryManager::isOpen   (void* CpuPtr) { return 0;} |  | ||||||
| void  MemoryManager::PrintState(void* CpuPtr) |  | ||||||
| { |  | ||||||
| std::cout << GridLogMessage << "Host<->Device memory movement not currently managed by Grid." << std::endl; |  | ||||||
| }; |  | ||||||
| void  MemoryManager::Print(void){}; |  | ||||||
| void  MemoryManager::NotifyDeletion(void *ptr){}; |  | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); |  | ||||||
| #endif |  | ||||||
| @@ -1,67 +0,0 @@ | |||||||
| #include <Grid/GridCore.h> |  | ||||||
| #include <fcntl.h> |  | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); |  | ||||||
|  |  | ||||||
| MemoryStats *MemoryProfiler::stats = nullptr; |  | ||||||
| bool         MemoryProfiler::debug = false; |  | ||||||
|  |  | ||||||
| void check_huge_pages(void *Buf,uint64_t BYTES) |  | ||||||
| { |  | ||||||
| #ifdef __linux__ |  | ||||||
|   int fd = open("/proc/self/pagemap", O_RDONLY); |  | ||||||
|   assert(fd >= 0); |  | ||||||
|   const int page_size = 4096; |  | ||||||
|   uint64_t virt_pfn = (uint64_t)Buf / page_size; |  | ||||||
|   off_t offset = sizeof(uint64_t) * virt_pfn; |  | ||||||
|   uint64_t npages = (BYTES + page_size-1) / page_size; |  | ||||||
|   uint64_t pagedata[npages]; |  | ||||||
|   uint64_t ret = lseek(fd, offset, SEEK_SET); |  | ||||||
|   assert(ret == offset); |  | ||||||
|   ret = ::read(fd, pagedata, sizeof(uint64_t)*npages); |  | ||||||
|   assert(ret == sizeof(uint64_t) * npages); |  | ||||||
|   int nhugepages = npages / 512; |  | ||||||
|   int n4ktotal, nnothuge; |  | ||||||
|   n4ktotal = 0; |  | ||||||
|   nnothuge = 0; |  | ||||||
|   for (int i = 0; i < nhugepages; ++i) { |  | ||||||
|     uint64_t baseaddr = (pagedata[i*512] & 0x7fffffffffffffULL) * page_size; |  | ||||||
|     for (int j = 0; j < 512; ++j) { |  | ||||||
|       uint64_t pageaddr = (pagedata[i*512+j] & 0x7fffffffffffffULL) * page_size; |  | ||||||
|       ++n4ktotal; |  | ||||||
|       if (pageaddr != baseaddr + j * page_size) |  | ||||||
| 	++nnothuge; |  | ||||||
|     } |  | ||||||
|   } |  | ||||||
|   int rank = CartesianCommunicator::RankWorld(); |  | ||||||
|   printf("rank %d Allocated %d 4k pages, %d not in huge pages\n", rank, n4ktotal, nnothuge); |  | ||||||
| #endif |  | ||||||
| } |  | ||||||
|  |  | ||||||
| std::string sizeString(const size_t bytes) |  | ||||||
| { |  | ||||||
|   constexpr unsigned int bufSize = 256; |  | ||||||
|   const char             *suffixes[7] = {"", "K", "M", "G", "T", "P", "E"}; |  | ||||||
|   char                   buf[256]; |  | ||||||
|   size_t                 s     = 0; |  | ||||||
|   double                 count = bytes; |  | ||||||
|    |  | ||||||
|   while (count >= 1024 && s < 7) |  | ||||||
|     { |  | ||||||
|       s++; |  | ||||||
|       count /= 1024; |  | ||||||
|     } |  | ||||||
|   if (count - floor(count) == 0.0) |  | ||||||
|     { |  | ||||||
|       snprintf(buf, bufSize, "%d %sB", (int)count, suffixes[s]); |  | ||||||
|     } |  | ||||||
|   else |  | ||||||
|     { |  | ||||||
|       snprintf(buf, bufSize, "%.1f %sB", count, suffixes[s]); |  | ||||||
|     } |  | ||||||
|    |  | ||||||
|   return std::string(buf); |  | ||||||
| } |  | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); |  | ||||||
|  |  | ||||||
| @@ -1,95 +0,0 @@ | |||||||
| /************************************************************************************* |  | ||||||
|  |  | ||||||
|     Grid physics library, www.github.com/paboyle/Grid  |  | ||||||
|  |  | ||||||
|     Source file: ./lib/MemoryStats.h |  | ||||||
|  |  | ||||||
|     Copyright (C) 2015 |  | ||||||
|  |  | ||||||
| Author: Azusa Yamaguchi <ayamaguc@staffmail.ed.ac.uk> |  | ||||||
| Author: Peter Boyle <paboyle@ph.ed.ac.uk> |  | ||||||
|  |  | ||||||
|     This program is free software; you can redistribute it and/or modify |  | ||||||
|     it under the terms of the GNU General Public License as published by |  | ||||||
|     the Free Software Foundation; either version 2 of the License, or |  | ||||||
|     (at your option) any later version. |  | ||||||
|  |  | ||||||
|     This program is distributed in the hope that it will be useful, |  | ||||||
|     but WITHOUT ANY WARRANTY; without even the implied warranty of |  | ||||||
|     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the |  | ||||||
|     GNU General Public License for more details. |  | ||||||
|  |  | ||||||
|     You should have received a copy of the GNU General Public License along |  | ||||||
|     with this program; if not, write to the Free Software Foundation, Inc., |  | ||||||
|     51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. |  | ||||||
|  |  | ||||||
|     See the full license in the file "LICENSE" in the top level distribution directory |  | ||||||
| *************************************************************************************/ |  | ||||||
| /*  END LEGAL */ |  | ||||||
| #pragma once |  | ||||||
|  |  | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); |  | ||||||
|  |  | ||||||
| std::string sizeString(size_t bytes); |  | ||||||
|  |  | ||||||
| struct MemoryStats |  | ||||||
| { |  | ||||||
|   size_t totalAllocated{0}, maxAllocated{0},  |  | ||||||
|     currentlyAllocated{0}, totalFreed{0}; |  | ||||||
| }; |  | ||||||
|      |  | ||||||
| class MemoryProfiler |  | ||||||
| { |  | ||||||
| public: |  | ||||||
|   static MemoryStats *stats; |  | ||||||
|   static bool        debug; |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| #define memString(bytes) std::to_string(bytes) + " (" + sizeString(bytes) + ")" |  | ||||||
| #define profilerDebugPrint						\ |  | ||||||
|   if (MemoryProfiler::stats)						\ |  | ||||||
|     {									\ |  | ||||||
|       auto s = MemoryProfiler::stats;					\ |  | ||||||
|       std::cout << GridLogDebug << "[Memory debug] Stats " << MemoryProfiler::stats << std::endl; \ |  | ||||||
|       std::cout << GridLogDebug << "[Memory debug] total  : " << memString(s->totalAllocated) \ |  | ||||||
| 		<< std::endl;						\ |  | ||||||
|       std::cout << GridLogDebug << "[Memory debug] max    : " << memString(s->maxAllocated) \ |  | ||||||
| 		<< std::endl;						\ |  | ||||||
|       std::cout << GridLogDebug << "[Memory debug] current: " << memString(s->currentlyAllocated) \ |  | ||||||
| 		<< std::endl;						\ |  | ||||||
|       std::cout << GridLogDebug << "[Memory debug] freed  : " << memString(s->totalFreed) \ |  | ||||||
| 		<< std::endl;						\ |  | ||||||
|     } |  | ||||||
|  |  | ||||||
| #define profilerAllocate(bytes)						\ |  | ||||||
|   if (MemoryProfiler::stats)						\ |  | ||||||
|     {									\ |  | ||||||
|       auto s = MemoryProfiler::stats;					\ |  | ||||||
|       s->totalAllocated     += (bytes);					\ |  | ||||||
|       s->currentlyAllocated += (bytes);					\ |  | ||||||
|       s->maxAllocated        = std::max(s->maxAllocated, s->currentlyAllocated); \ |  | ||||||
|     }									\ |  | ||||||
|   if (MemoryProfiler::debug)						\ |  | ||||||
|     {									\ |  | ||||||
|       std::cout << GridLogDebug << "[Memory debug] allocating " << memString(bytes) << std::endl; \ |  | ||||||
|       profilerDebugPrint;						\ |  | ||||||
|     } |  | ||||||
|  |  | ||||||
| #define profilerFree(bytes)						\ |  | ||||||
|   if (MemoryProfiler::stats)						\ |  | ||||||
|     {									\ |  | ||||||
|       auto s = MemoryProfiler::stats;					\ |  | ||||||
|       s->totalFreed         += (bytes);					\ |  | ||||||
|       s->currentlyAllocated -= (bytes);					\ |  | ||||||
|     }									\ |  | ||||||
|   if (MemoryProfiler::debug)						\ |  | ||||||
|     {									\ |  | ||||||
|       std::cout << GridLogDebug << "[Memory debug] freeing " << memString(bytes) << std::endl; \ |  | ||||||
|       profilerDebugPrint;						\ |  | ||||||
|     } |  | ||||||
|  |  | ||||||
| void check_huge_pages(void *Buf,uint64_t BYTES); |  | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); |  | ||||||
|  |  | ||||||
| @@ -81,7 +81,6 @@ public: | |||||||
|  |  | ||||||
|   bool _isCheckerBoarded;  |   bool _isCheckerBoarded;  | ||||||
|   int        LocallyPeriodic; |   int        LocallyPeriodic; | ||||||
|   Coordinate _checker_dim_mask; |  | ||||||
|  |  | ||||||
| public: | public: | ||||||
|  |  | ||||||
|   | |||||||
| @@ -38,7 +38,6 @@ class GridCartesian: public GridBase { | |||||||
|  |  | ||||||
| public: | public: | ||||||
|   int dummy; |   int dummy; | ||||||
|   Coordinate _checker_dim_mask; |  | ||||||
|   virtual int  CheckerBoardFromOindexTable (int Oindex) { |   virtual int  CheckerBoardFromOindexTable (int Oindex) { | ||||||
|     return 0; |     return 0; | ||||||
|   } |   } | ||||||
| @@ -105,7 +104,6 @@ public: | |||||||
|     _ldimensions.resize(_ndimension); |     _ldimensions.resize(_ndimension); | ||||||
|     _rdimensions.resize(_ndimension); |     _rdimensions.resize(_ndimension); | ||||||
|     _simd_layout.resize(_ndimension); |     _simd_layout.resize(_ndimension); | ||||||
|     _checker_dim_mask.resize(_ndimension);; |  | ||||||
|     _lstart.resize(_ndimension); |     _lstart.resize(_ndimension); | ||||||
|     _lend.resize(_ndimension); |     _lend.resize(_ndimension); | ||||||
|  |  | ||||||
| @@ -116,8 +114,6 @@ public: | |||||||
|  |  | ||||||
|     for (int d = 0; d < _ndimension; d++) |     for (int d = 0; d < _ndimension; d++) | ||||||
|       { |       { | ||||||
| 	_checker_dim_mask[d]=0; |  | ||||||
|  |  | ||||||
|         _fdimensions[d] = dimensions[d];   // Global dimensions |         _fdimensions[d] = dimensions[d];   // Global dimensions | ||||||
|         _gdimensions[d] = _fdimensions[d]; // Global dimensions |         _gdimensions[d] = _fdimensions[d]; // Global dimensions | ||||||
|         _simd_layout[d] = simd_layout[d]; |         _simd_layout[d] = simd_layout[d]; | ||||||
|   | |||||||
| @@ -36,27 +36,11 @@ static const int CbBlack=1; | |||||||
| static const int Even   =CbRed; | static const int Even   =CbRed; | ||||||
| static const int Odd    =CbBlack; | static const int Odd    =CbBlack; | ||||||
|      |      | ||||||
| accelerator_inline int RedBlackCheckerBoardFromOindex (int oindex,const Coordinate &rdim,const Coordinate &chk_dim_msk) |  | ||||||
| { |  | ||||||
|   int nd=rdim.size(); |  | ||||||
|   Coordinate coor(nd); |  | ||||||
|  |  | ||||||
|   Lexicographic::CoorFromIndex(coor,oindex,rdim); |  | ||||||
|  |  | ||||||
|   int linear=0; |  | ||||||
|   for(int d=0;d<nd;d++){ |  | ||||||
|     if(chk_dim_msk[d]) |  | ||||||
|       linear=linear+coor[d]; |  | ||||||
|   } |  | ||||||
|   return (linear&0x1); |  | ||||||
| } |  | ||||||
|  |  | ||||||
|      |  | ||||||
| // Specialise this for red black grids storing half the data like a chess board. | // Specialise this for red black grids storing half the data like a chess board. | ||||||
| class GridRedBlackCartesian : public GridBase | class GridRedBlackCartesian : public GridBase | ||||||
| { | { | ||||||
| public: | public: | ||||||
|   //  Coordinate _checker_dim_mask; |   Coordinate _checker_dim_mask; | ||||||
|   int              _checker_dim; |   int              _checker_dim; | ||||||
|   std::vector<int> _checker_board; |   std::vector<int> _checker_board; | ||||||
|  |  | ||||||
|   | |||||||
| @@ -33,8 +33,6 @@ Author: Peter Boyle <paboyle@ph.ed.ac.uk> | |||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); | NAMESPACE_BEGIN(Grid); | ||||||
|  |  | ||||||
| bool Stencil_force_mpi = true; |  | ||||||
|  |  | ||||||
| /////////////////////////////////////////////////////////////// | /////////////////////////////////////////////////////////////// | ||||||
| // Info that is setup once and indept of cartesian layout | // Info that is setup once and indept of cartesian layout | ||||||
| /////////////////////////////////////////////////////////////// | /////////////////////////////////////////////////////////////// | ||||||
|   | |||||||
| @@ -1,3 +1,4 @@ | |||||||
|  |  | ||||||
| /************************************************************************************* | /************************************************************************************* | ||||||
|  |  | ||||||
|     Grid physics library, www.github.com/paboyle/Grid  |     Grid physics library, www.github.com/paboyle/Grid  | ||||||
| @@ -35,8 +36,6 @@ Author: Peter Boyle <paboyle@ph.ed.ac.uk> | |||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); | NAMESPACE_BEGIN(Grid); | ||||||
|  |  | ||||||
| extern bool Stencil_force_mpi ; |  | ||||||
|  |  | ||||||
| class CartesianCommunicator : public SharedMemory { | class CartesianCommunicator : public SharedMemory { | ||||||
|  |  | ||||||
| public:     | public:     | ||||||
| @@ -109,8 +108,6 @@ public: | |||||||
|   //////////////////////////////////////////////////////////// |   //////////////////////////////////////////////////////////// | ||||||
|   // Reduction |   // Reduction | ||||||
|   //////////////////////////////////////////////////////////// |   //////////////////////////////////////////////////////////// | ||||||
|   void GlobalMax(RealD &); |  | ||||||
|   void GlobalMax(RealF &); |  | ||||||
|   void GlobalSum(RealF &); |   void GlobalSum(RealF &); | ||||||
|   void GlobalSumVector(RealF *,int N); |   void GlobalSumVector(RealF *,int N); | ||||||
|   void GlobalSum(RealD &); |   void GlobalSum(RealD &); | ||||||
| @@ -141,6 +138,21 @@ public: | |||||||
| 		      int recv_from_rank, | 		      int recv_from_rank, | ||||||
| 		      int bytes); | 		      int bytes); | ||||||
|    |    | ||||||
|  |   void SendRecvPacket(void *xmit, | ||||||
|  | 		      void *recv, | ||||||
|  | 		      int xmit_to_rank, | ||||||
|  | 		      int recv_from_rank, | ||||||
|  | 		      int bytes); | ||||||
|  |    | ||||||
|  |   void SendToRecvFromBegin(std::vector<CommsRequest_t> &list, | ||||||
|  | 			   void *xmit, | ||||||
|  | 			   int xmit_to_rank, | ||||||
|  | 			   void *recv, | ||||||
|  | 			   int recv_from_rank, | ||||||
|  | 			   int bytes); | ||||||
|  |    | ||||||
|  |   void SendToRecvFromComplete(std::vector<CommsRequest_t> &waitall); | ||||||
|  |  | ||||||
|   double StencilSendToRecvFrom(void *xmit, |   double StencilSendToRecvFrom(void *xmit, | ||||||
| 			       int xmit_to_rank, | 			       int xmit_to_rank, | ||||||
| 			       void *recv, | 			       void *recv, | ||||||
|   | |||||||
| @@ -43,16 +43,8 @@ void CartesianCommunicator::Init(int *argc, char ***argv) | |||||||
|  |  | ||||||
|   MPI_Initialized(&flag); // needed to coexist with other libs apparently |   MPI_Initialized(&flag); // needed to coexist with other libs apparently | ||||||
|   if ( !flag ) { |   if ( !flag ) { | ||||||
|  |  | ||||||
| #ifndef GRID_COMMS_THREADS |  | ||||||
|     nCommThreads=1; |  | ||||||
|     // wrong results here too |  | ||||||
|     // For now: comms-overlap leads to wrong results in Benchmark_wilson even on single node MPI runs |  | ||||||
|     // other comms schemes are ok |  | ||||||
|     MPI_Init_thread(argc,argv,MPI_THREAD_SERIALIZED,&provided); |  | ||||||
| #else |  | ||||||
|     MPI_Init_thread(argc,argv,MPI_THREAD_MULTIPLE,&provided); |     MPI_Init_thread(argc,argv,MPI_THREAD_MULTIPLE,&provided); | ||||||
| #endif |  | ||||||
|     //If only 1 comms thread we require any threading mode other than SINGLE, but for multiple comms threads we need MULTIPLE |     //If only 1 comms thread we require any threading mode other than SINGLE, but for multiple comms threads we need MULTIPLE | ||||||
|     if( (nCommThreads == 1) && (provided == MPI_THREAD_SINGLE) ) { |     if( (nCommThreads == 1) && (provided == MPI_THREAD_SINGLE) ) { | ||||||
|       assert(0); |       assert(0); | ||||||
| @@ -275,16 +267,6 @@ void CartesianCommunicator::GlobalXOR(uint64_t &u){ | |||||||
|   int ierr=MPI_Allreduce(MPI_IN_PLACE,&u,1,MPI_UINT64_T,MPI_BXOR,communicator); |   int ierr=MPI_Allreduce(MPI_IN_PLACE,&u,1,MPI_UINT64_T,MPI_BXOR,communicator); | ||||||
|   assert(ierr==0); |   assert(ierr==0); | ||||||
| } | } | ||||||
| void CartesianCommunicator::GlobalMax(float &f) |  | ||||||
| { |  | ||||||
|   int ierr=MPI_Allreduce(MPI_IN_PLACE,&f,1,MPI_FLOAT,MPI_MAX,communicator); |  | ||||||
|   assert(ierr==0); |  | ||||||
| } |  | ||||||
| void CartesianCommunicator::GlobalMax(double &d) |  | ||||||
| { |  | ||||||
|   int ierr = MPI_Allreduce(MPI_IN_PLACE,&d,1,MPI_DOUBLE,MPI_MAX,communicator); |  | ||||||
|   assert(ierr==0); |  | ||||||
| } |  | ||||||
| void CartesianCommunicator::GlobalSum(float &f){ | void CartesianCommunicator::GlobalSum(float &f){ | ||||||
|   int ierr=MPI_Allreduce(MPI_IN_PLACE,&f,1,MPI_FLOAT,MPI_SUM,communicator); |   int ierr=MPI_Allreduce(MPI_IN_PLACE,&f,1,MPI_FLOAT,MPI_SUM,communicator); | ||||||
|   assert(ierr==0); |   assert(ierr==0); | ||||||
| @@ -312,28 +294,60 @@ void CartesianCommunicator::SendToRecvFrom(void *xmit, | |||||||
| 					   int bytes) | 					   int bytes) | ||||||
| { | { | ||||||
|   std::vector<CommsRequest_t> reqs(0); |   std::vector<CommsRequest_t> reqs(0); | ||||||
|   unsigned long  xcrc = crc32(0L, Z_NULL, 0); |   //    unsigned long  xcrc = crc32(0L, Z_NULL, 0); | ||||||
|   unsigned long  rcrc = crc32(0L, Z_NULL, 0); |   //    unsigned long  rcrc = crc32(0L, Z_NULL, 0); | ||||||
|  |   //    xcrc = crc32(xcrc,(unsigned char *)xmit,bytes); | ||||||
|  |   SendToRecvFromBegin(reqs,xmit,dest,recv,from,bytes); | ||||||
|  |   SendToRecvFromComplete(reqs); | ||||||
|  |   //    rcrc = crc32(rcrc,(unsigned char *)recv,bytes); | ||||||
|  |   //    printf("proc %d SendToRecvFrom %d bytes %lx %lx\n",_processor,bytes,xcrc,rcrc); | ||||||
|  | } | ||||||
|  | void CartesianCommunicator::SendRecvPacket(void *xmit, | ||||||
|  | 					   void *recv, | ||||||
|  | 					   int sender, | ||||||
|  | 					   int receiver, | ||||||
|  | 					   int bytes) | ||||||
|  | { | ||||||
|  |   MPI_Status stat; | ||||||
|  |   assert(sender != receiver); | ||||||
|  |   int tag = sender; | ||||||
|  |   if ( _processor == sender ) { | ||||||
|  |     MPI_Send(xmit, bytes, MPI_CHAR,receiver,tag,communicator); | ||||||
|  |   } | ||||||
|  |   if ( _processor == receiver ) {  | ||||||
|  |     MPI_Recv(recv, bytes, MPI_CHAR,sender,tag,communicator,&stat); | ||||||
|  |   } | ||||||
|  | } | ||||||
|  | // Basic Halo comms primitive | ||||||
|  | void CartesianCommunicator::SendToRecvFromBegin(std::vector<CommsRequest_t> &list, | ||||||
|  | 						void *xmit, | ||||||
|  | 						int dest, | ||||||
|  | 						void *recv, | ||||||
|  | 						int from, | ||||||
|  | 						int bytes) | ||||||
|  | { | ||||||
|   int myrank = _processor; |   int myrank = _processor; | ||||||
|   int ierr; |   int ierr; | ||||||
|  |  | ||||||
|   // Enforce no UVM in comms, device or host OK |   if ( CommunicatorPolicy == CommunicatorPolicyConcurrent ) {  | ||||||
|   assert(acceleratorIsCommunicable(xmit)); |     MPI_Request xrq; | ||||||
|   assert(acceleratorIsCommunicable(recv)); |     MPI_Request rrq; | ||||||
|  |  | ||||||
|  |     ierr =MPI_Irecv(recv, bytes, MPI_CHAR,from,from,communicator,&rrq); | ||||||
|  |     ierr|=MPI_Isend(xmit, bytes, MPI_CHAR,dest,_processor,communicator,&xrq); | ||||||
|  |      | ||||||
|  |     assert(ierr==0); | ||||||
|  |     list.push_back(xrq); | ||||||
|  |     list.push_back(rrq); | ||||||
|  |   } else {  | ||||||
|     // Give the CPU to MPI immediately; can use threads to overlap optionally |     // Give the CPU to MPI immediately; can use threads to overlap optionally | ||||||
|   //  printf("proc %d SendToRecvFrom %d bytes Sendrecv \n",_processor,bytes); |  | ||||||
|     ierr=MPI_Sendrecv(xmit,bytes,MPI_CHAR,dest,myrank, |     ierr=MPI_Sendrecv(xmit,bytes,MPI_CHAR,dest,myrank, | ||||||
| 		      recv,bytes,MPI_CHAR,from, from, | 		      recv,bytes,MPI_CHAR,from, from, | ||||||
| 		      communicator,MPI_STATUS_IGNORE); | 		      communicator,MPI_STATUS_IGNORE); | ||||||
|     assert(ierr==0); |     assert(ierr==0); | ||||||
|  |   } | ||||||
|   //  xcrc = crc32(xcrc,(unsigned char *)xmit,bytes); |  | ||||||
|   //  rcrc = crc32(rcrc,(unsigned char *)recv,bytes); |  | ||||||
|   //  printf("proc %d SendToRecvFrom %d bytes xcrc %lx rcrc %lx\n",_processor,bytes,xcrc,rcrc); fflush |  | ||||||
| } | } | ||||||
| // Basic Halo comms primitive |  | ||||||
| double CartesianCommunicator::StencilSendToRecvFrom( void *xmit, | double CartesianCommunicator::StencilSendToRecvFrom( void *xmit, | ||||||
| 						     int dest, | 						     int dest, | ||||||
| 						     void *recv, | 						     void *recv, | ||||||
| @@ -368,28 +382,19 @@ double CartesianCommunicator::StencilSendToRecvFromBegin(std::vector<CommsReques | |||||||
|   assert(from != _processor); |   assert(from != _processor); | ||||||
|   assert(gme  == ShmRank); |   assert(gme  == ShmRank); | ||||||
|   double off_node_bytes=0.0; |   double off_node_bytes=0.0; | ||||||
|   int tag; |  | ||||||
|  |  | ||||||
|   if ( (gfrom ==MPI_UNDEFINED) || Stencil_force_mpi ) { |   if ( gfrom ==MPI_UNDEFINED) { | ||||||
|     tag= dir+from*32; |     ierr=MPI_Irecv(recv, bytes, MPI_CHAR,from,from,communicator_halo[commdir],&rrq); | ||||||
|     ierr=MPI_Irecv(recv, bytes, MPI_CHAR,from,tag,communicator_halo[commdir],&rrq); |  | ||||||
|     assert(ierr==0); |     assert(ierr==0); | ||||||
|     list.push_back(rrq); |     list.push_back(rrq); | ||||||
|     off_node_bytes+=bytes; |     off_node_bytes+=bytes; | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   if ( (gdest == MPI_UNDEFINED) || Stencil_force_mpi ) { |   if ( gdest == MPI_UNDEFINED ) { | ||||||
|     tag= dir+_processor*32; |     ierr =MPI_Isend(xmit, bytes, MPI_CHAR,dest,_processor,communicator_halo[commdir],&xrq); | ||||||
|     ierr =MPI_Isend(xmit, bytes, MPI_CHAR,dest,tag,communicator_halo[commdir],&xrq); |  | ||||||
|     assert(ierr==0); |     assert(ierr==0); | ||||||
|     list.push_back(xrq); |     list.push_back(xrq); | ||||||
|     off_node_bytes+=bytes; |     off_node_bytes+=bytes; | ||||||
|   } else { |  | ||||||
|     // TODO : make a OMP loop on CPU, call threaded bcopy |  | ||||||
|     void *shm = (void *) this->ShmBufferTranslate(dest,recv); |  | ||||||
|     assert(shm!=NULL); |  | ||||||
|     //    std::cout <<"acceleratorCopyDeviceToDeviceAsynch"<< std::endl; |  | ||||||
|     acceleratorCopyDeviceToDeviceAsynch(xmit,shm,bytes); |  | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   if ( CommunicatorPolicy == CommunicatorPolicySequential ) {  |   if ( CommunicatorPolicy == CommunicatorPolicySequential ) {  | ||||||
| @@ -398,11 +403,16 @@ double CartesianCommunicator::StencilSendToRecvFromBegin(std::vector<CommsReques | |||||||
|  |  | ||||||
|   return off_node_bytes; |   return off_node_bytes; | ||||||
| } | } | ||||||
| void CartesianCommunicator::StencilSendToRecvFromComplete(std::vector<CommsRequest_t> &list,int dir) | void CartesianCommunicator::StencilSendToRecvFromComplete(std::vector<CommsRequest_t> &waitall,int dir) | ||||||
|  | { | ||||||
|  |   SendToRecvFromComplete(waitall); | ||||||
|  | } | ||||||
|  | void CartesianCommunicator::StencilBarrier(void) | ||||||
|  | { | ||||||
|  |   MPI_Barrier  (ShmComm); | ||||||
|  | } | ||||||
|  | void CartesianCommunicator::SendToRecvFromComplete(std::vector<CommsRequest_t> &list) | ||||||
| { | { | ||||||
|   //   std::cout << "Copy Synchronised\n"<<std::endl; |  | ||||||
|   acceleratorCopySynchronise(); |  | ||||||
|  |  | ||||||
|   int nreq=list.size(); |   int nreq=list.size(); | ||||||
|  |  | ||||||
|   if (nreq==0) return; |   if (nreq==0) return; | ||||||
| @@ -412,13 +422,6 @@ void CartesianCommunicator::StencilSendToRecvFromComplete(std::vector<CommsReque | |||||||
|   assert(ierr==0); |   assert(ierr==0); | ||||||
|   list.resize(0); |   list.resize(0); | ||||||
| } | } | ||||||
| void CartesianCommunicator::StencilBarrier(void) |  | ||||||
| { |  | ||||||
|   MPI_Barrier  (ShmComm); |  | ||||||
| } |  | ||||||
| //void CartesianCommunicator::SendToRecvFromComplete(std::vector<CommsRequest_t> &list) |  | ||||||
| //{ |  | ||||||
| //} |  | ||||||
| void CartesianCommunicator::Barrier(void) | void CartesianCommunicator::Barrier(void) | ||||||
| { | { | ||||||
|   int ierr = MPI_Barrier(communicator); |   int ierr = MPI_Barrier(communicator); | ||||||
| @@ -480,3 +483,5 @@ void CartesianCommunicator::AllToAll(void  *in,void *out,uint64_t words,uint64_t | |||||||
| } | } | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); | NAMESPACE_END(Grid); | ||||||
|  |  | ||||||
|  |  | ||||||
|   | |||||||
| @@ -67,8 +67,6 @@ CartesianCommunicator::CartesianCommunicator(const Coordinate &processors) | |||||||
|  |  | ||||||
| CartesianCommunicator::~CartesianCommunicator(){} | CartesianCommunicator::~CartesianCommunicator(){} | ||||||
|  |  | ||||||
| void CartesianCommunicator::GlobalMax(float &){} |  | ||||||
| void CartesianCommunicator::GlobalMax(double &){} |  | ||||||
| void CartesianCommunicator::GlobalSum(float &){} | void CartesianCommunicator::GlobalSum(float &){} | ||||||
| void CartesianCommunicator::GlobalSumVector(float *,int N){} | void CartesianCommunicator::GlobalSumVector(float *,int N){} | ||||||
| void CartesianCommunicator::GlobalSum(double &){} | void CartesianCommunicator::GlobalSum(double &){} | ||||||
| @@ -79,6 +77,15 @@ void CartesianCommunicator::GlobalSumVector(uint64_t *,int N){} | |||||||
| void CartesianCommunicator::GlobalXOR(uint32_t &){} | void CartesianCommunicator::GlobalXOR(uint32_t &){} | ||||||
| void CartesianCommunicator::GlobalXOR(uint64_t &){} | void CartesianCommunicator::GlobalXOR(uint64_t &){} | ||||||
|  |  | ||||||
|  | void CartesianCommunicator::SendRecvPacket(void *xmit, | ||||||
|  | 					   void *recv, | ||||||
|  | 					   int xmit_to_rank, | ||||||
|  | 					   int recv_from_rank, | ||||||
|  | 					   int bytes) | ||||||
|  | { | ||||||
|  |   assert(0); | ||||||
|  | } | ||||||
|  |  | ||||||
|  |  | ||||||
| // Basic Halo comms primitive -- should never call in single node | // Basic Halo comms primitive -- should never call in single node | ||||||
| void CartesianCommunicator::SendToRecvFrom(void *xmit, | void CartesianCommunicator::SendToRecvFrom(void *xmit, | ||||||
| @@ -89,6 +96,20 @@ void CartesianCommunicator::SendToRecvFrom(void *xmit, | |||||||
| { | { | ||||||
|   assert(0); |   assert(0); | ||||||
| } | } | ||||||
|  | void CartesianCommunicator::SendToRecvFromBegin(std::vector<CommsRequest_t> &list, | ||||||
|  | 						void *xmit, | ||||||
|  | 						int dest, | ||||||
|  | 						void *recv, | ||||||
|  | 						int from, | ||||||
|  | 						int bytes) | ||||||
|  | { | ||||||
|  |   assert(0); | ||||||
|  | } | ||||||
|  |  | ||||||
|  | void CartesianCommunicator::SendToRecvFromComplete(std::vector<CommsRequest_t> &list) | ||||||
|  | { | ||||||
|  |   assert(0); | ||||||
|  | } | ||||||
| void CartesianCommunicator::AllToAll(int dim,void  *in,void *out,uint64_t words,uint64_t bytes) | void CartesianCommunicator::AllToAll(int dim,void  *in,void *out,uint64_t words,uint64_t bytes) | ||||||
| { | { | ||||||
|   bcopy(in,out,bytes*words); |   bcopy(in,out,bytes*words); | ||||||
| @@ -116,6 +137,10 @@ double CartesianCommunicator::StencilSendToRecvFrom( void *xmit, | |||||||
| 						     int recv_from_rank, | 						     int recv_from_rank, | ||||||
| 						     int bytes, int dir) | 						     int bytes, int dir) | ||||||
| { | { | ||||||
|  |   std::vector<CommsRequest_t> list; | ||||||
|  |   // Discard the "dir" | ||||||
|  |   SendToRecvFromBegin   (list,xmit,xmit_to_rank,recv,recv_from_rank,bytes); | ||||||
|  |   SendToRecvFromComplete(list); | ||||||
|   return 2.0*bytes; |   return 2.0*bytes; | ||||||
| } | } | ||||||
| double CartesianCommunicator::StencilSendToRecvFromBegin(std::vector<CommsRequest_t> &list, | double CartesianCommunicator::StencilSendToRecvFromBegin(std::vector<CommsRequest_t> &list, | ||||||
| @@ -125,10 +150,13 @@ double CartesianCommunicator::StencilSendToRecvFromBegin(std::vector<CommsReques | |||||||
| 							 int recv_from_rank, | 							 int recv_from_rank, | ||||||
| 							 int bytes, int dir) | 							 int bytes, int dir) | ||||||
| { | { | ||||||
|  |   // Discard the "dir" | ||||||
|  |   SendToRecvFromBegin(list,xmit,xmit_to_rank,recv,recv_from_rank,bytes); | ||||||
|   return 2.0*bytes; |   return 2.0*bytes; | ||||||
| } | } | ||||||
| void CartesianCommunicator::StencilSendToRecvFromComplete(std::vector<CommsRequest_t> &waitall,int dir) | void CartesianCommunicator::StencilSendToRecvFromComplete(std::vector<CommsRequest_t> &waitall,int dir) | ||||||
| { | { | ||||||
|  |   SendToRecvFromComplete(waitall); | ||||||
| } | } | ||||||
|  |  | ||||||
| void CartesianCommunicator::StencilBarrier(void){}; | void CartesianCommunicator::StencilBarrier(void){}; | ||||||
|   | |||||||
| @@ -102,7 +102,7 @@ public: | |||||||
|   /////////////////////////////////////////////////// |   /////////////////////////////////////////////////// | ||||||
|   static void SharedMemoryAllocate(uint64_t bytes, int flags); |   static void SharedMemoryAllocate(uint64_t bytes, int flags); | ||||||
|   static void SharedMemoryFree(void); |   static void SharedMemoryFree(void); | ||||||
|   static void SharedMemoryCopy(void *dest,void *src,size_t bytes); |   static void SharedMemoryCopy(void *dest,const void *src,size_t bytes); | ||||||
|   static void SharedMemoryZero(void *dest,size_t bytes); |   static void SharedMemoryZero(void *dest,size_t bytes); | ||||||
|  |  | ||||||
| }; | }; | ||||||
|   | |||||||
| @@ -7,7 +7,6 @@ | |||||||
|     Copyright (C) 2015 |     Copyright (C) 2015 | ||||||
|  |  | ||||||
| Author: Peter Boyle <paboyle@ph.ed.ac.uk> | Author: Peter Boyle <paboyle@ph.ed.ac.uk> | ||||||
| Author: Christoph Lehner <christoph@lhnr.de> |  | ||||||
|  |  | ||||||
|     This program is free software; you can redistribute it and/or modify |     This program is free software; you can redistribute it and/or modify | ||||||
|     it under the terms of the GNU General Public License as published by |     it under the terms of the GNU General Public License as published by | ||||||
| @@ -30,14 +29,8 @@ Author: Christoph Lehner <christoph@lhnr.de> | |||||||
| #include <Grid/GridCore.h> | #include <Grid/GridCore.h> | ||||||
| #include <pwd.h> | #include <pwd.h> | ||||||
|  |  | ||||||
| #ifdef GRID_CUDA | #ifdef GRID_NVCC | ||||||
| #include <cuda_runtime_api.h> | #include <cuda_runtime_api.h> | ||||||
| #endif |  | ||||||
| #ifdef GRID_HIP |  | ||||||
| #include <hip/hip_runtime_api.h> |  | ||||||
| #endif |  | ||||||
| #ifdef GRID_SYCl |  | ||||||
|  |  | ||||||
| #endif | #endif | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid);  | NAMESPACE_BEGIN(Grid);  | ||||||
| @@ -54,12 +47,7 @@ void GlobalSharedMemory::Init(Grid_MPI_Comm comm) | |||||||
|   ///////////////////////////////////////////////////////////////////// |   ///////////////////////////////////////////////////////////////////// | ||||||
|   // Split into groups that can share memory |   // Split into groups that can share memory | ||||||
|   ///////////////////////////////////////////////////////////////////// |   ///////////////////////////////////////////////////////////////////// | ||||||
| #ifndef GRID_MPI3_SHM_NONE |  | ||||||
|   MPI_Comm_split_type(comm, MPI_COMM_TYPE_SHARED, 0, MPI_INFO_NULL,&WorldShmComm); |   MPI_Comm_split_type(comm, MPI_COMM_TYPE_SHARED, 0, MPI_INFO_NULL,&WorldShmComm); | ||||||
| #else |  | ||||||
|   MPI_Comm_split(comm, WorldRank, 0, &WorldShmComm); |  | ||||||
| #endif |  | ||||||
|  |  | ||||||
|   MPI_Comm_rank(WorldShmComm     ,&WorldShmRank); |   MPI_Comm_rank(WorldShmComm     ,&WorldShmRank); | ||||||
|   MPI_Comm_size(WorldShmComm     ,&WorldShmSize); |   MPI_Comm_size(WorldShmComm     ,&WorldShmSize); | ||||||
|  |  | ||||||
| @@ -73,7 +61,6 @@ void GlobalSharedMemory::Init(Grid_MPI_Comm comm) | |||||||
|   WorldNodes = WorldSize/WorldShmSize; |   WorldNodes = WorldSize/WorldShmSize; | ||||||
|   assert( (WorldNodes * WorldShmSize) == WorldSize ); |   assert( (WorldNodes * WorldShmSize) == WorldSize ); | ||||||
|  |  | ||||||
|  |  | ||||||
|   // FIXME: Check all WorldShmSize are the same ? |   // FIXME: Check all WorldShmSize are the same ? | ||||||
|  |  | ||||||
|   ///////////////////////////////////////////////////////////////////// |   ///////////////////////////////////////////////////////////////////// | ||||||
| @@ -174,23 +161,6 @@ static inline int divides(int a,int b) | |||||||
| } | } | ||||||
| void GlobalSharedMemory::GetShmDims(const Coordinate &WorldDims,Coordinate &ShmDims) | void GlobalSharedMemory::GetShmDims(const Coordinate &WorldDims,Coordinate &ShmDims) | ||||||
| { | { | ||||||
|   //////////////////////////////////////////////////////////////// |  | ||||||
|   // Allow user to configure through environment variable |  | ||||||
|   //////////////////////////////////////////////////////////////// |  | ||||||
|   char* str = getenv(("GRID_SHM_DIMS_" + std::to_string(ShmDims.size())).c_str()); |  | ||||||
|   if ( str ) { |  | ||||||
|     std::vector<int> IntShmDims; |  | ||||||
|     GridCmdOptionIntVector(std::string(str),IntShmDims); |  | ||||||
|     assert(IntShmDims.size() == WorldDims.size()); |  | ||||||
|     long ShmSize = 1; |  | ||||||
|     for (int dim=0;dim<WorldDims.size();dim++) { |  | ||||||
|       ShmSize *= (ShmDims[dim] = IntShmDims[dim]); |  | ||||||
|       assert(divides(ShmDims[dim],WorldDims[dim])); |  | ||||||
|     } |  | ||||||
|     assert(ShmSize == WorldShmSize); |  | ||||||
|     return; |  | ||||||
|   } |  | ||||||
|    |  | ||||||
|   //////////////////////////////////////////////////////////////// |   //////////////////////////////////////////////////////////////// | ||||||
|   // Powers of 2,3,5 only in prime decomposition for now |   // Powers of 2,3,5 only in prime decomposition for now | ||||||
|   //////////////////////////////////////////////////////////////// |   //////////////////////////////////////////////////////////////// | ||||||
| @@ -200,24 +170,17 @@ void GlobalSharedMemory::GetShmDims(const Coordinate &WorldDims,Coordinate &ShmD | |||||||
|   std::vector<int> primes({2,3,5}); |   std::vector<int> primes({2,3,5}); | ||||||
|  |  | ||||||
|   int dim = 0; |   int dim = 0; | ||||||
|   int last_dim = ndimension - 1; |  | ||||||
|   int AutoShmSize = 1; |   int AutoShmSize = 1; | ||||||
|   while(AutoShmSize != WorldShmSize) { |   while(AutoShmSize != WorldShmSize) { | ||||||
|     int p; |     for(int p=0;p<primes.size();p++) { | ||||||
|     for(p=0;p<primes.size();p++) { |  | ||||||
|       int prime=primes[p]; |       int prime=primes[p]; | ||||||
|       if ( divides(prime,WorldDims[dim]/ShmDims[dim]) |       if ( divides(prime,WorldDims[dim]/ShmDims[dim]) | ||||||
|         && divides(prime,WorldShmSize/AutoShmSize)  ) { |         && divides(prime,WorldShmSize/AutoShmSize)  ) { | ||||||
| 	AutoShmSize*=prime; | 	AutoShmSize*=prime; | ||||||
| 	ShmDims[dim]*=prime; | 	ShmDims[dim]*=prime; | ||||||
| 	last_dim = dim; |  | ||||||
| 	break; | 	break; | ||||||
|       } |       } | ||||||
|     } |     } | ||||||
|     if (p == primes.size() && last_dim == dim) { |  | ||||||
|       std::cerr << "GlobalSharedMemory::GetShmDims failed" << std::endl; |  | ||||||
|       exit(EXIT_FAILURE); |  | ||||||
|     } |  | ||||||
|     dim=(dim+1) %ndimension; |     dim=(dim+1) %ndimension; | ||||||
|   } |   } | ||||||
| } | } | ||||||
| @@ -450,47 +413,7 @@ void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags) | |||||||
| //////////////////////////////////////////////////////////////////////////////////////////// | //////////////////////////////////////////////////////////////////////////////////////////// | ||||||
| // Hugetlbfs mapping intended | // Hugetlbfs mapping intended | ||||||
| //////////////////////////////////////////////////////////////////////////////////////////// | //////////////////////////////////////////////////////////////////////////////////////////// | ||||||
| #if defined(GRID_CUDA) ||defined(GRID_HIP)  || defined(GRID_SYCL) | #ifdef GRID_NVCC | ||||||
|  |  | ||||||
| //if defined(GRID_SYCL) |  | ||||||
| #if 0 |  | ||||||
| void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags) |  | ||||||
| { |  | ||||||
|   void * ShmCommBuf ;  |  | ||||||
|   assert(_ShmSetup==1); |  | ||||||
|   assert(_ShmAlloc==0); |  | ||||||
|  |  | ||||||
|   ////////////////////////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
|   // allocate the pointer array for shared windows for our group |  | ||||||
|   ////////////////////////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
|   MPI_Barrier(WorldShmComm); |  | ||||||
|   WorldShmCommBufs.resize(WorldShmSize); |  | ||||||
|  |  | ||||||
|   /////////////////////////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
|   // Each MPI rank should allocate our own buffer |  | ||||||
|   /////////////////////////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
|   ShmCommBuf = acceleratorAllocDevice(bytes); |  | ||||||
|  |  | ||||||
|   if (ShmCommBuf == (void *)NULL ) { |  | ||||||
|     std::cerr << " SharedMemoryMPI.cc acceleratorAllocDevice failed NULL pointer for " << bytes<<" bytes " << std::endl; |  | ||||||
|     exit(EXIT_FAILURE);   |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   std::cout << WorldRank << header " SharedMemoryMPI.cc acceleratorAllocDevice "<< bytes  |  | ||||||
| 	    << "bytes at "<< std::hex<< ShmCommBuf <<std::dec<<" for comms buffers " <<std::endl; |  | ||||||
|  |  | ||||||
|   SharedMemoryZero(ShmCommBuf,bytes); |  | ||||||
|  |  | ||||||
|   assert(WorldShmSize == 1); |  | ||||||
|   for(int r=0;r<WorldShmSize;r++){ |  | ||||||
|     WorldShmCommBufs[r] = ShmCommBuf; |  | ||||||
|   } |  | ||||||
|   _ShmAllocBytes=bytes; |  | ||||||
|   _ShmAlloc=1; |  | ||||||
| } |  | ||||||
| #endif |  | ||||||
|  |  | ||||||
| #if defined(GRID_CUDA) ||defined(GRID_HIP) ||defined(GRID_SYCL)   |  | ||||||
| void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags) | void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags) | ||||||
| { | { | ||||||
|   void * ShmCommBuf ;  |   void * ShmCommBuf ;  | ||||||
| @@ -510,73 +433,47 @@ void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags) | |||||||
|   ////////////////////////////////////////////////////////////////////////////////////////////////////////// |   ////////////////////////////////////////////////////////////////////////////////////////////////////////// | ||||||
|   //  cudaDeviceGetP2PAttribute(&perfRank, cudaDevP2PAttrPerformanceRank, device1, device2); |   //  cudaDeviceGetP2PAttribute(&perfRank, cudaDevP2PAttrPerformanceRank, device1, device2); | ||||||
|  |  | ||||||
|  | #ifdef GRID_IBM_SUMMIT | ||||||
|  |   // IBM Jsrun makes cuda Device numbering screwy and not match rank | ||||||
|  |     std::cout << "IBM Summit or similar - NOT setting device to WorldShmRank"<<std::endl; | ||||||
|  | #else | ||||||
|  |     std::cout << "setting device to WorldShmRank"<<std::endl; | ||||||
|  |     cudaSetDevice(WorldShmRank); | ||||||
|  | #endif | ||||||
|   /////////////////////////////////////////////////////////////////////////////////////////////////////////// |   /////////////////////////////////////////////////////////////////////////////////////////////////////////// | ||||||
|   // Each MPI rank should allocate our own buffer |   // Each MPI rank should allocate our own buffer | ||||||
|   /////////////////////////////////////////////////////////////////////////////////////////////////////////// |   /////////////////////////////////////////////////////////////////////////////////////////////////////////// | ||||||
|   ShmCommBuf = acceleratorAllocDevice(bytes); |   auto err =  cudaMalloc(&ShmCommBuf, bytes); | ||||||
|  |   if ( err !=  cudaSuccess) { | ||||||
|  |     std::cerr << " SharedMemoryMPI.cc cudaMallocManaged failed for " << bytes<<" bytes " <<cudaGetErrorString(err)<< std::endl; | ||||||
|  |     exit(EXIT_FAILURE);   | ||||||
|  |   } | ||||||
|   if (ShmCommBuf == (void *)NULL ) { |   if (ShmCommBuf == (void *)NULL ) { | ||||||
|     std::cerr << " SharedMemoryMPI.cc acceleratorAllocDevice failed NULL pointer for " << bytes<<" bytes " << std::endl; |     std::cerr << " SharedMemoryMPI.cc cudaMallocManaged failed NULL pointer for " << bytes<<" bytes " << std::endl; | ||||||
|     exit(EXIT_FAILURE);   |     exit(EXIT_FAILURE);   | ||||||
|   } |   } | ||||||
|   if ( WorldRank == 0 ){ |   if ( WorldRank == 0 ){ | ||||||
|     std::cout << WorldRank << header " SharedMemoryMPI.cc acceleratorAllocDevice "<< bytes  |     std::cout << header " SharedMemoryMPI.cc cudaMalloc "<< bytes << "bytes at "<< std::hex<< ShmCommBuf <<std::dec<<" for comms buffers " <<std::endl; | ||||||
| 	      << "bytes at "<< std::hex<< ShmCommBuf <<std::dec<<" for comms buffers " <<std::endl; |  | ||||||
|   } |   } | ||||||
|   SharedMemoryZero(ShmCommBuf,bytes); |   SharedMemoryZero(ShmCommBuf,bytes); | ||||||
|   std::cout<< "Setting up IPC"<<std::endl; |  | ||||||
|   /////////////////////////////////////////////////////////////////////////////////////////////////////////// |   /////////////////////////////////////////////////////////////////////////////////////////////////////////// | ||||||
|   // Loop over ranks/gpu's on our node |   // Loop over ranks/gpu's on our node | ||||||
|   /////////////////////////////////////////////////////////////////////////////////////////////////////////// |   /////////////////////////////////////////////////////////////////////////////////////////////////////////// | ||||||
|   for(int r=0;r<WorldShmSize;r++){ |   for(int r=0;r<WorldShmSize;r++){ | ||||||
|      |      | ||||||
| #ifndef GRID_MPI3_SHM_NONE |  | ||||||
|     ////////////////////////////////////////////////// |     ////////////////////////////////////////////////// | ||||||
|     // If it is me, pass around the IPC access key |     // If it is me, pass around the IPC access key | ||||||
|     ////////////////////////////////////////////////// |     ////////////////////////////////////////////////// | ||||||
|     void * thisBuf = ShmCommBuf; |  | ||||||
|     if(!Stencil_force_mpi) { |  | ||||||
| #ifdef GRID_SYCL_LEVEL_ZERO_IPC |  | ||||||
|     typedef struct { int fd; pid_t pid ; } clone_mem_t; |  | ||||||
|  |  | ||||||
|     auto zeDevice    = cl::sycl::get_native<cl::sycl::backend::level_zero>(theGridAccelerator->get_device()); |  | ||||||
|     auto zeContext   = cl::sycl::get_native<cl::sycl::backend::level_zero>(theGridAccelerator->get_context()); |  | ||||||
|        |  | ||||||
|     ze_ipc_mem_handle_t ihandle; |  | ||||||
|     clone_mem_t handle; |  | ||||||
|  |  | ||||||
|     if ( r==WorldShmRank ) {  |  | ||||||
|       auto err = zeMemGetIpcHandle(zeContext,ShmCommBuf,&ihandle); |  | ||||||
|       if ( err != ZE_RESULT_SUCCESS ) { |  | ||||||
| 	std::cout << "SharedMemoryMPI.cc zeMemGetIpcHandle failed for rank "<<r<<" "<<std::hex<<err<<std::dec<<std::endl; |  | ||||||
| 	exit(EXIT_FAILURE); |  | ||||||
|       } else { |  | ||||||
| 	std::cout << "SharedMemoryMPI.cc zeMemGetIpcHandle succeeded for rank "<<r<<" "<<std::hex<<err<<std::dec<<std::endl; |  | ||||||
|       } |  | ||||||
|       memcpy((void *)&handle.fd,(void *)&ihandle,sizeof(int)); |  | ||||||
|       handle.pid = getpid(); |  | ||||||
|     } |  | ||||||
| #endif |  | ||||||
| #ifdef GRID_CUDA |  | ||||||
|     cudaIpcMemHandle_t handle; |     cudaIpcMemHandle_t handle; | ||||||
|  |      | ||||||
|     if ( r==WorldShmRank ) {  |     if ( r==WorldShmRank ) {  | ||||||
|       auto err = cudaIpcGetMemHandle(&handle,ShmCommBuf); |       err = cudaIpcGetMemHandle(&handle,ShmCommBuf); | ||||||
|       if ( err !=  cudaSuccess) { |       if ( err !=  cudaSuccess) { | ||||||
| 	std::cerr << " SharedMemoryMPI.cc cudaIpcGetMemHandle failed for rank" << r <<" "<<cudaGetErrorString(err)<< std::endl; | 	std::cerr << " SharedMemoryMPI.cc cudaIpcGetMemHandle failed for rank" << r <<" "<<cudaGetErrorString(err)<< std::endl; | ||||||
| 	exit(EXIT_FAILURE); | 	exit(EXIT_FAILURE); | ||||||
|       } |       } | ||||||
|     } |     } | ||||||
| #endif |  | ||||||
| #ifdef GRID_HIP |  | ||||||
|     hipIpcMemHandle_t handle;     |  | ||||||
|     if ( r==WorldShmRank ) {  |  | ||||||
|       auto err = hipIpcGetMemHandle(&handle,ShmCommBuf); |  | ||||||
|       if ( err !=  hipSuccess) { |  | ||||||
| 	std::cerr << " SharedMemoryMPI.cc hipIpcGetMemHandle failed for rank" << r <<" "<<hipGetErrorString(err)<< std::endl; |  | ||||||
| 	exit(EXIT_FAILURE); |  | ||||||
|       } |  | ||||||
|     } |  | ||||||
| #endif |  | ||||||
|  |  | ||||||
|     ////////////////////////////////////////////////// |     ////////////////////////////////////////////////// | ||||||
|     // Share this IPC handle across the Shm Comm |     // Share this IPC handle across the Shm Comm | ||||||
|     ////////////////////////////////////////////////// |     ////////////////////////////////////////////////// | ||||||
| @@ -592,68 +489,23 @@ void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags) | |||||||
|     /////////////////////////////////////////////////////////////// |     /////////////////////////////////////////////////////////////// | ||||||
|     // If I am not the source, overwrite thisBuf with remote buffer |     // If I am not the source, overwrite thisBuf with remote buffer | ||||||
|     /////////////////////////////////////////////////////////////// |     /////////////////////////////////////////////////////////////// | ||||||
|  |     void * thisBuf = ShmCommBuf; | ||||||
| #ifdef GRID_SYCL_LEVEL_ZERO_IPC |  | ||||||
|     if ( r!=WorldShmRank ) {  |     if ( r!=WorldShmRank ) {  | ||||||
|       thisBuf = nullptr; |       err = cudaIpcOpenMemHandle(&thisBuf,handle,cudaIpcMemLazyEnablePeerAccess); | ||||||
|       std::cout<<"mapping seeking remote pid/fd " |  | ||||||
| 	       <<handle.pid<<"/" |  | ||||||
| 	       <<handle.fd<<std::endl; |  | ||||||
|  |  | ||||||
|       int pidfd = syscall(SYS_pidfd_open,handle.pid,0); |  | ||||||
|       std::cout<<"Using IpcHandle pidfd "<<pidfd<<"\n"; |  | ||||||
|       //      int myfd  = syscall(SYS_pidfd_getfd,pidfd,handle.fd,0); |  | ||||||
|       int myfd  = syscall(438,pidfd,handle.fd,0); |  | ||||||
|  |  | ||||||
|       std::cout<<"Using IpcHandle myfd "<<myfd<<"\n"; |  | ||||||
|        |  | ||||||
|       memcpy((void *)&ihandle,(void *)&myfd,sizeof(int)); |  | ||||||
|  |  | ||||||
|       auto err = zeMemOpenIpcHandle(zeContext,zeDevice,ihandle,0,&thisBuf); |  | ||||||
|       if ( err != ZE_RESULT_SUCCESS ) { |  | ||||||
| 	std::cout << "SharedMemoryMPI.cc "<<zeContext<<" "<<zeDevice<<std::endl; |  | ||||||
| 	std::cout << "SharedMemoryMPI.cc zeMemOpenIpcHandle failed for rank "<<r<<" "<<std::hex<<err<<std::dec<<std::endl;  |  | ||||||
| 	exit(EXIT_FAILURE); |  | ||||||
|       } else { |  | ||||||
| 	std::cout << "SharedMemoryMPI.cc zeMemOpenIpcHandle succeeded for rank "<<r<<std::endl; |  | ||||||
| 	std::cout << "SharedMemoryMPI.cc zeMemOpenIpcHandle pointer is "<<std::hex<<thisBuf<<std::dec<<std::endl; |  | ||||||
|       } |  | ||||||
|       assert(thisBuf!=nullptr); |  | ||||||
|     } |  | ||||||
| #endif |  | ||||||
| #ifdef GRID_CUDA |  | ||||||
|     if ( r!=WorldShmRank ) {  |  | ||||||
|       auto err = cudaIpcOpenMemHandle(&thisBuf,handle,cudaIpcMemLazyEnablePeerAccess); |  | ||||||
|       if ( err !=  cudaSuccess) { |       if ( err !=  cudaSuccess) { | ||||||
| 	std::cerr << " SharedMemoryMPI.cc cudaIpcOpenMemHandle failed for rank" << r <<" "<<cudaGetErrorString(err)<< std::endl; | 	std::cerr << " SharedMemoryMPI.cc cudaIpcOpenMemHandle failed for rank" << r <<" "<<cudaGetErrorString(err)<< std::endl; | ||||||
| 	exit(EXIT_FAILURE); | 	exit(EXIT_FAILURE); | ||||||
|       } |       } | ||||||
|     } |     } | ||||||
| #endif |  | ||||||
| #ifdef GRID_HIP |  | ||||||
|     if ( r!=WorldShmRank ) {  |  | ||||||
|       auto err = hipIpcOpenMemHandle(&thisBuf,handle,hipIpcMemLazyEnablePeerAccess); |  | ||||||
|       if ( err !=  hipSuccess) { |  | ||||||
| 	std::cerr << " SharedMemoryMPI.cc hipIpcOpenMemHandle failed for rank" << r <<" "<<hipGetErrorString(err)<< std::endl; |  | ||||||
| 	exit(EXIT_FAILURE); |  | ||||||
|       } |  | ||||||
|     } |  | ||||||
| #endif |  | ||||||
|     /////////////////////////////////////////////////////////////// |     /////////////////////////////////////////////////////////////// | ||||||
|     // Save a copy of the device buffers |     // Save a copy of the device buffers | ||||||
|     /////////////////////////////////////////////////////////////// |     /////////////////////////////////////////////////////////////// | ||||||
|     } |  | ||||||
|     WorldShmCommBufs[r] = thisBuf; |     WorldShmCommBufs[r] = thisBuf; | ||||||
| #else |  | ||||||
|     WorldShmCommBufs[r] = ShmCommBuf; |  | ||||||
| #endif |  | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   _ShmAllocBytes=bytes; |   _ShmAllocBytes=bytes; | ||||||
|   _ShmAlloc=1; |   _ShmAlloc=1; | ||||||
| } | } | ||||||
| #endif |  | ||||||
|  |  | ||||||
| #else  | #else  | ||||||
| #ifdef GRID_MPI3_SHMMMAP | #ifdef GRID_MPI3_SHMMMAP | ||||||
| void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags) | void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags) | ||||||
| @@ -781,6 +633,7 @@ void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags) | |||||||
| #endif | #endif | ||||||
|       void * ptr =  mmap(NULL,size, PROT_READ | PROT_WRITE, mmap_flag, fd, 0); |       void * ptr =  mmap(NULL,size, PROT_READ | PROT_WRITE, mmap_flag, fd, 0); | ||||||
|        |        | ||||||
|  |       //      std::cout << "Set WorldShmCommBufs["<<r<<"]="<<ptr<< "("<< size<< "bytes)"<<std::endl; | ||||||
|       if ( ptr == (void * )MAP_FAILED ) {        |       if ( ptr == (void * )MAP_FAILED ) {        | ||||||
| 	perror("failed mmap");      | 	perror("failed mmap");      | ||||||
| 	assert(0);     | 	assert(0);     | ||||||
| @@ -824,16 +677,16 @@ void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags) | |||||||
| ///////////////////////////////////////////////////////////////////////// | ///////////////////////////////////////////////////////////////////////// | ||||||
| void GlobalSharedMemory::SharedMemoryZero(void *dest,size_t bytes) | void GlobalSharedMemory::SharedMemoryZero(void *dest,size_t bytes) | ||||||
| { | { | ||||||
| #if defined(GRID_CUDA) || defined(GRID_HIP) || defined(GRID_SYCL) | #ifdef GRID_NVCC | ||||||
|   acceleratorMemSet(dest,0,bytes); |   cudaMemset(dest,0,bytes); | ||||||
| #else | #else | ||||||
|   bzero(dest,bytes); |   bzero(dest,bytes); | ||||||
| #endif | #endif | ||||||
| } | } | ||||||
| void GlobalSharedMemory::SharedMemoryCopy(void *dest,void *src,size_t bytes) | void GlobalSharedMemory::SharedMemoryCopy(void *dest,const void *src,size_t bytes) | ||||||
| { | { | ||||||
| #if defined(GRID_CUDA) || defined(GRID_HIP) || defined(GRID_SYCL) | #ifdef GRID_NVCC | ||||||
|   acceleratorCopyToDevice(src,dest,bytes); |   cudaMemcpy(dest,src,bytes,cudaMemcpyDefault); | ||||||
| #else    | #else    | ||||||
|   bcopy(src,dest,bytes); |   bcopy(src,dest,bytes); | ||||||
| #endif | #endif | ||||||
| @@ -852,11 +705,7 @@ void SharedMemory::SetCommunicator(Grid_MPI_Comm comm) | |||||||
|   ///////////////////////////////////////////////////////////////////// |   ///////////////////////////////////////////////////////////////////// | ||||||
|   // Split into groups that can share memory |   // Split into groups that can share memory | ||||||
|   ///////////////////////////////////////////////////////////////////// |   ///////////////////////////////////////////////////////////////////// | ||||||
| #ifndef GRID_MPI3_SHM_NONE |  | ||||||
|   MPI_Comm_split_type(comm, MPI_COMM_TYPE_SHARED, 0, MPI_INFO_NULL,&ShmComm); |   MPI_Comm_split_type(comm, MPI_COMM_TYPE_SHARED, 0, MPI_INFO_NULL,&ShmComm); | ||||||
| #else |  | ||||||
|   MPI_Comm_split(comm, rank, 0, &ShmComm); |  | ||||||
| #endif |  | ||||||
|   MPI_Comm_rank(ShmComm     ,&ShmRank); |   MPI_Comm_rank(ShmComm     ,&ShmRank); | ||||||
|   MPI_Comm_size(ShmComm     ,&ShmSize); |   MPI_Comm_size(ShmComm     ,&ShmSize); | ||||||
|   ShmCommBufs.resize(ShmSize); |   ShmCommBufs.resize(ShmSize); | ||||||
| @@ -886,18 +735,25 @@ void SharedMemory::SetCommunicator(Grid_MPI_Comm comm) | |||||||
|   std::vector<int> ranks(size);   for(int r=0;r<size;r++) ranks[r]=r; |   std::vector<int> ranks(size);   for(int r=0;r<size;r++) ranks[r]=r; | ||||||
|   MPI_Group_translate_ranks (FullGroup,size,&ranks[0],ShmGroup, &ShmRanks[0]);  |   MPI_Group_translate_ranks (FullGroup,size,&ranks[0],ShmGroup, &ShmRanks[0]);  | ||||||
|  |  | ||||||
| #ifdef GRID_SHM_FORCE_MPI | #ifdef GRID_IBM_SUMMIT | ||||||
|   // Hide the shared memory path between ranks |   // Hide the shared memory path between sockets  | ||||||
|   { |   // if even number of nodes | ||||||
|  |   if ( (ShmSize & 0x1)==0 ) { | ||||||
|  |     int SocketSize = ShmSize/2; | ||||||
|  |     int mySocket = ShmRank/SocketSize;  | ||||||
|     for(int r=0;r<size;r++){ |     for(int r=0;r<size;r++){ | ||||||
|       if ( r!=rank ) { |       int hisRank=ShmRanks[r]; | ||||||
|  |       if ( hisRank!= MPI_UNDEFINED ) { | ||||||
|  | 	int hisSocket=hisRank/SocketSize; | ||||||
|  | 	if ( hisSocket != mySocket ) { | ||||||
| 	  ShmRanks[r] = MPI_UNDEFINED; | 	  ShmRanks[r] = MPI_UNDEFINED; | ||||||
| 	} | 	} | ||||||
|       } |       } | ||||||
|     } |     } | ||||||
|  |   } | ||||||
| #endif | #endif | ||||||
|  |  | ||||||
|   //SharedMemoryTest(); |   SharedMemoryTest(); | ||||||
| } | } | ||||||
| ////////////////////////////////////////////////////////////////// | ////////////////////////////////////////////////////////////////// | ||||||
| // On node barrier | // On node barrier | ||||||
|   | |||||||
| @@ -29,7 +29,6 @@ Author: Peter Boyle <paboyle@ph.ed.ac.uk> | |||||||
| #include <Grid/GridCore.h> | #include <Grid/GridCore.h> | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid);  | NAMESPACE_BEGIN(Grid);  | ||||||
| #define header "SharedMemoryNone: " |  | ||||||
|  |  | ||||||
| /*Construct from an MPI communicator*/ | /*Construct from an MPI communicator*/ | ||||||
| void GlobalSharedMemory::Init(Grid_MPI_Comm comm) | void GlobalSharedMemory::Init(Grid_MPI_Comm comm) | ||||||
| @@ -56,38 +55,6 @@ void GlobalSharedMemory::OptimalCommunicator(const Coordinate &processors,Grid_M | |||||||
| //////////////////////////////////////////////////////////////////////////////////////////// | //////////////////////////////////////////////////////////////////////////////////////////// | ||||||
| // Hugetlbfs mapping intended, use anonymous mmap | // Hugetlbfs mapping intended, use anonymous mmap | ||||||
| //////////////////////////////////////////////////////////////////////////////////////////// | //////////////////////////////////////////////////////////////////////////////////////////// | ||||||
| #if 1 |  | ||||||
| void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags) |  | ||||||
| { |  | ||||||
|   std::cout << header "SharedMemoryAllocate "<< bytes<< " GPU implementation "<<std::endl; |  | ||||||
|   void * ShmCommBuf ;  |  | ||||||
|   assert(_ShmSetup==1); |  | ||||||
|   assert(_ShmAlloc==0); |  | ||||||
|  |  | ||||||
|   /////////////////////////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
|   // Each MPI rank should allocate our own buffer |  | ||||||
|   /////////////////////////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
|   ShmCommBuf = acceleratorAllocDevice(bytes); |  | ||||||
|  |  | ||||||
|   if (ShmCommBuf == (void *)NULL ) { |  | ||||||
|     std::cerr << " SharedMemoryNone.cc acceleratorAllocDevice failed NULL pointer for " << bytes<<" bytes " << std::endl; |  | ||||||
|     exit(EXIT_FAILURE);   |  | ||||||
|   } |  | ||||||
|   if ( WorldRank == 0 ){ |  | ||||||
|     std::cout << WorldRank << header " SharedMemoryNone.cc acceleratorAllocDevice "<< bytes  |  | ||||||
| 	      << "bytes at "<< std::hex<< ShmCommBuf <<std::dec<<" for comms buffers " <<std::endl; |  | ||||||
|   } |  | ||||||
|   SharedMemoryZero(ShmCommBuf,bytes); |  | ||||||
|  |  | ||||||
|   /////////////////////////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
|   // Loop over ranks/gpu's on our node |  | ||||||
|   /////////////////////////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
|   WorldShmCommBufs[0] = ShmCommBuf; |  | ||||||
|  |  | ||||||
|   _ShmAllocBytes=bytes; |  | ||||||
|   _ShmAlloc=1; |  | ||||||
| } |  | ||||||
| #else |  | ||||||
| void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags) | void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags) | ||||||
| { | { | ||||||
|   void * ShmCommBuf ;  |   void * ShmCommBuf ;  | ||||||
| @@ -116,15 +83,7 @@ void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags) | |||||||
|   _ShmAllocBytes=bytes; |   _ShmAllocBytes=bytes; | ||||||
|   _ShmAlloc=1; |   _ShmAlloc=1; | ||||||
| }; | }; | ||||||
| #endif |  | ||||||
| void GlobalSharedMemory::SharedMemoryZero(void *dest,size_t bytes) |  | ||||||
| { |  | ||||||
|   acceleratorMemSet(dest,0,bytes); |  | ||||||
| } |  | ||||||
| void GlobalSharedMemory::SharedMemoryCopy(void *dest,void *src,size_t bytes) |  | ||||||
| { |  | ||||||
|   acceleratorCopyToDevice(src,dest,bytes); |  | ||||||
| } |  | ||||||
| //////////////////////////////////////////////////////// | //////////////////////////////////////////////////////// | ||||||
| // Global shared functionality finished | // Global shared functionality finished | ||||||
| // Now move to per communicator functionality | // Now move to per communicator functionality | ||||||
|   | |||||||
| @@ -52,8 +52,23 @@ Author: Peter Boyle <paboyle@ph.ed.ac.uk> | |||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); | NAMESPACE_BEGIN(Grid); | ||||||
|  |  | ||||||
| template<class Expression,typename std::enable_if<is_lattice_expr<Expression>::value,void>::type * = nullptr>  | template<typename Op, typename T1>  | ||||||
| auto Cshift(const Expression &expr,int dim,int shift)  -> decltype(closure(expr))  | auto Cshift(const LatticeUnaryExpression<Op,T1> &expr,int dim,int shift) | ||||||
|  |     -> Lattice<decltype(expr.op.func(eval(0, expr.arg1)))>  | ||||||
|  | { | ||||||
|  |   return Cshift(closure(expr),dim,shift); | ||||||
|  | } | ||||||
|  | template <class Op, class T1, class T2> | ||||||
|  | auto Cshift(const LatticeBinaryExpression<Op,T1,T2> &expr,int dim,int shift) | ||||||
|  |   -> Lattice<decltype(expr.op.func(eval(0, expr.arg1),eval(0, expr.arg2)))>  | ||||||
|  | { | ||||||
