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			feature/di
		
	
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					9e5fb52eb9 | 
							
								
								
									
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										vendored
									
									
								
							
							
						
						
									
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							@@ -88,6 +88,7 @@ Thumbs.db
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			|||||||
# build directory #
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					# build directory #
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			||||||
###################
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					###################
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			||||||
build*/*
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					build*/*
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			||||||
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					Documentation/_build
 | 
				
			||||||
 | 
					
 | 
				
			||||||
# IDE related files #
 | 
					# IDE related files #
 | 
				
			||||||
#####################
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					#####################
 | 
				
			||||||
 
 | 
				
			|||||||
							
								
								
									
										56
									
								
								.travis.yml
									
									
									
									
									
								
							
							
						
						
									
										56
									
								
								.travis.yml
									
									
									
									
									
								
							@@ -1,56 +0,0 @@
 | 
				
			|||||||
language: cpp
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					 | 
				
			||||||
 | 
					 | 
				
			||||||
cache:
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					 | 
				
			||||||
  directories:
 | 
					 | 
				
			||||||
    - clang
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					 | 
				
			||||||
 | 
					 | 
				
			||||||
matrix:
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					 | 
				
			||||||
  include:
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					 | 
				
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    - os:        osx
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					 | 
				
			||||||
      osx_image: xcode8.3
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					 | 
				
			||||||
      compiler: clang
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					 | 
				
			||||||
      
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					 | 
				
			||||||
before_install:
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					 | 
				
			||||||
    - export GRIDDIR=`pwd`
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					 | 
				
			||||||
    - 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
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					 | 
				
			||||||
    - 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
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					 | 
				
			||||||
    - autoconf  --version
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					 | 
				
			||||||
    - which automake
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					 | 
				
			||||||
    - automake  --version
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					 | 
				
			||||||
    - which $CC
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					 | 
				
			||||||
    - $CC  --version
 | 
					 | 
				
			||||||
    - which $CXX
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					 | 
				
			||||||
    - $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-simd=SSE4 --enable-comms=none --with-lime=$CWD/build/lime/install ${EXTRACONF}
 | 
					 | 
				
			||||||
    - make -j4 
 | 
					 | 
				
			||||||
    - ./benchmarks/Benchmark_dwf --threads 1 --debug-signals
 | 
					 | 
				
			||||||
    - make check
 | 
					 | 
				
			||||||
@@ -44,14 +44,22 @@ directory
 | 
				
			|||||||
#ifdef __NVCC__
 | 
					#ifdef __NVCC__
 | 
				
			||||||
 //disables nvcc specific warning in json.hpp
 | 
					 //disables nvcc specific warning in json.hpp
 | 
				
			||||||
#pragma clang diagnostic ignored "-Wdeprecated-register"
 | 
					#pragma clang diagnostic ignored "-Wdeprecated-register"
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#if (__CUDACC_VER_MAJOR__ >= 11) && (__CUDACC_VER_MINOR__ >= 5)
 | 
				
			||||||
 | 
					 //disables nvcc specific warning in json.hpp
 | 
				
			||||||
 | 
					#pragma nv_diag_suppress unsigned_compare_with_zero
 | 
				
			||||||
 | 
					#pragma nv_diag_suppress cast_to_qualified_type
 | 
				
			||||||
 | 
					 //disables nvcc specific warning in many files
 | 
				
			||||||
 | 
					#pragma nv_diag_suppress esa_on_defaulted_function_ignored
 | 
				
			||||||
 | 
					#pragma nv_diag_suppress extra_semicolon
 | 
				
			||||||
 | 
					#else
 | 
				
			||||||
 | 
					 //disables nvcc specific warning in json.hpp
 | 
				
			||||||
#pragma diag_suppress unsigned_compare_with_zero
 | 
					#pragma diag_suppress unsigned_compare_with_zero
 | 
				
			||||||
#pragma diag_suppress cast_to_qualified_type
 | 
					#pragma diag_suppress cast_to_qualified_type
 | 
				
			||||||
 | 
					 | 
				
			||||||
 //disables nvcc specific warning in many files
 | 
					 //disables nvcc specific warning in many files
 | 
				
			||||||
#pragma diag_suppress esa_on_defaulted_function_ignored
 | 
					#pragma diag_suppress esa_on_defaulted_function_ignored
 | 
				
			||||||
#pragma diag_suppress extra_semicolon
 | 
					#pragma diag_suppress extra_semicolon
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
//Eigen only
 | 
					 | 
				
			||||||
#endif
 | 
					#endif
 | 
				
			||||||
 | 
					
 | 
				
			||||||
// Disable vectorisation in Eigen on the Power8/9 and PowerPC
 | 
					// Disable vectorisation in Eigen on the Power8/9 and PowerPC
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -36,6 +36,7 @@ Author: paboyle <paboyle@ph.ed.ac.uk>
 | 
				
			|||||||
#include <Grid/GridCore.h>
 | 
					#include <Grid/GridCore.h>
 | 
				
			||||||
#include <Grid/qcd/QCD.h>
 | 
					#include <Grid/qcd/QCD.h>
 | 
				
			||||||
#include <Grid/qcd/spin/Spin.h>
 | 
					#include <Grid/qcd/spin/Spin.h>
 | 
				
			||||||
 | 
					#include <Grid/qcd/gparity/Gparity.h>
 | 
				
			||||||
#include <Grid/qcd/utils/Utils.h>
 | 
					#include <Grid/qcd/utils/Utils.h>
 | 
				
			||||||
#include <Grid/qcd/representations/Representations.h>
 | 
					#include <Grid/qcd/representations/Representations.h>
 | 
				
			||||||
NAMESPACE_CHECK(GridQCDCore);
 | 
					NAMESPACE_CHECK(GridQCDCore);
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -16,6 +16,7 @@
 | 
				
			|||||||
#include <functional>
 | 
					#include <functional>
 | 
				
			||||||
#include <stdio.h>
 | 
					#include <stdio.h>
 | 
				
			||||||
#include <stdlib.h>
 | 
					#include <stdlib.h>
 | 
				
			||||||
 | 
					#include <strings.h>
 | 
				
			||||||
#include <stdio.h>
 | 
					#include <stdio.h>
 | 
				
			||||||
#include <signal.h>
 | 
					#include <signal.h>
 | 
				
			||||||
#include <ctime>
 | 
					#include <ctime>
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -14,7 +14,11 @@
 | 
				
			|||||||
/* NVCC save and restore compile environment*/
 | 
					/* NVCC save and restore compile environment*/
 | 
				
			||||||
#ifdef __NVCC__
 | 
					#ifdef __NVCC__
 | 
				
			||||||
#pragma push
 | 
					#pragma push
 | 
				
			||||||
 | 
					#if (__CUDACC_VER_MAJOR__ >= 11) && (__CUDACC_VER_MINOR__ >= 5)
 | 
				
			||||||
 | 
					#pragma nv_diag_suppress code_is_unreachable
 | 
				
			||||||
 | 
					#else
 | 
				
			||||||
#pragma diag_suppress code_is_unreachable
 | 
					#pragma diag_suppress code_is_unreachable
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
#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__")
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -54,6 +54,7 @@ NAMESPACE_CHECK(BiCGSTAB);
 | 
				
			|||||||
#include <Grid/algorithms/iterative/SchurRedBlack.h>
 | 
					#include <Grid/algorithms/iterative/SchurRedBlack.h>
 | 
				
			||||||
#include <Grid/algorithms/iterative/ConjugateGradientMultiShift.h>
 | 
					#include <Grid/algorithms/iterative/ConjugateGradientMultiShift.h>
 | 
				
			||||||
#include <Grid/algorithms/iterative/ConjugateGradientMixedPrec.h>
 | 
					#include <Grid/algorithms/iterative/ConjugateGradientMixedPrec.h>
 | 
				
			||||||
 | 
					#include <Grid/algorithms/iterative/ConjugateGradientMultiShiftMixedPrec.h>
 | 
				
			||||||
#include <Grid/algorithms/iterative/BiCGSTABMixedPrec.h>
 | 
					#include <Grid/algorithms/iterative/BiCGSTABMixedPrec.h>
 | 
				
			||||||
#include <Grid/algorithms/iterative/BlockConjugateGradient.h>
 | 
					#include <Grid/algorithms/iterative/BlockConjugateGradient.h>
 | 
				
			||||||
#include <Grid/algorithms/iterative/ConjugateGradientReliableUpdate.h>
 | 
					#include <Grid/algorithms/iterative/ConjugateGradientReliableUpdate.h>
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -358,7 +358,7 @@ public:
 | 
				
			|||||||
    autoView( in_v , in, AcceleratorRead);
 | 
					    autoView( in_v , in, AcceleratorRead);
 | 
				
			||||||
    autoView( out_v , out, AcceleratorWrite);
 | 
					    autoView( out_v , out, AcceleratorWrite);
 | 
				
			||||||
    autoView( Stencil_v  , Stencil, AcceleratorRead);
 | 
					    autoView( Stencil_v  , Stencil, AcceleratorRead);
 | 
				
			||||||
    auto& geom_v = geom;
 | 
					    int npoint = geom.npoint;
 | 
				
			||||||
    typedef LatticeView<Cobj> Aview;
 | 
					    typedef LatticeView<Cobj> Aview;
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
    Vector<Aview> AcceleratorViewContainer;
 | 
					    Vector<Aview> AcceleratorViewContainer;
 | 
				
			||||||
@@ -380,7 +380,7 @@ public:
 | 
				
			|||||||
      int ptype;
 | 
					      int ptype;
 | 
				
			||||||
      StencilEntry *SE;
 | 
					      StencilEntry *SE;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
      for(int point=0;point<geom_v.npoint;point++){
 | 
					      for(int point=0;point<npoint;point++){
 | 
				
			||||||
 | 
					
 | 
				
			||||||
	SE=Stencil_v.GetEntry(ptype,point,ss);
 | 
						SE=Stencil_v.GetEntry(ptype,point,ss);
 | 
				
			||||||
	  
 | 
						  
 | 
				
			||||||
@@ -424,7 +424,7 @@ public:
 | 
				
			|||||||
    autoView( in_v , in, AcceleratorRead);
 | 
					    autoView( in_v , in, AcceleratorRead);
 | 
				
			||||||
    autoView( out_v , out, AcceleratorWrite);
 | 
					    autoView( out_v , out, AcceleratorWrite);
 | 
				
			||||||
    autoView( Stencil_v  , Stencil, AcceleratorRead);
 | 
					    autoView( Stencil_v  , Stencil, AcceleratorRead);
 | 
				
			||||||
    auto& geom_v = geom;
 | 
					    int npoint = geom.npoint;
 | 
				
			||||||
    typedef LatticeView<Cobj> Aview;
 | 
					    typedef LatticeView<Cobj> Aview;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    Vector<Aview> AcceleratorViewContainer;
 | 
					    Vector<Aview> AcceleratorViewContainer;
 | 
				
			||||||
@@ -442,6 +442,8 @@ public:
 | 
				
			|||||||
    for(int p=0; p<geom.npoint; p++)
 | 
					    for(int p=0; p<geom.npoint; p++)
 | 
				
			||||||
      points[p] = geom.points_dagger[p];
 | 
					      points[p] = geom.points_dagger[p];
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    auto points_p = &points[0];
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    RealD* dag_factor_p = &dag_factor[0];
 | 
					    RealD* dag_factor_p = &dag_factor[0];
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    accelerator_for(sss, Grid()->oSites()*nbasis, Nsimd, {
 | 
					    accelerator_for(sss, Grid()->oSites()*nbasis, Nsimd, {
 | 
				
			||||||
@@ -452,8 +454,8 @@ public:
 | 
				
			|||||||
      int ptype;
 | 
					      int ptype;
 | 
				
			||||||
      StencilEntry *SE;
 | 
					      StencilEntry *SE;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
      for(int p=0;p<geom_v.npoint;p++){
 | 
					      for(int p=0;p<npoint;p++){
 | 
				
			||||||
        int point = points[p];
 | 
					        int point = points_p[p];
 | 
				
			||||||
 | 
					
 | 
				
			||||||
	SE=Stencil_v.GetEntry(ptype,point,ss);
 | 
						SE=Stencil_v.GetEntry(ptype,point,ss);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -708,6 +710,8 @@ public:
 | 
				
			|||||||
    for(int p=0; p<npoint; p++)
 | 
					    for(int p=0; p<npoint; p++)
 | 
				
			||||||
      points[p] = (dag && !hermitian) ? geom.points_dagger[p] : p;
 | 
					      points[p] = (dag && !hermitian) ? geom.points_dagger[p] : p;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    auto points_p = &points[0];
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    Vector<Aview> AcceleratorViewContainer;
 | 
					    Vector<Aview> AcceleratorViewContainer;
 | 
				
			||||||
    for(int p=0;p<npoint;p++) AcceleratorViewContainer.push_back(a[p].View(AcceleratorRead));
 | 
					    for(int p=0;p<npoint;p++) AcceleratorViewContainer.push_back(a[p].View(AcceleratorRead));
 | 
				
			||||||
    Aview *Aview_p = & AcceleratorViewContainer[0];
 | 
					    Aview *Aview_p = & AcceleratorViewContainer[0];
 | 
				
			||||||
@@ -728,7 +732,7 @@ public:
 | 
				
			|||||||
        StencilEntry *SE;
 | 
					        StencilEntry *SE;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
        for(int p=0;p<npoint;p++){
 | 
					        for(int p=0;p<npoint;p++){
 | 
				
			||||||
          int point = points[p];
 | 
					          int point = points_p[p];
 | 
				
			||||||
          SE=st_v.GetEntry(ptype,point,ss);
 | 
					          SE=st_v.GetEntry(ptype,point,ss);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
          if(SE->_is_local) {
 | 
					          if(SE->_is_local) {
 | 
				
			||||||
@@ -754,7 +758,7 @@ public:
 | 
				
			|||||||
        StencilEntry *SE;
 | 
					        StencilEntry *SE;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
        for(int p=0;p<npoint;p++){
 | 
					        for(int p=0;p<npoint;p++){
 | 
				
			||||||
          int point = points[p];
 | 
					          int point = points_p[p];
 | 
				
			||||||
          SE=st_v.GetEntry(ptype,point,ss);
 | 
					          SE=st_v.GetEntry(ptype,point,ss);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
          if(SE->_is_local) {
 | 
					          if(SE->_is_local) {
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -136,7 +136,7 @@ public:
 | 
				
			|||||||
    flops=0;
 | 
					    flops=0;
 | 
				
			||||||
    usec =0;
 | 
					    usec =0;
 | 
				
			||||||
    Coordinate layout(Nd,1);
 | 
					    Coordinate layout(Nd,1);
 | 
				
			||||||
    sgrid = new GridCartesian(dimensions,layout,processors);
 | 
					    sgrid = new GridCartesian(dimensions,layout,processors,*grid);
 | 
				
			||||||
  };
 | 
					  };
 | 
				
			||||||
    
 | 
					    
 | 
				
			||||||
  ~FFT ( void)  {
 | 
					  ~FFT ( void)  {
 | 
				
			||||||
@@ -182,7 +182,7 @@ 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);
 | 
					    GridCartesian pencil_g(pencil_gd,layout,processors,*vgrid);
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
    // Construct pencils
 | 
					    // Construct pencils
 | 
				
			||||||
    typedef typename vobj::scalar_object sobj;
 | 
					    typedef typename vobj::scalar_object sobj;
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -52,6 +52,7 @@ 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(){};
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -507,7 +508,7 @@ 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,RealD &ni,RealD &no) {
 | 
					  virtual void MpcDagMpc(const Field &in, Field &out) {
 | 
				
			||||||
    assert(0);// Never need with staggered
 | 
					    assert(0);// Never need with staggered
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
@@ -530,6 +531,16 @@ 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> {
 | 
				
			||||||
@@ -575,6 +586,7 @@ 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) 
 | 
				
			||||||
@@ -588,6 +600,7 @@ 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;
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -30,13 +30,19 @@ Author: Azusa Yamaguchi <ayamaguc@staffmail.ed.ac.uk>
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
NAMESPACE_BEGIN(Grid);
 | 
					NAMESPACE_BEGIN(Grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<class Field> class Preconditioner :  public LinearFunction<Field> { 
 | 
					template<class Field> using Preconditioner =  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:
 | 
				
			||||||
  void operator()(const Field &src, Field & psi){
 | 
					  using Preconditioner<Field>::operator();
 | 
				