|  |   return Cshift(closure(expr),dim,shift); | ||||||
|  | } | ||||||
|  | template <class Op, class T1, class T2, class T3> | ||||||
|  | auto Cshift(const LatticeTrinaryExpression<Op,T1,T2,T3> &expr,int dim,int shift) | ||||||
|  |   -> Lattice<decltype(expr.op.func(eval(0, expr.arg1), | ||||||
|  | 				   eval(0, expr.arg2), | ||||||
|  | 				   eval(0, expr.arg3)))>  | ||||||
| { | { | ||||||
|   return Cshift(closure(expr),dim,shift); |   return Cshift(closure(expr),dim,shift); | ||||||
| } | } | ||||||
|   | |||||||
| @@ -29,13 +29,11 @@ Author: Peter Boyle <paboyle@ph.ed.ac.uk> | |||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); | NAMESPACE_BEGIN(Grid); | ||||||
|  |  | ||||||
| extern Vector<std::pair<int,int> > Cshift_table;  |  | ||||||
|  |  | ||||||
| /////////////////////////////////////////////////////////////////// | /////////////////////////////////////////////////////////////////// | ||||||
| // Gather for when there is no need to SIMD split  | // Gather for when there is no need to SIMD split  | ||||||
| /////////////////////////////////////////////////////////////////// | /////////////////////////////////////////////////////////////////// | ||||||
| template<class vobj> void  | template<class vobj> void  | ||||||
| Gather_plane_simple (const Lattice<vobj> &rhs,cshiftVector<vobj> &buffer,int dimension,int plane,int cbmask, int off=0) | Gather_plane_simple (const Lattice<vobj> &rhs,commVector<vobj> &buffer,int dimension,int plane,int cbmask, int off=0) | ||||||
| { | { | ||||||
|   int rd = rhs.Grid()->_rdimensions[dimension]; |   int rd = rhs.Grid()->_rdimensions[dimension]; | ||||||
|  |  | ||||||
| @@ -48,16 +46,16 @@ Gather_plane_simple (const Lattice<vobj> &rhs,cshiftVector<vobj> &buffer,int dim | |||||||
|   int e2=rhs.Grid()->_slice_block[dimension]; |   int e2=rhs.Grid()->_slice_block[dimension]; | ||||||
|   int ent = 0; |   int ent = 0; | ||||||
|  |  | ||||||
|   if(Cshift_table.size()<e1*e2) Cshift_table.resize(e1*e2); // Let it grow to biggest |   static Vector<std::pair<int,int> > table; table.resize(e1*e2); | ||||||
|  |  | ||||||
|   int stride=rhs.Grid()->_slice_stride[dimension]; |   int stride=rhs.Grid()->_slice_stride[dimension]; | ||||||
|  |  | ||||||
|  |   auto rhs_v = rhs.View(); | ||||||
|   if ( cbmask == 0x3 ) {  |   if ( cbmask == 0x3 ) {  | ||||||
|     for(int n=0;n<e1;n++){ |     for(int n=0;n<e1;n++){ | ||||||
|       for(int b=0;b<e2;b++){ |       for(int b=0;b<e2;b++){ | ||||||
| 	int o  = n*stride; | 	int o  = n*stride; | ||||||
| 	int bo = n*e2; | 	int bo = n*e2; | ||||||
| 	Cshift_table[ent++] = std::pair<int,int>(off+bo+b,so+o+b); | 	table[ent++] = std::pair<int,int>(off+bo+b,so+o+b); | ||||||
|       } |       } | ||||||
|     } |     } | ||||||
|   } else {  |   } else {  | ||||||
| @@ -67,26 +65,14 @@ Gather_plane_simple (const Lattice<vobj> &rhs,cshiftVector<vobj> &buffer,int dim | |||||||
| 	 int o  = n*stride; | 	 int o  = n*stride; | ||||||
| 	 int ocb=1<<rhs.Grid()->CheckerBoardFromOindex(o+b); | 	 int ocb=1<<rhs.Grid()->CheckerBoardFromOindex(o+b); | ||||||
| 	 if ( ocb &cbmask ) { | 	 if ( ocb &cbmask ) { | ||||||
| 	   Cshift_table[ent++]=std::pair<int,int> (off+bo++,so+o+b); | 	   table[ent++]=std::pair<int,int> (off+bo++,so+o+b); | ||||||
| 	 } | 	 } | ||||||
|        } |        } | ||||||
|      } |      } | ||||||
|   } |   } | ||||||
|   { |  | ||||||
|     auto buffer_p = & buffer[0]; |  | ||||||
|     auto table = &Cshift_table[0]; |  | ||||||
| #ifdef ACCELERATOR_CSHIFT     |  | ||||||
|     autoView(rhs_v , rhs, AcceleratorRead); |  | ||||||
|     accelerator_for(i,ent,vobj::Nsimd(),{ |  | ||||||
| 	coalescedWrite(buffer_p[table[i].first],coalescedRead(rhs_v[table[i].second])); |  | ||||||
|     }); |  | ||||||
| #else |  | ||||||
|     autoView(rhs_v , rhs, CpuRead); |  | ||||||
|   thread_for(i,ent,{ |   thread_for(i,ent,{ | ||||||
|       buffer_p[table[i].first]=rhs_v[table[i].second]; |     buffer[table[i].first]=rhs_v[table[i].second]; | ||||||
|   }); |   }); | ||||||
| #endif |  | ||||||
|   } |  | ||||||
| } | } | ||||||
|  |  | ||||||
| /////////////////////////////////////////////////////////////////// | /////////////////////////////////////////////////////////////////// | ||||||
| @@ -109,80 +95,43 @@ Gather_plane_extract(const Lattice<vobj> &rhs, | |||||||
|   int e2=rhs.Grid()->_slice_block[dimension]; |   int e2=rhs.Grid()->_slice_block[dimension]; | ||||||
|   int n1=rhs.Grid()->_slice_stride[dimension]; |   int n1=rhs.Grid()->_slice_stride[dimension]; | ||||||
|  |  | ||||||
|  |   auto rhs_v = rhs.View(); | ||||||
|   if ( cbmask ==0x3){ |   if ( cbmask ==0x3){ | ||||||
| #ifdef ACCELERATOR_CSHIFT |     thread_for_collapse(2,n,e1,{ | ||||||
|     autoView(rhs_v , rhs, AcceleratorRead); |       for(int b=0;b<e2;b++){ | ||||||
|     accelerator_for(nn,e1*e2,1,{ |  | ||||||
| 	int n = nn%e1; |  | ||||||
| 	int b = nn/e1; |  | ||||||
| 	int o      =   n*n1; | 	int o      =   n*n1; | ||||||
| 	int offset = b+n*e2; | 	int offset = b+n*e2; | ||||||
| 	 | 	 | ||||||
| 	vobj temp =rhs_v[so+o+b]; | 	vobj temp =rhs_v[so+o+b]; | ||||||
| 	extract<vobj>(temp,pointers,offset); | 	extract<vobj>(temp,pointers,offset); | ||||||
|  |       } | ||||||
|     }); |     }); | ||||||
| #else |  | ||||||
|     autoView(rhs_v , rhs, CpuRead); |  | ||||||
|     thread_for2d(n,e1,b,e2,{ |  | ||||||
| 	int o      =   n*n1; |  | ||||||
| 	int offset = b+n*e2; |  | ||||||
| 	 |  | ||||||
| 	vobj temp =rhs_v[so+o+b]; |  | ||||||
| 	extract<vobj>(temp,pointers,offset); |  | ||||||
|       }); |  | ||||||
| #endif |  | ||||||
|   } else {  |   } else {  | ||||||
|     Coordinate rdim=rhs.Grid()->_rdimensions; |  | ||||||
|     Coordinate cdm =rhs.Grid()->_checker_dim_mask; |  | ||||||
|     std::cout << " Dense packed buffer WARNING " <<std::endl; // Does this get called twice once for each cb? |  | ||||||
| #ifdef ACCELERATOR_CSHIFT     |  | ||||||
|     autoView(rhs_v , rhs, AcceleratorRead); |  | ||||||
|     accelerator_for(nn,e1*e2,1,{ |  | ||||||
| 	int n = nn%e1; |  | ||||||
| 	int b = nn/e1; |  | ||||||
|  |  | ||||||
| 	Coordinate coor; |     // Case of SIMD split AND checker dim cannot currently be hit, except in  | ||||||
|  |     // Test_cshift_red_black code. | ||||||
|  |     std::cout << " Dense packed buffer WARNING " <<std::endl; | ||||||
|  |     thread_for_collapse(2,n,e1,{ | ||||||
|  |       for(int b=0;b<e2;b++){ | ||||||
|  |  | ||||||
| 	int o=n*n1; | 	int o=n*n1; | ||||||
| 	int oindex = o+b; | 	int ocb=1<<rhs.Grid()->CheckerBoardFromOindex(o+b); | ||||||
|  |  | ||||||
|        	int cb = RedBlackCheckerBoardFromOindex(oindex, rdim, cdm); |  | ||||||
|  |  | ||||||
| 	int ocb=1<<cb; |  | ||||||
| 	int offset = b+n*e2; | 	int offset = b+n*e2; | ||||||
|  |  | ||||||
| 	if ( ocb & cbmask ) { | 	if ( ocb & cbmask ) { | ||||||
| 	  vobj temp =rhs_v[so+o+b]; | 	  vobj temp =rhs_v[so+o+b]; | ||||||
| 	  extract<vobj>(temp,pointers,offset); | 	  extract<vobj>(temp,pointers,offset); | ||||||
| 	} | 	} | ||||||
|       }); |  | ||||||
| #else |  | ||||||
|     autoView(rhs_v , rhs, CpuRead); |  | ||||||
|     thread_for2d(n,e1,b,e2,{ |  | ||||||
|  |  | ||||||
| 	Coordinate coor; |  | ||||||
|  |  | ||||||
| 	int o=n*n1; |  | ||||||
| 	int oindex = o+b; |  | ||||||
|  |  | ||||||
|        	int cb = RedBlackCheckerBoardFromOindex(oindex, rdim, cdm); |  | ||||||
|  |  | ||||||
| 	int ocb=1<<cb; |  | ||||||
| 	int offset = b+n*e2; |  | ||||||
|  |  | ||||||
| 	if ( ocb & cbmask ) { |  | ||||||
| 	  vobj temp =rhs_v[so+o+b]; |  | ||||||
| 	  extract<vobj>(temp,pointers,offset); |  | ||||||
|       } |       } | ||||||
|     }); |     }); | ||||||
| #endif |  | ||||||
|   } |   } | ||||||
| } | } | ||||||
|  |  | ||||||
| ////////////////////////////////////////////////////// | ////////////////////////////////////////////////////// | ||||||
| // Scatter for when there is no need to SIMD split | // Scatter for when there is no need to SIMD split | ||||||
| ////////////////////////////////////////////////////// | ////////////////////////////////////////////////////// | ||||||
| template<class vobj> void Scatter_plane_simple (Lattice<vobj> &rhs,cshiftVector<vobj> &buffer, int dimension,int plane,int cbmask) | template<class vobj> void Scatter_plane_simple (Lattice<vobj> &rhs,commVector<vobj> &buffer, int dimension,int plane,int cbmask) | ||||||
| { | { | ||||||
|   int rd = rhs.Grid()->_rdimensions[dimension]; |   int rd = rhs.Grid()->_rdimensions[dimension]; | ||||||
|  |  | ||||||
| @@ -196,8 +145,7 @@ template<class vobj> void Scatter_plane_simple (Lattice<vobj> &rhs,cshiftVector< | |||||||
|   int e2=rhs.Grid()->_slice_block[dimension]; |   int e2=rhs.Grid()->_slice_block[dimension]; | ||||||
|   int stride=rhs.Grid()->_slice_stride[dimension]; |   int stride=rhs.Grid()->_slice_stride[dimension]; | ||||||
|  |  | ||||||
|   if(Cshift_table.size()<e1*e2) Cshift_table.resize(e1*e2); // Let it grow to biggest |   static std::vector<std::pair<int,int> > table; table.resize(e1*e2); | ||||||
|  |  | ||||||
|   int ent    =0; |   int ent    =0; | ||||||
|  |  | ||||||
|   if ( cbmask ==0x3 ) { |   if ( cbmask ==0x3 ) { | ||||||
| @@ -206,7 +154,7 @@ template<class vobj> void Scatter_plane_simple (Lattice<vobj> &rhs,cshiftVector< | |||||||
|       for(int b=0;b<e2;b++){ |       for(int b=0;b<e2;b++){ | ||||||
| 	int o   =n*rhs.Grid()->_slice_stride[dimension]; | 	int o   =n*rhs.Grid()->_slice_stride[dimension]; | ||||||
| 	int bo  =n*rhs.Grid()->_slice_block[dimension]; | 	int bo  =n*rhs.Grid()->_slice_block[dimension]; | ||||||
| 	Cshift_table[ent++] = std::pair<int,int>(so+o+b,bo+b); | 	table[ent++] = std::pair<int,int>(so+o+b,bo+b); | ||||||
|       } |       } | ||||||
|     } |     } | ||||||
|  |  | ||||||
| @@ -217,27 +165,16 @@ template<class vobj> void Scatter_plane_simple (Lattice<vobj> &rhs,cshiftVector< | |||||||
| 	int o   =n*rhs.Grid()->_slice_stride[dimension]; | 	int o   =n*rhs.Grid()->_slice_stride[dimension]; | ||||||
| 	int ocb=1<<rhs.Grid()->CheckerBoardFromOindex(o+b);// Could easily be a table lookup | 	int ocb=1<<rhs.Grid()->CheckerBoardFromOindex(o+b);// Could easily be a table lookup | ||||||
| 	if ( ocb & cbmask ) { | 	if ( ocb & cbmask ) { | ||||||
| 	  Cshift_table[ent++]=std::pair<int,int> (so+o+b,bo++); | 	  table[ent++]=std::pair<int,int> (so+o+b,bo++); | ||||||
| 	} | 	} | ||||||
|       } |       } | ||||||
|     } |     } | ||||||
|   } |   } | ||||||
|    |    | ||||||
|   { |   auto rhs_v = rhs.View(); | ||||||
|     auto buffer_p = & buffer[0]; |  | ||||||
|     auto table = &Cshift_table[0]; |  | ||||||
| #ifdef ACCELERATOR_CSHIFT     |  | ||||||
|     autoView( rhs_v, rhs, AcceleratorWrite); |  | ||||||
|     accelerator_for(i,ent,vobj::Nsimd(),{ |  | ||||||
| 	coalescedWrite(rhs_v[table[i].first],coalescedRead(buffer_p[table[i].second])); |  | ||||||
|     }); |  | ||||||
| #else |  | ||||||
|     autoView( rhs_v, rhs, CpuWrite); |  | ||||||
|   thread_for(i,ent,{ |   thread_for(i,ent,{ | ||||||
|       rhs_v[table[i].first]=buffer_p[table[i].second]; |     rhs_v[table[i].first]=buffer[table[i].second]; | ||||||
|   }); |   }); | ||||||
| #endif |  | ||||||
|   } |  | ||||||
| } | } | ||||||
|  |  | ||||||
| ////////////////////////////////////////////////////// | ////////////////////////////////////////////////////// | ||||||
| @@ -257,33 +194,21 @@ template<class vobj> void Scatter_plane_merge(Lattice<vobj> &rhs,ExtractPointerA | |||||||
|   int e2=rhs.Grid()->_slice_block[dimension]; |   int e2=rhs.Grid()->_slice_block[dimension]; | ||||||
|  |  | ||||||
|   if(cbmask ==0x3 ) { |   if(cbmask ==0x3 ) { | ||||||
|     int _slice_stride = rhs.Grid()->_slice_stride[dimension]; |     auto rhs_v = rhs.View(); | ||||||
|     int _slice_block = rhs.Grid()->_slice_block[dimension]; |     thread_for_collapse(2,n,e1,{ | ||||||
| #ifdef ACCELERATOR_CSHIFT     |       for(int b=0;b<e2;b++){ | ||||||
|     autoView( rhs_v , rhs, AcceleratorWrite); | 	int o      = n*rhs.Grid()->_slice_stride[dimension]; | ||||||
|     accelerator_for(nn,e1*e2,1,{ | 	int offset = b+n*rhs.Grid()->_slice_block[dimension]; | ||||||
| 	int n = nn%e1; |  | ||||||
| 	int b = nn/e1; |  | ||||||
| 	int o      = n*_slice_stride; |  | ||||||
| 	int offset = b+n*_slice_block; |  | ||||||
| 	merge(rhs_v[so+o+b],pointers,offset); | 	merge(rhs_v[so+o+b],pointers,offset); | ||||||
|  |       } | ||||||
|     }); |     }); | ||||||
| #else |  | ||||||
|     autoView( rhs_v , rhs, CpuWrite); |  | ||||||
|     thread_for2d(n,e1,b,e2,{ |  | ||||||
| 	int o      = n*_slice_stride; |  | ||||||
| 	int offset = b+n*_slice_block; |  | ||||||
| 	merge(rhs_v[so+o+b],pointers,offset); |  | ||||||
|     }); |  | ||||||
| #endif |  | ||||||
|   } else {  |   } else {  | ||||||
|  |  | ||||||
|     // Case of SIMD split AND checker dim cannot currently be hit, except in  |     // Case of SIMD split AND checker dim cannot currently be hit, except in  | ||||||
|     // Test_cshift_red_black code. |     // Test_cshift_red_black code. | ||||||
|     std::cout << "Scatter_plane merge assert(0); think this is buggy FIXME "<< std::endl;// think this is buggy FIXME |     //    std::cout << "Scatter_plane merge assert(0); think this is buggy FIXME "<< std::endl;// think this is buggy FIXME | ||||||
|     std::cout<<" Unthreaded warning -- buffer is not densely packed ??"<<std::endl; |     std::cout<<" Unthreaded warning -- buffer is not densely packed ??"<<std::endl; | ||||||
|     assert(0); // This will fail if hit on GPU |     auto rhs_v = rhs.View(); | ||||||
|     autoView( rhs_v, rhs, CpuWrite); |  | ||||||
|     for(int n=0;n<e1;n++){ |     for(int n=0;n<e1;n++){ | ||||||
|       for(int b=0;b<e2;b++){ |       for(int b=0;b<e2;b++){ | ||||||
| 	int o      = n*rhs.Grid()->_slice_stride[dimension]; | 	int o      = n*rhs.Grid()->_slice_stride[dimension]; | ||||||
| @@ -300,7 +225,6 @@ template<class vobj> void Scatter_plane_merge(Lattice<vobj> &rhs,ExtractPointerA | |||||||
| ////////////////////////////////////////////////////// | ////////////////////////////////////////////////////// | ||||||
| // local to node block strided copies | // local to node block strided copies | ||||||
| ////////////////////////////////////////////////////// | ////////////////////////////////////////////////////// | ||||||
|  |  | ||||||
| template<class vobj> void Copy_plane(Lattice<vobj>& lhs,const Lattice<vobj> &rhs, int dimension,int lplane,int rplane,int cbmask) | template<class vobj> void Copy_plane(Lattice<vobj>& lhs,const Lattice<vobj> &rhs, int dimension,int lplane,int rplane,int cbmask) | ||||||
| { | { | ||||||
|   int rd = rhs.Grid()->_rdimensions[dimension]; |   int rd = rhs.Grid()->_rdimensions[dimension]; | ||||||
| @@ -315,16 +239,14 @@ template<class vobj> void Copy_plane(Lattice<vobj>& lhs,const Lattice<vobj> &rhs | |||||||
|   int e1=rhs.Grid()->_slice_nblock[dimension]; // clearly loop invariant for icpc |   int e1=rhs.Grid()->_slice_nblock[dimension]; // clearly loop invariant for icpc | ||||||
|   int e2=rhs.Grid()->_slice_block[dimension]; |   int e2=rhs.Grid()->_slice_block[dimension]; | ||||||
|   int stride = rhs.Grid()->_slice_stride[dimension]; |   int stride = rhs.Grid()->_slice_stride[dimension]; | ||||||
|  |   static std::vector<std::pair<int,int> > table; table.resize(e1*e2); | ||||||
|   if(Cshift_table.size()<e1*e2) Cshift_table.resize(e1*e2); // Let it grow to biggest |  | ||||||
|  |  | ||||||
|   int ent=0; |   int ent=0; | ||||||
|  |  | ||||||
|   if(cbmask == 0x3 ){ |   if(cbmask == 0x3 ){ | ||||||
|     for(int n=0;n<e1;n++){ |     for(int n=0;n<e1;n++){ | ||||||
|       for(int b=0;b<e2;b++){ |       for(int b=0;b<e2;b++){ | ||||||
|         int o =n*stride+b; |         int o =n*stride+b; | ||||||
| 	Cshift_table[ent++] = std::pair<int,int>(lo+o,ro+o); | 	table[ent++] = std::pair<int,int>(lo+o,ro+o); | ||||||
|       } |       } | ||||||
|     } |     } | ||||||
|   } else {  |   } else {  | ||||||
| @@ -333,32 +255,23 @@ template<class vobj> void Copy_plane(Lattice<vobj>& lhs,const Lattice<vobj> &rhs | |||||||
|         int o =n*stride+b; |         int o =n*stride+b; | ||||||
|         int ocb=1<<lhs.Grid()->CheckerBoardFromOindex(o); |         int ocb=1<<lhs.Grid()->CheckerBoardFromOindex(o); | ||||||
|         if ( ocb&cbmask ) { |         if ( ocb&cbmask ) { | ||||||
| 	  Cshift_table[ent++] = std::pair<int,int>(lo+o,ro+o); | 	  table[ent++] = std::pair<int,int>(lo+o,ro+o); | ||||||
| 	} | 	} | ||||||
|       } |       } | ||||||
|     } |     } | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   { |   auto rhs_v = rhs.View(); | ||||||
|     auto table = &Cshift_table[0]; |   auto lhs_v = lhs.View(); | ||||||
| #ifdef ACCELERATOR_CSHIFT     |  | ||||||
|     autoView(rhs_v , rhs, AcceleratorRead); |  | ||||||
|     autoView(lhs_v , lhs, AcceleratorWrite); |  | ||||||
|     accelerator_for(i,ent,vobj::Nsimd(),{ |  | ||||||
|       coalescedWrite(lhs_v[table[i].first],coalescedRead(rhs_v[table[i].second])); |  | ||||||
|     }); |  | ||||||
| #else |  | ||||||
|     autoView(rhs_v , rhs, CpuRead); |  | ||||||
|     autoView(lhs_v , lhs, CpuWrite); |  | ||||||
|   thread_for(i,ent,{ |   thread_for(i,ent,{ | ||||||
|     lhs_v[table[i].first]=rhs_v[table[i].second]; |     lhs_v[table[i].first]=rhs_v[table[i].second]; | ||||||
|   }); |   }); | ||||||
| #endif |  | ||||||
|   } |  | ||||||
| } | } | ||||||
|  |  | ||||||
| template<class vobj> void Copy_plane_permute(Lattice<vobj>& lhs,const Lattice<vobj> &rhs, int dimension,int lplane,int rplane,int cbmask,int permute_type) | template<class vobj> void Copy_plane_permute(Lattice<vobj>& lhs,const Lattice<vobj> &rhs, int dimension,int lplane,int rplane,int cbmask,int permute_type) | ||||||
| { | { | ||||||
|  |   | ||||||
|   int rd = rhs.Grid()->_rdimensions[dimension]; |   int rd = rhs.Grid()->_rdimensions[dimension]; | ||||||
|  |  | ||||||
|   if ( !rhs.Grid()->CheckerBoarded(dimension) ) { |   if ( !rhs.Grid()->CheckerBoarded(dimension) ) { | ||||||
| @@ -372,41 +285,29 @@ template<class vobj> void Copy_plane_permute(Lattice<vobj>& lhs,const Lattice<vo | |||||||
|   int e2=rhs.Grid()->_slice_block [dimension]; |   int e2=rhs.Grid()->_slice_block [dimension]; | ||||||
|   int stride = rhs.Grid()->_slice_stride[dimension]; |   int stride = rhs.Grid()->_slice_stride[dimension]; | ||||||
|  |  | ||||||
|   if(Cshift_table.size()<e1*e2) Cshift_table.resize(e1*e2); // Let it grow to biggest |   static std::vector<std::pair<int,int> > table;  table.resize(e1*e2); | ||||||
|  |  | ||||||
|   int ent=0; |   int ent=0; | ||||||
|  |  | ||||||
|   if ( cbmask == 0x3 ) { |   if ( cbmask == 0x3 ) { | ||||||
|     for(int n=0;n<e1;n++){ |     for(int n=0;n<e1;n++){ | ||||||
|     for(int b=0;b<e2;b++){ |     for(int b=0;b<e2;b++){ | ||||||
|       int o  =n*stride; |       int o  =n*stride; | ||||||
|       Cshift_table[ent++] = std::pair<int,int>(lo+o+b,ro+o+b); |       table[ent++] = std::pair<int,int>(lo+o+b,ro+o+b); | ||||||
|     }} |     }} | ||||||
|   } else { |   } else { | ||||||
|     for(int n=0;n<e1;n++){ |     for(int n=0;n<e1;n++){ | ||||||
|     for(int b=0;b<e2;b++){ |     for(int b=0;b<e2;b++){ | ||||||
|       int o  =n*stride; |       int o  =n*stride; | ||||||
|       int ocb=1<<lhs.Grid()->CheckerBoardFromOindex(o+b); |       int ocb=1<<lhs.Grid()->CheckerBoardFromOindex(o+b); | ||||||
|       if ( ocb&cbmask ) Cshift_table[ent++] = std::pair<int,int>(lo+o+b,ro+o+b); |       if ( ocb&cbmask ) table[ent++] = std::pair<int,int>(lo+o+b,ro+o+b); | ||||||
|     }} |     }} | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   { |   auto rhs_v = rhs.View(); | ||||||
|     auto table = &Cshift_table[0]; |   auto lhs_v = lhs.View(); | ||||||
| #ifdef ACCELERATOR_CSHIFT     |  | ||||||
|     autoView( rhs_v, rhs, AcceleratorRead); |  | ||||||
|     autoView( lhs_v, lhs, AcceleratorWrite); |  | ||||||
|     accelerator_for(i,ent,1,{ |  | ||||||
|       permute(lhs_v[table[i].first],rhs_v[table[i].second],permute_type); |  | ||||||
|     }); |  | ||||||
| #else |  | ||||||
|     autoView( rhs_v, rhs, CpuRead); |  | ||||||
|     autoView( lhs_v, lhs, CpuWrite); |  | ||||||
|   thread_for(i,ent,{ |   thread_for(i,ent,{ | ||||||
|     permute(lhs_v[table[i].first],rhs_v[table[i].second],permute_type); |     permute(lhs_v[table[i].first],rhs_v[table[i].second],permute_type); | ||||||
|   }); |   }); | ||||||
| #endif |  | ||||||
|   } |  | ||||||
| } | } | ||||||
|  |  | ||||||
| ////////////////////////////////////////////////////// | ////////////////////////////////////////////////////// | ||||||
|   | |||||||
| @@ -101,8 +101,7 @@ template<class vobj> void Cshift_comms_simd(Lattice<vobj>& ret,const Lattice<vob | |||||||
|     Cshift_comms_simd(ret,rhs,dimension,shift,0x2);// both with block stride loop iteration |     Cshift_comms_simd(ret,rhs,dimension,shift,0x2);// both with block stride loop iteration | ||||||
|   } |   } | ||||||
| } | } | ||||||
| #define ACCELERATOR_CSHIFT_NO_COPY |  | ||||||
| #ifdef ACCELERATOR_CSHIFT_NO_COPY |  | ||||||
| template<class vobj> void Cshift_comms(Lattice<vobj> &ret,const Lattice<vobj> &rhs,int dimension,int shift,int cbmask) | template<class vobj> void Cshift_comms(Lattice<vobj> &ret,const Lattice<vobj> &rhs,int dimension,int shift,int cbmask) | ||||||
| { | { | ||||||
|   typedef typename vobj::vector_type vector_type; |   typedef typename vobj::vector_type vector_type; | ||||||
| @@ -122,8 +121,8 @@ template<class vobj> void Cshift_comms(Lattice<vobj> &ret,const Lattice<vobj> &r | |||||||
|   assert(shift<fd); |   assert(shift<fd); | ||||||
|    |    | ||||||
|   int buffer_size = rhs.Grid()->_slice_nblock[dimension]*rhs.Grid()->_slice_block[dimension]; |   int buffer_size = rhs.Grid()->_slice_nblock[dimension]*rhs.Grid()->_slice_block[dimension]; | ||||||
|   static cshiftVector<vobj> send_buf; send_buf.resize(buffer_size); |   commVector<vobj> send_buf(buffer_size); | ||||||
|   static cshiftVector<vobj> recv_buf; recv_buf.resize(buffer_size); |   commVector<vobj> recv_buf(buffer_size); | ||||||
|  |  | ||||||
|   int cb= (cbmask==0x2)? Odd : Even; |   int cb= (cbmask==0x2)? Odd : Even; | ||||||
|   int sshift= rhs.Grid()->CheckerBoardShiftForCB(rhs.Checkerboard(),dimension,shift,cb); |   int sshift= rhs.Grid()->CheckerBoardShiftForCB(rhs.Checkerboard(),dimension,shift,cb); | ||||||
| @@ -139,7 +138,7 @@ template<class vobj> void Cshift_comms(Lattice<vobj> &ret,const Lattice<vobj> &r | |||||||
|  |  | ||||||
|     } else { |     } else { | ||||||
|  |  | ||||||
|       int words = buffer_size; |       int words = send_buf.size(); | ||||||
|       if (cbmask != 0x3) words=words>>1; |       if (cbmask != 0x3) words=words>>1; | ||||||
|  |  | ||||||
|       int bytes = words * sizeof(vobj); |       int bytes = words * sizeof(vobj); | ||||||
| @@ -151,14 +150,12 @@ template<class vobj> void Cshift_comms(Lattice<vobj> &ret,const Lattice<vobj> &r | |||||||
|       int xmit_to_rank; |       int xmit_to_rank; | ||||||
|       grid->ShiftedRanks(dimension,comm_proc,xmit_to_rank,recv_from_rank); |       grid->ShiftedRanks(dimension,comm_proc,xmit_to_rank,recv_from_rank); | ||||||
|  |  | ||||||
|       grid->Barrier(); |  | ||||||
|  |  | ||||||
|       grid->SendToRecvFrom((void *)&send_buf[0], |       grid->SendToRecvFrom((void *)&send_buf[0], | ||||||
| 			   xmit_to_rank, | 			   xmit_to_rank, | ||||||
| 			   (void *)&recv_buf[0], | 			   (void *)&recv_buf[0], | ||||||
| 			   recv_from_rank, | 			   recv_from_rank, | ||||||
| 			   bytes); | 			   bytes); | ||||||
|  |  | ||||||
|       grid->Barrier(); |       grid->Barrier(); | ||||||
|  |  | ||||||
|       Scatter_plane_simple (ret,recv_buf,dimension,x,cbmask); |       Scatter_plane_simple (ret,recv_buf,dimension,x,cbmask); | ||||||
| @@ -198,15 +195,8 @@ template<class vobj> void  Cshift_comms_simd(Lattice<vobj> &ret,const Lattice<vo | |||||||
|   int buffer_size = grid->_slice_nblock[dimension]*grid->_slice_block[dimension]; |   int buffer_size = grid->_slice_nblock[dimension]*grid->_slice_block[dimension]; | ||||||
|   //  int words = sizeof(vobj)/sizeof(vector_type); |   //  int words = sizeof(vobj)/sizeof(vector_type); | ||||||
|  |  | ||||||
|   static std::vector<cshiftVector<scalar_object> >  send_buf_extract; send_buf_extract.resize(Nsimd); |   std::vector<commVector<scalar_object> >   send_buf_extract(Nsimd,commVector<scalar_object>(buffer_size) ); | ||||||
|   static std::vector<cshiftVector<scalar_object> >  recv_buf_extract; recv_buf_extract.resize(Nsimd); |   std::vector<commVector<scalar_object> >   recv_buf_extract(Nsimd,commVector<scalar_object>(buffer_size) ); | ||||||
|   scalar_object *  recv_buf_extract_mpi; |  | ||||||
|   scalar_object *  send_buf_extract_mpi; |  | ||||||
|   |  | ||||||
|   for(int s=0;s<Nsimd;s++){ |  | ||||||
|     send_buf_extract[s].resize(buffer_size); |  | ||||||
|     recv_buf_extract[s].resize(buffer_size); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   int bytes = buffer_size*sizeof(scalar_object); |   int bytes = buffer_size*sizeof(scalar_object); | ||||||
|  |  | ||||||
| @@ -252,204 +242,11 @@ template<class vobj> void  Cshift_comms_simd(Lattice<vobj> &ret,const Lattice<vo | |||||||
|       if(nbr_proc){ |       if(nbr_proc){ | ||||||
| 	grid->ShiftedRanks(dimension,nbr_proc,xmit_to_rank,recv_from_rank);  | 	grid->ShiftedRanks(dimension,nbr_proc,xmit_to_rank,recv_from_rank);  | ||||||
|  |  | ||||||
| 	grid->Barrier(); | 	grid->SendToRecvFrom((void *)&send_buf_extract[nbr_lane][0], | ||||||
|  |  | ||||||
| 	send_buf_extract_mpi = &send_buf_extract[nbr_lane][0]; |  | ||||||
| 	recv_buf_extract_mpi = &recv_buf_extract[i][0]; |  | ||||||
| 	grid->SendToRecvFrom((void *)send_buf_extract_mpi, |  | ||||||
| 			     xmit_to_rank, | 			     xmit_to_rank, | ||||||
| 			     (void *)recv_buf_extract_mpi, | 			     (void *)&recv_buf_extract[i][0], | ||||||
| 			     recv_from_rank, | 			     recv_from_rank, | ||||||
| 			     bytes); | 			     bytes); | ||||||
|  |  | ||||||
| 	grid->Barrier(); |  | ||||||
|  |  | ||||||
| 	rpointers[i] = &recv_buf_extract[i][0]; |  | ||||||
|       } else {  |  | ||||||
| 	rpointers[i] = &send_buf_extract[nbr_lane][0]; |  | ||||||
|       } |  | ||||||
|  |  | ||||||
|     } |  | ||||||
|     Scatter_plane_merge(ret,rpointers,dimension,x,cbmask); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
| } |  | ||||||
| #else  |  | ||||||
| template<class vobj> void Cshift_comms(Lattice<vobj> &ret,const Lattice<vobj> &rhs,int dimension,int shift,int cbmask) |  | ||||||
| { |  | ||||||
|   typedef typename vobj::vector_type vector_type; |  | ||||||
|   typedef typename vobj::scalar_type scalar_type; |  | ||||||
|  |  | ||||||
|   GridBase *grid=rhs.Grid(); |  | ||||||
|   Lattice<vobj> temp(rhs.Grid()); |  | ||||||
|  |  | ||||||
|   int fd              = rhs.Grid()->_fdimensions[dimension]; |  | ||||||
|   int rd              = rhs.Grid()->_rdimensions[dimension]; |  | ||||||
|   int pd              = rhs.Grid()->_processors[dimension]; |  | ||||||
|   int simd_layout     = rhs.Grid()->_simd_layout[dimension]; |  | ||||||
|   int comm_dim        = rhs.Grid()->_processors[dimension] >1 ; |  | ||||||
|   assert(simd_layout==1); |  | ||||||
|   assert(comm_dim==1); |  | ||||||
|   assert(shift>=0); |  | ||||||
|   assert(shift<fd); |  | ||||||
|    |  | ||||||
|   int buffer_size = rhs.Grid()->_slice_nblock[dimension]*rhs.Grid()->_slice_block[dimension]; |  | ||||||
|   static cshiftVector<vobj> send_buf_v; send_buf_v.resize(buffer_size); |  | ||||||
|   static cshiftVector<vobj> recv_buf_v; recv_buf_v.resize(buffer_size); |  | ||||||
|   vobj *send_buf; |  | ||||||
|   vobj *recv_buf; |  | ||||||
|   { |  | ||||||
|     grid->ShmBufferFreeAll(); |  | ||||||
|     size_t bytes = buffer_size*sizeof(vobj); |  | ||||||
|     send_buf=(vobj *)grid->ShmBufferMalloc(bytes); |  | ||||||
|     recv_buf=(vobj *)grid->ShmBufferMalloc(bytes); |  | ||||||
|   } |  | ||||||
|      |  | ||||||
|   int cb= (cbmask==0x2)? Odd : Even; |  | ||||||
|   int sshift= rhs.Grid()->CheckerBoardShiftForCB(rhs.Checkerboard(),dimension,shift,cb); |  | ||||||
|  |  | ||||||
|   for(int x=0;x<rd;x++){        |  | ||||||
|  |  | ||||||
|     int sx        =  (x+sshift)%rd; |  | ||||||
|     int comm_proc = ((x+sshift)/rd)%pd; |  | ||||||
|      |  | ||||||
|     if (comm_proc==0) { |  | ||||||
|  |  | ||||||
|       Copy_plane(ret,rhs,dimension,x,sx,cbmask);  |  | ||||||
|  |  | ||||||
|     } else { |  | ||||||
|  |  | ||||||
|       int words = buffer_size; |  | ||||||
|       if (cbmask != 0x3) words=words>>1; |  | ||||||
|  |  | ||||||
|       int bytes = words * sizeof(vobj); |  | ||||||
|  |  | ||||||
|       Gather_plane_simple (rhs,send_buf_v,dimension,sx,cbmask); |  | ||||||
|  |  | ||||||
|       //      int rank           = grid->_processor; |  | ||||||
|       int recv_from_rank; |  | ||||||
|       int xmit_to_rank; |  | ||||||
|       grid->ShiftedRanks(dimension,comm_proc,xmit_to_rank,recv_from_rank); |  | ||||||
|  |  | ||||||
|  |  | ||||||
|       grid->Barrier(); |  | ||||||
|  |  | ||||||
|       acceleratorCopyDeviceToDevice((void *)&send_buf_v[0],(void *)&send_buf[0],bytes); |  | ||||||
|       grid->SendToRecvFrom((void *)&send_buf[0], |  | ||||||
| 			   xmit_to_rank, |  | ||||||
| 			   (void *)&recv_buf[0], |  | ||||||
| 			   recv_from_rank, |  | ||||||
| 			   bytes); |  | ||||||
|       acceleratorCopyDeviceToDevice((void *)&recv_buf[0],(void *)&recv_buf_v[0],bytes); |  | ||||||
|  |  | ||||||
|       grid->Barrier(); |  | ||||||
|  |  | ||||||
|       Scatter_plane_simple (ret,recv_buf_v,dimension,x,cbmask); |  | ||||||
|     } |  | ||||||
|   } |  | ||||||
| } |  | ||||||
|  |  | ||||||
| template<class vobj> void  Cshift_comms_simd(Lattice<vobj> &ret,const Lattice<vobj> &rhs,int dimension,int shift,int cbmask) |  | ||||||
| { |  | ||||||
|   GridBase *grid=rhs.Grid(); |  | ||||||
|   const int Nsimd = grid->Nsimd(); |  | ||||||
|   typedef typename vobj::vector_type vector_type; |  | ||||||
|   typedef typename vobj::scalar_object scalar_object; |  | ||||||
|   typedef typename vobj::scalar_type scalar_type; |  | ||||||
|     |  | ||||||
|   int fd = grid->_fdimensions[dimension]; |  | ||||||
|   int rd = grid->_rdimensions[dimension]; |  | ||||||
|   int ld = grid->_ldimensions[dimension]; |  | ||||||
|   int pd = grid->_processors[dimension]; |  | ||||||
|   int simd_layout     = grid->_simd_layout[dimension]; |  | ||||||
|   int comm_dim        = grid->_processors[dimension] >1 ; |  | ||||||
|  |  | ||||||
|   //std::cout << "Cshift_comms_simd dim "<< dimension << " fd "<<fd<<" rd "<<rd |  | ||||||
|   //    << " ld "<<ld<<" pd " << pd<<" simd_layout "<<simd_layout  |  | ||||||
|   //    << " comm_dim " << comm_dim << " cbmask " << cbmask <<std::endl; |  | ||||||
|  |  | ||||||
|   assert(comm_dim==1); |  | ||||||
|   assert(simd_layout==2); |  | ||||||
|   assert(shift>=0); |  | ||||||
|   assert(shift<fd); |  | ||||||
|  |  | ||||||
|   int permute_type=grid->PermuteType(dimension); |  | ||||||
|  |  | ||||||
|   /////////////////////////////////////////////// |  | ||||||
|   // Simd direction uses an extract/merge pair |  | ||||||
|   /////////////////////////////////////////////// |  | ||||||
|   int buffer_size = grid->_slice_nblock[dimension]*grid->_slice_block[dimension]; |  | ||||||
|   //  int words = sizeof(vobj)/sizeof(vector_type); |  | ||||||
|  |  | ||||||
|   static std::vector<cshiftVector<scalar_object> >  send_buf_extract; send_buf_extract.resize(Nsimd); |  | ||||||
|   static std::vector<cshiftVector<scalar_object> >  recv_buf_extract; recv_buf_extract.resize(Nsimd); |  | ||||||
|   scalar_object *  recv_buf_extract_mpi; |  | ||||||
|   scalar_object *  send_buf_extract_mpi; |  | ||||||
|   { |  | ||||||
|     size_t bytes = sizeof(scalar_object)*buffer_size; |  | ||||||
|     grid->ShmBufferFreeAll(); |  | ||||||
|     send_buf_extract_mpi = (scalar_object *)grid->ShmBufferMalloc(bytes); |  | ||||||
|     recv_buf_extract_mpi = (scalar_object *)grid->ShmBufferMalloc(bytes); |  | ||||||
|   } |  | ||||||
|   for(int s=0;s<Nsimd;s++){ |  | ||||||
|     send_buf_extract[s].resize(buffer_size); |  | ||||||
|     recv_buf_extract[s].resize(buffer_size); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   int bytes = buffer_size*sizeof(scalar_object); |  | ||||||
|  |  | ||||||
|   ExtractPointerArray<scalar_object>  pointers(Nsimd); //  |  | ||||||
|   ExtractPointerArray<scalar_object> rpointers(Nsimd); // received pointers |  | ||||||
|  |  | ||||||
|   /////////////////////////////////////////// |  | ||||||
|   // Work out what to send where |  | ||||||
|   /////////////////////////////////////////// |  | ||||||
|   int cb    = (cbmask==0x2)? Odd : Even; |  | ||||||
|   int sshift= grid->CheckerBoardShiftForCB(rhs.Checkerboard(),dimension,shift,cb); |  | ||||||
|  |  | ||||||
|   // loop over outer coord planes orthog to dim |  | ||||||
|   for(int x=0;x<rd;x++){        |  | ||||||
|  |  | ||||||
|     // FIXME call local permute copy if none are offnode. |  | ||||||
|     for(int i=0;i<Nsimd;i++){        |  | ||||||
|       pointers[i] = &send_buf_extract[i][0]; |  | ||||||
|     } |  | ||||||
|     int sx   = (x+sshift)%rd; |  | ||||||
|     Gather_plane_extract(rhs,pointers,dimension,sx,cbmask); |  | ||||||
|  |  | ||||||
|     for(int i=0;i<Nsimd;i++){ |  | ||||||
|        |  | ||||||
|       int inner_bit = (Nsimd>>(permute_type+1)); |  | ||||||
|       int ic= (i&inner_bit)? 1:0; |  | ||||||
|  |  | ||||||
|       int my_coor          = rd*ic + x; |  | ||||||
|       int nbr_coor         = my_coor+sshift; |  | ||||||
|       int nbr_proc = ((nbr_coor)/ld) % pd;// relative shift in processors |  | ||||||
|  |  | ||||||
|       int nbr_ic   = (nbr_coor%ld)/rd;    // inner coord of peer |  | ||||||
|       int nbr_ox   = (nbr_coor%rd);       // outer coord of peer |  | ||||||
|       int nbr_lane = (i&(~inner_bit)); |  | ||||||
|  |  | ||||||
|       int recv_from_rank; |  | ||||||
|       int xmit_to_rank; |  | ||||||
|  |  | ||||||
|       if (nbr_ic) nbr_lane|=inner_bit; |  | ||||||
|  |  | ||||||
|       assert (sx == nbr_ox); |  | ||||||
|  |  | ||||||
|       if(nbr_proc){ |  | ||||||
| 	grid->ShiftedRanks(dimension,nbr_proc,xmit_to_rank,recv_from_rank);  |  | ||||||
|  |  | ||||||
| 	grid->Barrier(); |  | ||||||
|  |  | ||||||
| 	acceleratorCopyDeviceToDevice((void *)&send_buf_extract[nbr_lane][0],(void *)send_buf_extract_mpi,bytes); |  | ||||||
| 	grid->SendToRecvFrom((void *)send_buf_extract_mpi, |  | ||||||
| 			     xmit_to_rank, |  | ||||||
| 			     (void *)recv_buf_extract_mpi, |  | ||||||
| 			     recv_from_rank, |  | ||||||
| 			     bytes); |  | ||||||
| 	acceleratorCopyDeviceToDevice((void *)recv_buf_extract_mpi,(void *)&recv_buf_extract[i][0],bytes); |  | ||||||
|  |  | ||||||
| 	grid->Barrier(); | 	grid->Barrier(); | ||||||
| 	rpointers[i] = &recv_buf_extract[i][0]; | 	rpointers[i] = &recv_buf_extract[i][0]; | ||||||
|       } else {  |       } else {  | ||||||
| @@ -461,7 +258,7 @@ template<class vobj> void  Cshift_comms_simd(Lattice<vobj> &ret,const Lattice<vo | |||||||
|   } |   } | ||||||
|  |  | ||||||
| } | } | ||||||
| #endif |  | ||||||
| NAMESPACE_END(Grid);  | NAMESPACE_END(Grid);  | ||||||
|  |  | ||||||
| #endif | #endif | ||||||
|   | |||||||
| @@ -1,4 +0,0 @@ | |||||||
| #include <Grid/GridCore.h>        |  | ||||||
| NAMESPACE_BEGIN(Grid); |  | ||||||
| Vector<std::pair<int,int> > Cshift_table;  |  | ||||||
| NAMESPACE_END(Grid); |  | ||||||
| @@ -26,7 +26,6 @@ Author: Peter Boyle <paboyle@ph.ed.ac.uk> | |||||||
|     *************************************************************************************/ |     *************************************************************************************/ | ||||||
|     /*  END LEGAL */ |     /*  END LEGAL */ | ||||||
| #pragma once | #pragma once | ||||||
| #include <Grid/lattice/Lattice_view.h> |  | ||||||
| #include <Grid/lattice/Lattice_base.h> | #include <Grid/lattice/Lattice_base.h> | ||||||
| #include <Grid/lattice/Lattice_conformable.h> | #include <Grid/lattice/Lattice_conformable.h> | ||||||
| #include <Grid/lattice/Lattice_ET.h> | #include <Grid/lattice/Lattice_ET.h> | ||||||
| @@ -36,8 +35,7 @@ Author: Peter Boyle <paboyle@ph.ed.ac.uk> | |||||||
| #include <Grid/lattice/Lattice_local.h> | #include <Grid/lattice/Lattice_local.h> | ||||||
| #include <Grid/lattice/Lattice_reduction.h> | #include <Grid/lattice/Lattice_reduction.h> | ||||||
| #include <Grid/lattice/Lattice_peekpoke.h> | #include <Grid/lattice/Lattice_peekpoke.h> | ||||||
| #include <Grid/lattice/Lattice_reality.h> | //#include <Grid/lattice/Lattice_reality.h> | ||||||
| #include <Grid/lattice/Lattice_real_imag.h> |  | ||||||
| #include <Grid/lattice/Lattice_comparison_utils.h> | #include <Grid/lattice/Lattice_comparison_utils.h> | ||||||
| #include <Grid/lattice/Lattice_comparison.h> | #include <Grid/lattice/Lattice_comparison.h> | ||||||
| #include <Grid/lattice/Lattice_coordinate.h> | #include <Grid/lattice/Lattice_coordinate.h> | ||||||
|   | |||||||
| @@ -42,24 +42,9 @@ NAMESPACE_BEGIN(Grid); | |||||||
| //////////////////////////////////////////////////// | //////////////////////////////////////////////////// | ||||||
| // Predicated where support | // Predicated where support | ||||||
| //////////////////////////////////////////////////// | //////////////////////////////////////////////////// | ||||||
| #ifdef GRID_SIMT |  | ||||||
| // drop to scalar in SIMT; cleaner in fact |  | ||||||
| template <class iobj, class vobj, class robj> | template <class iobj, class vobj, class robj> | ||||||
| accelerator_inline vobj predicatedWhere(const iobj &predicate,  | accelerator_inline vobj predicatedWhere(const iobj &predicate, const vobj &iftrue, | ||||||
| 					const vobj &iftrue,  |                             const robj &iffalse) { | ||||||
| 					const robj &iffalse)  |  | ||||||
| { |  | ||||||
|   Integer mask = TensorRemove(predicate); |  | ||||||
|   typename std::remove_const<vobj>::type ret= iffalse; |  | ||||||
|   if (mask) ret=iftrue; |  | ||||||
|   return ret; |  | ||||||
| } |  | ||||||
| #else |  | ||||||
| template <class iobj, class vobj, class robj> |  | ||||||
| accelerator_inline vobj predicatedWhere(const iobj &predicate,  |  | ||||||
| 					const vobj &iftrue,  |  | ||||||
| 					const robj &iffalse)  |  | ||||||
| { |  | ||||||
|   typename std::remove_const<vobj>::type ret; |   typename std::remove_const<vobj>::type ret; | ||||||
|  |  | ||||||
|   typedef typename vobj::scalar_object scalar_object; |   typedef typename vobj::scalar_object scalar_object; | ||||||
| @@ -83,7 +68,6 @@ accelerator_inline vobj predicatedWhere(const iobj &predicate, | |||||||
|   merge(ret, falsevals); |   merge(ret, falsevals); | ||||||
|   return ret; |   return ret; | ||||||
| } | } | ||||||
| #endif |  | ||||||
|  |  | ||||||
| ///////////////////////////////////////////////////// | ///////////////////////////////////////////////////// | ||||||
| //Specialization of getVectorType for lattices | //Specialization of getVectorType for lattices | ||||||
| @@ -97,62 +81,26 @@ struct getVectorType<Lattice<T> >{ | |||||||
| //--  recursive evaluation of expressions; -- | //--  recursive evaluation of expressions; -- | ||||||
| // handle leaves of syntax tree | // handle leaves of syntax tree | ||||||
| /////////////////////////////////////////////////// | /////////////////////////////////////////////////// | ||||||
| template<class sobj, | template<class sobj> accelerator_inline  | ||||||
|   typename std::enable_if<!is_lattice<sobj>::value&&!is_lattice_expr<sobj>::value,sobj>::type * = nullptr>  |  | ||||||
| accelerator_inline  |  | ||||||
| sobj eval(const uint64_t ss, const sobj &arg) | sobj eval(const uint64_t ss, const sobj &arg) | ||||||
| { | { | ||||||
|   return arg; |   return arg; | ||||||
| } | } | ||||||
| template <class lobj> accelerator_inline  |  | ||||||
| auto eval(const uint64_t ss, const LatticeView<lobj> &arg) -> decltype(arg(ss)) |  | ||||||
| { |  | ||||||
|   return arg(ss); |  | ||||||
| } |  | ||||||
|  |  | ||||||
| //////////////////////////////////////////// |  | ||||||
| //--  recursive evaluation of expressions; -- |  | ||||||
| // whole vector return, used only for expression return type inference |  | ||||||
| /////////////////////////////////////////////////// |  | ||||||
| template<class sobj> accelerator_inline  |  | ||||||
| sobj vecEval(const uint64_t ss, const sobj &arg) |  | ||||||
| { |  | ||||||
|   return arg; |  | ||||||
| } |  | ||||||
| template <class lobj> accelerator_inline  | template <class lobj> accelerator_inline  | ||||||
| const lobj & vecEval(const uint64_t ss, const LatticeView<lobj> &arg)  | const lobj & eval(const uint64_t ss, const LatticeView<lobj> &arg)  | ||||||
| { | { | ||||||
|   return arg[ss]; |   return arg[ss]; | ||||||
| } | } | ||||||
|  | template <class lobj> accelerator_inline  | ||||||
|  | const lobj & eval(const uint64_t ss, const Lattice<lobj> &arg)  | ||||||
|  | { | ||||||
|  |   auto view = arg.AcceleratorView(ViewRead); | ||||||
|  |   return view[ss]; | ||||||
|  | } | ||||||
|  |  | ||||||
| /////////////////////////////////////////////////// | /////////////////////////////////////////////////// | ||||||
| // handle nodes in syntax tree- eval one operand | // handle nodes in syntax tree- eval one operand | ||||||
| // vecEval needed (but never called as all expressions offloaded) to infer the return type |  | ||||||
| // in SIMT contexts of closure. |  | ||||||
| /////////////////////////////////////////////////// |  | ||||||
| template <typename Op, typename T1> accelerator_inline  |  | ||||||
| auto vecEval(const uint64_t ss, const LatticeUnaryExpression<Op, T1> &expr)   |  | ||||||
|   -> decltype(expr.op.func( vecEval(ss, expr.arg1))) |  | ||||||
| { |  | ||||||
|   return expr.op.func( vecEval(ss, expr.arg1) ); |  | ||||||
| } |  | ||||||
| // vecEval two operands |  | ||||||
| template <typename Op, typename T1, typename T2> accelerator_inline |  | ||||||
| auto vecEval(const uint64_t ss, const LatticeBinaryExpression<Op, T1, T2> &expr)   |  | ||||||
|   -> decltype(expr.op.func( vecEval(ss,expr.arg1),vecEval(ss,expr.arg2))) |  | ||||||
| { |  | ||||||
|   return expr.op.func( vecEval(ss,expr.arg1), vecEval(ss,expr.arg2) ); |  | ||||||
| } |  | ||||||
| // vecEval three operands |  | ||||||
| template <typename Op, typename T1, typename T2, typename T3> accelerator_inline |  | ||||||
| auto vecEval(const uint64_t ss, const LatticeTrinaryExpression<Op, T1, T2, T3> &expr)   |  | ||||||
|   -> decltype(expr.op.func(vecEval(ss, expr.arg1), vecEval(ss, expr.arg2), vecEval(ss, expr.arg3))) |  | ||||||
| { |  | ||||||
|   return expr.op.func(vecEval(ss, expr.arg1), vecEval(ss, expr.arg2), vecEval(ss, expr.arg3)); |  | ||||||
| } |  | ||||||
|  |  | ||||||
| /////////////////////////////////////////////////// |  | ||||||
| // handle nodes in syntax tree- eval one operand coalesced |  | ||||||
| /////////////////////////////////////////////////// | /////////////////////////////////////////////////// | ||||||
| template <typename Op, typename T1> accelerator_inline  | template <typename Op, typename T1> accelerator_inline  | ||||||
| auto eval(const uint64_t ss, const LatticeUnaryExpression<Op, T1> &expr)   | auto eval(const uint64_t ss, const LatticeUnaryExpression<Op, T1> &expr)   | ||||||
| @@ -160,41 +108,23 @@ auto eval(const uint64_t ss, const LatticeUnaryExpression<Op, T1> &expr) | |||||||
| { | { | ||||||
|   return expr.op.func( eval(ss, expr.arg1) ); |   return expr.op.func( eval(ss, expr.arg1) ); | ||||||
| } | } | ||||||
|  | /////////////////////// | ||||||
| // eval two operands | // eval two operands | ||||||
|  | /////////////////////// | ||||||
| template <typename Op, typename T1, typename T2> accelerator_inline | template <typename Op, typename T1, typename T2> accelerator_inline | ||||||
| auto eval(const uint64_t ss, const LatticeBinaryExpression<Op, T1, T2> &expr)   | auto eval(const uint64_t ss, const LatticeBinaryExpression<Op, T1, T2> &expr)   | ||||||
|   -> decltype(expr.op.func( eval(ss,expr.arg1),eval(ss,expr.arg2))) |   -> decltype(expr.op.func( eval(ss,expr.arg1),eval(ss,expr.arg2))) | ||||||
| { | { | ||||||
|   return expr.op.func( eval(ss,expr.arg1), eval(ss,expr.arg2) ); |   return expr.op.func( eval(ss,expr.arg1), eval(ss,expr.arg2) ); | ||||||
| } | } | ||||||
|  | /////////////////////// | ||||||
| // eval three operands | // eval three operands | ||||||
|  | /////////////////////// | ||||||
| template <typename Op, typename T1, typename T2, typename T3> accelerator_inline | template <typename Op, typename T1, typename T2, typename T3> accelerator_inline | ||||||
| auto eval(const uint64_t ss, const LatticeTrinaryExpression<Op, T1, T2, T3> &expr)   | auto eval(const uint64_t ss, const LatticeTrinaryExpression<Op, T1, T2, T3> &expr)   | ||||||
|   -> decltype(expr.op.func(eval(ss, expr.arg1),  |   -> decltype(expr.op.func(eval(ss, expr.arg1), eval(ss, expr.arg2), eval(ss, expr.arg3))) | ||||||
| 			   eval(ss, expr.arg2),  |  | ||||||
| 			   eval(ss, expr.arg3))) |  | ||||||
| { | { | ||||||
| #ifdef GRID_SIMT |   return expr.op.func(eval(ss, expr.arg1), eval(ss, expr.arg2), eval(ss, expr.arg3)); | ||||||
|   // Handles Nsimd (vInteger) != Nsimd(ComplexD) |  | ||||||
|   typedef decltype(vecEval(ss, expr.arg2)) rvobj; |  | ||||||
|   typedef typename std::remove_reference<rvobj>::type vobj; |  | ||||||
|  |  | ||||||
|   const int Nsimd = vobj::vector_type::Nsimd(); |  | ||||||
|  |  | ||||||
|   auto vpred = vecEval(ss,expr.arg1); |  | ||||||
|  |  | ||||||
|   ExtractBuffer<Integer> mask(Nsimd); |  | ||||||
|   extract<vInteger, Integer>(TensorRemove(vpred), mask); |  | ||||||
|  |  | ||||||
|   int s = acceleratorSIMTlane(Nsimd); |  | ||||||
|   return expr.op.func(mask[s], |  | ||||||
| 		      eval(ss, expr.arg2),  |  | ||||||
| 		      eval(ss, expr.arg3)); |  | ||||||
| #else |  | ||||||
|   return expr.op.func(eval(ss, expr.arg1), |  | ||||||
| 		      eval(ss, expr.arg2),  |  | ||||||
| 		      eval(ss, expr.arg3)); |  | ||||||
| #endif |  | ||||||
| } | } | ||||||
|  |  | ||||||
| ////////////////////////////////////////////////////////////////////////// | ////////////////////////////////////////////////////////////////////////// | ||||||
| @@ -250,12 +180,16 @@ inline void CBFromExpression(int &cb, const T1 &lat)  // Lattice leaf | |||||||
|   cb = lat.Checkerboard(); |   cb = lat.Checkerboard(); | ||||||
| } | } | ||||||
| template <class T1,typename std::enable_if<!is_lattice<T1>::value, T1>::type * = nullptr> | template <class T1,typename std::enable_if<!is_lattice<T1>::value, T1>::type * = nullptr> | ||||||
| inline void CBFromExpression(int &cb, const T1 ¬lat) {} // non-lattice leaf | inline void CBFromExpression(int &cb, const T1 ¬lat)  // non-lattice leaf | ||||||
|  | { | ||||||
|  | } | ||||||
|  |  | ||||||
| template <typename Op, typename T1> inline  | template <typename Op, typename T1> inline  | ||||||
| void CBFromExpression(int &cb,const LatticeUnaryExpression<Op, T1> &expr)  | void CBFromExpression(int &cb,const LatticeUnaryExpression<Op, T1> &expr)  | ||||||
| { | { | ||||||
|   CBFromExpression(cb, expr.arg1);  // recurse AST |   CBFromExpression(cb, expr.arg1);  // recurse AST | ||||||
| } | } | ||||||
|  |  | ||||||
| template <typename Op, typename T1, typename T2> inline  | template <typename Op, typename T1, typename T2> inline  | ||||||
| void CBFromExpression(int &cb,const LatticeBinaryExpression<Op, T1, T2> &expr)  | void CBFromExpression(int &cb,const LatticeBinaryExpression<Op, T1, T2> &expr)  | ||||||
| { | { | ||||||
| @@ -270,86 +204,32 @@ inline void CBFromExpression(int &cb, const LatticeTrinaryExpression<Op, T1, T2, | |||||||
|   CBFromExpression(cb, expr.arg3);  // recurse AST |   CBFromExpression(cb, expr.arg3);  // recurse AST | ||||||
| } | } | ||||||
|  |  | ||||||
|  |  | ||||||
| ////////////////////////////////////////////////////////////////////////// |  | ||||||
| // ViewOpen |  | ||||||
| ////////////////////////////////////////////////////////////////////////// |  | ||||||
| template <class T1,typename std::enable_if<is_lattice<T1>::value, T1>::type * = nullptr> |  | ||||||
| inline void ExpressionViewOpen(T1 &lat)  // Lattice leaf |  | ||||||
| { |  | ||||||
|   lat.ViewOpen(AcceleratorRead); |  | ||||||
| } |  | ||||||
| template <class T1,typename std::enable_if<!is_lattice<T1>::value, T1>::type * = nullptr> |  | ||||||
|   inline void ExpressionViewOpen(T1 ¬lat) {} |  | ||||||
|  |  | ||||||
| template <typename Op, typename T1> inline  |  | ||||||
| void ExpressionViewOpen(LatticeUnaryExpression<Op, T1> &expr)  |  | ||||||
| {   |  | ||||||
|   ExpressionViewOpen(expr.arg1); // recurse AST |  | ||||||
| } |  | ||||||
|  |  | ||||||
| template <typename Op, typename T1, typename T2> inline  |  | ||||||
| void ExpressionViewOpen(LatticeBinaryExpression<Op, T1, T2> &expr)  |  | ||||||
| { |  | ||||||
|   ExpressionViewOpen(expr.arg1);  // recurse AST |  | ||||||
|   ExpressionViewOpen(expr.arg2);  // rrecurse AST |  | ||||||
| } |  | ||||||
| template <typename Op, typename T1, typename T2, typename T3> |  | ||||||
| inline void ExpressionViewOpen(LatticeTrinaryExpression<Op, T1, T2, T3> &expr)  |  | ||||||
| { |  | ||||||
|   ExpressionViewOpen(expr.arg1);  // recurse AST |  | ||||||
|   ExpressionViewOpen(expr.arg2);  // recurse AST |  | ||||||
|   ExpressionViewOpen(expr.arg3);  // recurse AST |  | ||||||
| } |  | ||||||
|  |  | ||||||
| ////////////////////////////////////////////////////////////////////////// |  | ||||||
| // ViewClose |  | ||||||
| ////////////////////////////////////////////////////////////////////////// |  | ||||||
| template <class T1,typename std::enable_if<is_lattice<T1>::value, T1>::type * = nullptr> |  | ||||||
| inline void ExpressionViewClose( T1 &lat)  // Lattice leaf |  | ||||||
| { |  | ||||||
|   lat.ViewClose(); |  | ||||||
| } |  | ||||||
| template <class T1,typename std::enable_if<!is_lattice<T1>::value, T1>::type * = nullptr> |  | ||||||
| inline void ExpressionViewClose(T1 ¬lat) {} |  | ||||||
|  |  | ||||||
| template <typename Op, typename T1> inline  |  | ||||||
| void ExpressionViewClose(LatticeUnaryExpression<Op, T1> &expr)  |  | ||||||
| {   |  | ||||||
|   ExpressionViewClose(expr.arg1); // recurse AST |  | ||||||
| } |  | ||||||
| template <typename Op, typename T1, typename T2> inline  |  | ||||||
| void ExpressionViewClose(LatticeBinaryExpression<Op, T1, T2> &expr)  |  | ||||||
| { |  | ||||||
|   ExpressionViewClose(expr.arg1);  // recurse AST |  | ||||||
|   ExpressionViewClose(expr.arg2);  // recurse AST |  | ||||||
| } |  | ||||||
| template <typename Op, typename T1, typename T2, typename T3> |  | ||||||
| inline void ExpressionViewClose(LatticeTrinaryExpression<Op, T1, T2, T3> &expr)  |  | ||||||
| { |  | ||||||
|   ExpressionViewClose(expr.arg1);  // recurse AST |  | ||||||
|   ExpressionViewClose(expr.arg2);  // recurse AST |  | ||||||
|   ExpressionViewClose(expr.arg3);  // recurse AST |  | ||||||
| } |  | ||||||
|  |  | ||||||
| //////////////////////////////////////////// | //////////////////////////////////////////// | ||||||
| // Unary operators and funcs | // Unary operators and funcs | ||||||
| //////////////////////////////////////////// | //////////////////////////////////////////// | ||||||
| #define GridUnopClass(name, ret)					\ | #define GridUnopClass(name, ret)					\ | ||||||
|  |   template <class arg>							\ | ||||||
|   struct name {								\ |   struct name {								\ | ||||||
|     template<class _arg> static auto accelerator_inline func(const _arg a) -> decltype(ret) { return ret; } \ |     static auto accelerator_inline func(const arg a) -> decltype(ret) { return ret; } \ | ||||||
|   }; |   }; | ||||||
|  |  | ||||||
| GridUnopClass(UnarySub, -a); | GridUnopClass(UnarySub, -a); | ||||||
| GridUnopClass(UnaryNot, Not(a)); | GridUnopClass(UnaryNot, Not(a)); | ||||||
|  | GridUnopClass(UnaryAdj, adj(a)); | ||||||
|  | GridUnopClass(UnaryConj, conjugate(a)); | ||||||
| GridUnopClass(UnaryTrace, trace(a)); | GridUnopClass(UnaryTrace, trace(a)); | ||||||
| GridUnopClass(UnaryTranspose, transpose(a)); | GridUnopClass(UnaryTranspose, transpose(a)); | ||||||
| GridUnopClass(UnaryTa, Ta(a)); | GridUnopClass(UnaryTa, Ta(a)); | ||||||
| GridUnopClass(UnaryProjectOnGroup, ProjectOnGroup(a)); | GridUnopClass(UnaryProjectOnGroup, ProjectOnGroup(a)); | ||||||
|  | GridUnopClass(UnaryReal, real(a)); | ||||||
|  | GridUnopClass(UnaryImag, imag(a)); | ||||||
|  | GridUnopClass(UnaryToReal, toReal(a)); | ||||||
|  | GridUnopClass(UnaryToComplex, toComplex(a)); | ||||||
| GridUnopClass(UnaryTimesI, timesI(a)); | GridUnopClass(UnaryTimesI, timesI(a)); | ||||||
| GridUnopClass(UnaryTimesMinusI, timesMinusI(a)); | GridUnopClass(UnaryTimesMinusI, timesMinusI(a)); | ||||||
| GridUnopClass(UnaryAbs, abs(a)); | GridUnopClass(UnaryAbs, abs(a)); | ||||||
| GridUnopClass(UnarySqrt, sqrt(a)); | GridUnopClass(UnarySqrt, sqrt(a)); | ||||||
|  | GridUnopClass(UnaryRsqrt, rsqrt(a)); | ||||||
| GridUnopClass(UnarySin, sin(a)); | GridUnopClass(UnarySin, sin(a)); | ||||||
| GridUnopClass(UnaryCos, cos(a)); | GridUnopClass(UnaryCos, cos(a)); | ||||||
| GridUnopClass(UnaryAsin, asin(a)); | GridUnopClass(UnaryAsin, asin(a)); | ||||||
| @@ -361,10 +241,10 @@ GridUnopClass(UnaryExp, exp(a)); | |||||||
| // Binary operators | // Binary operators | ||||||
| //////////////////////////////////////////// | //////////////////////////////////////////// | ||||||
| #define GridBinOpClass(name, combination)			\ | #define GridBinOpClass(name, combination)			\ | ||||||
|  |   template <class left, class right>				\ | ||||||
|   struct name {							\ |   struct name {							\ | ||||||
|     template <class _left, class _right>			\ |  | ||||||
|     static auto accelerator_inline				\ |     static auto accelerator_inline				\ | ||||||
|     func(const _left &lhs, const _right &rhs)			\ |     func(const left &lhs, const right &rhs)			\ | ||||||
|       -> decltype(combination) const				\ |       -> decltype(combination) const				\ | ||||||
|     {								\ |     {								\ | ||||||
|       return combination;					\ |       return combination;					\ | ||||||
| @@ -384,10 +264,10 @@ GridBinOpClass(BinaryOrOr, lhs || rhs); | |||||||
| // Trinary conditional op | // Trinary conditional op | ||||||
| //////////////////////////////////////////////////// | //////////////////////////////////////////////////// | ||||||
| #define GridTrinOpClass(name, combination)				\ | #define GridTrinOpClass(name, combination)				\ | ||||||
|  |   template <class predicate, class left, class right>			\ | ||||||
|   struct name {								\ |   struct name {								\ | ||||||
|     template <class _predicate,class _left, class _right>		\ |  | ||||||
|     static auto accelerator_inline					\ |     static auto accelerator_inline					\ | ||||||
|     func(const _predicate &pred, const _left &lhs, const _right &rhs)	\ |     func(const predicate &pred, const left &lhs, const right &rhs)	\ | ||||||
|       -> decltype(combination) const					\ |       -> decltype(combination) const					\ | ||||||
|     {									\ |     {									\ | ||||||
|       return combination;						\ |       return combination;						\ | ||||||
| @@ -395,17 +275,17 @@ GridBinOpClass(BinaryOrOr, lhs || rhs); | |||||||
|   }; |   }; | ||||||
|  |  | ||||||
| GridTrinOpClass(TrinaryWhere, | GridTrinOpClass(TrinaryWhere, | ||||||
| 		(predicatedWhere< | 		(predicatedWhere<predicate,  | ||||||
| 		 typename std::remove_reference<_predicate>::type,  | 		 typename std::remove_reference<left>::type, | ||||||
| 		 typename std::remove_reference<_left>::type, | 		 typename std::remove_reference<right>::type>(pred, lhs,rhs))); | ||||||
| 		 typename std::remove_reference<_right>::type>(pred, lhs,rhs))); |  | ||||||
|  |  | ||||||
| //////////////////////////////////////////// | //////////////////////////////////////////// | ||||||
| // Operator syntactical glue | // Operator syntactical glue | ||||||
| //////////////////////////////////////////// | //////////////////////////////////////////// | ||||||
| #define GRID_UNOP(name)   name |  | ||||||
| #define GRID_BINOP(name)  name | #define GRID_UNOP(name)   name<decltype(eval(0, arg))> | ||||||
| #define GRID_TRINOP(name) name | #define GRID_BINOP(name)  name<decltype(eval(0, lhs)), decltype(eval(0, rhs))> | ||||||
|  | #define GRID_TRINOP(name) name<decltype(eval(0, pred)), decltype(eval(0, lhs)), decltype(eval(0, rhs))> | ||||||
|  |  | ||||||
| #define GRID_DEF_UNOP(op, name)						\ | #define GRID_DEF_UNOP(op, name)						\ | ||||||
|   template <typename T1, typename std::enable_if<is_lattice<T1>::value||is_lattice_expr<T1>::value,T1>::type * = nullptr> \ |   template <typename T1, typename std::enable_if<is_lattice<T1>::value||is_lattice_expr<T1>::value,T1>::type * = nullptr> \ | ||||||
| @@ -451,17 +331,22 @@ GridTrinOpClass(TrinaryWhere, | |||||||
| GRID_DEF_UNOP(operator-, UnarySub); | GRID_DEF_UNOP(operator-, UnarySub); | ||||||
| GRID_DEF_UNOP(Not, UnaryNot); | GRID_DEF_UNOP(Not, UnaryNot); | ||||||
| GRID_DEF_UNOP(operator!, UnaryNot); | GRID_DEF_UNOP(operator!, UnaryNot); | ||||||
| //GRID_DEF_UNOP(adj, UnaryAdj); | GRID_DEF_UNOP(adj, UnaryAdj); | ||||||
| //GRID_DEF_UNOP(conjugate, UnaryConj); | GRID_DEF_UNOP(conjugate, UnaryConj); | ||||||
| GRID_DEF_UNOP(trace, UnaryTrace); | GRID_DEF_UNOP(trace, UnaryTrace); | ||||||
| GRID_DEF_UNOP(transpose, UnaryTranspose); | GRID_DEF_UNOP(transpose, UnaryTranspose); | ||||||
| GRID_DEF_UNOP(Ta, UnaryTa); | GRID_DEF_UNOP(Ta, UnaryTa); | ||||||
| GRID_DEF_UNOP(ProjectOnGroup, UnaryProjectOnGroup); | GRID_DEF_UNOP(ProjectOnGroup, UnaryProjectOnGroup); | ||||||
|  | GRID_DEF_UNOP(real, UnaryReal); | ||||||
|  | GRID_DEF_UNOP(imag, UnaryImag); | ||||||
|  | GRID_DEF_UNOP(toReal, UnaryToReal); | ||||||
|  | GRID_DEF_UNOP(toComplex, UnaryToComplex); | ||||||
| GRID_DEF_UNOP(timesI, UnaryTimesI); | GRID_DEF_UNOP(timesI, UnaryTimesI); | ||||||
| GRID_DEF_UNOP(timesMinusI, UnaryTimesMinusI); | GRID_DEF_UNOP(timesMinusI, UnaryTimesMinusI); | ||||||
| GRID_DEF_UNOP(abs, UnaryAbs);  // abs overloaded in cmath C++98; DON'T do the | GRID_DEF_UNOP(abs, UnaryAbs);  // abs overloaded in cmath C++98; DON'T do the | ||||||
|                                // abs-fabs-dabs-labs thing |                                // abs-fabs-dabs-labs thing | ||||||
| GRID_DEF_UNOP(sqrt, UnarySqrt); | GRID_DEF_UNOP(sqrt, UnarySqrt); | ||||||
|  | GRID_DEF_UNOP(rsqrt, UnaryRsqrt); | ||||||