			||||||
 | 
					  virtual void operator()(const Field &src, Field & psi){
 | 
				
			||||||
    psi = src;
 | 
					    psi = src;
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
  TrivialPrecon(void){};
 | 
					  TrivialPrecon(void){};
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -48,6 +48,7 @@ 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() {};
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
/////////////////////////////////////////////////////////////////////////////////////////////
 | 
					/////////////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
@@ -72,7 +73,7 @@ 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);
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -36,7 +36,8 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
template<class FieldD, class FieldF, typename std::enable_if< getPrecision<FieldD>::value == 2, int>::type = 0, typename std::enable_if< getPrecision<FieldF>::value == 1, int>::type = 0> 
 | 
					template<class FieldD, class FieldF, typename std::enable_if< getPrecision<FieldD>::value == 2, int>::type = 0, typename std::enable_if< getPrecision<FieldF>::value == 1, int>::type = 0> 
 | 
				
			||||||
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;
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -120,6 +120,9 @@ public:
 | 
				
			|||||||
    SolverTimer.Start();
 | 
					    SolverTimer.Start();
 | 
				
			||||||
    int k;
 | 
					    int k;
 | 
				
			||||||
    for (k = 1; k <= MaxIterations; k++) {
 | 
					    for (k = 1; k <= MaxIterations; k++) {
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      GridStopWatch IterationTimer;
 | 
				
			||||||
 | 
					      IterationTimer.Start();
 | 
				
			||||||
      c = cp;
 | 
					      c = cp;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
      MatrixTimer.Start();
 | 
					      MatrixTimer.Start();
 | 
				
			||||||
@@ -152,8 +155,14 @@ public:
 | 
				
			|||||||
      LinearCombTimer.Stop();
 | 
					      LinearCombTimer.Stop();
 | 
				
			||||||
      LinalgTimer.Stop();
 | 
					      LinalgTimer.Stop();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
      std::cout << GridLogIterative << "ConjugateGradient: Iteration " << k
 | 
					      IterationTimer.Stop();
 | 
				
			||||||
 | 
					      if ( (k % 500) == 0 ) {
 | 
				
			||||||
 | 
						std::cout << GridLogMessage << "ConjugateGradient: Iteration " << k
 | 
				
			||||||
                << " residual " << sqrt(cp/ssq) << " target " << Tolerance << std::endl;
 | 
					                << " residual " << sqrt(cp/ssq) << " target " << Tolerance << std::endl;
 | 
				
			||||||
 | 
					      } else { 
 | 
				
			||||||
 | 
						std::cout << GridLogIterative << "ConjugateGradient: Iteration " << k
 | 
				
			||||||
 | 
							  << " residual " << sqrt(cp/ssq) << " target " << Tolerance << " took " << IterationTimer.Elapsed() << std::endl;
 | 
				
			||||||
 | 
					      }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
      // Stopping condition
 | 
					      // Stopping condition
 | 
				
			||||||
      if (cp <= rsq) {
 | 
					      if (cp <= rsq) {
 | 
				
			||||||
@@ -170,13 +179,13 @@ public:
 | 
				
			|||||||
		  << "\tTrue residual " << true_residual
 | 
							  << "\tTrue residual " << true_residual
 | 
				
			||||||
		  << "\tTarget " << Tolerance << std::endl;
 | 
							  << "\tTarget " << Tolerance << std::endl;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
        std::cout << GridLogIterative << "Time breakdown "<<std::endl;
 | 
					        std::cout << GridLogMessage << "Time breakdown "<<std::endl;
 | 
				
			||||||
	std::cout << GridLogIterative << "\tElapsed    " << SolverTimer.Elapsed() <<std::endl;
 | 
						std::cout << GridLogMessage << "\tElapsed    " << SolverTimer.Elapsed() <<std::endl;
 | 
				
			||||||
	std::cout << GridLogIterative << "\tMatrix     " << MatrixTimer.Elapsed() <<std::endl;
 | 
						std::cout << GridLogMessage << "\tMatrix     " << MatrixTimer.Elapsed() <<std::endl;
 | 
				
			||||||
	std::cout << GridLogIterative << "\tLinalg     " << LinalgTimer.Elapsed() <<std::endl;
 | 
						std::cout << GridLogMessage << "\tLinalg     " << LinalgTimer.Elapsed() <<std::endl;
 | 
				
			||||||
	std::cout << GridLogIterative << "\tInner      " << InnerTimer.Elapsed() <<std::endl;
 | 
						std::cout << GridLogMessage << "\tInner      " << InnerTimer.Elapsed() <<std::endl;
 | 
				
			||||||
	std::cout << GridLogIterative << "\tAxpyNorm   " << AxpyNormTimer.Elapsed() <<std::endl;
 | 
						std::cout << GridLogMessage << "\tAxpyNorm   " << AxpyNormTimer.Elapsed() <<std::endl;
 | 
				
			||||||
	std::cout << GridLogIterative << "\tLinearComb " << LinearCombTimer.Elapsed() <<std::endl;
 | 
						std::cout << GridLogMessage << "\tLinearComb " << LinearCombTimer.Elapsed() <<std::endl;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
        if (ErrorOnNoConverge) assert(true_residual / Tolerance < 10000.0);
 | 
					        if (ErrorOnNoConverge) assert(true_residual / Tolerance < 10000.0);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -35,7 +35,8 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
    typename std::enable_if< getPrecision<FieldD>::value == 2, int>::type = 0,
 | 
					    typename std::enable_if< getPrecision<FieldD>::value == 2, int>::type = 0,
 | 
				
			||||||
    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;
 | 
				
			||||||
@@ -48,6 +49,7 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
    Integer TotalInnerIterations; //Number of inner CG iterations
 | 
					    Integer TotalInnerIterations; //Number of inner CG iterations
 | 
				
			||||||
    Integer TotalOuterIterations; //Number of restarts
 | 
					    Integer TotalOuterIterations; //Number of restarts
 | 
				
			||||||
    Integer TotalFinalStepIterations; //Number of CG iterations in final patch-up step
 | 
					    Integer TotalFinalStepIterations; //Number of CG iterations in final patch-up step
 | 
				
			||||||
 | 
					    RealD TrueResidual;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    //Option to speed up *inner single precision* solves using a LinearFunction that produces a guess
 | 
					    //Option to speed up *inner single precision* solves using a LinearFunction that produces a guess
 | 
				
			||||||
    LinearFunction<FieldF> *guesser;
 | 
					    LinearFunction<FieldF> *guesser;
 | 
				
			||||||
@@ -67,6 +69,7 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
    }
 | 
					    }
 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
  void operator() (const FieldD &src_d_in, FieldD &sol_d){
 | 
					  void operator() (const FieldD &src_d_in, FieldD &sol_d){
 | 
				
			||||||
 | 
					    std::cout << GridLogMessage << "MixedPrecisionConjugateGradient: Starting mixed precision CG with outer tolerance " << Tolerance << " and inner tolerance " << InnerTolerance << std::endl;
 | 
				
			||||||
    TotalInnerIterations = 0;
 | 
					    TotalInnerIterations = 0;
 | 
				
			||||||
	
 | 
						
 | 
				
			||||||
    GridStopWatch TotalTimer;
 | 
					    GridStopWatch TotalTimer;
 | 
				
			||||||
@@ -96,6 +99,7 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
    FieldF sol_f(SinglePrecGrid);
 | 
					    FieldF sol_f(SinglePrecGrid);
 | 
				
			||||||
    sol_f.Checkerboard() = cb;
 | 
					    sol_f.Checkerboard() = cb;
 | 
				
			||||||
    
 | 
					    
 | 
				
			||||||
 | 
					    std::cout<<GridLogMessage<<"MixedPrecisionConjugateGradient: Starting initial inner CG with tolerance " << inner_tol << std::endl;
 | 
				
			||||||
    ConjugateGradient<FieldF> CG_f(inner_tol, MaxInnerIterations);
 | 
					    ConjugateGradient<FieldF> CG_f(inner_tol, MaxInnerIterations);
 | 
				
			||||||
    CG_f.ErrorOnNoConverge = false;
 | 
					    CG_f.ErrorOnNoConverge = false;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -129,6 +133,7 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
	(*guesser)(src_f, sol_f);
 | 
						(*guesser)(src_f, sol_f);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
      //Inner CG
 | 
					      //Inner CG
 | 
				
			||||||
 | 
					      std::cout<<GridLogMessage<<"MixedPrecisionConjugateGradient: Outer iteration " << outer_iter << " starting inner CG with tolerance " << inner_tol << std::endl;
 | 
				
			||||||
      CG_f.Tolerance = inner_tol;
 | 
					      CG_f.Tolerance = inner_tol;
 | 
				
			||||||
      InnerCGtimer.Start();
 | 
					      InnerCGtimer.Start();
 | 
				
			||||||
      CG_f(Linop_f, src_f, sol_f);
 | 
					      CG_f(Linop_f, src_f, sol_f);
 | 
				
			||||||
@@ -149,6 +154,7 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
    ConjugateGradient<FieldD> CG_d(Tolerance, MaxInnerIterations);
 | 
					    ConjugateGradient<FieldD> CG_d(Tolerance, MaxInnerIterations);
 | 
				
			||||||
    CG_d(Linop_d, src_d_in, sol_d);
 | 
					    CG_d(Linop_d, src_d_in, sol_d);
 | 
				
			||||||
    TotalFinalStepIterations = CG_d.IterationsToComplete;
 | 
					    TotalFinalStepIterations = CG_d.IterationsToComplete;
 | 
				
			||||||
 | 
					    TrueResidual = CG_d.TrueResidual;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    TotalTimer.Stop();
 | 
					    TotalTimer.Stop();
 | 
				
			||||||
    std::cout<<GridLogMessage<<"MixedPrecisionConjugateGradient: Inner CG iterations " << TotalInnerIterations << " Restarts " << TotalOuterIterations << " Final CG iterations " << TotalFinalStepIterations << std::endl;
 | 
					    std::cout<<GridLogMessage<<"MixedPrecisionConjugateGradient: Inner CG iterations " << TotalInnerIterations << " Restarts " << TotalOuterIterations << " Final CG iterations " << TotalFinalStepIterations << std::endl;
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -44,7 +44,7 @@ public:
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
  using OperatorFunction<Field>::operator();
 | 
					  using OperatorFunction<Field>::operator();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  RealD   Tolerance;
 | 
					  //  RealD   Tolerance;
 | 
				
			||||||
  Integer MaxIterations;
 | 
					  Integer MaxIterations;
 | 
				
			||||||
  Integer IterationsToComplete; //Number of iterations the CG took to finish. Filled in upon completion
 | 
					  Integer IterationsToComplete; //Number of iterations the CG took to finish. Filled in upon completion
 | 
				
			||||||
  std::vector<int> IterationsToCompleteShift;  // Iterations for this shift
 | 
					  std::vector<int> IterationsToCompleteShift;  // Iterations for this shift
 | 
				
			||||||
@@ -52,7 +52,7 @@ public:
 | 
				
			|||||||
  MultiShiftFunction shifts;
 | 
					  MultiShiftFunction shifts;
 | 
				
			||||||
  std::vector<RealD> TrueResidualShift;
 | 
					  std::vector<RealD> TrueResidualShift;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  ConjugateGradientMultiShift(Integer maxit,MultiShiftFunction &_shifts) : 
 | 
					  ConjugateGradientMultiShift(Integer maxit, const MultiShiftFunction &_shifts) : 
 | 
				
			||||||
    MaxIterations(maxit),
 | 
					    MaxIterations(maxit),
 | 
				
			||||||
    shifts(_shifts)
 | 
					    shifts(_shifts)
 | 
				
			||||||
  { 
 | 
					  { 
 | 
				
			||||||
@@ -182,6 +182,9 @@ public:
 | 
				
			|||||||
    for(int s=0;s<nshift;s++) {
 | 
					    for(int s=0;s<nshift;s++) {
 | 
				
			||||||
      axpby(psi[s],0.,-bs[s]*alpha[s],src,src);
 | 
					      axpby(psi[s],0.,-bs[s]*alpha[s],src,src);
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    std::cout << GridLogIterative << "ConjugateGradientMultiShift: initial rn (|src|^2) =" << rn << " qq (|MdagM src|^2) =" << qq << " d ( dot(src, [MdagM + m_0]src) ) =" << d << " c=" << c << std::endl;
 | 
				
			||||||
 | 
					    
 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
  ///////////////////////////////////////
 | 
					  ///////////////////////////////////////
 | 
				
			||||||
  // Timers
 | 
					  // Timers
 | 
				
			||||||
@@ -321,8 +324,8 @@ public:
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
      std::cout << GridLogMessage << "Time Breakdown "<<std::endl;
 | 
					      std::cout << GridLogMessage << "Time Breakdown "<<std::endl;
 | 
				
			||||||
      std::cout << GridLogMessage << "\tElapsed    " << SolverTimer.Elapsed()     <<std::endl;
 | 
					      std::cout << GridLogMessage << "\tElapsed    " << SolverTimer.Elapsed()     <<std::endl;
 | 
				
			||||||
      std::cout << GridLogMessage << "\tAXPY    " << AXPYTimer.Elapsed()     <<std::endl;
 | 
					      std::cout << GridLogMessage << "\tAXPY     " << AXPYTimer.Elapsed()     <<std::endl;
 | 
				
			||||||
      std::cout << GridLogMessage << "\tMarix    " << MatrixTimer.Elapsed()     <<std::endl;
 | 
					      std::cout << GridLogMessage << "\tMatrix   " << MatrixTimer.Elapsed()     <<std::endl;
 | 
				
			||||||
      std::cout << GridLogMessage << "\tShift    " << ShiftTimer.Elapsed()     <<std::endl;
 | 
					      std::cout << GridLogMessage << "\tShift    " << ShiftTimer.Elapsed()     <<std::endl;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
      IterationsToComplete = k;	
 | 
					      IterationsToComplete = k;	
 | 
				
			||||||
 
 | 
				
			|||||||
							
								
								
									
										409
									
								
								Grid/algorithms/iterative/ConjugateGradientMultiShiftMixedPrec.h
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										409
									
								
								Grid/algorithms/iterative/ConjugateGradientMultiShiftMixedPrec.h
									
									
									
									
									
										Normal file
									
								
							@@ -0,0 +1,409 @@
 | 
				
			|||||||
 | 
					/*************************************************************************************
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Grid physics library, www.github.com/paboyle/Grid 
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Source file: ./lib/algorithms/iterative/ConjugateGradientMultiShift.h
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Copyright (C) 2015
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					Author: Azusa Yamaguchi <ayamaguc@staffmail.ed.ac.uk>
 | 
				
			||||||
 | 
					Author: Peter Boyle <paboyle@ph.ed.ac.uk>
 | 
				
			||||||
 | 
					Author: Christopher Kelly <ckelly@bnl.gov>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    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_CONJUGATE_GRADIENT_MULTI_SHIFT_MIXEDPREC_H
 | 
				
			||||||
 | 
					#define GRID_CONJUGATE_GRADIENT_MULTI_SHIFT_MIXEDPREC_H
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					NAMESPACE_BEGIN(Grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					//CK 2020: A variant of the multi-shift conjugate gradient with the matrix multiplication in single precision. 
 | 
				
			||||||
 | 
					//The residual is stored in single precision, but the search directions and solution are stored in double precision. 
 | 
				
			||||||
 | 
					//Every update_freq iterations the residual is corrected in double precision. 
 | 
				
			||||||
 | 
					    
 | 
				
			||||||
 | 
					//For safety the a final regular CG is applied to clean up if necessary
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					//Linop to add shift to input linop, used in cleanup CG
 | 
				
			||||||
 | 
					namespace ConjugateGradientMultiShiftMixedPrecSupport{
 | 
				
			||||||
 | 
					template<typename Field>
 | 
				
			||||||
 | 
					class ShiftedLinop: public LinearOperatorBase<Field>{
 | 
				
			||||||
 | 
					public:
 | 
				
			||||||
 | 
					  LinearOperatorBase<Field> &linop_base;
 | 
				
			||||||
 | 
					  RealD shift;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  ShiftedLinop(LinearOperatorBase<Field> &_linop_base, RealD _shift): linop_base(_linop_base), shift(_shift){}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  void OpDiag (const Field &in, Field &out){ assert(0); }
 | 
				
			||||||
 | 
					  void OpDir  (const Field &in, Field &out,int dir,int disp){ assert(0); }
 | 
				
			||||||
 | 
					  void OpDirAll  (const Field &in, std::vector<Field> &out){ assert(0); }
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					  void Op     (const Field &in, Field &out){ assert(0); }
 | 
				
			||||||
 | 
					  void AdjOp  (const Field &in, Field &out){ assert(0); }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  void HermOp(const Field &in, Field &out){
 | 
				
			||||||
 | 
					    linop_base.HermOp(in, out);
 | 
				
			||||||
 | 
					    axpy(out, shift, in, out);
 | 
				
			||||||
 | 
					  }    
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  void HermOpAndNorm(const Field &in, Field &out,RealD &n1,RealD &n2){
 | 
				
			||||||
 | 
					    HermOp(in,out);
 | 
				
			||||||
 | 
					    ComplexD dot = innerProduct(in,out);
 | 
				
			||||||
 | 
					    n1=real(dot);
 | 
				
			||||||
 | 
					    n2=norm2(out);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					};
 | 
				
			||||||
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class FieldD, class FieldF,
 | 
				
			||||||
 | 
						 typename std::enable_if< getPrecision<FieldD>::value == 2, int>::type = 0,
 | 
				
			||||||
 | 
						 typename std::enable_if< getPrecision<FieldF>::value == 1, int>::type = 0> 
 | 
				
			||||||
 | 
					class ConjugateGradientMultiShiftMixedPrec : public OperatorMultiFunction<FieldD>,
 | 
				
			||||||
 | 
										     public OperatorFunction<FieldD>
 | 
				
			||||||
 | 
					{
 | 
				
			||||||
 | 
					public:                                                
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  using OperatorFunction<FieldD>::operator();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  RealD   Tolerance;
 | 
				
			||||||
 | 
					  Integer MaxIterations;
 | 
				
			||||||
 | 
					  Integer IterationsToComplete; //Number of iterations the CG took to finish. Filled in upon completion
 | 
				
			||||||
 | 
					  std::vector<int> IterationsToCompleteShift;  // Iterations for this shift
 | 
				
			||||||
 | 
					  int verbose;
 | 
				
			||||||
 | 
					  MultiShiftFunction shifts;
 | 
				
			||||||
 | 
					  std::vector<RealD> TrueResidualShift;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  int ReliableUpdateFreq; //number of iterations between reliable updates
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  GridBase* SinglePrecGrid; //Grid for single-precision fields
 | 
				
			||||||
 | 
					  LinearOperatorBase<FieldF> &Linop_f; //single precision
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  ConjugateGradientMultiShiftMixedPrec(Integer maxit, const MultiShiftFunction &_shifts,
 | 
				
			||||||
 | 
									       GridBase* _SinglePrecGrid, LinearOperatorBase<FieldF> &_Linop_f,
 | 
				
			||||||
 | 
									       int _ReliableUpdateFreq
 | 
				
			||||||
 | 
									       ) : 
 | 
				
			||||||
 | 
					    MaxIterations(maxit),  shifts(_shifts), SinglePrecGrid(_SinglePrecGrid), Linop_f(_Linop_f), ReliableUpdateFreq(_ReliableUpdateFreq)
 | 
				
			||||||
 | 
					  { 
 | 
				
			||||||
 | 
					    verbose=1;
 | 
				
			||||||
 | 
					    IterationsToCompleteShift.resize(_shifts.order);
 | 
				
			||||||
 | 
					    TrueResidualShift.resize(_shifts.order);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  void operator() (LinearOperatorBase<FieldD> &Linop, const FieldD &src, FieldD &psi)
 | 
				
			||||||
 | 
					  {
 | 
				
			||||||
 | 
					    GridBase *grid = src.Grid();
 | 
				
			||||||
 | 
					    int nshift = shifts.order;
 | 
				
			||||||
 | 
					    std::vector<FieldD> results(nshift,grid);
 | 
				
			||||||
 | 
					    (*this)(Linop,src,results,psi);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					  void operator() (LinearOperatorBase<FieldD> &Linop, const FieldD &src, std::vector<FieldD> &results, FieldD &psi)
 | 
				
			||||||
 | 
					  {
 | 
				
			||||||
 | 
					    int nshift = shifts.order;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    (*this)(Linop,src,results);
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					    psi = shifts.norm*src;
 | 
				
			||||||
 | 
					    for(int i=0;i<nshift;i++){
 | 
				
			||||||
 | 
					      psi = psi + shifts.residues[i]*results[i];
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    return;
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  void operator() (LinearOperatorBase<FieldD> &Linop_d, const FieldD &src_d, std::vector<FieldD> &psi_d)
 | 
				
			||||||
 | 
					  { 
 | 
				
			||||||
 | 
					    GridBase *DoublePrecGrid = src_d.Grid();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    ////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
 | 
					    // Convenience references to the info stored in "MultiShiftFunction"
 | 
				
			||||||
 | 
					    ////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
 | 
					    int nshift = shifts.order;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    std::vector<RealD> &mass(shifts.poles); // Make references to array in "shifts"
 | 
				
			||||||
 | 
					    std::vector<RealD> &mresidual(shifts.tolerances);
 | 
				
			||||||
 | 
					    std::vector<RealD> alpha(nshift,1.0);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    //Double precision search directions
 | 
				
			||||||
 | 
					    FieldD p_d(DoublePrecGrid);
 | 
				
			||||||
 | 
					    std::vector<FieldD> ps_d(nshift, DoublePrecGrid);// Search directions (double precision)
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    FieldD tmp_d(DoublePrecGrid);
 | 
				
			||||||
 | 
					    FieldD r_d(DoublePrecGrid);
 | 
				
			||||||
 | 
					    FieldD mmp_d(DoublePrecGrid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    assert(psi_d.size()==nshift);
 | 
				
			||||||
 | 
					    assert(mass.size()==nshift);
 | 
				
			||||||
 | 
					    assert(mresidual.size()==nshift);
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					    // dynamic sized arrays on stack; 2d is a pain with vector
 | 
				
			||||||
 | 
					    RealD  bs[nshift];
 | 
				
			||||||
 | 
					    RealD  rsq[nshift];
 | 
				
			||||||
 | 
					    RealD  z[nshift][2];
 | 
				
			||||||
 | 
					    int     converged[nshift];
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					    const int       primary =0;
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					    //Primary shift fields CG iteration
 | 
				
			||||||
 | 
					    RealD a,b,c,d;
 | 
				
			||||||
 | 
					    RealD cp,bp,qq; //prev
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					    // Matrix mult fields
 | 
				
			||||||
 | 
					    FieldF r_f(SinglePrecGrid);
 | 
				
			||||||
 | 
					    FieldF p_f(SinglePrecGrid);
 | 
				
			||||||
 | 
					    FieldF tmp_f(SinglePrecGrid);
 | 
				
			||||||
 | 
					    FieldF mmp_f(SinglePrecGrid);
 | 
				
			||||||
 | 
					    FieldF src_f(SinglePrecGrid);
 | 
				
			||||||
 | 
					    precisionChange(src_f, src_d);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    // Check lightest mass
 | 
				
			||||||
 | 
					    for(int s=0;s<nshift;s++){
 | 
				
			||||||
 | 
					      assert( mass[s]>= mass[primary] );
 | 
				
			||||||
 | 
					      converged[s]=0;
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					    // Wire guess to zero
 | 
				
			||||||
 | 
					    // Residuals "r" are src
 | 
				
			||||||
 | 
					    // First search direction "p" is also src
 | 
				
			||||||
 | 
					    cp = norm2(src_d);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    // Handle trivial case of zero src.
 | 
				
			||||||
 | 
					    if( cp == 0. ){
 | 
				
			||||||
 | 
					      for(int s=0;s<nshift;s++){
 | 
				
			||||||
 | 
						psi_d[s] = Zero();
 | 
				
			||||||
 | 
						IterationsToCompleteShift[s] = 1;
 | 
				
			||||||
 | 
						TrueResidualShift[s] = 0.;
 | 
				
			||||||
 | 
					      }
 | 
				
			||||||
 | 
					      return;
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    for(int s=0;s<nshift;s++){
 | 
				
			||||||
 | 
					      rsq[s] = cp * mresidual[s] * mresidual[s];
 | 
				
			||||||
 | 
					      std::cout<<GridLogMessage<<"ConjugateGradientMultiShiftMixedPrec: shift "<< s <<" target resid "<<rsq[s]<<std::endl;
 | 
				
			||||||
 | 
					      ps_d[s] = src_d;
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					    // r and p for primary
 | 
				
			||||||
 | 
					    r_f=src_f; //residual maintained in single
 | 
				
			||||||
 | 
					    p_f=src_f;
 | 
				
			||||||
 | 
					    p_d = src_d; //primary copy --- make this a reference to ps_d to save axpys
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					    //MdagM+m[0]
 | 
				
			||||||
 | 
					    Linop_f.HermOpAndNorm(p_f,mmp_f,d,qq); // mmp = MdagM p        d=real(dot(p, mmp)),  qq=norm2(mmp)
 | 
				
			||||||
 | 
					    axpy(mmp_f,mass[0],p_f,mmp_f);
 | 
				
			||||||
 | 
					    RealD rn = norm2(p_f);
 | 
				
			||||||
 | 
					    d += rn*mass[0];
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    b = -cp /d;
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					    // Set up the various shift variables
 | 
				
			||||||
 | 
					    int       iz=0;
 | 
				
			||||||
 | 
					    z[0][1-iz] = 1.0;
 | 
				
			||||||
 | 
					    z[0][iz]   = 1.0;
 | 
				
			||||||
 | 
					    bs[0]      = b;
 | 
				
			||||||
 | 
					    for(int s=1;s<nshift;s++){
 | 
				
			||||||
 | 
					      z[s][1-iz] = 1.0;
 | 
				
			||||||
 | 
					      z[s][iz]   = 1.0/( 1.0 - b*(mass[s]-mass[0]));
 | 
				
			||||||
 | 
					      bs[s]      = b*z[s][iz]; 
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					    // r += b[0] A.p[0]
 | 
				
			||||||
 | 
					    // c= norm(r)
 | 
				
			||||||
 | 
					    c=axpy_norm(r_f,b,mmp_f,r_f);
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					    for(int s=0;s<nshift;s++) {
 | 
				
			||||||
 | 
					      axpby(psi_d[s],0.,-bs[s]*alpha[s],src_d,src_d);
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					    ///////////////////////////////////////
 | 
				
			||||||
 | 
					    // Timers
 | 
				
			||||||
 | 
					    ///////////////////////////////////////
 | 
				
			||||||
 | 
					    GridStopWatch AXPYTimer, ShiftTimer, QRTimer, MatrixTimer, SolverTimer, PrecChangeTimer, CleanupTimer;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    SolverTimer.Start();
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					    // Iteration loop
 | 
				
			||||||
 | 
					    int k;
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					    for (k=1;k<=MaxIterations;k++){    
 | 
				
			||||||
 | 
					      a = c /cp;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      //Update double precision search direction by residual
 | 
				
			||||||
 | 
					      PrecChangeTimer.Start();
 | 
				
			||||||
 | 
					      precisionChange(r_d, r_f);
 | 
				
			||||||
 | 
					      PrecChangeTimer.Stop();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      AXPYTimer.Start();
 | 
				
			||||||
 | 
					      axpy(p_d,a,p_d,r_d); 
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      for(int s=0;s<nshift;s++){
 | 
				
			||||||
 | 
						if ( ! converged[s] ) { 
 | 
				
			||||||
 | 
						  if (s==0){
 | 
				
			||||||
 | 
						    axpy(ps_d[s],a,ps_d[s],r_d);
 | 
				
			||||||
 | 
						  } else{
 | 
				
			||||||
 | 
						    RealD as =a *z[s][iz]*bs[s] /(z[s][1-iz]*b);
 | 
				
			||||||
 | 
						    axpby(ps_d[s],z[s][iz],as,r_d,ps_d[s]);
 | 
				
			||||||
 | 
						  }
 | 
				
			||||||
 | 
						}
 | 
				
			||||||
 | 
					      }
 | 
				
			||||||
 | 
					      AXPYTimer.Stop();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      PrecChangeTimer.Start();
 | 
				
			||||||
 | 
					      precisionChange(p_f, p_d); //get back single prec search direction for linop
 | 
				
			||||||
 | 
					      PrecChangeTimer.Stop();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      cp=c;
 | 
				
			||||||
 | 
					      MatrixTimer.Start();  
 | 
				
			||||||
 | 
					      Linop_f.HermOp(p_f,mmp_f); 
 | 
				
			||||||
 | 
					      d=real(innerProduct(p_f,mmp_f));    
 | 
				
			||||||
 | 
					      MatrixTimer.Stop();  
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      AXPYTimer.Start();
 | 
				
			||||||
 | 
					      axpy(mmp_f,mass[0],p_f,mmp_f);
 | 
				
			||||||
 | 
					      AXPYTimer.Stop();
 | 
				
			||||||
 | 
					      RealD rn = norm2(p_f);
 | 
				
			||||||
 | 
					      d += rn*mass[0];
 | 
				
			||||||
 | 
					    
 | 
				
			||||||
 | 
					      bp=b;
 | 
				
			||||||
 | 
					      b=-cp/d;
 | 
				
			||||||
 | 
					    
 | 
				
			||||||
 | 
					      // Toggle the recurrence history
 | 
				
			||||||
 | 
					      bs[0] = b;
 | 
				
			||||||
 | 
					      iz = 1-iz;
 | 
				
			||||||
 | 
					      ShiftTimer.Start();
 | 
				
			||||||
 | 
					      for(int s=1;s<nshift;s++){
 | 
				
			||||||
 | 
						if((!converged[s])){
 | 
				
			||||||
 | 
						  RealD z0 = z[s][1-iz];
 | 
				
			||||||
 | 
						  RealD z1 = z[s][iz];
 | 
				
			||||||
 | 
						  z[s][iz] = z0*z1*bp
 | 
				
			||||||
 | 
						    / (b*a*(z1-z0) + z1*bp*(1- (mass[s]-mass[0])*b)); 
 | 
				
			||||||
 | 
						  bs[s] = b*z[s][iz]/z0; // NB sign  rel to Mike
 | 
				
			||||||
 | 
						}
 | 
				
			||||||
 | 
					      }
 | 
				
			||||||
 | 
					      ShiftTimer.Stop();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      //Update double precision solutions
 | 
				
			||||||
 | 
					      AXPYTimer.Start();
 | 
				
			||||||
 | 
					      for(int s=0;s<nshift;s++){
 | 
				
			||||||
 | 
						int ss = s;
 | 
				
			||||||
 | 
						if( (!converged[s]) ) { 
 | 
				
			||||||
 | 
						  axpy(psi_d[ss],-bs[s]*alpha[s],ps_d[s],psi_d[ss]);
 | 
				
			||||||
 | 
						}
 | 
				
			||||||
 | 
					      }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      //Perform reliable update if necessary; otherwise update residual from single-prec mmp
 | 
				
			||||||
 | 
					      RealD c_f = axpy_norm(r_f,b,mmp_f,r_f);
 | 
				
			||||||
 | 
					      AXPYTimer.Stop();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      c = c_f;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      if(k % ReliableUpdateFreq == 0){
 | 
				
			||||||
 | 
						//Replace r with true residual
 | 
				
			||||||
 | 
						MatrixTimer.Start();  
 | 
				
			||||||
 | 
						Linop_d.HermOp(psi_d[0],mmp_d); 
 | 
				
			||||||
 | 
						MatrixTimer.Stop();  
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						AXPYTimer.Start();
 | 
				
			||||||
 | 
						axpy(mmp_d,mass[0],psi_d[0],mmp_d);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						RealD c_d = axpy_norm(r_d, -1.0, mmp_d, src_d);
 | 
				
			||||||
 | 
						AXPYTimer.Stop();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						std::cout<<GridLogMessage<<"ConjugateGradientMultiShiftMixedPrec k="<<k<< ", replaced |r|^2 = "<<c_f <<" with |r|^2 = "<<c_d<<std::endl;
 | 
				
			||||||
 | 
						
 | 
				
			||||||
 | 
						PrecChangeTimer.Start();
 | 
				
			||||||
 | 
						precisionChange(r_f, r_d);
 | 
				
			||||||
 | 
						PrecChangeTimer.Stop();
 | 
				
			||||||
 | 
						c = c_d;
 | 
				
			||||||
 | 
					      }
 | 
				
			||||||
 | 
					    
 | 
				
			||||||
 | 
					      // Convergence checks
 | 
				
			||||||
 | 
					      int all_converged = 1;
 | 
				
			||||||
 | 
					      for(int s=0;s<nshift;s++){
 | 
				
			||||||
 | 
					      
 | 
				
			||||||
 | 
						if ( (!converged[s]) ){
 | 
				
			||||||
 | 
						  IterationsToCompleteShift[s] = k;
 | 
				
			||||||
 | 
						
 | 
				
			||||||
 | 
						  RealD css  = c * z[s][iz]* z[s][iz];
 | 
				
			||||||
 | 
						
 | 
				
			||||||
 | 
						  if(css<rsq[s]){
 | 
				
			||||||
 | 
						    if ( ! converged[s] )
 | 
				
			||||||
 | 
						      std::cout<<GridLogMessage<<"ConjugateGradientMultiShiftMixedPrec k="<<k<<" Shift "<<s<<" has converged"<<std::endl;
 | 
				