| GRID_DEF_UNOP(sin, UnarySin); | GRID_DEF_UNOP(sin, UnarySin); | ||||||
| GRID_DEF_UNOP(cos, UnaryCos); | GRID_DEF_UNOP(cos, UnaryCos); | ||||||
| GRID_DEF_UNOP(asin, UnaryAsin); | GRID_DEF_UNOP(asin, UnaryAsin); | ||||||
| @@ -486,36 +371,29 @@ GRID_DEF_TRINOP(where, TrinaryWhere); | |||||||
| ///////////////////////////////////////////////////////////// | ///////////////////////////////////////////////////////////// | ||||||
| template <class Op, class T1> | template <class Op, class T1> | ||||||
| auto closure(const LatticeUnaryExpression<Op, T1> &expr) | auto closure(const LatticeUnaryExpression<Op, T1> &expr) | ||||||
|   -> Lattice<typename std::remove_const<decltype(expr.op.func(vecEval(0, expr.arg1)))>::type >  |   -> Lattice<decltype(expr.op.func(eval(0, expr.arg1)))>  | ||||||
| { | { | ||||||
|   Lattice<typename std::remove_const<decltype(expr.op.func(vecEval(0, expr.arg1)))>::type > ret(expr); |   Lattice<decltype(expr.op.func(eval(0, expr.arg1)))> ret(expr); | ||||||
|   return ret; |   return ret; | ||||||
| } | } | ||||||
| template <class Op, class T1, class T2> | template <class Op, class T1, class T2> | ||||||
| auto closure(const LatticeBinaryExpression<Op, T1, T2> &expr) | auto closure(const LatticeBinaryExpression<Op, T1, T2> &expr) | ||||||
|   -> Lattice<typename std::remove_const<decltype(expr.op.func(vecEval(0, expr.arg1),vecEval(0, expr.arg2)))>::type > |   -> Lattice<decltype(expr.op.func(eval(0, expr.arg1),eval(0, expr.arg2)))>  | ||||||
| { | { | ||||||
|   Lattice<typename std::remove_const<decltype(expr.op.func(vecEval(0, expr.arg1),vecEval(0, expr.arg2)))>::type > ret(expr); |   Lattice<decltype(expr.op.func(eval(0, expr.arg1),eval(0, expr.arg2)))> ret(expr); | ||||||
|   return ret; |   return ret; | ||||||
| } | } | ||||||
| template <class Op, class T1, class T2, class T3> | template <class Op, class T1, class T2, class T3> | ||||||
| auto closure(const LatticeTrinaryExpression<Op, T1, T2, T3> &expr) | auto closure(const LatticeTrinaryExpression<Op, T1, T2, T3> &expr) | ||||||
|   -> Lattice<typename std::remove_const<decltype(expr.op.func(vecEval(0, expr.arg1), |   -> Lattice<decltype(expr.op.func(eval(0, expr.arg1), | ||||||
| 				   vecEval(0, expr.arg2), | 				   eval(0, expr.arg2), | ||||||
| 				   vecEval(0, expr.arg3)))>::type > | 				   eval(0, expr.arg3)))>  | ||||||
| { | { | ||||||
|   Lattice<typename std::remove_const<decltype(expr.op.func(vecEval(0, expr.arg1), |   Lattice<decltype(expr.op.func(eval(0, expr.arg1), | ||||||
| 				vecEval(0, expr.arg2), | 				eval(0, expr.arg2), | ||||||
| 			        vecEval(0, expr.arg3)))>::type >  ret(expr); | 				eval(0, expr.arg3)))>  ret(expr); | ||||||
|   return ret; |   return ret; | ||||||
| } | } | ||||||
| #define EXPRESSION_CLOSURE(function)					\ |  | ||||||
|   template<class Expression,typename std::enable_if<is_lattice_expr<Expression>::value,void>::type * = nullptr> \ |  | ||||||
|     auto function(Expression &expr) -> decltype(function(closure(expr))) \ |  | ||||||
|   {									\ |  | ||||||
|     return function(closure(expr));					\ |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|  |  | ||||||
| #undef GRID_UNOP | #undef GRID_UNOP | ||||||
| #undef GRID_BINOP | #undef GRID_BINOP | ||||||
|   | |||||||
| @@ -37,9 +37,9 @@ NAMESPACE_BEGIN(Grid); | |||||||
| template<class obj1,class obj2,class obj3> inline | template<class obj1,class obj2,class obj3> inline | ||||||
| void mult(Lattice<obj1> &ret,const Lattice<obj2> &lhs,const Lattice<obj3> &rhs){ | void mult(Lattice<obj1> &ret,const Lattice<obj2> &lhs,const Lattice<obj3> &rhs){ | ||||||
|   ret.Checkerboard() = lhs.Checkerboard(); |   ret.Checkerboard() = lhs.Checkerboard(); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|   autoView( lhs_v , lhs, AcceleratorRead); |   auto lhs_v = lhs.AcceleratorView(ViewRead); | ||||||
|   autoView( rhs_v , rhs, AcceleratorRead); |   auto rhs_v = rhs.AcceleratorView(ViewRead); | ||||||
|   conformable(ret,rhs); |   conformable(ret,rhs); | ||||||
|   conformable(lhs,rhs); |   conformable(lhs,rhs); | ||||||
|   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ |   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ | ||||||
| @@ -56,13 +56,13 @@ void mac(Lattice<obj1> &ret,const Lattice<obj2> &lhs,const Lattice<obj3> &rhs){ | |||||||
|   ret.Checkerboard() = lhs.Checkerboard(); |   ret.Checkerboard() = lhs.Checkerboard(); | ||||||
|   conformable(ret,rhs); |   conformable(ret,rhs); | ||||||
|   conformable(lhs,rhs); |   conformable(lhs,rhs); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|   autoView( lhs_v , lhs, AcceleratorRead); |   auto lhs_v = lhs.AcceleratorView(ViewRead); | ||||||
|   autoView( rhs_v , rhs, AcceleratorRead); |   auto rhs_v = rhs.AcceleratorView(ViewRead); | ||||||
|   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ |   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ | ||||||
|  |     decltype(coalescedRead(obj1())) tmp; | ||||||
|     auto lhs_t=lhs_v(ss); |     auto lhs_t=lhs_v(ss); | ||||||
|     auto rhs_t=rhs_v(ss); |     auto rhs_t=rhs_v(ss); | ||||||
|     auto tmp  =ret_v(ss); |  | ||||||
|     mac(&tmp,&lhs_t,&rhs_t); |     mac(&tmp,&lhs_t,&rhs_t); | ||||||
|     coalescedWrite(ret_v[ss],tmp); |     coalescedWrite(ret_v[ss],tmp); | ||||||
|   }); |   }); | ||||||
| @@ -73,9 +73,9 @@ void sub(Lattice<obj1> &ret,const Lattice<obj2> &lhs,const Lattice<obj3> &rhs){ | |||||||
|   ret.Checkerboard() = lhs.Checkerboard(); |   ret.Checkerboard() = lhs.Checkerboard(); | ||||||
|   conformable(ret,rhs); |   conformable(ret,rhs); | ||||||
|   conformable(lhs,rhs); |   conformable(lhs,rhs); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|   autoView( lhs_v , lhs, AcceleratorRead); |   auto lhs_v = lhs.AcceleratorView(ViewRead); | ||||||
|   autoView( rhs_v , rhs, AcceleratorRead); |   auto rhs_v = rhs.AcceleratorView(ViewRead); | ||||||
|   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ |   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ | ||||||
|     decltype(coalescedRead(obj1())) tmp; |     decltype(coalescedRead(obj1())) tmp; | ||||||
|     auto lhs_t=lhs_v(ss); |     auto lhs_t=lhs_v(ss); | ||||||
| @@ -89,9 +89,9 @@ void add(Lattice<obj1> &ret,const Lattice<obj2> &lhs,const Lattice<obj3> &rhs){ | |||||||
|   ret.Checkerboard() = lhs.Checkerboard(); |   ret.Checkerboard() = lhs.Checkerboard(); | ||||||
|   conformable(ret,rhs); |   conformable(ret,rhs); | ||||||
|   conformable(lhs,rhs); |   conformable(lhs,rhs); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|   autoView( lhs_v , lhs, AcceleratorRead); |   auto lhs_v = lhs.AcceleratorView(ViewRead); | ||||||
|   autoView( rhs_v , rhs, AcceleratorRead); |   auto rhs_v = rhs.AcceleratorView(ViewRead); | ||||||
|   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ |   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ | ||||||
|     decltype(coalescedRead(obj1())) tmp; |     decltype(coalescedRead(obj1())) tmp; | ||||||
|     auto lhs_t=lhs_v(ss); |     auto lhs_t=lhs_v(ss); | ||||||
| @@ -108,8 +108,8 @@ template<class obj1,class obj2,class obj3> inline | |||||||
| void mult(Lattice<obj1> &ret,const Lattice<obj2> &lhs,const obj3 &rhs){ | void mult(Lattice<obj1> &ret,const Lattice<obj2> &lhs,const obj3 &rhs){ | ||||||
|   ret.Checkerboard() = lhs.Checkerboard(); |   ret.Checkerboard() = lhs.Checkerboard(); | ||||||
|   conformable(lhs,ret); |   conformable(lhs,ret); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|   autoView( lhs_v , lhs, AcceleratorRead); |   auto lhs_v = lhs.AcceleratorView(ViewRead); | ||||||
|   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ |   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ | ||||||
|     decltype(coalescedRead(obj1())) tmp; |     decltype(coalescedRead(obj1())) tmp; | ||||||
|     mult(&tmp,&lhs_v(ss),&rhs); |     mult(&tmp,&lhs_v(ss),&rhs); | ||||||
| @@ -121,10 +121,10 @@ template<class obj1,class obj2,class obj3> inline | |||||||
| void mac(Lattice<obj1> &ret,const Lattice<obj2> &lhs,const obj3 &rhs){ | void mac(Lattice<obj1> &ret,const Lattice<obj2> &lhs,const obj3 &rhs){ | ||||||
|   ret.Checkerboard() = lhs.Checkerboard(); |   ret.Checkerboard() = lhs.Checkerboard(); | ||||||
|   conformable(ret,lhs); |   conformable(ret,lhs); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|   autoView( lhs_v , lhs, AcceleratorRead); |   auto lhs_v = lhs.AcceleratorView(ViewRead); | ||||||
|   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ |   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ | ||||||
|     auto tmp  =ret_v(ss); |     decltype(coalescedRead(obj1())) tmp; | ||||||
|     auto lhs_t=lhs_v(ss); |     auto lhs_t=lhs_v(ss); | ||||||
|     mac(&tmp,&lhs_t,&rhs); |     mac(&tmp,&lhs_t,&rhs); | ||||||
|     coalescedWrite(ret_v[ss],tmp); |     coalescedWrite(ret_v[ss],tmp); | ||||||
| @@ -135,8 +135,8 @@ template<class obj1,class obj2,class obj3> inline | |||||||
| void sub(Lattice<obj1> &ret,const Lattice<obj2> &lhs,const obj3 &rhs){ | void sub(Lattice<obj1> &ret,const Lattice<obj2> &lhs,const obj3 &rhs){ | ||||||
|   ret.Checkerboard() = lhs.Checkerboard(); |   ret.Checkerboard() = lhs.Checkerboard(); | ||||||
|   conformable(ret,lhs); |   conformable(ret,lhs); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|   autoView( lhs_v , lhs, AcceleratorRead); |   auto lhs_v = lhs.AcceleratorView(ViewRead); | ||||||
|   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ |   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ | ||||||
|     decltype(coalescedRead(obj1())) tmp; |     decltype(coalescedRead(obj1())) tmp; | ||||||
|     auto lhs_t=lhs_v(ss); |     auto lhs_t=lhs_v(ss); | ||||||
| @@ -148,8 +148,8 @@ template<class obj1,class obj2,class obj3> inline | |||||||
| void add(Lattice<obj1> &ret,const Lattice<obj2> &lhs,const obj3 &rhs){ | void add(Lattice<obj1> &ret,const Lattice<obj2> &lhs,const obj3 &rhs){ | ||||||
|   ret.Checkerboard() = lhs.Checkerboard(); |   ret.Checkerboard() = lhs.Checkerboard(); | ||||||
|   conformable(lhs,ret); |   conformable(lhs,ret); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|   autoView( lhs_v , lhs, AcceleratorRead); |   auto lhs_v = lhs.AcceleratorView(ViewRead); | ||||||
|   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ |   accelerator_for(ss,lhs_v.size(),obj1::Nsimd(),{ | ||||||
|     decltype(coalescedRead(obj1())) tmp; |     decltype(coalescedRead(obj1())) tmp; | ||||||
|     auto lhs_t=lhs_v(ss); |     auto lhs_t=lhs_v(ss); | ||||||
| @@ -165,8 +165,8 @@ template<class obj1,class obj2,class obj3> inline | |||||||
| void mult(Lattice<obj1> &ret,const obj2 &lhs,const Lattice<obj3> &rhs){ | void mult(Lattice<obj1> &ret,const obj2 &lhs,const Lattice<obj3> &rhs){ | ||||||
|   ret.Checkerboard() = rhs.Checkerboard(); |   ret.Checkerboard() = rhs.Checkerboard(); | ||||||
|   conformable(ret,rhs); |   conformable(ret,rhs); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|   autoView( rhs_v , lhs, AcceleratorRead); |   auto rhs_v = lhs.AcceleratorView(ViewRead); | ||||||
|   accelerator_for(ss,rhs_v.size(),obj1::Nsimd(),{ |   accelerator_for(ss,rhs_v.size(),obj1::Nsimd(),{ | ||||||
|     decltype(coalescedRead(obj1())) tmp; |     decltype(coalescedRead(obj1())) tmp; | ||||||
|     auto rhs_t=rhs_v(ss); |     auto rhs_t=rhs_v(ss); | ||||||
| @@ -179,10 +179,10 @@ template<class obj1,class obj2,class obj3> inline | |||||||
| void mac(Lattice<obj1> &ret,const obj2 &lhs,const Lattice<obj3> &rhs){ | void mac(Lattice<obj1> &ret,const obj2 &lhs,const Lattice<obj3> &rhs){ | ||||||
|   ret.Checkerboard() = rhs.Checkerboard(); |   ret.Checkerboard() = rhs.Checkerboard(); | ||||||
|   conformable(ret,rhs); |   conformable(ret,rhs); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|   autoView( rhs_v , lhs, AcceleratorRead); |   auto rhs_v = lhs.AcceleratorView(ViewRead); | ||||||
|   accelerator_for(ss,rhs_v.size(),obj1::Nsimd(),{ |   accelerator_for(ss,rhs_v.size(),obj1::Nsimd(),{ | ||||||
|     auto tmp  =ret_v(ss); |     decltype(coalescedRead(obj1())) tmp; | ||||||
|     auto rhs_t=rhs_v(ss); |     auto rhs_t=rhs_v(ss); | ||||||
|     mac(&tmp,&lhs,&rhs_t); |     mac(&tmp,&lhs,&rhs_t); | ||||||
|     coalescedWrite(ret_v[ss],tmp); |     coalescedWrite(ret_v[ss],tmp); | ||||||
| @@ -193,8 +193,8 @@ template<class obj1,class obj2,class obj3> inline | |||||||
| void sub(Lattice<obj1> &ret,const obj2 &lhs,const Lattice<obj3> &rhs){ | void sub(Lattice<obj1> &ret,const obj2 &lhs,const Lattice<obj3> &rhs){ | ||||||
|   ret.Checkerboard() = rhs.Checkerboard(); |   ret.Checkerboard() = rhs.Checkerboard(); | ||||||
|   conformable(ret,rhs); |   conformable(ret,rhs); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|   autoView( rhs_v , lhs, AcceleratorRead); |   auto rhs_v = lhs.AcceleratorView(ViewRead); | ||||||
|   accelerator_for(ss,rhs_v.size(),obj1::Nsimd(),{ |   accelerator_for(ss,rhs_v.size(),obj1::Nsimd(),{ | ||||||
|     decltype(coalescedRead(obj1())) tmp; |     decltype(coalescedRead(obj1())) tmp; | ||||||
|     auto rhs_t=rhs_v(ss); |     auto rhs_t=rhs_v(ss); | ||||||
| @@ -206,8 +206,8 @@ template<class obj1,class obj2,class obj3> inline | |||||||
| void add(Lattice<obj1> &ret,const obj2 &lhs,const Lattice<obj3> &rhs){ | void add(Lattice<obj1> &ret,const obj2 &lhs,const Lattice<obj3> &rhs){ | ||||||
|   ret.Checkerboard() = rhs.Checkerboard(); |   ret.Checkerboard() = rhs.Checkerboard(); | ||||||
|   conformable(ret,rhs); |   conformable(ret,rhs); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|   autoView( rhs_v , lhs, AcceleratorRead); |   auto rhs_v = lhs.AcceleratorView(ViewRead); | ||||||
|   accelerator_for(ss,rhs_v.size(),obj1::Nsimd(),{ |   accelerator_for(ss,rhs_v.size(),obj1::Nsimd(),{ | ||||||
|     decltype(coalescedRead(obj1())) tmp; |     decltype(coalescedRead(obj1())) tmp; | ||||||
|     auto rhs_t=rhs_v(ss); |     auto rhs_t=rhs_v(ss); | ||||||
| @@ -221,11 +221,11 @@ void axpy(Lattice<vobj> &ret,sobj a,const Lattice<vobj> &x,const Lattice<vobj> & | |||||||
|   ret.Checkerboard() = x.Checkerboard(); |   ret.Checkerboard() = x.Checkerboard(); | ||||||
|   conformable(ret,x); |   conformable(ret,x); | ||||||
|   conformable(x,y); |   conformable(x,y); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|   autoView( x_v , x, AcceleratorRead); |   auto x_v = x.AcceleratorView(ViewRead); | ||||||
|   autoView( y_v , y, AcceleratorRead); |   auto y_v = y.AcceleratorView(ViewRead); | ||||||
|   accelerator_for(ss,x_v.size(),vobj::Nsimd(),{ |   accelerator_for(ss,x_v.size(),vobj::Nsimd(),{ | ||||||
|     auto tmp = a*coalescedRead(x_v[ss])+coalescedRead(y_v[ss]); |     auto tmp = a*x_v(ss)+y_v(ss); | ||||||
|     coalescedWrite(ret_v[ss],tmp); |     coalescedWrite(ret_v[ss],tmp); | ||||||
|   }); |   }); | ||||||
| } | } | ||||||
| @@ -234,9 +234,9 @@ void axpby(Lattice<vobj> &ret,sobj a,sobj b,const Lattice<vobj> &x,const Lattice | |||||||
|   ret.Checkerboard() = x.Checkerboard(); |   ret.Checkerboard() = x.Checkerboard(); | ||||||
|   conformable(ret,x); |   conformable(ret,x); | ||||||
|   conformable(x,y); |   conformable(x,y); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|   autoView( x_v , x, AcceleratorRead); |   auto x_v = x.AcceleratorView(ViewRead); | ||||||
|   autoView( y_v , y, AcceleratorRead); |   auto y_v = y.AcceleratorView(ViewRead); | ||||||
|   accelerator_for(ss,x_v.size(),vobj::Nsimd(),{ |   accelerator_for(ss,x_v.size(),vobj::Nsimd(),{ | ||||||
|     auto tmp = a*x_v(ss)+b*y_v(ss); |     auto tmp = a*x_v(ss)+b*y_v(ss); | ||||||
|     coalescedWrite(ret_v[ss],tmp); |     coalescedWrite(ret_v[ss],tmp); | ||||||
|   | |||||||
| @@ -29,7 +29,6 @@ See the full license in the file "LICENSE" in the top level distribution | |||||||
| directory | directory | ||||||
| *************************************************************************************/ | *************************************************************************************/ | ||||||
| 			   /*  END LEGAL */ | 			   /*  END LEGAL */ | ||||||
|  |  | ||||||
| #pragma once  | #pragma once  | ||||||
|  |  | ||||||
| #define STREAMING_STORES | #define STREAMING_STORES | ||||||
| @@ -38,6 +37,180 @@ NAMESPACE_BEGIN(Grid); | |||||||
|  |  | ||||||
| extern int GridCshiftPermuteMap[4][16]; | extern int GridCshiftPermuteMap[4][16]; | ||||||
|  |  | ||||||
|  | /////////////////////////////////////////////////////////////////// | ||||||
|  | // Base class which can be used by traits to pick up behaviour | ||||||
|  | /////////////////////////////////////////////////////////////////// | ||||||
|  | class LatticeBase {}; | ||||||
|  |  | ||||||
|  | ///////////////////////////////////////////////////////////////////////////////////////// | ||||||
|  | // Conformable checks; same instance of Grid required | ||||||
|  | ///////////////////////////////////////////////////////////////////////////////////////// | ||||||
|  | void accelerator_inline conformable(GridBase *lhs,GridBase *rhs) | ||||||
|  | { | ||||||
|  |   assert(lhs == rhs); | ||||||
|  | } | ||||||
|  |  | ||||||
|  | //////////////////////////////////////////////////////////////////////////// | ||||||
|  | // Advise the LatticeAccelerator class | ||||||
|  | //////////////////////////////////////////////////////////////////////////// | ||||||
|  | enum LatticeAcceleratorAdvise { | ||||||
|  |   AdviseInfrequentUse = 0x1,    // Advise that the data is used infrequently.  This can | ||||||
|  |                                 // significantly influence performance of bulk storage. | ||||||
|  |   AdviseReadMostly = 0x2,       // Data will mostly be read.  On some architectures | ||||||
|  |                                 // enables read-only copies of memory to be kept on | ||||||
|  |                                 // host and device. | ||||||
|  | }; | ||||||
|  |  | ||||||
|  | //////////////////////////////////////////////////////////////////////////// | ||||||
|  | // View Access Mode | ||||||
|  | //////////////////////////////////////////////////////////////////////////// | ||||||
|  | enum ViewMode { | ||||||
|  |   ViewRead = 0x1, | ||||||
|  |   ViewWrite = 0x2, | ||||||
|  |   ViewReadWrite = 0x3 | ||||||
|  | }; | ||||||
|  |  | ||||||
|  | //////////////////////////////////////////////////////////////////////////// | ||||||
|  | // Minimal base class containing only data valid to access from accelerator | ||||||
|  | // _odata will be a managed pointer in CUDA | ||||||
|  | //////////////////////////////////////////////////////////////////////////// | ||||||
|  | // Force access to lattice through a view object. | ||||||
|  | // prevents writing of code that will not offload to GPU, but perhaps annoyingly | ||||||
|  | // strict since host could could in principle direct access through the lattice object | ||||||
|  | // Need to decide programming model. | ||||||
|  | #define LATTICE_VIEW_STRICT | ||||||
|  | template<class vobj> class LatticeAccelerator : public LatticeBase | ||||||
|  | { | ||||||
|  | protected: | ||||||
|  |   GridBase *_grid; | ||||||
|  |   int checkerboard; | ||||||
|  |   vobj     *_odata;    // A managed pointer | ||||||
|  |   uint64_t _odata_size;     | ||||||
|  | public: | ||||||
|  |   accelerator_inline LatticeAccelerator() : checkerboard(0), _odata(nullptr), _odata_size(0), _grid(nullptr) { };  | ||||||
|  |   accelerator_inline uint64_t oSites(void) const { return _odata_size; }; | ||||||
|  |   accelerator_inline int  Checkerboard(void) const { return checkerboard; }; | ||||||
|  |   accelerator_inline int &Checkerboard(void) { return this->checkerboard; }; // can assign checkerboard on a container, not a view | ||||||
|  |   accelerator_inline void Conformable(GridBase * &grid) const | ||||||
|  |   {  | ||||||
|  |     if (grid) conformable(grid, _grid); | ||||||
|  |     else      grid = _grid; | ||||||
|  |   }; | ||||||
|  |  | ||||||
|  |   accelerator_inline void Advise(int advise) { | ||||||
|  | #ifdef GRID_NVCC | ||||||
|  | #ifndef __CUDA_ARCH__ // only on host | ||||||
|  |     if (advise & AdviseInfrequentUse) { | ||||||
|  |       cudaMemAdvise(_odata,_odata_size*sizeof(vobj),cudaMemAdviseSetPreferredLocation,cudaCpuDeviceId); | ||||||
|  |     } | ||||||
|  |     if (advise & AdviseReadMostly) { | ||||||
|  |       cudaMemAdvise(_odata,_odata_size*sizeof(vobj),cudaMemAdviseSetReadMostly,-1); | ||||||
|  |     } | ||||||
|  | #endif | ||||||
|  | #endif | ||||||
|  |   }; | ||||||
|  |  | ||||||
|  |   accelerator_inline void AcceleratorPrefetch(int accessMode = ViewReadWrite) { // will use accessMode in future | ||||||
|  | #ifdef GRID_NVCC | ||||||
|  | #ifndef __CUDA_ARCH__ // only on host | ||||||
|  |     int target; | ||||||
|  |     cudaGetDevice(&target); | ||||||
|  |     cudaMemPrefetchAsync(_odata,_odata_size*sizeof(vobj),target); | ||||||
|  | #endif | ||||||
|  | #endif | ||||||
|  |   }; | ||||||
|  |  | ||||||
|  |   accelerator_inline void HostPrefetch(int accessMode = ViewReadWrite) { // will use accessMode in future | ||||||
|  | #ifdef GRID_NVCC | ||||||
|  | #ifndef __CUDA_ARCH__ // only on host | ||||||
|  |     cudaMemPrefetchAsync(_odata,_odata_size*sizeof(vobj),cudaCpuDeviceId); | ||||||
|  | #endif | ||||||
|  | #endif | ||||||
|  |   }; | ||||||
|  | }; | ||||||
|  |  | ||||||
|  | ///////////////////////////////////////////////////////////////////////////////////////// | ||||||
|  | // A View class which provides accessor to the data. | ||||||
|  | // This will be safe to call from accelerator_for and is trivially copy constructible | ||||||
|  | // The copy constructor for this will need to be used by device lambda functions | ||||||
|  | ///////////////////////////////////////////////////////////////////////////////////////// | ||||||
|  | template<class vobj>  | ||||||
|  | class LatticeView : public LatticeAccelerator<vobj> | ||||||
|  | { | ||||||
|  | public: | ||||||
|  |  | ||||||
|  |  | ||||||
|  |   // Rvalue | ||||||
|  | #ifdef __CUDA_ARCH__ | ||||||
|  |   accelerator_inline const typename vobj::scalar_object operator()(size_t i) const { return coalescedRead(this->_odata[i]); } | ||||||
|  | #else  | ||||||
|  |   accelerator_inline const vobj & operator()(size_t i) const { return this->_odata[i]; } | ||||||
|  | #endif | ||||||
|  |  | ||||||
|  |   accelerator_inline const vobj & operator[](size_t i) const { return this->_odata[i]; }; | ||||||
|  |   accelerator_inline vobj       & operator[](size_t i)       { return this->_odata[i]; }; | ||||||
|  |  | ||||||
|  |   accelerator_inline uint64_t begin(void) const { return 0;}; | ||||||
|  |   accelerator_inline uint64_t end(void)   const { return this->_odata_size; }; | ||||||
|  |   accelerator_inline uint64_t size(void)  const { return this->_odata_size; }; | ||||||
|  |  | ||||||
|  |   LatticeView(const LatticeAccelerator<vobj> &refer_to_me) : LatticeAccelerator<vobj> (refer_to_me) | ||||||
|  |   { | ||||||
|  |   } | ||||||
|  | }; | ||||||
|  |  | ||||||
|  | ///////////////////////////////////////////////////////////////////////////////////////// | ||||||
|  | // Lattice expression types used by ET to assemble the AST | ||||||
|  | //  | ||||||
|  | // Need to be able to detect code paths according to the whether a lattice object or not | ||||||
|  | // so introduce some trait type things | ||||||
|  | ///////////////////////////////////////////////////////////////////////////////////////// | ||||||
|  |  | ||||||
|  | class LatticeExpressionBase {}; | ||||||
|  |  | ||||||
|  | template <typename T> using is_lattice = std::is_base_of<LatticeBase, T>; | ||||||
|  | template <typename T> using is_lattice_expr = std::is_base_of<LatticeExpressionBase,T >; | ||||||
|  |  | ||||||
|  | template<class T, bool isLattice> struct ViewMapBase { typedef T Type; }; | ||||||
|  | template<class T>                 struct ViewMapBase<T,true> { typedef LatticeView<typename T::vector_object> Type; }; | ||||||
|  | template<class T> using ViewMap = ViewMapBase<T,std::is_base_of<LatticeBase, T>::value >; | ||||||
|  |  | ||||||
|  | template <typename Op, typename _T1>                            | ||||||
|  | class LatticeUnaryExpression : public  LatticeExpressionBase  | ||||||
|  | { | ||||||
|  | public: | ||||||
|  |   typedef typename ViewMap<_T1>::Type T1; | ||||||
|  |   Op op; | ||||||
|  |   T1 arg1; | ||||||
|  |   LatticeUnaryExpression(Op _op,const _T1 &_arg1) : op(_op), arg1(_arg1) {}; | ||||||
|  | }; | ||||||
|  |  | ||||||
|  | template <typename Op, typename _T1, typename _T2>               | ||||||
|  | class LatticeBinaryExpression : public LatticeExpressionBase  | ||||||
|  | { | ||||||
|  | public: | ||||||
|  |   typedef typename ViewMap<_T1>::Type T1; | ||||||
|  |   typedef typename ViewMap<_T2>::Type T2; | ||||||
|  |   Op op; | ||||||
|  |   T1 arg1; | ||||||
|  |   T2 arg2; | ||||||
|  |   LatticeBinaryExpression(Op _op,const _T1 &_arg1,const _T2 &_arg2) : op(_op), arg1(_arg1), arg2(_arg2) {}; | ||||||
|  | }; | ||||||
|  |  | ||||||
|  | template <typename Op, typename _T1, typename _T2, typename _T3>  | ||||||
|  | class LatticeTrinaryExpression : public LatticeExpressionBase  | ||||||
|  | { | ||||||
|  | public: | ||||||
|  |   typedef typename ViewMap<_T1>::Type T1; | ||||||
|  |   typedef typename ViewMap<_T2>::Type T2; | ||||||
|  |   typedef typename ViewMap<_T3>::Type T3; | ||||||
|  |   Op op; | ||||||
|  |   T1 arg1; | ||||||
|  |   T2 arg2; | ||||||
|  |   T3 arg3; | ||||||
|  |   LatticeTrinaryExpression(Op _op,const _T1 &_arg1,const _T2 &_arg2,const _T3 &_arg3) : op(_op), arg1(_arg1), arg2(_arg2), arg3(_arg3) {}; | ||||||
|  | }; | ||||||
|  |  | ||||||
| ///////////////////////////////////////////////////////////////////////////////////////// | ///////////////////////////////////////////////////////////////////////////////////////// | ||||||
| // The real lattice class, with normal copy and assignment semantics. | // The real lattice class, with normal copy and assignment semantics. | ||||||
| // This contains extra (host resident) grid pointer data that may be accessed by host code | // This contains extra (host resident) grid pointer data that may be accessed by host code | ||||||
| @@ -80,30 +253,28 @@ private: | |||||||
|     } |     } | ||||||
|   } |   } | ||||||
| public: | public: | ||||||
|  |  | ||||||
|   ///////////////////////////////////////////////////////////////////////////////// |  | ||||||
|   // Can use to make accelerator dirty without copy from host ; useful for temporaries "dont care" prev contents |  | ||||||
|   ///////////////////////////////////////////////////////////////////////////////// |  | ||||||
|   void SetViewMode(ViewMode mode) { |  | ||||||
|     LatticeView<vobj> accessor(*( (LatticeAccelerator<vobj> *) this),mode); |  | ||||||
|     accessor.ViewClose(); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   // Helper function to print the state of this object in the AccCache |  | ||||||
|   void PrintCacheState(void) |  | ||||||
|   { |  | ||||||
|     MemoryManager::PrintState(this->_odata); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   ///////////////////////////////////////////////////////////////////////////////// |   ///////////////////////////////////////////////////////////////////////////////// | ||||||
|   // Return a view object that may be dereferenced in site loops. |   // Return a view object that may be dereferenced in site loops. | ||||||
|   // The view is trivially copy constructible and may be copied to an accelerator device |   // The view is trivially copy constructible and may be copied to an accelerator device | ||||||
|   // in device lambdas |   // in device lambdas | ||||||
|   ///////////////////////////////////////////////////////////////////////////////// |   ///////////////////////////////////////////////////////////////////////////////// | ||||||
|  |   LatticeView<vobj> View (void) const // deprecated, should pick AcceleratorView for accelerator_for | ||||||
|  |   {                                   //                     and HostView        for thread_for | ||||||
|  |     LatticeView<vobj> accessor(*( (LatticeAccelerator<vobj> *) this)); | ||||||
|  |     return accessor; | ||||||
|  |   } | ||||||
|  |  | ||||||
|   LatticeView<vobj> View (ViewMode mode) const  |   LatticeView<vobj> AcceleratorView(int mode = ViewReadWrite) const  | ||||||
|   { |   { | ||||||
|     LatticeView<vobj> accessor(*( (LatticeAccelerator<vobj> *) this),mode); |     LatticeView<vobj> accessor(*( (LatticeAccelerator<vobj> *) this)); | ||||||
|  |     accessor.AcceleratorPrefetch(mode); | ||||||
|  |     return accessor; | ||||||
|  |   } | ||||||
|  |  | ||||||
|  |   LatticeView<vobj> HostView(int mode = ViewReadWrite) const  | ||||||
|  |   { | ||||||
|  |     LatticeView<vobj> accessor(*( (LatticeAccelerator<vobj> *) this)); | ||||||
|  |     accessor.HostPrefetch(mode); | ||||||
|     return accessor; |     return accessor; | ||||||
|   } |   } | ||||||
|    |    | ||||||
| @@ -127,15 +298,11 @@ public: | |||||||
|     assert( (cb==Odd) || (cb==Even)); |     assert( (cb==Odd) || (cb==Even)); | ||||||
|     this->checkerboard=cb; |     this->checkerboard=cb; | ||||||
|  |  | ||||||
|     auto exprCopy = expr; |     auto me  = AcceleratorView(ViewWrite); | ||||||
|     ExpressionViewOpen(exprCopy); |     accelerator_for(ss,me.size(),1,{ | ||||||
|     auto me  = View(AcceleratorWriteDiscard); |       auto tmp = eval(ss,expr); | ||||||
|     accelerator_for(ss,me.size(),vobj::Nsimd(),{ |       vstream(me[ss],tmp); | ||||||
|       auto tmp = eval(ss,exprCopy); |  | ||||||
|       coalescedWrite(me[ss],tmp); |  | ||||||
|     }); |     }); | ||||||
|     me.ViewClose(); |  | ||||||
|     ExpressionViewClose(exprCopy); |  | ||||||
|     return *this; |     return *this; | ||||||
|   } |   } | ||||||
|   template <typename Op, typename T1,typename T2> inline Lattice<vobj> & operator=(const LatticeBinaryExpression<Op,T1,T2> &expr) |   template <typename Op, typename T1,typename T2> inline Lattice<vobj> & operator=(const LatticeBinaryExpression<Op,T1,T2> &expr) | ||||||
| @@ -150,15 +317,11 @@ public: | |||||||
|     assert( (cb==Odd) || (cb==Even)); |     assert( (cb==Odd) || (cb==Even)); | ||||||
|     this->checkerboard=cb; |     this->checkerboard=cb; | ||||||
|  |  | ||||||
|     auto exprCopy = expr; |     auto me  = AcceleratorView(ViewWrite); | ||||||
|     ExpressionViewOpen(exprCopy); |     accelerator_for(ss,me.size(),1,{ | ||||||
|     auto me  = View(AcceleratorWriteDiscard); |       auto tmp = eval(ss,expr); | ||||||
|     accelerator_for(ss,me.size(),vobj::Nsimd(),{ |       vstream(me[ss],tmp); | ||||||
|       auto tmp = eval(ss,exprCopy); |  | ||||||
|       coalescedWrite(me[ss],tmp); |  | ||||||
|     }); |     }); | ||||||
|     me.ViewClose(); |  | ||||||
|     ExpressionViewClose(exprCopy); |  | ||||||
|     return *this; |     return *this; | ||||||
|   } |   } | ||||||
|   template <typename Op, typename T1,typename T2,typename T3> inline Lattice<vobj> & operator=(const LatticeTrinaryExpression<Op,T1,T2,T3> &expr) |   template <typename Op, typename T1,typename T2,typename T3> inline Lattice<vobj> & operator=(const LatticeTrinaryExpression<Op,T1,T2,T3> &expr) | ||||||
| @@ -172,15 +335,11 @@ public: | |||||||
|     CBFromExpression(cb,expr); |     CBFromExpression(cb,expr); | ||||||
|     assert( (cb==Odd) || (cb==Even)); |     assert( (cb==Odd) || (cb==Even)); | ||||||
|     this->checkerboard=cb; |     this->checkerboard=cb; | ||||||
|     auto exprCopy = expr; |     auto me  = AcceleratorView(ViewWrite); | ||||||
|     ExpressionViewOpen(exprCopy); |     accelerator_for(ss,me.size(),1,{ | ||||||
|     auto me  = View(AcceleratorWriteDiscard); |       auto tmp = eval(ss,expr); | ||||||
|     accelerator_for(ss,me.size(),vobj::Nsimd(),{ |       vstream(me[ss],tmp); | ||||||
|       auto tmp = eval(ss,exprCopy); |  | ||||||
|       coalescedWrite(me[ss],tmp); |  | ||||||
|     }); |     }); | ||||||
|     me.ViewClose(); |  | ||||||
|     ExpressionViewClose(exprCopy); |  | ||||||
|     return *this; |     return *this; | ||||||
|   } |   } | ||||||
|   //GridFromExpression is tricky to do |   //GridFromExpression is tricky to do | ||||||
| @@ -231,11 +390,10 @@ public: | |||||||
|   } |   } | ||||||
|  |  | ||||||
|   template<class sobj> inline Lattice<vobj> & operator = (const sobj & r){ |   template<class sobj> inline Lattice<vobj> & operator = (const sobj & r){ | ||||||
|     auto me  = View(CpuWrite); |     auto me  = View(); | ||||||
|     thread_for(ss,me.size(),{ |     thread_for(ss,me.size(),{ | ||||||
| 	me[ss]= r; |       me[ss] = r; | ||||||
|     }); |     }); | ||||||
|     me.ViewClose(); |  | ||||||
|     return *this; |     return *this; | ||||||
|   } |   } | ||||||
|  |  | ||||||
| @@ -245,12 +403,11 @@ public: | |||||||
|   /////////////////////////////////////////// |   /////////////////////////////////////////// | ||||||
|   // user defined constructor |   // user defined constructor | ||||||
|   /////////////////////////////////////////// |   /////////////////////////////////////////// | ||||||
|   Lattice(GridBase *grid,ViewMode mode=AcceleratorWriteDiscard) {  |   Lattice(GridBase *grid) {  | ||||||
|     this->_grid = grid; |     this->_grid = grid; | ||||||
|     resize(this->_grid->oSites()); |     resize(this->_grid->oSites()); | ||||||
|     assert((((uint64_t)&this->_odata[0])&0xF) ==0); |     assert((((uint64_t)&this->_odata[0])&0xF) ==0); | ||||||
|     this->checkerboard=0; |     this->checkerboard=0; | ||||||
|     SetViewMode(mode); |  | ||||||
|   } |   } | ||||||
|    |    | ||||||
|   //  virtual ~Lattice(void) = default; |   //  virtual ~Lattice(void) = default; | ||||||
| @@ -288,12 +445,11 @@ public: | |||||||
|     typename std::enable_if<!std::is_same<robj,vobj>::value,int>::type i=0; |     typename std::enable_if<!std::is_same<robj,vobj>::value,int>::type i=0; | ||||||
|     conformable(*this,r); |     conformable(*this,r); | ||||||
|     this->checkerboard = r.Checkerboard(); |     this->checkerboard = r.Checkerboard(); | ||||||
|     auto me =   View(AcceleratorWriteDiscard); |     auto me =   AcceleratorView(ViewWrite); | ||||||
|     auto him= r.View(AcceleratorRead); |     auto him= r.AcceleratorView(ViewRead); | ||||||
|     accelerator_for(ss,me.size(),vobj::Nsimd(),{ |     accelerator_for(ss,me.size(),vobj::Nsimd(),{ | ||||||
|       coalescedWrite(me[ss],him(ss)); |       coalescedWrite(me[ss],him(ss)); | ||||||
|     }); |     }); | ||||||
|     me.ViewClose();    him.ViewClose(); |  | ||||||
|     return *this; |     return *this; | ||||||
|   } |   } | ||||||
|  |  | ||||||
| @@ -303,12 +459,11 @@ public: | |||||||
|   inline Lattice<vobj> & operator = (const Lattice<vobj> & r){ |   inline Lattice<vobj> & operator = (const Lattice<vobj> & r){ | ||||||
|     this->checkerboard = r.Checkerboard(); |     this->checkerboard = r.Checkerboard(); | ||||||
|     conformable(*this,r); |     conformable(*this,r); | ||||||
|     auto me =   View(AcceleratorWriteDiscard); |     auto me =   AcceleratorView(ViewWrite); | ||||||
|     auto him= r.View(AcceleratorRead); |     auto him= r.AcceleratorView(ViewRead); | ||||||
|     accelerator_for(ss,me.size(),vobj::Nsimd(),{ |     accelerator_for(ss,me.size(),vobj::Nsimd(),{ | ||||||
|       coalescedWrite(me[ss],him(ss)); |       coalescedWrite(me[ss],him(ss)); | ||||||
|     }); |     }); | ||||||
|     me.ViewClose();    him.ViewClose(); |  | ||||||
|     return *this; |     return *this; | ||||||
|   } |   } | ||||||
|   /////////////////////////////////////////// |   /////////////////////////////////////////// | ||||||
|   | |||||||
| @@ -51,23 +51,20 @@ template<class VField, class Matrix> | |||||||
| void basisRotate(VField &basis,Matrix& Qt,int j0, int j1, int k0,int k1,int Nm)  | void basisRotate(VField &basis,Matrix& Qt,int j0, int j1, int k0,int k1,int Nm)  | ||||||
| { | { | ||||||
|   typedef decltype(basis[0]) Field; |   typedef decltype(basis[0]) Field; | ||||||
|   typedef decltype(basis[0].View(AcceleratorRead)) View; |   typedef decltype(basis[0].View()) View; | ||||||
|  |   auto tmp_v = basis[0].AcceleratorView(ViewReadWrite); | ||||||
|   Vector<View> basis_v; basis_v.reserve(basis.size()); |   Vector<View> basis_v(basis.size(),tmp_v); | ||||||
|   typedef typename std::remove_reference<decltype(basis_v[0][0])>::type vobj; |   typedef typename std::remove_reference<decltype(tmp_v[0])>::type vobj; | ||||||
|   typedef typename std::remove_reference<decltype(Qt(0,0))>::type Coeff_t; |  | ||||||
|   GridBase* grid = basis[0].Grid(); |   GridBase* grid = basis[0].Grid(); | ||||||
|        |        | ||||||
|   for(int k=0;k<basis.size();k++){ |   for(int k=0;k<basis.size();k++){ | ||||||
|     basis_v.push_back(basis[k].View(AcceleratorWrite)); |     basis_v[k] = basis[k].AcceleratorView(ViewReadWrite); | ||||||
|   } |   } | ||||||
|  |  | ||||||
| #if ( (!defined(GRID_CUDA)) ) | #ifndef GRID_NVCC | ||||||
|   int max_threads = thread_max(); |  | ||||||
|   Vector < vobj > Bt(Nm * max_threads); |  | ||||||
|   thread_region |   thread_region | ||||||
|   { |   { | ||||||
|       vobj* B = &Bt[Nm * thread_num()]; |     std::vector < vobj > B(Nm); // Thread private | ||||||
|     thread_for_in_region(ss, grid->oSites(),{ |     thread_for_in_region(ss, grid->oSites(),{ | ||||||
| 	for(int j=j0; j<j1; ++j) B[j]=0.; | 	for(int j=j0; j<j1; ++j) B[j]=0.; | ||||||
|        |        | ||||||
| @@ -82,8 +79,6 @@ void basisRotate(VField &basis,Matrix& Qt,int j0, int j1, int k0,int k1,int Nm) | |||||||
|       }); |       }); | ||||||
|   } |   } | ||||||
| #else | #else | ||||||
|   View *basis_vp = &basis_v[0]; |  | ||||||
|  |  | ||||||
|   int nrot = j1-j0; |   int nrot = j1-j0; | ||||||
|   if (!nrot) // edge case not handled gracefully by Cuda |   if (!nrot) // edge case not handled gracefully by Cuda | ||||||
|     return; |     return; | ||||||
| @@ -95,8 +90,8 @@ void basisRotate(VField &basis,Matrix& Qt,int j0, int j1, int k0,int k1,int Nm) | |||||||
|   auto Bp=&Bt[0]; |   auto Bp=&Bt[0]; | ||||||
|  |  | ||||||
|   // GPU readable copy of matrix |   // GPU readable copy of matrix | ||||||
|   Vector<Coeff_t> Qt_jv(Nm*Nm); |   Vector<double> Qt_jv(Nm*Nm); | ||||||
|   Coeff_t *Qt_p = & Qt_jv[0]; |   double *Qt_p = & Qt_jv[0]; | ||||||
|   thread_for(i,Nm*Nm,{ |   thread_for(i,Nm*Nm,{ | ||||||
|       int j = i/Nm; |       int j = i/Nm; | ||||||
|       int k = i%Nm; |       int k = i%Nm; | ||||||
| @@ -125,7 +120,7 @@ void basisRotate(VField &basis,Matrix& Qt,int j0, int j1, int k0,int k1,int Nm) | |||||||
|  |  | ||||||
| 	for(int k=k0; k<k1; ++k){ | 	for(int k=k0; k<k1; ++k){ | ||||||
| 	  auto tmp = coalescedRead(Bp[ss*nrot+j]); | 	  auto tmp = coalescedRead(Bp[ss*nrot+j]); | ||||||
| 	  coalescedWrite(Bp[ss*nrot+j],tmp+ Qt_p[jj*Nm+k] * coalescedRead(basis_vp[k][sss])); | 	  coalescedWrite(Bp[ss*nrot+j],tmp+ Qt_p[jj*Nm+k] * coalescedRead(basis_v[k][sss])); | ||||||
| 	} | 	} | ||||||
|       }); |       }); | ||||||
|  |  | ||||||
| @@ -134,44 +129,37 @@ void basisRotate(VField &basis,Matrix& Qt,int j0, int j1, int k0,int k1,int Nm) | |||||||
| 	int jj  =j0+j; | 	int jj  =j0+j; | ||||||
| 	int ss =sj/nrot; | 	int ss =sj/nrot; | ||||||
| 	int sss=ss+s; | 	int sss=ss+s; | ||||||
| 	coalescedWrite(basis_vp[jj][sss],coalescedRead(Bp[ss*nrot+j])); | 	coalescedWrite(basis_v[jj][sss],coalescedRead(Bp[ss*nrot+j])); | ||||||
|       }); |       }); | ||||||
|   } |   } | ||||||
| #endif | #endif | ||||||
|  |  | ||||||
|   for(int k=0;k<basis.size();k++) basis_v[k].ViewClose(); |  | ||||||
| } | } | ||||||
|  |  | ||||||
| // Extract a single rotated vector | // Extract a single rotated vector | ||||||
| template<class Field> | template<class Field> | ||||||
| void basisRotateJ(Field &result,std::vector<Field> &basis,Eigen::MatrixXd& Qt,int j, int k0,int k1,int Nm)  | void basisRotateJ(Field &result,std::vector<Field> &basis,Eigen::MatrixXd& Qt,int j, int k0,int k1,int Nm)  | ||||||
| { | { | ||||||
|   typedef decltype(basis[0].View(AcceleratorRead)) View; |   typedef decltype(basis[0].AcceleratorView()) View; | ||||||
|   typedef typename Field::vector_object vobj; |   typedef typename Field::vector_object vobj; | ||||||
|   GridBase* grid = basis[0].Grid(); |   GridBase* grid = basis[0].Grid(); | ||||||
|  |  | ||||||
|   result.Checkerboard() = basis[0].Checkerboard(); |   result.Checkerboard() = basis[0].Checkerboard(); | ||||||
|  |   auto result_v=result.AcceleratorView(ViewWrite); | ||||||
|   Vector<View> basis_v; basis_v.reserve(basis.size()); |   Vector<View> basis_v(basis.size(),result_v); | ||||||
|   for(int k=0;k<basis.size();k++){ |   for(int k=0;k<basis.size();k++){ | ||||||
|     basis_v.push_back(basis[k].View(AcceleratorRead)); |     basis_v[k] = basis[k].AcceleratorView(ViewRead); | ||||||
|   } |   } | ||||||
|   vobj zz=Zero(); |   vobj zz=Zero(); | ||||||
|   Vector<double> Qt_jv(Nm); |   Vector<double> Qt_jv(Nm); | ||||||
|   double * Qt_j = & Qt_jv[0]; |   double * Qt_j = & Qt_jv[0]; | ||||||
|   for(int k=0;k<Nm;++k) Qt_j[k]=Qt(j,k); |   for(int k=0;k<Nm;++k) Qt_j[k]=Qt(j,k); | ||||||
|  |  | ||||||
|   auto basis_vp=& basis_v[0]; |  | ||||||
|   autoView(result_v,result,AcceleratorWrite); |  | ||||||
|   accelerator_for(ss, grid->oSites(),vobj::Nsimd(),{ |   accelerator_for(ss, grid->oSites(),vobj::Nsimd(),{ | ||||||
|     vobj zzz=Zero(); |     auto B=coalescedRead(zz); | ||||||
|     auto B=coalescedRead(zzz); |  | ||||||
|     for(int k=k0; k<k1; ++k){ |     for(int k=k0; k<k1; ++k){ | ||||||
|       B +=Qt_j[k] * coalescedRead(basis_vp[k][ss]); |       B +=Qt_j[k] * coalescedRead(basis_v[k][ss]); | ||||||
|     } |     } | ||||||
|     coalescedWrite(result_v[ss], B); |     coalescedWrite(result_v[ss], B); | ||||||
|   }); |   }); | ||||||
|   for(int k=0;k<basis.size();k++) basis_v[k].ViewClose(); |  | ||||||
| } | } | ||||||
|  |  | ||||||
| template<class Field> | template<class Field> | ||||||
|   | |||||||
| @@ -42,6 +42,34 @@ NAMESPACE_BEGIN(Grid); | |||||||
|  |  | ||||||
| typedef iScalar<vInteger> vPredicate ; | typedef iScalar<vInteger> vPredicate ; | ||||||
|  |  | ||||||
|  | /* | ||||||
|  | template <class iobj, class vobj, class robj> accelerator_inline  | ||||||
|  | vobj predicatedWhere(const iobj &predicate, const vobj &iftrue, const robj &iffalse)  | ||||||
|  | { | ||||||
|  |   typename std::remove_const<vobj>::type ret; | ||||||
|  |  | ||||||
|  |   typedef typename vobj::scalar_object scalar_object; | ||||||
|  |   typedef typename vobj::scalar_type scalar_type; | ||||||
|  |   typedef typename vobj::vector_type vector_type; | ||||||
|  |  | ||||||
|  |   const int Nsimd = vobj::vector_type::Nsimd(); | ||||||
|  |  | ||||||
|  |   ExtractBuffer<Integer> mask(Nsimd); | ||||||
|  |   ExtractBuffer<scalar_object> truevals(Nsimd); | ||||||
|  |   ExtractBuffer<scalar_object> falsevals(Nsimd); | ||||||
|  |  | ||||||
|  |   extract(iftrue, truevals); | ||||||
|  |   extract(iffalse, falsevals); | ||||||
|  |   extract<vInteger, Integer>(TensorRemove(predicate), mask); | ||||||
|  |  | ||||||
|  |   for (int s = 0; s < Nsimd; s++) { | ||||||
|  |     if (mask[s]) falsevals[s] = truevals[s]; | ||||||
|  |   } | ||||||
|  |  | ||||||
|  |   merge(ret, falsevals); | ||||||
|  |   return ret; | ||||||
|  | } | ||||||
|  | */ | ||||||
| ////////////////////////////////////////////////////////////////////////// | ////////////////////////////////////////////////////////////////////////// | ||||||
| // compare lattice to lattice | // compare lattice to lattice | ||||||
| ////////////////////////////////////////////////////////////////////////// | ////////////////////////////////////////////////////////////////////////// | ||||||
| @@ -50,9 +78,9 @@ template<class vfunctor,class lobj,class robj> | |||||||
| inline Lattice<vPredicate> LLComparison(vfunctor op,const Lattice<lobj> &lhs,const Lattice<robj> &rhs) | inline Lattice<vPredicate> LLComparison(vfunctor op,const Lattice<lobj> &lhs,const Lattice<robj> &rhs) | ||||||
| { | { | ||||||
|   Lattice<vPredicate> ret(rhs.Grid()); |   Lattice<vPredicate> ret(rhs.Grid()); | ||||||
|   autoView( lhs_v, lhs, CpuRead); |   auto lhs_v = lhs.View(); | ||||||
|   autoView( rhs_v, rhs, CpuRead); |   auto rhs_v = rhs.View(); | ||||||
|   autoView( ret_v, ret, CpuWrite); |   auto ret_v = ret.View(); | ||||||
|   thread_for( ss, rhs_v.size(), { |   thread_for( ss, rhs_v.size(), { | ||||||
|       ret_v[ss]=op(lhs_v[ss],rhs_v[ss]); |       ret_v[ss]=op(lhs_v[ss],rhs_v[ss]); | ||||||
|   }); |   }); | ||||||
| @@ -65,8 +93,8 @@ template<class vfunctor,class lobj,class robj> | |||||||
| inline Lattice<vPredicate> LSComparison(vfunctor op,const Lattice<lobj> &lhs,const robj &rhs) | inline Lattice<vPredicate> LSComparison(vfunctor op,const Lattice<lobj> &lhs,const robj &rhs) | ||||||
| { | { | ||||||
|   Lattice<vPredicate> ret(lhs.Grid()); |   Lattice<vPredicate> ret(lhs.Grid()); | ||||||
|   autoView( lhs_v, lhs, CpuRead); |   auto lhs_v = lhs.View(); | ||||||
|   autoView( ret_v, ret, CpuWrite); |   auto ret_v = ret.View(); | ||||||
|   thread_for( ss, lhs_v.size(), { |   thread_for( ss, lhs_v.size(), { | ||||||
|     ret_v[ss]=op(lhs_v[ss],rhs); |     ret_v[ss]=op(lhs_v[ss],rhs); | ||||||
|   }); |   }); | ||||||
| @@ -79,8 +107,8 @@ template<class vfunctor,class lobj,class robj> | |||||||
| inline Lattice<vPredicate> SLComparison(vfunctor op,const lobj &lhs,const Lattice<robj> &rhs) | inline Lattice<vPredicate> SLComparison(vfunctor op,const lobj &lhs,const Lattice<robj> &rhs) | ||||||
| { | { | ||||||
|   Lattice<vPredicate> ret(rhs.Grid()); |   Lattice<vPredicate> ret(rhs.Grid()); | ||||||
|   autoView( rhs_v, rhs, CpuRead); |   auto rhs_v = rhs.View(); | ||||||
|   autoView( ret_v, ret, CpuWrite); |   auto ret_v = ret.View(); | ||||||
|   thread_for( ss, rhs_v.size(), { |   thread_for( ss, rhs_v.size(), { | ||||||
|     ret_v[ss]=op(lhs,rhs_v[ss]); |     ret_v[ss]=op(lhs,rhs_v[ss]); | ||||||
|   }); |   }); | ||||||
|   | |||||||
| @@ -37,7 +37,7 @@ template<class iobj> inline void LatticeCoordinate(Lattice<iobj> &l,int mu) | |||||||
|   GridBase *grid = l.Grid(); |   GridBase *grid = l.Grid(); | ||||||
|   int Nsimd = grid->iSites(); |   int Nsimd = grid->iSites(); | ||||||
|  |  | ||||||
|   autoView(l_v, l, CpuWrite); |   auto l_v = l.View(); | ||||||
|   thread_for( o, grid->oSites(), { |   thread_for( o, grid->oSites(), { | ||||||
|     vector_type vI; |     vector_type vI; | ||||||
|     Coordinate gcoor; |     Coordinate gcoor; | ||||||
| @@ -51,5 +51,23 @@ template<class iobj> inline void LatticeCoordinate(Lattice<iobj> &l,int mu) | |||||||
|   }); |   }); | ||||||
| }; | }; | ||||||
|  |  | ||||||
|  | // LatticeCoordinate(); | ||||||
|  | // FIXME for debug; deprecate this; made obscelete by  | ||||||
|  | template<class vobj> void lex_sites(Lattice<vobj> &l){ | ||||||
|  |   auto l_v = l.View(); | ||||||
|  |   Real *v_ptr = (Real *)&l_v[0]; | ||||||
|  |   size_t o_len = l.Grid()->oSites(); | ||||||
|  |   size_t v_len = sizeof(vobj)/sizeof(vRealF); | ||||||
|  |   size_t vec_len = vRealF::Nsimd(); | ||||||
|  |  | ||||||
|  |   for(int i=0;i<o_len;i++){ | ||||||
|  |     for(int j=0;j<v_len;j++){ | ||||||
|  |       for(int vv=0;vv<vec_len;vv+=2){ | ||||||
|  | 	v_ptr[i*v_len*vec_len+j*vec_len+vv  ]= i+vv*500; | ||||||
|  | 	v_ptr[i*v_len*vec_len+j*vec_len+vv+1]= i+vv*500; | ||||||
|  |       } | ||||||
|  |     }} | ||||||
|  | } | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); | NAMESPACE_END(Grid); | ||||||
|  |  | ||||||
|   | |||||||
| @@ -43,8 +43,8 @@ template<class vobj> | |||||||
| inline auto localNorm2 (const Lattice<vobj> &rhs)-> Lattice<typename vobj::tensor_reduced> | inline auto localNorm2 (const Lattice<vobj> &rhs)-> Lattice<typename vobj::tensor_reduced> | ||||||
| { | { | ||||||
|   Lattice<typename vobj::tensor_reduced> ret(rhs.Grid()); |   Lattice<typename vobj::tensor_reduced> ret(rhs.Grid()); | ||||||
|   autoView( rhs_v , rhs, AcceleratorRead); |   auto rhs_v = rhs.View(); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.View(); | ||||||
|   accelerator_for(ss,rhs_v.size(),vobj::Nsimd(),{ |   accelerator_for(ss,rhs_v.size(),vobj::Nsimd(),{ | ||||||
|     coalescedWrite(ret_v[ss],innerProduct(rhs_v(ss),rhs_v(ss))); |     coalescedWrite(ret_v[ss],innerProduct(rhs_v(ss),rhs_v(ss))); | ||||||
|   }); |   }); | ||||||
| @@ -56,9 +56,9 @@ template<class vobj> | |||||||
| inline auto localInnerProduct (const Lattice<vobj> &lhs,const Lattice<vobj> &rhs) -> Lattice<typename vobj::tensor_reduced> | inline auto localInnerProduct (const Lattice<vobj> &lhs,const Lattice<vobj> &rhs) -> Lattice<typename vobj::tensor_reduced> | ||||||
| { | { | ||||||
|   Lattice<typename vobj::tensor_reduced> ret(rhs.Grid()); |   Lattice<typename vobj::tensor_reduced> ret(rhs.Grid()); | ||||||
|   autoView( lhs_v , lhs, AcceleratorRead); |   auto lhs_v = lhs.View(); | ||||||
|   autoView( rhs_v , rhs, AcceleratorRead); |   auto rhs_v = rhs.View(); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.View(); | ||||||
|   accelerator_for(ss,rhs_v.size(),vobj::Nsimd(),{ |   accelerator_for(ss,rhs_v.size(),vobj::Nsimd(),{ | ||||||
|     coalescedWrite(ret_v[ss],innerProduct(lhs_v(ss),rhs_v(ss))); |     coalescedWrite(ret_v[ss],innerProduct(lhs_v(ss),rhs_v(ss))); | ||||||
|   }); |   }); | ||||||
| @@ -73,9 +73,9 @@ inline auto outerProduct (const Lattice<ll> &lhs,const Lattice<rr> &rhs) -> Latt | |||||||
|   typedef decltype(coalescedRead(ll())) sll; |   typedef decltype(coalescedRead(ll())) sll; | ||||||
|   typedef decltype(coalescedRead(rr())) srr; |   typedef decltype(coalescedRead(rr())) srr; | ||||||
|   Lattice<decltype(outerProduct(ll(),rr()))> ret(rhs.Grid()); |   Lattice<decltype(outerProduct(ll(),rr()))> ret(rhs.Grid()); | ||||||
|   autoView( lhs_v , lhs, AcceleratorRead); |   auto lhs_v = lhs.View(); | ||||||
|   autoView( rhs_v , rhs, AcceleratorRead); |   auto rhs_v = rhs.View(); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.View(); | ||||||
|   accelerator_for(ss,rhs_v.size(),1,{ |   accelerator_for(ss,rhs_v.size(),1,{ | ||||||
|     // FIXME had issues with scalar version of outer  |     // FIXME had issues with scalar version of outer  | ||||||
|     // Use vector [] operator and don't read coalesce this loop |     // Use vector [] operator and don't read coalesce this loop | ||||||
|   | |||||||
| @@ -51,9 +51,9 @@ static void sliceMaddMatrix (Lattice<vobj> &R,Eigen::MatrixXcd &aa,const Lattice | |||||||
|   int block =FullGrid->_slice_block [Orthog]; |   int block =FullGrid->_slice_block [Orthog]; | ||||||
|   int nblock=FullGrid->_slice_nblock[Orthog]; |   int nblock=FullGrid->_slice_nblock[Orthog]; | ||||||
|   int ostride=FullGrid->_ostride[Orthog]; |   int ostride=FullGrid->_ostride[Orthog]; | ||||||
|   autoView( X_v , X, CpuRead); |   auto X_v = X.View(); | ||||||
|   autoView( Y_v , Y, CpuRead); |   auto Y_v = Y.View(); | ||||||
|   autoView( R_v , R, CpuWrite); |   auto R_v = R.View(); | ||||||
|   thread_region |   thread_region | ||||||
|   { |   { | ||||||
|     std::vector<vobj> s_x(Nblock); |     std::vector<vobj> s_x(Nblock); | ||||||
| @@ -97,8 +97,8 @@ static void sliceMulMatrix (Lattice<vobj> &R,Eigen::MatrixXcd &aa,const Lattice< | |||||||
|   int nblock=FullGrid->_slice_nblock[Orthog]; |   int nblock=FullGrid->_slice_nblock[Orthog]; | ||||||
|   int ostride=FullGrid->_ostride[Orthog]; |   int ostride=FullGrid->_ostride[Orthog]; | ||||||
|  |  | ||||||
|   autoView( X_v , X, CpuRead); |   auto X_v = X.View(); | ||||||
|   autoView( R_v , R, CpuWrite); |   auto R_v = R.View(); | ||||||
|  |  | ||||||
|   thread_region |   thread_region | ||||||
|   { |   { | ||||||
| @@ -156,8 +156,8 @@ static void sliceInnerProductMatrix(  Eigen::MatrixXcd &mat, const Lattice<vobj> | |||||||
|   int ostride=FullGrid->_ostride[Orthog]; |   int ostride=FullGrid->_ostride[Orthog]; | ||||||
|  |  | ||||||
|   typedef typename vobj::vector_typeD vector_typeD; |   typedef typename vobj::vector_typeD vector_typeD; | ||||||
|   autoView( lhs_v , lhs, CpuRead); |   auto lhs_v = lhs.View(); | ||||||
|   autoView( rhs_v , rhs, CpuRead); |   auto rhs_v = rhs.View(); | ||||||
|   thread_region { |   thread_region { | ||||||
|     std::vector<vobj> Left(Nblock); |     std::vector<vobj> Left(Nblock); | ||||||
|     std::vector<vobj> Right(Nblock); |     std::vector<vobj> Right(Nblock); | ||||||
|   | |||||||
| @@ -46,9 +46,9 @@ auto PeekIndex(const Lattice<vobj> &lhs,int i) -> Lattice<decltype(peekIndex<Ind | |||||||
| { | { | ||||||
|   Lattice<decltype(peekIndex<Index>(vobj(),i))> ret(lhs.Grid()); |   Lattice<decltype(peekIndex<Index>(vobj(),i))> ret(lhs.Grid()); | ||||||
|   ret.Checkerboard()=lhs.Checkerboard(); |   ret.Checkerboard()=lhs.Checkerboard(); | ||||||
|   autoView( ret_v, ret, AcceleratorWrite); |   auto ret_v = ret.View(); | ||||||
|   autoView( lhs_v, lhs, AcceleratorRead); |   auto lhs_v = lhs.View(); | ||||||
|   accelerator_for( ss, lhs_v.size(), 1, { |   thread_for( ss, lhs_v.size(), { | ||||||
|     ret_v[ss] = peekIndex<Index>(lhs_v[ss],i); |     ret_v[ss] = peekIndex<Index>(lhs_v[ss],i); | ||||||
|   }); |   }); | ||||||
|   return ret; |   return ret; | ||||||
| @@ -58,9 +58,9 @@ auto PeekIndex(const Lattice<vobj> &lhs,int i,int j) -> Lattice<decltype(peekInd | |||||||
| { | { | ||||||
|   Lattice<decltype(peekIndex<Index>(vobj(),i,j))> ret(lhs.Grid()); |   Lattice<decltype(peekIndex<Index>(vobj(),i,j))> ret(lhs.Grid()); | ||||||
|   ret.Checkerboard()=lhs.Checkerboard(); |   ret.Checkerboard()=lhs.Checkerboard(); | ||||||
|   autoView( ret_v, ret, AcceleratorWrite); |   auto ret_v = ret.View(); | ||||||
|   autoView( lhs_v, lhs, AcceleratorRead); |   auto lhs_v = lhs.View(); | ||||||
|   accelerator_for( ss, lhs_v.size(), 1, { |   thread_for( ss, lhs_v.size(), { | ||||||
|     ret_v[ss] = peekIndex<Index>(lhs_v[ss],i,j); |     ret_v[ss] = peekIndex<Index>(lhs_v[ss],i,j); | ||||||
|   }); |   }); | ||||||
|   return ret; |   return ret; | ||||||
| @@ -72,18 +72,18 @@ auto PeekIndex(const Lattice<vobj> &lhs,int i,int j) -> Lattice<decltype(peekInd | |||||||
| template<int Index,class vobj>   | template<int Index,class vobj>   | ||||||
| void PokeIndex(Lattice<vobj> &lhs,const Lattice<decltype(peekIndex<Index>(vobj(),0))> & rhs,int i) | void PokeIndex(Lattice<vobj> &lhs,const Lattice<decltype(peekIndex<Index>(vobj(),0))> & rhs,int i) | ||||||
| { | { | ||||||
|   autoView( rhs_v, rhs, AcceleratorRead); |   auto rhs_v = rhs.View(); | ||||||
|   autoView( lhs_v, lhs, AcceleratorWrite); |   auto lhs_v = lhs.View(); | ||||||
|   accelerator_for( ss, lhs_v.size(), 1, { |   thread_for( ss, lhs_v.size(), { | ||||||
|     pokeIndex<Index>(lhs_v[ss],rhs_v[ss],i); |     pokeIndex<Index>(lhs_v[ss],rhs_v[ss],i); | ||||||
|   }); |   }); | ||||||
| } | } | ||||||
| template<int Index,class vobj>  | template<int Index,class vobj>  | ||||||
| void PokeIndex(Lattice<vobj> &lhs,const Lattice<decltype(peekIndex<Index>(vobj(),0,0))> & rhs,int i,int j) | void PokeIndex(Lattice<vobj> &lhs,const Lattice<decltype(peekIndex<Index>(vobj(),0,0))> & rhs,int i,int j) | ||||||
| { | { | ||||||
|   autoView( rhs_v, rhs, AcceleratorRead); |   auto rhs_v = rhs.View(); | ||||||
|   autoView( lhs_v, lhs, AcceleratorWrite); |   auto lhs_v = lhs.View(); | ||||||
|   accelerator_for( ss, lhs_v.size(), 1, { |   thread_for( ss, lhs_v.size(), { | ||||||
|     pokeIndex<Index>(lhs_v[ss],rhs_v[ss],i,j); |     pokeIndex<Index>(lhs_v[ss],rhs_v[ss],i,j); | ||||||
|   }); |   }); | ||||||
| } | } | ||||||
| @@ -111,7 +111,7 @@ void pokeSite(const sobj &s,Lattice<vobj> &l,const Coordinate &site){ | |||||||
|  |  | ||||||
|   // extract-modify-merge cycle is easiest way and this is not perf critical |   // extract-modify-merge cycle is easiest way and this is not perf critical | ||||||
|   ExtractBuffer<sobj> buf(Nsimd); |   ExtractBuffer<sobj> buf(Nsimd); | ||||||
|   autoView( l_v , l, CpuWrite); |   auto l_v = l.View(); | ||||||
|   if ( rank == grid->ThisRank() ) { |   if ( rank == grid->ThisRank() ) { | ||||||
|     extract(l_v[odx],buf); |     extract(l_v[odx],buf); | ||||||
|     buf[idx] = s; |     buf[idx] = s; | ||||||
| @@ -141,7 +141,7 @@ void peekSite(sobj &s,const Lattice<vobj> &l,const Coordinate &site){ | |||||||
|   grid->GlobalCoorToRankIndex(rank,odx,idx,site); |   grid->GlobalCoorToRankIndex(rank,odx,idx,site); | ||||||
|  |  | ||||||
|   ExtractBuffer<sobj> buf(Nsimd); |   ExtractBuffer<sobj> buf(Nsimd); | ||||||
|   autoView( l_v , l, CpuWrite); |   auto l_v = l.View(); | ||||||
|   extract(l_v[odx],buf); |   extract(l_v[odx],buf); | ||||||
|  |  | ||||||
|   s = buf[idx]; |   s = buf[idx]; | ||||||
| @@ -151,21 +151,21 @@ void peekSite(sobj &s,const Lattice<vobj> &l,const Coordinate &site){ | |||||||
|   return; |   return; | ||||||
| }; | }; | ||||||
|  |  | ||||||
|  |  | ||||||
| ////////////////////////////////////////////////////////// | ////////////////////////////////////////////////////////// | ||||||
| // Peek a scalar object from the SIMD array | // Peek a scalar object from the SIMD array | ||||||
| ////////////////////////////////////////////////////////// | ////////////////////////////////////////////////////////// | ||||||
| // Must be CPU read view |  | ||||||
| template<class vobj,class sobj> | template<class vobj,class sobj> | ||||||
| inline void peekLocalSite(sobj &s,const LatticeView<vobj> &l,Coordinate &site) | inline void peekLocalSite(sobj &s,const Lattice<vobj> &l,Coordinate &site){ | ||||||
| { |          | ||||||
|   GridBase *grid = l.getGrid(); |   GridBase *grid = l.Grid(); | ||||||
|   assert(l.mode==CpuRead); |  | ||||||
|   typedef typename vobj::scalar_type scalar_type; |   typedef typename vobj::scalar_type scalar_type; | ||||||
|   typedef typename vobj::vector_type vector_type; |   typedef typename vobj::vector_type vector_type; | ||||||
|  |  | ||||||
|   int Nsimd = grid->Nsimd(); |   int Nsimd = grid->Nsimd(); | ||||||
|  |  | ||||||
|   assert( l.Checkerboard()== grid->CheckerBoard(site)); |   assert( l.Checkerboard()== l.Grid()->CheckerBoard(site)); | ||||||
|   assert( sizeof(sobj)*Nsimd == sizeof(vobj)); |   assert( sizeof(sobj)*Nsimd == sizeof(vobj)); | ||||||
|  |  | ||||||
|   static const int words=sizeof(vobj)/sizeof(vector_type); |   static const int words=sizeof(vobj)/sizeof(vector_type); | ||||||
| @@ -173,7 +173,8 @@ inline void peekLocalSite(sobj &s,const LatticeView<vobj> &l,Coordinate &site) | |||||||
|   idx= grid->iIndex(site); |   idx= grid->iIndex(site); | ||||||
|   odx= grid->oIndex(site); |   odx= grid->oIndex(site); | ||||||
|    |    | ||||||