			||||||
 | 
						    converged[s]=1;
 | 
				
			||||||
 | 
						  } else {
 | 
				
			||||||
 | 
						    all_converged=0;
 | 
				
			||||||
 | 
						  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						}
 | 
				
			||||||
 | 
					      }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      if ( all_converged ){
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						SolverTimer.Stop();
 | 
				
			||||||
 | 
						std::cout<<GridLogMessage<< "ConjugateGradientMultiShiftMixedPrec: All shifts have converged iteration "<<k<<std::endl;
 | 
				
			||||||
 | 
						std::cout<<GridLogMessage<< "ConjugateGradientMultiShiftMixedPrec: Checking solutions"<<std::endl;
 | 
				
			||||||
 | 
					      
 | 
				
			||||||
 | 
						// Check answers 
 | 
				
			||||||
 | 
						for(int s=0; s < nshift; s++) { 
 | 
				
			||||||
 | 
						  Linop_d.HermOpAndNorm(psi_d[s],mmp_d,d,qq);
 | 
				
			||||||
 | 
						  axpy(tmp_d,mass[s],psi_d[s],mmp_d);
 | 
				
			||||||
 | 
						  axpy(r_d,-alpha[s],src_d,tmp_d);
 | 
				
			||||||
 | 
						  RealD rn = norm2(r_d);
 | 
				
			||||||
 | 
						  RealD cn = norm2(src_d);
 | 
				
			||||||
 | 
						  TrueResidualShift[s] = std::sqrt(rn/cn);
 | 
				
			||||||
 | 
						  std::cout<<GridLogMessage<<"ConjugateGradientMultiShiftMixedPrec: shift["<<s<<"] true residual "<< TrueResidualShift[s] << " target " << mresidual[s] << std::endl;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						  //If we have not reached the desired tolerance, do a (mixed precision) CG cleanup
 | 
				
			||||||
 | 
						  if(rn >= rsq[s]){
 | 
				
			||||||
 | 
						    CleanupTimer.Start();
 | 
				
			||||||
 | 
						    std::cout<<GridLogMessage<<"ConjugateGradientMultiShiftMixedPrec: performing cleanup step for shift " << s << std::endl;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						    //Setup linear operators for final cleanup
 | 
				
			||||||
 | 
						    ConjugateGradientMultiShiftMixedPrecSupport::ShiftedLinop<FieldD> Linop_shift_d(Linop_d, mass[s]);
 | 
				
			||||||
 | 
						    ConjugateGradientMultiShiftMixedPrecSupport::ShiftedLinop<FieldF> Linop_shift_f(Linop_f, mass[s]);
 | 
				
			||||||
 | 
										       
 | 
				
			||||||
 | 
						    MixedPrecisionConjugateGradient<FieldD,FieldF> cg(mresidual[s], MaxIterations, MaxIterations, SinglePrecGrid, Linop_shift_f, Linop_shift_d); 
 | 
				
			||||||
 | 
						    cg(src_d, psi_d[s]);
 | 
				
			||||||
 | 
						    
 | 
				
			||||||
 | 
						    TrueResidualShift[s] = cg.TrueResidual;
 | 
				
			||||||
 | 
						    CleanupTimer.Stop();
 | 
				
			||||||
 | 
						  }
 | 
				
			||||||
 | 
						}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						std::cout << GridLogMessage << "ConjugateGradientMultiShiftMixedPrec: Time Breakdown for body"<<std::endl;
 | 
				
			||||||
 | 
						std::cout << GridLogMessage << "\tSolver    " << SolverTimer.Elapsed()     <<std::endl;
 | 
				
			||||||
 | 
						std::cout << GridLogMessage << "\t\tAXPY    " << AXPYTimer.Elapsed()     <<std::endl;
 | 
				
			||||||
 | 
						std::cout << GridLogMessage << "\t\tMatrix    " << MatrixTimer.Elapsed()     <<std::endl;
 | 
				
			||||||
 | 
						std::cout << GridLogMessage << "\t\tShift    " << ShiftTimer.Elapsed()     <<std::endl;
 | 
				
			||||||
 | 
						std::cout << GridLogMessage << "\t\tPrecision Change " << PrecChangeTimer.Elapsed()     <<std::endl;
 | 
				
			||||||
 | 
						std::cout << GridLogMessage << "\tFinal Cleanup " << CleanupTimer.Elapsed()     <<std::endl;
 | 
				
			||||||
 | 
						std::cout << GridLogMessage << "\tSolver+Cleanup " << SolverTimer.Elapsed() + CleanupTimer.Elapsed() << std::endl;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						IterationsToComplete = k;	
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						return;
 | 
				
			||||||
 | 
					      }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					   
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					    // ugly hack
 | 
				
			||||||
 | 
					    std::cout<<GridLogMessage<<"CG multi shift did not converge"<<std::endl;
 | 
				
			||||||
 | 
					    //  assert(0);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					};
 | 
				
			||||||
 | 
					NAMESPACE_END(Grid);
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
@@ -33,16 +33,19 @@ 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; };
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -54,15 +57,24 @@ 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) : evec(_evec), eval(_eval) {};
 | 
					  DeflatedGuesser(const std::vector<Field> & _evec,const std::vector<RealD> & _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);
 | 
				
			||||||
@@ -79,6 +91,7 @@ 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)
 | 
				
			||||||
@@ -100,7 +113,43 @@ public:
 | 
				
			|||||||
    blockPromote(guess_coarse,guess,subspace);
 | 
					    blockPromote(guess_coarse,guess,subspace);
 | 
				
			||||||
    guess.Checkerboard() = src.Checkerboard();
 | 
					    guess.Checkerboard() = src.Checkerboard();
 | 
				
			||||||
  };
 | 
					  };
 | 
				
			||||||
};
 | 
					
 | 
				
			||||||
 | 
					  void operator()(const std::vector<FineField> &src,std::vector<FineField> &guess) {
 | 
				
			||||||
 | 
					    int Nevec = (int)evec_coarse.size();
 | 
				
			||||||
 | 
					    int Nsrc = (int)src.size();
 | 
				
			||||||
 | 
					    // make temp variables
 | 
				
			||||||
 | 
					    std::vector<CoarseField> src_coarse(Nsrc,evec_coarse[0].Grid());
 | 
				
			||||||
 | 
					    std::vector<CoarseField> guess_coarse(Nsrc,evec_coarse[0].Grid());    
 | 
				
			||||||
 | 
					    //Preporcessing
 | 
				
			||||||
 | 
					    std::cout << GridLogMessage << "Start BlockProject for loop" << std::endl;
 | 
				
			||||||
 | 
					    for (int j=0;j<Nsrc;j++)
 | 
				
			||||||
 | 
					    {
 | 
				
			||||||
 | 
					    guess_coarse[j] = Zero();
 | 
				
			||||||
 | 
					    std::cout << GridLogMessage << "BlockProject iter: " << j << std::endl;
 | 
				
			||||||
 | 
					    blockProject(src_coarse[j],src[j],subspace);
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					    //deflation set up for eigen vector batchsize 1 and source batch size equal number of sources
 | 
				
			||||||
 | 
					    std::cout << GridLogMessage << "Start ProjectAccum for loop" << std::endl;
 | 
				
			||||||
 | 
					    for (int i=0;i<Nevec;i++)
 | 
				
			||||||
 | 
					    {
 | 
				
			||||||
 | 
					      std::cout << GridLogMessage << "ProjectAccum Nvec: " << i << std::endl;
 | 
				
			||||||
 | 
					      const CoarseField & tmp = evec_coarse[i];
 | 
				
			||||||
 | 
					      for (int j=0;j<Nsrc;j++)
 | 
				
			||||||
 | 
					      {
 | 
				
			||||||
 | 
					        axpy(guess_coarse[j],TensorRemove(innerProduct(tmp,src_coarse[j])) / eval_coarse[i],tmp,guess_coarse[j]);
 | 
				
			||||||
 | 
					      }
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					    //postprocessing
 | 
				
			||||||
 | 
					    std::cout << GridLogMessage << "Start BlockPromote for loop" << std::endl;
 | 
				
			||||||
 | 
					    for (int j=0;j<Nsrc;j++)
 | 
				
			||||||
 | 
					    {
 | 
				
			||||||
 | 
					    std::cout << GridLogMessage << "BlockProject iter: " << j << std::endl;
 | 
				
			||||||
 | 
					    blockPromote(guess_coarse[j],guess[j],subspace);
 | 
				
			||||||
 | 
					    guess[j].Checkerboard() = src[j].Checkerboard();
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					  };
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  };
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -44,6 +44,7 @@ public:
 | 
				
			|||||||
				  int, MinRes);    // Must restart
 | 
									  int, MinRes);    // Must restart
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					//This class is the input parameter class for some testing programs
 | 
				
			||||||
struct LocalCoherenceLanczosParams : Serializable {
 | 
					struct LocalCoherenceLanczosParams : Serializable {
 | 
				
			||||||
public:
 | 
					public:
 | 
				
			||||||
  GRID_SERIALIZABLE_CLASS_MEMBERS(LocalCoherenceLanczosParams,
 | 
					  GRID_SERIALIZABLE_CLASS_MEMBERS(LocalCoherenceLanczosParams,
 | 
				
			||||||
@@ -67,6 +68,7 @@ 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
 | 
				
			||||||
@@ -97,6 +99,7 @@ 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
 | 
				
			||||||
@@ -143,16 +146,24 @@ public:
 | 
				
			|||||||
  LinearOperatorBase<FineField> &_Linop;
 | 
					  LinearOperatorBase<FineField> &_Linop;
 | 
				
			||||||
  RealD                             _coarse_relax_tol;
 | 
					  RealD                             _coarse_relax_tol;
 | 
				
			||||||
  std::vector<FineField>        &_subspace;
 | 
					  std::vector<FineField>        &_subspace;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  int _largestEvalIdxForReport; //The convergence of the LCL is based on the evals of the coarse grid operator, not those of the underlying fine grid operator
 | 
				
			||||||
 | 
					                                //As a result we do not know what the eval range of the fine operator is until the very end, making tuning the Cheby bounds very difficult
 | 
				
			||||||
 | 
					                                //To work around this issue, every restart we separately reconstruct the fine operator eval for the lowest and highest evec and print these
 | 
				
			||||||
 | 
					                                //out alongside the evals of the coarse operator. To do so we need to know the index of the largest eval (i.e. Nstop-1)
 | 
				
			||||||
 | 
					                                //NOTE: If largestEvalIdxForReport=-1 (default) then this is not performed
 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
  ImplicitlyRestartedLanczosSmoothedTester(LinearFunction<CoarseField>   &Poly,
 | 
					  ImplicitlyRestartedLanczosSmoothedTester(LinearFunction<CoarseField>   &Poly,
 | 
				
			||||||
					   OperatorFunction<FineField>   &smoother,
 | 
										   OperatorFunction<FineField>   &smoother,
 | 
				
			||||||
					   LinearOperatorBase<FineField> &Linop,
 | 
										   LinearOperatorBase<FineField> &Linop,
 | 
				
			||||||
					   std::vector<FineField>        &subspace,
 | 
										   std::vector<FineField>        &subspace,
 | 
				
			||||||
					   RealD coarse_relax_tol=5.0e3) 
 | 
										   RealD coarse_relax_tol=5.0e3,
 | 
				
			||||||
 | 
										   int largestEvalIdxForReport=-1) 
 | 
				
			||||||
    : _smoother(smoother), _Linop(Linop), _Poly(Poly), _subspace(subspace),
 | 
					    : _smoother(smoother), _Linop(Linop), _Poly(Poly), _subspace(subspace),
 | 
				
			||||||
      _coarse_relax_tol(coarse_relax_tol)  
 | 
					      _coarse_relax_tol(coarse_relax_tol), _largestEvalIdxForReport(largestEvalIdxForReport)
 | 
				
			||||||
  {    };
 | 
					  {    };
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  //evalMaxApprox: approximation of largest eval of the fine Chebyshev operator (suitably wrapped by block projection)
 | 
				
			||||||
  int TestConvergence(int j,RealD eresid,CoarseField &B, RealD &eval,RealD evalMaxApprox)
 | 
					  int TestConvergence(int j,RealD eresid,CoarseField &B, RealD &eval,RealD evalMaxApprox)
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
    CoarseField v(B);
 | 
					    CoarseField v(B);
 | 
				
			||||||
@@ -175,12 +186,26 @@ public:
 | 
				
			|||||||
	     <<" |H B[i] - eval[i]B[i]|^2 / evalMaxApprox^2 " << std::setw(25) << vv
 | 
						     <<" |H B[i] - eval[i]B[i]|^2 / evalMaxApprox^2 " << std::setw(25) << vv
 | 
				
			||||||
	     <<std::endl;
 | 
						     <<std::endl;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    if(_largestEvalIdxForReport != -1 && (j==0 || j==_largestEvalIdxForReport)){
 | 
				
			||||||
 | 
					      std::cout<<GridLogIRL << "Estimating true eval of fine grid operator for eval idx " << j << std::endl;
 | 
				
			||||||
 | 
					      RealD tmp_eval;
 | 
				
			||||||
 | 
					      ReconstructEval(j,eresid,B,tmp_eval,1.0); //don't use evalMaxApprox of coarse operator! (cf below)
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					    
 | 
				
			||||||
    int conv=0;
 | 
					    int conv=0;
 | 
				
			||||||
    if( (vv<eresid*eresid) ) conv = 1;
 | 
					    if( (vv<eresid*eresid) ) conv = 1;
 | 
				
			||||||
    return conv;
 | 
					    return conv;
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
  int ReconstructEval(int j,RealD eresid,CoarseField &B, RealD &eval,RealD evalMaxApprox)
 | 
					
 | 
				
			||||||
 | 
					  //This function is called at the end of the coarse grid Lanczos. It promotes the coarse eigenvector 'B' to the fine grid,
 | 
				
			||||||
 | 
					  //applies a smoother to the result then computes the computes the *fine grid* eigenvalue (output as 'eval').
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  //evalMaxApprox should be the approximation of the largest eval of the fine Hermop. However when this function is called by IRL it actually passes the largest eval of the *Chebyshev* operator (as this is the max approx used for the TestConvergence above)
 | 
				
			||||||
 | 
					  //As the largest eval of the Chebyshev is typically several orders of magnitude larger this makes the convergence test pass even when it should not.
 | 
				
			||||||
 | 
					  //We therefore ignore evalMaxApprox here and use a value of 1.0 (note this value is already used by TestCoarse)
 | 
				
			||||||
 | 
					  int ReconstructEval(int j,RealD eresid,CoarseField &B, RealD &eval,RealD evalMaxApprox)  
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
 | 
					    evalMaxApprox = 1.0; //cf above
 | 
				
			||||||
    GridBase *FineGrid = _subspace[0].Grid();    
 | 
					    GridBase *FineGrid = _subspace[0].Grid();    
 | 
				
			||||||
    int checkerboard   = _subspace[0].Checkerboard();
 | 
					    int checkerboard   = _subspace[0].Checkerboard();
 | 
				
			||||||
    FineField fB(FineGrid);fB.Checkerboard() =checkerboard;
 | 
					    FineField fB(FineGrid);fB.Checkerboard() =checkerboard;
 | 
				
			||||||
@@ -199,13 +224,13 @@ public:
 | 
				
			|||||||
    eval   = vnum/vden;
 | 
					    eval   = vnum/vden;
 | 
				
			||||||
    fv -= eval*fB;
 | 
					    fv -= eval*fB;
 | 
				
			||||||
    RealD vv = norm2(fv) / ::pow(evalMaxApprox,2.0);
 | 
					    RealD vv = norm2(fv) / ::pow(evalMaxApprox,2.0);
 | 
				
			||||||
 | 
					    if ( j > nbasis ) eresid = eresid*_coarse_relax_tol;
 | 
				
			||||||
 | 
					    
 | 
				
			||||||
    std::cout.precision(13);
 | 
					    std::cout.precision(13);
 | 
				
			||||||
    std::cout<<GridLogIRL  << "[" << std::setw(3)<<j<<"] "
 | 
					    std::cout<<GridLogIRL  << "[" << std::setw(3)<<j<<"] "
 | 
				
			||||||
	     <<"eval = "<<std::setw(25)<< eval << " (" << eval_poly << ")"
 | 
						     <<"eval = "<<std::setw(25)<< eval << " (" << eval_poly << ")"
 | 
				