|   scalar_type * vp = (scalar_type *)&l[odx]; |   auto l_v = l.View(); | ||||||
|  |   scalar_type * vp = (scalar_type *)&l_v[odx]; | ||||||
|   scalar_type * pt = (scalar_type *)&s; |   scalar_type * pt = (scalar_type *)&s; | ||||||
|        |        | ||||||
|   for(int w=0;w<words;w++){ |   for(int w=0;w<words;w++){ | ||||||
| @@ -182,27 +183,18 @@ inline void peekLocalSite(sobj &s,const LatticeView<vobj> &l,Coordinate &site) | |||||||
|        |        | ||||||
|   return; |   return; | ||||||
| }; | }; | ||||||
| template<class vobj,class sobj> |  | ||||||
| inline void peekLocalSite(sobj &s,const Lattice<vobj> &l,Coordinate &site) |  | ||||||
| { |  | ||||||
|   autoView(lv,l,CpuRead); |  | ||||||
|   peekLocalSite(s,lv,site); |  | ||||||
|   return; |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| // Must be CPU write view |  | ||||||
| template<class vobj,class sobj> | template<class vobj,class sobj> | ||||||
| inline void pokeLocalSite(const sobj &s,LatticeView<vobj> &l,Coordinate &site) | inline void pokeLocalSite(const sobj &s,Lattice<vobj> &l,Coordinate &site){ | ||||||
| { |  | ||||||
|   GridBase *grid=l.getGrid(); |   GridBase *grid=l.Grid(); | ||||||
|   assert(l.mode==CpuWrite); |  | ||||||
|  |  | ||||||
|   typedef typename vobj::scalar_type scalar_type; |   typedef typename vobj::scalar_type scalar_type; | ||||||
|   typedef typename vobj::vector_type vector_type; |   typedef typename vobj::vector_type vector_type; | ||||||
|  |  | ||||||
|   int Nsimd = grid->Nsimd(); |   int Nsimd = grid->Nsimd(); | ||||||
|  |  | ||||||
|   assert( l.Checkerboard()== grid->CheckerBoard(site)); |   assert( l.Checkerboard()== l.Grid()->CheckerBoard(site)); | ||||||
|   assert( sizeof(sobj)*Nsimd == sizeof(vobj)); |   assert( sizeof(sobj)*Nsimd == sizeof(vobj)); | ||||||
|  |  | ||||||
|   static const int words=sizeof(vobj)/sizeof(vector_type); |   static const int words=sizeof(vobj)/sizeof(vector_type); | ||||||
| @@ -210,19 +202,13 @@ inline void pokeLocalSite(const sobj &s,LatticeView<vobj> &l,Coordinate &site) | |||||||
|   idx= grid->iIndex(site); |   idx= grid->iIndex(site); | ||||||
|   odx= grid->oIndex(site); |   odx= grid->oIndex(site); | ||||||
|  |  | ||||||
|   scalar_type * vp = (scalar_type *)&l[odx]; |   auto l_v = l.View(); | ||||||
|  |   scalar_type * vp = (scalar_type *)&l_v[odx]; | ||||||
|   scalar_type * pt = (scalar_type *)&s; |   scalar_type * pt = (scalar_type *)&s; | ||||||
|   for(int w=0;w<words;w++){ |   for(int w=0;w<words;w++){ | ||||||
|     vp[idx+w*Nsimd] = pt[w]; |     vp[idx+w*Nsimd] = pt[w]; | ||||||
|   } |   } | ||||||
|   return; |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| template<class vobj,class sobj> |  | ||||||
| inline void pokeLocalSite(const sobj &s, Lattice<vobj> &l,Coordinate &site) |  | ||||||
| { |  | ||||||
|   autoView(lv,l,CpuWrite); |  | ||||||
|   pokeLocalSite(s,lv,site); |  | ||||||
|   return; |   return; | ||||||
| }; | }; | ||||||
|  |  | ||||||
|   | |||||||
| @@ -1,79 +0,0 @@ | |||||||
| /************************************************************************************* |  | ||||||
|  |  | ||||||
|     Grid physics library, www.github.com/paboyle/Grid  |  | ||||||
|  |  | ||||||
|     Source file: ./lib/lattice/Lattice_reality.h |  | ||||||
|  |  | ||||||
|     Copyright (C) 2015 |  | ||||||
|  |  | ||||||
| Author: Azusa Yamaguchi <ayamaguc@staffmail.ed.ac.uk> |  | ||||||
| Author: Peter Boyle <paboyle@ph.ed.ac.uk> |  | ||||||
| Author: neo <cossu@post.kek.jp> |  | ||||||
|  |  | ||||||
|     This program is free software; you can redistribute it and/or modify |  | ||||||
|     it under the terms of the GNU General Public License as published by |  | ||||||
|     the Free Software Foundation; either version 2 of the License, or |  | ||||||
|     (at your option) any later version. |  | ||||||
|  |  | ||||||
|     This program is distributed in the hope that it will be useful, |  | ||||||
|     but WITHOUT ANY WARRANTY; without even the implied warranty of |  | ||||||
|     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the |  | ||||||
|     GNU General Public License for more details. |  | ||||||
|  |  | ||||||
|     You should have received a copy of the GNU General Public License along |  | ||||||
|     with this program; if not, write to the Free Software Foundation, Inc., |  | ||||||
|     51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. |  | ||||||
|  |  | ||||||
|     See the full license in the file "LICENSE" in the top level distribution directory |  | ||||||
| *************************************************************************************/ |  | ||||||
| /*  END LEGAL */ |  | ||||||
| #ifndef GRID_LATTICE_REAL_IMAG_H |  | ||||||
| #define GRID_LATTICE_REAL_IMAG_H |  | ||||||
|  |  | ||||||
|  |  | ||||||
| // FIXME .. this is the sector of the code  |  | ||||||
| // I am most worried about the directions |  | ||||||
| // The choice of burying complex in the SIMD |  | ||||||
| // is making the use of "real" and "imag" very cumbersome |  | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); |  | ||||||
|  |  | ||||||
| template<class vobj> inline Lattice<vobj> real(const Lattice<vobj> &lhs){ |  | ||||||
|   Lattice<vobj> ret(lhs.Grid()); |  | ||||||
|  |  | ||||||
|   autoView( lhs_v, lhs, AcceleratorRead); |  | ||||||
|   autoView( ret_v, ret, AcceleratorWrite); |  | ||||||
|  |  | ||||||
|   ret.Checkerboard()=lhs.Checkerboard(); |  | ||||||
|   accelerator_for( ss, lhs_v.size(), 1, { |  | ||||||
|     ret_v[ss] =real(lhs_v[ss]); |  | ||||||
|   }); |  | ||||||
|   return ret; |  | ||||||
| }; |  | ||||||
| template<class vobj> inline Lattice<vobj> imag(const Lattice<vobj> &lhs){ |  | ||||||
|   Lattice<vobj> ret(lhs.Grid()); |  | ||||||
|  |  | ||||||
|   autoView( lhs_v, lhs, AcceleratorRead); |  | ||||||
|   autoView( ret_v, ret, AcceleratorWrite); |  | ||||||
|  |  | ||||||
|   ret.Checkerboard()=lhs.Checkerboard(); |  | ||||||
|   accelerator_for( ss, lhs_v.size(), 1, { |  | ||||||
|     ret_v[ss] =imag(lhs_v[ss]); |  | ||||||
|   }); |  | ||||||
|   return ret; |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| template<class Expression,typename std::enable_if<is_lattice_expr<Expression>::value,void>::type * = nullptr>  |  | ||||||
|   auto real(const Expression &expr) -> decltype(real(closure(expr)))		 |  | ||||||
| {									 |  | ||||||
|   return real(closure(expr));					 |  | ||||||
| } |  | ||||||
| template<class Expression,typename std::enable_if<is_lattice_expr<Expression>::value,void>::type * = nullptr>  |  | ||||||
|   auto imag(const Expression &expr) -> decltype(imag(closure(expr)))		 |  | ||||||
| {									 |  | ||||||
|   return imag(closure(expr));					 |  | ||||||
| } |  | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); |  | ||||||
|  |  | ||||||
| #endif |  | ||||||
| @@ -40,77 +40,26 @@ NAMESPACE_BEGIN(Grid); | |||||||
|  |  | ||||||
| template<class vobj> inline Lattice<vobj> adj(const Lattice<vobj> &lhs){ | template<class vobj> inline Lattice<vobj> adj(const Lattice<vobj> &lhs){ | ||||||
|   Lattice<vobj> ret(lhs.Grid()); |   Lattice<vobj> ret(lhs.Grid()); | ||||||
|  |  | ||||||
|   autoView( lhs_v, lhs, AcceleratorRead); |  | ||||||
|   autoView( ret_v, ret, AcceleratorWrite); |  | ||||||
|  |  | ||||||
|   ret.Checkerboard()=lhs.Checkerboard(); |   ret.Checkerboard()=lhs.Checkerboard(); | ||||||
|   accelerator_for( ss, lhs_v.size(), 1, { |   auto lhs_v = lhs.View(); | ||||||
|      ret_v[ss] = adj(lhs_v[ss]); |   auto ret_v = ret.View(); | ||||||
|  |   accelerator_for( ss, lhs_v.size(), vobj::Nsimd(), { | ||||||
|  |     coalescedWrite(ret_v[ss], adj(lhs_v(ss))); | ||||||
|   }); |   }); | ||||||
|   return ret; |   return ret; | ||||||
| }; | }; | ||||||
|  |  | ||||||
| template<class vobj> inline Lattice<vobj> conjugate(const Lattice<vobj> &lhs){ | template<class vobj> inline Lattice<vobj> conjugate(const Lattice<vobj> &lhs){ | ||||||
|   Lattice<vobj> ret(lhs.Grid()); |   Lattice<vobj> ret(lhs.Grid()); | ||||||
|  |  | ||||||
|   autoView( lhs_v, lhs, AcceleratorRead); |  | ||||||
|   autoView( ret_v, ret, AcceleratorWrite); |  | ||||||
|  |  | ||||||
|   ret.Checkerboard() = lhs.Checkerboard(); |   ret.Checkerboard() = lhs.Checkerboard(); | ||||||
|  |   auto lhs_v = lhs.View(); | ||||||
|  |   auto ret_v = ret.View(); | ||||||
|   accelerator_for( ss, lhs_v.size(), vobj::Nsimd(), { |   accelerator_for( ss, lhs_v.size(), vobj::Nsimd(), { | ||||||
|     coalescedWrite( ret_v[ss] , conjugate(lhs_v(ss))); |     coalescedWrite( ret_v[ss] , conjugate(lhs_v(ss))); | ||||||
|   }); |   }); | ||||||
|   return ret; |   return ret; | ||||||
| }; | }; | ||||||
|  |  | ||||||
| template<class vobj> inline Lattice<typename vobj::Complexified> toComplex(const Lattice<vobj> &lhs){ |  | ||||||
|   Lattice<typename vobj::Complexified> ret(lhs.Grid()); |  | ||||||
|  |  | ||||||
|   autoView( lhs_v, lhs, AcceleratorRead); |  | ||||||
|   autoView( ret_v, ret, AcceleratorWrite); |  | ||||||
|  |  | ||||||
|   ret.Checkerboard() = lhs.Checkerboard(); |  | ||||||
|   accelerator_for( ss, lhs_v.size(), 1, { |  | ||||||
|     ret_v[ss] = toComplex(lhs_v[ss]); |  | ||||||
|   }); |  | ||||||
|   return ret; |  | ||||||
| }; |  | ||||||
| template<class vobj> inline Lattice<typename vobj::Realified> toReal(const Lattice<vobj> &lhs){ |  | ||||||
|   Lattice<typename vobj::Realified> ret(lhs.Grid()); |  | ||||||
|  |  | ||||||
|   autoView( lhs_v, lhs, AcceleratorRead); |  | ||||||
|   autoView( ret_v, ret, AcceleratorWrite); |  | ||||||
|  |  | ||||||
|   ret.Checkerboard() = lhs.Checkerboard(); |  | ||||||
|   accelerator_for( ss, lhs_v.size(), 1, { |  | ||||||
|     ret_v[ss] = toReal(lhs_v[ss]); |  | ||||||
|   }); |  | ||||||
|   return ret; |  | ||||||
| }; |  | ||||||
|  |  | ||||||
|  |  | ||||||
| template<class Expression,typename std::enable_if<is_lattice_expr<Expression>::value,void>::type * = nullptr>  |  | ||||||
| auto toComplex(const Expression &expr)  -> decltype(closure(expr))  |  | ||||||
| { |  | ||||||
|   return toComplex(closure(expr)); |  | ||||||
| } |  | ||||||
| template<class Expression,typename std::enable_if<is_lattice_expr<Expression>::value,void>::type * = nullptr>  |  | ||||||
| auto toReal(const Expression &expr)  -> decltype(closure(expr))  |  | ||||||
| { |  | ||||||
|   return toReal(closure(expr)); |  | ||||||
| } |  | ||||||
| template<class Expression,typename std::enable_if<is_lattice_expr<Expression>::value,void>::type * = nullptr>  |  | ||||||
| auto adj(const Expression &expr)  -> decltype(closure(expr))  |  | ||||||
| { |  | ||||||
|   return adj(closure(expr)); |  | ||||||
| } |  | ||||||
| template<class Expression,typename std::enable_if<is_lattice_expr<Expression>::value,void>::type * = nullptr>  |  | ||||||
| auto conjugate(const Expression &expr)  -> decltype(closure(expr))  |  | ||||||
| { |  | ||||||
|   return conjugate(closure(expr)); |  | ||||||
| } |  | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); | NAMESPACE_END(Grid); | ||||||
|  |  | ||||||
| #endif | #endif | ||||||
|   | |||||||
| @@ -25,7 +25,7 @@ Author: Christoph Lehner <christoph@lhnr.de> | |||||||
| #include <Grid/Grid_Eigen_Dense.h> | #include <Grid/Grid_Eigen_Dense.h> | ||||||
|  |  | ||||||
|  |  | ||||||
| #if defined(GRID_CUDA)||defined(GRID_HIP) | #ifdef GRID_NVCC | ||||||
| #include <Grid/lattice/Lattice_reduction_gpu.h> | #include <Grid/lattice/Lattice_reduction_gpu.h> | ||||||
| #endif | #endif | ||||||
|  |  | ||||||
| @@ -39,7 +39,7 @@ inline typename vobj::scalar_object sum_cpu(const vobj *arg, Integer osites) | |||||||
| { | { | ||||||
|   typedef typename vobj::scalar_object  sobj; |   typedef typename vobj::scalar_object  sobj; | ||||||
|  |  | ||||||
|   //  const int Nsimd = vobj::Nsimd(); |   const int Nsimd = vobj::Nsimd(); | ||||||
|   const int nthread = GridThread::GetThreads(); |   const int nthread = GridThread::GetThreads(); | ||||||
|  |  | ||||||
|   Vector<sobj> sumarray(nthread); |   Vector<sobj> sumarray(nthread); | ||||||
| @@ -62,99 +62,24 @@ inline typename vobj::scalar_object sum_cpu(const vobj *arg, Integer osites) | |||||||
|   for(int i=0;i<nthread;i++){ |   for(int i=0;i<nthread;i++){ | ||||||
|     ssum = ssum+sumarray[i]; |     ssum = ssum+sumarray[i]; | ||||||
|   }  |   }  | ||||||
|  |    | ||||||
|   return ssum; |   return ssum; | ||||||
| } | } | ||||||
| template<class vobj> | template<class vobj> | ||||||
| inline typename vobj::scalar_objectD sumD_cpu(const vobj *arg, Integer osites) |  | ||||||
| { |  | ||||||
|   typedef typename vobj::scalar_objectD  sobj; |  | ||||||
|  |  | ||||||
|   const int nthread = GridThread::GetThreads(); |  | ||||||
|  |  | ||||||
|   Vector<sobj> sumarray(nthread); |  | ||||||
|   for(int i=0;i<nthread;i++){ |  | ||||||
|     sumarray[i]=Zero(); |  | ||||||
|   } |  | ||||||
|    |  | ||||||
|   thread_for(thr,nthread, { |  | ||||||
|     int nwork, mywork, myoff; |  | ||||||
|     nwork = osites; |  | ||||||
|     GridThread::GetWork(nwork,thr,mywork,myoff); |  | ||||||
|     vobj vvsum=Zero(); |  | ||||||
|     for(int ss=myoff;ss<mywork+myoff; ss++){ |  | ||||||
|       vvsum = vvsum + arg[ss]; |  | ||||||
|     } |  | ||||||
|     sumarray[thr]=Reduce(vvsum); |  | ||||||
|   }); |  | ||||||
|    |  | ||||||
|   sobj ssum=Zero();  // sum across threads |  | ||||||
|   for(int i=0;i<nthread;i++){ |  | ||||||
|     ssum = ssum+sumarray[i]; |  | ||||||
|   }  |  | ||||||
|    |  | ||||||
|   typedef typename vobj::scalar_object ssobj; |  | ||||||
|   ssobj ret = ssum; |  | ||||||
|   return ret; |  | ||||||
| } |  | ||||||
| /* |  | ||||||
| Threaded max, don't use for now |  | ||||||
| template<class Double> |  | ||||||
| inline Double max(const Double *arg, Integer osites) |  | ||||||
| { |  | ||||||
|   //  const int Nsimd = vobj::Nsimd(); |  | ||||||
|   const int nthread = GridThread::GetThreads(); |  | ||||||
|  |  | ||||||
|   std::vector<Double> maxarray(nthread); |  | ||||||
|    |  | ||||||
|   thread_for(thr,nthread, { |  | ||||||
|     int nwork, mywork, myoff; |  | ||||||
|     nwork = osites; |  | ||||||
|     GridThread::GetWork(nwork,thr,mywork,myoff); |  | ||||||
|     Double max=arg[0]; |  | ||||||
|     for(int ss=myoff;ss<mywork+myoff; ss++){ |  | ||||||
|       if( arg[ss] > max ) max = arg[ss]; |  | ||||||
|     } |  | ||||||
|     maxarray[thr]=max; |  | ||||||
|   }); |  | ||||||
|    |  | ||||||
|   Double tmax=maxarray[0]; |  | ||||||
|   for(int i=0;i<nthread;i++){ |  | ||||||
|     if (maxarray[i]>tmax) tmax = maxarray[i]; |  | ||||||
|   }  |  | ||||||
|   return tmax; |  | ||||||
| } |  | ||||||
| */ |  | ||||||
| template<class vobj> |  | ||||||
| inline typename vobj::scalar_object sum(const vobj *arg, Integer osites) | inline typename vobj::scalar_object sum(const vobj *arg, Integer osites) | ||||||
| { | { | ||||||
| #if defined(GRID_CUDA)||defined(GRID_HIP) | #ifdef GRID_NVCC | ||||||
|   return sum_gpu(arg,osites); |   return sum_gpu(arg,osites); | ||||||
| #else | #else | ||||||
|   return sum_cpu(arg,osites); |   return sum_cpu(arg,osites); | ||||||
| #endif   | #endif   | ||||||
| } | } | ||||||
| template<class vobj> |  | ||||||
| inline typename vobj::scalar_objectD sumD(const vobj *arg, Integer osites) |  | ||||||
| { |  | ||||||
| #if defined(GRID_CUDA)||defined(GRID_HIP) |  | ||||||
|   return sumD_gpu(arg,osites); |  | ||||||
| #else |  | ||||||
|   return sumD_cpu(arg,osites); |  | ||||||
| #endif   |  | ||||||
| } |  | ||||||
|  |  | ||||||
| template<class vobj> | template<class vobj> | ||||||
| inline typename vobj::scalar_object sum(const Lattice<vobj> &arg) | inline typename vobj::scalar_object sum(const Lattice<vobj> &arg) | ||||||
| { | { | ||||||
| #if defined(GRID_CUDA)||defined(GRID_HIP) |   auto arg_v = arg.View(); | ||||||
|   autoView( arg_v, arg, AcceleratorRead); |  | ||||||
|   Integer osites = arg.Grid()->oSites(); |   Integer osites = arg.Grid()->oSites(); | ||||||
|   auto ssum= sum_gpu(&arg_v[0],osites); |   auto ssum= sum(&arg_v[0],osites); | ||||||
| #else |  | ||||||
|   autoView(arg_v, arg, CpuRead); |  | ||||||
|   Integer osites = arg.Grid()->oSites(); |  | ||||||
|   auto ssum= sum_cpu(&arg_v[0],osites); |  | ||||||
| #endif   |  | ||||||
|   arg.Grid()->GlobalSum(ssum); |   arg.Grid()->GlobalSum(ssum); | ||||||
|   return ssum; |   return ssum; | ||||||
| } | } | ||||||
| @@ -167,32 +92,6 @@ template<class vobj> inline RealD norm2(const Lattice<vobj> &arg){ | |||||||
|   return real(nrm);  |   return real(nrm);  | ||||||
| } | } | ||||||
|  |  | ||||||
| //The global maximum of the site norm2 |  | ||||||
| template<class vobj> inline RealD maxLocalNorm2(const Lattice<vobj> &arg) |  | ||||||
| { |  | ||||||
|   typedef typename vobj::tensor_reduced vscalar;  //iScalar<iScalar<.... <vPODtype> > > |  | ||||||
|   typedef typename vscalar::scalar_object  scalar;   //iScalar<iScalar<.... <PODtype> > > |  | ||||||
|  |  | ||||||
|   Lattice<vscalar> inner = localNorm2(arg); |  | ||||||
|  |  | ||||||
|   auto grid = arg.Grid(); |  | ||||||
|  |  | ||||||
|   RealD max; |  | ||||||
|   for(int l=0;l<grid->lSites();l++){ |  | ||||||
|     Coordinate coor; |  | ||||||
|     scalar val; |  | ||||||
|     RealD r; |  | ||||||
|     grid->LocalIndexToLocalCoor(l,coor); |  | ||||||
|     peekLocalSite(val,inner,coor); |  | ||||||
|     r=real(TensorRemove(val)); |  | ||||||
|     if( (l==0) || (r>max)){ |  | ||||||
|       max=r; |  | ||||||
|     } |  | ||||||
|   } |  | ||||||
|   grid->GlobalMax(max); |  | ||||||
|   return max; |  | ||||||
| } |  | ||||||
|  |  | ||||||
| // Double inner product | // Double inner product | ||||||
| template<class vobj> | template<class vobj> | ||||||
| inline ComplexD rankInnerProduct(const Lattice<vobj> &left,const Lattice<vobj> &right) | inline ComplexD rankInnerProduct(const Lattice<vobj> &left,const Lattice<vobj> &right) | ||||||
| @@ -203,29 +102,42 @@ inline ComplexD rankInnerProduct(const Lattice<vobj> &left,const Lattice<vobj> & | |||||||
|    |    | ||||||
|   GridBase *grid = left.Grid(); |   GridBase *grid = left.Grid(); | ||||||
|    |    | ||||||
|  |   // Might make all code paths go this way. | ||||||
|  |   auto left_v = left.AcceleratorView(ViewRead); | ||||||
|  |   auto right_v=right.AcceleratorView(ViewRead); | ||||||
|  |  | ||||||
|   const uint64_t nsimd = grid->Nsimd(); |   const uint64_t nsimd = grid->Nsimd(); | ||||||
|   const uint64_t sites = grid->oSites(); |   const uint64_t sites = grid->oSites(); | ||||||
|    |    | ||||||
|   // Might make all code paths go this way. | #ifdef GRID_NVCC | ||||||
|   typedef decltype(innerProductD(vobj(),vobj())) inner_t; |   // GPU - SIMT lane compliance... | ||||||
|  |   typedef decltype(innerProduct(left_v[0],right_v[0])) inner_t; | ||||||
|   Vector<inner_t> inner_tmp(sites); |   Vector<inner_t> inner_tmp(sites); | ||||||
|   auto inner_tmp_v = &inner_tmp[0]; |   auto inner_tmp_v = &inner_tmp[0]; | ||||||
|    |    | ||||||
|   { |  | ||||||
|     autoView( left_v , left, AcceleratorRead); |  | ||||||
|     autoView( right_v,right, AcceleratorRead); |  | ||||||
|  |  | ||||||
|     // GPU - SIMT lane compliance... |   accelerator_for( ss, sites, nsimd,{ | ||||||
|     accelerator_for( ss, sites, 1,{ |       auto x_l = left_v(ss); | ||||||
|  |       auto y_l = right_v(ss); | ||||||
|  |       coalescedWrite(inner_tmp_v[ss],innerProduct(x_l,y_l)); | ||||||
|  |   }) | ||||||
|  |  | ||||||
|  |   // This is in single precision and fails some tests | ||||||
|  |   // Need a sumD that sums in double | ||||||
|  |   nrm = TensorRemove(sumD_gpu(inner_tmp_v,sites));   | ||||||
|  | #else | ||||||
|  |   // CPU  | ||||||
|  |   typedef decltype(innerProductD(left_v[0],right_v[0])) inner_t; | ||||||
|  |   Vector<inner_t> inner_tmp(sites); | ||||||
|  |   auto inner_tmp_v = &inner_tmp[0]; | ||||||
|  |    | ||||||
|  |   accelerator_for( ss, sites, nsimd,{ | ||||||
|       auto x_l = left_v[ss]; |       auto x_l = left_v[ss]; | ||||||
|       auto y_l = right_v[ss]; |       auto y_l = right_v[ss]; | ||||||
|       inner_tmp_v[ss]=innerProductD(x_l,y_l); |       inner_tmp_v[ss]=innerProductD(x_l,y_l); | ||||||
|     }); |   }) | ||||||
|   } |   nrm = TensorRemove(sum(inner_tmp_v,sites)); | ||||||
|  | #endif | ||||||
|   // This is in single precision and fails some tests |  | ||||||
|   auto anrm = sum(inner_tmp_v,sites);   |  | ||||||
|   nrm = anrm; |  | ||||||
|   return nrm; |   return nrm; | ||||||
| } | } | ||||||
|  |  | ||||||
| @@ -263,24 +175,40 @@ axpby_norm_fast(Lattice<vobj> &z,sobj a,sobj b,const Lattice<vobj> &x,const Latt | |||||||
|    |    | ||||||
|   GridBase *grid = x.Grid(); |   GridBase *grid = x.Grid(); | ||||||
|  |  | ||||||
|  |   auto x_v=x.AcceleratorView(ViewRead); | ||||||
|  |   auto y_v=y.AcceleratorView(ViewRead); | ||||||
|  |   auto z_v=z.AcceleratorView(ViewWrite); | ||||||
|  |  | ||||||
|   const uint64_t nsimd = grid->Nsimd(); |   const uint64_t nsimd = grid->Nsimd(); | ||||||
|   const uint64_t sites = grid->oSites(); |   const uint64_t sites = grid->oSites(); | ||||||
|    |    | ||||||
|  | #ifdef GRID_NVCC | ||||||
|   // GPU |   // GPU | ||||||
|   autoView( x_v, x, AcceleratorRead); |   typedef decltype(innerProduct(x_v[0],y_v[0])) inner_t; | ||||||
|   autoView( y_v, y, AcceleratorRead); |   Vector<inner_t> inner_tmp(sites); | ||||||
|   autoView( z_v, z, AcceleratorWrite); |   auto inner_tmp_v = &inner_tmp[0]; | ||||||
|  |  | ||||||
|  |   accelerator_for( ss, sites, nsimd,{ | ||||||
|  |       auto tmp = a*x_v(ss)+b*y_v(ss); | ||||||
|  |       coalescedWrite(inner_tmp_v[ss],innerProduct(tmp,tmp)); | ||||||
|  |       coalescedWrite(z_v[ss],tmp); | ||||||
|  |   }); | ||||||
|  |  | ||||||
|  |   nrm = real(TensorRemove(sumD_gpu(inner_tmp_v,sites))); | ||||||
|  | #else | ||||||
|  |   // CPU  | ||||||
|   typedef decltype(innerProductD(x_v[0],y_v[0])) inner_t; |   typedef decltype(innerProductD(x_v[0],y_v[0])) inner_t; | ||||||
|   Vector<inner_t> inner_tmp(sites); |   Vector<inner_t> inner_tmp(sites); | ||||||
|   auto inner_tmp_v = &inner_tmp[0]; |   auto inner_tmp_v = &inner_tmp[0]; | ||||||
|    |    | ||||||
|   accelerator_for( ss, sites, 1,{ |   accelerator_for( ss, sites, nsimd,{ | ||||||
|       auto tmp = a*x_v[ss]+b*y_v[ss]; |       auto tmp = a*x_v(ss)+b*y_v(ss); | ||||||
|       inner_tmp_v[ss]=innerProductD(tmp,tmp); |       inner_tmp_v[ss]=innerProductD(tmp,tmp); | ||||||
|       z_v[ss]=tmp; |       z_v[ss]=tmp; | ||||||
|   }); |   }); | ||||||
|  |   // Already promoted to double | ||||||
|   nrm = real(TensorRemove(sum(inner_tmp_v,sites))); |   nrm = real(TensorRemove(sum(inner_tmp_v,sites))); | ||||||
|  | #endif | ||||||
|   grid->GlobalSum(nrm); |   grid->GlobalSum(nrm); | ||||||
|   return nrm;  |   return nrm;  | ||||||
| } | } | ||||||
| @@ -296,29 +224,47 @@ innerProductNorm(ComplexD& ip, RealD &nrm, const Lattice<vobj> &left,const Latti | |||||||
|  |  | ||||||
|   GridBase *grid = left.Grid(); |   GridBase *grid = left.Grid(); | ||||||
|  |  | ||||||
|  |   auto left_v=left.AcceleratorView(ViewRead); | ||||||
|  |   auto right_v=right.AcceleratorView(ViewRead); | ||||||
|  |  | ||||||
|   const uint64_t nsimd = grid->Nsimd(); |   const uint64_t nsimd = grid->Nsimd(); | ||||||
|   const uint64_t sites = grid->oSites(); |   const uint64_t sites = grid->oSites(); | ||||||
|  |  | ||||||
|  | #ifdef GRID_NVCC | ||||||
|   // GPU |   // GPU | ||||||
|   typedef decltype(innerProductD(vobj(),vobj())) inner_t; |   typedef decltype(innerProduct(left_v[0],right_v[0])) inner_t; | ||||||
|   typedef decltype(innerProductD(vobj(),vobj())) norm_t; |   typedef decltype(innerProduct(left_v[0],left_v[0])) norm_t; | ||||||
|   Vector<inner_t> inner_tmp(sites); |   Vector<inner_t> inner_tmp(sites); | ||||||
|   Vector<norm_t> norm_tmp(sites); |   Vector<norm_t> norm_tmp(sites); | ||||||
|   auto inner_tmp_v = &inner_tmp[0]; |   auto inner_tmp_v = &inner_tmp[0]; | ||||||
|   auto norm_tmp_v = &norm_tmp[0]; |   auto norm_tmp_v = &norm_tmp[0]; | ||||||
|   { |  | ||||||
|     autoView(left_v,left, AcceleratorRead); |  | ||||||
|     autoView(right_v,right,AcceleratorRead); |  | ||||||
|     accelerator_for( ss, sites, 1,{ |  | ||||||
| 	auto left_tmp = left_v[ss]; |  | ||||||
| 	inner_tmp_v[ss]=innerProductD(left_tmp,right_v[ss]); |  | ||||||
|         norm_tmp_v [ss]=innerProductD(left_tmp,left_tmp); |  | ||||||
|       }); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|  |   accelerator_for( ss, sites, nsimd,{ | ||||||
|  |       auto left_tmp = left_v(ss); | ||||||
|  |       coalescedWrite(inner_tmp_v[ss],innerProduct(left_tmp,right_v(ss))); | ||||||
|  |       coalescedWrite(norm_tmp_v[ss],innerProduct(left_tmp,left_tmp)); | ||||||
|  |   }); | ||||||
|  |  | ||||||
|  |   tmp[0] = TensorRemove(sumD_gpu(inner_tmp_v,sites)); | ||||||
|  |   tmp[1] = TensorRemove(sumD_gpu(norm_tmp_v,sites)); | ||||||
|  | #else | ||||||
|  |   // CPU | ||||||
|  |   typedef decltype(innerProductD(left_v[0],right_v[0])) inner_t; | ||||||
|  |   typedef decltype(innerProductD(left_v[0],left_v[0])) norm_t; | ||||||
|  |   Vector<inner_t> inner_tmp(sites); | ||||||
|  |   Vector<norm_t> norm_tmp(sites); | ||||||
|  |   auto inner_tmp_v = &inner_tmp[0]; | ||||||
|  |   auto norm_tmp_v = &norm_tmp[0]; | ||||||
|  |  | ||||||
|  |   accelerator_for( ss, sites, nsimd,{ | ||||||
|  |       auto left_tmp = left_v(ss); | ||||||
|  |       inner_tmp_v[ss] = innerProductD(left_tmp,right_v(ss)); | ||||||
|  |       norm_tmp_v[ss] = innerProductD(left_tmp,left_tmp); | ||||||
|  |   }); | ||||||
|  |   // Already promoted to double | ||||||
|   tmp[0] = TensorRemove(sum(inner_tmp_v,sites)); |   tmp[0] = TensorRemove(sum(inner_tmp_v,sites)); | ||||||
|   tmp[1] = TensorRemove(sum(norm_tmp_v,sites)); |   tmp[1] = TensorRemove(sum(norm_tmp_v,sites)); | ||||||
|  | #endif | ||||||
|   grid->GlobalSumVector(&tmp[0],2); // keep norm Complex -> can use GlobalSumVector |   grid->GlobalSumVector(&tmp[0],2); // keep norm Complex -> can use GlobalSumVector | ||||||
|   ip = tmp[0]; |   ip = tmp[0]; | ||||||
|   nrm = real(tmp[1]); |   nrm = real(tmp[1]); | ||||||
| @@ -361,7 +307,6 @@ template<class vobj> inline void sliceSum(const Lattice<vobj> &Data,std::vector< | |||||||
|   // But easily avoided by using double precision fields |   // But easily avoided by using double precision fields | ||||||
|   /////////////////////////////////////////////////////// |   /////////////////////////////////////////////////////// | ||||||
|   typedef typename vobj::scalar_object sobj; |   typedef typename vobj::scalar_object sobj; | ||||||
|   typedef typename vobj::scalar_object::scalar_type scalar_type; |  | ||||||
|   GridBase  *grid = Data.Grid(); |   GridBase  *grid = Data.Grid(); | ||||||
|   assert(grid!=NULL); |   assert(grid!=NULL); | ||||||
|  |  | ||||||
| @@ -390,7 +335,7 @@ template<class vobj> inline void sliceSum(const Lattice<vobj> &Data,std::vector< | |||||||
|  |  | ||||||
|   // sum over reduced dimension planes, breaking out orthog dir |   // sum over reduced dimension planes, breaking out orthog dir | ||||||
|   // Parallel over orthog direction |   // Parallel over orthog direction | ||||||
|   autoView( Data_v, Data, CpuRead); |   auto Data_v=Data.View(); | ||||||
|   thread_for( r,rd, { |   thread_for( r,rd, { | ||||||
|     int so=r*grid->_ostride[orthogdim]; // base offset for start of plane  |     int so=r*grid->_ostride[orthogdim]; // base offset for start of plane  | ||||||
|     for(int n=0;n<e1;n++){ |     for(int n=0;n<e1;n++){ | ||||||
| @@ -420,19 +365,20 @@ template<class vobj> inline void sliceSum(const Lattice<vobj> &Data,std::vector< | |||||||
|   } |   } | ||||||
|    |    | ||||||
|   // sum over nodes. |   // sum over nodes. | ||||||
|  |   sobj gsum; | ||||||
|   for(int t=0;t<fd;t++){ |   for(int t=0;t<fd;t++){ | ||||||
|     int pt = t/ld; // processor plane |     int pt = t/ld; // processor plane | ||||||
|     int lt = t%ld; |     int lt = t%ld; | ||||||
|     if ( pt == grid->_processor_coor[orthogdim] ) { |     if ( pt == grid->_processor_coor[orthogdim] ) { | ||||||
|       result[t]=lsSum[lt]; |       gsum=lsSum[lt]; | ||||||
|     } else { |     } else { | ||||||
|       result[t]=Zero(); |       gsum=Zero(); | ||||||
|     } |     } | ||||||
|  |  | ||||||
|  |     grid->GlobalSum(gsum); | ||||||
|  |  | ||||||
|  |     result[t]=gsum; | ||||||
|   } |   } | ||||||
|   scalar_type * ptr = (scalar_type *) &result[0]; |  | ||||||
|   int words = fd*sizeof(sobj)/sizeof(scalar_type); |  | ||||||
|   grid->GlobalSumVector(ptr, words); |  | ||||||
| } | } | ||||||
|  |  | ||||||
| template<class vobj> | template<class vobj> | ||||||
| @@ -467,8 +413,8 @@ static void sliceInnerProductVector( std::vector<ComplexD> & result, const Latti | |||||||
|   int e2=    grid->_slice_block [orthogdim]; |   int e2=    grid->_slice_block [orthogdim]; | ||||||
|   int stride=grid->_slice_stride[orthogdim]; |   int stride=grid->_slice_stride[orthogdim]; | ||||||
|  |  | ||||||
|   autoView( lhv, lhs, CpuRead); |   auto lhv=lhs.View(); | ||||||
|   autoView( rhv, rhs, CpuRead); |   auto rhv=rhs.View(); | ||||||
|   thread_for( r,rd,{ |   thread_for( r,rd,{ | ||||||
|  |  | ||||||
|     int so=r*grid->_ostride[orthogdim]; // base offset for start of plane  |     int so=r*grid->_ostride[orthogdim]; // base offset for start of plane  | ||||||
| @@ -575,12 +521,14 @@ static void sliceMaddVector(Lattice<vobj> &R,std::vector<RealD> &a,const Lattice | |||||||
|  |  | ||||||
|     tensor_reduced at; at=av; |     tensor_reduced at; at=av; | ||||||
|  |  | ||||||
|     autoView( Rv, R, CpuWrite); |     auto Rv=R.View(); | ||||||
|     autoView( Xv, X, CpuRead); |     auto Xv=X.View(); | ||||||
|     autoView( Yv, Y, CpuRead); |     auto Yv=Y.View(); | ||||||
|     thread_for2d( n, e1, b,e2, { |     thread_for_collapse(2, n, e1, { | ||||||
|  |       for(int b=0;b<e2;b++){ | ||||||
| 	int ss= so+n*stride+b; | 	int ss= so+n*stride+b; | ||||||
| 	Rv[ss] = at*Xv[ss]+Yv[ss]; | 	Rv[ss] = at*Xv[ss]+Yv[ss]; | ||||||
|  |       } | ||||||
|     }); |     }); | ||||||
|   } |   } | ||||||
| }; | }; | ||||||
| @@ -633,9 +581,9 @@ static void sliceMaddMatrix (Lattice<vobj> &R,Eigen::MatrixXcd &aa,const Lattice | |||||||
|   int nblock=FullGrid->_slice_nblock[Orthog]; |   int nblock=FullGrid->_slice_nblock[Orthog]; | ||||||
|   int ostride=FullGrid->_ostride[Orthog]; |   int ostride=FullGrid->_ostride[Orthog]; | ||||||
|  |  | ||||||
|   autoView( X_v, X, CpuRead); |   auto X_v=X.View(); | ||||||
|   autoView( Y_v, Y, CpuRead); |   auto Y_v=Y.View(); | ||||||
|   autoView( R_v, R, CpuWrite); |   auto R_v=R.View(); | ||||||
|   thread_region |   thread_region | ||||||
|   { |   { | ||||||
|     Vector<vobj> s_x(Nblock); |     Vector<vobj> s_x(Nblock); | ||||||
| @@ -680,14 +628,13 @@ static void sliceMulMatrix (Lattice<vobj> &R,Eigen::MatrixXcd &aa,const Lattice< | |||||||
|   //  int nl=1; |   //  int nl=1; | ||||||
|  |  | ||||||
|   //FIXME package in a convenient iterator |   //FIXME package in a convenient iterator | ||||||
|   // thread_for2d_in_region |  | ||||||
|   //Should loop over a plane orthogonal to direction "Orthog" |   //Should loop over a plane orthogonal to direction "Orthog" | ||||||
|   int stride=FullGrid->_slice_stride[Orthog]; |   int stride=FullGrid->_slice_stride[Orthog]; | ||||||
|   int block =FullGrid->_slice_block [Orthog]; |   int block =FullGrid->_slice_block [Orthog]; | ||||||
|   int nblock=FullGrid->_slice_nblock[Orthog]; |   int nblock=FullGrid->_slice_nblock[Orthog]; | ||||||
|   int ostride=FullGrid->_ostride[Orthog]; |   int ostride=FullGrid->_ostride[Orthog]; | ||||||
|   autoView( R_v, R, CpuWrite); |   auto R_v = R.View(); | ||||||
|   autoView( X_v, X, CpuRead); |   auto X_v = X.View(); | ||||||
|   thread_region |   thread_region | ||||||
|   { |   { | ||||||
|     std::vector<vobj> s_x(Nblock); |     std::vector<vobj> s_x(Nblock); | ||||||
| @@ -745,8 +692,8 @@ static void sliceInnerProductMatrix(  Eigen::MatrixXcd &mat, const Lattice<vobj> | |||||||
|  |  | ||||||
|   typedef typename vobj::vector_typeD vector_typeD; |   typedef typename vobj::vector_typeD vector_typeD; | ||||||
|  |  | ||||||
|   autoView( lhs_v, lhs, CpuRead); |   auto lhs_v=lhs.View(); | ||||||
|   autoView( rhs_v, rhs, CpuRead); |   auto rhs_v=rhs.View(); | ||||||
|   thread_region |   thread_region | ||||||
|   { |   { | ||||||
|     std::vector<vobj> Left(Nblock); |     std::vector<vobj> Left(Nblock); | ||||||
|   | |||||||
| @@ -1,14 +1,7 @@ | |||||||
| NAMESPACE_BEGIN(Grid); | NAMESPACE_BEGIN(Grid); | ||||||
|  |  | ||||||
| #ifdef GRID_HIP |  | ||||||
| extern hipDeviceProp_t *gpu_props; |  | ||||||
| #define WARP_SIZE 64 |  | ||||||
| #endif |  | ||||||
| #ifdef GRID_CUDA |  | ||||||
| extern cudaDeviceProp *gpu_props; |  | ||||||
| #define WARP_SIZE 32 | #define WARP_SIZE 32 | ||||||
| #endif | extern cudaDeviceProp *gpu_props; | ||||||
|  |  | ||||||
| __device__ unsigned int retirementCount = 0; | __device__ unsigned int retirementCount = 0; | ||||||
|  |  | ||||||
| template <class Iterator> | template <class Iterator> | ||||||
| @@ -26,12 +19,7 @@ template <class Iterator> | |||||||
| void getNumBlocksAndThreads(const Iterator n, const size_t sizeofsobj, Iterator &threads, Iterator &blocks) { | void getNumBlocksAndThreads(const Iterator n, const size_t sizeofsobj, Iterator &threads, Iterator &blocks) { | ||||||
|    |    | ||||||
|   int device; |   int device; | ||||||
| #ifdef GRID_CUDA |  | ||||||
|   cudaGetDevice(&device); |   cudaGetDevice(&device); | ||||||
| #endif |  | ||||||
| #ifdef GRID_HIP |  | ||||||
|   hipGetDevice(&device); |  | ||||||
| #endif |  | ||||||
|    |    | ||||||
|   Iterator warpSize            = gpu_props[device].warpSize; |   Iterator warpSize            = gpu_props[device].warpSize; | ||||||
|   Iterator sharedMemPerBlock   = gpu_props[device].sharedMemPerBlock; |   Iterator sharedMemPerBlock   = gpu_props[device].sharedMemPerBlock; | ||||||
| @@ -42,6 +30,7 @@ void getNumBlocksAndThreads(const Iterator n, const size_t sizeofsobj, Iterator | |||||||
|   std::cout << GridLogDebug << "\twarpSize            = " << warpSize << std::endl; |   std::cout << GridLogDebug << "\twarpSize            = " << warpSize << std::endl; | ||||||
|   std::cout << GridLogDebug << "\tsharedMemPerBlock   = " << sharedMemPerBlock << std::endl; |   std::cout << GridLogDebug << "\tsharedMemPerBlock   = " << sharedMemPerBlock << std::endl; | ||||||
|   std::cout << GridLogDebug << "\tmaxThreadsPerBlock  = " << maxThreadsPerBlock << std::endl; |   std::cout << GridLogDebug << "\tmaxThreadsPerBlock  = " << maxThreadsPerBlock << std::endl; | ||||||
|  |   std::cout << GridLogDebug << "\tmaxThreadsPerBlock  = " << warpSize << std::endl; | ||||||
|   std::cout << GridLogDebug << "\tmultiProcessorCount = " << multiProcessorCount << std::endl; |   std::cout << GridLogDebug << "\tmultiProcessorCount = " << multiProcessorCount << std::endl; | ||||||
|    |    | ||||||
|   if (warpSize != WARP_SIZE) { |   if (warpSize != WARP_SIZE) { | ||||||
| @@ -51,10 +40,6 @@ void getNumBlocksAndThreads(const Iterator n, const size_t sizeofsobj, Iterator | |||||||
|    |    | ||||||
|   // let the number of threads in a block be a multiple of 2, starting from warpSize |   // let the number of threads in a block be a multiple of 2, starting from warpSize | ||||||
|   threads = warpSize; |   threads = warpSize; | ||||||
|   if ( threads*sizeofsobj > sharedMemPerBlock ) { |  | ||||||
|     std::cout << GridLogError << "The object is too large for the shared memory." << std::endl; |  | ||||||
|     exit(EXIT_FAILURE); |  | ||||||
|   } |  | ||||||
|   while( 2*threads*sizeofsobj < sharedMemPerBlock && 2*threads <= maxThreadsPerBlock ) threads *= 2; |   while( 2*threads*sizeofsobj < sharedMemPerBlock && 2*threads <= maxThreadsPerBlock ) threads *= 2; | ||||||
|   // keep all the streaming multiprocessors busy |   // keep all the streaming multiprocessors busy | ||||||
|   blocks = nextPow2(multiProcessorCount); |   blocks = nextPow2(multiProcessorCount); | ||||||
| @@ -68,7 +53,7 @@ __device__ void reduceBlock(volatile sobj *sdata, sobj mySum, const Iterator tid | |||||||
|    |    | ||||||
|   // cannot use overloaded operators for sobj as they are not volatile-qualified |   // cannot use overloaded operators for sobj as they are not volatile-qualified | ||||||
|   memcpy((void *)&sdata[tid], (void *)&mySum, sizeof(sobj)); |   memcpy((void *)&sdata[tid], (void *)&mySum, sizeof(sobj)); | ||||||
|   acceleratorSynchronise(); |   __syncwarp(); | ||||||
|    |    | ||||||
|   const Iterator VEC = WARP_SIZE; |   const Iterator VEC = WARP_SIZE; | ||||||
|   const Iterator vid = tid & (VEC-1); |   const Iterator vid = tid & (VEC-1); | ||||||
| @@ -82,9 +67,9 @@ __device__ void reduceBlock(volatile sobj *sdata, sobj mySum, const Iterator tid | |||||||
|       beta += temp; |       beta += temp; | ||||||
|       memcpy((void *)&sdata[tid], (void *)&beta, sizeof(sobj)); |       memcpy((void *)&sdata[tid], (void *)&beta, sizeof(sobj)); | ||||||
|     } |     } | ||||||
|     acceleratorSynchronise(); |     __syncwarp(); | ||||||
|   } |   } | ||||||
|   acceleratorSynchroniseAll(); |   __syncthreads(); | ||||||
|    |    | ||||||
|   if (threadIdx.x == 0) { |   if (threadIdx.x == 0) { | ||||||
|     beta  = Zero(); |     beta  = Zero(); | ||||||
| @@ -94,7 +79,7 @@ __device__ void reduceBlock(volatile sobj *sdata, sobj mySum, const Iterator tid | |||||||
|     } |     } | ||||||
|     memcpy((void *)&sdata[0], (void *)&beta, sizeof(sobj)); |     memcpy((void *)&sdata[0], (void *)&beta, sizeof(sobj)); | ||||||
|   } |   } | ||||||
|   acceleratorSynchroniseAll(); |   __syncthreads(); | ||||||
| } | } | ||||||
|  |  | ||||||
|  |  | ||||||
| @@ -162,7 +147,7 @@ __global__ void reduceKernel(const vobj *lat, sobj *buffer, Iterator n) { | |||||||
|     sobj *smem = (sobj *)shmem_pointer; |     sobj *smem = (sobj *)shmem_pointer; | ||||||
|      |      | ||||||
|     // wait until all outstanding memory instructions in this thread are finished |     // wait until all outstanding memory instructions in this thread are finished | ||||||
|     acceleratorFence(); |     __threadfence(); | ||||||
|      |      | ||||||
|     if (tid==0) { |     if (tid==0) { | ||||||
|       unsigned int ticket = atomicInc(&retirementCount, gridDim.x); |       unsigned int ticket = atomicInc(&retirementCount, gridDim.x); | ||||||
| @@ -171,7 +156,7 @@ __global__ void reduceKernel(const vobj *lat, sobj *buffer, Iterator n) { | |||||||
|     } |     } | ||||||
|      |      | ||||||
|     // each thread must read the correct value of amLast |     // each thread must read the correct value of amLast | ||||||
|     acceleratorSynchroniseAll(); |     __syncthreads(); | ||||||
|      |      | ||||||
|     if (amLast) { |     if (amLast) { | ||||||
|       // reduce buffer[0], ..., buffer[gridDim.x-1] |       // reduce buffer[0], ..., buffer[gridDim.x-1] | ||||||
| @@ -214,7 +199,13 @@ inline typename vobj::scalar_objectD sumD_gpu(const vobj *lat, Integer osites) | |||||||
|   sobj *buffer_v = &buffer[0]; |   sobj *buffer_v = &buffer[0]; | ||||||
|    |    | ||||||
|   reduceKernel<<< numBlocks, numThreads, smemSize >>>(lat, buffer_v, size); |   reduceKernel<<< numBlocks, numThreads, smemSize >>>(lat, buffer_v, size); | ||||||
|   accelerator_barrier(); |   cudaDeviceSynchronize(); | ||||||
|  |    | ||||||
|  |   cudaError err = cudaGetLastError(); | ||||||
|  |   if ( cudaSuccess != err ) { | ||||||
|  |     printf("Cuda error %s\n",cudaGetErrorString( err )); | ||||||
|  |     exit(0); | ||||||
|  |   } | ||||||
|   auto result = buffer_v[0]; |   auto result = buffer_v[0]; | ||||||
|   return result; |   return result; | ||||||
| } | } | ||||||
|   | |||||||
| @@ -375,7 +375,7 @@ public: | |||||||
|     int osites = _grid->oSites();  // guaranteed to be <= l.Grid()->oSites() by a factor multiplicity |     int osites = _grid->oSites();  // guaranteed to be <= l.Grid()->oSites() by a factor multiplicity | ||||||
|     int words  = sizeof(scalar_object) / sizeof(scalar_type); |     int words  = sizeof(scalar_object) / sizeof(scalar_type); | ||||||
|  |  | ||||||
|     autoView(l_v, l, CpuWrite); |     auto l_v = l.View(); | ||||||
|     thread_for( ss, osites, { |     thread_for( ss, osites, { | ||||||
|       ExtractBuffer<scalar_object> buf(Nsimd); |       ExtractBuffer<scalar_object> buf(Nsimd); | ||||||
|       for (int m = 0; m < multiplicity; m++) {  // Draw from same generator multiplicity times |       for (int m = 0; m < multiplicity; m++) {  // Draw from same generator multiplicity times | ||||||
| @@ -462,7 +462,7 @@ public: | |||||||
|  |  | ||||||
|     { |     { | ||||||
|       // Obtain one reseeded generator per thread |       // Obtain one reseeded generator per thread | ||||||
|       int Nthread = 32; // Hardwire a good level or parallelism |       int Nthread = GridThread::GetThreads(); | ||||||
|       std::vector<RngEngine> seeders(Nthread); |       std::vector<RngEngine> seeders(Nthread); | ||||||
|       for(int t=0;t<Nthread;t++){ |       for(int t=0;t<Nthread;t++){ | ||||||
| 	seeders[t] = Reseed(master_engine); | 	seeders[t] = Reseed(master_engine); | ||||||
|   | |||||||
| @@ -42,8 +42,8 @@ template<class vobj> | |||||||
| inline auto trace(const Lattice<vobj> &lhs)  -> Lattice<decltype(trace(vobj()))> | inline auto trace(const Lattice<vobj> &lhs)  -> Lattice<decltype(trace(vobj()))> | ||||||
| { | { | ||||||
|   Lattice<decltype(trace(vobj()))> ret(lhs.Grid()); |   Lattice<decltype(trace(vobj()))> ret(lhs.Grid()); | ||||||
|   autoView(ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.View(); | ||||||
|   autoView(lhs_v , lhs, AcceleratorRead); |   auto lhs_v = lhs.View(); | ||||||
|   accelerator_for( ss, lhs_v.size(), vobj::Nsimd(), { |   accelerator_for( ss, lhs_v.size(), vobj::Nsimd(), { | ||||||
|     coalescedWrite(ret_v[ss], trace(lhs_v(ss))); |     coalescedWrite(ret_v[ss], trace(lhs_v(ss))); | ||||||
|   }); |   }); | ||||||
| @@ -58,8 +58,8 @@ template<int Index,class vobj> | |||||||
| inline auto TraceIndex(const Lattice<vobj> &lhs) -> Lattice<decltype(traceIndex<Index>(vobj()))> | inline auto TraceIndex(const Lattice<vobj> &lhs) -> Lattice<decltype(traceIndex<Index>(vobj()))> | ||||||
| { | { | ||||||
|   Lattice<decltype(traceIndex<Index>(vobj()))> ret(lhs.Grid()); |   Lattice<decltype(traceIndex<Index>(vobj()))> ret(lhs.Grid()); | ||||||
|   autoView( ret_v , ret, AcceleratorWrite); |   auto ret_v = ret.View(); | ||||||
|   autoView( lhs_v , lhs, AcceleratorRead); |   auto lhs_v = lhs.View(); | ||||||
|   accelerator_for( ss, lhs_v.size(), vobj::Nsimd(), { |   accelerator_for( ss, lhs_v.size(), vobj::Nsimd(), { | ||||||
|     coalescedWrite(ret_v[ss], traceIndex<Index>(lhs_v(ss))); |     coalescedWrite(ret_v[ss], traceIndex<Index>(lhs_v(ss))); | ||||||
|   }); |   }); | ||||||
|   | |||||||
| @@ -47,12 +47,11 @@ inline void subdivides(GridBase *coarse,GridBase *fine) | |||||||
| //////////////////////////////////////////////////////////////////////////////////////////// | //////////////////////////////////////////////////////////////////////////////////////////// | ||||||
| // remove and insert a half checkerboard | // remove and insert a half checkerboard | ||||||
| //////////////////////////////////////////////////////////////////////////////////////////// | //////////////////////////////////////////////////////////////////////////////////////////// | ||||||
| template<class vobj> inline void pickCheckerboard(int cb,Lattice<vobj> &half,const Lattice<vobj> &full) | template<class vobj> inline void pickCheckerboard(int cb,Lattice<vobj> &half,const Lattice<vobj> &full){ | ||||||
| { |  | ||||||
|   half.Checkerboard() = cb; |   half.Checkerboard() = cb; | ||||||
|  |  | ||||||
|   autoView( half_v, half, CpuWrite); |   auto half_v = half.View(); | ||||||
|   autoView( full_v, full, CpuRead); |   auto full_v = full.View(); | ||||||
|   thread_for(ss, full.Grid()->oSites(),{ |   thread_for(ss, full.Grid()->oSites(),{ | ||||||
|     int cbos; |     int cbos; | ||||||
|     Coordinate coor; |     Coordinate coor; | ||||||
| @@ -65,11 +64,11 @@ template<class vobj> inline void pickCheckerboard(int cb,Lattice<vobj> &half,con | |||||||
|     } |     } | ||||||
|   }); |   }); | ||||||
| } | } | ||||||
| template<class vobj> inline void setCheckerboard(Lattice<vobj> &full,const Lattice<vobj> &half) |  | ||||||
| { | template<class vobj> inline void setCheckerboard(Lattice<vobj> &full,const Lattice<vobj> &half){ | ||||||
|   int cb = half.Checkerboard(); |   int cb = half.Checkerboard(); | ||||||
|   autoView( half_v , half, CpuRead); |   auto half_v = half.View(); | ||||||
|   autoView( full_v , full, CpuWrite); |   auto full_v = full.View(); | ||||||
|   thread_for(ss,full.Grid()->oSites(),{ |   thread_for(ss,full.Grid()->oSites(),{ | ||||||
|  |  | ||||||
|     Coordinate coor; |     Coordinate coor; | ||||||
| @@ -85,76 +84,6 @@ template<class vobj> inline void setCheckerboard(Lattice<vobj> &full,const Latti | |||||||
|   }); |   }); | ||||||
| } | } | ||||||
|  |  | ||||||
| template<class vobj> inline void acceleratorPickCheckerboard(int cb,Lattice<vobj> &half,const Lattice<vobj> &full, int checker_dim_half=0) |  | ||||||
| { |  | ||||||
|   half.Checkerboard() = cb; |  | ||||||
|   autoView(half_v, half, AcceleratorWrite); |  | ||||||
|   autoView(full_v, full, AcceleratorRead); |  | ||||||
|   Coordinate rdim_full             = full.Grid()->_rdimensions; |  | ||||||
|   Coordinate rdim_half             = half.Grid()->_rdimensions; |  | ||||||
|   unsigned long ndim_half          = half.Grid()->_ndimension; |  | ||||||
|   Coordinate checker_dim_mask_half = half.Grid()->_checker_dim_mask; |  | ||||||
|   Coordinate ostride_half          = half.Grid()->_ostride; |  | ||||||
|   accelerator_for(ss, full.Grid()->oSites(),full.Grid()->Nsimd(),{ |  | ||||||
|      |  | ||||||
|     Coordinate coor; |  | ||||||
|     int cbos; |  | ||||||
|     int linear=0; |  | ||||||
|  |  | ||||||
|     Lexicographic::CoorFromIndex(coor,ss,rdim_full); |  | ||||||
|     assert(coor.size()==ndim_half); |  | ||||||
|  |  | ||||||
|     for(int d=0;d<ndim_half;d++){  |  | ||||||
|       if(checker_dim_mask_half[d]) linear += coor[d]; |  | ||||||
|     } |  | ||||||
|     cbos = (linear&0x1); |  | ||||||
|  |  | ||||||
|     if (cbos==cb) { |  | ||||||
|       int ssh=0; |  | ||||||
|       for(int d=0;d<ndim_half;d++) { |  | ||||||
|         if (d == checker_dim_half) ssh += ostride_half[d] * ((coor[d] / 2) % rdim_half[d]); |  | ||||||
|         else ssh += ostride_half[d] * (coor[d] % rdim_half[d]); |  | ||||||
|       } |  | ||||||
|       coalescedWrite(half_v[ssh],full_v(ss)); |  | ||||||
|     } |  | ||||||
|   }); |  | ||||||
| } |  | ||||||
| template<class vobj> inline void acceleratorSetCheckerboard(Lattice<vobj> &full,const Lattice<vobj> &half, int checker_dim_half=0) |  | ||||||
| { |  | ||||||
|   int cb = half.Checkerboard(); |  | ||||||
|   autoView(half_v , half, AcceleratorRead); |  | ||||||
|   autoView(full_v , full, AcceleratorWrite); |  | ||||||
|   Coordinate rdim_full             = full.Grid()->_rdimensions; |  | ||||||
|   Coordinate rdim_half             = half.Grid()->_rdimensions; |  | ||||||
|   unsigned long ndim_half          = half.Grid()->_ndimension; |  | ||||||
|   Coordinate checker_dim_mask_half = half.Grid()->_checker_dim_mask; |  | ||||||
|   Coordinate ostride_half          = half.Grid()->_ostride; |  | ||||||
|   accelerator_for(ss,full.Grid()->oSites(),full.Grid()->Nsimd(),{ |  | ||||||
|  |  | ||||||
|     Coordinate coor; |  | ||||||
|     int cbos; |  | ||||||
|     int linear=0; |  | ||||||
|    |  | ||||||
|     Lexicographic::CoorFromIndex(coor,ss,rdim_full); |  | ||||||
|     assert(coor.size()==ndim_half); |  | ||||||
|  |  | ||||||
|     for(int d=0;d<ndim_half;d++){  |  | ||||||
|       if(checker_dim_mask_half[d]) linear += coor[d]; |  | ||||||
|     } |  | ||||||
|     cbos = (linear&0x1); |  | ||||||
|  |  | ||||||
|     if (cbos==cb) { |  | ||||||
|       int ssh=0; |  | ||||||
|       for(int d=0;d<ndim_half;d++){ |  | ||||||
|         if (d == checker_dim_half) ssh += ostride_half[d] * ((coor[d] / 2) % rdim_half[d]); |  | ||||||
|         else ssh += ostride_half[d] * (coor[d] % rdim_half[d]); |  | ||||||
|       } |  | ||||||
|       coalescedWrite(full_v[ss],half_v(ssh)); |  | ||||||
|     } |  | ||||||
|  |  | ||||||
|   }); |  | ||||||
| } |  | ||||||
|  |  | ||||||
| //////////////////////////////////////////////////////////////////////////////////////////// | //////////////////////////////////////////////////////////////////////////////////////////// | ||||||
| // Flexible Type Conversion for internal promotion to double as well as graceful | // Flexible Type Conversion for internal promotion to double as well as graceful | ||||||
| // treatment of scalar-compatible types | // treatment of scalar-compatible types | ||||||
| @@ -167,29 +96,15 @@ accelerator_inline void convertType(ComplexF & out, const std::complex<float> & | |||||||
|   out = in; |   out = in; | ||||||
| } | } | ||||||
|  |  | ||||||
| template<typename T> | #ifdef __CUDA_ARCH__ | ||||||
| accelerator_inline EnableIf<isGridFundamental<T>> convertType(T & out, const T & in) { |  | ||||||
|   out = in; |  | ||||||
| } |  | ||||||
|  |  | ||||||
| // This would allow for conversions between GridFundamental types, but is not strictly needed as yet |  | ||||||
| /*template<typename T1, typename T2> |  | ||||||
| accelerator_inline typename std::enable_if<isGridFundamental<T1>::value && isGridFundamental<T2>::value>::type |  | ||||||
| // Or to make this very broad, conversions between anything that's not a GridTensor could be allowed |  | ||||||
| //accelerator_inline typename std::enable_if<!isGridTensor<T1>::value && !isGridTensor<T2>::value>::type |  | ||||||
| convertType(T1 & out, const T2 & in) { |  | ||||||
|   out = in; |  | ||||||
| }*/ |  | ||||||
|  |  | ||||||
| #ifdef GRID_SIMT |  | ||||||
| accelerator_inline void convertType(vComplexF & out, const ComplexF & in) { | accelerator_inline void convertType(vComplexF & out, const ComplexF & in) { | ||||||
|   ((ComplexF*)&out)[acceleratorSIMTlane(vComplexF::Nsimd())] = in; |   ((ComplexF*)&out)[SIMTlane(vComplexF::Nsimd())] = in; | ||||||
| } | } | ||||||
| accelerator_inline void convertType(vComplexD & out, const ComplexD & in) { | accelerator_inline void convertType(vComplexD & out, const ComplexD & in) { | ||||||
|   ((ComplexD*)&out)[acceleratorSIMTlane(vComplexD::Nsimd())] = in; |   ((ComplexD*)&out)[SIMTlane(vComplexD::Nsimd())] = in; | ||||||
| } | } | ||||||
| accelerator_inline void convertType(vComplexD2 & out, const ComplexD & in) { | accelerator_inline void convertType(vComplexD2 & out, const ComplexD & in) { | ||||||
|   ((ComplexD*)&out)[acceleratorSIMTlane(vComplexD::Nsimd()*2)] = in; |   ((ComplexD*)&out)[SIMTlane(vComplexD::Nsimd()*2)] = in; | ||||||
| } | } | ||||||
| #endif | #endif | ||||||
|  |  | ||||||
| @@ -201,18 +116,18 @@ accelerator_inline void convertType(vComplexD2 & out, const vComplexF & in) { | |||||||
|   Optimization::PrecisionChange::StoD(in.v,out._internal[0].v,out._internal[1].v); |   Optimization::PrecisionChange::StoD(in.v,out._internal[0].v,out._internal[1].v); | ||||||
| } | } | ||||||
|  |  | ||||||
| template<typename T1,typename T2> | template<typename T1,typename T2,int N> | ||||||
| accelerator_inline void convertType(iScalar<T1> & out, const iScalar<T2> & in) { |   accelerator_inline void convertType(iMatrix<T1,N> & out, const iMatrix<T2,N> & in); | ||||||
|   convertType(out._internal,in._internal); | template<typename T1,typename T2,int N> | ||||||
| } |   accelerator_inline void convertType(iVector<T1,N> & out, const iVector<T2,N> & in); | ||||||
|  |  | ||||||
| template<typename T1,typename T2> | template<typename T1,typename T2, typename std::enable_if<!isGridScalar<T1>::value, T1>::type* = nullptr> | ||||||
| accelerator_inline NotEnableIf<isGridScalar<T1>> convertType(T1 & out, const iScalar<T2> & in) { | accelerator_inline void convertType(T1 & out, const iScalar<T2> & in) { | ||||||
|   convertType(out,in._internal); |   convertType(out,in._internal); | ||||||
| } | } | ||||||
|  |  | ||||||
| template<typename T1,typename T2> | template<typename T1,typename T2> | ||||||
| accelerator_inline NotEnableIf<isGridScalar<T2>> convertType(iScalar<T1> & out, const T2 & in) { | accelerator_inline void convertType(iScalar<T1> & out, const T2 & in) { | ||||||
|   convertType(out._internal,in); |   convertType(out._internal,in); | ||||||
| } | } | ||||||
|  |  | ||||||
| @@ -229,10 +144,16 @@ accelerator_inline void convertType(iVector<T1,N> & out, const iVector<T2,N> & i | |||||||
|     convertType(out._internal[i],in._internal[i]); |     convertType(out._internal[i],in._internal[i]); | ||||||
| } | } | ||||||
|  |  | ||||||
|  | template<typename T, typename std::enable_if<isGridFundamental<T>::value, T>::type* = nullptr> | ||||||
|  | accelerator_inline void convertType(T & out, const T & in) { | ||||||
|  |   out = in; | ||||||
|  | } | ||||||
|  |  | ||||||
| template<typename T1,typename T2> | template<typename T1,typename T2> | ||||||
| accelerator_inline void convertType(Lattice<T1> & out, const Lattice<T2> & in) { | accelerator_inline void convertType(Lattice<T1> & out, const Lattice<T2> & in) { | ||||||
|   autoView( out_v , out,AcceleratorWrite); |   auto out_v = out.AcceleratorView(ViewWrite); | ||||||
|   autoView( in_v  , in ,AcceleratorRead); |   auto in_v  = in.AcceleratorView(ViewRead); | ||||||
|  |  | ||||||
|   accelerator_for(ss,out_v.size(),T1::Nsimd(),{ |   accelerator_for(ss,out_v.size(),T1::Nsimd(),{ | ||||||
|       convertType(out_v[ss],in_v(ss)); |       convertType(out_v[ss],in_v(ss)); | ||||||
|     }); |     }); | ||||||
| @@ -243,20 +164,19 @@ accelerator_inline void convertType(Lattice<T1> & out, const Lattice<T2> & in) { | |||||||
| //////////////////////////////////////////////////////////////////////////////////////////// | //////////////////////////////////////////////////////////////////////////////////////////// | ||||||
| template<class vobj> | template<class vobj> | ||||||
| inline auto localInnerProductD(const Lattice<vobj> &lhs,const Lattice<vobj> &rhs) | inline auto localInnerProductD(const Lattice<vobj> &lhs,const Lattice<vobj> &rhs) | ||||||
| -> Lattice<iScalar<decltype(TensorRemove(innerProductD2(lhs.View(CpuRead)[0],rhs.View(CpuRead)[0])))>> | -> Lattice<iScalar<decltype(TensorRemove(innerProductD2(lhs.View()[0],rhs.View()[0])))>> | ||||||
| { | { | ||||||
|   autoView( lhs_v , lhs, AcceleratorRead); |   auto lhs_v = lhs.AcceleratorView(ViewRead); | ||||||
|   autoView( rhs_v , rhs, AcceleratorRead); |   auto rhs_v = rhs.AcceleratorView(ViewRead); | ||||||
|  |  | ||||||
|   typedef decltype(TensorRemove(innerProductD2(lhs_v[0],rhs_v[0]))) t_inner; |   typedef decltype(TensorRemove(innerProductD2(lhs_v[0],rhs_v[0]))) t_inner; | ||||||
|   Lattice<iScalar<t_inner>> ret(lhs.Grid()); |   Lattice<iScalar<t_inner>> ret(lhs.Grid()); | ||||||
|  |   auto ret_v = ret.AcceleratorView(ViewWrite); | ||||||
|  |  | ||||||
|   { |  | ||||||
|     autoView(ret_v, ret,AcceleratorWrite); |  | ||||||
|   accelerator_for(ss,rhs_v.size(),vobj::Nsimd(),{ |   accelerator_for(ss,rhs_v.size(),vobj::Nsimd(),{ | ||||||
|       convertType(ret_v[ss],innerProductD2(lhs_v(ss),rhs_v(ss))); |       convertType(ret_v[ss],innerProductD2(lhs_v(ss),rhs_v(ss))); | ||||||
|     }); |     }); | ||||||
|   } |  | ||||||
|   return ret; |   return ret; | ||||||
| } | } | ||||||
|  |  | ||||||
| @@ -274,8 +194,9 @@ inline void blockProject(Lattice<iVector<CComplex,nbasis > > &coarseData, | |||||||
|   Lattice<iScalar<CComplex>> ip(coarse); |   Lattice<iScalar<CComplex>> ip(coarse); | ||||||
|   Lattice<vobj>     fineDataRed = fineData; |   Lattice<vobj>     fineDataRed = fineData; | ||||||
|  |  | ||||||
|   autoView( coarseData_ , coarseData, AcceleratorWrite); |   //  auto fineData_   = fineData.View(); | ||||||
|   autoView( ip_         , ip,         AcceleratorWrite); |   auto coarseData_ = coarseData.AcceleratorView(ViewWrite); | ||||||
|  |   auto ip_         = ip.AcceleratorView(ViewReadWrite); | ||||||
|   for(int v=0;v<nbasis;v++) { |   for(int v=0;v<nbasis;v++) { | ||||||
|     blockInnerProductD(ip,Basis[v],fineDataRed); // ip = <basis|fine> |     blockInnerProductD(ip,Basis[v],fineDataRed); // ip = <basis|fine> | ||||||
|     accelerator_for( sc, coarse->oSites(), vobj::Nsimd(), { |     accelerator_for( sc, coarse->oSites(), vobj::Nsimd(), { | ||||||
| @@ -289,6 +210,68 @@ inline void blockProject(Lattice<iVector<CComplex,nbasis > > &coarseData, | |||||||
|   } |   } | ||||||
| } | } | ||||||
|  |  | ||||||
|  | template<class vobj,class CComplex,int nbasis> | ||||||
|  | inline void blockProject1(Lattice<iVector<CComplex,nbasis > > &coarseData, | ||||||
|  | 			 const             Lattice<vobj>   &fineData, | ||||||
|  | 			 const std::vector<Lattice<vobj> > &Basis) | ||||||
|  | { | ||||||
|  |   typedef iVector<CComplex,nbasis > coarseSiteData; | ||||||
|  |   coarseSiteData elide; | ||||||
|  |   typedef decltype(coalescedRead(elide)) ScalarComplex; | ||||||
|  |   GridBase * fine  = fineData.Grid(); | ||||||
|  |   GridBase * coarse= coarseData.Grid(); | ||||||
|  |   int  _ndimension = coarse->_ndimension; | ||||||
|  |  | ||||||
|  |   // checks | ||||||
|  |   assert( nbasis == Basis.size() ); | ||||||
|  |   subdivides(coarse,fine);  | ||||||
|  |   for(int i=0;i<nbasis;i++){ | ||||||
|  |     conformable(Basis[i],fineData); | ||||||
|  |   } | ||||||
|  |  | ||||||
|  |   Coordinate block_r      (_ndimension); | ||||||
|  |    | ||||||
|  |   for(int d=0 ; d<_ndimension;d++){ | ||||||
|  |     block_r[d] = fine->_rdimensions[d] / coarse->_rdimensions[d]; | ||||||
|  |     assert(block_r[d]*coarse->_rdimensions[d] == fine->_rdimensions[d]); | ||||||
|  |   } | ||||||
|  |   int blockVol = fine->oSites()/coarse->oSites(); | ||||||
|  |  | ||||||
|  |   coarseData=Zero(); | ||||||
|  |  | ||||||
|  |   auto fineData_   = fineData.View(); | ||||||
|  |   auto coarseData_ = coarseData.View(); | ||||||
|  |   //////////////////////////////////////////////////////////////////////////////////////////////////////// | ||||||
|  |   // To make this lock free, loop over coars parallel, and then loop over fine associated with coarse. | ||||||
|  |   // Otherwise do fine inner product per site, and make the update atomic | ||||||