			||||||
	     <<" |H B[i] - eval[i]B[i]|^2 / evalMaxApprox^2 " << std::setw(25) << vv
 | 
						     <<" |H B[i] - eval[i]B[i]|^2 / evalMaxApprox^2 " << std::setw(25) << vv << " target " << eresid*eresid
 | 
				
			||||||
	     <<std::endl;
 | 
						     <<std::endl;
 | 
				
			||||||
    if ( j > nbasis ) eresid = eresid*_coarse_relax_tol;
 | 
					 | 
				
			||||||
    if( (vv<eresid*eresid) ) return 1;
 | 
					    if( (vv<eresid*eresid) ) return 1;
 | 
				
			||||||
    return 0;
 | 
					    return 0;
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
@@ -283,6 +308,10 @@ public:
 | 
				
			|||||||
    evals_coarse.resize(0);
 | 
					    evals_coarse.resize(0);
 | 
				
			||||||
  };
 | 
					  };
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  //The block inner product is the inner product on the fine grid locally summed over the blocks
 | 
				
			||||||
 | 
					  //to give a Lattice<Scalar> on the coarse grid. This function orthnormalizes the fine-grid subspace
 | 
				
			||||||
 | 
					  //vectors under the block inner product. This step must be performed after computing the fine grid
 | 
				
			||||||
 | 
					  //eigenvectors and before computing the coarse grid eigenvectors.    
 | 
				
			||||||
  void Orthogonalise(void ) {
 | 
					  void Orthogonalise(void ) {
 | 
				
			||||||
    CoarseScalar InnerProd(_CoarseGrid);
 | 
					    CoarseScalar InnerProd(_CoarseGrid);
 | 
				
			||||||
    std::cout << GridLogMessage <<" Gramm-Schmidt pass 1"<<std::endl;
 | 
					    std::cout << GridLogMessage <<" Gramm-Schmidt pass 1"<<std::endl;
 | 
				
			||||||
@@ -326,6 +355,8 @@ public:
 | 
				
			|||||||
    }
 | 
					    }
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  //While this method serves to check the coarse eigenvectors, it also recomputes the eigenvalues from the smoothed reconstructed eigenvectors
 | 
				
			||||||
 | 
					  //hence the smoother can be tuned after running the coarse Lanczos by using a different smoother here
 | 
				
			||||||
  void testCoarse(RealD resid,ChebyParams cheby_smooth,RealD relax) 
 | 
					  void testCoarse(RealD resid,ChebyParams cheby_smooth,RealD relax) 
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
    assert(evals_fine.size() == nbasis);
 | 
					    assert(evals_fine.size() == nbasis);
 | 
				
			||||||
@@ -374,25 +405,31 @@ public:
 | 
				
			|||||||
    evals_fine.resize(nbasis);
 | 
					    evals_fine.resize(nbasis);
 | 
				
			||||||
    subspace.resize(nbasis,_FineGrid);
 | 
					    subspace.resize(nbasis,_FineGrid);
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  //cheby_op: Parameters of the fine grid Chebyshev polynomial used for the Lanczos acceleration
 | 
				
			||||||
 | 
					  //cheby_smooth: Parameters of a separate Chebyshev polynomial used after the Lanczos has completed to smooth out high frequency noise in the reconstructed fine grid eigenvectors prior to computing the eigenvalue
 | 
				
			||||||
 | 
					  //relax: Reconstructed eigenvectors (post smoothing) are naturally not as precise as true eigenvectors. This factor acts as a multiplier on the stopping condition when determining whether the results satisfy the user provided stopping condition
 | 
				
			||||||
  void calcCoarse(ChebyParams cheby_op,ChebyParams cheby_smooth,RealD relax,
 | 
					  void calcCoarse(ChebyParams cheby_op,ChebyParams cheby_smooth,RealD relax,
 | 
				
			||||||
		  int Nstop, int Nk, int Nm,RealD resid, 
 | 
							  int Nstop, int Nk, int Nm,RealD resid, 
 | 
				
			||||||
		  RealD MaxIt, RealD betastp, int MinRes)
 | 
							  RealD MaxIt, RealD betastp, int MinRes)
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
    Chebyshev<FineField>                          Cheby(cheby_op);
 | 
					    Chebyshev<FineField>                          Cheby(cheby_op); //Chebyshev of fine operator on fine grid
 | 
				
			||||||
    ProjectedHermOp<Fobj,CComplex,nbasis>         Op(_FineOp,subspace);
 | 
					    ProjectedHermOp<Fobj,CComplex,nbasis>         Op(_FineOp,subspace); //Fine operator on coarse grid with intermediate fine grid conversion
 | 
				
			||||||
    ProjectedFunctionHermOp<Fobj,CComplex,nbasis> ChebyOp (Cheby,_FineOp,subspace);
 | 
					    ProjectedFunctionHermOp<Fobj,CComplex,nbasis> ChebyOp (Cheby,_FineOp,subspace); //Chebyshev of fine operator on coarse grid with intermediate fine grid conversion
 | 
				
			||||||
    //////////////////////////////////////////////////////////////////////////////////////////////////
 | 
					    //////////////////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
    // create a smoother and see if we can get a cheap convergence test and smooth inside the IRL
 | 
					    // create a smoother and see if we can get a cheap convergence test and smooth inside the IRL
 | 
				
			||||||
    //////////////////////////////////////////////////////////////////////////////////////////////////
 | 
					    //////////////////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    Chebyshev<FineField>                                           ChebySmooth(cheby_smooth);
 | 
					    Chebyshev<FineField>                                           ChebySmooth(cheby_smooth); //lower order Chebyshev of fine operator on fine grid used to smooth regenerated eigenvectors
 | 
				
			||||||
    ImplicitlyRestartedLanczosSmoothedTester<Fobj,CComplex,nbasis> ChebySmoothTester(ChebyOp,ChebySmooth,_FineOp,subspace,relax);
 | 
					    ImplicitlyRestartedLanczosSmoothedTester<Fobj,CComplex,nbasis> ChebySmoothTester(ChebyOp,ChebySmooth,_FineOp,subspace,relax,Nstop-1); 
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    evals_coarse.resize(Nm);
 | 
					    evals_coarse.resize(Nm);
 | 
				
			||||||
    evec_coarse.resize(Nm,_CoarseGrid);
 | 
					    evec_coarse.resize(Nm,_CoarseGrid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    CoarseField src(_CoarseGrid);     src=1.0; 
 | 
					    CoarseField src(_CoarseGrid);     src=1.0; 
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    //Note the "tester" here is also responsible for generating the fine grid eigenvalues which are output into the "evals_coarse" array
 | 
				
			||||||
    ImplicitlyRestartedLanczos<CoarseField> IRL(ChebyOp,ChebyOp,ChebySmoothTester,Nstop,Nk,Nm,resid,MaxIt,betastp,MinRes);
 | 
					    ImplicitlyRestartedLanczos<CoarseField> IRL(ChebyOp,ChebyOp,ChebySmoothTester,Nstop,Nk,Nm,resid,MaxIt,betastp,MinRes);
 | 
				
			||||||
    int Nconv=0;
 | 
					    int Nconv=0;
 | 
				
			||||||
    IRL.calc(evals_coarse,evec_coarse,src,Nconv,false);
 | 
					    IRL.calc(evals_coarse,evec_coarse,src,Nconv,false);
 | 
				
			||||||
@@ -403,6 +440,14 @@ public:
 | 
				
			|||||||
      std::cout << i << " Coarse eval = " << evals_coarse[i]  << std::endl;
 | 
					      std::cout << i << " Coarse eval = " << evals_coarse[i]  << std::endl;
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  //Get the fine eigenvector 'i' by reconstruction
 | 
				
			||||||
 | 
					  void getFineEvecEval(FineField &evec, RealD &eval, const int i) const{
 | 
				
			||||||
 | 
					    blockPromote(evec_coarse[i],evec,subspace);  
 | 
				
			||||||
 | 
					    eval = evals_coarse[i];
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					    
 | 
				
			||||||
 | 
					    
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
NAMESPACE_END(Grid);
 | 
					NAMESPACE_END(Grid);
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -29,6 +29,8 @@ template<class Field> class PowerMethod
 | 
				
			|||||||
      RealD vnum = real(innerProduct(src_n,tmp)); // HermOp. 
 | 
					      RealD vnum = real(innerProduct(src_n,tmp)); // HermOp. 
 | 
				
			||||||
      RealD vden = norm2(src_n); 
 | 
					      RealD vden = norm2(src_n); 
 | 
				
			||||||
      RealD na = vnum/vden; 
 | 
					      RealD na = vnum/vden; 
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      std::cout << GridLogIterative << "PowerMethod: Current approximation of largest eigenvalue " << na << std::endl;
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
      if ( (fabs(evalMaxApprox/na - 1.0) < 0.001) || (i==_MAX_ITER_EST_-1) ) { 
 | 
					      if ( (fabs(evalMaxApprox/na - 1.0) < 0.001) || (i==_MAX_ITER_EST_-1) ) { 
 | 
				
			||||||
 	evalMaxApprox = na; 
 | 
					 	evalMaxApprox = na; 
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -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;
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -43,7 +43,7 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
template<class Field>
 | 
					template<class Field>
 | 
				
			||||||
class PrecGeneralisedConjugateResidualNonHermitian : public LinearFunction<Field> {
 | 
					class PrecGeneralisedConjugateResidualNonHermitian : public LinearFunction<Field> {
 | 
				
			||||||
public:                                                
 | 
					public:                                                
 | 
				
			||||||
 | 
					  using LinearFunction<Field>::operator();
 | 
				
			||||||
  RealD   Tolerance;
 | 
					  RealD   Tolerance;
 | 
				
			||||||
  Integer MaxIterations;
 | 
					  Integer MaxIterations;
 | 
				
			||||||
  int verbose;
 | 
					  int verbose;
 | 
				
			||||||
@@ -119,7 +119,8 @@ public:
 | 
				
			|||||||
  RealD GCRnStep(const Field &src, Field &psi,RealD rsq){
 | 
					  RealD GCRnStep(const Field &src, Field &psi,RealD rsq){
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    RealD cp;
 | 
					    RealD cp;
 | 
				
			||||||
    ComplexD a, b, zAz;
 | 
					    ComplexD a, b;
 | 
				
			||||||
 | 
					    //    ComplexD zAz;
 | 
				
			||||||
    RealD zAAz;
 | 
					    RealD zAAz;
 | 
				
			||||||
    ComplexD rq;
 | 
					    ComplexD rq;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -146,7 +147,7 @@ public:
 | 
				
			|||||||
    //////////////////////////////////
 | 
					    //////////////////////////////////
 | 
				
			||||||
    MatTimer.Start();
 | 
					    MatTimer.Start();
 | 
				
			||||||
    Linop.Op(psi,Az);
 | 
					    Linop.Op(psi,Az);
 | 
				
			||||||
    zAz = innerProduct(Az,psi);
 | 
					    //    zAz = innerProduct(Az,psi);
 | 
				
			||||||
    zAAz= norm2(Az);
 | 
					    zAAz= norm2(Az);
 | 
				
			||||||
    MatTimer.Stop();
 | 
					    MatTimer.Stop();
 | 
				
			||||||
    
 | 
					    
 | 
				
			||||||
@@ -170,7 +171,7 @@ public:
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
    LinalgTimer.Start();
 | 
					    LinalgTimer.Start();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    zAz = innerProduct(Az,psi);
 | 
					    //    zAz = innerProduct(Az,psi);
 | 
				
			||||||
    zAAz= norm2(Az);
 | 
					    zAAz= norm2(Az);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    //p[0],q[0],qq[0] 
 | 
					    //p[0],q[0],qq[0] 
 | 
				
			||||||
@@ -212,7 +213,7 @@ public:
 | 
				
			|||||||
      MatTimer.Start();
 | 
					      MatTimer.Start();
 | 
				
			||||||
      Linop.Op(z,Az);
 | 
					      Linop.Op(z,Az);
 | 
				
			||||||
      MatTimer.Stop();
 | 
					      MatTimer.Stop();
 | 
				
			||||||
      zAz = innerProduct(Az,psi);
 | 
					      //      zAz = innerProduct(Az,psi);
 | 
				
			||||||
      zAAz= norm2(Az);
 | 
					      zAAz= norm2(Az);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
      LinalgTimer.Start();
 | 
					      LinalgTimer.Start();
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -132,6 +132,31 @@ 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) 
 | 
				
			||||||
    {
 | 
					    {
 | 
				
			||||||
@@ -150,24 +175,29 @@ namespace Grid {
 | 
				
			|||||||
      ////////////////////////////////////////////////
 | 
					      ////////////////////////////////////////////////
 | 
				
			||||||
      // Prepare RedBlack source
 | 
					      // Prepare RedBlack source
 | 
				
			||||||
      ////////////////////////////////////////////////
 | 
					      ////////////////////////////////////////////////
 | 
				
			||||||
      for(int b=0;b<nblock;b++){
 | 
					      RedBlackSource(_Matrix,in,src_o);
 | 
				
			||||||
	RedBlackSource(_Matrix,in[b],tmp,src_o[b]);
 | 
						//      for(int b=0;b<nblock;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);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
      for(int b=0;b<nblock;b++){
 | 
					      
 | 
				
			||||||
        if(useSolnAsInitGuess) {
 | 
					      if(useSolnAsInitGuess) {
 | 
				
			||||||
 | 
					        for(int b=0;b<nblock;b++){
 | 
				
			||||||
          pickCheckerboard(Odd, sol_o[b], out[b]);
 | 
					          pickCheckerboard(Odd, sol_o[b], out[b]);
 | 
				
			||||||
        } else {
 | 
					 | 
				
			||||||
          guess(src_o[b],sol_o[b]); 
 | 
					 | 
				
			||||||
        }
 | 
					        }
 | 
				
			||||||
 | 
					      } else {
 | 
				
			||||||
 | 
					        guess(src_o, sol_o); 
 | 
				
			||||||
 | 
					      }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
	if ( subGuess ) { 
 | 
						    if ( subGuess ) { 
 | 
				
			||||||
	  guess_save[b] = sol_o[b];
 | 
					        for(int b=0;b<nblock;b++){
 | 
				
			||||||
	}
 | 
					          guess_save[b] = sol_o[b];
 | 
				
			||||||
 | 
					        }
 | 
				
			||||||
      }
 | 
					      }
 | 
				
			||||||
      //////////////////////////////////////////////////////////////
 | 
					      //////////////////////////////////////////////////////////////
 | 
				
			||||||
      // Call the block solver
 | 
					      // Call the block solver
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -9,14 +9,30 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
#define AccSmall (3)
 | 
					#define AccSmall (3)
 | 
				
			||||||
#define Shared   (4)
 | 
					#define Shared   (4)
 | 
				
			||||||
#define SharedSmall (5)
 | 
					#define SharedSmall (5)
 | 
				
			||||||
 | 
					#undef GRID_MM_VERBOSE 
 | 
				
			||||||
uint64_t total_shared;
 | 
					uint64_t total_shared;
 | 
				
			||||||
uint64_t total_device;
 | 
					uint64_t total_device;
 | 
				
			||||||
uint64_t total_host;;
 | 
					uint64_t total_host;;
 | 
				
			||||||
void MemoryManager::PrintBytes(void)
 | 
					void MemoryManager::PrintBytes(void)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  std::cout << " MemoryManager : "<<total_shared<<" shared      bytes "<<std::endl;
 | 
					  std::cout << " MemoryManager : ------------------------------------ "<<std::endl;
 | 
				
			||||||
  std::cout << " MemoryManager : "<<total_device<<" accelerator bytes "<<std::endl;
 | 
					  std::cout << " MemoryManager : PrintBytes "<<std::endl;
 | 
				
			||||||
  std::cout << " MemoryManager : "<<total_host  <<" cpu         bytes "<<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
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
//////////////////////////////////////////////////////////////////////
 | 
					//////////////////////////////////////////////////////////////////////
 | 
				
			||||||
@@ -24,86 +40,114 @@ void MemoryManager::PrintBytes(void)
 | 
				
			|||||||
//////////////////////////////////////////////////////////////////////
 | 
					//////////////////////////////////////////////////////////////////////
 | 
				
			||||||
MemoryManager::AllocationCacheEntry MemoryManager::Entries[MemoryManager::NallocType][MemoryManager::NallocCacheMax];
 | 
					MemoryManager::AllocationCacheEntry MemoryManager::Entries[MemoryManager::NallocType][MemoryManager::NallocCacheMax];
 | 
				
			||||||
int MemoryManager::Victim[MemoryManager::NallocType];
 | 
					int MemoryManager::Victim[MemoryManager::NallocType];
 | 
				