|  |   //////////////////////////////////////////////////////////////////////////////////////////////////////// | ||||||
|  |   accelerator_for( sci, nbasis*coarse->oSites(), vobj::Nsimd(), { | ||||||
|  |  | ||||||
|  |     auto sc=sci/nbasis; | ||||||
|  |     auto i=sci%nbasis; | ||||||
|  |     auto Basis_      = Basis[i].View(); | ||||||
|  |  | ||||||
|  |     Coordinate coor_c(_ndimension); | ||||||
|  |     Lexicographic::CoorFromIndex(coor_c,sc,coarse->_rdimensions);  // Block coordinate | ||||||
|  |  | ||||||
|  |     int sf; | ||||||
|  |     decltype(innerProduct(Basis_(sf),fineData_(sf))) reduce=Zero(); | ||||||
|  |  | ||||||
|  |     for(int sb=0;sb<blockVol;sb++){ | ||||||
|  |  | ||||||
|  |       Coordinate coor_b(_ndimension); | ||||||
|  |       Coordinate coor_f(_ndimension); | ||||||
|  |  | ||||||
|  |       Lexicographic::CoorFromIndex(coor_b,sb,block_r); | ||||||
|  |       for(int d=0;d<_ndimension;d++) coor_f[d]=coor_c[d]*block_r[d]+coor_b[d]; | ||||||
|  |       Lexicographic::IndexFromCoor(coor_f,sf,fine->_rdimensions); | ||||||
|  |        | ||||||
|  |       reduce=reduce+innerProduct(Basis_(sf),fineData_(sf)); | ||||||
|  |     } | ||||||
|  |     coalescedWrite(coarseData_[sc](i),reduce); | ||||||
|  |   }); | ||||||
|  |   return; | ||||||
|  | } | ||||||
|  |  | ||||||
| template<class vobj,class vobj2,class CComplex> | template<class vobj,class vobj2,class CComplex> | ||||||
|   inline void blockZAXPY(Lattice<vobj> &fineZ, |   inline void blockZAXPY(Lattice<vobj> &fineZ, | ||||||
| @@ -315,12 +298,10 @@ template<class vobj,class vobj2,class CComplex> | |||||||
|     assert(block_r[d]*coarse->_rdimensions[d]==fine->_rdimensions[d]); |     assert(block_r[d]*coarse->_rdimensions[d]==fine->_rdimensions[d]); | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   autoView( fineZ_  , fineZ, AcceleratorWrite); |   auto fineZ_  = fineZ.AcceleratorView(ViewWrite); | ||||||
|   autoView( fineX_  , fineX, AcceleratorRead); |   auto fineX_  = fineX.AcceleratorView(ViewRead); | ||||||
|   autoView( fineY_  , fineY, AcceleratorRead); |   auto fineY_  = fineY.AcceleratorView(ViewRead); | ||||||
|   autoView( coarseA_, coarseA, AcceleratorRead); |   auto coarseA_= coarseA.AcceleratorView(ViewRead); | ||||||
|   Coordinate fine_rdimensions = fine->_rdimensions; |  | ||||||
|   Coordinate coarse_rdimensions = coarse->_rdimensions; |  | ||||||
|  |  | ||||||
|   accelerator_for(sf, fine->oSites(), CComplex::Nsimd(), { |   accelerator_for(sf, fine->oSites(), CComplex::Nsimd(), { | ||||||
|  |  | ||||||
| @@ -328,12 +309,12 @@ template<class vobj,class vobj2,class CComplex> | |||||||
|       Coordinate coor_c(_ndimension); |       Coordinate coor_c(_ndimension); | ||||||
|       Coordinate coor_f(_ndimension); |       Coordinate coor_f(_ndimension); | ||||||
|  |  | ||||||
|       Lexicographic::CoorFromIndex(coor_f,sf,fine_rdimensions); |       Lexicographic::CoorFromIndex(coor_f,sf,fine->_rdimensions); | ||||||
|       for(int d=0;d<_ndimension;d++) coor_c[d]=coor_f[d]/block_r[d]; |       for(int d=0;d<_ndimension;d++) coor_c[d]=coor_f[d]/block_r[d]; | ||||||
|       Lexicographic::IndexFromCoor(coor_c,sc,coarse_rdimensions); |       Lexicographic::IndexFromCoor(coor_c,sc,coarse->_rdimensions); | ||||||
|  |  | ||||||
|       // z = A x + y |       // z = A x + y | ||||||
| #ifdef GRID_SIMT | #ifdef __CUDA_ARCH__ | ||||||
|       typename vobj2::tensor_reduced::scalar_object cA; |       typename vobj2::tensor_reduced::scalar_object cA; | ||||||
|       typename vobj::scalar_object cAx; |       typename vobj::scalar_object cAx; | ||||||
| #else | #else | ||||||
| @@ -363,16 +344,15 @@ template<class vobj,class CComplex> | |||||||
|   Lattice<dotp> fine_inner(fine); fine_inner.Checkerboard() = fineX.Checkerboard(); |   Lattice<dotp> fine_inner(fine); fine_inner.Checkerboard() = fineX.Checkerboard(); | ||||||
|   Lattice<dotp> coarse_inner(coarse); |   Lattice<dotp> coarse_inner(coarse); | ||||||
|  |  | ||||||
|  |   auto CoarseInner_  = CoarseInner.AcceleratorView(ViewWrite); | ||||||
|  |   auto coarse_inner_ = coarse_inner.AcceleratorView(ViewReadWrite); | ||||||
|  |  | ||||||
|   // Precision promotion |   // Precision promotion | ||||||
|   fine_inner = localInnerProductD<vobj>(fineX,fineY); |   fine_inner = localInnerProductD(fineX,fineY); | ||||||
|   blockSum(coarse_inner,fine_inner); |   blockSum(coarse_inner,fine_inner); | ||||||
|   { |  | ||||||
|     autoView( CoarseInner_  , CoarseInner,AcceleratorWrite); |  | ||||||
|     autoView( coarse_inner_ , coarse_inner,AcceleratorRead); |  | ||||||
|   accelerator_for(ss, coarse->oSites(), 1, { |   accelerator_for(ss, coarse->oSites(), 1, { | ||||||
|       convertType(CoarseInner_[ss], TensorRemove(coarse_inner_[ss])); |       convertType(CoarseInner_[ss], TensorRemove(coarse_inner_[ss])); | ||||||
|     }); |     }); | ||||||
|   } |  | ||||||
|   |   | ||||||
| } | } | ||||||
|  |  | ||||||
| @@ -390,15 +370,14 @@ inline void blockInnerProduct(Lattice<CComplex> &CoarseInner, | |||||||
|   Lattice<dotp> coarse_inner(coarse); |   Lattice<dotp> coarse_inner(coarse); | ||||||
|  |  | ||||||
|   // Precision promotion? |   // Precision promotion? | ||||||
|  |   auto CoarseInner_  = CoarseInner.AcceleratorView(ViewWrite); | ||||||
|  |   auto coarse_inner_ = coarse_inner.AcceleratorView(ViewReadWrite); | ||||||
|  |  | ||||||
|   fine_inner = localInnerProduct(fineX,fineY); |   fine_inner = localInnerProduct(fineX,fineY); | ||||||
|   blockSum(coarse_inner,fine_inner); |   blockSum(coarse_inner,fine_inner); | ||||||
|   { |  | ||||||
|     autoView( CoarseInner_  , CoarseInner, AcceleratorWrite); |  | ||||||
|     autoView( coarse_inner_ , coarse_inner, AcceleratorRead); |  | ||||||
|   accelerator_for(ss, coarse->oSites(), 1, { |   accelerator_for(ss, coarse->oSites(), 1, { | ||||||
|     CoarseInner_[ss] = coarse_inner_[ss]; |     CoarseInner_[ss] = coarse_inner_[ss]; | ||||||
|   }); |   }); | ||||||
|   } |  | ||||||
| } | } | ||||||
|  |  | ||||||
| template<class vobj,class CComplex> | template<class vobj,class CComplex> | ||||||
| @@ -429,26 +408,15 @@ inline void blockSum(Lattice<vobj> &coarseData,const Lattice<vobj> &fineData) | |||||||
|   } |   } | ||||||
|   int blockVol = fine->oSites()/coarse->oSites(); |   int blockVol = fine->oSites()/coarse->oSites(); | ||||||
|  |  | ||||||
|   // Turn this around to loop threaded over sc and interior loop  |   auto coarseData_ = coarseData.AcceleratorView(ViewReadWrite); | ||||||
|   // over sf would thread better |   auto fineData_   = fineData.AcceleratorView(ViewRead); | ||||||
|   autoView( coarseData_ , coarseData, AcceleratorWrite); |  | ||||||
|   autoView( fineData_   , fineData, AcceleratorRead); |  | ||||||
|  |  | ||||||
|   auto coarseData_p = &coarseData_[0]; |  | ||||||
|   auto fineData_p = &fineData_[0]; |  | ||||||
|    |  | ||||||
|   Coordinate fine_rdimensions = fine->_rdimensions; |  | ||||||
|   Coordinate coarse_rdimensions = coarse->_rdimensions; |  | ||||||
|  |  | ||||||
|   vobj zz = Zero(); |  | ||||||
|  |  | ||||||
|   accelerator_for(sc,coarse->oSites(),1,{ |   accelerator_for(sc,coarse->oSites(),1,{ | ||||||
|  |  | ||||||
|       // One thread per sub block |       // One thread per sub block | ||||||
|       Coordinate coor_c(_ndimension); |       Coordinate coor_c(_ndimension); | ||||||
|       Lexicographic::CoorFromIndex(coor_c,sc,coarse_rdimensions);  // Block coordinate |       Lexicographic::CoorFromIndex(coor_c,sc,coarse->_rdimensions);  // Block coordinate | ||||||
|  |       coarseData_[sc]=Zero(); | ||||||
|       vobj cd = zz; |  | ||||||
|  |  | ||||||
|       for(int sb=0;sb<blockVol;sb++){ |       for(int sb=0;sb<blockVol;sb++){ | ||||||
|  |  | ||||||
| @@ -457,13 +425,11 @@ inline void blockSum(Lattice<vobj> &coarseData,const Lattice<vobj> &fineData) | |||||||
| 	Coordinate coor_f(_ndimension); | 	Coordinate coor_f(_ndimension); | ||||||
| 	Lexicographic::CoorFromIndex(coor_b,sb,block_r);               // Block sub coordinate | 	Lexicographic::CoorFromIndex(coor_b,sb,block_r);               // Block sub coordinate | ||||||
| 	for(int d=0;d<_ndimension;d++) coor_f[d]=coor_c[d]*block_r[d] + coor_b[d]; | 	for(int d=0;d<_ndimension;d++) coor_f[d]=coor_c[d]*block_r[d] + coor_b[d]; | ||||||
| 	Lexicographic::IndexFromCoor(coor_f,sf,fine_rdimensions); | 	Lexicographic::IndexFromCoor(coor_f,sf,fine->_rdimensions); | ||||||
|  |  | ||||||
| 	cd=cd+fineData_p[sf]; | 	coarseData_[sc]=coarseData_[sc]+fineData_[sf]; | ||||||
|       } |       } | ||||||
|  |  | ||||||
|       coarseData_p[sc] = cd; |  | ||||||
|  |  | ||||||
|     }); |     }); | ||||||
|   return; |   return; | ||||||
| } | } | ||||||
| @@ -544,8 +510,8 @@ inline void blockPromote(const Lattice<iVector<CComplex,nbasis > > &coarseData, | |||||||
|   for(int d=0 ; d<_ndimension;d++){ |   for(int d=0 ; d<_ndimension;d++){ | ||||||
|     block_r[d] = fine->_rdimensions[d] / coarse->_rdimensions[d]; |     block_r[d] = fine->_rdimensions[d] / coarse->_rdimensions[d]; | ||||||
|   } |   } | ||||||
|   autoView( fineData_   , fineData, AcceleratorWrite); |   auto fineData_   = fineData.View(); | ||||||
|   autoView( coarseData_ , coarseData, AcceleratorRead); |   auto coarseData_ = coarseData.View(); | ||||||
|  |  | ||||||
|   // Loop with a cache friendly loop ordering |   // Loop with a cache friendly loop ordering | ||||||
|   accelerator_for(sf,fine->oSites(),1,{ |   accelerator_for(sf,fine->oSites(),1,{ | ||||||
| @@ -558,7 +524,7 @@ inline void blockPromote(const Lattice<iVector<CComplex,nbasis > > &coarseData, | |||||||
|     Lexicographic::IndexFromCoor(coor_c,sc,coarse->_rdimensions); |     Lexicographic::IndexFromCoor(coor_c,sc,coarse->_rdimensions); | ||||||
|  |  | ||||||
|     for(int i=0;i<nbasis;i++) { |     for(int i=0;i<nbasis;i++) { | ||||||
|       /*      auto basis_ = Basis[i],  );*/ |       auto basis_ = Basis[i].View(); | ||||||
|       if(i==0) fineData_[sf]=coarseData_[sc](i) *basis_[sf]); |       if(i==0) fineData_[sf]=coarseData_[sc](i) *basis_[sf]); | ||||||
|       else     fineData_[sf]=fineData_[sf]+coarseData_[sc](i)*basis_[sf]); |       else     fineData_[sf]=fineData_[sf]+coarseData_[sc](i)*basis_[sf]); | ||||||
|     } |     } | ||||||
| @@ -577,14 +543,7 @@ inline void blockPromote(const Lattice<iVector<CComplex,nbasis > > &coarseData, | |||||||
|   fineData=Zero(); |   fineData=Zero(); | ||||||
|   for(int i=0;i<nbasis;i++) { |   for(int i=0;i<nbasis;i++) { | ||||||
|     Lattice<iScalar<CComplex> > ip = PeekIndex<0>(coarseData,i); |     Lattice<iScalar<CComplex> > ip = PeekIndex<0>(coarseData,i); | ||||||
|  |     auto  ip_ =  ip.AcceleratorView(ViewRead); | ||||||
|     //Lattice<CComplex> cip(coarse); |  | ||||||
|     //autoView( cip_ , cip, AcceleratorWrite); |  | ||||||
|     //autoView(  ip_ ,  ip, AcceleratorRead); |  | ||||||
|     //accelerator_forNB(sc,coarse->oSites(),CComplex::Nsimd(),{ |  | ||||||
|     //	coalescedWrite(cip_[sc], ip_(sc)()); |  | ||||||
|     //  }); |  | ||||||
|     //blockZAXPY<vobj,CComplex >(fineData,cip,Basis[i],fineData); |  | ||||||
|     blockZAXPY(fineData,ip,Basis[i],fineData); |     blockZAXPY(fineData,ip,Basis[i],fineData); | ||||||
|   } |   } | ||||||
| } | } | ||||||
| @@ -612,17 +571,15 @@ void localConvert(const Lattice<vobj> &in,Lattice<vvobj> &out) | |||||||
|     assert(ig->lSites() == og->lSites()); |     assert(ig->lSites() == og->lSites()); | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   autoView(in_v,in,CpuRead); |  | ||||||
|   autoView(out_v,out,CpuWrite); |  | ||||||
|   thread_for(idx, ig->lSites(),{ |   thread_for(idx, ig->lSites(),{ | ||||||
|     sobj s; |     sobj s; | ||||||
|     ssobj ss; |     ssobj ss; | ||||||
|  |  | ||||||
|     Coordinate lcoor(ni); |     Coordinate lcoor(ni); | ||||||
|     ig->LocalIndexToLocalCoor(idx,lcoor); |     ig->LocalIndexToLocalCoor(idx,lcoor); | ||||||
|     peekLocalSite(s,in_v,lcoor); |     peekLocalSite(s,in,lcoor); | ||||||
|     ss=s; |     ss=s; | ||||||
|     pokeLocalSite(ss,out_v,lcoor); |     pokeLocalSite(ss,out,lcoor); | ||||||
|   }); |   }); | ||||||
| } | } | ||||||
|  |  | ||||||
| @@ -657,9 +614,8 @@ void localCopyRegion(const Lattice<vobj> &From,Lattice<vobj> & To,Coordinate Fro | |||||||
|   Coordinate rdt = Tg->_rdimensions; |   Coordinate rdt = Tg->_rdimensions; | ||||||
|   Coordinate ist = Tg->_istride; |   Coordinate ist = Tg->_istride; | ||||||
|   Coordinate ost = Tg->_ostride; |   Coordinate ost = Tg->_ostride; | ||||||
|  |   auto t_v = To.AcceleratorView(ViewWrite); | ||||||
|   autoView( t_v , To, AcceleratorWrite); |   auto f_v = From.AcceleratorView(ViewRead); | ||||||
|   autoView( f_v , From, AcceleratorRead); |  | ||||||
|   accelerator_for(idx,Fg->lSites(),1,{ |   accelerator_for(idx,Fg->lSites(),1,{ | ||||||
|     sobj s; |     sobj s; | ||||||
|     Coordinate Fcoor(nd); |     Coordinate Fcoor(nd); | ||||||
| @@ -682,6 +638,8 @@ void localCopyRegion(const Lattice<vobj> &From,Lattice<vobj> & To,Coordinate Fro | |||||||
|       for(int w=0;w<words;w++){ |       for(int w=0;w<words;w++){ | ||||||
| 	tp[idx_t+w*Nsimd] = fp[idx_f+w*Nsimd];  // FIXME IF RRII layout, type pun no worke | 	tp[idx_t+w*Nsimd] = fp[idx_f+w*Nsimd];  // FIXME IF RRII layout, type pun no worke | ||||||
|       } |       } | ||||||
|  |       //      peekLocalSite(s,From,Fcoor); | ||||||
|  |       //      pokeLocalSite(s,To  ,Tcoor); | ||||||
|     } |     } | ||||||
|   }); |   }); | ||||||
| } | } | ||||||
| @@ -712,8 +670,6 @@ void InsertSlice(const Lattice<vobj> &lowDim,Lattice<vobj> & higherDim,int slice | |||||||
|   } |   } | ||||||
|  |  | ||||||
|   // the above should guarantee that the operations are local |   // the above should guarantee that the operations are local | ||||||
|   autoView(lowDimv,lowDim,CpuRead); |  | ||||||
|   autoView(higherDimv,higherDim,CpuWrite); |  | ||||||
|   thread_for(idx,lg->lSites(),{ |   thread_for(idx,lg->lSites(),{ | ||||||
|     sobj s; |     sobj s; | ||||||
|     Coordinate lcoor(nl); |     Coordinate lcoor(nl); | ||||||
| @@ -726,8 +682,8 @@ void InsertSlice(const Lattice<vobj> &lowDim,Lattice<vobj> & higherDim,int slice | |||||||
| 	hcoor[d]=lcoor[ddl++]; | 	hcoor[d]=lcoor[ddl++]; | ||||||
|       } |       } | ||||||
|     } |     } | ||||||
|     peekLocalSite(s,lowDimv,lcoor); |     peekLocalSite(s,lowDim,lcoor); | ||||||
|     pokeLocalSite(s,higherDimv,hcoor); |     pokeLocalSite(s,higherDim,hcoor); | ||||||
|   }); |   }); | ||||||
| } | } | ||||||
|  |  | ||||||
| @@ -755,8 +711,6 @@ void ExtractSlice(Lattice<vobj> &lowDim,const Lattice<vobj> & higherDim,int slic | |||||||
|     } |     } | ||||||
|   } |   } | ||||||
|   // the above should guarantee that the operations are local |   // the above should guarantee that the operations are local | ||||||
|   autoView(lowDimv,lowDim,CpuWrite); |  | ||||||
|   autoView(higherDimv,higherDim,CpuRead); |  | ||||||
|   thread_for(idx,lg->lSites(),{ |   thread_for(idx,lg->lSites(),{ | ||||||
|     sobj s; |     sobj s; | ||||||
|     Coordinate lcoor(nl); |     Coordinate lcoor(nl); | ||||||
| @@ -769,8 +723,8 @@ void ExtractSlice(Lattice<vobj> &lowDim,const Lattice<vobj> & higherDim,int slic | |||||||
| 	hcoor[d]=lcoor[ddl++]; | 	hcoor[d]=lcoor[ddl++]; | ||||||
|       } |       } | ||||||
|     } |     } | ||||||
|     peekLocalSite(s,higherDimv,hcoor); |     peekLocalSite(s,higherDim,hcoor); | ||||||
|     pokeLocalSite(s,lowDimv,lcoor); |     pokeLocalSite(s,lowDim,lcoor); | ||||||
|   }); |   }); | ||||||
|  |  | ||||||
| } | } | ||||||
| @@ -798,8 +752,6 @@ void InsertSliceLocal(const Lattice<vobj> &lowDim, Lattice<vobj> & higherDim,int | |||||||
|   } |   } | ||||||
|  |  | ||||||
|   // the above should guarantee that the operations are local |   // the above should guarantee that the operations are local | ||||||
|   autoView(lowDimv,lowDim,CpuRead); |  | ||||||
|   autoView(higherDimv,higherDim,CpuWrite); |  | ||||||
|   thread_for(idx,lg->lSites(),{ |   thread_for(idx,lg->lSites(),{ | ||||||
|     sobj s; |     sobj s; | ||||||
|     Coordinate lcoor(nl); |     Coordinate lcoor(nl); | ||||||
| @@ -808,8 +760,8 @@ void InsertSliceLocal(const Lattice<vobj> &lowDim, Lattice<vobj> & higherDim,int | |||||||
|     if( lcoor[orthog] == slice_lo ) {  |     if( lcoor[orthog] == slice_lo ) {  | ||||||
|       hcoor=lcoor; |       hcoor=lcoor; | ||||||
|       hcoor[orthog] = slice_hi; |       hcoor[orthog] = slice_hi; | ||||||
|       peekLocalSite(s,lowDimv,lcoor); |       peekLocalSite(s,lowDim,lcoor); | ||||||
|       pokeLocalSite(s,higherDimv,hcoor); |       pokeLocalSite(s,higherDim,hcoor); | ||||||
|     } |     } | ||||||
|   }); |   }); | ||||||
| } | } | ||||||
| @@ -837,8 +789,6 @@ void ExtractSliceLocal(Lattice<vobj> &lowDim,const Lattice<vobj> & higherDim,int | |||||||
|   } |   } | ||||||
|  |  | ||||||
|   // the above should guarantee that the operations are local |   // the above should guarantee that the operations are local | ||||||
|   autoView(lowDimv,lowDim,CpuWrite); |  | ||||||
|   autoView(higherDimv,higherDim,CpuRead); |  | ||||||
|   thread_for(idx,lg->lSites(),{ |   thread_for(idx,lg->lSites(),{ | ||||||
|     sobj s; |     sobj s; | ||||||
|     Coordinate lcoor(nl); |     Coordinate lcoor(nl); | ||||||
| @@ -847,8 +797,8 @@ void ExtractSliceLocal(Lattice<vobj> &lowDim,const Lattice<vobj> & higherDim,int | |||||||
|     if( lcoor[orthog] == slice_lo ) {  |     if( lcoor[orthog] == slice_lo ) {  | ||||||
|       hcoor=lcoor; |       hcoor=lcoor; | ||||||
|       hcoor[orthog] = slice_hi; |       hcoor[orthog] = slice_hi; | ||||||
|       peekLocalSite(s,higherDimv,hcoor); |       peekLocalSite(s,higherDim,hcoor); | ||||||
|       pokeLocalSite(s,lowDimv,lcoor); |       pokeLocalSite(s,lowDim,lcoor); | ||||||
|     } |     } | ||||||
|   }); |   }); | ||||||
| } | } | ||||||
| @@ -912,7 +862,7 @@ unvectorizeToLexOrdArray(std::vector<sobj> &out, const Lattice<vobj> &in) | |||||||
|   } |   } | ||||||
|  |  | ||||||
|   //loop over outer index |   //loop over outer index | ||||||
|   autoView( in_v  , in, CpuRead); |   auto in_v  = in.View(); | ||||||
|   thread_for(in_oidx,in_grid->oSites(),{ |   thread_for(in_oidx,in_grid->oSites(),{ | ||||||
|     //Assemble vector of pointers to output elements |     //Assemble vector of pointers to output elements | ||||||
|     ExtractPointerArray<sobj> out_ptrs(in_nsimd); |     ExtractPointerArray<sobj> out_ptrs(in_nsimd); | ||||||
| @@ -1005,7 +955,7 @@ vectorizeFromLexOrdArray( std::vector<sobj> &in, Lattice<vobj> &out) | |||||||
|     icoor[lane].resize(ndim); |     icoor[lane].resize(ndim); | ||||||
|     grid->iCoorFromIindex(icoor[lane],lane); |     grid->iCoorFromIindex(icoor[lane],lane); | ||||||
|   } |   } | ||||||
|   autoView( out_v , out, CpuWrite); |   auto out_v = out.View(); | ||||||
|   thread_for(oidx, grid->oSites(),{ |   thread_for(oidx, grid->oSites(),{ | ||||||
|     //Assemble vector of pointers to output elements |     //Assemble vector of pointers to output elements | ||||||
|     ExtractPointerArray<sobj> ptrs(nsimd); |     ExtractPointerArray<sobj> ptrs(nsimd); | ||||||
| @@ -1108,7 +1058,7 @@ void precisionChange(Lattice<VobjOut> &out, const Lattice<VobjIn> &in) | |||||||
|   std::vector<SobjOut> in_slex_conv(in_grid->lSites()); |   std::vector<SobjOut> in_slex_conv(in_grid->lSites()); | ||||||
|   unvectorizeToLexOrdArray(in_slex_conv, in); |   unvectorizeToLexOrdArray(in_slex_conv, in); | ||||||
|      |      | ||||||
|   autoView( out_v , out, CpuWrite); |   auto out_v = out.View(); | ||||||
|   thread_for(out_oidx,out_grid->oSites(),{ |   thread_for(out_oidx,out_grid->oSites(),{ | ||||||
|     Coordinate out_ocoor(ndim); |     Coordinate out_ocoor(ndim); | ||||||
|     out_grid->oCoorFromOindex(out_ocoor, out_oidx); |     out_grid->oCoorFromOindex(out_ocoor, out_oidx); | ||||||
|   | |||||||
| @@ -42,8 +42,8 @@ NAMESPACE_BEGIN(Grid); | |||||||
| template<class vobj> | template<class vobj> | ||||||
| inline Lattice<vobj> transpose(const Lattice<vobj> &lhs){ | inline Lattice<vobj> transpose(const Lattice<vobj> &lhs){ | ||||||
|   Lattice<vobj> ret(lhs.Grid()); |   Lattice<vobj> ret(lhs.Grid()); | ||||||
|   autoView( ret_v, ret, AcceleratorWrite); |   auto ret_v = ret.View(); | ||||||
|   autoView( lhs_v, lhs, AcceleratorRead); |   auto lhs_v = lhs.View(); | ||||||
|   accelerator_for(ss,lhs_v.size(),vobj::Nsimd(),{ |   accelerator_for(ss,lhs_v.size(),vobj::Nsimd(),{ | ||||||
|     coalescedWrite(ret_v[ss], transpose(lhs_v(ss))); |     coalescedWrite(ret_v[ss], transpose(lhs_v(ss))); | ||||||
|   }); |   }); | ||||||
| @@ -58,8 +58,8 @@ template<int Index,class vobj> | |||||||
| inline auto TransposeIndex(const Lattice<vobj> &lhs) -> Lattice<decltype(transposeIndex<Index>(vobj()))> | inline auto TransposeIndex(const Lattice<vobj> &lhs) -> Lattice<decltype(transposeIndex<Index>(vobj()))> | ||||||
| { | { | ||||||
|   Lattice<decltype(transposeIndex<Index>(vobj()))> ret(lhs.Grid()); |   Lattice<decltype(transposeIndex<Index>(vobj()))> ret(lhs.Grid()); | ||||||
|   autoView( ret_v, ret, AcceleratorWrite); |   auto ret_v = ret.View(); | ||||||
|   autoView( lhs_v, lhs, AcceleratorRead); |   auto lhs_v = lhs.View(); | ||||||
|   accelerator_for(ss,lhs_v.size(),vobj::Nsimd(),{ |   accelerator_for(ss,lhs_v.size(),vobj::Nsimd(),{ | ||||||
|     coalescedWrite(ret_v[ss] , transposeIndex<Index>(lhs_v(ss))); |     coalescedWrite(ret_v[ss] , transposeIndex<Index>(lhs_v(ss))); | ||||||
|   }); |   }); | ||||||
|   | |||||||
| @@ -35,8 +35,8 @@ NAMESPACE_BEGIN(Grid); | |||||||
|  |  | ||||||
| template<class obj> Lattice<obj> pow(const Lattice<obj> &rhs_i,RealD y){ | template<class obj> Lattice<obj> pow(const Lattice<obj> &rhs_i,RealD y){ | ||||||
|   Lattice<obj> ret_i(rhs_i.Grid()); |   Lattice<obj> ret_i(rhs_i.Grid()); | ||||||
|   autoView( rhs, rhs_i, AcceleratorRead); |   auto rhs = rhs_i.View(); | ||||||
|   autoView( ret, ret_i, AcceleratorWrite); |   auto ret = ret_i.View(); | ||||||
|   ret.Checkerboard() = rhs.Checkerboard(); |   ret.Checkerboard() = rhs.Checkerboard(); | ||||||
|   accelerator_for(ss,rhs.size(),1,{ |   accelerator_for(ss,rhs.size(),1,{ | ||||||
|       ret[ss]=pow(rhs[ss],y); |       ret[ss]=pow(rhs[ss],y); | ||||||
| @@ -45,8 +45,8 @@ template<class obj> Lattice<obj> pow(const Lattice<obj> &rhs_i,RealD y){ | |||||||
| } | } | ||||||
| template<class obj> Lattice<obj> mod(const Lattice<obj> &rhs_i,Integer y){ | template<class obj> Lattice<obj> mod(const Lattice<obj> &rhs_i,Integer y){ | ||||||
|   Lattice<obj> ret_i(rhs_i.Grid()); |   Lattice<obj> ret_i(rhs_i.Grid()); | ||||||
|   autoView( rhs , rhs_i, AcceleratorRead); |   auto rhs = rhs_i.View(); | ||||||
|   autoView( ret , ret_i, AcceleratorWrite); |   auto ret = ret_i.View(); | ||||||
|   ret.Checkerboard() = rhs.Checkerboard(); |   ret.Checkerboard() = rhs.Checkerboard(); | ||||||
|   accelerator_for(ss,rhs.size(),obj::Nsimd(),{ |   accelerator_for(ss,rhs.size(),obj::Nsimd(),{ | ||||||
|     coalescedWrite(ret[ss],mod(rhs(ss),y)); |     coalescedWrite(ret[ss],mod(rhs(ss),y)); | ||||||
| @@ -56,8 +56,8 @@ template<class obj> Lattice<obj> mod(const Lattice<obj> &rhs_i,Integer y){ | |||||||
|  |  | ||||||
| template<class obj> Lattice<obj> div(const Lattice<obj> &rhs_i,Integer y){ | template<class obj> Lattice<obj> div(const Lattice<obj> &rhs_i,Integer y){ | ||||||
|   Lattice<obj> ret_i(rhs_i.Grid()); |   Lattice<obj> ret_i(rhs_i.Grid()); | ||||||
|   autoView( ret , ret_i, AcceleratorWrite); |   auto ret = ret_i.View(); | ||||||
|   autoView( rhs , rhs_i, AcceleratorRead); |   auto rhs = rhs_i.View(); | ||||||
|   ret.Checkerboard() = rhs_i.Checkerboard(); |   ret.Checkerboard() = rhs_i.Checkerboard(); | ||||||
|   accelerator_for(ss,rhs.size(),obj::Nsimd(),{ |   accelerator_for(ss,rhs.size(),obj::Nsimd(),{ | ||||||
|     coalescedWrite(ret[ss],div(rhs(ss),y)); |     coalescedWrite(ret[ss],div(rhs(ss),y)); | ||||||
| @@ -67,8 +67,8 @@ template<class obj> Lattice<obj> div(const Lattice<obj> &rhs_i,Integer y){ | |||||||
|  |  | ||||||
| template<class obj> Lattice<obj> expMat(const Lattice<obj> &rhs_i, RealD alpha, Integer Nexp = DEFAULT_MAT_EXP){ | template<class obj> Lattice<obj> expMat(const Lattice<obj> &rhs_i, RealD alpha, Integer Nexp = DEFAULT_MAT_EXP){ | ||||||
|   Lattice<obj> ret_i(rhs_i.Grid()); |   Lattice<obj> ret_i(rhs_i.Grid()); | ||||||
|   autoView( rhs , rhs_i, AcceleratorRead); |   auto rhs = rhs_i.View(); | ||||||
|   autoView( ret , ret_i, AcceleratorWrite); |   auto ret = ret_i.View(); | ||||||
|   ret.Checkerboard() = rhs.Checkerboard(); |   ret.Checkerboard() = rhs.Checkerboard(); | ||||||
|   accelerator_for(ss,rhs.size(),obj::Nsimd(),{ |   accelerator_for(ss,rhs.size(),obj::Nsimd(),{ | ||||||
|     coalescedWrite(ret[ss],Exponentiate(rhs(ss),alpha, Nexp)); |     coalescedWrite(ret[ss],Exponentiate(rhs(ss),alpha, Nexp)); | ||||||
|   | |||||||
| @@ -1,173 +0,0 @@ | |||||||
| #pragma once |  | ||||||
| NAMESPACE_BEGIN(Grid); |  | ||||||
| /////////////////////////////////////////////////////////////////// |  | ||||||
| // Base class which can be used by traits to pick up behaviour |  | ||||||
| /////////////////////////////////////////////////////////////////// |  | ||||||
| class LatticeBase {}; |  | ||||||
|  |  | ||||||
| ///////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
| // Conformable checks; same instance of Grid required |  | ||||||
| ///////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
| void accelerator_inline conformable(GridBase *lhs,GridBase *rhs) |  | ||||||
| { |  | ||||||
|   assert(lhs == rhs); |  | ||||||
| } |  | ||||||
|  |  | ||||||
| //////////////////////////////////////////////////////////////////////////// |  | ||||||
| // Minimal base class containing only data valid to access from accelerator |  | ||||||
| // _odata will be a managed pointer in CUDA |  | ||||||
| //////////////////////////////////////////////////////////////////////////// |  | ||||||
| // Force access to lattice through a view object. |  | ||||||
| // prevents writing of code that will not offload to GPU, but perhaps annoyingly |  | ||||||
| // strict since host could could in principle direct access through the lattice object |  | ||||||
| // Need to decide programming model. |  | ||||||
| #define LATTICE_VIEW_STRICT |  | ||||||
| template<class vobj> class LatticeAccelerator : public LatticeBase |  | ||||||
| { |  | ||||||
| protected: |  | ||||||
|   //public: |  | ||||||
|   GridBase *_grid; |  | ||||||
|   int checkerboard; |  | ||||||
|   vobj     *_odata;    // A managed pointer |  | ||||||
|   uint64_t _odata_size;     |  | ||||||
|   ViewAdvise advise; |  | ||||||
| public: |  | ||||||
|   accelerator_inline LatticeAccelerator() : checkerboard(0), _odata(nullptr), _odata_size(0), _grid(nullptr), advise(AdviseDefault) { };  |  | ||||||
|   accelerator_inline uint64_t oSites(void) const { return _odata_size; }; |  | ||||||
|   accelerator_inline int  Checkerboard(void) const { return checkerboard; }; |  | ||||||
|   accelerator_inline int &Checkerboard(void) { return this->checkerboard; }; // can assign checkerboard on a container, not a view |  | ||||||
|   accelerator_inline ViewAdvise Advise(void) const { return advise; }; |  | ||||||
|   accelerator_inline ViewAdvise &Advise(void) { return this->advise; }; // can assign advise on a container, not a view |  | ||||||
|   accelerator_inline void Conformable(GridBase * &grid) const |  | ||||||
|   {  |  | ||||||
|     if (grid) conformable(grid, _grid); |  | ||||||
|     else      grid = _grid; |  | ||||||
|   }; |  | ||||||
|   // Host only |  | ||||||
|   GridBase * getGrid(void) const { return _grid; }; |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| ///////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
| // A View class which provides accessor to the data. |  | ||||||
| // This will be safe to call from accelerator_for and is trivially copy constructible |  | ||||||
| // The copy constructor for this will need to be used by device lambda functions |  | ||||||
| ///////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
| template<class vobj>  |  | ||||||
| class LatticeView : public LatticeAccelerator<vobj> |  | ||||||
| { |  | ||||||
| public: |  | ||||||
|   // Rvalue |  | ||||||
|   ViewMode mode; |  | ||||||
|   void * cpu_ptr; |  | ||||||
| #ifdef GRID_SIMT |  | ||||||
|   accelerator_inline const typename vobj::scalar_object operator()(size_t i) const {  |  | ||||||
|     return coalescedRead(this->_odata[i]);  |  | ||||||
|   } |  | ||||||
| #else  |  | ||||||
|   accelerator_inline const vobj & operator()(size_t i) const { return this->_odata[i]; } |  | ||||||
| #endif |  | ||||||
|  |  | ||||||
| #if 1 |  | ||||||
|   //  accelerator_inline const vobj & operator[](size_t i) const { return this->_odata[i]; }; |  | ||||||
|   accelerator_inline vobj       & operator[](size_t i) const { return this->_odata[i]; }; |  | ||||||
| #else |  | ||||||
|   accelerator_inline const vobj & operator[](size_t i) const { return this->_odata[i]; }; |  | ||||||
|   accelerator_inline vobj       & operator[](size_t i)       { return this->_odata[i]; }; |  | ||||||
| #endif |  | ||||||
|    |  | ||||||
|   accelerator_inline uint64_t begin(void) const { return 0;}; |  | ||||||
|   accelerator_inline uint64_t end(void)   const { return this->_odata_size; }; |  | ||||||
|   accelerator_inline uint64_t size(void)  const { return this->_odata_size; }; |  | ||||||
|  |  | ||||||
|   LatticeView(const LatticeAccelerator<vobj> &refer_to_me) : LatticeAccelerator<vobj> (refer_to_me){} |  | ||||||
|   LatticeView(const LatticeView<vobj> &refer_to_me) = default; // Trivially copyable |  | ||||||
|   LatticeView(const LatticeAccelerator<vobj> &refer_to_me,ViewMode mode) : LatticeAccelerator<vobj> (refer_to_me) |  | ||||||
|   { |  | ||||||
|     this->ViewOpen(mode); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   // Host functions |  | ||||||
|   void ViewOpen(ViewMode mode) |  | ||||||
|   { // Translate the pointer, could save a copy. Could use a "Handle" and not save _odata originally in base |  | ||||||
|     //    std::cout << "View Open"<<std::hex<<this->_odata<<std::dec <<std::endl; |  | ||||||
|     this->cpu_ptr = (void *)this->_odata; |  | ||||||
|     this->mode    = mode; |  | ||||||
|     this->_odata  =(vobj *) |  | ||||||
|       MemoryManager::ViewOpen(this->cpu_ptr, |  | ||||||
| 				this->_odata_size*sizeof(vobj), |  | ||||||
| 				mode, |  | ||||||
| 				this->advise);     |  | ||||||
|   } |  | ||||||
|   void ViewClose(void) |  | ||||||
|   { // Inform the manager |  | ||||||
|     //    std::cout << "View Close"<<std::hex<<this->cpu_ptr<<std::dec <<std::endl; |  | ||||||
|     MemoryManager::ViewClose(this->cpu_ptr,this->mode);     |  | ||||||
|   } |  | ||||||
|  |  | ||||||
| }; |  | ||||||
| // Little autoscope assister |  | ||||||
| template<class View>  |  | ||||||
| class ViewCloser |  | ||||||
| { |  | ||||||
|   View v;  // Take a copy of view and call view close when I go out of scope automatically |  | ||||||
|  public: |  | ||||||
|   ViewCloser(View &_v) : v(_v) {}; |  | ||||||
|   ~ViewCloser() { v.ViewClose(); } |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| #define autoView(l_v,l,mode)				\ |  | ||||||
| 	  auto l_v = l.View(mode);			\ |  | ||||||
| 	  ViewCloser<decltype(l_v)> _autoView##l_v(l_v); |  | ||||||
|  |  | ||||||
| ///////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
| // Lattice expression types used by ET to assemble the AST |  | ||||||
| //  |  | ||||||
| // Need to be able to detect code paths according to the whether a lattice object or not |  | ||||||
| // so introduce some trait type things |  | ||||||
| ///////////////////////////////////////////////////////////////////////////////////////// |  | ||||||
|  |  | ||||||
| class LatticeExpressionBase {}; |  | ||||||
|  |  | ||||||
| template <typename T> using is_lattice = std::is_base_of<LatticeBase, T>; |  | ||||||
| template <typename T> using is_lattice_expr = std::is_base_of<LatticeExpressionBase,T >; |  | ||||||
|  |  | ||||||
| template<class T, bool isLattice> struct ViewMapBase { typedef T Type; }; |  | ||||||
| template<class T>                 struct ViewMapBase<T,true> { typedef LatticeView<typename T::vector_object> Type; }; |  | ||||||
| template<class T> using ViewMap = ViewMapBase<T,std::is_base_of<LatticeBase, T>::value >; |  | ||||||
|  |  | ||||||
| template <typename Op, typename _T1>                            |  | ||||||
| class LatticeUnaryExpression : public  LatticeExpressionBase  |  | ||||||
| { |  | ||||||
| public: |  | ||||||
|   typedef typename ViewMap<_T1>::Type T1; |  | ||||||
|   Op op; |  | ||||||
|   T1 arg1; |  | ||||||
|   LatticeUnaryExpression(Op _op,const _T1 &_arg1) : op(_op), arg1(_arg1) {}; |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| template <typename Op, typename _T1, typename _T2>               |  | ||||||
| class LatticeBinaryExpression : public LatticeExpressionBase  |  | ||||||
| { |  | ||||||
| public: |  | ||||||
|   typedef typename ViewMap<_T1>::Type T1; |  | ||||||
|   typedef typename ViewMap<_T2>::Type T2; |  | ||||||
|   Op op; |  | ||||||
|   T1 arg1; |  | ||||||
|   T2 arg2; |  | ||||||
|   LatticeBinaryExpression(Op _op,const _T1 &_arg1,const _T2 &_arg2) : op(_op), arg1(_arg1), arg2(_arg2) {}; |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| template <typename Op, typename _T1, typename _T2, typename _T3>  |  | ||||||
| class LatticeTrinaryExpression : public LatticeExpressionBase  |  | ||||||
| { |  | ||||||
| public: |  | ||||||
|   typedef typename ViewMap<_T1>::Type T1; |  | ||||||
|   typedef typename ViewMap<_T2>::Type T2; |  | ||||||
|   typedef typename ViewMap<_T3>::Type T3; |  | ||||||
|   Op op; |  | ||||||
|   T1 arg1; |  | ||||||
|   T2 arg2; |  | ||||||
|   T3 arg3; |  | ||||||
|   LatticeTrinaryExpression(Op _op,const _T1 &_arg1,const _T2 &_arg2,const _T3 &_arg3) : op(_op), arg1(_arg1), arg2(_arg2), arg3(_arg3) {}; |  | ||||||
| }; |  | ||||||
| NAMESPACE_END(Grid); |  | ||||||
| @@ -43,7 +43,7 @@ inline void whereWolf(Lattice<vobj> &ret,const Lattice<iobj> &predicate,Lattice< | |||||||
|   conformable(iftrue,predicate); |   conformable(iftrue,predicate); | ||||||
|   conformable(iftrue,ret); |   conformable(iftrue,ret); | ||||||
|  |  | ||||||
|   GridBase *grid=iftrue.Grid(); |   GridBase *grid=iftrue._grid; | ||||||
|  |  | ||||||
|   typedef typename vobj::scalar_object scalar_object; |   typedef typename vobj::scalar_object scalar_object; | ||||||
|   typedef typename vobj::scalar_type scalar_type; |   typedef typename vobj::scalar_type scalar_type; | ||||||
| @@ -52,23 +52,22 @@ inline void whereWolf(Lattice<vobj> &ret,const Lattice<iobj> &predicate,Lattice< | |||||||
|  |  | ||||||
|   const int Nsimd = grid->Nsimd(); |   const int Nsimd = grid->Nsimd(); | ||||||
|  |  | ||||||
|   autoView(iftrue_v,iftrue,CpuRead); |   std::vector<Integer> mask(Nsimd); | ||||||
|   autoView(iffalse_v,iffalse,CpuRead); |   std::vector<scalar_object> truevals (Nsimd); | ||||||
|   autoView(predicate_v,predicate,CpuRead); |   std::vector<scalar_object> falsevals(Nsimd); | ||||||
|   autoView(ret_v,ret,CpuWrite); |  | ||||||
|   Integer NN= grid->oSites(); |   parallel_for(int ss=0;ss<iftrue._grid->oSites(); ss++){ | ||||||
|   thread_for(ss,NN,{ |  | ||||||
|     Integer mask; |     extract(iftrue._odata[ss]   ,truevals); | ||||||
|     scalar_object trueval; |     extract(iffalse._odata[ss]  ,falsevals); | ||||||
|     scalar_object falseval; |     extract<vInteger,Integer>(TensorRemove(predicate._odata[ss]),mask); | ||||||
|     for(int l=0;l<Nsimd;l++){ |  | ||||||
|       trueval =extractLane(l,iftrue_v[ss]); |     for(int s=0;s<Nsimd;s++){ | ||||||
|       falseval=extractLane(l,iffalse_v[ss]); |       if (mask[s]) falsevals[s]=truevals[s]; | ||||||
|       mask    =extractLane(l,predicate_v[ss]); |     } | ||||||
|       if (mask) falseval=trueval; |  | ||||||
|       insertLane(l,ret_v[ss],falseval); |     merge(ret._odata[ss],falsevals); | ||||||
|   } |   } | ||||||
|   }); |  | ||||||
| } | } | ||||||
|  |  | ||||||
| template<class vobj,class iobj> | template<class vobj,class iobj> | ||||||
| @@ -77,9 +76,9 @@ inline Lattice<vobj> whereWolf(const Lattice<iobj> &predicate,Lattice<vobj> &ift | |||||||
|   conformable(iftrue,iffalse); |   conformable(iftrue,iffalse); | ||||||
|   conformable(iftrue,predicate); |   conformable(iftrue,predicate); | ||||||
|  |  | ||||||
|   Lattice<vobj> ret(iftrue.Grid()); |   Lattice<vobj> ret(iftrue._grid); | ||||||
|  |  | ||||||
|   whereWolf(ret,predicate,iftrue,iffalse); |   where(ret,predicate,iftrue,iffalse); | ||||||
|  |  | ||||||
|   return ret; |   return ret; | ||||||
| } | } | ||||||
|   | |||||||
| @@ -130,8 +130,6 @@ public: | |||||||
|   friend std::ostream& operator<< (std::ostream& stream, Logger& log){ |   friend std::ostream& operator<< (std::ostream& stream, Logger& log){ | ||||||
|  |  | ||||||
|     if ( log.active ) { |     if ( log.active ) { | ||||||
|       std::ios_base::fmtflags f(stream.flags()); |  | ||||||
|  |  | ||||||
|       stream << log.background()<<  std::left; |       stream << log.background()<<  std::left; | ||||||
|       if (log.topWidth > 0) |       if (log.topWidth > 0) | ||||||
|       { |       { | ||||||
| @@ -154,8 +152,6 @@ public: | |||||||
| 	       << now	       << log.background() << " : " ; | 	       << now	       << log.background() << " : " ; | ||||||
|       } |       } | ||||||
|       stream << log.colour(); |       stream << log.colour(); | ||||||
|       stream.flags(f); |  | ||||||
|  |  | ||||||
|       return stream; |       return stream; | ||||||
|     } else {  |     } else {  | ||||||
|       return devnull; |       return devnull; | ||||||
|   | |||||||
| @@ -1,4 +1,3 @@ | |||||||
| #include <Grid/GridCore.h> | #include <Grid/GridCore.h> | ||||||
|  |  | ||||||
| int Grid::BinaryIO::latticeWriteMaxRetry = -1; | int Grid::BinaryIO::latticeWriteMaxRetry = -1; | ||||||
| Grid::BinaryIO::IoPerf Grid::BinaryIO::lastPerf; |  | ||||||
|   | |||||||
| @@ -79,13 +79,6 @@ inline void removeWhitespace(std::string &key) | |||||||
| /////////////////////////////////////////////////////////////////////////////////////////////////// | /////////////////////////////////////////////////////////////////////////////////////////////////// | ||||||
| class BinaryIO { | class BinaryIO { | ||||||
|  public: |  public: | ||||||
|   struct IoPerf |  | ||||||
|   { |  | ||||||
|     uint64_t size{0},time{0}; |  | ||||||
|     double   mbytesPerSecond{0.}; |  | ||||||
|   }; |  | ||||||
|  |  | ||||||
|   static IoPerf lastPerf; |  | ||||||
|   static int latticeWriteMaxRetry; |   static int latticeWriteMaxRetry; | ||||||
|  |  | ||||||
|   ///////////////////////////////////////////////////////////////////////////// |   ///////////////////////////////////////////////////////////////////////////// | ||||||
| @@ -509,15 +502,12 @@ class BinaryIO { | |||||||
|       timer.Stop(); |       timer.Stop(); | ||||||
|     } |     } | ||||||
|      |      | ||||||
|     lastPerf.size            = sizeof(fobj)*iodata.size()*nrank; |  | ||||||
|     lastPerf.time            = timer.useconds(); |  | ||||||
|     lastPerf.mbytesPerSecond = lastPerf.size/1024./1024./(lastPerf.time/1.0e6); |  | ||||||
|     std::cout<<GridLogMessage<<"IOobject: "; |     std::cout<<GridLogMessage<<"IOobject: "; | ||||||
|     if ( control & BINARYIO_READ) std::cout << " read  "; |     if ( control & BINARYIO_READ) std::cout << " read  "; | ||||||
|     else                          std::cout << " write "; |     else                          std::cout << " write "; | ||||||
|     uint64_t bytes = sizeof(fobj)*iodata.size()*nrank; |     uint64_t bytes = sizeof(fobj)*iodata.size()*nrank; | ||||||
|     std::cout<< lastPerf.size <<" bytes in "<< timer.Elapsed() <<" " |     std::cout<< bytes <<" bytes in "<<timer.Elapsed() <<" " | ||||||
| 	     << lastPerf.mbytesPerSecond <<" MB/s "<<std::endl; | 	     << (double)bytes/ (double)timer.useconds() <<" MB/s "<<std::endl; | ||||||
|  |  | ||||||
|     std::cout<<GridLogMessage<<"IOobject: endian and checksum overhead "<<bstimer.Elapsed()  <<std::endl; |     std::cout<<GridLogMessage<<"IOobject: endian and checksum overhead "<<bstimer.Elapsed()  <<std::endl; | ||||||
|  |  | ||||||
| @@ -673,15 +663,10 @@ class BinaryIO { | |||||||
| 	     nersc_csum,scidac_csuma,scidac_csumb); | 	     nersc_csum,scidac_csuma,scidac_csumb); | ||||||
|  |  | ||||||
|     timer.Start(); |     timer.Start(); | ||||||
|     thread_for(lidx,lsites,{  // FIX ME, suboptimal implementation |     thread_for(lidx,lsites,{ | ||||||
|       std::vector<RngStateType> tmp(RngStateCount); |       std::vector<RngStateType> tmp(RngStateCount); | ||||||
|       std::copy(iodata[lidx].begin(),iodata[lidx].end(),tmp.begin()); |       std::copy(iodata[lidx].begin(),iodata[lidx].end(),tmp.begin()); | ||||||
|       Coordinate lcoor; |       parallel_rng.SetState(tmp,lidx); | ||||||
|       grid->LocalIndexToLocalCoor(lidx, lcoor); |  | ||||||
|       int o_idx=grid->oIndex(lcoor); |  | ||||||
|       int i_idx=grid->iIndex(lcoor); |  | ||||||
|       int gidx=parallel_rng.generator_idx(o_idx,i_idx); |  | ||||||
|       parallel_rng.SetState(tmp,gidx); |  | ||||||
|       }); |       }); | ||||||
|     timer.Stop(); |     timer.Stop(); | ||||||
|  |  | ||||||
| @@ -738,12 +723,7 @@ class BinaryIO { | |||||||
|     std::vector<RNGstate> iodata(lsites); |     std::vector<RNGstate> iodata(lsites); | ||||||
|     thread_for(lidx,lsites,{ |     thread_for(lidx,lsites,{ | ||||||
|       std::vector<RngStateType> tmp(RngStateCount); |       std::vector<RngStateType> tmp(RngStateCount); | ||||||
|       Coordinate lcoor; |       parallel_rng.GetState(tmp,lidx); | ||||||
|       grid->LocalIndexToLocalCoor(lidx, lcoor); |  | ||||||
|       int o_idx=grid->oIndex(lcoor); |  | ||||||
|       int i_idx=grid->iIndex(lcoor); |  | ||||||
|       int gidx=parallel_rng.generator_idx(o_idx,i_idx); |  | ||||||
|       parallel_rng.GetState(tmp,gidx); |  | ||||||
|       std::copy(tmp.begin(),tmp.end(),iodata[lidx].begin()); |       std::copy(tmp.begin(),tmp.end(),iodata[lidx].begin()); | ||||||
|     }); |     }); | ||||||
|     timer.Stop(); |     timer.Stop(); | ||||||
|   | |||||||
| @@ -123,7 +123,7 @@ assert(GRID_FIELD_NORM_CALC(FieldNormMetaData_, n2ck) < 1.0e-5); | |||||||
|  //////////////////////////////////////////////////////////// |  //////////////////////////////////////////////////////////// | ||||||
|  // Helper to fill out metadata |  // Helper to fill out metadata | ||||||
|  //////////////////////////////////////////////////////////// |  //////////////////////////////////////////////////////////// | ||||||
| template<class vobj> void ScidacMetaData(Lattice<vobj> & field, |  template<class vobj> void ScidacMetaData(Lattice<vobj> & field, | ||||||
| 					  FieldMetaData &header, | 					  FieldMetaData &header, | ||||||
| 					  scidacRecord & _scidacRecord, | 					  scidacRecord & _scidacRecord, | ||||||
| 					  scidacFile   & _scidacFile)  | 					  scidacFile   & _scidacFile)  | ||||||
| @@ -576,8 +576,6 @@ class ScidacReader : public GridLimeReader { | |||||||
|     std::string rec_name(ILDG_BINARY_DATA); |     std::string rec_name(ILDG_BINARY_DATA); | ||||||
|     while ( limeReaderNextRecord(LimeR) == LIME_SUCCESS ) {  |     while ( limeReaderNextRecord(LimeR) == LIME_SUCCESS ) {  | ||||||
|       if ( !strncmp(limeReaderType(LimeR), rec_name.c_str(),strlen(rec_name.c_str()) )  ) { |       if ( !strncmp(limeReaderType(LimeR), rec_name.c_str(),strlen(rec_name.c_str()) )  ) { | ||||||
|   // in principle should do the line below, but that breaks backard compatibility with old data |  | ||||||
|   // skipPastObjectRecord(std::string(GRID_FIELD_NORM)); |  | ||||||
| 	skipPastObjectRecord(std::string(SCIDAC_CHECKSUM)); | 	skipPastObjectRecord(std::string(SCIDAC_CHECKSUM)); | ||||||
| 	return; | 	return; | ||||||
|       } |       } | ||||||
| @@ -621,12 +619,12 @@ class IldgWriter : public ScidacWriter { | |||||||
|   // Don't require scidac records EXCEPT checksum |   // Don't require scidac records EXCEPT checksum | ||||||
|   // Use Grid MetaData object if present. |   // Use Grid MetaData object if present. | ||||||
|   //////////////////////////////////////////////////////////////// |   //////////////////////////////////////////////////////////////// | ||||||
|   template <class stats = PeriodicGaugeStatistics> |   template <class vsimd> | ||||||
|   void writeConfiguration(Lattice<vLorentzColourMatrixD > &Umu,int sequence,std::string LFN,std::string description)  |   void writeConfiguration(Lattice<iLorentzColourMatrix<vsimd> > &Umu,int sequence,std::string LFN,std::string description)  | ||||||
|   { |   { | ||||||
|     GridBase * grid = Umu.Grid(); |     GridBase * grid = Umu.Grid(); | ||||||
|     typedef Lattice<vLorentzColourMatrixD> GaugeField; |     typedef Lattice<iLorentzColourMatrix<vsimd> > GaugeField; | ||||||
|     typedef vLorentzColourMatrixD vobj; |     typedef iLorentzColourMatrix<vsimd> vobj; | ||||||
|     typedef typename vobj::scalar_object sobj; |     typedef typename vobj::scalar_object sobj; | ||||||
|  |  | ||||||
|     //////////////////////////////////////// |     //////////////////////////////////////// | ||||||
| @@ -638,9 +636,6 @@ class IldgWriter : public ScidacWriter { | |||||||
|  |  | ||||||
|     ScidacMetaData(Umu,header,_scidacRecord,_scidacFile); |     ScidacMetaData(Umu,header,_scidacRecord,_scidacFile); | ||||||
|  |  | ||||||
|     stats Stats; |  | ||||||
|     Stats(Umu,header); |  | ||||||
|      |  | ||||||
|     std::string format = header.floating_point; |     std::string format = header.floating_point; | ||||||
|     header.ensemble_id    = description; |     header.ensemble_id    = description; | ||||||
|     header.ensemble_label = description; |     header.ensemble_label = description; | ||||||
| @@ -710,10 +705,10 @@ class IldgReader : public GridLimeReader { | |||||||
|   // Else use ILDG MetaData object if present. |   // Else use ILDG MetaData object if present. | ||||||
|   // Else use SciDAC MetaData object if present. |   // Else use SciDAC MetaData object if present. | ||||||
|   //////////////////////////////////////////////////////////////// |   //////////////////////////////////////////////////////////////// | ||||||
|   template <class stats = PeriodicGaugeStatistics> |   template <class vsimd> | ||||||
|   void readConfiguration(Lattice<vLorentzColourMatrixD> &Umu, FieldMetaData &FieldMetaData_) { |   void readConfiguration(Lattice<iLorentzColourMatrix<vsimd> > &Umu, FieldMetaData &FieldMetaData_) { | ||||||
|  |  | ||||||
|     typedef Lattice<vLorentzColourMatrixD > GaugeField; |     typedef Lattice<iLorentzColourMatrix<vsimd> > GaugeField; | ||||||
|     typedef typename GaugeField::vector_object  vobj; |     typedef typename GaugeField::vector_object  vobj; | ||||||
|     typedef typename vobj::scalar_object sobj; |     typedef typename vobj::scalar_object sobj; | ||||||
|  |  | ||||||
| @@ -926,8 +921,7 @@ class IldgReader : public GridLimeReader { | |||||||
|  |  | ||||||
|     if ( found_FieldMetaData || found_usqcdInfo ) { |     if ( found_FieldMetaData || found_usqcdInfo ) { | ||||||
|       FieldMetaData checker; |       FieldMetaData checker; | ||||||
|       stats Stats; |       GaugeStatistics(Umu,checker); | ||||||
|       Stats(Umu,checker); |  | ||||||
|       assert(fabs(checker.plaquette  - FieldMetaData_.plaquette )<1.0e-5); |       assert(fabs(checker.plaquette  - FieldMetaData_.plaquette )<1.0e-5); | ||||||
|       assert(fabs(checker.link_trace - FieldMetaData_.link_trace)<1.0e-5); |       assert(fabs(checker.link_trace - FieldMetaData_.link_trace)<1.0e-5); | ||||||
|       std::cout << GridLogMessage<<"Plaquette and link trace match " << std::endl; |       std::cout << GridLogMessage<<"Plaquette and link trace match " << std::endl; | ||||||
|   | |||||||
| @@ -128,7 +128,7 @@ inline void MachineCharacteristics(FieldMetaData &header) | |||||||
|   std::time_t t = std::time(nullptr); |   std::time_t t = std::time(nullptr); | ||||||
|   std::tm tm_ = *std::localtime(&t); |   std::tm tm_ = *std::localtime(&t); | ||||||
|   std::ostringstream oss;  |   std::ostringstream oss;  | ||||||
|   oss << std::put_time(&tm_, "%c %Z"); |   //      oss << std::put_time(&tm_, "%c %Z"); | ||||||
|   header.creation_date = oss.str(); |   header.creation_date = oss.str(); | ||||||
|   header.archive_date  = header.creation_date; |   header.archive_date  = header.creation_date; | ||||||
|  |  | ||||||
| @@ -176,18 +176,29 @@ template<class vobj> inline void PrepareMetaData(Lattice<vobj> & field, FieldMet | |||||||
|   GridMetaData(grid,header);  |   GridMetaData(grid,header);  | ||||||
|   MachineCharacteristics(header); |   MachineCharacteristics(header); | ||||||
| } | } | ||||||
| template<class Impl> | inline void GaugeStatistics(Lattice<vLorentzColourMatrixF> & data,FieldMetaData &header) | ||||||
| class GaugeStatistics |  | ||||||
| { | { | ||||||
| public: |   // How to convert data precision etc... | ||||||
|   void operator()(Lattice<vLorentzColourMatrixD> & data,FieldMetaData &header) |   header.link_trace=WilsonLoops<PeriodicGimplF>::linkTrace(data); | ||||||
|   { |   header.plaquette =WilsonLoops<PeriodicGimplF>::avgPlaquette(data); | ||||||
|     header.link_trace=WilsonLoops<Impl>::linkTrace(data); | } | ||||||
|     header.plaquette =WilsonLoops<Impl>::avgPlaquette(data); | inline void GaugeStatistics(Lattice<vLorentzColourMatrixD> & data,FieldMetaData &header) | ||||||
|   } | { | ||||||
| }; |   // How to convert data precision etc... | ||||||
| typedef GaugeStatistics<PeriodicGimplD> PeriodicGaugeStatistics; |   header.link_trace=WilsonLoops<PeriodicGimplD>::linkTrace(data); | ||||||
| typedef GaugeStatistics<ConjugateGimplD> ConjugateGaugeStatistics; |   header.plaquette =WilsonLoops<PeriodicGimplD>::avgPlaquette(data); | ||||||
|  | } | ||||||
|  | template<> inline void PrepareMetaData<vLorentzColourMatrixF>(Lattice<vLorentzColourMatrixF> & field, FieldMetaData &header) | ||||||
|  | { | ||||||
|  |     | ||||||
|  |   GridBase *grid = field.Grid(); | ||||||
|  |   std::string format = getFormatString<vLorentzColourMatrixF>(); | ||||||
|  |   header.floating_point = format; | ||||||
|  |   header.checksum = 0x0; // Nersc checksum unused in ILDG, Scidac | ||||||
|  |   GridMetaData(grid,header);  | ||||||
|  |   GaugeStatistics(field,header); | ||||||
|  |   MachineCharacteristics(header); | ||||||
|  | } | ||||||
| template<> inline void PrepareMetaData<vLorentzColourMatrixD>(Lattice<vLorentzColourMatrixD> & field, FieldMetaData &header) | template<> inline void PrepareMetaData<vLorentzColourMatrixD>(Lattice<vLorentzColourMatrixD> & field, FieldMetaData &header) | ||||||
| { | { | ||||||
|   GridBase *grid = field.Grid(); |   GridBase *grid = field.Grid(); | ||||||
| @@ -195,6 +206,7 @@ template<> inline void PrepareMetaData<vLorentzColourMatrixD>(Lattice<vLorentzCo | |||||||
|   header.floating_point = format; |   header.floating_point = format; | ||||||
|   header.checksum = 0x0; // Nersc checksum unused in ILDG, Scidac |   header.checksum = 0x0; // Nersc checksum unused in ILDG, Scidac | ||||||
|   GridMetaData(grid,header);  |   GridMetaData(grid,header);  | ||||||
|  |   GaugeStatistics(field,header); | ||||||
|   MachineCharacteristics(header); |   MachineCharacteristics(header); | ||||||
| } | } | ||||||
|  |  | ||||||
|   | |||||||
| @@ -40,8 +40,6 @@ using namespace Grid; | |||||||
| class NerscIO : public BinaryIO {  | class NerscIO : public BinaryIO {  | ||||||
| public: | public: | ||||||
|  |  | ||||||
|   typedef Lattice<vLorentzColourMatrixD> GaugeField; |  | ||||||
|  |  | ||||||
|   static inline void truncate(std::string file){ |   static inline void truncate(std::string file){ | ||||||
|     std::ofstream fout(file,std::ios::out); |     std::ofstream fout(file,std::ios::out); | ||||||
|   } |   } | ||||||
| @@ -131,12 +129,12 @@ public: | |||||||
|   // Now the meat: the object readers |   // Now the meat: the object readers | ||||||
|   ///////////////////////////////////////////////////////////////////////////////////////////////////////////////////// |   ///////////////////////////////////////////////////////////////////////////////////////////////////////////////////// | ||||||
|  |  | ||||||
|   template<class GaugeStats=PeriodicGaugeStatistics> |   template<class vsimd> | ||||||
|   static inline void readConfiguration(GaugeField &Umu, |   static inline void readConfiguration(Lattice<iLorentzColourMatrix<vsimd> > &Umu, | ||||||
| 				       FieldMetaData& header, | 				       FieldMetaData& header, | ||||||
| 				       std::string file, | 				       std::string file) | ||||||
| 				       GaugeStats GaugeStatisticsCalculator=GaugeStats()) |  | ||||||
|   { |   { | ||||||
|  |     typedef Lattice<iLorentzColourMatrix<vsimd> > GaugeField; | ||||||
|  |  | ||||||
|     GridBase *grid = Umu.Grid(); |     GridBase *grid = Umu.Grid(); | ||||||
|     uint64_t offset = readHeader(file,Umu.Grid(),header); |     uint64_t offset = readHeader(file,Umu.Grid(),header); | ||||||
| @@ -155,23 +153,23 @@ public: | |||||||
|     // munger is a function of <floating point, Real, data_type> |     // munger is a function of <floating point, Real, data_type> | ||||||
|     if ( header.data_type == std::string("4D_SU3_GAUGE") ) { |     if ( header.data_type == std::string("4D_SU3_GAUGE") ) { | ||||||
|       if ( ieee32 || ieee32big ) { |       if ( ieee32 || ieee32big ) { | ||||||
| 	BinaryIO::readLatticeObject<vLorentzColourMatrixD, LorentzColour2x3F>  | 	BinaryIO::readLatticeObject<iLorentzColourMatrix<vsimd>, LorentzColour2x3F>  | ||||||
| 	  (Umu,file,Gauge3x2munger<LorentzColour2x3F,LorentzColourMatrix>(), offset,format, | 	  (Umu,file,Gauge3x2munger<LorentzColour2x3F,LorentzColourMatrix>(), offset,format, | ||||||
| 	   nersc_csum,scidac_csuma,scidac_csumb); | 	   nersc_csum,scidac_csuma,scidac_csumb); | ||||||
|       } |       } | ||||||
|       if ( ieee64 || ieee64big ) { |       if ( ieee64 || ieee64big ) { | ||||||
| 	BinaryIO::readLatticeObject<vLorentzColourMatrixD, LorentzColour2x3D>  | 	BinaryIO::readLatticeObject<iLorentzColourMatrix<vsimd>, LorentzColour2x3D>  | ||||||
| 	  (Umu,file,Gauge3x2munger<LorentzColour2x3D,LorentzColourMatrix>(),offset,format, | 	  (Umu,file,Gauge3x2munger<LorentzColour2x3D,LorentzColourMatrix>(),offset,format, | ||||||
| 	   nersc_csum,scidac_csuma,scidac_csumb); | 	   nersc_csum,scidac_csuma,scidac_csumb); | ||||||
|       } |       } | ||||||
|     } else if ( header.data_type == std::string("4D_SU3_GAUGE_3x3") ) { |     } else if ( header.data_type == std::string("4D_SU3_GAUGE_3x3") ) { | ||||||
|       if ( ieee32 || ieee32big ) { |       if ( ieee32 || ieee32big ) { | ||||||
| 	BinaryIO::readLatticeObject<vLorentzColourMatrixD,LorentzColourMatrixF> | 	BinaryIO::readLatticeObject<iLorentzColourMatrix<vsimd>,LorentzColourMatrixF> | ||||||
| 	  (Umu,file,GaugeSimpleMunger<LorentzColourMatrixF,LorentzColourMatrix>(),offset,format, | 	  (Umu,file,GaugeSimpleMunger<LorentzColourMatrixF,LorentzColourMatrix>(),offset,format, | ||||||
| 	   nersc_csum,scidac_csuma,scidac_csumb); | 	   nersc_csum,scidac_csuma,scidac_csumb); | ||||||
|       } |       } | ||||||
|       if ( ieee64 || ieee64big ) { |       if ( ieee64 || ieee64big ) { | ||||||
| 	BinaryIO::readLatticeObject<vLorentzColourMatrixD,LorentzColourMatrixD> | 	BinaryIO::readLatticeObject<iLorentzColourMatrix<vsimd>,LorentzColourMatrixD> | ||||||
| 	  (Umu,file,GaugeSimpleMunger<LorentzColourMatrixD,LorentzColourMatrix>(),offset,format, | 	  (Umu,file,GaugeSimpleMunger<LorentzColourMatrixD,LorentzColourMatrix>(),offset,format, | ||||||
| 	   nersc_csum,scidac_csuma,scidac_csumb); | 	   nersc_csum,scidac_csuma,scidac_csumb); | ||||||
|       } |       } | ||||||
| @@ -179,7 +177,7 @@ public: | |||||||
|       assert(0); |       assert(0); | ||||||
|     } |     } | ||||||
|  |  | ||||||
|     GaugeStats Stats; Stats(Umu,clone); |     GaugeStatistics(Umu,clone); | ||||||
|  |  | ||||||
|     std::cout<<GridLogMessage <<"NERSC Configuration "<<file<<" checksum "<<std::hex<<nersc_csum<< std::dec |     std::cout<<GridLogMessage <<"NERSC Configuration "<<file<<" checksum "<<std::hex<<nersc_csum<< std::dec | ||||||
| 	     <<" header   "<<std::hex<<header.checksum<<std::dec <<std::endl; | 	     <<" header   "<<std::hex<<header.checksum<<std::dec <<std::endl; | ||||||
| @@ -205,22 +203,15 @@ public: | |||||||
|     std::cout<<GridLogMessage <<"NERSC Configuration "<<file<< " and plaquette, link trace, and checksum agree"<<std::endl; |     std::cout<<GridLogMessage <<"NERSC Configuration "<<file<< " and plaquette, link trace, and checksum agree"<<std::endl; | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   // Preferred interface |   template<class vsimd> | ||||||
|   template<class GaugeStats=PeriodicGaugeStatistics> |   static inline void writeConfiguration(Lattice<iLorentzColourMatrix<vsimd> > &Umu, | ||||||
|   static inline void writeConfiguration(Lattice<vLorentzColourMatrixD > &Umu, |  | ||||||
| 					std::string file,  |  | ||||||
| 					std::string ens_label = std::string("DWF")) |  | ||||||
|   { |  | ||||||
|     writeConfiguration(Umu,file,0,1,ens_label); |  | ||||||
|   } |  | ||||||
|   template<class GaugeStats=PeriodicGaugeStatistics> |  | ||||||
|   static inline void writeConfiguration(Lattice<vLorentzColourMatrixD > &Umu, |  | ||||||
| 					std::string file,  | 					std::string file,  | ||||||
| 					int two_row, | 					int two_row, | ||||||
| 					int bits32, | 					int bits32) | ||||||
| 					std::string ens_label = std::string("DWF")) |  | ||||||
|   { |   { | ||||||
|     typedef vLorentzColourMatrixD vobj; |     typedef Lattice<iLorentzColourMatrix<vsimd> > GaugeField; | ||||||
|  |  | ||||||
|  |     typedef iLorentzColourMatrix<vsimd> vobj; | ||||||
|     typedef typename vobj::scalar_object sobj; |     typedef typename vobj::scalar_object sobj; | ||||||
|  |  | ||||||
|     FieldMetaData header; |     FieldMetaData header; | ||||||
| @@ -228,8 +219,8 @@ public: | |||||||
|     // Following should become arguments |     // Following should become arguments | ||||||
|     /////////////////////////////////////////// |     /////////////////////////////////////////// | ||||||
|     header.sequence_number = 1; |     header.sequence_number = 1; | ||||||