			||||||
int MemoryManager::Ncache[MemoryManager::NallocType] = { 8, 32, 8, 32, 8, 32 };
 | 
					int MemoryManager::Ncache[MemoryManager::NallocType] = { 2, 8, 2, 8, 2, 8 };
 | 
				
			||||||
 | 
					uint64_t MemoryManager::CacheBytes[MemoryManager::NallocType];
 | 
				
			||||||
//////////////////////////////////////////////////////////////////////
 | 
					//////////////////////////////////////////////////////////////////////
 | 
				
			||||||
// Actual allocation and deallocation utils
 | 
					// Actual allocation and deallocation utils
 | 
				
			||||||
//////////////////////////////////////////////////////////////////////
 | 
					//////////////////////////////////////////////////////////////////////
 | 
				
			||||||
void *MemoryManager::AcceleratorAllocate(size_t bytes)
 | 
					void *MemoryManager::AcceleratorAllocate(size_t bytes)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  total_device+=bytes;
 | 
				
			||||||
  void *ptr = (void *) Lookup(bytes,Acc);
 | 
					  void *ptr = (void *) Lookup(bytes,Acc);
 | 
				
			||||||
  if ( ptr == (void *) NULL ) {
 | 
					  if ( ptr == (void *) NULL ) {
 | 
				
			||||||
    ptr = (void *) acceleratorAllocDevice(bytes);
 | 
					    ptr = (void *) acceleratorAllocDevice(bytes);
 | 
				
			||||||
    total_device+=bytes;
 | 
					 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					#ifdef GRID_MM_VERBOSE
 | 
				
			||||||
 | 
					  std::cout <<"AcceleratorAllocate "<<std::endl;
 | 
				
			||||||
 | 
					  PrintBytes();
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
  return ptr;
 | 
					  return ptr;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
void  MemoryManager::AcceleratorFree    (void *ptr,size_t bytes)
 | 
					void  MemoryManager::AcceleratorFree    (void *ptr,size_t bytes)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  total_device-=bytes;
 | 
				
			||||||
  void *__freeme = Insert(ptr,bytes,Acc);
 | 
					  void *__freeme = Insert(ptr,bytes,Acc);
 | 
				
			||||||
  if ( __freeme ) {
 | 
					  if ( __freeme ) {
 | 
				
			||||||
    acceleratorFreeDevice(__freeme);
 | 
					    acceleratorFreeDevice(__freeme);
 | 
				
			||||||
    total_device-=bytes;
 | 
					 | 
				
			||||||
    //    PrintBytes();
 | 
					 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					#ifdef GRID_MM_VERBOSE
 | 
				
			||||||
 | 
					  std::cout <<"AcceleratorFree "<<std::endl;
 | 
				
			||||||
 | 
					  PrintBytes();
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
void *MemoryManager::SharedAllocate(size_t bytes)
 | 
					void *MemoryManager::SharedAllocate(size_t bytes)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  total_shared+=bytes;
 | 
				
			||||||
  void *ptr = (void *) Lookup(bytes,Shared);
 | 
					  void *ptr = (void *) Lookup(bytes,Shared);
 | 
				
			||||||
  if ( ptr == (void *) NULL ) {
 | 
					  if ( ptr == (void *) NULL ) {
 | 
				
			||||||
    ptr = (void *) acceleratorAllocShared(bytes);
 | 
					    ptr = (void *) acceleratorAllocShared(bytes);
 | 
				
			||||||
    total_shared+=bytes;
 | 
					 | 
				
			||||||
    //    std::cout <<"AcceleratorAllocate: allocated Shared pointer "<<std::hex<<ptr<<std::dec<<std::endl;
 | 
					 | 
				
			||||||
    //    PrintBytes();
 | 
					 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					#ifdef GRID_MM_VERBOSE
 | 
				
			||||||
 | 
					  std::cout <<"SharedAllocate "<<std::endl;
 | 
				
			||||||
 | 
					  PrintBytes();
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
  return ptr;
 | 
					  return ptr;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
void  MemoryManager::SharedFree    (void *ptr,size_t bytes)
 | 
					void  MemoryManager::SharedFree    (void *ptr,size_t bytes)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  total_shared-=bytes;
 | 
				
			||||||
  void *__freeme = Insert(ptr,bytes,Shared);
 | 
					  void *__freeme = Insert(ptr,bytes,Shared);
 | 
				
			||||||
  if ( __freeme ) {
 | 
					  if ( __freeme ) {
 | 
				
			||||||
    acceleratorFreeShared(__freeme);
 | 
					    acceleratorFreeShared(__freeme);
 | 
				
			||||||
    total_shared-=bytes;
 | 
					 | 
				
			||||||
    //    PrintBytes();
 | 
					 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					#ifdef GRID_MM_VERBOSE
 | 
				
			||||||
 | 
					  std::cout <<"SharedFree "<<std::endl;
 | 
				
			||||||
 | 
					  PrintBytes();
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
#ifdef GRID_UVM
 | 
					#ifdef GRID_UVM
 | 
				
			||||||
void *MemoryManager::CpuAllocate(size_t bytes)
 | 
					void *MemoryManager::CpuAllocate(size_t bytes)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  total_host+=bytes;
 | 
				
			||||||
  void *ptr = (void *) Lookup(bytes,Cpu);
 | 
					  void *ptr = (void *) Lookup(bytes,Cpu);
 | 
				
			||||||
  if ( ptr == (void *) NULL ) {
 | 
					  if ( ptr == (void *) NULL ) {
 | 
				
			||||||
    ptr = (void *) acceleratorAllocShared(bytes);
 | 
					    ptr = (void *) acceleratorAllocShared(bytes);
 | 
				
			||||||
    total_host+=bytes;
 | 
					 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					#ifdef GRID_MM_VERBOSE
 | 
				
			||||||
 | 
					  std::cout <<"CpuAllocate "<<std::endl;
 | 
				
			||||||
 | 
					  PrintBytes();
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
  return ptr;
 | 
					  return ptr;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
void  MemoryManager::CpuFree    (void *_ptr,size_t bytes)
 | 
					void  MemoryManager::CpuFree    (void *_ptr,size_t bytes)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  total_host-=bytes;
 | 
				
			||||||
  NotifyDeletion(_ptr);
 | 
					  NotifyDeletion(_ptr);
 | 
				
			||||||
  void *__freeme = Insert(_ptr,bytes,Cpu);
 | 
					  void *__freeme = Insert(_ptr,bytes,Cpu);
 | 
				
			||||||
  if ( __freeme ) { 
 | 
					  if ( __freeme ) { 
 | 
				
			||||||
    acceleratorFreeShared(__freeme);
 | 
					    acceleratorFreeShared(__freeme);
 | 
				
			||||||
    total_host-=bytes;
 | 
					 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					#ifdef GRID_MM_VERBOSE
 | 
				
			||||||
 | 
					  std::cout <<"CpuFree "<<std::endl;
 | 
				
			||||||
 | 
					  PrintBytes();
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
#else
 | 
					#else
 | 
				
			||||||
void *MemoryManager::CpuAllocate(size_t bytes)
 | 
					void *MemoryManager::CpuAllocate(size_t bytes)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  total_host+=bytes;
 | 
				
			||||||
  void *ptr = (void *) Lookup(bytes,Cpu);
 | 
					  void *ptr = (void *) Lookup(bytes,Cpu);
 | 
				
			||||||
  if ( ptr == (void *) NULL ) {
 | 
					  if ( ptr == (void *) NULL ) {
 | 
				
			||||||
    ptr = (void *) acceleratorAllocCpu(bytes);
 | 
					    ptr = (void *) acceleratorAllocCpu(bytes);
 | 
				
			||||||
    total_host+=bytes;
 | 
					 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					#ifdef GRID_MM_VERBOSE
 | 
				
			||||||
 | 
					  std::cout <<"CpuAllocate "<<std::endl;
 | 
				
			||||||
 | 
					  PrintBytes();
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
  return ptr;
 | 
					  return ptr;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
void  MemoryManager::CpuFree    (void *_ptr,size_t bytes)
 | 
					void  MemoryManager::CpuFree    (void *_ptr,size_t bytes)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  total_host-=bytes;
 | 
				
			||||||
  NotifyDeletion(_ptr);
 | 
					  NotifyDeletion(_ptr);
 | 
				
			||||||
  void *__freeme = Insert(_ptr,bytes,Cpu);
 | 
					  void *__freeme = Insert(_ptr,bytes,Cpu);
 | 
				
			||||||
  if ( __freeme ) { 
 | 
					  if ( __freeme ) { 
 | 
				
			||||||
    acceleratorFreeCpu(__freeme);
 | 
					    acceleratorFreeCpu(__freeme);
 | 
				
			||||||
    total_host-=bytes;
 | 
					 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					#ifdef GRID_MM_VERBOSE
 | 
				
			||||||
 | 
					  std::cout <<"CpuFree "<<std::endl;
 | 
				
			||||||
 | 
					  PrintBytes();
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
#endif
 | 
					#endif
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -115,7 +159,6 @@ void MemoryManager::Init(void)
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
  char * str;
 | 
					  char * str;
 | 
				
			||||||
  int Nc;
 | 
					  int Nc;
 | 
				
			||||||
  int NcS;
 | 
					 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
  str= getenv("GRID_ALLOC_NCACHE_LARGE");
 | 
					  str= getenv("GRID_ALLOC_NCACHE_LARGE");
 | 
				
			||||||
  if ( str ) {
 | 
					  if ( str ) {
 | 
				
			||||||
@@ -181,13 +224,13 @@ void *MemoryManager::Insert(void *ptr,size_t bytes,int type)
 | 
				
			|||||||
#ifdef ALLOCATION_CACHE
 | 
					#ifdef ALLOCATION_CACHE
 | 
				
			||||||
  bool small = (bytes < GRID_ALLOC_SMALL_LIMIT);
 | 
					  bool small = (bytes < GRID_ALLOC_SMALL_LIMIT);
 | 
				
			||||||
  int cache = type + small;
 | 
					  int cache = type + small;
 | 
				
			||||||
  return Insert(ptr,bytes,Entries[cache],Ncache[cache],Victim[cache]);  
 | 
					  return Insert(ptr,bytes,Entries[cache],Ncache[cache],Victim[cache],CacheBytes[cache]);  
 | 
				
			||||||
#else
 | 
					#else
 | 
				
			||||||
  return ptr;
 | 
					  return ptr;
 | 
				
			||||||
#endif
 | 
					#endif
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
void *MemoryManager::Insert(void *ptr,size_t bytes,AllocationCacheEntry *entries,int ncache,int &victim) 
 | 
					void *MemoryManager::Insert(void *ptr,size_t bytes,AllocationCacheEntry *entries,int ncache,int &victim, uint64_t &cacheBytes) 
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  assert(ncache>0);
 | 
					  assert(ncache>0);
 | 
				
			||||||
#ifdef GRID_OMP
 | 
					#ifdef GRID_OMP
 | 
				
			||||||
@@ -211,6 +254,7 @@ void *MemoryManager::Insert(void *ptr,size_t bytes,AllocationCacheEntry *entries
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
  if ( entries[v].valid ) {
 | 
					  if ( entries[v].valid ) {
 | 
				
			||||||
    ret = entries[v].address;
 | 
					    ret = entries[v].address;
 | 
				
			||||||
 | 
					    cacheBytes -= entries[v].bytes;
 | 
				
			||||||
    entries[v].valid = 0;
 | 
					    entries[v].valid = 0;
 | 
				
			||||||
    entries[v].address = NULL;
 | 
					    entries[v].address = NULL;
 | 
				
			||||||
    entries[v].bytes = 0;
 | 
					    entries[v].bytes = 0;
 | 
				
			||||||
@@ -219,6 +263,7 @@ void *MemoryManager::Insert(void *ptr,size_t bytes,AllocationCacheEntry *entries
 | 
				
			|||||||
  entries[v].address=ptr;
 | 
					  entries[v].address=ptr;
 | 
				
			||||||
  entries[v].bytes  =bytes;
 | 
					  entries[v].bytes  =bytes;
 | 
				
			||||||
  entries[v].valid  =1;
 | 
					  entries[v].valid  =1;
 | 
				
			||||||
 | 
					  cacheBytes += bytes;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  return ret;
 | 
					  return ret;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
@@ -228,13 +273,13 @@ void *MemoryManager::Lookup(size_t bytes,int type)
 | 
				
			|||||||
#ifdef ALLOCATION_CACHE
 | 
					#ifdef ALLOCATION_CACHE
 | 
				
			||||||
  bool small = (bytes < GRID_ALLOC_SMALL_LIMIT);
 | 
					  bool small = (bytes < GRID_ALLOC_SMALL_LIMIT);
 | 
				
			||||||
  int cache = type+small;
 | 
					  int cache = type+small;
 | 
				
			||||||
  return Lookup(bytes,Entries[cache],Ncache[cache]);
 | 
					  return Lookup(bytes,Entries[cache],Ncache[cache],CacheBytes[cache]);
 | 
				
			||||||
#else
 | 
					#else
 | 
				
			||||||
  return NULL;
 | 
					  return NULL;
 | 
				
			||||||
#endif
 | 
					#endif
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
void *MemoryManager::Lookup(size_t bytes,AllocationCacheEntry *entries,int ncache) 
 | 
					void *MemoryManager::Lookup(size_t bytes,AllocationCacheEntry *entries,int ncache,uint64_t & cacheBytes) 
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  assert(ncache>0);
 | 
					  assert(ncache>0);
 | 
				
			||||||
#ifdef GRID_OMP
 | 
					#ifdef GRID_OMP
 | 
				
			||||||
@@ -243,6 +288,7 @@ void *MemoryManager::Lookup(size_t bytes,AllocationCacheEntry *entries,int ncach
 | 
				
			|||||||
  for(int e=0;e<ncache;e++){
 | 
					  for(int e=0;e<ncache;e++){
 | 
				
			||||||
    if ( entries[e].valid && ( entries[e].bytes == bytes ) ) {
 | 
					    if ( entries[e].valid && ( entries[e].bytes == bytes ) ) {
 | 
				
			||||||
      entries[e].valid = 0;
 | 
					      entries[e].valid = 0;
 | 
				
			||||||
 | 
					      cacheBytes -= entries[e].bytes;
 | 
				
			||||||
      return entries[e].address;
 | 
					      return entries[e].address;
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -82,14 +82,15 @@ private:
 | 
				
			|||||||
  static AllocationCacheEntry Entries[NallocType][NallocCacheMax];
 | 
					  static AllocationCacheEntry Entries[NallocType][NallocCacheMax];
 | 
				
			||||||
  static int Victim[NallocType];
 | 
					  static int Victim[NallocType];
 | 
				
			||||||
  static int Ncache[NallocType];
 | 
					  static int Ncache[NallocType];
 | 
				
			||||||
 | 
					  static uint64_t CacheBytes[NallocType];
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  /////////////////////////////////////////////////
 | 
					  /////////////////////////////////////////////////
 | 
				
			||||||
  // Free pool
 | 
					  // Free pool
 | 
				
			||||||
  /////////////////////////////////////////////////
 | 
					  /////////////////////////////////////////////////
 | 
				
			||||||
  static void *Insert(void *ptr,size_t bytes,int type) ;
 | 
					  static void *Insert(void *ptr,size_t bytes,int type) ;
 | 
				
			||||||
  static void *Lookup(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) ;
 | 
					  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) ;
 | 
					  static void *Lookup(size_t bytes,AllocationCacheEntry *entries,int ncache,uint64_t &cbytes) ;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  static void PrintBytes(void);
 | 
					  static void PrintBytes(void);
 | 
				
			||||||
 public:
 | 
					 public:
 | 
				
			||||||
@@ -169,6 +170,7 @@ private:
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
 public:
 | 
					 public:
 | 
				
			||||||
  static void Print(void);
 | 
					  static void Print(void);
 | 
				
			||||||
 | 
					  static void PrintState( void* CpuPtr);
 | 
				
			||||||
  static int   isOpen   (void* CpuPtr);
 | 
					  static int   isOpen   (void* CpuPtr);
 | 
				
			||||||
  static void  ViewClose(void* CpuPtr,ViewMode mode);
 | 
					  static void  ViewClose(void* CpuPtr,ViewMode mode);
 | 
				
			||||||
  static void *ViewOpen (void* CpuPtr,size_t bytes,ViewMode mode,ViewAdvise hint);
 | 
					  static void *ViewOpen (void* CpuPtr,size_t bytes,ViewMode mode,ViewAdvise hint);
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -3,7 +3,7 @@
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
#warning "Using explicit device memory copies"
 | 
					#warning "Using explicit device memory copies"
 | 
				
			||||||
NAMESPACE_BEGIN(Grid);
 | 
					NAMESPACE_BEGIN(Grid);
 | 
				
			||||||
//define dprintf(...) printf ( __VA_ARGS__ ); fflush(stdout);
 | 
					//#define dprintf(...) printf ( __VA_ARGS__ ); fflush(stdout);
 | 
				
			||||||
#define dprintf(...)
 | 
					#define dprintf(...)
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -429,6 +429,7 @@ void  MemoryManager::NotifyDeletion(void *_ptr)
 | 
				
			|||||||
}
 | 
					}
 | 
				
			||||||
void  MemoryManager::Print(void)
 | 
					void  MemoryManager::Print(void)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  PrintBytes();
 | 
				
			||||||
  std::cout << GridLogDebug << "--------------------------------------------" << std::endl;
 | 
					  std::cout << GridLogDebug << "--------------------------------------------" << std::endl;
 | 
				
			||||||
  std::cout << GridLogDebug << "Memory Manager                             " << std::endl;
 | 
					  std::cout << GridLogDebug << "Memory Manager                             " << std::endl;
 | 
				
			||||||
  std::cout << GridLogDebug << "--------------------------------------------" << std::endl;
 | 
					  std::cout << GridLogDebug << "--------------------------------------------" << std::endl;
 | 
				
			||||||
@@ -473,6 +474,32 @@ int   MemoryManager::isOpen   (void* _CpuPtr)
 | 
				
			|||||||
  }
 | 
					  }
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					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);
 | 
					NAMESPACE_END(Grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#endif
 | 
					#endif
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -16,6 +16,10 @@ uint64_t  MemoryManager::DeviceToHostXfer;
 | 
				
			|||||||
void  MemoryManager::ViewClose(void* AccPtr,ViewMode mode){};
 | 
					void  MemoryManager::ViewClose(void* AccPtr,ViewMode mode){};
 | 
				
			||||||
void *MemoryManager::ViewOpen(void* CpuPtr,size_t bytes,ViewMode mode,ViewAdvise hint){ return CpuPtr; };
 | 
					void *MemoryManager::ViewOpen(void* CpuPtr,size_t bytes,ViewMode mode,ViewAdvise hint){ return CpuPtr; };
 | 
				
			||||||
int   MemoryManager::isOpen   (void* CpuPtr) { return 0;}
 | 
					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::Print(void){};
 | 
				
			||||||
void  MemoryManager::NotifyDeletion(void *ptr){};
 | 
					void  MemoryManager::NotifyDeletion(void *ptr){};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -33,6 +33,8 @@ 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
 | 
				
			||||||
///////////////////////////////////////////////////////////////
 | 
					///////////////////////////////////////////////////////////////
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -35,6 +35,8 @@ 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:    
 | 
				
			||||||
@@ -51,10 +53,11 @@ public:
 | 
				
			|||||||
  // Communicator should know nothing of the physics grid, only processor grid.
 | 
					  // Communicator should know nothing of the physics grid, only processor grid.
 | 
				
			||||||
  ////////////////////////////////////////////
 | 
					  ////////////////////////////////////////////
 | 
				
			||||||
  int              _Nprocessors;     // How many in all
 | 
					  int              _Nprocessors;     // How many in all
 | 
				
			||||||
  Coordinate _processors;      // Which dimensions get relayed out over processors lanes.
 | 
					 | 
				
			||||||
  int              _processor;       // linear processor rank
 | 
					  int              _processor;       // linear processor rank
 | 
				
			||||||
  Coordinate _processor_coor;  // linear processor coordinate
 | 
					 | 
				
			||||||
  unsigned long    _ndimension;
 | 
					  unsigned long    _ndimension;
 | 
				
			||||||
 | 
					  Coordinate _shm_processors;  // Which dimensions get relayed out over processors lanes.
 | 
				
			||||||
 | 
					  Coordinate _processors;      // Which dimensions get relayed out over processors lanes.
 | 
				
			||||||
 | 
					  Coordinate _processor_coor;  // linear processor coordinate
 | 
				
			||||||
  static Grid_MPI_Comm      communicator_world;
 | 
					  static Grid_MPI_Comm      communicator_world;
 | 
				
			||||||
  Grid_MPI_Comm             communicator;
 | 
					  Grid_MPI_Comm             communicator;
 | 
				
			||||||
  std::vector<Grid_MPI_Comm> communicator_halo;
 | 
					  std::vector<Grid_MPI_Comm> communicator_halo;
 | 
				
			||||||
@@ -95,8 +98,9 @@ public:
 | 
				
			|||||||
  int                      BossRank(void)          ;
 | 
					  int                      BossRank(void)          ;
 | 
				
			||||||
  int                      ThisRank(void)          ;
 | 
					  int                      ThisRank(void)          ;
 | 
				
			||||||
  const Coordinate & ThisProcessorCoor(void) ;
 | 
					  const Coordinate & ThisProcessorCoor(void) ;
 | 
				
			||||||
 | 
					  const Coordinate & ShmGrid(void)  { return _shm_processors; }  ;
 | 
				
			||||||
  const Coordinate & ProcessorGrid(void)     ;
 | 
					  const Coordinate & ProcessorGrid(void)     ;
 | 
				
			||||||
  int                      ProcessorCount(void)    ;
 | 
					  int                ProcessorCount(void)    ;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  ////////////////////////////////////////////////////////////////////////////////
 | 
					  ////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
  // very VERY rarely (Log, serial RNG) we need world without a grid
 | 
					  // very VERY rarely (Log, serial RNG) we need world without a grid
 | 
				
			||||||
@@ -140,16 +144,16 @@ public:
 | 
				
			|||||||
		      int bytes);
 | 
							      int bytes);
 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
  double StencilSendToRecvFrom(void *xmit,
 | 
					  double StencilSendToRecvFrom(void *xmit,
 | 
				
			||||||
			       int xmit_to_rank,
 | 
								       int xmit_to_rank,int do_xmit,
 | 
				
			||||||
			       void *recv,
 | 
								       void *recv,
 | 
				
			||||||
			       int recv_from_rank,
 | 
								       int recv_from_rank,int do_recv,
 | 
				
			||||||
			       int bytes,int dir);
 | 
								       int bytes,int dir);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  double StencilSendToRecvFromBegin(std::vector<CommsRequest_t> &list,
 | 
					  double StencilSendToRecvFromBegin(std::vector<CommsRequest_t> &list,
 | 
				
			||||||
				    void *xmit,
 | 
									    void *xmit,
 | 
				
			||||||
				    int xmit_to_rank,
 | 
									    int xmit_to_rank,int do_xmit,
 | 
				
			||||||
				    void *recv,
 | 
									    void *recv,
 | 
				
			||||||
				    int recv_from_rank,
 | 
									    int recv_from_rank,int do_recv,
 | 
				
			||||||
				    int bytes,int dir);
 | 
									    int bytes,int dir);
 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -106,7 +106,7 @@ CartesianCommunicator::CartesianCommunicator(const Coordinate &processors)
 | 
				
			|||||||
  // Remap using the shared memory optimising routine
 | 
					  // Remap using the shared memory optimising routine
 | 
				
			||||||
  // The remap creates a comm which must be freed
 | 
					  // The remap creates a comm which must be freed
 | 
				
			||||||
  ////////////////////////////////////////////////////
 | 
					  ////////////////////////////////////////////////////
 | 
				
			||||||
  GlobalSharedMemory::OptimalCommunicator    (processors,optimal_comm);
 | 
					  GlobalSharedMemory::OptimalCommunicator    (processors,optimal_comm,_shm_processors);
 | 
				
			||||||
  InitFromMPICommunicator(processors,optimal_comm);
 | 
					  InitFromMPICommunicator(processors,optimal_comm);
 | 
				
			||||||
  SetCommunicator(optimal_comm);
 | 
					  SetCommunicator(optimal_comm);
 | 
				
			||||||
  ///////////////////////////////////////////////////
 | 
					  ///////////////////////////////////////////////////
 | 
				
			||||||
@@ -124,12 +124,13 @@ CartesianCommunicator::CartesianCommunicator(const Coordinate &processors,const
 | 
				
			|||||||
  int parent_ndimension = parent._ndimension; assert(_ndimension >= parent._ndimension);
 | 
					  int parent_ndimension = parent._ndimension; assert(_ndimension >= parent._ndimension);
 | 
				
			||||||
  Coordinate parent_processor_coor(_ndimension,0);
 | 
					  Coordinate parent_processor_coor(_ndimension,0);
 | 
				
			||||||
  Coordinate parent_processors    (_ndimension,1);
 | 
					  Coordinate parent_processors    (_ndimension,1);
 | 
				
			||||||
 | 
					  Coordinate shm_processors       (_ndimension,1);
 | 
				
			||||||
  // Can make 5d grid from 4d etc...
 | 
					  // Can make 5d grid from 4d etc...
 | 
				
			||||||
  int pad = _ndimension-parent_ndimension;
 | 
					  int pad = _ndimension-parent_ndimension;
 | 
				
			||||||
  for(int d=0;d<parent_ndimension;d++){
 | 
					  for(int d=0;d<parent_ndimension;d++){
 | 
				
			||||||
    parent_processor_coor[pad+d]=parent._processor_coor[d];
 | 
					    parent_processor_coor[pad+d]=parent._processor_coor[d];
 | 
				
			||||||
    parent_processors    [pad+d]=parent._processors[d];
 | 
					    parent_processors    [pad+d]=parent._processors[d];
 | 
				
			||||||
 | 
					    shm_processors       [pad+d]=parent._shm_processors[d];
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  //////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
					  //////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
@@ -154,6 +155,7 @@ CartesianCommunicator::CartesianCommunicator(const Coordinate &processors,const
 | 
				
			|||||||
    ccoor[d] = parent_processor_coor[d] % processors[d];
 | 
					    ccoor[d] = parent_processor_coor[d] % processors[d];
 | 
				
			||||||
    scoor[d] = parent_processor_coor[d] / processors[d];
 | 
					    scoor[d] = parent_processor_coor[d] / processors[d];
 | 
				
			||||||
    ssize[d] = parent_processors[d]     / processors[d];
 | 
					    ssize[d] = parent_processors[d]     / processors[d];
 | 
				
			||||||
 | 
					    if ( processors[d] < shm_processors[d] ) shm_processors[d] = processors[d]; // subnode splitting.
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  // rank within subcomm ; srank is rank of subcomm within blocks of subcomms
 | 
					  // rank within subcomm ; srank is rank of subcomm within blocks of subcomms
 | 
				
			||||||
@@ -335,22 +337,22 @@ void CartesianCommunicator::SendToRecvFrom(void *xmit,
 | 
				
			|||||||
}
 | 
					}
 | 
				
			||||||
// Basic Halo comms primitive
 | 
					// Basic Halo comms primitive
 | 
				
			||||||
double CartesianCommunicator::StencilSendToRecvFrom( void *xmit,
 | 
					double CartesianCommunicator::StencilSendToRecvFrom( void *xmit,
 | 
				
			||||||
						     int dest,
 | 
											     int dest, int dox,
 | 
				
			||||||
						     void *recv,
 | 
											     void *recv,
 | 
				
			||||||
						     int from,
 | 
											     int from, int dor,
 | 
				
			||||||
						     int bytes,int dir)
 | 
											     int bytes,int dir)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  std::vector<CommsRequest_t> list;
 | 
					  std::vector<CommsRequest_t> list;
 | 
				
			||||||
  double offbytes = StencilSendToRecvFromBegin(list,xmit,dest,recv,from,bytes,dir);
 | 
					  double offbytes = StencilSendToRecvFromBegin(list,xmit,dest,dox,recv,from,dor,bytes,dir);
 | 
				
			||||||
  StencilSendToRecvFromComplete(list,dir);
 | 
					  StencilSendToRecvFromComplete(list,dir);
 | 
				
			||||||
  return offbytes;
 | 
					  return offbytes;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
double CartesianCommunicator::StencilSendToRecvFromBegin(std::vector<CommsRequest_t> &list,
 | 
					double CartesianCommunicator::StencilSendToRecvFromBegin(std::vector<CommsRequest_t> &list,
 | 
				
			||||||
							 void *xmit,
 | 
												 void *xmit,
 | 
				
			||||||
							 int dest,
 | 
												 int dest,int dox,
 | 
				
			||||||
							 void *recv,
 | 
												 void *recv,
 | 
				
			||||||
							 int from,
 | 
												 int from,int dor,
 | 
				
			||||||
							 int bytes,int dir)
 | 
												 int bytes,int dir)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  int ncomm  =communicator_halo.size();
 | 
					  int ncomm  =communicator_halo.size();
 | 
				
			||||||
@@ -370,30 +372,42 @@ double CartesianCommunicator::StencilSendToRecvFromBegin(std::vector<CommsReques
 | 
				
			|||||||
  double off_node_bytes=0.0;
 | 
					  double off_node_bytes=0.0;
 | 
				
			||||||
  int tag;
 | 
					  int tag;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  if ( gfrom ==MPI_UNDEFINED) {
 | 
					  if ( dor ) {
 | 
				
			||||||
    tag= dir+from*32;
 | 
					    if ( (gfrom ==MPI_UNDEFINED) || Stencil_force_mpi ) {
 | 
				
			||||||
    ierr=MPI_Irecv(recv, bytes, MPI_CHAR,from,tag,communicator_halo[commdir],&rrq);
 | 
					      tag= dir+from*32;
 | 
				
			||||||
    assert(ierr==0);
 | 
					      ierr=MPI_Irecv(recv, bytes, MPI_CHAR,from,tag,communicator_halo[commdir],&rrq);
 | 
				
			||||||
    list.push_back(rrq);
 | 
					      assert(ierr==0);
 | 
				
			||||||
    off_node_bytes+=bytes;
 | 
					      list.push_back(rrq);
 | 
				
			||||||
 | 
					      off_node_bytes+=bytes;
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
  if ( gdest == MPI_UNDEFINED ) {
 | 
					  if (dox) {
 | 
				
			||||||
    tag= dir+_processor*32;
 | 
					    if ( (gdest == MPI_UNDEFINED) || Stencil_force_mpi ) {
 | 
				
			||||||
    ierr =MPI_Isend(xmit, bytes, MPI_CHAR,dest,tag,communicator_halo[commdir],&xrq);
 | 
					      tag= dir+_processor*32;
 | 
				
			||||||
    assert(ierr==0);
 | 
					      ierr =MPI_Isend(xmit, bytes, MPI_CHAR,dest,tag,communicator_halo[commdir],&xrq);
 | 
				
			||||||
    list.push_back(xrq);
 | 
					      assert(ierr==0);
 | 
				
			||||||
    off_node_bytes+=bytes;
 | 
					      list.push_back(xrq);
 | 
				
			||||||
 | 
					      off_node_bytes+=bytes;
 | 
				
			||||||
 | 
					    } else {
 | 
				
			||||||
 | 
					      void *shm = (void *) this->ShmBufferTranslate(dest,recv);
 | 
				
			||||||
 | 
					      assert(shm!=NULL);
 | 
				
			||||||
 | 
					      acceleratorCopyDeviceToDeviceAsynch(xmit,shm,bytes);
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
  if ( CommunicatorPolicy == CommunicatorPolicySequential ) {
 | 
					  if ( CommunicatorPolicy == CommunicatorPolicySequential ) {
 | 
				
			||||||
    this->StencilSendToRecvFromComplete(list,dir);
 | 
					    this->StencilSendToRecvFromComplete(list,dir);
 | 
				
			||||||
 | 
					    list.resize(0);
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  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> &list,int dir)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  //   std::cout << "Copy Synchronised\n"<<std::endl;
 | 
				
			||||||
 | 
					  acceleratorCopySynchronise();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  int nreq=list.size();
 | 
					  int nreq=list.size();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  if (nreq==0) return;
 | 
					  if (nreq==0) return;
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -45,12 +45,14 @@ void CartesianCommunicator::Init(int *argc, char *** arv)
 | 
				
			|||||||
CartesianCommunicator::CartesianCommunicator(const Coordinate &processors,const CartesianCommunicator &parent,int &srank) 
 | 
					CartesianCommunicator::CartesianCommunicator(const Coordinate &processors,const CartesianCommunicator &parent,int &srank) 
 | 
				
			||||||
  : CartesianCommunicator(processors) 
 | 
					  : CartesianCommunicator(processors) 
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  _shm_processors = Coordinate(processors.size(),1);
 | 
				
			||||||
  srank=0;
 | 
					  srank=0;
 | 
				
			||||||
  SetCommunicator(communicator_world);
 | 
					  SetCommunicator(communicator_world);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
CartesianCommunicator::CartesianCommunicator(const Coordinate &processors)
 | 
					CartesianCommunicator::CartesianCommunicator(const Coordinate &processors)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  _shm_processors = Coordinate(processors.size(),1);
 | 
				