|     header.ensemble_id     = std::string("UKQCD"); |     header.ensemble_id     = "UKQCD"; | ||||||
|     header.ensemble_label  = ens_label; |     header.ensemble_label  = "DWF"; | ||||||
|  |  | ||||||
|     typedef LorentzColourMatrixD fobj3D; |     typedef LorentzColourMatrixD fobj3D; | ||||||
|     typedef LorentzColour2x3D    fobj2D; |     typedef LorentzColour2x3D    fobj2D; | ||||||
| @@ -238,7 +229,7 @@ public: | |||||||
|  |  | ||||||
|     GridMetaData(grid,header); |     GridMetaData(grid,header); | ||||||
|     assert(header.nd==4); |     assert(header.nd==4); | ||||||
|     GaugeStats Stats; Stats(Umu,header); |     GaugeStatistics(Umu,header); | ||||||
|     MachineCharacteristics(header); |     MachineCharacteristics(header); | ||||||
|  |  | ||||||
| 	uint64_t offset; | 	uint64_t offset; | ||||||
|   | |||||||
| @@ -154,7 +154,7 @@ public: | |||||||
|     grid->Barrier(); timer.Stop(); |     grid->Barrier(); timer.Stop(); | ||||||
|     std::cout << Grid::GridLogMessage << "OpenQcdIO::readConfiguration: redistribute overhead " << timer.Elapsed() << std::endl; |     std::cout << Grid::GridLogMessage << "OpenQcdIO::readConfiguration: redistribute overhead " << timer.Elapsed() << std::endl; | ||||||
|  |  | ||||||
|     PeriodicGaugeStatistics Stats; Stats(Umu, clone); |     GaugeStatistics(Umu, clone); | ||||||
|  |  | ||||||
|     RealD plaq_diff = fabs(clone.plaquette - header.plaquette); |     RealD plaq_diff = fabs(clone.plaquette - header.plaquette); | ||||||
|  |  | ||||||
|   | |||||||
| @@ -208,7 +208,7 @@ public: | |||||||
|  |  | ||||||
|     FieldMetaData clone(header); |     FieldMetaData clone(header); | ||||||
|  |  | ||||||
|     PeriodicGaugeStatistics Stats; Stats(Umu, clone); |     GaugeStatistics(Umu, clone); | ||||||
|  |  | ||||||
|     RealD plaq_diff = fabs(clone.plaquette - header.plaquette); |     RealD plaq_diff = fabs(clone.plaquette - header.plaquette); | ||||||
|  |  | ||||||
|   | |||||||
| @@ -44,7 +44,7 @@ Author: paboyle <paboyle@ph.ed.ac.uk> | |||||||
| #include <sys/syscall.h> | #include <sys/syscall.h> | ||||||
| #endif | #endif | ||||||
| #ifdef __x86_64__ | #ifdef __x86_64__ | ||||||
| #ifdef GRID_CUDA | #ifdef GRID_NVCC | ||||||
| accelerator_inline uint64_t __rdtsc(void) {  return 0; } | accelerator_inline uint64_t __rdtsc(void) {  return 0; } | ||||||
| accelerator_inline uint64_t __rdpmc(int ) {  return 0; } | accelerator_inline uint64_t __rdpmc(int ) {  return 0; } | ||||||
| #else | #else | ||||||
| @@ -112,6 +112,7 @@ class PerformanceCounter { | |||||||
| private: | private: | ||||||
|  |  | ||||||
|   typedef struct {  |   typedef struct {  | ||||||
|  |   public: | ||||||
|     uint32_t type; |     uint32_t type; | ||||||
|     uint64_t config; |     uint64_t config; | ||||||
|     const char *name; |     const char *name; | ||||||
|   | |||||||
| @@ -12773,7 +12773,7 @@ namespace pugi | |||||||
| #undef PUGI__THROW_ERROR | #undef PUGI__THROW_ERROR | ||||||
| #undef PUGI__CHECK_ERROR | #undef PUGI__CHECK_ERROR | ||||||
|  |  | ||||||
| #ifdef GRID_CUDA | #ifdef GRID_NVCC | ||||||
| #pragma pop | #pragma pop | ||||||
| #endif | #endif | ||||||
|  |  | ||||||
|   | |||||||
| @@ -47,7 +47,7 @@ static constexpr int Ym = 5; | |||||||
| static constexpr int Zm = 6; | static constexpr int Zm = 6; | ||||||
| static constexpr int Tm = 7; | static constexpr int Tm = 7; | ||||||
|  |  | ||||||
| static constexpr int Nc=Config_Nc; | static constexpr int Nc=3; | ||||||
| static constexpr int Ns=4; | static constexpr int Ns=4; | ||||||
| static constexpr int Nd=4; | static constexpr int Nd=4; | ||||||
| static constexpr int Nhs=2; // half spinor | static constexpr int Nhs=2; // half spinor | ||||||
| @@ -80,13 +80,6 @@ template<typename T> struct isSpinor { | |||||||
| template <typename T> using IfSpinor    = Invoke<std::enable_if< isSpinor<T>::value,int> > ; | template <typename T> using IfSpinor    = Invoke<std::enable_if< isSpinor<T>::value,int> > ; | ||||||
| template <typename T> using IfNotSpinor = Invoke<std::enable_if<!isSpinor<T>::value,int> > ; | template <typename T> using IfNotSpinor = Invoke<std::enable_if<!isSpinor<T>::value,int> > ; | ||||||
|  |  | ||||||
| const int CoarseIndex = 4; |  | ||||||
| template<typename T> struct isCoarsened { |  | ||||||
|    static constexpr bool value = (CoarseIndex<=T::TensorLevel); |  | ||||||
| }; |  | ||||||
| template <typename T> using IfCoarsened    = Invoke<std::enable_if< isCoarsened<T>::value,int> > ; |  | ||||||
| template <typename T> using IfNotCoarsened = Invoke<std::enable_if<!isCoarsened<T>::value,int> > ; |  | ||||||
|  |  | ||||||
| // ChrisK very keen to add extra space for Gparity doubling. | // ChrisK very keen to add extra space for Gparity doubling. | ||||||
| // | // | ||||||
| // Also add domain wall index, in a way where Wilson operator  | // Also add domain wall index, in a way where Wilson operator  | ||||||
|   | |||||||
| @@ -41,7 +41,7 @@ class Action | |||||||
| public: | public: | ||||||
|   bool is_smeared = false; |   bool is_smeared = false; | ||||||
|   // Heatbath? |   // Heatbath? | ||||||
|   virtual void refresh(const GaugeField& U, GridSerialRNG &sRNG, GridParallelRNG& pRNG) = 0; // refresh pseudofermions |   virtual void refresh(const GaugeField& U, GridParallelRNG& pRNG) = 0; // refresh pseudofermions | ||||||
|   virtual RealD S(const GaugeField& U) = 0;                             // evaluate the action |   virtual RealD S(const GaugeField& U) = 0;                             // evaluate the action | ||||||
|   virtual void deriv(const GaugeField& U, GaugeField& dSdU) = 0;        // evaluate the action derivative |   virtual void deriv(const GaugeField& U, GaugeField& dSdU) = 0;        // evaluate the action derivative | ||||||
|   virtual std::string action_name()    = 0;                             // return the action name |   virtual std::string action_name()    = 0;                             // return the action name | ||||||
|   | |||||||
| @@ -1,240 +0,0 @@ | |||||||
| /************************************************************************************* |  | ||||||
|  |  | ||||||
|     Grid physics library, www.github.com/paboyle/Grid |  | ||||||
|  |  | ||||||
|     Source file: ./lib/qcd/action/fermion/CompactWilsonCloverFermion.h |  | ||||||
|  |  | ||||||
|     Copyright (C) 2020 - 2022 |  | ||||||
|  |  | ||||||
|     Author: Daniel Richtmann <daniel.richtmann@gmail.com> |  | ||||||
|     Author: Nils Meyer <nils.meyer@ur.de> |  | ||||||
|  |  | ||||||
|     This program is free software; you can redistribute it and/or modify |  | ||||||
|     it under the terms of the GNU General Public License as published by |  | ||||||
|     the Free Software Foundation; either version 2 of the License, or |  | ||||||
|     (at your option) any later version. |  | ||||||
|  |  | ||||||
|     This program is distributed in the hope that it will be useful, |  | ||||||
|     but WITHOUT ANY WARRANTY; without even the implied warranty of |  | ||||||
|     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the |  | ||||||
|     GNU General Public License for more details. |  | ||||||
|  |  | ||||||
|     You should have received a copy of the GNU General Public License along |  | ||||||
|     with this program; if not, write to the Free Software Foundation, Inc., |  | ||||||
|     51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. |  | ||||||
|  |  | ||||||
|     See the full license in the file "LICENSE" in the top level distribution directory |  | ||||||
|     *************************************************************************************/ |  | ||||||
| /*  END LEGAL */ |  | ||||||
|  |  | ||||||
| #pragma once |  | ||||||
|  |  | ||||||
| #include <Grid/qcd/action/fermion/WilsonCloverTypes.h> |  | ||||||
| #include <Grid/qcd/action/fermion/WilsonCloverHelpers.h> |  | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); |  | ||||||
|  |  | ||||||
| // see Grid/qcd/action/fermion/WilsonCloverFermion.h for description |  | ||||||
| // |  | ||||||
| // Modifications done here: |  | ||||||
| // |  | ||||||
| // Original: clover term = 12x12 matrix per site |  | ||||||
| // |  | ||||||
| // But: Only two diagonal 6x6 hermitian blocks are non-zero (also true for original, verified by running) |  | ||||||
| // Sufficient to store/transfer only the real parts of the diagonal and one triangular part |  | ||||||
| // 2 * (6 + 15 * 2) = 72 real or 36 complex words to be stored/transfered |  | ||||||
| // |  | ||||||
| // Here: Above but diagonal as complex numbers, i.e., need to store/transfer |  | ||||||
| // 2 * (6 * 2 + 15 * 2) = 84 real or 42 complex words |  | ||||||
| // |  | ||||||
| // Words per site and improvement compared to original (combined with the input and output spinors): |  | ||||||
| // |  | ||||||
| // - Original: 2*12 + 12*12 = 168 words -> 1.00 x less |  | ||||||
| // - Minimal:  2*12 + 36    =  60 words -> 2.80 x less |  | ||||||
| // - Here:     2*12 + 42    =  66 words -> 2.55 x less |  | ||||||
| // |  | ||||||
| // These improvements directly translate to wall-clock time |  | ||||||
| // |  | ||||||
| // Data layout: |  | ||||||
| // |  | ||||||
| // - diagonal and triangle part as separate lattice fields, |  | ||||||
| //   this was faster than as 1 combined field on all tested machines |  | ||||||
| // - diagonal: as expected |  | ||||||
| // - triangle: store upper right triangle in row major order |  | ||||||
| // - graphical: |  | ||||||
| //        0  1  2  3  4 |  | ||||||
| //           5  6  7  8 |  | ||||||
| //              9 10 11 = upper right triangle indices |  | ||||||
| //                12 13 |  | ||||||
| //                   14 |  | ||||||
| //     0 |  | ||||||
| //        1 |  | ||||||
| //           2 |  | ||||||
| //              3       = diagonal indices |  | ||||||
| //                 4 |  | ||||||
| //                    5 |  | ||||||
| //     0 |  | ||||||
| //     1  5 |  | ||||||
| //     2  6  9          = lower left triangle indices |  | ||||||
| //     3  7 10 12 |  | ||||||
| //     4  8 11 13 14 |  | ||||||
| // |  | ||||||
| // Impact on total memory consumption: |  | ||||||
| // - Original: (2 * 1 + 8 * 1/2) 12x12 matrices = 6 12x12 matrices = 864 complex words per site |  | ||||||
| // - Here:     (2 * 1 + 4 * 1/2) diagonal parts = 4 diagonal parts =  24 complex words per site |  | ||||||
| //           + (2 * 1 + 4 * 1/2) triangle parts = 4 triangle parts =  60 complex words per site |  | ||||||
| //                                                                 =  84 complex words per site |  | ||||||
|  |  | ||||||
| template<class Impl> |  | ||||||
| class CompactWilsonCloverFermion : public WilsonFermion<Impl>, |  | ||||||
|                                    public WilsonCloverHelpers<Impl>, |  | ||||||
|                                    public CompactWilsonCloverHelpers<Impl> { |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|   // Sizes |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|  |  | ||||||
| public: |  | ||||||
|  |  | ||||||
|   INHERIT_COMPACT_CLOVER_SIZES(Impl); |  | ||||||
|  |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|   // Type definitions |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|  |  | ||||||
| public: |  | ||||||
|  |  | ||||||
|   INHERIT_IMPL_TYPES(Impl); |  | ||||||
|   INHERIT_CLOVER_TYPES(Impl); |  | ||||||
|   INHERIT_COMPACT_CLOVER_TYPES(Impl); |  | ||||||
|  |  | ||||||
|   typedef WilsonFermion<Impl>              WilsonBase; |  | ||||||
|   typedef WilsonCloverHelpers<Impl>        Helpers; |  | ||||||
|   typedef CompactWilsonCloverHelpers<Impl> CompactHelpers; |  | ||||||
|  |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|   // Constructors |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|  |  | ||||||
| public: |  | ||||||
|  |  | ||||||
|   CompactWilsonCloverFermion(GaugeField& _Umu, |  | ||||||
| 			    GridCartesian& Fgrid, |  | ||||||
| 			    GridRedBlackCartesian& Hgrid, |  | ||||||
| 			    const RealD _mass, |  | ||||||
| 			    const RealD _csw_r = 0.0, |  | ||||||
| 			    const RealD _csw_t = 0.0, |  | ||||||
| 			    const RealD _cF = 1.0, |  | ||||||
| 			    const WilsonAnisotropyCoefficients& clover_anisotropy = WilsonAnisotropyCoefficients(), |  | ||||||
| 			    const ImplParams& impl_p = ImplParams()); |  | ||||||
|  |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|   // Member functions (implementing interface) |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|  |  | ||||||
| public: |  | ||||||
|  |  | ||||||
|   virtual void Instantiatable() {}; |  | ||||||
|   int          ConstEE()     override { return 0; }; |  | ||||||
|   int          isTrivialEE() override { return 0; }; |  | ||||||
|  |  | ||||||
|   void Dhop(const FermionField& in, FermionField& out, int dag) override; |  | ||||||
|  |  | ||||||
|   void DhopOE(const FermionField& in, FermionField& out, int dag) override; |  | ||||||
|  |  | ||||||
|   void DhopEO(const FermionField& in, FermionField& out, int dag) override; |  | ||||||
|  |  | ||||||
|   void DhopDir(const FermionField& in, FermionField& out, int dir, int disp) override; |  | ||||||
|  |  | ||||||
|   void DhopDirAll(const FermionField& in, std::vector<FermionField>& out) /* override */; |  | ||||||
|  |  | ||||||
|   void M(const FermionField& in, FermionField& out) override; |  | ||||||
|  |  | ||||||
|   void Mdag(const FermionField& in, FermionField& out) override; |  | ||||||
|  |  | ||||||
|   void Meooe(const FermionField& in, FermionField& out) override; |  | ||||||
|  |  | ||||||
|   void MeooeDag(const FermionField& in, FermionField& out) override; |  | ||||||
|  |  | ||||||
|   void Mooee(const FermionField& in, FermionField& out) override; |  | ||||||
|  |  | ||||||
|   void MooeeDag(const FermionField& in, FermionField& out) override; |  | ||||||
|  |  | ||||||
|   void MooeeInv(const FermionField& in, FermionField& out) override; |  | ||||||
|  |  | ||||||
|   void MooeeInvDag(const FermionField& in, FermionField& out) override; |  | ||||||
|  |  | ||||||
|   void Mdir(const FermionField& in, FermionField& out, int dir, int disp) override; |  | ||||||
|  |  | ||||||
|   void MdirAll(const FermionField& in, std::vector<FermionField>& out) override; |  | ||||||
|  |  | ||||||
|   void MDeriv(GaugeField& force, const FermionField& X, const FermionField& Y, int dag) override; |  | ||||||
|  |  | ||||||
|   void MooDeriv(GaugeField& mat, const FermionField& U, const FermionField& V, int dag) override; |  | ||||||
|  |  | ||||||
|   void MeeDeriv(GaugeField& mat, const FermionField& U, const FermionField& V, int dag) override; |  | ||||||
|  |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|   // Member functions (internals) |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|  |  | ||||||
|   void MooeeInternal(const FermionField&        in, |  | ||||||
|                      FermionField&              out, |  | ||||||
|                      const CloverDiagonalField& diagonal, |  | ||||||
|                      const CloverTriangleField& triangle); |  | ||||||
|  |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|   // Helpers |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|  |  | ||||||
|   void ImportGauge(const GaugeField& _Umu) override; |  | ||||||
|  |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|   // Helpers |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|  |  | ||||||
| private: |  | ||||||
|  |  | ||||||
|   template<class Field> |  | ||||||
|   const MaskField* getCorrectMaskField(const Field &in) const { |  | ||||||
|     if(in.Grid()->_isCheckerBoarded) { |  | ||||||
|       if(in.Checkerboard() == Odd) { |  | ||||||
|         return &this->BoundaryMaskOdd; |  | ||||||
|       } else { |  | ||||||
|         return &this->BoundaryMaskEven; |  | ||||||
|       } |  | ||||||
|     } else { |  | ||||||
|       return &this->BoundaryMask; |  | ||||||
|     } |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   template<class Field> |  | ||||||
|   void ApplyBoundaryMask(Field& f) { |  | ||||||
|     const MaskField* m = getCorrectMaskField(f); assert(m != nullptr); |  | ||||||
|     assert(m != nullptr); |  | ||||||
|     CompactHelpers::ApplyBoundaryMask(f, *m); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|   // Member Data |  | ||||||
|   ///////////////////////////////////////////// |  | ||||||
|  |  | ||||||
| public: |  | ||||||
|  |  | ||||||
|   RealD csw_r; |  | ||||||
|   RealD csw_t; |  | ||||||
|   RealD cF; |  | ||||||
|  |  | ||||||
|   bool open_boundaries; |  | ||||||
|  |  | ||||||
|   CloverDiagonalField Diagonal,    DiagonalEven,    DiagonalOdd; |  | ||||||
|   CloverDiagonalField DiagonalInv, DiagonalInvEven, DiagonalInvOdd; |  | ||||||
|  |  | ||||||
|   CloverTriangleField Triangle,    TriangleEven,    TriangleOdd; |  | ||||||
|   CloverTriangleField TriangleInv, TriangleInvEven, TriangleInvOdd; |  | ||||||
|  |  | ||||||
|   FermionField Tmp; |  | ||||||
|  |  | ||||||
|   MaskField BoundaryMask, BoundaryMaskEven, BoundaryMaskOdd; |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); |  | ||||||
| @@ -115,21 +115,18 @@ public: | |||||||
|       PokeIndex<LorentzIndex>(Uadj, U, mu); |       PokeIndex<LorentzIndex>(Uadj, U, mu); | ||||||
|     } |     } | ||||||
|      |      | ||||||
|     autoView(Umu_v,Umu,CpuRead); |     for (int lidx = 0; lidx < GaugeGrid->lSites(); lidx++) { | ||||||
|     autoView(Uadj_v,Uadj,CpuRead); |  | ||||||
|     autoView(Uds_v,Uds,CpuWrite); |  | ||||||
|     thread_for( lidx, GaugeGrid->lSites(), { |  | ||||||
|       Coordinate lcoor; |       Coordinate lcoor; | ||||||
|       GaugeGrid->LocalIndexToLocalCoor(lidx, lcoor); |       GaugeGrid->LocalIndexToLocalCoor(lidx, lcoor); | ||||||
|        |        | ||||||
|       peekLocalSite(ScalarUmu, Umu_v, lcoor); |       peekLocalSite(ScalarUmu, Umu, lcoor); | ||||||
|       for (int mu = 0; mu < 4; mu++) ScalarUds(mu) = ScalarUmu(mu); |       for (int mu = 0; mu < 4; mu++) ScalarUds(mu) = ScalarUmu(mu); | ||||||
|        |        | ||||||
|       peekLocalSite(ScalarUmu, Uadj_v, lcoor); |       peekLocalSite(ScalarUmu, Uadj, lcoor); | ||||||
|       for (int mu = 0; mu < 4; mu++) ScalarUds(mu + 4) = ScalarUmu(mu); |       for (int mu = 0; mu < 4; mu++) ScalarUds(mu + 4) = ScalarUmu(mu); | ||||||
|        |        | ||||||
|       pokeLocalSite(ScalarUds, Uds_v, lcoor); |       pokeLocalSite(ScalarUds, Uds, lcoor); | ||||||
|     }); |     } | ||||||
|   } |   } | ||||||
|        |        | ||||||
|   inline void InsertForce4D(GaugeField &mat, FermionField &Btilde,FermionField &A, int mu)  |   inline void InsertForce4D(GaugeField &mat, FermionField &Btilde,FermionField &A, int mu)  | ||||||
|   | |||||||
| @@ -53,12 +53,10 @@ NAMESPACE_CHECK(Wilson); | |||||||
| #include <Grid/qcd/action/fermion/WilsonTMFermion.h>       // 4d wilson like | #include <Grid/qcd/action/fermion/WilsonTMFermion.h>       // 4d wilson like | ||||||
| NAMESPACE_CHECK(WilsonTM); | NAMESPACE_CHECK(WilsonTM); | ||||||
| #include <Grid/qcd/action/fermion/WilsonCloverFermion.h> // 4d wilson clover fermions | #include <Grid/qcd/action/fermion/WilsonCloverFermion.h> // 4d wilson clover fermions | ||||||
| #include <Grid/qcd/action/fermion/CompactWilsonCloverFermion.h> // 4d compact wilson clover fermions |  | ||||||
| NAMESPACE_CHECK(WilsonClover); | NAMESPACE_CHECK(WilsonClover); | ||||||
| #include <Grid/qcd/action/fermion/WilsonFermion5D.h>     // 5d base used by all 5d overlap types | #include <Grid/qcd/action/fermion/WilsonFermion5D.h>     // 5d base used by all 5d overlap types | ||||||
| NAMESPACE_CHECK(Wilson5D); | NAMESPACE_CHECK(Wilson5D); | ||||||
|  |  | ||||||
| #include <Grid/qcd/action/fermion/NaiveStaggeredFermion.h> |  | ||||||
| #include <Grid/qcd/action/fermion/ImprovedStaggeredFermion.h> | #include <Grid/qcd/action/fermion/ImprovedStaggeredFermion.h> | ||||||
| #include <Grid/qcd/action/fermion/ImprovedStaggeredFermion5D.h> | #include <Grid/qcd/action/fermion/ImprovedStaggeredFermion5D.h> | ||||||
| NAMESPACE_CHECK(Staggered); | NAMESPACE_CHECK(Staggered); | ||||||
| @@ -116,9 +114,9 @@ typedef WilsonFermion<WilsonImplR> WilsonFermionR; | |||||||
| typedef WilsonFermion<WilsonImplF> WilsonFermionF; | typedef WilsonFermion<WilsonImplF> WilsonFermionF; | ||||||
| typedef WilsonFermion<WilsonImplD> WilsonFermionD; | typedef WilsonFermion<WilsonImplD> WilsonFermionD; | ||||||
|  |  | ||||||
| //typedef WilsonFermion<WilsonImplRL> WilsonFermionRL; | typedef WilsonFermion<WilsonImplRL> WilsonFermionRL; | ||||||
| //typedef WilsonFermion<WilsonImplFH> WilsonFermionFH; | typedef WilsonFermion<WilsonImplFH> WilsonFermionFH; | ||||||
| //typedef WilsonFermion<WilsonImplDF> WilsonFermionDF; | typedef WilsonFermion<WilsonImplDF> WilsonFermionDF; | ||||||
|  |  | ||||||
| typedef WilsonFermion<WilsonAdjImplR> WilsonAdjFermionR; | typedef WilsonFermion<WilsonAdjImplR> WilsonAdjFermionR; | ||||||
| typedef WilsonFermion<WilsonAdjImplF> WilsonAdjFermionF; | typedef WilsonFermion<WilsonAdjImplF> WilsonAdjFermionF; | ||||||
| @@ -154,63 +152,46 @@ typedef WilsonCloverFermion<WilsonTwoIndexAntiSymmetricImplR> WilsonCloverTwoInd | |||||||
| typedef WilsonCloverFermion<WilsonTwoIndexAntiSymmetricImplF> WilsonCloverTwoIndexAntiSymmetricFermionF; | typedef WilsonCloverFermion<WilsonTwoIndexAntiSymmetricImplF> WilsonCloverTwoIndexAntiSymmetricFermionF; | ||||||
| typedef WilsonCloverFermion<WilsonTwoIndexAntiSymmetricImplD> WilsonCloverTwoIndexAntiSymmetricFermionD; | typedef WilsonCloverFermion<WilsonTwoIndexAntiSymmetricImplD> WilsonCloverTwoIndexAntiSymmetricFermionD; | ||||||
|  |  | ||||||
| // Compact Clover fermions |  | ||||||
| typedef CompactWilsonCloverFermion<WilsonImplR> CompactWilsonCloverFermionR; |  | ||||||
| typedef CompactWilsonCloverFermion<WilsonImplF> CompactWilsonCloverFermionF; |  | ||||||
| typedef CompactWilsonCloverFermion<WilsonImplD> CompactWilsonCloverFermionD; |  | ||||||
|  |  | ||||||
| typedef CompactWilsonCloverFermion<WilsonAdjImplR> CompactWilsonCloverAdjFermionR; |  | ||||||
| typedef CompactWilsonCloverFermion<WilsonAdjImplF> CompactWilsonCloverAdjFermionF; |  | ||||||
| typedef CompactWilsonCloverFermion<WilsonAdjImplD> CompactWilsonCloverAdjFermionD; |  | ||||||
|  |  | ||||||
| typedef CompactWilsonCloverFermion<WilsonTwoIndexSymmetricImplR> CompactWilsonCloverTwoIndexSymmetricFermionR; |  | ||||||
| typedef CompactWilsonCloverFermion<WilsonTwoIndexSymmetricImplF> CompactWilsonCloverTwoIndexSymmetricFermionF; |  | ||||||
| typedef CompactWilsonCloverFermion<WilsonTwoIndexSymmetricImplD> CompactWilsonCloverTwoIndexSymmetricFermionD; |  | ||||||
|  |  | ||||||
| typedef CompactWilsonCloverFermion<WilsonTwoIndexAntiSymmetricImplR> CompactWilsonCloverTwoIndexAntiSymmetricFermionR; |  | ||||||
| typedef CompactWilsonCloverFermion<WilsonTwoIndexAntiSymmetricImplF> CompactWilsonCloverTwoIndexAntiSymmetricFermionF; |  | ||||||
| typedef CompactWilsonCloverFermion<WilsonTwoIndexAntiSymmetricImplD> CompactWilsonCloverTwoIndexAntiSymmetricFermionD; |  | ||||||
|  |  | ||||||
| // Domain Wall fermions | // Domain Wall fermions | ||||||
| typedef DomainWallFermion<WilsonImplR> DomainWallFermionR; | typedef DomainWallFermion<WilsonImplR> DomainWallFermionR; | ||||||
| typedef DomainWallFermion<WilsonImplF> DomainWallFermionF; | typedef DomainWallFermion<WilsonImplF> DomainWallFermionF; | ||||||
| typedef DomainWallFermion<WilsonImplD> DomainWallFermionD; | typedef DomainWallFermion<WilsonImplD> DomainWallFermionD; | ||||||
|  |  | ||||||
| //typedef DomainWallFermion<WilsonImplRL> DomainWallFermionRL; | typedef DomainWallFermion<WilsonImplRL> DomainWallFermionRL; | ||||||
| //typedef DomainWallFermion<WilsonImplFH> DomainWallFermionFH; | typedef DomainWallFermion<WilsonImplFH> DomainWallFermionFH; | ||||||
| //typedef DomainWallFermion<WilsonImplDF> DomainWallFermionDF; | typedef DomainWallFermion<WilsonImplDF> DomainWallFermionDF; | ||||||
|  |  | ||||||
| typedef DomainWallEOFAFermion<WilsonImplR> DomainWallEOFAFermionR; | typedef DomainWallEOFAFermion<WilsonImplR> DomainWallEOFAFermionR; | ||||||
| typedef DomainWallEOFAFermion<WilsonImplF> DomainWallEOFAFermionF; | typedef DomainWallEOFAFermion<WilsonImplF> DomainWallEOFAFermionF; | ||||||
| typedef DomainWallEOFAFermion<WilsonImplD> DomainWallEOFAFermionD; | typedef DomainWallEOFAFermion<WilsonImplD> DomainWallEOFAFermionD; | ||||||
|  |  | ||||||
| //typedef DomainWallEOFAFermion<WilsonImplRL> DomainWallEOFAFermionRL; | typedef DomainWallEOFAFermion<WilsonImplRL> DomainWallEOFAFermionRL; | ||||||
| //typedef DomainWallEOFAFermion<WilsonImplFH> DomainWallEOFAFermionFH; | typedef DomainWallEOFAFermion<WilsonImplFH> DomainWallEOFAFermionFH; | ||||||
| //typedef DomainWallEOFAFermion<WilsonImplDF> DomainWallEOFAFermionDF; | typedef DomainWallEOFAFermion<WilsonImplDF> DomainWallEOFAFermionDF; | ||||||
|  |  | ||||||
| typedef MobiusFermion<WilsonImplR> MobiusFermionR; | typedef MobiusFermion<WilsonImplR> MobiusFermionR; | ||||||
| typedef MobiusFermion<WilsonImplF> MobiusFermionF; | typedef MobiusFermion<WilsonImplF> MobiusFermionF; | ||||||
| typedef MobiusFermion<WilsonImplD> MobiusFermionD; | typedef MobiusFermion<WilsonImplD> MobiusFermionD; | ||||||
|  |  | ||||||
| //typedef MobiusFermion<WilsonImplRL> MobiusFermionRL; | typedef MobiusFermion<WilsonImplRL> MobiusFermionRL; | ||||||
| //typedef MobiusFermion<WilsonImplFH> MobiusFermionFH; | typedef MobiusFermion<WilsonImplFH> MobiusFermionFH; | ||||||
| //typedef MobiusFermion<WilsonImplDF> MobiusFermionDF; | typedef MobiusFermion<WilsonImplDF> MobiusFermionDF; | ||||||
|  |  | ||||||
| typedef MobiusEOFAFermion<WilsonImplR> MobiusEOFAFermionR; | typedef MobiusEOFAFermion<WilsonImplR> MobiusEOFAFermionR; | ||||||
| typedef MobiusEOFAFermion<WilsonImplF> MobiusEOFAFermionF; | typedef MobiusEOFAFermion<WilsonImplF> MobiusEOFAFermionF; | ||||||
| typedef MobiusEOFAFermion<WilsonImplD> MobiusEOFAFermionD; | typedef MobiusEOFAFermion<WilsonImplD> MobiusEOFAFermionD; | ||||||
|  |  | ||||||
| //typedef MobiusEOFAFermion<WilsonImplRL> MobiusEOFAFermionRL; | typedef MobiusEOFAFermion<WilsonImplRL> MobiusEOFAFermionRL; | ||||||
| //typedef MobiusEOFAFermion<WilsonImplFH> MobiusEOFAFermionFH; | typedef MobiusEOFAFermion<WilsonImplFH> MobiusEOFAFermionFH; | ||||||
| //typedef MobiusEOFAFermion<WilsonImplDF> MobiusEOFAFermionDF; | typedef MobiusEOFAFermion<WilsonImplDF> MobiusEOFAFermionDF; | ||||||
|  |  | ||||||
| typedef ZMobiusFermion<ZWilsonImplR> ZMobiusFermionR; | typedef ZMobiusFermion<ZWilsonImplR> ZMobiusFermionR; | ||||||
| typedef ZMobiusFermion<ZWilsonImplF> ZMobiusFermionF; | typedef ZMobiusFermion<ZWilsonImplF> ZMobiusFermionF; | ||||||
| typedef ZMobiusFermion<ZWilsonImplD> ZMobiusFermionD; | typedef ZMobiusFermion<ZWilsonImplD> ZMobiusFermionD; | ||||||
|  |  | ||||||
| //typedef ZMobiusFermion<ZWilsonImplRL> ZMobiusFermionRL; | typedef ZMobiusFermion<ZWilsonImplRL> ZMobiusFermionRL; | ||||||
| //typedef ZMobiusFermion<ZWilsonImplFH> ZMobiusFermionFH; | typedef ZMobiusFermion<ZWilsonImplFH> ZMobiusFermionFH; | ||||||
| //typedef ZMobiusFermion<ZWilsonImplDF> ZMobiusFermionDF; | typedef ZMobiusFermion<ZWilsonImplDF> ZMobiusFermionDF; | ||||||
|  |  | ||||||
| // Ls vectorised | // Ls vectorised | ||||||
| typedef ScaledShamirFermion<WilsonImplR> ScaledShamirFermionR; | typedef ScaledShamirFermion<WilsonImplR> ScaledShamirFermionR; | ||||||
| @@ -253,62 +234,64 @@ typedef WilsonFermion<GparityWilsonImplR>     GparityWilsonFermionR; | |||||||
| typedef WilsonFermion<GparityWilsonImplF>     GparityWilsonFermionF; | typedef WilsonFermion<GparityWilsonImplF>     GparityWilsonFermionF; | ||||||
| typedef WilsonFermion<GparityWilsonImplD>     GparityWilsonFermionD; | typedef WilsonFermion<GparityWilsonImplD>     GparityWilsonFermionD; | ||||||
|  |  | ||||||
| //typedef WilsonFermion<GparityWilsonImplRL>     GparityWilsonFermionRL; | typedef WilsonFermion<GparityWilsonImplRL>     GparityWilsonFermionRL; | ||||||
| //typedef WilsonFermion<GparityWilsonImplFH>     GparityWilsonFermionFH; | typedef WilsonFermion<GparityWilsonImplFH>     GparityWilsonFermionFH; | ||||||
| //typedef WilsonFermion<GparityWilsonImplDF>     GparityWilsonFermionDF; | typedef WilsonFermion<GparityWilsonImplDF>     GparityWilsonFermionDF; | ||||||
|  |  | ||||||
| typedef DomainWallFermion<GparityWilsonImplR> GparityDomainWallFermionR; | typedef DomainWallFermion<GparityWilsonImplR> GparityDomainWallFermionR; | ||||||
| typedef DomainWallFermion<GparityWilsonImplF> GparityDomainWallFermionF; | typedef DomainWallFermion<GparityWilsonImplF> GparityDomainWallFermionF; | ||||||
| typedef DomainWallFermion<GparityWilsonImplD> GparityDomainWallFermionD; | typedef DomainWallFermion<GparityWilsonImplD> GparityDomainWallFermionD; | ||||||
|  |  | ||||||
| //typedef DomainWallFermion<GparityWilsonImplRL> GparityDomainWallFermionRL; | typedef DomainWallFermion<GparityWilsonImplRL> GparityDomainWallFermionRL; | ||||||
| //typedef DomainWallFermion<GparityWilsonImplFH> GparityDomainWallFermionFH; | typedef DomainWallFermion<GparityWilsonImplFH> GparityDomainWallFermionFH; | ||||||
| //typedef DomainWallFermion<GparityWilsonImplDF> GparityDomainWallFermionDF; | typedef DomainWallFermion<GparityWilsonImplDF> GparityDomainWallFermionDF; | ||||||
|  |  | ||||||
| typedef DomainWallEOFAFermion<GparityWilsonImplR> GparityDomainWallEOFAFermionR; | typedef DomainWallEOFAFermion<GparityWilsonImplR> GparityDomainWallEOFAFermionR; | ||||||
| typedef DomainWallEOFAFermion<GparityWilsonImplF> GparityDomainWallEOFAFermionF; | typedef DomainWallEOFAFermion<GparityWilsonImplF> GparityDomainWallEOFAFermionF; | ||||||
| typedef DomainWallEOFAFermion<GparityWilsonImplD> GparityDomainWallEOFAFermionD; | typedef DomainWallEOFAFermion<GparityWilsonImplD> GparityDomainWallEOFAFermionD; | ||||||
|  |  | ||||||
| //typedef DomainWallEOFAFermion<GparityWilsonImplRL> GparityDomainWallEOFAFermionRL; | typedef DomainWallEOFAFermion<GparityWilsonImplRL> GparityDomainWallEOFAFermionRL; | ||||||
| //typedef DomainWallEOFAFermion<GparityWilsonImplFH> GparityDomainWallEOFAFermionFH; | typedef DomainWallEOFAFermion<GparityWilsonImplFH> GparityDomainWallEOFAFermionFH; | ||||||
| //typedef DomainWallEOFAFermion<GparityWilsonImplDF> GparityDomainWallEOFAFermionDF; | typedef DomainWallEOFAFermion<GparityWilsonImplDF> GparityDomainWallEOFAFermionDF; | ||||||
|  |  | ||||||
| typedef WilsonTMFermion<GparityWilsonImplR> GparityWilsonTMFermionR; | typedef WilsonTMFermion<GparityWilsonImplR> GparityWilsonTMFermionR; | ||||||
| typedef WilsonTMFermion<GparityWilsonImplF> GparityWilsonTMFermionF; | typedef WilsonTMFermion<GparityWilsonImplF> GparityWilsonTMFermionF; | ||||||
| typedef WilsonTMFermion<GparityWilsonImplD> GparityWilsonTMFermionD; | typedef WilsonTMFermion<GparityWilsonImplD> GparityWilsonTMFermionD; | ||||||
|  |  | ||||||
| //typedef WilsonTMFermion<GparityWilsonImplRL> GparityWilsonTMFermionRL; | typedef WilsonTMFermion<GparityWilsonImplRL> GparityWilsonTMFermionRL; | ||||||
| //typedef WilsonTMFermion<GparityWilsonImplFH> GparityWilsonTMFermionFH; | typedef WilsonTMFermion<GparityWilsonImplFH> GparityWilsonTMFermionFH; | ||||||
| //typedef WilsonTMFermion<GparityWilsonImplDF> GparityWilsonTMFermionDF; | typedef WilsonTMFermion<GparityWilsonImplDF> GparityWilsonTMFermionDF; | ||||||
|  |  | ||||||
| typedef MobiusFermion<GparityWilsonImplR> GparityMobiusFermionR; | typedef MobiusFermion<GparityWilsonImplR> GparityMobiusFermionR; | ||||||
| typedef MobiusFermion<GparityWilsonImplF> GparityMobiusFermionF; | typedef MobiusFermion<GparityWilsonImplF> GparityMobiusFermionF; | ||||||
| typedef MobiusFermion<GparityWilsonImplD> GparityMobiusFermionD; | typedef MobiusFermion<GparityWilsonImplD> GparityMobiusFermionD; | ||||||
|  |  | ||||||
| //typedef MobiusFermion<GparityWilsonImplRL> GparityMobiusFermionRL; | typedef MobiusFermion<GparityWilsonImplRL> GparityMobiusFermionRL; | ||||||
| //typedef MobiusFermion<GparityWilsonImplFH> GparityMobiusFermionFH; | typedef MobiusFermion<GparityWilsonImplFH> GparityMobiusFermionFH; | ||||||
| //typedef MobiusFermion<GparityWilsonImplDF> GparityMobiusFermionDF; | typedef MobiusFermion<GparityWilsonImplDF> GparityMobiusFermionDF; | ||||||
|  |  | ||||||
| typedef MobiusEOFAFermion<GparityWilsonImplR> GparityMobiusEOFAFermionR; | typedef MobiusEOFAFermion<GparityWilsonImplR> GparityMobiusEOFAFermionR; | ||||||
| typedef MobiusEOFAFermion<GparityWilsonImplF> GparityMobiusEOFAFermionF; | typedef MobiusEOFAFermion<GparityWilsonImplF> GparityMobiusEOFAFermionF; | ||||||
| typedef MobiusEOFAFermion<GparityWilsonImplD> GparityMobiusEOFAFermionD; | typedef MobiusEOFAFermion<GparityWilsonImplD> GparityMobiusEOFAFermionD; | ||||||
|  |  | ||||||
| //typedef MobiusEOFAFermion<GparityWilsonImplRL> GparityMobiusEOFAFermionRL; | typedef MobiusEOFAFermion<GparityWilsonImplRL> GparityMobiusEOFAFermionRL; | ||||||
| //typedef MobiusEOFAFermion<GparityWilsonImplFH> GparityMobiusEOFAFermionFH; | typedef MobiusEOFAFermion<GparityWilsonImplFH> GparityMobiusEOFAFermionFH; | ||||||
| //typedef MobiusEOFAFermion<GparityWilsonImplDF> GparityMobiusEOFAFermionDF; | typedef MobiusEOFAFermion<GparityWilsonImplDF> GparityMobiusEOFAFermionDF; | ||||||
|  |  | ||||||
| typedef ImprovedStaggeredFermion<StaggeredImplR> ImprovedStaggeredFermionR; | typedef ImprovedStaggeredFermion<StaggeredImplR> ImprovedStaggeredFermionR; | ||||||
| typedef ImprovedStaggeredFermion<StaggeredImplF> ImprovedStaggeredFermionF; | typedef ImprovedStaggeredFermion<StaggeredImplF> ImprovedStaggeredFermionF; | ||||||
| typedef ImprovedStaggeredFermion<StaggeredImplD> ImprovedStaggeredFermionD; | typedef ImprovedStaggeredFermion<StaggeredImplD> ImprovedStaggeredFermionD; | ||||||
|  |  | ||||||
| typedef NaiveStaggeredFermion<StaggeredImplR> NaiveStaggeredFermionR; |  | ||||||
| typedef NaiveStaggeredFermion<StaggeredImplF> NaiveStaggeredFermionF; |  | ||||||
| typedef NaiveStaggeredFermion<StaggeredImplD> NaiveStaggeredFermionD; |  | ||||||
|  |  | ||||||
| typedef ImprovedStaggeredFermion5D<StaggeredImplR> ImprovedStaggeredFermion5DR; | typedef ImprovedStaggeredFermion5D<StaggeredImplR> ImprovedStaggeredFermion5DR; | ||||||
| typedef ImprovedStaggeredFermion5D<StaggeredImplF> ImprovedStaggeredFermion5DF; | typedef ImprovedStaggeredFermion5D<StaggeredImplF> ImprovedStaggeredFermion5DF; | ||||||
| typedef ImprovedStaggeredFermion5D<StaggeredImplD> ImprovedStaggeredFermion5DD; | typedef ImprovedStaggeredFermion5D<StaggeredImplD> ImprovedStaggeredFermion5DD; | ||||||
|  |  | ||||||
|  | #ifndef GRID_NVCC | ||||||
|  | typedef ImprovedStaggeredFermion5D<StaggeredVec5dImplR> ImprovedStaggeredFermionVec5dR; | ||||||
|  | typedef ImprovedStaggeredFermion5D<StaggeredVec5dImplF> ImprovedStaggeredFermionVec5dF; | ||||||
|  | typedef ImprovedStaggeredFermion5D<StaggeredVec5dImplD> ImprovedStaggeredFermionVec5dD; | ||||||
|  | #endif | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); | NAMESPACE_END(Grid); | ||||||
|  |  | ||||||
| //////////////////// | //////////////////// | ||||||
|   | |||||||
| @@ -153,8 +153,8 @@ public: | |||||||
|   typedef typename Impl::StencilImpl             StencilImpl;		\ |   typedef typename Impl::StencilImpl             StencilImpl;		\ | ||||||
|   typedef typename Impl::ImplParams               ImplParams;	        \ |   typedef typename Impl::ImplParams               ImplParams;	        \ | ||||||
|   typedef typename Impl::StencilImpl::View_type  StencilView;		\ |   typedef typename Impl::StencilImpl::View_type  StencilView;		\ | ||||||
|   typedef const typename ViewMap<FermionField>::Type      FermionFieldView;	\ |   typedef typename ViewMap<FermionField>::Type      FermionFieldView;	\ | ||||||
|   typedef const typename ViewMap<DoubledGaugeField>::Type DoubledGaugeFieldView; |   typedef typename ViewMap<DoubledGaugeField>::Type DoubledGaugeFieldView; | ||||||
|  |  | ||||||
| #define INHERIT_IMPL_TYPES(Base)		\ | #define INHERIT_IMPL_TYPES(Base)		\ | ||||||
|   INHERIT_GIMPL_TYPES(Base)			\ |   INHERIT_GIMPL_TYPES(Base)			\ | ||||||
| @@ -183,8 +183,7 @@ NAMESPACE_CHECK(ImplStaggered); | |||||||
| ///////////////////////////////////////////////////////////////////////////// | ///////////////////////////////////////////////////////////////////////////// | ||||||
| // Single flavour one component spinors with colour index. 5d vec | // Single flavour one component spinors with colour index. 5d vec | ||||||
| ///////////////////////////////////////////////////////////////////////////// | ///////////////////////////////////////////////////////////////////////////// | ||||||
| // Deprecate Vec5d | #include <Grid/qcd/action/fermion/StaggeredVec5dImpl.h>  | ||||||
| //#include <Grid/qcd/action/fermion/StaggeredVec5dImpl.h>  | NAMESPACE_CHECK(ImplStaggered5dVec);   | ||||||
| //NAMESPACE_CHECK(ImplStaggered5dVec);   |  | ||||||
|  |  | ||||||
|  |  | ||||||
|   | |||||||
| @@ -96,31 +96,43 @@ public: | |||||||
|     int sl        = St._simd_layout[direction]; |     int sl        = St._simd_layout[direction]; | ||||||
|     Coordinate icoor; |     Coordinate icoor; | ||||||
|  |  | ||||||
| #ifdef GRID_SIMT | #ifdef __CUDA_ARCH__ | ||||||
|  |     _Spinor tmp; | ||||||
|  |  | ||||||
|     const int Nsimd =SiteDoubledGaugeField::Nsimd(); |     const int Nsimd =SiteDoubledGaugeField::Nsimd(); | ||||||
|     int s = acceleratorSIMTlane(Nsimd); |     int s = SIMTlane(Nsimd); | ||||||
|     St.iCoorFromIindex(icoor,s); |     St.iCoorFromIindex(icoor,s); | ||||||
|  |  | ||||||
|     int mmu = mu % Nd; |     int mmu = mu % Nd; | ||||||
|  |     if ( SE->_around_the_world && St.parameters.twists[mmu] ) { | ||||||
|        |        | ||||||
|     auto UU0=coalescedRead(U(0)(mu)); |  | ||||||
|     auto UU1=coalescedRead(U(1)(mu)); |  | ||||||
|      |  | ||||||
|     //Decide whether we do a G-parity flavor twist |  | ||||||
|     //Note: this assumes (but does not check) that sl==1 || sl==2 i.e. max 2 SIMD lanes in G-parity dir |  | ||||||
|     //It also assumes (but does not check) that abs(distance) == 1 |  | ||||||
|       int permute_lane = (sl==1)  |       int permute_lane = (sl==1)  | ||||||
|     	|| ((distance== 1)&&(icoor[direction]==1)) |     	|| ((distance== 1)&&(icoor[direction]==1)) | ||||||
| 	|| ((distance==-1)&&(icoor[direction]==0)); | 	|| ((distance==-1)&&(icoor[direction]==0)); | ||||||
|  |  | ||||||
|     permute_lane = permute_lane && SE->_around_the_world && St.parameters.twists[mmu]; //only if we are going around the world |       if ( permute_lane ) {  | ||||||
|  | 	tmp(0) = chi(1); | ||||||
|  | 	tmp(1) = chi(0); | ||||||
|  |       } else { | ||||||
|  | 	tmp(0) = chi(0); | ||||||
|  | 	tmp(1) = chi(1); | ||||||
|  |       } | ||||||
|  |  | ||||||
|     //Apply the links |       auto UU0=coalescedRead(U(0)(mu)); | ||||||
|     int f_upper = permute_lane ? 1 : 0; |       auto UU1=coalescedRead(U(1)(mu)); | ||||||
|     int f_lower = !f_upper; |  | ||||||
|  |  | ||||||
|     mult(&phi(0),&UU0,&chi(f_upper)); |       mult(&phi(0),&UU0,&tmp(0)); | ||||||
|     mult(&phi(1),&UU1,&chi(f_lower)); |       mult(&phi(1),&UU1,&tmp(1)); | ||||||
|  |  | ||||||
|  |     } else { | ||||||
|  |  | ||||||
|  |       auto UU0=coalescedRead(U(0)(mu)); | ||||||
|  |       auto UU1=coalescedRead(U(1)(mu)); | ||||||
|  |  | ||||||
|  |       mult(&phi(0),&UU0,&chi(0)); | ||||||
|  |       mult(&phi(1),&UU1,&chi(1)); | ||||||
|  |  | ||||||
|  |     } | ||||||
|  |  | ||||||
| #else | #else | ||||||
|     typedef _Spinor vobj; |     typedef _Spinor vobj; | ||||||
| @@ -221,16 +233,14 @@ public: | |||||||
| 	Uconj = where(coor==neglink,-Uconj,Uconj); | 	Uconj = where(coor==neglink,-Uconj,Uconj); | ||||||
|       } |       } | ||||||
| 	   | 	   | ||||||
|       { |       auto U_v = U.View(); | ||||||
| 	autoView( U_v , U, CpuRead); |       auto Uds_v = Uds.View(); | ||||||
| 	autoView( Uconj_v , Uconj, CpuRead); |       auto Uconj_v = Uconj.View(); | ||||||
| 	autoView( Uds_v , Uds, CpuWrite); |       auto Utmp_v= Utmp.View(); | ||||||
| 	autoView( Utmp_v, Utmp, CpuWrite); |  | ||||||
|       thread_foreach(ss,U_v,{ |       thread_foreach(ss,U_v,{ | ||||||
| 	Uds_v[ss](0)(mu) = U_v[ss](); | 	Uds_v[ss](0)(mu) = U_v[ss](); | ||||||
| 	Uds_v[ss](1)(mu) = Uconj_v[ss](); | 	Uds_v[ss](1)(mu) = Uconj_v[ss](); | ||||||
|       }); |       }); | ||||||
|       } |  | ||||||
|            |            | ||||||
|       U     = adj(Cshift(U    ,mu,-1));      // correct except for spanning the boundary |       U     = adj(Cshift(U    ,mu,-1));      // correct except for spanning the boundary | ||||||
|       Uconj = adj(Cshift(Uconj,mu,-1)); |       Uconj = adj(Cshift(Uconj,mu,-1)); | ||||||
| @@ -240,25 +250,19 @@ public: | |||||||
| 	Utmp = where(coor==0,Uconj,Utmp); | 	Utmp = where(coor==0,Uconj,Utmp); | ||||||
|       } |       } | ||||||
|  |  | ||||||
|       { |  | ||||||
| 	autoView( Uds_v , Uds, CpuWrite); |  | ||||||
| 	autoView( Utmp_v, Utmp, CpuWrite); |  | ||||||
|       thread_foreach(ss,Utmp_v,{ |       thread_foreach(ss,Utmp_v,{ | ||||||
| 	Uds_v[ss](0)(mu+4) = Utmp_v[ss](); | 	Uds_v[ss](0)(mu+4) = Utmp_v[ss](); | ||||||
|       }); |       }); | ||||||
|       } |            | ||||||
|       Utmp = Uconj; |       Utmp = Uconj; | ||||||
|       if ( Params.twists[mu] ) {  |       if ( Params.twists[mu] ) {  | ||||||
| 	Utmp = where(coor==0,U,Utmp); | 	Utmp = where(coor==0,U,Utmp); | ||||||
|       } |       } | ||||||
| 	   | 	   | ||||||
|       {	   |  | ||||||
| 	autoView( Uds_v , Uds, CpuWrite); |  | ||||||
| 	autoView( Utmp_v, Utmp, CpuWrite); |  | ||||||
|       thread_foreach(ss,Utmp_v,{ |       thread_foreach(ss,Utmp_v,{ | ||||||
|         Uds_v[ss](1)(mu+4) = Utmp_v[ss](); |         Uds_v[ss](1)(mu+4) = Utmp_v[ss](); | ||||||
|       }); |       }); | ||||||
|       } |            | ||||||
|     } |     } | ||||||
|   } |   } | ||||||
|        |        | ||||||
| @@ -268,14 +272,11 @@ public: | |||||||
|     GaugeLinkField link(mat.Grid()); |     GaugeLinkField link(mat.Grid()); | ||||||
|     // use lorentz for flavour as hack. |     // use lorentz for flavour as hack. | ||||||
|     auto tmp = TraceIndex<SpinIndex>(outerProduct(Btilde, A)); |     auto tmp = TraceIndex<SpinIndex>(outerProduct(Btilde, A)); | ||||||
|  |     auto link_v = link.View(); | ||||||
|     { |     auto tmp_v = tmp.View(); | ||||||
|       autoView( link_v , link, CpuWrite); |  | ||||||
|       autoView( tmp_v , tmp, CpuRead); |  | ||||||
|     thread_foreach(ss,tmp_v,{ |     thread_foreach(ss,tmp_v,{ | ||||||
|       link_v[ss]() = tmp_v[ss](0, 0) + conjugate(tmp_v[ss](1, 1)); |       link_v[ss]() = tmp_v[ss](0, 0) + conjugate(tmp_v[ss](1, 1)); | ||||||
|     }); |     }); | ||||||
|     } |  | ||||||
|     PokeIndex<LorentzIndex>(mat, link, mu); |     PokeIndex<LorentzIndex>(mat, link, mu); | ||||||
|     return; |     return; | ||||||
|   } |   } | ||||||
| @@ -305,10 +306,9 @@ public: | |||||||
|          |          | ||||||
|     GaugeLinkField tmp(mat.Grid()); |     GaugeLinkField tmp(mat.Grid()); | ||||||
|     tmp = Zero(); |     tmp = Zero(); | ||||||
|     { |     auto tmp_v = tmp.View(); | ||||||
|       autoView( tmp_v , tmp, CpuWrite); |     auto Atilde_v = Atilde.View(); | ||||||
|       autoView( Atilde_v , Atilde, CpuRead); |     auto Btilde_v = Btilde.View(); | ||||||
|       autoView( Btilde_v , Btilde, CpuRead); |  | ||||||
|     thread_for(ss,tmp.Grid()->oSites(),{ |     thread_for(ss,tmp.Grid()->oSites(),{ | ||||||
|       for (int s = 0; s < Ls; s++) { |       for (int s = 0; s < Ls; s++) { | ||||||
| 	int sF = s + Ls * ss; | 	int sF = s + Ls * ss; | ||||||
| @@ -316,7 +316,6 @@ public: | |||||||
| 	tmp_v[ss]() = tmp_v[ss]() + ttmp(0, 0) + conjugate(ttmp(1, 1)); | 	tmp_v[ss]() = tmp_v[ss]() + ttmp(0, 0) + conjugate(ttmp(1, 1)); | ||||||
|       } |       } | ||||||
|     }); |     }); | ||||||
|     } |  | ||||||
|     PokeIndex<LorentzIndex>(mat, tmp, mu); |     PokeIndex<LorentzIndex>(mat, tmp, mu); | ||||||
|     return; |     return; | ||||||
|   } |   } | ||||||
| @@ -327,8 +326,8 @@ typedef GparityWilsonImpl<vComplex , FundamentalRepresentation,CoeffReal> Gparit | |||||||
| typedef GparityWilsonImpl<vComplexF, FundamentalRepresentation,CoeffReal> GparityWilsonImplF;  // Float | typedef GparityWilsonImpl<vComplexF, FundamentalRepresentation,CoeffReal> GparityWilsonImplF;  // Float | ||||||
| typedef GparityWilsonImpl<vComplexD, FundamentalRepresentation,CoeffReal> GparityWilsonImplD;  // Double | typedef GparityWilsonImpl<vComplexD, FundamentalRepresentation,CoeffReal> GparityWilsonImplD;  // Double | ||||||
|   |   | ||||||
| //typedef GparityWilsonImpl<vComplex , FundamentalRepresentation,CoeffRealHalfComms> GparityWilsonImplRL;  // Real.. whichever prec | typedef GparityWilsonImpl<vComplex , FundamentalRepresentation,CoeffRealHalfComms> GparityWilsonImplRL;  // Real.. whichever prec | ||||||
| //typedef GparityWilsonImpl<vComplexF, FundamentalRepresentation,CoeffRealHalfComms> GparityWilsonImplFH;  // Float | typedef GparityWilsonImpl<vComplexF, FundamentalRepresentation,CoeffRealHalfComms> GparityWilsonImplFH;  // Float | ||||||
| //typedef GparityWilsonImpl<vComplexD, FundamentalRepresentation,CoeffRealHalfComms> GparityWilsonImplDF;  // Double | typedef GparityWilsonImpl<vComplexD, FundamentalRepresentation,CoeffRealHalfComms> GparityWilsonImplDF;  // Double | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); | NAMESPACE_END(Grid); | ||||||
|   | |||||||
| @@ -208,7 +208,7 @@ public: | |||||||
|   LebesgueOrder LebesgueEvenOdd; |   LebesgueOrder LebesgueEvenOdd; | ||||||
|      |      | ||||||
|   // Comms buffer |   // Comms buffer | ||||||
|   //  std::vector<SiteHalfSpinor,alignedAllocator<SiteHalfSpinor> >  comm_buf; |   std::vector<SiteHalfSpinor,alignedAllocator<SiteHalfSpinor> >  comm_buf; | ||||||
|      |      | ||||||
|   /////////////////////////////////////////////////////////////// |   /////////////////////////////////////////////////////////////// | ||||||
|   // Conserved current utilities |   // Conserved current utilities | ||||||
|   | |||||||
| @@ -85,7 +85,7 @@ class MADWF | |||||||
|       maxiter     =_maxiter; |       maxiter     =_maxiter; | ||||||
|     }; |     }; | ||||||
|     |     | ||||||
|   void operator() (const FermionFieldo &src,FermionFieldo &sol5) |   void operator() (const FermionFieldo &src4,FermionFieldo &sol5) | ||||||
|   { |   { | ||||||
|     std::cout << GridLogMessage<< " ************************************************" << std::endl; |     std::cout << GridLogMessage<< " ************************************************" << std::endl; | ||||||
|     std::cout << GridLogMessage<< "  MADWF-like algorithm                           " << std::endl; |     std::cout << GridLogMessage<< "  MADWF-like algorithm                           " << std::endl; | ||||||
| @@ -114,16 +114,8 @@ class MADWF | |||||||
|     /////////////////////////////////////// |     /////////////////////////////////////// | ||||||
|     //Import source, include Dminus factors |     //Import source, include Dminus factors | ||||||
|     /////////////////////////////////////// |     /////////////////////////////////////// | ||||||
|     GridBase *src_grid = src.Grid(); |     Mato.ImportPhysicalFermionSource(src4,b);  | ||||||
|  |     std::cout << GridLogMessage << " src4 " <<norm2(src4)<<std::endl; | ||||||
|     assert( (src_grid == Mato.GaugeGrid()) || (src_grid == Mato.FermionGrid())); |  | ||||||
|  |  | ||||||
|     if ( src_grid == Mato.GaugeGrid() ) { |  | ||||||
|       Mato.ImportPhysicalFermionSource(src,b); |  | ||||||
|     } else { |  | ||||||
|       b=src; |  | ||||||
|     } |  | ||||||
|     std::cout << GridLogMessage << " src " <<norm2(src)<<std::endl; |  | ||||||
|     std::cout << GridLogMessage << " b    " <<norm2(b)<<std::endl; |     std::cout << GridLogMessage << " b    " <<norm2(b)<<std::endl; | ||||||
|  |  | ||||||
|     defect = b; |     defect = b; | ||||||
|   | |||||||
| @@ -1,194 +0,0 @@ | |||||||
| /************************************************************************************* |  | ||||||
|  |  | ||||||
| Grid physics library, www.github.com/paboyle/Grid |  | ||||||
|  |  | ||||||
| Source file: ./lib/qcd/action/fermion/ImprovedStaggered.h |  | ||||||
|  |  | ||||||
| Copyright (C) 2015 |  | ||||||
|  |  | ||||||
| Author: Azusa Yamaguchi, Peter Boyle |  | ||||||
|  |  | ||||||
| This program is free software; you can redistribute it and/or modify |  | ||||||
| it under the terms of the GNU General Public License as published by |  | ||||||
| the Free Software Foundation; either version 2 of the License, or |  | ||||||
| (at your option) any later version. |  | ||||||
|  |  | ||||||
| This program is distributed in the hope that it will be useful, |  | ||||||
| but WITHOUT ANY WARRANTY; without even the implied warranty of |  | ||||||
| MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the |  | ||||||
| GNU General Public License for more details. |  | ||||||
|  |  | ||||||
| You should have received a copy of the GNU General Public License along |  | ||||||
| with this program; if not, write to the Free Software Foundation, Inc., |  | ||||||
| 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. |  | ||||||
|  |  | ||||||
| See the full license in the file "LICENSE" in the top level distribution |  | ||||||
| directory |  | ||||||
| *************************************************************************************/ |  | ||||||
| 			   /*  END LEGAL */ |  | ||||||
| #ifndef GRID_QCD_NAIVE_STAG_FERMION_H |  | ||||||
| #define GRID_QCD_NAIVE_STAG_FERMION_H |  | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); |  | ||||||
|  |  | ||||||
| class NaiveStaggeredFermionStatic { |  | ||||||
| public: |  | ||||||
|   static const std::vector<int> directions; |  | ||||||
|   static const std::vector<int> displacements; |  | ||||||
|   static const int npoint = 8; |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| template <class Impl> |  | ||||||
| class NaiveStaggeredFermion : public StaggeredKernels<Impl>, public NaiveStaggeredFermionStatic { |  | ||||||
| public: |  | ||||||
|   INHERIT_IMPL_TYPES(Impl); |  | ||||||
|   typedef StaggeredKernels<Impl> Kernels; |  | ||||||
|  |  | ||||||
|   FermionField _tmp; |  | ||||||
|   FermionField &tmp(void) { return _tmp; } |  | ||||||
|  |  | ||||||
|   //////////////////////////////////////// |  | ||||||
|   // Performance monitoring |  | ||||||
|   //////////////////////////////////////// |  | ||||||
|   void Report(void); |  | ||||||
|   void ZeroCounters(void); |  | ||||||
|   double DhopTotalTime; |  | ||||||
|   double DhopCalls; |  | ||||||
|   double DhopCommTime; |  | ||||||
|   double DhopComputeTime; |  | ||||||
|   double DhopComputeTime2; |  | ||||||
|   double DhopFaceTime; |  | ||||||
|  |  | ||||||
|   /////////////////////////////////////////////////////////////// |  | ||||||
|   // Implement the abstract base |  | ||||||
|   /////////////////////////////////////////////////////////////// |  | ||||||
|   GridBase *GaugeGrid(void) { return _grid; } |  | ||||||
|   GridBase *GaugeRedBlackGrid(void) { return _cbgrid; } |  | ||||||
|   GridBase *FermionGrid(void) { return _grid; } |  | ||||||
|   GridBase *FermionRedBlackGrid(void) { return _cbgrid; } |  | ||||||
|  |  | ||||||
|   ////////////////////////////////////////////////////////////////// |  | ||||||
|   // override multiply; cut number routines if pass dagger argument |  | ||||||
|   // and also make interface more uniformly consistent |  | ||||||
|   ////////////////////////////////////////////////////////////////// |  | ||||||
|   void M(const FermionField &in, FermionField &out); |  | ||||||
|   void Mdag(const FermionField &in, FermionField &out); |  | ||||||
|  |  | ||||||
|   ///////////////////////////////////////////////////////// |  | ||||||
|   // half checkerboard operations |  | ||||||
|   ///////////////////////////////////////////////////////// |  | ||||||
|   void Meooe(const FermionField &in, FermionField &out); |  | ||||||
|   void MeooeDag(const FermionField &in, FermionField &out); |  | ||||||
|   void Mooee(const FermionField &in, FermionField &out); |  | ||||||
|   void MooeeDag(const FermionField &in, FermionField &out); |  | ||||||
|   void MooeeInv(const FermionField &in, FermionField &out); |  | ||||||
|   void MooeeInvDag(const FermionField &in, FermionField &out); |  | ||||||
|  |  | ||||||
|   //////////////////////// |  | ||||||
|   // Derivative interface |  | ||||||
|   //////////////////////// |  | ||||||
|   // Interface calls an internal routine |  | ||||||
|   void DhopDeriv  (GaugeField &mat, const FermionField &U, const FermionField &V, int dag); |  | ||||||
|   void DhopDerivOE(GaugeField &mat, const FermionField &U, const FermionField &V, int dag); |  | ||||||
|   void DhopDerivEO(GaugeField &mat, const FermionField &U, const FermionField &V, int dag); |  | ||||||
|  |  | ||||||
|   /////////////////////////////////////////////////////////////// |  | ||||||
|   // non-hermitian hopping term; half cb or both |  | ||||||
|   /////////////////////////////////////////////////////////////// |  | ||||||
|   void Dhop  (const FermionField &in, FermionField &out, int dag); |  | ||||||
|   void DhopOE(const FermionField &in, FermionField &out, int dag); |  | ||||||
|   void DhopEO(const FermionField &in, FermionField &out, int dag); |  | ||||||
|  |  | ||||||
|   /////////////////////////////////////////////////////////////// |  | ||||||
|   // Multigrid assistance; force term uses too |  | ||||||
|   /////////////////////////////////////////////////////////////// |  | ||||||
|   void Mdir(const FermionField &in, FermionField &out, int dir, int disp); |  | ||||||
|   void MdirAll(const FermionField &in, std::vector<FermionField> &out); |  | ||||||
|   void DhopDir(const FermionField &in, FermionField &out, int dir, int disp); |  | ||||||
|  |  | ||||||
|   /////////////////////////////////////////////////////////////// |  | ||||||
|   // Extra methods added by derived |  | ||||||
|   /////////////////////////////////////////////////////////////// |  | ||||||
|   void DerivInternal(StencilImpl &st,  |  | ||||||
| 		     DoubledGaugeField &U, |  | ||||||
| 		     GaugeField &mat,  |  | ||||||
| 		     const FermionField &A, const FermionField &B, int dag); |  | ||||||
|  |  | ||||||
|   void DhopInternal(StencilImpl &st, LebesgueOrder &lo, DoubledGaugeField &U, |  | ||||||
|                     const FermionField &in, FermionField &out, int dag); |  | ||||||
|   void DhopInternalSerialComms(StencilImpl &st, LebesgueOrder &lo, DoubledGaugeField &U, |  | ||||||
| 			       const FermionField &in, FermionField &out, int dag); |  | ||||||
|   void DhopInternalOverlappedComms(StencilImpl &st, LebesgueOrder &lo, DoubledGaugeField &U, |  | ||||||
| 				   const FermionField &in, FermionField &out, int dag); |  | ||||||
|  |  | ||||||
|   ////////////////////////////////////////////////////////////////////////// |  | ||||||
|   // Grid own interface Constructor |  | ||||||
|   ////////////////////////////////////////////////////////////////////////// |  | ||||||
|   NaiveStaggeredFermion(GaugeField &_U, GridCartesian &Fgrid, |  | ||||||
| 			GridRedBlackCartesian &Hgrid, RealD _mass, |  | ||||||
| 			RealD _c1, RealD _u0, |  | ||||||
| 			const ImplParams &p = ImplParams()); |  | ||||||
|   NaiveStaggeredFermion(GridCartesian &Fgrid, |  | ||||||
| 			GridRedBlackCartesian &Hgrid, RealD _mass, |  | ||||||
| 			RealD _c1, RealD _u0, |  | ||||||
| 			const ImplParams &p = ImplParams()); |  | ||||||
|  |  | ||||||
|   // DoubleStore impl dependent |  | ||||||
|   void ImportGauge      (const GaugeField &_U ); |  | ||||||
|   DoubledGaugeField &GetU(void)   { return Umu ; } ; |  | ||||||
|   void CopyGaugeCheckerboards(void); |  | ||||||
|  |  | ||||||
|   /////////////////////////////////////////////////////////////// |  | ||||||
|   // Data members require to support the functionality |  | ||||||
|   /////////////////////////////////////////////////////////////// |  | ||||||
|  |  | ||||||
|   //    protected: |  | ||||||
| public: |  | ||||||
|   // any other parameters of action ??? |  | ||||||
|   virtual int   isTrivialEE(void) { return 1; }; |  | ||||||
|   virtual RealD Mass(void) { return mass; } |  | ||||||
|   RealD mass; |  | ||||||
|   RealD u0; |  | ||||||
|   RealD c1; |  | ||||||
|  |  | ||||||
|   GridBase *_grid; |  | ||||||
|   GridBase *_cbgrid; |  | ||||||
|  |  | ||||||
|   // Defines the stencils for even and odd |  | ||||||
|   StencilImpl Stencil; |  | ||||||
|   StencilImpl StencilEven; |  | ||||||
|   StencilImpl StencilOdd; |  | ||||||
|  |  | ||||||
|   // Copy of the gauge field , with even and odd subsets |  | ||||||
|   DoubledGaugeField Umu; |  | ||||||
|   DoubledGaugeField UmuEven; |  | ||||||
|   DoubledGaugeField UmuOdd; |  | ||||||
|  |  | ||||||
|   LebesgueOrder Lebesgue; |  | ||||||
|   LebesgueOrder LebesgueEvenOdd; |  | ||||||
|    |  | ||||||
|   /////////////////////////////////////////////////////////////// |  | ||||||
|   // Conserved current utilities |  | ||||||
|   /////////////////////////////////////////////////////////////// |  | ||||||
|   void ContractConservedCurrent(PropagatorField &q_in_1, |  | ||||||
|                                 PropagatorField &q_in_2, |  | ||||||
|                                 PropagatorField &q_out, |  | ||||||
|                                 PropagatorField &src, |  | ||||||
|                                 Current curr_type, |  | ||||||
|                                 unsigned int mu); |  | ||||||
|   void SeqConservedCurrent(PropagatorField &q_in, |  | ||||||
|                            PropagatorField &q_out, |  | ||||||
|                            PropagatorField &srct, |  | ||||||
|                            Current curr_type, |  | ||||||
|                            unsigned int mu,  |  | ||||||
|                            unsigned int tmin, |  | ||||||
|                            unsigned int tmax, |  | ||||||
| 			   ComplexField &lattice_cmplx); |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| typedef NaiveStaggeredFermion<StaggeredImplF> NaiveStaggeredFermionF; |  | ||||||
| typedef NaiveStaggeredFermion<StaggeredImplD> NaiveStaggeredFermionD; |  | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); |  | ||||||
|  |  | ||||||
| #endif |  | ||||||
| @@ -72,23 +72,19 @@ public: | |||||||
|      |      | ||||||
|   StaggeredImpl(const ImplParams &p = ImplParams()) : Params(p){}; |   StaggeredImpl(const ImplParams &p = ImplParams()) : Params(p){}; | ||||||
|        |        | ||||||
|   template<class _Spinor> |   static accelerator_inline void multLink(SiteSpinor &phi, | ||||||
|   static accelerator_inline void multLink(_Spinor &phi, |  | ||||||
| 		       const SiteDoubledGaugeField &U, | 		       const SiteDoubledGaugeField &U, | ||||||
| 		       const _Spinor &chi, | 		       const SiteSpinor &chi, | ||||||
| 		       int mu) | 		       int mu) | ||||||
|   { |   { | ||||||
|     auto UU = coalescedRead(U(mu)); |     mult(&phi(), &U(mu), &chi()); | ||||||
|     mult(&phi(), &UU, &chi()); |  | ||||||
|   } |   } | ||||||
|   template<class _Spinor> |   static accelerator_inline void multLinkAdd(SiteSpinor &phi, | ||||||
|   static accelerator_inline void multLinkAdd(_Spinor &phi, |  | ||||||
| 			  const SiteDoubledGaugeField &U, | 			  const SiteDoubledGaugeField &U, | ||||||
| 			  const _Spinor &chi, | 			  const SiteSpinor &chi, | ||||||
| 			  int mu) | 			  int mu) | ||||||
|   { |   { | ||||||
|     auto UU = coalescedRead(U(mu)); |     mac(&phi(), &U(mu), &chi()); | ||||||
|     mac(&phi(), &UU, &chi()); |  | ||||||
|   } |   } | ||||||
|        |        | ||||||
|   template <class ref> |   template <class ref> | ||||||
|   | |||||||
| @@ -47,37 +47,23 @@ template<class Impl> class StaggeredKernels : public FermionOperator<Impl> , pub | |||||||
|   INHERIT_IMPL_TYPES(Impl); |   INHERIT_IMPL_TYPES(Impl); | ||||||
|   typedef FermionOperator<Impl> Base; |   typedef FermionOperator<Impl> Base; | ||||||
|     |     | ||||||
|  public: | public: | ||||||
|  |  | ||||||
|   void DhopImproved(StencilImpl &st, LebesgueOrder &lo,  |  | ||||||
| 		    DoubledGaugeField &U, DoubledGaugeField &UUU,  |  | ||||||
| 		    const FermionField &in, FermionField &out, int dag, int interior,int exterior); |  | ||||||
|   void DhopNaive(StencilImpl &st, LebesgueOrder &lo,  |  | ||||||
| 		 DoubledGaugeField &U, |  | ||||||
| 		 const FermionField &in, FermionField &out, int dag, int interior,int exterior); |  | ||||||
|      |      | ||||||
|    void DhopDirKernel(StencilImpl &st, DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU, SiteSpinor * buf, |    void DhopDirKernel(StencilImpl &st, DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU, SiteSpinor * buf, | ||||||
| 		      int sF, int sU, const FermionFieldView &in, FermionFieldView &out, int dir,int disp); | 		      int sF, int sU, const FermionFieldView &in, FermionFieldView &out, int dir,int disp); | ||||||
|  protected:     |  | ||||||
|  |  | ||||||
|    /////////////////////////////////////////////////////////////////////////////////////// |    /////////////////////////////////////////////////////////////////////////////////////// | ||||||
|    // Generic Nc kernels |    // Generic Nc kernels | ||||||
|    /////////////////////////////////////////////////////////////////////////////////////// |    /////////////////////////////////////////////////////////////////////////////////////// | ||||||
|    template<int Naik>  |    void DhopSiteGeneric(StencilImpl &st, LebesgueOrder &lo,  | ||||||
|    static accelerator_inline |  | ||||||
|    void DhopSiteGeneric(StencilView &st,  |  | ||||||
| 			DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU,  | 			DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU,  | ||||||
| 			SiteSpinor * buf, int LLs, int sU,  | 			SiteSpinor * buf, int LLs, int sU,  | ||||||
| 			const FermionFieldView &in, FermionFieldView &out,int dag); | 			const FermionFieldView &in, FermionFieldView &out,int dag); | ||||||
|     |    void DhopSiteGenericInt(StencilImpl &st, LebesgueOrder &lo,  | ||||||
|    template<int Naik> static accelerator_inline |  | ||||||
|    void DhopSiteGenericInt(StencilView &st,  |  | ||||||
| 			   DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU,  | 			   DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU,  | ||||||
| 			   SiteSpinor * buf, int LLs, int sU,  | 			   SiteSpinor * buf, int LLs, int sU,  | ||||||
| 			   const FermionFieldView &in, FermionFieldView &out,int dag); | 			   const FermionFieldView &in, FermionFieldView &out,int dag); | ||||||
|     |    void DhopSiteGenericExt(StencilImpl &st, LebesgueOrder &lo,  | ||||||
|    template<int Naik> static accelerator_inline |  | ||||||
|    void DhopSiteGenericExt(StencilView &st,  |  | ||||||
| 			   DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU, | 			   DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU, | ||||||
| 			   SiteSpinor * buf, int LLs, int sU,  | 			   SiteSpinor * buf, int LLs, int sU,  | ||||||
| 			   const FermionFieldView &in, FermionFieldView &out,int dag); | 			   const FermionFieldView &in, FermionFieldView &out,int dag); | ||||||
| @@ -85,21 +71,15 @@ template<class Impl> class StaggeredKernels : public FermionOperator<Impl> , pub | |||||||
|    /////////////////////////////////////////////////////////////////////////////////////// |    /////////////////////////////////////////////////////////////////////////////////////// | ||||||
|    // Nc=3 specific kernels |    // Nc=3 specific kernels | ||||||
|    /////////////////////////////////////////////////////////////////////////////////////// |    /////////////////////////////////////////////////////////////////////////////////////// | ||||||
|     |    void DhopSiteHand(StencilImpl &st, LebesgueOrder &lo,  | ||||||
|    template<int Naik> static accelerator_inline |  | ||||||
|    void DhopSiteHand(StencilView &st,  |  | ||||||
| 		     DoubledGaugeFieldView &U,DoubledGaugeFieldView &UUU,  | 		     DoubledGaugeFieldView &U,DoubledGaugeFieldView &UUU,  | ||||||
| 		     SiteSpinor * buf, int LLs, int sU,  | 		     SiteSpinor * buf, int LLs, int sU,  | ||||||
| 		     const FermionFieldView &in, FermionFieldView &out,int dag); | 		     const FermionFieldView &in, FermionFieldView &out,int dag); | ||||||
|     |    void DhopSiteHandInt(StencilImpl &st, LebesgueOrder &lo,  | ||||||
|    template<int Naik> static accelerator_inline |  | ||||||
|    void DhopSiteHandInt(StencilView &st,  |  | ||||||
| 			DoubledGaugeFieldView &U,DoubledGaugeFieldView &UUU,  | 			DoubledGaugeFieldView &U,DoubledGaugeFieldView &UUU,  | ||||||
| 			SiteSpinor * buf, int LLs, int sU,  | 			SiteSpinor * buf, int LLs, int sU,  | ||||||
| 			const FermionFieldView &in, FermionFieldView &out,int dag); | 			const FermionFieldView &in, FermionFieldView &out,int dag); | ||||||
|     |    void DhopSiteHandExt(StencilImpl &st, LebesgueOrder &lo,  | ||||||
|    template<int Naik> static accelerator_inline |  | ||||||
|    void DhopSiteHandExt(StencilView &st,  |  | ||||||
| 			DoubledGaugeFieldView &U,DoubledGaugeFieldView &UUU,  | 			DoubledGaugeFieldView &U,DoubledGaugeFieldView &UUU,  | ||||||
| 			SiteSpinor * buf, int LLs, int sU,  | 			SiteSpinor * buf, int LLs, int sU,  | ||||||
| 			const FermionFieldView &in, FermionFieldView &out,int dag); | 			const FermionFieldView &in, FermionFieldView &out,int dag); | ||||||
| @@ -107,11 +87,27 @@ template<class Impl> class StaggeredKernels : public FermionOperator<Impl> , pub | |||||||
|    /////////////////////////////////////////////////////////////////////////////////////// |    /////////////////////////////////////////////////////////////////////////////////////// | ||||||
|    // Asm Nc=3 specific kernels |    // Asm Nc=3 specific kernels | ||||||
|    /////////////////////////////////////////////////////////////////////////////////////// |    /////////////////////////////////////////////////////////////////////////////////////// | ||||||
|     |    void DhopSiteAsm(StencilImpl &st, LebesgueOrder &lo,  | ||||||
|    void DhopSiteAsm(StencilView &st,  |  | ||||||
| 		    DoubledGaugeFieldView &U,DoubledGaugeFieldView &UUU,  | 		    DoubledGaugeFieldView &U,DoubledGaugeFieldView &UUU,  | ||||||
| 		    SiteSpinor * buf, int LLs, int sU,  | 		    SiteSpinor * buf, int LLs, int sU,  | ||||||
| 		    const FermionFieldView &in, FermionFieldView &out,int dag); | 		    const FermionFieldView &in, FermionFieldView &out,int dag); | ||||||
|  |    /////////////////////////////////////////////////////////////////////////////////////////////////// | ||||||
|  |    // Generic interface; fan out to right routine | ||||||
|  |    /////////////////////////////////////////////////////////////////////////////////////////////////// | ||||||
|  |    void DhopSite(StencilImpl &st, LebesgueOrder &lo,  | ||||||
|  | 		 DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU,  | ||||||
|  | 		 SiteSpinor * buf, int LLs, int sU, | ||||||
|  | 		 const FermionFieldView &in, FermionFieldView &out, int interior=1,int exterior=1); | ||||||
|  |  | ||||||
|  |    void DhopSiteDag(StencilImpl &st, LebesgueOrder &lo,  | ||||||
|  | 		    DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU,  | ||||||
|  | 		    SiteSpinor * buf, int LLs, int sU, | ||||||
|  | 		    const FermionFieldView &in, FermionFieldView &out, int interior=1,int exterior=1); | ||||||
|  |  | ||||||
|  |    void DhopSite(StencilImpl &st, LebesgueOrder &lo,  | ||||||
|  | 		 DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU,  | ||||||
|  | 		 SiteSpinor * buf, int LLs, int sU, | ||||||
|  | 		 const FermionFieldView &in, FermionFieldView &out, int dag, int interior,int exterior); | ||||||
|    |    | ||||||
| public: | public: | ||||||
|  |  | ||||||
|   | |||||||
| @@ -113,7 +113,20 @@ public: | |||||||
|        |        | ||||||
|   inline void InsertGaugeField(DoubledGaugeField &U_ds,const GaugeLinkField &U,int mu) |   inline void InsertGaugeField(DoubledGaugeField &U_ds,const GaugeLinkField &U,int mu) | ||||||
|   { |   { | ||||||
|     assert(0); |     GridBase *GaugeGrid = U_ds.Grid(); | ||||||
|  |     thread_for(lidx, GaugeGrid->lSites(),{ | ||||||
|  |  | ||||||
|  | 	SiteScalarGaugeLink   ScalarU; | ||||||
|  | 	SiteDoubledGaugeField ScalarUds; | ||||||
|  | 	 | ||||||
|  | 	Coordinate lcoor; | ||||||
|  | 	GaugeGrid->LocalIndexToLocalCoor(lidx, lcoor); | ||||||
|  | 	peekLocalSite(ScalarUds, U_ds, lcoor); | ||||||
|  | 	 | ||||||
|  | 	peekLocalSite(ScalarU, U, lcoor); | ||||||
|  | 	ScalarUds(mu) = ScalarU(); | ||||||
|  | 	 | ||||||
|  |     }); | ||||||
|   } |   } | ||||||
|   inline void DoubleStore(GridBase *GaugeGrid, |   inline void DoubleStore(GridBase *GaugeGrid, | ||||||
| 			  DoubledGaugeField &UUUds, // for Naik term | 			  DoubledGaugeField &UUUds, // for Naik term | ||||||
|   | |||||||
| @@ -4,11 +4,10 @@ | |||||||
|  |  | ||||||
|     Source file: ./lib/qcd/action/fermion/WilsonCloverFermion.h |     Source file: ./lib/qcd/action/fermion/WilsonCloverFermion.h | ||||||
|  |  | ||||||
|     Copyright (C) 2017 - 2022 |     Copyright (C) 2017 | ||||||
|  |  | ||||||
|     Author: Guido Cossu <guido.cossu@ed.ac.uk> |     Author: Guido Cossu <guido.cossu@ed.ac.uk> | ||||||
|     Author: David Preti <> |     Author: David Preti <> | ||||||
|     Author: Daniel Richtmann <daniel.richtmann@gmail.com> |  | ||||||
|  |  | ||||||
|     This program is free software; you can redistribute it and/or modify |     This program is free software; you can redistribute it and/or modify | ||||||
|     it under the terms of the GNU General Public License as published by |     it under the terms of the GNU General Public License as published by | ||||||
| @@ -30,8 +29,7 @@ | |||||||
|  |  | ||||||
| #pragma once | #pragma once | ||||||
|  |  | ||||||
| #include <Grid/qcd/action/fermion/WilsonCloverTypes.h> | #include <Grid/Grid.h> | ||||||
| #include <Grid/qcd/action/fermion/WilsonCloverHelpers.h> |  | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); | NAMESPACE_BEGIN(Grid); | ||||||
|  |  | ||||||
| @@ -52,15 +50,18 @@ NAMESPACE_BEGIN(Grid); | |||||||
| ////////////////////////////////////////////////////////////////// | ////////////////////////////////////////////////////////////////// | ||||||
|  |  | ||||||
| template <class Impl> | template <class Impl> | ||||||
| class WilsonCloverFermion : public WilsonFermion<Impl>, | class WilsonCloverFermion : public WilsonFermion<Impl> | ||||||
|                             public WilsonCloverHelpers<Impl> |  | ||||||
| { | { | ||||||
| public: | public: | ||||||
|  |   // Types definitions | ||||||
|   INHERIT_IMPL_TYPES(Impl); |   INHERIT_IMPL_TYPES(Impl); | ||||||
|   INHERIT_CLOVER_TYPES(Impl); |   template <typename vtype> | ||||||
|  |   using iImplClover = iScalar<iMatrix<iMatrix<vtype, Impl::Dimension>, Ns>>; | ||||||
|  |   typedef iImplClover<Simd> SiteCloverType; | ||||||
|  |   typedef Lattice<SiteCloverType> CloverFieldType; | ||||||
|  |  | ||||||
|  | public: | ||||||
|   typedef WilsonFermion<Impl> WilsonBase; |   typedef WilsonFermion<Impl> WilsonBase; | ||||||
|   typedef WilsonCloverHelpers<Impl> Helpers; |  | ||||||
|  |  | ||||||
|   virtual int    ConstEE(void)     { return 0; }; |   virtual int    ConstEE(void)     { return 0; }; | ||||||
|   virtual void Instantiatable(void){}; |   virtual void Instantiatable(void){}; | ||||||
| @@ -71,7 +72,42 @@ public: | |||||||
|                       const RealD _csw_r = 0.0, |                       const RealD _csw_r = 0.0, | ||||||
|                       const RealD _csw_t = 0.0, |                       const RealD _csw_t = 0.0, | ||||||
|                       const WilsonAnisotropyCoefficients &clover_anisotropy = WilsonAnisotropyCoefficients(), |                       const WilsonAnisotropyCoefficients &clover_anisotropy = WilsonAnisotropyCoefficients(), | ||||||
|                       const ImplParams &impl_p = ImplParams()); |                       const ImplParams &impl_p = ImplParams()) : WilsonFermion<Impl>(_Umu, | ||||||
|  |                                                                                      Fgrid, | ||||||
|  |                                                                                      Hgrid, | ||||||
|  |                                                                                      _mass, impl_p, clover_anisotropy), | ||||||
|  |                                                                  CloverTerm(&Fgrid), | ||||||
|  |                                                                  CloverTermInv(&Fgrid), | ||||||
|  |                                                                  CloverTermEven(&Hgrid), | ||||||
|  |                                                                  CloverTermOdd(&Hgrid), | ||||||
|  |                                                                  CloverTermInvEven(&Hgrid), | ||||||
|  |                                                                  CloverTermInvOdd(&Hgrid), | ||||||
|  |                                                                  CloverTermDagEven(&Hgrid), | ||||||
|  |                                                                  CloverTermDagOdd(&Hgrid), | ||||||
|  |                                                                  CloverTermInvDagEven(&Hgrid), | ||||||
|  |                                                                  CloverTermInvDagOdd(&Hgrid) | ||||||
|  |   { | ||||||
|  |     assert(Nd == 4); // require 4 dimensions | ||||||
|  |  | ||||||
|  |     if (clover_anisotropy.isAnisotropic) | ||||||
|  |     { | ||||||
|  |       csw_r = _csw_r * 0.5 / clover_anisotropy.xi_0; | ||||||
|  |       diag_mass = _mass + 1.0 + (Nd - 1) * (clover_anisotropy.nu / clover_anisotropy.xi_0); | ||||||
|  |     } | ||||||
|  |     else | ||||||
|  |     { | ||||||
|  |       csw_r = _csw_r * 0.5; | ||||||
|  |       diag_mass = 4.0 + _mass; | ||||||
|  |     } | ||||||
|  |     csw_t = _csw_t * 0.5; | ||||||
|  |  | ||||||
|  |     if (csw_r == 0) | ||||||
|  |       std::cout << GridLogWarning << "Initializing WilsonCloverFermion with csw_r = 0" << std::endl; | ||||||
|  |     if (csw_t == 0) | ||||||
|  |       std::cout << GridLogWarning << "Initializing WilsonCloverFermion with csw_t = 0" << std::endl; | ||||||
|  |  | ||||||
|  |     ImportGauge(_Umu); | ||||||
|  |   } | ||||||
|  |  | ||||||
|   virtual void M(const FermionField &in, FermionField &out); |   virtual void M(const FermionField &in, FermionField &out); | ||||||
|   virtual void Mdag(const FermionField &in, FermionField &out); |   virtual void Mdag(const FermionField &in, FermionField &out); | ||||||
| @@ -88,21 +124,249 @@ public: | |||||||
|   void ImportGauge(const GaugeField &_Umu); |   void ImportGauge(const GaugeField &_Umu); | ||||||
|  |  | ||||||
|   // Derivative parts unpreconditioned pseudofermions |   // Derivative parts unpreconditioned pseudofermions | ||||||
|   void MDeriv(GaugeField &force, const FermionField &X, const FermionField &Y, int dag); |   void MDeriv(GaugeField &force, const FermionField &X, const FermionField &Y, int dag) | ||||||
|  |   { | ||||||
|  |     conformable(X.Grid(), Y.Grid()); | ||||||
|  |     conformable(X.Grid(), force.Grid()); | ||||||
|  |     GaugeLinkField force_mu(force.Grid()), lambda(force.Grid()); | ||||||
|  |     GaugeField clover_force(force.Grid()); | ||||||
|  |     PropagatorField Lambda(force.Grid()); | ||||||
|  |  | ||||||
| public: |     // Guido: Here we are hitting some performance issues: | ||||||
|  |     // need to extract the components of the DoubledGaugeField | ||||||
|  |     // for each call | ||||||
|  |     // Possible solution | ||||||
|  |     // Create a vector object to store them? (cons: wasting space) | ||||||
|  |     std::vector<GaugeLinkField> U(Nd, this->Umu.Grid()); | ||||||
|  |  | ||||||
|  |     Impl::extractLinkField(U, this->Umu); | ||||||
|  |  | ||||||
|  |     force = Zero(); | ||||||
|  |     // Derivative of the Wilson hopping term | ||||||
|  |     this->DhopDeriv(force, X, Y, dag); | ||||||
|  |  | ||||||
|  |     /////////////////////////////////////////////////////////// | ||||||
|  |     // Clover term derivative | ||||||
|  |     /////////////////////////////////////////////////////////// | ||||||
|  |     Impl::outerProductImpl(Lambda, X, Y); | ||||||
|  |     //std::cout << "Lambda:" << Lambda << std::endl; | ||||||
|  |  | ||||||
|  |     Gamma::Algebra sigma[] = { | ||||||
|  |         Gamma::Algebra::SigmaXY, | ||||||
|  |         Gamma::Algebra::SigmaXZ, | ||||||
|  |         Gamma::Algebra::SigmaXT, | ||||||
|  |         Gamma::Algebra::MinusSigmaXY, | ||||||
|  |         Gamma::Algebra::SigmaYZ, | ||||||
|  |         Gamma::Algebra::SigmaYT, | ||||||
|  |         Gamma::Algebra::MinusSigmaXZ, | ||||||
|  |         Gamma::Algebra::MinusSigmaYZ, | ||||||
|  |         Gamma::Algebra::SigmaZT, | ||||||
|  |         Gamma::Algebra::MinusSigmaXT, | ||||||
|  |         Gamma::Algebra::MinusSigmaYT, | ||||||
|  |         Gamma::Algebra::MinusSigmaZT}; | ||||||
|  |  | ||||||
|  |     /* | ||||||
|  |       sigma_{\mu \nu}= | ||||||
|  |       | 0         sigma[0]  sigma[1]  sigma[2] | | ||||||
|  |       | sigma[3]    0       sigma[4]  sigma[5] | | ||||||
|  |       | sigma[6]  sigma[7]     0      sigma[8] | | ||||||
|  |       | sigma[9]  sigma[10] sigma[11]   0      | | ||||||
|  |     */ | ||||||
|  |  | ||||||
|  |     int count = 0; | ||||||
|  |     clover_force = Zero(); | ||||||
|  |     for (int mu = 0; mu < 4; mu++) | ||||||
|  |     { | ||||||
|  |       force_mu = Zero(); | ||||||
|  |       for (int nu = 0; nu < 4; nu++) | ||||||
|  |       { | ||||||
|  |         if (mu == nu) | ||||||
|  |         continue; | ||||||
|  |          | ||||||
|  |         RealD factor; | ||||||
|  |         if (nu == 4 || mu == 4) | ||||||
|  |         { | ||||||
|  |           factor = 2.0 * csw_t; | ||||||
|  |         } | ||||||
|  |         else | ||||||
|  |         { | ||||||
|  |           factor = 2.0 * csw_r; | ||||||
|  |         } | ||||||
|  |         PropagatorField Slambda = Gamma(sigma[count]) * Lambda; // sigma checked | ||||||
|  |         Impl::TraceSpinImpl(lambda, Slambda);                   // traceSpin ok | ||||||
|  |         force_mu -= factor*Cmunu(U, lambda, mu, nu);                   // checked | ||||||
|  |         count++; | ||||||
|  |       } | ||||||
|  |  | ||||||
|  |       pokeLorentz(clover_force, U[mu] * force_mu, mu); | ||||||
|  |     } | ||||||
|  |     //clover_force *= csw; | ||||||
|  |     force += clover_force; | ||||||
|  |   } | ||||||
|  |  | ||||||
|  |   // Computing C_{\mu \nu}(x) as in Eq.(B.39) in Zbigniew Sroczynski's PhD thesis | ||||||
|  |   GaugeLinkField Cmunu(std::vector<GaugeLinkField> &U, GaugeLinkField &lambda, int mu, int nu) | ||||||
|  |   { | ||||||
|  |     conformable(lambda.Grid(), U[0].Grid()); | ||||||
|  |     GaugeLinkField out(lambda.Grid()), tmp(lambda.Grid()); | ||||||
|  |     // insertion in upper staple | ||||||
|  |     // please check redundancy of shift operations | ||||||
|  |  | ||||||
|  |     // C1+ | ||||||
|  |     tmp = lambda * U[nu]; | ||||||
|  |     out = Impl::ShiftStaple(Impl::CovShiftForward(tmp, nu, Impl::CovShiftBackward(U[mu], mu, Impl::CovShiftIdentityBackward(U[nu], nu))), mu); | ||||||
|  |  | ||||||
|  |     // C2+ | ||||||
|  |     tmp = U[mu] * Impl::ShiftStaple(adj(lambda), mu); | ||||||
|  |     out += Impl::ShiftStaple(Impl::CovShiftForward(U[nu], nu, Impl::CovShiftBackward(tmp, mu, Impl::CovShiftIdentityBackward(U[nu], nu))), mu); | ||||||
|  |  | ||||||
|  |     // C3+ | ||||||
|  |     tmp = U[nu] * Impl::ShiftStaple(adj(lambda), nu); | ||||||
|  |     out += Impl::ShiftStaple(Impl::CovShiftForward(U[nu], nu, Impl::CovShiftBackward(U[mu], mu, Impl::CovShiftIdentityBackward(tmp, nu))), mu); | ||||||
|  |  | ||||||
|  |     // C4+ | ||||||
|  |     out += Impl::ShiftStaple(Impl::CovShiftForward(U[nu], nu, Impl::CovShiftBackward(U[mu], mu, Impl::CovShiftIdentityBackward(U[nu], nu))), mu) * lambda; | ||||||
|  |  | ||||||
|  |     // insertion in lower staple | ||||||
|  |     // C1- | ||||||
|  |     out -= Impl::ShiftStaple(lambda, mu) * Impl::ShiftStaple(Impl::CovShiftBackward(U[nu], nu, Impl::CovShiftBackward(U[mu], mu, U[nu])), mu); | ||||||
|  |  | ||||||
|  |     // C2- | ||||||
|  |     tmp = adj(lambda) * U[nu]; | ||||||
|  |     out -= Impl::ShiftStaple(Impl::CovShiftBackward(tmp, nu, Impl::CovShiftBackward(U[mu], mu, U[nu])), mu); | ||||||
|  |  | ||||||
|  |     // C3- | ||||||
|  |     tmp = lambda * U[nu]; | ||||||
|  |     out -= Impl::ShiftStaple(Impl::CovShiftBackward(U[nu], nu, Impl::CovShiftBackward(U[mu], mu, tmp)), mu); | ||||||
|  |  | ||||||
|  |     // C4- | ||||||
|  |     out -= Impl::ShiftStaple(Impl::CovShiftBackward(U[nu], nu, Impl::CovShiftBackward(U[mu], mu, U[nu])), mu) * lambda; | ||||||
|  |  | ||||||
|  |     return out; | ||||||
|  |   } | ||||||
|  |  | ||||||
|  | private: | ||||||
|   // here fixing the 4 dimensions, make it more general? |   // here fixing the 4 dimensions, make it more general? | ||||||
|  |  | ||||||
|   RealD csw_r;                                               // Clover coefficient - spatial |   RealD csw_r;                                               // Clover coefficient - spatial | ||||||
|   RealD csw_t;                                               // Clover coefficient - temporal |   RealD csw_t;                                               // Clover coefficient - temporal | ||||||
|   RealD diag_mass;                                           // Mass term |   RealD diag_mass;                                           // Mass term | ||||||
|   CloverField CloverTerm, CloverTermInv;                     // Clover term |   CloverFieldType CloverTerm, CloverTermInv;                 // Clover term | ||||||
|   CloverField CloverTermEven, CloverTermOdd;                 // Clover term EO |   CloverFieldType CloverTermEven, CloverTermOdd;             // Clover term EO | ||||||
|   CloverField CloverTermInvEven, CloverTermInvOdd;           // Clover term Inv EO |   CloverFieldType CloverTermInvEven, CloverTermInvOdd;       // Clover term Inv EO | ||||||
|   CloverField CloverTermDagEven, CloverTermDagOdd;           // Clover term Dag EO |   CloverFieldType CloverTermDagEven, CloverTermDagOdd;       // Clover term Dag EO | ||||||
|   CloverField CloverTermInvDagEven, CloverTermInvDagOdd;     // Clover term Inv Dag EO |   CloverFieldType CloverTermInvDagEven, CloverTermInvDagOdd; // Clover term Inv Dag EO | ||||||
| }; |  | ||||||
|  |  | ||||||
|  |   // eventually these can be compressed into 6x6 blocks instead of the 12x12 | ||||||
|  |   // using the DeGrand-Rossi basis for the gamma matrices | ||||||
|  |   CloverFieldType fillCloverYZ(const GaugeLinkField &F) | ||||||
|  |   { | ||||||
|  |     CloverFieldType T(F.Grid()); | ||||||
|  |     T = Zero(); | ||||||
|  |     auto T_v = T.View(); | ||||||
|  |     auto F_v = F.View(); | ||||||
|  |     thread_for(i, CloverTerm.Grid()->oSites(), | ||||||
|  |     { | ||||||
|  |       T_v[i]()(0, 1) = timesMinusI(F_v[i]()()); | ||||||
|  |       T_v[i]()(1, 0) = timesMinusI(F_v[i]()()); | ||||||
|  |       T_v[i]()(2, 3) = timesMinusI(F_v[i]()()); | ||||||
|  |       T_v[i]()(3, 2) = timesMinusI(F_v[i]()()); | ||||||
|  |     }); | ||||||
|  |  | ||||||
|  |     return T; | ||||||
|  |   } | ||||||
|  |  | ||||||
|  |   CloverFieldType fillCloverXZ(const GaugeLinkField &F) | ||||||
|  |   { | ||||||
|  |     CloverFieldType T(F.Grid()); | ||||||
|  |     T = Zero(); | ||||||
|  |      | ||||||
|  |     auto T_v = T.View(); | ||||||
|  |     auto F_v = F.View(); | ||||||
|  |     thread_for(i, CloverTerm.Grid()->oSites(), | ||||||
|  |     { | ||||||
|  |       T_v[i]()(0, 1) = -F_v[i]()(); | ||||||
|  |       T_v[i]()(1, 0) = F_v[i]()(); | ||||||
|  |       T_v[i]()(2, 3) = -F_v[i]()(); | ||||||
|  |       T_v[i]()(3, 2) = F_v[i]()(); | ||||||
|  |     }); | ||||||
|  |  | ||||||
|  |     return T; | ||||||
|  |   } | ||||||
|  |  | ||||||
|  |   CloverFieldType fillCloverXY(const GaugeLinkField &F) | ||||||
|  |   { | ||||||
|  |     CloverFieldType T(F.Grid()); | ||||||
|  |     T = Zero(); | ||||||
|  |  | ||||||
|  |     auto T_v = T.View(); | ||||||
|  |     auto F_v = F.View(); | ||||||
|  |     thread_for(i, CloverTerm.Grid()->oSites(), | ||||||
|  |     { | ||||||
|  |       T_v[i]()(0, 0) = timesMinusI(F_v[i]()()); | ||||||
|  |       T_v[i]()(1, 1) = timesI(F_v[i]()()); | ||||||
|  |       T_v[i]()(2, 2) = timesMinusI(F_v[i]()()); | ||||||
|  |       T_v[i]()(3, 3) = timesI(F_v[i]()()); | ||||||
|  |     }); | ||||||
|  |  | ||||||
|  |     return T; | ||||||
|  |   } | ||||||
|  |  | ||||||
|  |   CloverFieldType fillCloverXT(const GaugeLinkField &F) | ||||||
|  |   { | ||||||
|  |     CloverFieldType T(F.Grid()); | ||||||
|  |     T = Zero(); | ||||||
|  |  | ||||||
|  |     auto T_v = T.View(); | ||||||
|  |     auto F_v = F.View(); | ||||||
|  |     thread_for(i, CloverTerm.Grid()->oSites(), | ||||||
|  |     { | ||||||
|  |       T_v[i]()(0, 1) = timesI(F_v[i]()()); | ||||||
|  |       T_v[i]()(1, 0) = timesI(F_v[i]()()); | ||||||
|  |       T_v[i]()(2, 3) = timesMinusI(F_v[i]()()); | ||||||
|  |       T_v[i]()(3, 2) = timesMinusI(F_v[i]()()); | ||||||
|  |     }); | ||||||
|  |  | ||||||
|  |     return T; | ||||||
|  |   } | ||||||
|  |  | ||||||
|  |   CloverFieldType fillCloverYT(const GaugeLinkField &F) | ||||||
|  |   { | ||||||
|  |     CloverFieldType T(F.Grid()); | ||||||
|  |     T = Zero(); | ||||||
|  |      | ||||||
|  |     auto T_v = T.View(); | ||||||
|  |     auto F_v = F.View(); | ||||||
|  |     thread_for(i, CloverTerm.Grid()->oSites(), | ||||||
|  |     { | ||||||
|  |       T_v[i]()(0, 1) = -(F_v[i]()()); | ||||||
|  |       T_v[i]()(1, 0) = (F_v[i]()()); | ||||||
|  |       T_v[i]()(2, 3) = (F_v[i]()()); | ||||||
|  |       T_v[i]()(3, 2) = -(F_v[i]()()); | ||||||
|  |     }); | ||||||
|  |  | ||||||
|  |     return T; | ||||||
|  |   } | ||||||
|  |  | ||||||
|  |   CloverFieldType fillCloverZT(const GaugeLinkField &F) | ||||||
|  |   { | ||||||
|  |     CloverFieldType T(F.Grid()); | ||||||
|  |  | ||||||
|  |     T = Zero(); | ||||||
|  |  | ||||||
|  |     auto T_v = T.View(); | ||||||
|  |     auto F_v = F.View(); | ||||||
|  |     thread_for(i, CloverTerm.Grid()->oSites(), | ||||||
|  |     { | ||||||
|  |       T_v[i]()(0, 0) = timesI(F_v[i]()()); | ||||||
|  |       T_v[i]()(1, 1) = timesMinusI(F_v[i]()()); | ||||||
|  |       T_v[i]()(2, 2) = timesMinusI(F_v[i]()()); | ||||||
|  |       T_v[i]()(3, 3) = timesI(F_v[i]()()); | ||||||
|  |     }); | ||||||
|  |  | ||||||
|  |     return T; | ||||||
|  |   } | ||||||
|  | }; | ||||||
| NAMESPACE_END(Grid); | NAMESPACE_END(Grid); | ||||||
|  |  | ||||||
|  |  | ||||||
|   | |||||||
| @@ -1,761 +0,0 @@ | |||||||
| /************************************************************************************* |  | ||||||
|  |  | ||||||
|     Grid physics library, www.github.com/paboyle/Grid |  | ||||||
|  |  | ||||||
|     Source file: ./lib/qcd/action/fermion/WilsonCloverHelpers.h |  | ||||||
|  |  | ||||||
|     Copyright (C) 2021 - 2022 |  | ||||||
|  |  | ||||||
|     Author: Daniel Richtmann <daniel.richtmann@gmail.com> |  | ||||||
|  |  | ||||||
|     This program is free software; you can redistribute it and/or modify |  | ||||||
|     it under the terms of the GNU General Public License as published by |  | ||||||
|     the Free Software Foundation; either version 2 of the License, or |  | ||||||
|     (at your option) any later version. |  | ||||||
|  |  | ||||||
|     This program is distributed in the hope that it will be useful, |  | ||||||
|     but WITHOUT ANY WARRANTY; without even the implied warranty of |  | ||||||
|     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the |  | ||||||
|     GNU General Public License for more details. |  | ||||||
|  |  | ||||||
|     You should have received a copy of the GNU General Public License along |  | ||||||
|     with this program; if not, write to the Free Software Foundation, Inc., |  | ||||||
|     51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. |  | ||||||
|  |  | ||||||
|     See the full license in the file "LICENSE" in the top level distribution directory |  | ||||||
| *************************************************************************************/ |  | ||||||
| /*  END LEGAL */ |  | ||||||
|  |  | ||||||
| #pragma once |  | ||||||
|  |  | ||||||
| // Helper routines that implement common clover functionality |  | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); |  | ||||||
|  |  | ||||||
| template<class Impl> class WilsonCloverHelpers { |  | ||||||
| public: |  | ||||||
|  |  | ||||||
|   INHERIT_IMPL_TYPES(Impl); |  | ||||||
|   INHERIT_CLOVER_TYPES(Impl); |  | ||||||
|  |  | ||||||
|   // Computing C_{\mu \nu}(x) as in Eq.(B.39) in Zbigniew Sroczynski's PhD thesis |  | ||||||
|   static GaugeLinkField Cmunu(std::vector<GaugeLinkField> &U, GaugeLinkField &lambda, int mu, int nu) |  | ||||||
|   { |  | ||||||
|     conformable(lambda.Grid(), U[0].Grid()); |  | ||||||
|     GaugeLinkField out(lambda.Grid()), tmp(lambda.Grid()); |  | ||||||
|     // insertion in upper staple |  | ||||||
|     // please check redundancy of shift operations |  | ||||||
|  |  | ||||||
|     // C1+ |  | ||||||
|     tmp = lambda * U[nu]; |  | ||||||
|     out = Impl::ShiftStaple(Impl::CovShiftForward(tmp, nu, Impl::CovShiftBackward(U[mu], mu, Impl::CovShiftIdentityBackward(U[nu], nu))), mu); |  | ||||||
|  |  | ||||||
|     // C2+ |  | ||||||
|     tmp = U[mu] * Impl::ShiftStaple(adj(lambda), mu); |  | ||||||
|     out += Impl::ShiftStaple(Impl::CovShiftForward(U[nu], nu, Impl::CovShiftBackward(tmp, mu, Impl::CovShiftIdentityBackward(U[nu], nu))), mu); |  | ||||||
|  |  | ||||||
|     // C3+ |  | ||||||
|     tmp = U[nu] * Impl::ShiftStaple(adj(lambda), nu); |  | ||||||
|     out += Impl::ShiftStaple(Impl::CovShiftForward(U[nu], nu, Impl::CovShiftBackward(U[mu], mu, Impl::CovShiftIdentityBackward(tmp, nu))), mu); |  | ||||||
|  |  | ||||||
|     // C4+ |  | ||||||
|     out += Impl::ShiftStaple(Impl::CovShiftForward(U[nu], nu, Impl::CovShiftBackward(U[mu], mu, Impl::CovShiftIdentityBackward(U[nu], nu))), mu) * lambda; |  | ||||||
|  |  | ||||||
|     // insertion in lower staple |  | ||||||
|     // C1- |  | ||||||
|     out -= Impl::ShiftStaple(lambda, mu) * Impl::ShiftStaple(Impl::CovShiftBackward(U[nu], nu, Impl::CovShiftBackward(U[mu], mu, U[nu])), mu); |  | ||||||
|  |  | ||||||
|     // C2- |  | ||||||
|     tmp = adj(lambda) * U[nu]; |  | ||||||
|     out -= Impl::ShiftStaple(Impl::CovShiftBackward(tmp, nu, Impl::CovShiftBackward(U[mu], mu, U[nu])), mu); |  | ||||||
|  |  | ||||||
|     // C3- |  | ||||||
|     tmp = lambda * U[nu]; |  | ||||||
|     out -= Impl::ShiftStaple(Impl::CovShiftBackward(U[nu], nu, Impl::CovShiftBackward(U[mu], mu, tmp)), mu); |  | ||||||
|  |  | ||||||
|     // C4- |  | ||||||
|     out -= Impl::ShiftStaple(Impl::CovShiftBackward(U[nu], nu, Impl::CovShiftBackward(U[mu], mu, U[nu])), mu) * lambda; |  | ||||||
|  |  | ||||||
|     return out; |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   static CloverField fillCloverYZ(const GaugeLinkField &F) |  | ||||||
|   { |  | ||||||
|     CloverField T(F.Grid()); |  | ||||||
|     T = Zero(); |  | ||||||
|     autoView(T_v,T,AcceleratorWrite); |  | ||||||
|     autoView(F_v,F,AcceleratorRead); |  | ||||||
|     accelerator_for(i, T.Grid()->oSites(),CloverField::vector_type::Nsimd(), |  | ||||||
|     { |  | ||||||
|       coalescedWrite(T_v[i]()(0, 1), coalescedRead(timesMinusI(F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(1, 0), coalescedRead(timesMinusI(F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(2, 3), coalescedRead(timesMinusI(F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(3, 2), coalescedRead(timesMinusI(F_v[i]()()))); |  | ||||||
|     }); |  | ||||||
|  |  | ||||||
|     return T; |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   static CloverField fillCloverXZ(const GaugeLinkField &F) |  | ||||||
|   { |  | ||||||
|     CloverField T(F.Grid()); |  | ||||||
|     T = Zero(); |  | ||||||
|      |  | ||||||
|     autoView(T_v, T,AcceleratorWrite); |  | ||||||
|     autoView(F_v, F,AcceleratorRead); |  | ||||||
|     accelerator_for(i, T.Grid()->oSites(),CloverField::vector_type::Nsimd(), |  | ||||||
|     { |  | ||||||
|       coalescedWrite(T_v[i]()(0, 1), coalescedRead(-F_v[i]()())); |  | ||||||
|       coalescedWrite(T_v[i]()(1, 0), coalescedRead(F_v[i]()())); |  | ||||||
|       coalescedWrite(T_v[i]()(2, 3), coalescedRead(-F_v[i]()())); |  | ||||||
|       coalescedWrite(T_v[i]()(3, 2), coalescedRead(F_v[i]()())); |  | ||||||
|     }); |  | ||||||
|  |  | ||||||
|     return T; |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   static CloverField fillCloverXY(const GaugeLinkField &F) |  | ||||||
|   { |  | ||||||
|     CloverField T(F.Grid()); |  | ||||||
|     T = Zero(); |  | ||||||
|  |  | ||||||
|     autoView(T_v,T,AcceleratorWrite); |  | ||||||
|     autoView(F_v,F,AcceleratorRead); |  | ||||||
|     accelerator_for(i, T.Grid()->oSites(),CloverField::vector_type::Nsimd(), |  | ||||||
|     { |  | ||||||
|       coalescedWrite(T_v[i]()(0, 0), coalescedRead(timesMinusI(F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(1, 1), coalescedRead(timesI(F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(2, 2), coalescedRead(timesMinusI(F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(3, 3), coalescedRead(timesI(F_v[i]()()))); |  | ||||||
|     }); |  | ||||||
|  |  | ||||||
|     return T; |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   static CloverField fillCloverXT(const GaugeLinkField &F) |  | ||||||
|   { |  | ||||||
|     CloverField T(F.Grid()); |  | ||||||
|     T = Zero(); |  | ||||||
|  |  | ||||||
|     autoView( T_v , T, AcceleratorWrite); |  | ||||||
|     autoView( F_v , F, AcceleratorRead); |  | ||||||
|     accelerator_for(i, T.Grid()->oSites(),CloverField::vector_type::Nsimd(), |  | ||||||
|     { |  | ||||||
|       coalescedWrite(T_v[i]()(0, 1), coalescedRead(timesI(F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(1, 0), coalescedRead(timesI(F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(2, 3), coalescedRead(timesMinusI(F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(3, 2), coalescedRead(timesMinusI(F_v[i]()()))); |  | ||||||
|     }); |  | ||||||
|  |  | ||||||
|     return T; |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   static CloverField fillCloverYT(const GaugeLinkField &F) |  | ||||||
|   { |  | ||||||
|     CloverField T(F.Grid()); |  | ||||||
|     T = Zero(); |  | ||||||
|      |  | ||||||
|     autoView( T_v ,T,AcceleratorWrite); |  | ||||||
|     autoView( F_v ,F,AcceleratorRead); |  | ||||||
|     accelerator_for(i, T.Grid()->oSites(),CloverField::vector_type::Nsimd(), |  | ||||||
|     { |  | ||||||
|       coalescedWrite(T_v[i]()(0, 1), coalescedRead(-(F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(1, 0), coalescedRead((F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(2, 3), coalescedRead((F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(3, 2), coalescedRead(-(F_v[i]()()))); |  | ||||||
|     }); |  | ||||||
|  |  | ||||||
|     return T; |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   static CloverField fillCloverZT(const GaugeLinkField &F) |  | ||||||
|   { |  | ||||||
|     CloverField T(F.Grid()); |  | ||||||
|  |  | ||||||
|     T = Zero(); |  | ||||||
|  |  | ||||||
|     autoView( T_v , T,AcceleratorWrite); |  | ||||||
|     autoView( F_v , F,AcceleratorRead); |  | ||||||
|     accelerator_for(i, T.Grid()->oSites(),CloverField::vector_type::Nsimd(), |  | ||||||
|     { |  | ||||||
|       coalescedWrite(T_v[i]()(0, 0), coalescedRead(timesI(F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(1, 1), coalescedRead(timesMinusI(F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(2, 2), coalescedRead(timesMinusI(F_v[i]()()))); |  | ||||||
|       coalescedWrite(T_v[i]()(3, 3), coalescedRead(timesI(F_v[i]()()))); |  | ||||||
|     }); |  | ||||||
|  |  | ||||||
|     return T; |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   template<class _Spinor> |  | ||||||
|   static accelerator_inline void multClover(_Spinor& phi, const SiteClover& C, const _Spinor& chi) { |  | ||||||
|     auto CC = coalescedRead(C); |  | ||||||
|     mult(&phi, &CC, &chi); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   template<class _SpinorField> |  | ||||||
|   inline void multCloverField(_SpinorField& out, const CloverField& C, const _SpinorField& phi) { |  | ||||||
|     const int Nsimd = SiteSpinor::Nsimd(); |  | ||||||
|     autoView(out_v, out, AcceleratorWrite); |  | ||||||
|     autoView(phi_v, phi, AcceleratorRead); |  | ||||||
|     autoView(C_v,   C,   AcceleratorRead); |  | ||||||
|     typedef decltype(coalescedRead(out_v[0])) calcSpinor; |  | ||||||
|     accelerator_for(sss,out.Grid()->oSites(),Nsimd,{ |  | ||||||
|       calcSpinor tmp; |  | ||||||
|       multClover(tmp,C_v[sss],phi_v(sss)); |  | ||||||
|       coalescedWrite(out_v[sss],tmp); |  | ||||||
|     }); |  | ||||||
|   } |  | ||||||
| }; |  | ||||||
|  |  | ||||||
|  |  | ||||||
| template<class Impl> class CompactWilsonCloverHelpers { |  | ||||||
| public: |  | ||||||
|  |  | ||||||
|   INHERIT_COMPACT_CLOVER_SIZES(Impl); |  | ||||||
|  |  | ||||||
|   INHERIT_IMPL_TYPES(Impl); |  | ||||||
|   INHERIT_CLOVER_TYPES(Impl); |  | ||||||
|   INHERIT_COMPACT_CLOVER_TYPES(Impl); |  | ||||||
|  |  | ||||||
|   #if 0 |  | ||||||
|   static accelerator_inline typename SiteCloverTriangle::vector_type triangle_elem(const SiteCloverTriangle& triangle, int block, int i, int j) { |  | ||||||
|     assert(i != j); |  | ||||||
|     if(i < j) { |  | ||||||
|       return triangle()(block)(triangle_index(i, j)); |  | ||||||
|     } else { // i > j |  | ||||||
|       return conjugate(triangle()(block)(triangle_index(i, j))); |  | ||||||
|     } |  | ||||||
|   } |  | ||||||
|   #else |  | ||||||
|   template<typename vobj> |  | ||||||
|   static accelerator_inline vobj triangle_elem(const iImplCloverTriangle<vobj>& triangle, int block, int i, int j) { |  | ||||||
|     assert(i != j); |  | ||||||
|     if(i < j) { |  | ||||||
|       return triangle()(block)(triangle_index(i, j)); |  | ||||||
|     } else { // i > j |  | ||||||
|       return conjugate(triangle()(block)(triangle_index(i, j))); |  | ||||||
|     } |  | ||||||
|   } |  | ||||||
|   #endif |  | ||||||
|  |  | ||||||
|   static accelerator_inline int triangle_index(int i, int j) { |  | ||||||
|     if(i == j) |  | ||||||
|       return 0; |  | ||||||
|     else if(i < j) |  | ||||||
|       return Nred * (Nred - 1) / 2 - (Nred - i) * (Nred - i - 1) / 2 + j - i - 1; |  | ||||||
|     else // i > j |  | ||||||
|       return Nred * (Nred - 1) / 2 - (Nred - j) * (Nred - j - 1) / 2 + i - j - 1; |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   static void MooeeKernel_gpu(int                        Nsite, |  | ||||||
|                               int                        Ls, |  | ||||||
|                               const FermionField&        in, |  | ||||||
|                               FermionField&              out, |  | ||||||
|                               const CloverDiagonalField& diagonal, |  | ||||||
|                               const CloverTriangleField& triangle) { |  | ||||||
|     autoView(diagonal_v, diagonal, AcceleratorRead); |  | ||||||
|     autoView(triangle_v, triangle, AcceleratorRead); |  | ||||||
|     autoView(in_v,       in,       AcceleratorRead); |  | ||||||
|     autoView(out_v,      out,      AcceleratorWrite); |  | ||||||
|  |  | ||||||
|     typedef decltype(coalescedRead(out_v[0])) CalcSpinor; |  | ||||||
|  |  | ||||||
|     const uint64_t NN = Nsite * Ls; |  | ||||||
|  |  | ||||||
|     accelerator_for(ss, NN, Simd::Nsimd(), { |  | ||||||
|       int sF = ss; |  | ||||||
|       int sU = ss/Ls; |  | ||||||
|       CalcSpinor res; |  | ||||||
|       CalcSpinor in_t = in_v(sF); |  | ||||||
|       auto diagonal_t = diagonal_v(sU); |  | ||||||
|       auto triangle_t = triangle_v(sU); |  | ||||||
|       for(int block=0; block<Nhs; block++) { |  | ||||||
|         int s_start = block*Nhs; |  | ||||||
|         for(int i=0; i<Nred; i++) { |  | ||||||
|           int si = s_start + i/Nc, ci = i%Nc; |  | ||||||
|           res()(si)(ci) = diagonal_t()(block)(i) * in_t()(si)(ci); |  | ||||||
|           for(int j=0; j<Nred; j++) { |  | ||||||
|             if (j == i) continue; |  | ||||||
|             int sj = s_start + j/Nc, cj = j%Nc; |  | ||||||
|             res()(si)(ci) = res()(si)(ci) + triangle_elem(triangle_t, block, i, j) * in_t()(sj)(cj); |  | ||||||
|           }; |  | ||||||
|         }; |  | ||||||
|       }; |  | ||||||
|       coalescedWrite(out_v[sF], res); |  | ||||||
|     }); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   static void MooeeKernel_cpu(int                        Nsite, |  | ||||||
|                               int                        Ls, |  | ||||||
|                               const FermionField&        in, |  | ||||||
|                               FermionField&              out, |  | ||||||
|                               const CloverDiagonalField& diagonal, |  | ||||||
|                               const CloverTriangleField& triangle) { |  | ||||||
|     autoView(diagonal_v, diagonal, CpuRead); |  | ||||||
|     autoView(triangle_v, triangle, CpuRead); |  | ||||||
|     autoView(in_v,       in,       CpuRead); |  | ||||||
|     autoView(out_v,      out,      CpuWrite); |  | ||||||
|  |  | ||||||
|     typedef SiteSpinor CalcSpinor; |  | ||||||
|  |  | ||||||
| #if defined(A64FX) || defined(A64FXFIXEDSIZE) |  | ||||||
| #define PREFETCH_CLOVER(BASE) {                                     \ |  | ||||||
|     uint64_t base;                                                  \ |  | ||||||
|     int pf_dist_L1 = 1;                                             \ |  | ||||||
|     int pf_dist_L2 = -5; /* -> penalty -> disable */                \ |  | ||||||
|                                                                     \ |  | ||||||
|     if ((pf_dist_L1 >= 0) && (sU + pf_dist_L1 < Nsite)) {           \ |  | ||||||
|       base = (uint64_t)&diag_t()(pf_dist_L1+BASE)(0);               \ |  | ||||||
|       svprfd(svptrue_b64(), (int64_t*)(base +    0), SV_PLDL1STRM); \ |  | ||||||
|       svprfd(svptrue_b64(), (int64_t*)(base +  256), SV_PLDL1STRM); \ |  | ||||||
|       svprfd(svptrue_b64(), (int64_t*)(base +  512), SV_PLDL1STRM); \ |  | ||||||
|       svprfd(svptrue_b64(), (int64_t*)(base +  768), SV_PLDL1STRM); \ |  | ||||||
|       svprfd(svptrue_b64(), (int64_t*)(base + 1024), SV_PLDL1STRM); \ |  | ||||||
|       svprfd(svptrue_b64(), (int64_t*)(base + 1280), SV_PLDL1STRM); \ |  | ||||||
|     }                                                               \ |  | ||||||
|                                                                     \ |  | ||||||
|     if ((pf_dist_L2 >= 0) && (sU + pf_dist_L2 < Nsite)) {           \ |  | ||||||
|       base = (uint64_t)&diag_t()(pf_dist_L2+BASE)(0);               \ |  | ||||||
|       svprfd(svptrue_b64(), (int64_t*)(base +    0), SV_PLDL2STRM); \ |  | ||||||
|       svprfd(svptrue_b64(), (int64_t*)(base +  256), SV_PLDL2STRM); \ |  | ||||||
|       svprfd(svptrue_b64(), (int64_t*)(base +  512), SV_PLDL2STRM); \ |  | ||||||
|       svprfd(svptrue_b64(), (int64_t*)(base +  768), SV_PLDL2STRM); \ |  | ||||||
|       svprfd(svptrue_b64(), (int64_t*)(base + 1024), SV_PLDL2STRM); \ |  | ||||||
|       svprfd(svptrue_b64(), (int64_t*)(base + 1280), SV_PLDL2STRM); \ |  | ||||||
|     }                                                               \ |  | ||||||
|   } |  | ||||||
| // TODO: Implement/generalize this for other architectures |  | ||||||
| // I played around a bit on KNL (see below) but didn't bring anything |  | ||||||
| // #elif defined(AVX512) |  | ||||||
| // #define PREFETCH_CLOVER(BASE) {                              \ |  | ||||||
| //     uint64_t base;                                           \ |  | ||||||
| //     int pf_dist_L1 = 1;                                      \ |  | ||||||
| //     int pf_dist_L2 = +4;                                     \ |  | ||||||
| //                                                              \ |  | ||||||
| //     if ((pf_dist_L1 >= 0) && (sU + pf_dist_L1 < Nsite)) {    \ |  | ||||||
| //       base = (uint64_t)&diag_t()(pf_dist_L1+BASE)(0);        \ |  | ||||||
| //       _mm_prefetch((const char*)(base +    0), _MM_HINT_T0); \ |  | ||||||
| //       _mm_prefetch((const char*)(base +   64), _MM_HINT_T0); \ |  | ||||||
| //       _mm_prefetch((const char*)(base +  128), _MM_HINT_T0); \ |  | ||||||
| //       _mm_prefetch((const char*)(base +  192), _MM_HINT_T0); \ |  | ||||||
| //       _mm_prefetch((const char*)(base +  256), _MM_HINT_T0); \ |  | ||||||
| //       _mm_prefetch((const char*)(base +  320), _MM_HINT_T0); \ |  | ||||||
| //     }                                                        \ |  | ||||||
| //                                                              \ |  | ||||||
| //     if ((pf_dist_L2 >= 0) && (sU + pf_dist_L2 < Nsite)) {    \ |  | ||||||
| //       base = (uint64_t)&diag_t()(pf_dist_L2+BASE)(0);        \ |  | ||||||
| //       _mm_prefetch((const char*)(base +    0), _MM_HINT_T1); \ |  | ||||||
| //       _mm_prefetch((const char*)(base +   64), _MM_HINT_T1); \ |  | ||||||
| //       _mm_prefetch((const char*)(base +  128), _MM_HINT_T1); \ |  | ||||||
| //       _mm_prefetch((const char*)(base +  192), _MM_HINT_T1); \ |  | ||||||
| //       _mm_prefetch((const char*)(base +  256), _MM_HINT_T1); \ |  | ||||||
| //       _mm_prefetch((const char*)(base +  320), _MM_HINT_T1); \ |  | ||||||
| //     }                                                        \ |  | ||||||
| //   } |  | ||||||
| #else |  | ||||||
| #define PREFETCH_CLOVER(BASE) |  | ||||||
| #endif |  | ||||||
|  |  | ||||||
|     const uint64_t NN = Nsite * Ls; |  | ||||||
|  |  | ||||||
|     thread_for(ss, NN, { |  | ||||||
|       int sF = ss; |  | ||||||
|       int sU = ss/Ls; |  | ||||||
|       CalcSpinor res; |  | ||||||
|       CalcSpinor in_t = in_v[sF]; |  | ||||||
|       auto diag_t     = diagonal_v[sU]; // "diag" instead of "diagonal" here to make code below easier to read |  | ||||||
|       auto triangle_t = triangle_v[sU]; |  | ||||||
|  |  | ||||||
|       // upper half |  | ||||||
|       PREFETCH_CLOVER(0); |  | ||||||
|  |  | ||||||
|       auto in_cc_0_0 = conjugate(in_t()(0)(0)); // Nils: reduces number |  | ||||||
|       auto in_cc_0_1 = conjugate(in_t()(0)(1)); // of conjugates from |  | ||||||
|       auto in_cc_0_2 = conjugate(in_t()(0)(2)); // 30 to 20 |  | ||||||
|       auto in_cc_1_0 = conjugate(in_t()(1)(0)); |  | ||||||
|       auto in_cc_1_1 = conjugate(in_t()(1)(1)); |  | ||||||
|  |  | ||||||
|       res()(0)(0) =               diag_t()(0)( 0) * in_t()(0)(0) |  | ||||||
|                   +           triangle_t()(0)( 0) * in_t()(0)(1) |  | ||||||
|                   +           triangle_t()(0)( 1) * in_t()(0)(2) |  | ||||||
|                   +           triangle_t()(0)( 2) * in_t()(1)(0) |  | ||||||
|                   +           triangle_t()(0)( 3) * in_t()(1)(1) |  | ||||||
|                   +           triangle_t()(0)( 4) * in_t()(1)(2); |  | ||||||
|  |  | ||||||
|       res()(0)(1) =           triangle_t()(0)( 0) * in_cc_0_0; |  | ||||||
|       res()(0)(1) =               diag_t()(0)( 1) * in_t()(0)(1) |  | ||||||
|                   +           triangle_t()(0)( 5) * in_t()(0)(2) |  | ||||||
|                   +           triangle_t()(0)( 6) * in_t()(1)(0) |  | ||||||
|                   +           triangle_t()(0)( 7) * in_t()(1)(1) |  | ||||||
|                   +           triangle_t()(0)( 8) * in_t()(1)(2) |  | ||||||
|                   + conjugate(       res()(0)( 1)); |  | ||||||
|  |  | ||||||
|       res()(0)(2) =           triangle_t()(0)( 1) * in_cc_0_0 |  | ||||||
|                   +           triangle_t()(0)( 5) * in_cc_0_1; |  | ||||||
|       res()(0)(2) =               diag_t()(0)( 2) * in_t()(0)(2) |  | ||||||
|                   +           triangle_t()(0)( 9) * in_t()(1)(0) |  | ||||||
|                   +           triangle_t()(0)(10) * in_t()(1)(1) |  | ||||||
|                   +           triangle_t()(0)(11) * in_t()(1)(2) |  | ||||||
|                   + conjugate(       res()(0)( 2)); |  | ||||||
|  |  | ||||||
|       res()(1)(0) =           triangle_t()(0)( 2) * in_cc_0_0 |  | ||||||
|                   +           triangle_t()(0)( 6) * in_cc_0_1 |  | ||||||
|                   +           triangle_t()(0)( 9) * in_cc_0_2; |  | ||||||
|       res()(1)(0) =               diag_t()(0)( 3) * in_t()(1)(0) |  | ||||||
|                   +           triangle_t()(0)(12) * in_t()(1)(1) |  | ||||||
|                   +           triangle_t()(0)(13) * in_t()(1)(2) |  | ||||||
|                   + conjugate(       res()(1)( 0)); |  | ||||||
|  |  | ||||||
|       res()(1)(1) =           triangle_t()(0)( 3) * in_cc_0_0 |  | ||||||
|                   +           triangle_t()(0)( 7) * in_cc_0_1 |  | ||||||
|                   +           triangle_t()(0)(10) * in_cc_0_2 |  | ||||||
|                   +           triangle_t()(0)(12) * in_cc_1_0; |  | ||||||
|       res()(1)(1) =               diag_t()(0)( 4) * in_t()(1)(1) |  | ||||||
|                   +           triangle_t()(0)(14) * in_t()(1)(2) |  | ||||||
|                   + conjugate(       res()(1)( 1)); |  | ||||||
|  |  | ||||||
|       res()(1)(2) =           triangle_t()(0)( 4) * in_cc_0_0 |  | ||||||
|                   +           triangle_t()(0)( 8) * in_cc_0_1 |  | ||||||
|                   +           triangle_t()(0)(11) * in_cc_0_2 |  | ||||||
|                   +           triangle_t()(0)(13) * in_cc_1_0 |  | ||||||
|                   +           triangle_t()(0)(14) * in_cc_1_1; |  | ||||||
|       res()(1)(2) =               diag_t()(0)( 5) * in_t()(1)(2) |  | ||||||
|                   + conjugate(       res()(1)( 2)); |  | ||||||
|  |  | ||||||
|       vstream(out_v[sF]()(0)(0), res()(0)(0)); |  | ||||||
|       vstream(out_v[sF]()(0)(1), res()(0)(1)); |  | ||||||
|       vstream(out_v[sF]()(0)(2), res()(0)(2)); |  | ||||||
|       vstream(out_v[sF]()(1)(0), res()(1)(0)); |  | ||||||
|       vstream(out_v[sF]()(1)(1), res()(1)(1)); |  | ||||||
|       vstream(out_v[sF]()(1)(2), res()(1)(2)); |  | ||||||
|  |  | ||||||
|       // lower half |  | ||||||
|       PREFETCH_CLOVER(1); |  | ||||||
|  |  | ||||||
|       auto in_cc_2_0 = conjugate(in_t()(2)(0)); |  | ||||||
|       auto in_cc_2_1 = conjugate(in_t()(2)(1)); |  | ||||||
|       auto in_cc_2_2 = conjugate(in_t()(2)(2)); |  | ||||||
|       auto in_cc_3_0 = conjugate(in_t()(3)(0)); |  | ||||||
|       auto in_cc_3_1 = conjugate(in_t()(3)(1)); |  | ||||||
|  |  | ||||||
|       res()(2)(0) =               diag_t()(1)( 0) * in_t()(2)(0) |  | ||||||
|                   +           triangle_t()(1)( 0) * in_t()(2)(1) |  | ||||||
|                   +           triangle_t()(1)( 1) * in_t()(2)(2) |  | ||||||
|                   +           triangle_t()(1)( 2) * in_t()(3)(0) |  | ||||||
|                   +           triangle_t()(1)( 3) * in_t()(3)(1) |  | ||||||
|                   +           triangle_t()(1)( 4) * in_t()(3)(2); |  | ||||||
|  |  | ||||||
|       res()(2)(1) =           triangle_t()(1)( 0) * in_cc_2_0; |  | ||||||
|       res()(2)(1) =               diag_t()(1)( 1) * in_t()(2)(1) |  | ||||||
|                   +           triangle_t()(1)( 5) * in_t()(2)(2) |  | ||||||
|                   +           triangle_t()(1)( 6) * in_t()(3)(0) |  | ||||||
|                   +           triangle_t()(1)( 7) * in_t()(3)(1) |  | ||||||
|                   +           triangle_t()(1)( 8) * in_t()(3)(2) |  | ||||||
|                   + conjugate(       res()(2)( 1)); |  | ||||||
|  |  | ||||||
|       res()(2)(2) =           triangle_t()(1)( 1) * in_cc_2_0 |  | ||||||
|                   +           triangle_t()(1)( 5) * in_cc_2_1; |  | ||||||
|       res()(2)(2) =               diag_t()(1)( 2) * in_t()(2)(2) |  | ||||||
|                   +           triangle_t()(1)( 9) * in_t()(3)(0) |  | ||||||
|                   +           triangle_t()(1)(10) * in_t()(3)(1) |  | ||||||
|                   +           triangle_t()(1)(11) * in_t()(3)(2) |  | ||||||
|                   + conjugate(       res()(2)( 2)); |  | ||||||
|  |  | ||||||
|       res()(3)(0) =           triangle_t()(1)( 2) * in_cc_2_0 |  | ||||||
|                   +           triangle_t()(1)( 6) * in_cc_2_1 |  | ||||||
|                   +           triangle_t()(1)( 9) * in_cc_2_2; |  | ||||||
|       res()(3)(0) =               diag_t()(1)( 3) * in_t()(3)(0) |  | ||||||
|                   +           triangle_t()(1)(12) * in_t()(3)(1) |  | ||||||
|                   +           triangle_t()(1)(13) * in_t()(3)(2) |  | ||||||
|                   + conjugate(       res()(3)( 0)); |  | ||||||
|  |  | ||||||
|       res()(3)(1) =           triangle_t()(1)( 3) * in_cc_2_0 |  | ||||||
|                   +           triangle_t()(1)( 7) * in_cc_2_1 |  | ||||||
|                   +           triangle_t()(1)(10) * in_cc_2_2 |  | ||||||
|                   +           triangle_t()(1)(12) * in_cc_3_0; |  | ||||||
|       res()(3)(1) =               diag_t()(1)( 4) * in_t()(3)(1) |  | ||||||
|                   +           triangle_t()(1)(14) * in_t()(3)(2) |  | ||||||
|                   + conjugate(       res()(3)( 1)); |  | ||||||
|  |  | ||||||
|       res()(3)(2) =           triangle_t()(1)( 4) * in_cc_2_0 |  | ||||||
|                   +           triangle_t()(1)( 8) * in_cc_2_1 |  | ||||||
|                   +           triangle_t()(1)(11) * in_cc_2_2 |  | ||||||
|                   +           triangle_t()(1)(13) * in_cc_3_0 |  | ||||||
|                   +           triangle_t()(1)(14) * in_cc_3_1; |  | ||||||
|       res()(3)(2) =               diag_t()(1)( 5) * in_t()(3)(2) |  | ||||||
|                   + conjugate(       res()(3)( 2)); |  | ||||||
|  |  | ||||||
|       vstream(out_v[sF]()(2)(0), res()(2)(0)); |  | ||||||
|       vstream(out_v[sF]()(2)(1), res()(2)(1)); |  | ||||||
|       vstream(out_v[sF]()(2)(2), res()(2)(2)); |  | ||||||
|       vstream(out_v[sF]()(3)(0), res()(3)(0)); |  | ||||||
|       vstream(out_v[sF]()(3)(1), res()(3)(1)); |  | ||||||
|       vstream(out_v[sF]()(3)(2), res()(3)(2)); |  | ||||||
|     }); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   static void MooeeKernel(int                        Nsite, |  | ||||||
|                           int                        Ls, |  | ||||||
|                           const FermionField&        in, |  | ||||||
|                           FermionField&              out, |  | ||||||
|                           const CloverDiagonalField& diagonal, |  | ||||||
|                           const CloverTriangleField& triangle) { |  | ||||||
| #if defined(GRID_CUDA) || defined(GRID_HIP) |  | ||||||
|     MooeeKernel_gpu(Nsite, Ls, in, out, diagonal, triangle); |  | ||||||
| #else |  | ||||||
|     MooeeKernel_cpu(Nsite, Ls, in, out, diagonal, triangle); |  | ||||||
| #endif |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   static void Invert(const CloverDiagonalField& diagonal, |  | ||||||
|                      const CloverTriangleField& triangle, |  | ||||||
|                      CloverDiagonalField&       diagonalInv, |  | ||||||
|                      CloverTriangleField&       triangleInv) { |  | ||||||
|     conformable(diagonal, diagonalInv); |  | ||||||
|     conformable(triangle, triangleInv); |  | ||||||
|     conformable(diagonal, triangle); |  | ||||||
|  |  | ||||||
|     diagonalInv.Checkerboard() = diagonal.Checkerboard(); |  | ||||||
|     triangleInv.Checkerboard() = triangle.Checkerboard(); |  | ||||||
|  |  | ||||||
|     GridBase* grid = diagonal.Grid(); |  | ||||||
|  |  | ||||||
|     long lsites = grid->lSites(); |  | ||||||
|  |  | ||||||
|     typedef typename SiteCloverDiagonal::scalar_object scalar_object_diagonal; |  | ||||||
|     typedef typename SiteCloverTriangle::scalar_object scalar_object_triangle; |  | ||||||
|  |  | ||||||
|     autoView(diagonal_v,  diagonal,  CpuRead); |  | ||||||
|     autoView(triangle_v,  triangle,  CpuRead); |  | ||||||
|     autoView(diagonalInv_v, diagonalInv, CpuWrite); |  | ||||||
|     autoView(triangleInv_v, triangleInv, CpuWrite); |  | ||||||
|  |  | ||||||
|     thread_for(site, lsites, { // NOTE: Not on GPU because of Eigen & (peek/poke)LocalSite |  | ||||||
|       Eigen::MatrixXcd clover_inv_eigen = Eigen::MatrixXcd::Zero(Ns*Nc, Ns*Nc); |  | ||||||
|       Eigen::MatrixXcd clover_eigen = Eigen::MatrixXcd::Zero(Ns*Nc, Ns*Nc); |  | ||||||
|  |  | ||||||
|       scalar_object_diagonal diagonal_tmp     = Zero(); |  | ||||||
|       scalar_object_diagonal diagonal_inv_tmp = Zero(); |  | ||||||
|       scalar_object_triangle triangle_tmp     = Zero(); |  | ||||||
|       scalar_object_triangle triangle_inv_tmp = Zero(); |  | ||||||
|  |  | ||||||
|       Coordinate lcoor; |  | ||||||
|       grid->LocalIndexToLocalCoor(site, lcoor); |  | ||||||
|  |  | ||||||
|       peekLocalSite(diagonal_tmp, diagonal_v, lcoor); |  | ||||||
|       peekLocalSite(triangle_tmp, triangle_v, lcoor); |  | ||||||
|  |  | ||||||
|       // TODO: can we save time here by inverting the two 6x6 hermitian matrices separately? |  | ||||||
|       for (long s_row=0;s_row<Ns;s_row++) { |  | ||||||
|         for (long s_col=0;s_col<Ns;s_col++) { |  | ||||||
|           if(abs(s_row - s_col) > 1 || s_row + s_col == 3) continue; |  | ||||||
|           int block       = s_row / Nhs; |  | ||||||
|           int s_row_block = s_row % Nhs; |  | ||||||
|           int s_col_block = s_col % Nhs; |  | ||||||
|           for (long c_row=0;c_row<Nc;c_row++) { |  | ||||||
|             for (long c_col=0;c_col<Nc;c_col++) { |  | ||||||
|               int i = s_row_block * Nc + c_row; |  | ||||||
|               int j = s_col_block * Nc + c_col; |  | ||||||
|               if(i == j) |  | ||||||
|                 clover_eigen(s_row*Nc+c_row, s_col*Nc+c_col) = static_cast<ComplexD>(TensorRemove(diagonal_tmp()(block)(i))); |  | ||||||
|               else |  | ||||||
|                 clover_eigen(s_row*Nc+c_row, s_col*Nc+c_col) = static_cast<ComplexD>(TensorRemove(triangle_elem(triangle_tmp, block, i, j))); |  | ||||||
|             } |  | ||||||
|           } |  | ||||||
|         } |  | ||||||
|       } |  | ||||||
|  |  | ||||||
|       clover_inv_eigen = clover_eigen.inverse(); |  | ||||||
|  |  | ||||||
|       for (long s_row=0;s_row<Ns;s_row++) { |  | ||||||
|         for (long s_col=0;s_col<Ns;s_col++) { |  | ||||||
|           if(abs(s_row - s_col) > 1 || s_row + s_col == 3) continue; |  | ||||||
|           int block       = s_row / Nhs; |  | ||||||
|           int s_row_block = s_row % Nhs; |  | ||||||
|           int s_col_block = s_col % Nhs; |  | ||||||
|           for (long c_row=0;c_row<Nc;c_row++) { |  | ||||||
|             for (long c_col=0;c_col<Nc;c_col++) { |  | ||||||
|               int i = s_row_block * Nc + c_row; |  | ||||||
|               int j = s_col_block * Nc + c_col; |  | ||||||
|               if(i == j) |  | ||||||
|                 diagonal_inv_tmp()(block)(i) = clover_inv_eigen(s_row*Nc+c_row, s_col*Nc+c_col); |  | ||||||
|               else if(i < j) |  | ||||||
|                 triangle_inv_tmp()(block)(triangle_index(i, j)) = clover_inv_eigen(s_row*Nc+c_row, s_col*Nc+c_col); |  | ||||||
|               else |  | ||||||
|                 continue; |  | ||||||
|             } |  | ||||||
|           } |  | ||||||
|         } |  | ||||||
|       } |  | ||||||
|  |  | ||||||
|       pokeLocalSite(diagonal_inv_tmp, diagonalInv_v, lcoor); |  | ||||||
|       pokeLocalSite(triangle_inv_tmp, triangleInv_v, lcoor); |  | ||||||
|     }); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   static void ConvertLayout(const CloverField&   full, |  | ||||||
|                             CloverDiagonalField& diagonal, |  | ||||||
|                             CloverTriangleField& triangle) { |  | ||||||
|     conformable(full, diagonal); |  | ||||||
|     conformable(full, triangle); |  | ||||||
|  |  | ||||||
|     diagonal.Checkerboard() = full.Checkerboard(); |  | ||||||
|     triangle.Checkerboard() = full.Checkerboard(); |  | ||||||
|  |  | ||||||
|     autoView(full_v,     full,     AcceleratorRead); |  | ||||||
|     autoView(diagonal_v, diagonal, AcceleratorWrite); |  | ||||||
|     autoView(triangle_v, triangle, AcceleratorWrite); |  | ||||||
|  |  | ||||||
|     // NOTE: this function cannot be 'private' since nvcc forbids this for kernels |  | ||||||
|     accelerator_for(ss, full.Grid()->oSites(), 1, { |  | ||||||
|       for(int s_row = 0; s_row < Ns; s_row++) { |  | ||||||
|         for(int s_col = 0; s_col < Ns; s_col++) { |  | ||||||
|           if(abs(s_row - s_col) > 1 || s_row + s_col == 3) continue; |  | ||||||
|           int block       = s_row / Nhs; |  | ||||||
|           int s_row_block = s_row % Nhs; |  | ||||||
|           int s_col_block = s_col % Nhs; |  | ||||||
|           for(int c_row = 0; c_row < Nc; c_row++) { |  | ||||||
|             for(int c_col = 0; c_col < Nc; c_col++) { |  | ||||||
|               int i = s_row_block * Nc + c_row; |  | ||||||
|               int j = s_col_block * Nc + c_col; |  | ||||||
|               if(i == j) |  | ||||||
|                 diagonal_v[ss]()(block)(i) = full_v[ss]()(s_row, s_col)(c_row, c_col); |  | ||||||
|               else if(i < j) |  | ||||||
|                 triangle_v[ss]()(block)(triangle_index(i, j)) = full_v[ss]()(s_row, s_col)(c_row, c_col); |  | ||||||
|               else |  | ||||||
|                 continue; |  | ||||||
|             } |  | ||||||
|           } |  | ||||||
|         } |  | ||||||
|       } |  | ||||||
|     }); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|  |  | ||||||
|   static void ConvertLayout(const CloverDiagonalField& diagonal, |  | ||||||
|                             const CloverTriangleField& triangle, |  | ||||||
|                             CloverField&               full) { |  | ||||||
|     conformable(full, diagonal); |  | ||||||
|     conformable(full, triangle); |  | ||||||
|  |  | ||||||
|     full.Checkerboard() = diagonal.Checkerboard(); |  | ||||||
|  |  | ||||||
|     full = Zero(); |  | ||||||
|  |  | ||||||
|     autoView(diagonal_v, diagonal, AcceleratorRead); |  | ||||||
|     autoView(triangle_v, triangle, AcceleratorRead); |  | ||||||
|     autoView(full_v,     full,     AcceleratorWrite); |  | ||||||
|  |  | ||||||
|     // NOTE: this function cannot be 'private' since nvcc forbids this for kernels |  | ||||||
|     accelerator_for(ss, full.Grid()->oSites(), 1, { |  | ||||||
|       for(int s_row = 0; s_row < Ns; s_row++) { |  | ||||||
|         for(int s_col = 0; s_col < Ns; s_col++) { |  | ||||||
|           if(abs(s_row - s_col) > 1 || s_row + s_col == 3) continue; |  | ||||||
|           int block       = s_row / Nhs; |  | ||||||
|           int s_row_block = s_row % Nhs; |  | ||||||
|           int s_col_block = s_col % Nhs; |  | ||||||
|           for(int c_row = 0; c_row < Nc; c_row++) { |  | ||||||
|             for(int c_col = 0; c_col < Nc; c_col++) { |  | ||||||
|               int i = s_row_block * Nc + c_row; |  | ||||||
|               int j = s_col_block * Nc + c_col; |  | ||||||
|               if(i == j) |  | ||||||
|                 full_v[ss]()(s_row, s_col)(c_row, c_col) = diagonal_v[ss]()(block)(i); |  | ||||||
|               else |  | ||||||
|                 full_v[ss]()(s_row, s_col)(c_row, c_col) = triangle_elem(triangle_v[ss], block, i, j); |  | ||||||
|             } |  | ||||||
|           } |  | ||||||
|         } |  | ||||||
|       } |  | ||||||
|     }); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   static void ModifyBoundaries(CloverDiagonalField& diagonal, CloverTriangleField& triangle, RealD csw_t, RealD cF, RealD diag_mass) { |  | ||||||
|     // Checks/grid |  | ||||||
|     double t0 = usecond(); |  | ||||||
|     conformable(diagonal, triangle); |  | ||||||
|     GridBase* grid = diagonal.Grid(); |  | ||||||
|  |  | ||||||
|     // Determine the boundary coordinates/sites |  | ||||||
|     double t1 = usecond(); |  | ||||||
|     int t_dir = Nd - 1; |  | ||||||
|     Lattice<iScalar<vInteger>> t_coor(grid); |  | ||||||
|     LatticeCoordinate(t_coor, t_dir); |  | ||||||
|     int T = grid->GlobalDimensions()[t_dir]; |  | ||||||
|  |  | ||||||
|     // Set off-diagonal parts at boundary to zero -- OK |  | ||||||
|     double t2 = usecond(); |  | ||||||
|     CloverTriangleField zeroTriangle(grid); |  | ||||||
|     zeroTriangle.Checkerboard() = triangle.Checkerboard(); |  | ||||||
|     zeroTriangle = Zero(); |  | ||||||
|     triangle = where(t_coor == 0,   zeroTriangle, triangle); |  | ||||||
|     triangle = where(t_coor == T-1, zeroTriangle, triangle); |  | ||||||
|  |  | ||||||
|     // Set diagonal to unity (scaled correctly) -- OK |  | ||||||
|     double t3 = usecond(); |  | ||||||
|     CloverDiagonalField tmp(grid); |  | ||||||
|     tmp.Checkerboard() = diagonal.Checkerboard(); |  | ||||||
|     tmp                = -1.0 * csw_t + diag_mass; |  | ||||||
|     diagonal           = where(t_coor == 0,   tmp, diagonal); |  | ||||||
|     diagonal           = where(t_coor == T-1, tmp, diagonal); |  | ||||||
|  |  | ||||||
|     // Correct values next to boundary |  | ||||||
|     double t4 = usecond(); |  | ||||||
|     if(cF != 1.0) { |  | ||||||
|       tmp = cF - 1.0; |  | ||||||
|       tmp += diagonal; |  | ||||||
|       diagonal = where(t_coor == 1,   tmp, diagonal); |  | ||||||
|       diagonal = where(t_coor == T-2, tmp, diagonal); |  | ||||||
|     } |  | ||||||
|  |  | ||||||
|     // Report timings |  | ||||||
|     double t5 = usecond(); |  | ||||||
| #if 0 |  | ||||||
|     std::cout << GridLogMessage << "CompactWilsonCloverHelpers::ModifyBoundaries timings:" |  | ||||||
|               << " checks = "          << (t1 - t0) / 1e6 |  | ||||||
|               << ", coordinate = "     << (t2 - t1) / 1e6 |  | ||||||
|               << ", off-diag zero = "  << (t3 - t2) / 1e6 |  | ||||||
|               << ", diagonal unity = " << (t4 - t3) / 1e6 |  | ||||||
|               << ", near-boundary = "  << (t5 - t4) / 1e6 |  | ||||||
|               << ", total = "          << (t5 - t0) / 1e6 |  | ||||||
|               << std::endl; |  | ||||||
| #endif |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   template<class Field, class Mask> |  | ||||||
|   static strong_inline void ApplyBoundaryMask(Field& f, const Mask& m) { |  | ||||||
|     conformable(f, m); |  | ||||||
|     auto grid  = f.Grid(); |  | ||||||
|     const uint32_t Nsite = grid->oSites(); |  | ||||||
|     const uint32_t Nsimd = grid->Nsimd(); |  | ||||||
|     autoView(f_v, f, AcceleratorWrite); |  | ||||||
|     autoView(m_v, m, AcceleratorRead); |  | ||||||
|     // NOTE: this function cannot be 'private' since nvcc forbids this for kernels |  | ||||||
|     accelerator_for(ss, Nsite, Nsimd, { |  | ||||||
|       coalescedWrite(f_v[ss], m_v(ss) * f_v(ss)); |  | ||||||
|     }); |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   template<class MaskField> |  | ||||||
|   static void SetupMasks(MaskField& full, MaskField& even, MaskField& odd) { |  | ||||||
|     assert(even.Grid()->_isCheckerBoarded && even.Checkerboard() == Even); |  | ||||||
|     assert(odd.Grid()->_isCheckerBoarded  && odd.Checkerboard()  == Odd); |  | ||||||
|     assert(!full.Grid()->_isCheckerBoarded); |  | ||||||
|  |  | ||||||
|     GridBase* grid = full.Grid(); |  | ||||||
|     int t_dir = Nd-1; |  | ||||||
|     Lattice<iScalar<vInteger>> t_coor(grid); |  | ||||||
|     LatticeCoordinate(t_coor, t_dir); |  | ||||||
|     int T = grid->GlobalDimensions()[t_dir]; |  | ||||||
|  |  | ||||||
|     MaskField zeroMask(grid); zeroMask = Zero(); |  | ||||||
|     full = 1.0; |  | ||||||
|     full = where(t_coor == 0,   zeroMask, full); |  | ||||||
|     full = where(t_coor == T-1, zeroMask, full); |  | ||||||
|  |  | ||||||
|     pickCheckerboard(Even, even, full); |  | ||||||
|     pickCheckerboard(Odd,  odd,  full); |  | ||||||
|   } |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); |  | ||||||
| @@ -1,92 +0,0 @@ | |||||||
| /************************************************************************************* |  | ||||||
|  |  | ||||||
|     Grid physics library, www.github.com/paboyle/Grid |  | ||||||
|  |  | ||||||
|     Source file: ./lib/qcd/action/fermion/WilsonCloverTypes.h |  | ||||||
|  |  | ||||||
|     Copyright (C) 2021 - 2022 |  | ||||||
|  |  | ||||||
|     Author: Daniel Richtmann <daniel.richtmann@gmail.com> |  | ||||||
|  |  | ||||||
|     This program is free software; you can redistribute it and/or modify |  | ||||||
|     it under the terms of the GNU General Public License as published by |  | ||||||
|     the Free Software Foundation; either version 2 of the License, or |  | ||||||
|     (at your option) any later version. |  | ||||||
|  |  | ||||||
|     This program is distributed in the hope that it will be useful, |  | ||||||
|     but WITHOUT ANY WARRANTY; without even the implied warranty of |  | ||||||
|     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the |  | ||||||
|     GNU General Public License for more details. |  | ||||||
|  |  | ||||||
|     You should have received a copy of the GNU General Public License along |  | ||||||
|     with this program; if not, write to the Free Software Foundation, Inc., |  | ||||||
|     51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. |  | ||||||
|  |  | ||||||
|     See the full license in the file "LICENSE" in the top level distribution directory |  | ||||||
| *************************************************************************************/ |  | ||||||
| /*  END LEGAL */ |  | ||||||
|  |  | ||||||
| #pragma once |  | ||||||
|  |  | ||||||
| NAMESPACE_BEGIN(Grid); |  | ||||||
|  |  | ||||||
| template<class Impl> |  | ||||||
| class WilsonCloverTypes { |  | ||||||
| public: |  | ||||||
|   INHERIT_IMPL_TYPES(Impl); |  | ||||||
|  |  | ||||||
|   template <typename vtype> using iImplClover = iScalar<iMatrix<iMatrix<vtype, Impl::Dimension>, Ns>>; |  | ||||||
|  |  | ||||||
|   typedef iImplClover<Simd> SiteClover; |  | ||||||
|  |  | ||||||
|   typedef Lattice<SiteClover> CloverField; |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| template<class Impl> |  | ||||||
| class CompactWilsonCloverTypes { |  | ||||||
| public: |  | ||||||
|   INHERIT_IMPL_TYPES(Impl); |  | ||||||
|  |  | ||||||
|   static_assert(Nd == 4 && Nc == 3 && Ns == 4 && Impl::Dimension == 3, "Wrong dimensions"); |  | ||||||
|  |  | ||||||
|   static constexpr int Nred      = Nc * Nhs;        // 6 |  | ||||||
|   static constexpr int Nblock    = Nhs;             // 2 |  | ||||||
|   static constexpr int Ndiagonal = Nred;            // 6 |  | ||||||
|   static constexpr int Ntriangle = (Nred - 1) * Nc; // 15 |  | ||||||
|  |  | ||||||
|   template<typename vtype> using iImplCloverDiagonal = iScalar<iVector<iVector<vtype, Ndiagonal>, Nblock>>; |  | ||||||
|   template<typename vtype> using iImplCloverTriangle = iScalar<iVector<iVector<vtype, Ntriangle>, Nblock>>; |  | ||||||
|  |  | ||||||
|   typedef iImplCloverDiagonal<Simd> SiteCloverDiagonal; |  | ||||||
|   typedef iImplCloverTriangle<Simd> SiteCloverTriangle; |  | ||||||
|   typedef iSinglet<Simd>            SiteMask; |  | ||||||
|  |  | ||||||
|   typedef Lattice<SiteCloverDiagonal> CloverDiagonalField; |  | ||||||
|   typedef Lattice<SiteCloverTriangle> CloverTriangleField; |  | ||||||
|   typedef Lattice<SiteMask>           MaskField; |  | ||||||
| }; |  | ||||||
|  |  | ||||||
| #define INHERIT_CLOVER_TYPES(Impl)                                 \ |  | ||||||
|   typedef typename WilsonCloverTypes<Impl>::SiteClover SiteClover; \ |  | ||||||
|   typedef typename WilsonCloverTypes<Impl>::CloverField CloverField; |  | ||||||
|  |  | ||||||
| #define INHERIT_COMPACT_CLOVER_TYPES(Impl) \ |  | ||||||
|   typedef typename CompactWilsonCloverTypes<Impl>::SiteCloverDiagonal  SiteCloverDiagonal; \ |  | ||||||
|   typedef typename CompactWilsonCloverTypes<Impl>::SiteCloverTriangle  SiteCloverTriangle; \ |  | ||||||
|   typedef typename CompactWilsonCloverTypes<Impl>::SiteMask            SiteMask; \ |  | ||||||
|   typedef typename CompactWilsonCloverTypes<Impl>::CloverDiagonalField CloverDiagonalField; \ |  | ||||||
|   typedef typename CompactWilsonCloverTypes<Impl>::CloverTriangleField CloverTriangleField; \ |  | ||||||
|   typedef typename CompactWilsonCloverTypes<Impl>::MaskField           MaskField; \ |  | ||||||
|   /* ugly duplication but needed inside functionality classes */ \ |  | ||||||
|   template<typename vtype> using iImplCloverDiagonal = \ |  | ||||||
|     iScalar<iVector<iVector<vtype, CompactWilsonCloverTypes<Impl>::Ndiagonal>, CompactWilsonCloverTypes<Impl>::Nblock>>; \ |  | ||||||
|   template<typename vtype> using iImplCloverTriangle = \ |  | ||||||
|     iScalar<iVector<iVector<vtype, CompactWilsonCloverTypes<Impl>::Ntriangle>, CompactWilsonCloverTypes<Impl>::Nblock>>; |  | ||||||
|  |  | ||||||
| #define INHERIT_COMPACT_CLOVER_SIZES(Impl)                                    \ |  | ||||||
|   static constexpr int Nred      = CompactWilsonCloverTypes<Impl>::Nred;      \ |  | ||||||
|   static constexpr int Nblock    = CompactWilsonCloverTypes<Impl>::Nblock;    \ |  | ||||||
|   static constexpr int Ndiagonal = CompactWilsonCloverTypes<Impl>::Ndiagonal; \ |  | ||||||
|   static constexpr int Ntriangle = CompactWilsonCloverTypes<Impl>::Ntriangle; |  | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); |  | ||||||
| @@ -61,19 +61,18 @@ public: | |||||||
|   typedef typename SiteHalfSpinor::vector_type     vComplexHigh; |   typedef typename SiteHalfSpinor::vector_type     vComplexHigh; | ||||||
|   constexpr static int Nw=sizeof(SiteHalfSpinor)/sizeof(vComplexHigh); |   constexpr static int Nw=sizeof(SiteHalfSpinor)/sizeof(vComplexHigh); | ||||||
|  |  | ||||||
|   accelerator_inline int CommDatumSize(void) const { |   accelerator_inline int CommDatumSize(void) { | ||||||
|     return sizeof(SiteHalfCommSpinor); |     return sizeof(SiteHalfCommSpinor); | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   /*****************************************************/ |   /*****************************************************/ | ||||||
|   /* Compress includes precision change if mpi data is not same */ |   /* Compress includes precision change if mpi data is not same */ | ||||||
|   /*****************************************************/ |   /*****************************************************/ | ||||||
|   accelerator_inline void Compress(SiteHalfSpinor &buf,const SiteSpinor &in) const { |   template<class _SiteHalfSpinor, class _SiteSpinor> | ||||||
|     typedef decltype(coalescedRead(buf)) sobj; |   accelerator_inline void Compress(_SiteHalfSpinor *buf,Integer o,const _SiteSpinor &in) { | ||||||
|     sobj sp; |     _SiteHalfSpinor tmp; | ||||||
|     auto sin = coalescedRead(in); |     projector::Proj(tmp,in,mu,dag); | ||||||
|     projector::Proj(sp,sin,mu,dag); |     vstream(buf[o],tmp); | ||||||
|     coalescedWrite(buf,sp); |  | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   /*****************************************************/ |   /*****************************************************/ | ||||||
| @@ -82,24 +81,19 @@ public: | |||||||
|   accelerator_inline void Exchange(SiteHalfSpinor *mp, |   accelerator_inline void Exchange(SiteHalfSpinor *mp, | ||||||
| 				   const SiteHalfSpinor * __restrict__ vp0, | 				   const SiteHalfSpinor * __restrict__ vp0, | ||||||
| 				   const SiteHalfSpinor * __restrict__ vp1, | 				   const SiteHalfSpinor * __restrict__ vp1, | ||||||
| 				   Integer type,Integer o) const { | 				   Integer type,Integer o){ | ||||||
| #ifdef GRID_SIMT |  | ||||||
|     exchangeSIMT(mp[2*o],mp[2*o+1],vp0[o],vp1[o],type); |  | ||||||
| #else |  | ||||||
|     SiteHalfSpinor tmp1; |     SiteHalfSpinor tmp1; | ||||||
|     SiteHalfSpinor tmp2; |     SiteHalfSpinor tmp2; | ||||||
|     exchange(tmp1,tmp2,vp0[o],vp1[o],type); |     exchange(tmp1,tmp2,vp0[o],vp1[o],type); | ||||||
|     vstream(mp[2*o  ],tmp1); |     vstream(mp[2*o  ],tmp1); | ||||||
|     vstream(mp[2*o+1],tmp2); |     vstream(mp[2*o+1],tmp2); | ||||||
| #endif |  | ||||||
|   } |   } | ||||||
|  |  | ||||||
|  |  | ||||||
|   /*****************************************************/ |   /*****************************************************/ | ||||||
|   /* Have a decompression step if mpi data is not same */ |   /* Have a decompression step if mpi data is not same */ | ||||||
|   /*****************************************************/ |   /*****************************************************/ | ||||||
|   accelerator_inline void Decompress(SiteHalfSpinor * __restrict__ out, |   accelerator_inline void Decompress(SiteHalfSpinor * __restrict__ out, | ||||||
| 				     SiteHalfSpinor * __restrict__ in, Integer o) const {     | 				     SiteHalfSpinor * __restrict__ in, Integer o) {     | ||||||
|     assert(0); |     assert(0); | ||||||
|   } |   } | ||||||
|  |  | ||||||
| @@ -109,30 +103,8 @@ public: | |||||||
|   accelerator_inline void CompressExchange(SiteHalfSpinor * __restrict__ out0, |   accelerator_inline void CompressExchange(SiteHalfSpinor * __restrict__ out0, | ||||||
| 					   SiteHalfSpinor * __restrict__ out1, | 					   SiteHalfSpinor * __restrict__ out1, | ||||||
| 					   const SiteSpinor * __restrict__ in, | 					   const SiteSpinor * __restrict__ in, | ||||||
| 					   Integer j,Integer k, Integer m,Integer type) const | 					   Integer j,Integer k, Integer m,Integer type) | ||||||
|   { |   { | ||||||
| #ifdef GRID_SIMT |  | ||||||
|     typedef SiteSpinor vobj; |  | ||||||
|     typedef SiteHalfSpinor hvobj; |  | ||||||
|     typedef decltype(coalescedRead(*in))    sobj; |  | ||||||
|     typedef decltype(coalescedRead(*out0)) hsobj; |  | ||||||
|  |  | ||||||
|     unsigned int Nsimd = vobj::Nsimd(); |  | ||||||
|     unsigned int mask = Nsimd >> (type + 1); |  | ||||||
|     int lane = acceleratorSIMTlane(Nsimd); |  | ||||||
|     int j0 = lane &(~mask); // inner coor zero |  | ||||||
|     int j1 = lane |(mask) ; // inner coor one |  | ||||||
|     const vobj *vp0 = &in[k]; |  | ||||||
|     const vobj *vp1 = &in[m]; |  | ||||||
|     const vobj *vp = (lane&mask) ? vp1:vp0; |  | ||||||
|     auto sa = coalescedRead(*vp,j0); |  | ||||||
|     auto sb = coalescedRead(*vp,j1); |  | ||||||
|     hsobj psa, psb; |  | ||||||
|     projector::Proj(psa,sa,mu,dag); |  | ||||||
|     projector::Proj(psb,sb,mu,dag); |  | ||||||
|     coalescedWrite(out0[j],psa); |  | ||||||
|     coalescedWrite(out1[j],psb); |  | ||||||
| #else |  | ||||||
|     SiteHalfSpinor temp1, temp2; |     SiteHalfSpinor temp1, temp2; | ||||||
|     SiteHalfSpinor temp3, temp4; |     SiteHalfSpinor temp3, temp4; | ||||||
|     projector::Proj(temp1,in[k],mu,dag); |     projector::Proj(temp1,in[k],mu,dag); | ||||||
| @@ -140,17 +112,15 @@ public: | |||||||
|     exchange(temp3,temp4,temp1,temp2,type); |     exchange(temp3,temp4,temp1,temp2,type); | ||||||
|     vstream(out0[j],temp3); |     vstream(out0[j],temp3); | ||||||
|     vstream(out1[j],temp4); |     vstream(out1[j],temp4); | ||||||
| #endif |  | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   /*****************************************************/ |   /*****************************************************/ | ||||||
|   /* Pass the info to the stencil */ |   /* Pass the info to the stencil */ | ||||||
|   /*****************************************************/ |   /*****************************************************/ | ||||||
|   accelerator_inline bool DecompressionStep(void) const { return false; } |   accelerator_inline bool DecompressionStep(void) { return false; } | ||||||
|  |  | ||||||
| }; | }; | ||||||
|  |  | ||||||
| #if 0 |  | ||||||
| template<class _HCspinor,class _Hspinor,class _Spinor, class projector> | template<class _HCspinor,class _Hspinor,class _Spinor, class projector> | ||||||
| class WilsonCompressorTemplate< _HCspinor, _Hspinor, _Spinor, projector, | class WilsonCompressorTemplate< _HCspinor, _Hspinor, _Spinor, projector, | ||||||
| 				typename std::enable_if<!std::is_same<_HCspinor,_Hspinor>::value>::type > | 				typename std::enable_if<!std::is_same<_HCspinor,_Hspinor>::value>::type > | ||||||
| @@ -172,30 +142,20 @@ public: | |||||||
|   typedef typename SiteHalfSpinor::vector_type     vComplexHigh; |   typedef typename SiteHalfSpinor::vector_type     vComplexHigh; | ||||||
|   constexpr static int Nw=sizeof(SiteHalfSpinor)/sizeof(vComplexHigh); |   constexpr static int Nw=sizeof(SiteHalfSpinor)/sizeof(vComplexHigh); | ||||||
|  |  | ||||||
|   accelerator_inline int CommDatumSize(void) const { |   accelerator_inline int CommDatumSize(void) { | ||||||
|     return sizeof(SiteHalfCommSpinor); |     return sizeof(SiteHalfCommSpinor); | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   /*****************************************************/ |   /*****************************************************/ | ||||||
|   /* Compress includes precision change if mpi data is not same */ |   /* Compress includes precision change if mpi data is not same */ | ||||||
|   /*****************************************************/ |   /*****************************************************/ | ||||||
|   accelerator_inline void Compress(SiteHalfSpinor &buf,const SiteSpinor &in) const { |   template<class _SiteHalfSpinor, class _SiteSpinor> | ||||||
|     SiteHalfSpinor hsp; |   accelerator_inline void Compress(_SiteHalfSpinor *buf,Integer o,const _SiteSpinor &in) { | ||||||
|  |     _SiteHalfSpinor hsp; | ||||||
|     SiteHalfCommSpinor *hbuf = (SiteHalfCommSpinor *)buf; |     SiteHalfCommSpinor *hbuf = (SiteHalfCommSpinor *)buf; | ||||||
|     projector::Proj(hsp,in,mu,dag); |     projector::Proj(hsp,in,mu,dag); | ||||||
|     precisionChange((vComplexLow *)&hbuf[o],(vComplexHigh *)&hsp,Nw); |     precisionChange((vComplexLow *)&hbuf[o],(vComplexHigh *)&hsp,Nw); | ||||||
|   } |   } | ||||||
|   accelerator_inline void Compress(SiteHalfSpinor &buf,const SiteSpinor &in) const { |  | ||||||
| #ifdef GRID_SIMT |  | ||||||
|     typedef decltype(coalescedRead(buf)) sobj; |  | ||||||
|     sobj sp; |  | ||||||
|     auto sin = coalescedRead(in); |  | ||||||
|     projector::Proj(sp,sin,mu,dag); |  | ||||||
|     coalescedWrite(buf,sp); |  | ||||||
| #else |  | ||||||
|     projector::Proj(buf,in,mu,dag); |  | ||||||
| #endif |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   /*****************************************************/ |   /*****************************************************/ | ||||||
|   /* Exchange includes precision change if mpi data is not same */ |   /* Exchange includes precision change if mpi data is not same */ | ||||||
| @@ -203,7 +163,7 @@ public: | |||||||
|   accelerator_inline void Exchange(SiteHalfSpinor *mp, |   accelerator_inline void Exchange(SiteHalfSpinor *mp, | ||||||
|                        SiteHalfSpinor *vp0, |                        SiteHalfSpinor *vp0, | ||||||
|                        SiteHalfSpinor *vp1, |                        SiteHalfSpinor *vp1, | ||||||
| 		       Integer type,Integer o) const { | 		       Integer type,Integer o){ | ||||||
|     SiteHalfSpinor vt0,vt1; |     SiteHalfSpinor vt0,vt1; | ||||||
|     SiteHalfCommSpinor *vpp0 = (SiteHalfCommSpinor *)vp0; |     SiteHalfCommSpinor *vpp0 = (SiteHalfCommSpinor *)vp0; | ||||||
|     SiteHalfCommSpinor *vpp1 = (SiteHalfCommSpinor *)vp1; |     SiteHalfCommSpinor *vpp1 = (SiteHalfCommSpinor *)vp1; | ||||||
| @@ -215,7 +175,7 @@ public: | |||||||
|   /*****************************************************/ |   /*****************************************************/ | ||||||
|   /* Have a decompression step if mpi data is not same */ |   /* Have a decompression step if mpi data is not same */ | ||||||
|   /*****************************************************/ |   /*****************************************************/ | ||||||
|   accelerator_inline void Decompress(SiteHalfSpinor *out, SiteHalfSpinor *in, Integer o) const { |   accelerator_inline void Decompress(SiteHalfSpinor *out, SiteHalfSpinor *in, Integer o){ | ||||||
|     SiteHalfCommSpinor *hin=(SiteHalfCommSpinor *)in; |     SiteHalfCommSpinor *hin=(SiteHalfCommSpinor *)in; | ||||||
|     precisionChange((vComplexHigh *)&out[o],(vComplexLow *)&hin[o],Nw); |     precisionChange((vComplexHigh *)&out[o],(vComplexLow *)&hin[o],Nw); | ||||||
|   } |   } | ||||||
| @@ -226,7 +186,7 @@ public: | |||||||
|   accelerator_inline void CompressExchange(SiteHalfSpinor *out0, |   accelerator_inline void CompressExchange(SiteHalfSpinor *out0, | ||||||
| 			       SiteHalfSpinor *out1, | 			       SiteHalfSpinor *out1, | ||||||
| 			       const SiteSpinor *in, | 			       const SiteSpinor *in, | ||||||
| 			       Integer j,Integer k, Integer m,Integer type) const { | 			       Integer j,Integer k, Integer m,Integer type){ | ||||||
|     SiteHalfSpinor temp1, temp2,temp3,temp4; |     SiteHalfSpinor temp1, temp2,temp3,temp4; | ||||||
|     SiteHalfCommSpinor *hout0 = (SiteHalfCommSpinor *)out0; |     SiteHalfCommSpinor *hout0 = (SiteHalfCommSpinor *)out0; | ||||||
|     SiteHalfCommSpinor *hout1 = (SiteHalfCommSpinor *)out1; |     SiteHalfCommSpinor *hout1 = (SiteHalfCommSpinor *)out1; | ||||||
| @@ -240,10 +200,9 @@ public: | |||||||
|   /*****************************************************/ |   /*****************************************************/ | ||||||
|   /* Pass the info to the stencil */ |   /* Pass the info to the stencil */ | ||||||
|   /*****************************************************/ |   /*****************************************************/ | ||||||
|   accelerator_inline bool DecompressionStep(void) const { return true; } |   accelerator_inline bool DecompressionStep(void) { return true; } | ||||||
|  |  | ||||||
| }; | }; | ||||||
| #endif |  | ||||||
|  |  | ||||||
| #define DECLARE_PROJ(Projector,Compressor,spProj)			\ | #define DECLARE_PROJ(Projector,Compressor,spProj)			\ | ||||||
|   class Projector {							\ |   class Projector {							\ | ||||||
| @@ -294,8 +253,33 @@ public: | |||||||
|   typedef typename Base::View_type View_type; |   typedef typename Base::View_type View_type; | ||||||
|   typedef typename Base::StencilVector StencilVector; |   typedef typename Base::StencilVector StencilVector; | ||||||
|  |  | ||||||
|   void ZeroCountersi(void)  {  } |   double timer0; | ||||||
|   void Reporti(int calls)  {  } |   double timer1; | ||||||
|  |   double timer2; | ||||||
|  |   double timer3; | ||||||
|  |   double timer4; | ||||||
|  |   double timer5; | ||||||
|  |   double timer6; | ||||||
|  |   uint64_t callsi; | ||||||
|  |   void ZeroCountersi(void) | ||||||
|  |   { | ||||||
|  |     timer0=0; | ||||||
|  |     timer1=0; | ||||||
|  |     timer2=0; | ||||||
|  |     timer3=0; | ||||||
|  |     timer4=0; | ||||||
|  |     timer5=0; | ||||||
|  |     timer6=0; | ||||||
|  |     callsi=0; | ||||||
|  |   } | ||||||
|  |   void Reporti(int calls) | ||||||
|  |   { | ||||||
|  |     if ( timer0 ) std::cout << GridLogMessage << " timer0 (HaloGatherOpt) " <<timer0/calls <<std::endl; | ||||||
|  |     if ( timer1 ) std::cout << GridLogMessage << " timer1 (Communicate)   " <<timer1/calls <<std::endl; | ||||||
|  |     if ( timer2 ) std::cout << GridLogMessage << " timer2 (CommsMerge )   " <<timer2/calls <<std::endl; | ||||||
|  |     if ( timer3 ) std::cout << GridLogMessage << " timer3 (commsMergeShm) " <<timer3/calls <<std::endl; | ||||||
|  |     if ( timer4 ) std::cout << GridLogMessage << " timer4 " <<timer4 <<std::endl; | ||||||
|  |   } | ||||||
|  |  | ||||||
|   std::vector<int> surface_list; |   std::vector<int> surface_list; | ||||||
|  |  | ||||||
| @@ -337,18 +321,26 @@ public: | |||||||
|   { |   { | ||||||
|     std::vector<std::vector<CommsRequest_t> > reqs; |     std::vector<std::vector<CommsRequest_t> > reqs; | ||||||
|     this->HaloExchangeOptGather(source,compress); |     this->HaloExchangeOptGather(source,compress); | ||||||
|  |     double t1=usecond(); | ||||||
|     // Asynchronous MPI calls multidirectional, Isend etc... |     // Asynchronous MPI calls multidirectional, Isend etc... | ||||||
|     // Non-overlapped directions within a thread. Asynchronous calls except MPI3, threaded up to comm threads ways. |     // Non-overlapped directions within a thread. Asynchronous calls except MPI3, threaded up to comm threads ways. | ||||||
|     this->Communicate(); |     this->Communicate(); | ||||||
|  |     double t2=usecond(); timer1 += t2-t1; | ||||||
|     this->CommsMerge(compress); |     this->CommsMerge(compress); | ||||||
|  |     double t3=usecond(); timer2 += t3-t2; | ||||||
|     this->CommsMergeSHM(compress); |     this->CommsMergeSHM(compress); | ||||||
|  |     double t4=usecond(); timer3 += t4-t3; | ||||||
|   } |   } | ||||||
|    |    | ||||||
|   template <class compressor> |   template <class compressor> | ||||||
|   void HaloExchangeOptGather(const Lattice<vobj> &source,compressor &compress)  |   void HaloExchangeOptGather(const Lattice<vobj> &source,compressor &compress)  | ||||||
|   { |   { | ||||||
|     this->Prepare(); |     this->Prepare(); | ||||||
|  |     double t0=usecond(); | ||||||
|     this->HaloGatherOpt(source,compress); |     this->HaloGatherOpt(source,compress); | ||||||
|  |     double t1=usecond(); | ||||||
|  |     timer0 += t1-t0; | ||||||
|  |     callsi++; | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   template <class compressor> |   template <class compressor> | ||||||
| @@ -360,9 +352,12 @@ public: | |||||||
|     typedef typename compressor::SiteHalfSpinor     SiteHalfSpinor; |     typedef typename compressor::SiteHalfSpinor     SiteHalfSpinor; | ||||||
|     typedef typename compressor::SiteHalfCommSpinor SiteHalfCommSpinor; |     typedef typename compressor::SiteHalfCommSpinor SiteHalfCommSpinor; | ||||||
|  |  | ||||||
|  |     this->mpi3synctime_g-=usecond(); | ||||||
|     this->_grid->StencilBarrier(); |     this->_grid->StencilBarrier(); | ||||||
|  |     this->mpi3synctime_g+=usecond(); | ||||||
|  |  | ||||||
|     assert(source.Grid()==this->_grid); |     assert(source.Grid()==this->_grid); | ||||||
|  |     this->halogtime-=usecond(); | ||||||
|      |      | ||||||
|     this->u_comm_offset=0; |     this->u_comm_offset=0; | ||||||
|        |        | ||||||
| @@ -398,6 +393,7 @@ public: | |||||||
|     } |     } | ||||||
|     this->face_table_computed=1; |     this->face_table_computed=1; | ||||||
|     assert(this->u_comm_offset==this->_unified_buffer_size); |     assert(this->u_comm_offset==this->_unified_buffer_size); | ||||||
|  |     this->halogtime+=usecond(); | ||||||
|     accelerator_barrier(); |     accelerator_barrier(); | ||||||
|   } |   } | ||||||
|  |  | ||||||
|   | |||||||
| @@ -74,20 +74,6 @@ public: | |||||||
|   FermionField _tmp; |   FermionField _tmp; | ||||||
|   FermionField &tmp(void) { return _tmp; } |   FermionField &tmp(void) { return _tmp; } | ||||||
|  |  | ||||||
|   void Report(void); |  | ||||||
|   void ZeroCounters(void); |  | ||||||
|   double DhopCalls; |  | ||||||
|   double DhopCommTime; |  | ||||||
|   double DhopComputeTime; |  | ||||||
|   double DhopComputeTime2; |  | ||||||
|   double DhopFaceTime; |  | ||||||
|   double DhopTotalTime; |  | ||||||
|  |  | ||||||
|   double DerivCalls; |  | ||||||
|   double DerivCommTime; |  | ||||||
|   double DerivComputeTime; |  | ||||||
|   double DerivDhopComputeTime; |  | ||||||
|  |  | ||||||
|   ////////////////////////////////////////////////////////////////// |   ////////////////////////////////////////////////////////////////// | ||||||
|   // override multiply; cut number routines if pass dagger argument |   // override multiply; cut number routines if pass dagger argument | ||||||
|   // and also make interface more uniformly consistent |   // and also make interface more uniformly consistent | ||||||
| @@ -210,3 +196,5 @@ typedef WilsonFermion<WilsonImplF> WilsonFermionF; | |||||||
| typedef WilsonFermion<WilsonImplD> WilsonFermionD; | typedef WilsonFermion<WilsonImplD> WilsonFermionD; | ||||||
|  |  | ||||||
| NAMESPACE_END(Grid); | NAMESPACE_END(Grid); | ||||||
|  |  | ||||||
|  |  | ||||||
|   | |||||||
| @@ -215,7 +215,7 @@ public: | |||||||
|   LebesgueOrder LebesgueEvenOdd; |   LebesgueOrder LebesgueEvenOdd; | ||||||
|      |      | ||||||
|   // Comms buffer |   // Comms buffer | ||||||
|   //  std::vector<SiteHalfSpinor,alignedAllocator<SiteHalfSpinor> >  comm_buf; |   std::vector<SiteHalfSpinor,alignedAllocator<SiteHalfSpinor> >  comm_buf; | ||||||
|  |  | ||||||
|  |  | ||||||
| }; | }; | ||||||
|   | |||||||
| @@ -72,7 +72,7 @@ public: | |||||||
|   typedef WilsonCompressor<SiteHalfCommSpinor,SiteHalfSpinor, SiteSpinor> Compressor; |   typedef WilsonCompressor<SiteHalfCommSpinor,SiteHalfSpinor, SiteSpinor> Compressor; | ||||||
|   typedef WilsonImplParams ImplParams; |   typedef WilsonImplParams ImplParams; | ||||||
|   typedef WilsonStencil<SiteSpinor, SiteHalfSpinor,ImplParams> StencilImpl; |   typedef WilsonStencil<SiteSpinor, SiteHalfSpinor,ImplParams> StencilImpl; | ||||||
|   typedef const typename StencilImpl::View_type StencilView; |   typedef typename StencilImpl::View_type StencilView; | ||||||
|      |      | ||||||
|   ImplParams Params; |   ImplParams Params; | ||||||
|  |  | ||||||
| @@ -106,15 +106,11 @@ public: | |||||||
| 			    const _SpinorField & phi, | 			    const _SpinorField & phi, | ||||||
| 			    int mu) | 			    int mu) | ||||||
|   { |   { | ||||||
|     const int Nsimd = SiteHalfSpinor::Nsimd(); |     auto out_v= out.View(); | ||||||
|     autoView( out_v, out, AcceleratorWrite); |     auto phi_v= phi.View(); | ||||||
|     autoView( phi_v, phi, AcceleratorRead); |     auto Umu_v= Umu.View(); | ||||||
|     autoView( Umu_v, Umu, AcceleratorRead); |     thread_for(sss,out.Grid()->oSites(),{ | ||||||
|     typedef decltype(coalescedRead(out_v[0]))   calcSpinor; | 	multLink(out_v[sss],Umu_v[sss],phi_v[sss],mu); | ||||||
|     accelerator_for(sss,out.Grid()->oSites(),Nsimd,{ |  | ||||||
| 	calcSpinor tmp; |  | ||||||
| 	multLink(tmp,Umu_v[sss],phi_v(sss),mu); |  | ||||||
| 	coalescedWrite(out_v[sss],tmp); |  | ||||||
|     }); |     }); | ||||||
|   } |   } | ||||||
| 					    | 					    | ||||||
| @@ -184,57 +180,29 @@ public: | |||||||
|       mat = TraceIndex<SpinIndex>(P);  |       mat = TraceIndex<SpinIndex>(P);  | ||||||
|     } |     } | ||||||
|        |        | ||||||
|     inline void extractLinkField(std::vector<GaugeLinkField> &mat, DoubledGaugeField &Uds) |     inline void extractLinkField(std::vector<GaugeLinkField> &mat, DoubledGaugeField &Uds){ | ||||||
|     { |  | ||||||
|       for (int mu = 0; mu < Nd; mu++) |       for (int mu = 0; mu < Nd; mu++) | ||||||
|       mat[mu] = PeekIndex<LorentzIndex>(Uds, mu); |       mat[mu] = PeekIndex<LorentzIndex>(Uds, mu); | ||||||
|     } |     } | ||||||
|  |  | ||||||
|   inline void InsertForce5D(GaugeField &mat, FermionField &Btilde, FermionField Ã,int mu) |  | ||||||
|   { |   inline void InsertForce5D(GaugeField &mat, FermionField &Btilde, FermionField Ã,int mu){ | ||||||
| #undef USE_OLD_INSERT_FORCE     |        | ||||||
|     int Ls=Btilde.Grid()->_fdimensions[0]; |     int Ls=Btilde.Grid()->_fdimensions[0]; | ||||||
|     autoView( mat_v , mat, AcceleratorWrite); |  | ||||||
| #ifdef USE_OLD_INSERT_FORCE     |  | ||||||
|     GaugeLinkField tmp(mat.Grid()); |     GaugeLinkField tmp(mat.Grid()); | ||||||
|     tmp = Zero(); |     tmp = Zero(); | ||||||
|     { |     auto tmp_v = tmp.View(); | ||||||
|       const int Nsimd = SiteSpinor::Nsimd(); |     auto Btilde_v = Btilde.View(); | ||||||
|       autoView( tmp_v , tmp, AcceleratorWrite); |     auto Atilde_v = Atilde.View(); | ||||||
|       autoView( Btilde_v , Btilde, AcceleratorRead); |     thread_for(sss,tmp.Grid()->oSites(),{ | ||||||
|       autoView( Atilde_v , Atilde, AcceleratorRead); |  | ||||||
|       accelerator_for(sss,tmp.Grid()->oSites(),1,{ |  | ||||||
|       int sU=sss; |       int sU=sss; | ||||||
|       for(int s=0;s<Ls;s++){ |       for(int s=0;s<Ls;s++){ | ||||||
| 	int sF = s+Ls*sU; | 	int sF = s+Ls*sU; | ||||||
| 	tmp_v[sU] = tmp_v[sU]+ traceIndex<SpinIndex>(outerProduct(Btilde_v[sF],Atilde_v[sF])); // ordering here | 	tmp_v[sU] = tmp_v[sU]+ traceIndex<SpinIndex>(outerProduct(Btilde_v[sF],Atilde_v[sF])); // ordering here | ||||||
|       } |       } | ||||||
|     }); |     }); | ||||||
|     } |  | ||||||
|     PokeIndex<LorentzIndex>(mat,tmp,mu); |     PokeIndex<LorentzIndex>(mat,tmp,mu); | ||||||
| #else |        | ||||||
|     { |  | ||||||
|       const int Nsimd = SiteSpinor::Nsimd(); |  | ||||||
|       autoView( Btilde_v , Btilde, AcceleratorRead); |  | ||||||
|       autoView( Atilde_v , Atilde, AcceleratorRead); |  | ||||||
|       accelerator_for(sss,mat.Grid()->oSites(),Nsimd,{ |  | ||||||
| 	  int sU=sss; |  | ||||||
|   	  typedef decltype(coalescedRead(mat_v[sU](mu)() )) ColorMatrixType; |  | ||||||
|   	  ColorMatrixType sum; |  | ||||||
| 	  zeroit(sum);   |  | ||||||
| 	  for(int s=0;s<Ls;s++){ |  | ||||||
| 	    int sF = s+Ls*sU; |  | ||||||
|   	    for(int spn=0;spn<Ns;spn++){ //sum over spin |  | ||||||
|   	      auto bb = coalescedRead(Btilde_v[sF]()(spn) ); //color vector |  | ||||||
|   	      auto aa = coalescedRead(Atilde_v[sF]()(spn) ); |  | ||||||
| 	      auto op = outerProduct(bb,aa); |  | ||||||
|   	      sum = sum + op; |  | ||||||
| 	    } |  | ||||||
| 	  } |  | ||||||
|   	  coalescedWrite(mat_v[sU](mu)(), sum); |  | ||||||
|       }); |  | ||||||
|     } |  | ||||||
| #endif     |  | ||||||
|   } |   } | ||||||
| }; | }; | ||||||
|  |  | ||||||
| @@ -243,17 +211,17 @@ typedef WilsonImpl<vComplex,  FundamentalRepresentation, CoeffReal > WilsonImplR | |||||||
| typedef WilsonImpl<vComplexF, FundamentalRepresentation, CoeffReal > WilsonImplF;  // Float | typedef WilsonImpl<vComplexF, FundamentalRepresentation, CoeffReal > WilsonImplF;  // Float | ||||||
| typedef WilsonImpl<vComplexD, FundamentalRepresentation, CoeffReal > WilsonImplD;  // Double | typedef WilsonImpl<vComplexD, FundamentalRepresentation, CoeffReal > WilsonImplD;  // Double | ||||||
|  |  | ||||||
| //typedef WilsonImpl<vComplex,  FundamentalRepresentation, CoeffRealHalfComms > WilsonImplRL;  // Real.. whichever prec | typedef WilsonImpl<vComplex,  FundamentalRepresentation, CoeffRealHalfComms > WilsonImplRL;  // Real.. whichever prec | ||||||
| //typedef WilsonImpl<vComplexF, FundamentalRepresentation, CoeffRealHalfComms > WilsonImplFH;  // Float | typedef WilsonImpl<vComplexF, FundamentalRepresentation, CoeffRealHalfComms > WilsonImplFH;  // Float | ||||||
| //typedef WilsonImpl<vComplexD, FundamentalRepresentation, CoeffRealHalfComms > WilsonImplDF;  // Double | typedef WilsonImpl<vComplexD, FundamentalRepresentation, CoeffRealHalfComms > WilsonImplDF;  // Double | ||||||
|  |  | ||||||
| typedef WilsonImpl<vComplex,  FundamentalRepresentation, CoeffComplex > ZWilsonImplR; // Real.. whichever prec | typedef WilsonImpl<vComplex,  FundamentalRepresentation, CoeffComplex > ZWilsonImplR; // Real.. whichever prec | ||||||
| typedef WilsonImpl<vComplexF, FundamentalRepresentation, CoeffComplex > ZWilsonImplF; // Float | typedef WilsonImpl<vComplexF, FundamentalRepresentation, CoeffComplex > ZWilsonImplF; // Float | ||||||
| typedef WilsonImpl<vComplexD, FundamentalRepresentation, CoeffComplex > ZWilsonImplD; // Double | typedef WilsonImpl<vComplexD, FundamentalRepresentation, CoeffComplex > ZWilsonImplD; // Double | ||||||
|  |  | ||||||
| //typedef WilsonImpl<vComplex,  FundamentalRepresentation, CoeffComplexHalfComms > ZWilsonImplRL; // Real.. whichever prec | typedef WilsonImpl<vComplex,  FundamentalRepresentation, CoeffComplexHalfComms > ZWilsonImplRL; // Real.. whichever prec | ||||||
| //typedef WilsonImpl<vComplexF, FundamentalRepresentation, CoeffComplexHalfComms > ZWilsonImplFH; // Float | typedef WilsonImpl<vComplexF, FundamentalRepresentation, CoeffComplexHalfComms > ZWilsonImplFH; // Float | ||||||
| //typedef WilsonImpl<vComplexD, FundamentalRepresentation, CoeffComplexHalfComms > ZWilsonImplDF; // Double | typedef WilsonImpl<vComplexD, FundamentalRepresentation, CoeffComplexHalfComms > ZWilsonImplDF; // Double | ||||||
|   |   | ||||||
| typedef WilsonImpl<vComplex,  AdjointRepresentation, CoeffReal > WilsonAdjImplR;   // Real.. whichever prec | typedef WilsonImpl<vComplex,  AdjointRepresentation, CoeffReal > WilsonAdjImplR;   // Real.. whichever prec | ||||||
| typedef WilsonImpl<vComplexF, AdjointRepresentation, CoeffReal > WilsonAdjImplF;  // Float | typedef WilsonImpl<vComplexF, AdjointRepresentation, CoeffReal > WilsonAdjImplF;  // Float | ||||||
|   | |||||||
| @@ -49,16 +49,8 @@ public: | |||||||
|  |  | ||||||
|   INHERIT_IMPL_TYPES(Impl); |   INHERIT_IMPL_TYPES(Impl); | ||||||
|   typedef FermionOperator<Impl> Base; |   typedef FermionOperator<Impl> Base; | ||||||
|   typedef AcceleratorVector<int,STENCIL_MAX> StencilVector;    |  | ||||||
| public: |  | ||||||
|     |     | ||||||
| #ifdef GRID_SYCL | public: | ||||||
| #define SYCL_HACK |  | ||||||
| #endif   |  | ||||||
| #ifdef SYCL_HACK |  | ||||||
|   static void HandDhopSiteSycl(StencilVector st_perm,StencilEntry *st_p, SiteDoubledGaugeField *U,SiteHalfSpinor  *buf, |  | ||||||
| 			       int ss,int sU,const SiteSpinor *in, SiteSpinor *out); |  | ||||||
| #endif |  | ||||||
|  |  | ||||||
|   static void DhopKernel(int Opt,StencilImpl &st,  DoubledGaugeField &U, SiteHalfSpinor * buf, |   static void DhopKernel(int Opt,StencilImpl &st,  DoubledGaugeField &U, SiteHalfSpinor * buf, | ||||||
| 			 int Ls, int Nsite, const FermionField &in, FermionField &out, | 			 int Ls, int Nsite, const FermionField &in, FermionField &out, | ||||||
|   | |||||||
| @@ -180,7 +180,7 @@ template<class Impl> void CayleyFermion5D<Impl>::CayleyReport(void) | |||||||
|     std::cout << GridLogMessage << "#### MooeeInv calls report " << std::endl; |     std::cout << GridLogMessage << "#### MooeeInv calls report " << std::endl; | ||||||
|     std::cout << GridLogMessage << "CayleyFermion5D Number of MooeeInv Calls     : " << MooeeInvCalls   << std::endl; |     std::cout << GridLogMessage << "CayleyFermion5D Number of MooeeInv Calls     : " << MooeeInvCalls   << std::endl; | ||||||
|     std::cout << GridLogMessage << "CayleyFermion5D ComputeTime/Calls            : " << MooeeInvTime / MooeeInvCalls << " us" << std::endl; |     std::cout << GridLogMessage << "CayleyFermion5D ComputeTime/Calls            : " << MooeeInvTime / MooeeInvCalls << " us" << std::endl; | ||||||
| #ifdef GRID_CUDA | #ifdef GRID_NVCC | ||||||
|     RealD mflops = ( -16.*Nc*Ns+this->Ls*(1.+18.*Nc*Ns) )*volume*MooeeInvCalls/MooeeInvTime/2; // 2 for red black counting |     RealD mflops = ( -16.*Nc*Ns+this->Ls*(1.+18.*Nc*Ns) )*volume*MooeeInvCalls/MooeeInvTime/2; // 2 for red black counting | ||||||
|     std::cout << GridLogMessage << "Average mflops/s per call                : " << mflops << std::endl; |     std::cout << GridLogMessage << "Average mflops/s per call                : " << mflops << std::endl; | ||||||
|     std::cout << GridLogMessage << "Average mflops/s per call per rank       : " << mflops/NP << std::endl; |     std::cout << GridLogMessage << "Average mflops/s per call per rank       : " << mflops/NP << std::endl; | ||||||
| @@ -642,7 +642,7 @@ void CayleyFermion5D<Impl>::ContractConservedCurrent( PropagatorField &q_in_1, | |||||||
| 						      Current curr_type, | 						      Current curr_type, | ||||||
| 						      unsigned int mu) | 						      unsigned int mu) | ||||||
| { | { | ||||||
| #if (!defined(GRID_HIP)) | #ifndef GRID_NVCC | ||||||
|   Gamma::Algebra Gmu [] = { |   Gamma::Algebra Gmu [] = { | ||||||
|     Gamma::Algebra::GammaX, |     Gamma::Algebra::GammaX, | ||||||
|     Gamma::Algebra::GammaY, |     Gamma::Algebra::GammaY, | ||||||
| @@ -799,7 +799,7 @@ void CayleyFermion5D<Impl>::SeqConservedCurrent(PropagatorField &q_in, | |||||||
|  |  | ||||||
|   PropagatorField tmp(UGrid); |   PropagatorField tmp(UGrid); | ||||||
|   PropagatorField Utmp(UGrid); |   PropagatorField Utmp(UGrid); | ||||||
|   PropagatorField zz (UGrid);   zz=0.0; |   LatticeInteger zz (UGrid);   zz=0.0; | ||||||
|   LatticeInteger lcoor(UGrid); LatticeCoordinate(lcoor,Nd-1); |   LatticeInteger lcoor(UGrid); LatticeCoordinate(lcoor,Nd-1); | ||||||
|   for (int s=0;s<Ls;s++) { |   for (int s=0;s<Ls;s++) { | ||||||
|  |  | ||||||
| @@ -826,9 +826,8 @@ void CayleyFermion5D<Impl>::SeqConservedCurrent(PropagatorField &q_in, | |||||||
|   } |   } | ||||||
| #endif | #endif | ||||||
|  |  | ||||||
| #if (!defined(GRID_HIP)) | #ifndef GRID_NVCC | ||||||
|   int tshift = (mu == Nd-1) ? 1 : 0; |   int tshift = (mu == Nd-1) ? 1 : 0; | ||||||
|   unsigned int LLt    = GridDefaultLatt()[Tp]; |  | ||||||
|   //////////////////////////////////////////////// |   //////////////////////////////////////////////// | ||||||
|   // GENERAL CAYLEY CASE |   // GENERAL CAYLEY CASE | ||||||
|   //////////////////////////////////////////////// |   //////////////////////////////////////////////// | ||||||
| @@ -851,7 +850,7 @@ void CayleyFermion5D<Impl>::SeqConservedCurrent(PropagatorField &q_in, | |||||||
|   PropagatorField tmp(UGrid); |   PropagatorField tmp(UGrid); | ||||||
|   PropagatorField Utmp(UGrid); |   PropagatorField Utmp(UGrid); | ||||||
|  |  | ||||||
|   PropagatorField  zz (UGrid);   zz=0.0; |   LatticeInteger zz (UGrid);   zz=0.0; | ||||||
|   LatticeInteger lcoor(UGrid); LatticeCoordinate(lcoor,Nd-1); |   LatticeInteger lcoor(UGrid); LatticeCoordinate(lcoor,Nd-1); | ||||||
|  |  | ||||||
|   for(int s=0;s<Ls;s++){ |   for(int s=0;s<Ls;s++){ | ||||||
| @@ -881,29 +880,17 @@ void CayleyFermion5D<Impl>::SeqConservedCurrent(PropagatorField &q_in, | |||||||
|   } |   } | ||||||
|  |  | ||||||
|   std::vector<RealD> G_s(Ls,1.0); |   std::vector<RealD> G_s(Ls,1.0); | ||||||
|   RealD sign = 1.0; // sign flip for vector/tadpole |  | ||||||
|   if ( curr_type == Current::Axial ) { |   if ( curr_type == Current::Axial ) { | ||||||
|     for(int s=0;s<Ls/2;s++){ |     for(int s=0;s<Ls/2;s++){ | ||||||
|       G_s[s] = -1.0; |       G_s[s] = -1.0; | ||||||
|     } |     } | ||||||
|   } |   } | ||||||
|   else if ( curr_type == Current::Tadpole ) { |  | ||||||
|     auto b=this->_b; |  | ||||||
|     auto c=this->_c; |  | ||||||
|     if ( b == 1 && c == 0 ) { |  | ||||||
|       sign = -1.0;     |  | ||||||
|     } |  | ||||||
|     else { |  | ||||||
|       std::cerr << "Error: Tadpole implementation currently unavailable for non-Shamir actions." << std::endl; |  | ||||||
|       assert(b==1 && c==0); |  | ||||||
|     } |  | ||||||
|   } |  | ||||||
|  |  | ||||||
|   for(int s=0;s<Ls;s++){ |   for(int s=0;s<Ls;s++){ | ||||||
|  |  | ||||||
|     int sp = (s+1)%Ls; |     int sp = (s+1)%Ls; | ||||||
|     //    int sr = Ls-1-s; |     int sr = Ls-1-s; | ||||||
|     //    int srp= (sr+1)%Ls; |     int srp= (sr+1)%Ls; | ||||||
|  |  | ||||||
|     // Mobius parameters |     // Mobius parameters | ||||||
|     auto b=this->bs[s]; |     auto b=this->bs[s]; | ||||||
| @@ -920,7 +907,7 @@ void CayleyFermion5D<Impl>::SeqConservedCurrent(PropagatorField &q_in, | |||||||
|  |  | ||||||
|     tmp    = Cshift(tmp,mu,1); |     tmp    = Cshift(tmp,mu,1); | ||||||
|     Impl::multLinkField(Utmp,this->Umu,tmp,mu); |     Impl::multLinkField(Utmp,this->Umu,tmp,mu); | ||||||
|     tmp    = sign*G_s[s]*( Utmp*ph - gmu*Utmp*ph ); // Forward hop |     tmp    = G_s[s]*( Utmp*ph - gmu*Utmp*ph ); // Forward hop | ||||||
|     tmp    = where((lcoor>=tmin),tmp,zz); // Mask the time  |     tmp    = where((lcoor>=tmin),tmp,zz); // Mask the time  | ||||||
|     L_Q    = where((lcoor<=tmax),tmp,zz); // Position of current complicated |     L_Q    = where((lcoor<=tmax),tmp,zz); // Position of current complicated | ||||||
|  |  | ||||||
| @@ -935,13 +922,7 @@ void CayleyFermion5D<Impl>::SeqConservedCurrent(PropagatorField &q_in, | |||||||
|     tmp    = Cshift(tmp,mu,-1); |     tmp    = Cshift(tmp,mu,-1); | ||||||
|     Impl::multLinkField(Utmp,this->Umu,tmp,mu+Nd); // Adjoint link |     Impl::multLinkField(Utmp,this->Umu,tmp,mu+Nd); // Adjoint link | ||||||
|     tmp = -G_s[s]*( Utmp + gmu*Utmp ); |     tmp = -G_s[s]*( Utmp + gmu*Utmp ); | ||||||
|     // Mask the time |     tmp    = where((lcoor>=tmin+tshift),tmp,zz); // Mask the time  | ||||||
|     if (tmax == LLt - 1 && tshift == 1){ // quick fix to include timeslice 0 if tmax + tshift is over the last timeslice |  | ||||||
|       unsigned int t0 = 0; |  | ||||||
|       tmp    = where(((lcoor==t0) || (lcoor>=tmin+tshift)),tmp,zz); |  | ||||||
|     } else { |  | ||||||
|       tmp    = where((lcoor>=tmin+tshift),tmp,zz); |  | ||||||
|     } |  | ||||||
|     L_Q   += where((lcoor<=tmax+tshift),tmp,zz); // Position of current complicated |     L_Q   += where((lcoor<=tmax+tshift),tmp,zz); // Position of current complicated | ||||||
|  |  | ||||||
|     InsertSlice(L_Q, q_out, s , 0); |     InsertSlice(L_Q, q_out, s , 0); | ||||||
|   | |||||||
| @@ -50,9 +50,9 @@ CayleyFermion5D<Impl>::M5D(const FermionField &psi_i, | |||||||
|    |    | ||||||
|   chi_i.Checkerboard()=psi_i.Checkerboard(); |   chi_i.Checkerboard()=psi_i.Checkerboard(); | ||||||
|   GridBase *grid=psi_i.Grid(); |   GridBase *grid=psi_i.Grid(); | ||||||
|   autoView(psi , psi_i,AcceleratorRead); |   auto psi = psi_i.View(); | ||||||
|   autoView(phi , phi_i,AcceleratorRead); |   auto phi = phi_i.View(); | ||||||
|   autoView(chi , chi_i,AcceleratorWrite); |   auto chi = chi_i.View(); | ||||||
|   assert(phi.Checkerboard() == psi.Checkerboard()); |   assert(phi.Checkerboard() == psi.Checkerboard()); | ||||||
|  |  | ||||||
|   auto pdiag = &diag[0]; |   auto pdiag = &diag[0]; | ||||||
| @@ -93,9 +93,9 @@ CayleyFermion5D<Impl>::M5Ddag(const FermionField &psi_i, | |||||||
| { | { | ||||||
|   chi_i.Checkerboard()=psi_i.Checkerboard(); |   chi_i.Checkerboard()=psi_i.Checkerboard(); | ||||||
|   GridBase *grid=psi_i.Grid(); |   GridBase *grid=psi_i.Grid(); | ||||||
|   autoView(psi , psi_i,AcceleratorRead); |   auto psi = psi_i.View(); | ||||||
|   autoView(phi , phi_i,AcceleratorRead); |   auto phi = phi_i.View(); | ||||||
|   autoView(chi , chi_i,AcceleratorWrite); |   auto chi = chi_i.View(); | ||||||
|   assert(phi.Checkerboard() == psi.Checkerboard()); |   assert(phi.Checkerboard() == psi.Checkerboard()); | ||||||
|  |  | ||||||
|   auto pdiag = &diag[0]; |   auto pdiag = &diag[0]; | ||||||
| @@ -131,8 +131,8 @@ CayleyFermion5D<Impl>::MooeeInv    (const FermionField &psi_i, FermionField &chi | |||||||
|   chi_i.Checkerboard()=psi_i.Checkerboard(); |   chi_i.Checkerboard()=psi_i.Checkerboard(); | ||||||
|   GridBase *grid=psi_i.Grid(); |   GridBase *grid=psi_i.Grid(); | ||||||
|  |  | ||||||
|   autoView(psi , psi_i,AcceleratorRead); |   auto psi = psi_i.View(); | ||||||
|   autoView(chi , chi_i,AcceleratorWrite); |   auto chi = chi_i.View(); | ||||||
|  |  | ||||||
|   int Ls=this->Ls; |   int Ls=this->Ls; | ||||||
|  |  | ||||||
| @@ -193,8 +193,8 @@ CayleyFermion5D<Impl>::MooeeInvDag (const FermionField &psi_i, FermionField &chi | |||||||
|   GridBase *grid=psi_i.Grid(); |   GridBase *grid=psi_i.Grid(); | ||||||
|   int Ls=this->Ls; |   int Ls=this->Ls; | ||||||
|  |  | ||||||
|   autoView(psi , psi_i,AcceleratorRead); |   auto psi = psi_i.View(); | ||||||
|   autoView(chi , chi_i,AcceleratorWrite); |   auto chi = chi_i.View(); | ||||||
|  |  | ||||||
|   auto plee  = & lee [0]; |   auto plee  = & lee [0]; | ||||||
|   auto pdee  = & dee [0]; |   auto pdee  = & dee [0]; | ||||||
|   | |||||||
| @@ -65,9 +65,9 @@ CayleyFermion5D<Impl>::M5D(const FermionField &psi_i, | |||||||
|   EnableIf<Impl::LsVectorised&&EnableBool,int> sfinae=0; |   EnableIf<Impl::LsVectorised&&EnableBool,int> sfinae=0; | ||||||
|   chi_i.Checkerboard()=psi_i.Checkerboard(); |   chi_i.Checkerboard()=psi_i.Checkerboard(); | ||||||
|   GridBase *grid=psi_i.Grid(); |   GridBase *grid=psi_i.Grid(); | ||||||
|   autoView(psi, psi_i,CpuRead); |   auto psi = psi_i.View(); | ||||||
|   autoView(phi, phi_i,CpuRead); |   auto phi = phi_i.View(); | ||||||
|   autoView(chi, chi_i,CpuWrite); |   auto chi = chi_i.View(); | ||||||
|   int Ls   = this->Ls; |   int Ls   = this->Ls; | ||||||
|   int LLs  = grid->_rdimensions[0]; |   int LLs  = grid->_rdimensions[0]; | ||||||
|   const int nsimd= Simd::Nsimd(); |   const int nsimd= Simd::Nsimd(); | ||||||
| @@ -213,9 +213,9 @@ CayleyFermion5D<Impl>::M5Ddag(const FermionField &psi_i, | |||||||
|   EnableIf<Impl::LsVectorised&&EnableBool,int> sfinae=0; |   EnableIf<Impl::LsVectorised&&EnableBool,int> sfinae=0; | ||||||
|   chi_i.Checkerboard()=psi_i.Checkerboard(); |   chi_i.Checkerboard()=psi_i.Checkerboard(); | ||||||
|   GridBase *grid=psi_i.Grid(); |   GridBase *grid=psi_i.Grid(); | ||||||
|   autoView(psi,psi_i,CpuRead); |   auto psi=psi_i.View(); | ||||||
|   autoView(phi,phi_i,CpuRead); |   auto phi=phi_i.View(); | ||||||
|   autoView(chi,chi_i,CpuWrite); |   auto chi=chi_i.View(); | ||||||
|   int Ls   = this->Ls; |   int Ls   = this->Ls; | ||||||
|   int LLs  = grid->_rdimensions[0]; |   int LLs  = grid->_rdimensions[0]; | ||||||
|   int nsimd= Simd::Nsimd(); |   int nsimd= Simd::Nsimd(); | ||||||
| @@ -357,8 +357,8 @@ CayleyFermion5D<Impl>::MooeeInternalAsm(const FermionField &psi_i, FermionField | |||||||
| 					Vector<iSinglet<Simd> > &Matm) | 					Vector<iSinglet<Simd> > &Matm) | ||||||
| { | { | ||||||
|   EnableIf<Impl::LsVectorised&&EnableBool,int> sfinae=0; |   EnableIf<Impl::LsVectorised&&EnableBool,int> sfinae=0; | ||||||
|   autoView(psi , psi_i,CpuRead); |   auto psi = psi_i.View(); | ||||||
|   autoView(chi , chi_i,CpuWrite); |   auto chi = chi_i.View(); | ||||||
| #ifndef AVX512 | #ifndef AVX512 | ||||||
|   { |   { | ||||||
|     SiteHalfSpinor BcastP; |     SiteHalfSpinor BcastP; | ||||||
| @@ -535,8 +535,8 @@ CayleyFermion5D<Impl>::MooeeInternalZAsm(const FermionField &psi_i, FermionField | |||||||
|   EnableIf<Impl::LsVectorised,int> sfinae=0; |   EnableIf<Impl::LsVectorised,int> sfinae=0; | ||||||
| #ifndef AVX512 | #ifndef AVX512 | ||||||
|   { |   { | ||||||
|     autoView(psi , psi_i,CpuRead); |     auto psi = psi_i.View(); | ||||||
|     autoView(chi , chi_i,CpuWrite); |     auto chi = chi_i.View(); | ||||||
|  |  | ||||||
|     SiteHalfSpinor BcastP; |     SiteHalfSpinor BcastP; | ||||||
|     SiteHalfSpinor BcastM; |     SiteHalfSpinor BcastM; | ||||||
| @@ -586,8 +586,8 @@ CayleyFermion5D<Impl>::MooeeInternalZAsm(const FermionField &psi_i, FermionField | |||||||
|   } |   } | ||||||
| #else | #else | ||||||
|   { |   { | ||||||
|     autoView(psi , psi_i,CpuRead); |     auto psi = psi_i.View(); | ||||||
|     autoView(chi , chi_i,CpuWrite); |     auto chi = chi_i.View(); | ||||||
|     // pointers |     // pointers | ||||||
|     //  MASK_REGS; |     //  MASK_REGS; | ||||||
| #define Chi_00 %zmm0 | #define Chi_00 %zmm0 | ||||||
|   | |||||||
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