			||||||
  _processors = processors;
 | 
					  _processors = processors;
 | 
				
			||||||
  _ndimension = processors.size();  assert(_ndimension>=1);
 | 
					  _ndimension = processors.size();  assert(_ndimension>=1);
 | 
				
			||||||
  _processor_coor.resize(_ndimension);
 | 
					  _processor_coor.resize(_ndimension);
 | 
				
			||||||
@@ -111,18 +113,18 @@ void CartesianCommunicator::ShiftedRanks(int dim,int shift,int &source,int &dest
 | 
				
			|||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
double CartesianCommunicator::StencilSendToRecvFrom( void *xmit,
 | 
					double CartesianCommunicator::StencilSendToRecvFrom( void *xmit,
 | 
				
			||||||
						     int xmit_to_rank,
 | 
											     int xmit_to_rank,int dox,
 | 
				
			||||||
						     void *recv,
 | 
											     void *recv,
 | 
				
			||||||
						     int recv_from_rank,
 | 
											     int recv_from_rank,int dor,
 | 
				
			||||||
						     int bytes, int dir)
 | 
											     int bytes, int dir)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  return 2.0*bytes;
 | 
					  return 2.0*bytes;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
double CartesianCommunicator::StencilSendToRecvFromBegin(std::vector<CommsRequest_t> &list,
 | 
					double CartesianCommunicator::StencilSendToRecvFromBegin(std::vector<CommsRequest_t> &list,
 | 
				
			||||||
							 void *xmit,
 | 
												 void *xmit,
 | 
				
			||||||
							 int xmit_to_rank,
 | 
												 int xmit_to_rank,int dox,
 | 
				
			||||||
							 void *recv,
 | 
												 void *recv,
 | 
				
			||||||
							 int recv_from_rank,
 | 
												 int recv_from_rank,int dor,
 | 
				
			||||||
							 int bytes, int dir)
 | 
												 int bytes, int dir)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  return 2.0*bytes;
 | 
					  return 2.0*bytes;
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -93,9 +93,10 @@ public:
 | 
				
			|||||||
  // Create an optimal reordered communicator that makes MPI_Cart_create get it right
 | 
					  // Create an optimal reordered communicator that makes MPI_Cart_create get it right
 | 
				
			||||||
  //////////////////////////////////////////////////////////////////////////////////////
 | 
					  //////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
  static void Init(Grid_MPI_Comm comm); // Typically MPI_COMM_WORLD
 | 
					  static void Init(Grid_MPI_Comm comm); // Typically MPI_COMM_WORLD
 | 
				
			||||||
  static void OptimalCommunicator            (const Coordinate &processors,Grid_MPI_Comm & optimal_comm);  // Turns MPI_COMM_WORLD into right layout for Cartesian
 | 
					  // Turns MPI_COMM_WORLD into right layout for Cartesian
 | 
				
			||||||
  static void OptimalCommunicatorHypercube   (const Coordinate &processors,Grid_MPI_Comm & optimal_comm);  // Turns MPI_COMM_WORLD into right layout for Cartesian
 | 
					  static void OptimalCommunicator            (const Coordinate &processors,Grid_MPI_Comm & optimal_comm,Coordinate &ShmDims); 
 | 
				
			||||||
  static void OptimalCommunicatorSharedMemory(const Coordinate &processors,Grid_MPI_Comm & optimal_comm);  // Turns MPI_COMM_WORLD into right layout for Cartesian
 | 
					  static void OptimalCommunicatorHypercube   (const Coordinate &processors,Grid_MPI_Comm & optimal_comm,Coordinate &ShmDims); 
 | 
				
			||||||
 | 
					  static void OptimalCommunicatorSharedMemory(const Coordinate &processors,Grid_MPI_Comm & optimal_comm,Coordinate &ShmDims); 
 | 
				
			||||||
  static void GetShmDims(const Coordinate &WorldDims,Coordinate &ShmDims);
 | 
					  static void GetShmDims(const Coordinate &WorldDims,Coordinate &ShmDims);
 | 
				
			||||||
  ///////////////////////////////////////////////////
 | 
					  ///////////////////////////////////////////////////
 | 
				
			||||||
  // Provide shared memory facilities off comm world
 | 
					  // Provide shared memory facilities off comm world
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -35,6 +35,9 @@ Author: Christoph Lehner <christoph@lhnr.de>
 | 
				
			|||||||
#endif
 | 
					#endif
 | 
				
			||||||
#ifdef GRID_HIP
 | 
					#ifdef GRID_HIP
 | 
				
			||||||
#include <hip/hip_runtime_api.h>
 | 
					#include <hip/hip_runtime_api.h>
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
 | 
					#ifdef GRID_SYCl
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#endif
 | 
					#endif
 | 
				
			||||||
 | 
					
 | 
				
			||||||
NAMESPACE_BEGIN(Grid); 
 | 
					NAMESPACE_BEGIN(Grid); 
 | 
				
			||||||
@@ -70,6 +73,7 @@ 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 ?
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  /////////////////////////////////////////////////////////////////////
 | 
					  /////////////////////////////////////////////////////////////////////
 | 
				
			||||||
@@ -148,7 +152,7 @@ int Log2Size(int TwoToPower,int MAXLOG2)
 | 
				
			|||||||
  }
 | 
					  }
 | 
				
			||||||
  return log2size;
 | 
					  return log2size;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
void GlobalSharedMemory::OptimalCommunicator(const Coordinate &processors,Grid_MPI_Comm & optimal_comm)
 | 
					void GlobalSharedMemory::OptimalCommunicator(const Coordinate &processors,Grid_MPI_Comm & optimal_comm,Coordinate &SHM)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  //////////////////////////////////////////////////////////////////////////////
 | 
					  //////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
  // Look and see if it looks like an HPE 8600 based on hostname conventions
 | 
					  // Look and see if it looks like an HPE 8600 based on hostname conventions
 | 
				
			||||||
@@ -161,8 +165,8 @@ void GlobalSharedMemory::OptimalCommunicator(const Coordinate &processors,Grid_M
 | 
				
			|||||||
  gethostname(name,namelen);
 | 
					  gethostname(name,namelen);
 | 
				
			||||||
  int nscan = sscanf(name,"r%di%dn%d",&R,&I,&N) ;
 | 
					  int nscan = sscanf(name,"r%di%dn%d",&R,&I,&N) ;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  if(nscan==3 && HPEhypercube ) OptimalCommunicatorHypercube(processors,optimal_comm);
 | 
					  if(nscan==3 && HPEhypercube ) OptimalCommunicatorHypercube(processors,optimal_comm,SHM);
 | 
				
			||||||
  else                          OptimalCommunicatorSharedMemory(processors,optimal_comm);
 | 
					  else                          OptimalCommunicatorSharedMemory(processors,optimal_comm,SHM);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
static inline int divides(int a,int b)
 | 
					static inline int divides(int a,int b)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
@@ -217,7 +221,7 @@ void GlobalSharedMemory::GetShmDims(const Coordinate &WorldDims,Coordinate &ShmD
 | 
				
			|||||||
    dim=(dim+1) %ndimension;
 | 
					    dim=(dim+1) %ndimension;
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
void GlobalSharedMemory::OptimalCommunicatorHypercube(const Coordinate &processors,Grid_MPI_Comm & optimal_comm)
 | 
					void GlobalSharedMemory::OptimalCommunicatorHypercube(const Coordinate &processors,Grid_MPI_Comm & optimal_comm,Coordinate &SHM)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  ////////////////////////////////////////////////////////////////
 | 
					  ////////////////////////////////////////////////////////////////
 | 
				
			||||||
  // Assert power of two shm_size.
 | 
					  // Assert power of two shm_size.
 | 
				
			||||||
@@ -290,7 +294,8 @@ void GlobalSharedMemory::OptimalCommunicatorHypercube(const Coordinate &processo
 | 
				
			|||||||
  Coordinate HyperCoor(ndimension);
 | 
					  Coordinate HyperCoor(ndimension);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  GetShmDims(WorldDims,ShmDims);
 | 
					  GetShmDims(WorldDims,ShmDims);
 | 
				
			||||||
 | 
					  SHM = ShmDims;
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
  ////////////////////////////////////////////////////////////////
 | 
					  ////////////////////////////////////////////////////////////////
 | 
				
			||||||
  // Establish torus of processes and nodes with sub-blockings
 | 
					  // Establish torus of processes and nodes with sub-blockings
 | 
				
			||||||
  ////////////////////////////////////////////////////////////////
 | 
					  ////////////////////////////////////////////////////////////////
 | 
				
			||||||
@@ -337,7 +342,7 @@ void GlobalSharedMemory::OptimalCommunicatorHypercube(const Coordinate &processo
 | 
				
			|||||||
  int ierr= MPI_Comm_split(WorldComm,0,rank,&optimal_comm);
 | 
					  int ierr= MPI_Comm_split(WorldComm,0,rank,&optimal_comm);
 | 
				
			||||||
  assert(ierr==0);
 | 
					  assert(ierr==0);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
void GlobalSharedMemory::OptimalCommunicatorSharedMemory(const Coordinate &processors,Grid_MPI_Comm & optimal_comm)
 | 
					void GlobalSharedMemory::OptimalCommunicatorSharedMemory(const Coordinate &processors,Grid_MPI_Comm & optimal_comm,Coordinate &SHM)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  ////////////////////////////////////////////////////////////////
 | 
					  ////////////////////////////////////////////////////////////////
 | 
				
			||||||
  // Identify subblock of ranks on node spreading across dims
 | 
					  // Identify subblock of ranks on node spreading across dims
 | 
				
			||||||
@@ -349,6 +354,8 @@ void GlobalSharedMemory::OptimalCommunicatorSharedMemory(const Coordinate &proce
 | 
				
			|||||||
  Coordinate ShmCoor(ndimension);    Coordinate NodeCoor(ndimension);   Coordinate WorldCoor(ndimension);
 | 
					  Coordinate ShmCoor(ndimension);    Coordinate NodeCoor(ndimension);   Coordinate WorldCoor(ndimension);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  GetShmDims(WorldDims,ShmDims);
 | 
					  GetShmDims(WorldDims,ShmDims);
 | 
				
			||||||
 | 
					  SHM=ShmDims;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  ////////////////////////////////////////////////////////////////
 | 
					  ////////////////////////////////////////////////////////////////
 | 
				
			||||||
  // Establish torus of processes and nodes with sub-blockings
 | 
					  // Establish torus of processes and nodes with sub-blockings
 | 
				
			||||||
  ////////////////////////////////////////////////////////////////
 | 
					  ////////////////////////////////////////////////////////////////
 | 
				
			||||||
@@ -446,7 +453,47 @@ void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags)
 | 
				
			|||||||
////////////////////////////////////////////////////////////////////////////////////////////
 | 
					////////////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
// Hugetlbfs mapping intended
 | 
					// Hugetlbfs mapping intended
 | 
				
			||||||
////////////////////////////////////////////////////////////////////////////////////////////
 | 
					////////////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
#if defined(GRID_CUDA) ||defined(GRID_HIP)
 | 
					#if defined(GRID_CUDA) ||defined(GRID_HIP)  || defined(GRID_SYCL)
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					//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 ; 
 | 
				
			||||||
@@ -470,18 +517,16 @@ void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags)
 | 
				
			|||||||
  // Each MPI rank should allocate our own buffer
 | 
					  // Each MPI rank should allocate our own buffer
 | 
				
			||||||
  ///////////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
					  ///////////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
  ShmCommBuf = acceleratorAllocDevice(bytes);
 | 
					  ShmCommBuf = acceleratorAllocDevice(bytes);
 | 
				
			||||||
 | 
					 | 
				
			||||||
  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 acceleratorAllocDevice failed NULL pointer for " << bytes<<" bytes " << std::endl;
 | 
				
			||||||
    exit(EXIT_FAILURE);  
 | 
					    exit(EXIT_FAILURE);  
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
  //  if ( WorldRank == 0 ){
 | 
					  if ( WorldRank == 0 ){
 | 
				
			||||||
  if ( 1 ){
 | 
					 | 
				
			||||||
    std::cout << WorldRank << header " SharedMemoryMPI.cc acceleratorAllocDevice "<< bytes 
 | 
					    std::cout << WorldRank << header " SharedMemoryMPI.cc acceleratorAllocDevice "<< 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
 | 
				
			||||||
  ///////////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
					  ///////////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
@@ -491,6 +536,29 @@ void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags)
 | 
				
			|||||||
    //////////////////////////////////////////////////
 | 
					    //////////////////////////////////////////////////
 | 
				
			||||||
    // 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
 | 
					#ifdef GRID_CUDA
 | 
				
			||||||
    cudaIpcMemHandle_t handle;
 | 
					    cudaIpcMemHandle_t handle;
 | 
				
			||||||
    if ( r==WorldShmRank ) { 
 | 
					    if ( r==WorldShmRank ) { 
 | 
				
			||||||
@@ -511,6 +579,7 @@ void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags)
 | 
				
			|||||||
      }
 | 
					      }
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
#endif
 | 
					#endif
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    //////////////////////////////////////////////////
 | 
					    //////////////////////////////////////////////////
 | 
				
			||||||
    // Share this IPC handle across the Shm Comm
 | 
					    // Share this IPC handle across the Shm Comm
 | 
				
			||||||
    //////////////////////////////////////////////////
 | 
					    //////////////////////////////////////////////////
 | 
				
			||||||
@@ -526,7 +595,35 @@ 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 ) {
 | 
				
			||||||
 | 
					      thisBuf = nullptr;
 | 
				
			||||||
 | 
					      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
 | 
					#ifdef GRID_CUDA
 | 
				
			||||||
    if ( r!=WorldShmRank ) { 
 | 
					    if ( r!=WorldShmRank ) { 
 | 
				
			||||||
      auto err = cudaIpcOpenMemHandle(&thisBuf,handle,cudaIpcMemLazyEnablePeerAccess);
 | 
					      auto err = cudaIpcOpenMemHandle(&thisBuf,handle,cudaIpcMemLazyEnablePeerAccess);
 | 
				
			||||||
@@ -548,6 +645,7 @@ void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags)
 | 
				
			|||||||
    ///////////////////////////////////////////////////////////////
 | 
					    ///////////////////////////////////////////////////////////////
 | 
				
			||||||
    // Save a copy of the device buffers
 | 
					    // Save a copy of the device buffers
 | 
				
			||||||
    ///////////////////////////////////////////////////////////////
 | 
					    ///////////////////////////////////////////////////////////////
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
    WorldShmCommBufs[r] = thisBuf;
 | 
					    WorldShmCommBufs[r] = thisBuf;
 | 
				
			||||||
#else
 | 
					#else
 | 
				
			||||||
    WorldShmCommBufs[r] = ShmCommBuf;
 | 
					    WorldShmCommBufs[r] = ShmCommBuf;
 | 
				
			||||||
@@ -557,6 +655,8 @@ void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags)
 | 
				
			|||||||
  _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)
 | 
				
			||||||
@@ -727,16 +827,16 @@ void GlobalSharedMemory::SharedMemoryAllocate(uint64_t bytes, int flags)
 | 
				
			|||||||
/////////////////////////////////////////////////////////////////////////
 | 
					/////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
void GlobalSharedMemory::SharedMemoryZero(void *dest,size_t bytes)
 | 
					void GlobalSharedMemory::SharedMemoryZero(void *dest,size_t bytes)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
#ifdef GRID_CUDA
 | 
					#if defined(GRID_CUDA) || defined(GRID_HIP) || defined(GRID_SYCL)
 | 
				
			||||||
  cudaMemset(dest,0,bytes);
 | 
					  acceleratorMemSet(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,void *src,size_t bytes)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
#ifdef GRID_CUDA
 | 
					#if defined(GRID_CUDA) || defined(GRID_HIP) || defined(GRID_SYCL)
 | 
				
			||||||
  cudaMemcpy(dest,src,bytes,cudaMemcpyDefault);
 | 
					  acceleratorCopyToDevice(src,dest,bytes);
 | 
				
			||||||
#else   
 | 
					#else   
 | 
				
			||||||
  bcopy(src,dest,bytes);
 | 
					  bcopy(src,dest,bytes);
 | 
				
			||||||
#endif
 | 
					#endif
 | 
				
			||||||
@@ -800,7 +900,7 @@ void SharedMemory::SetCommunicator(Grid_MPI_Comm comm)
 | 
				
			|||||||
  }
 | 
					  }
 | 
				
			||||||
#endif
 | 
					#endif
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  SharedMemoryTest();
 | 
					  //SharedMemoryTest();
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
//////////////////////////////////////////////////////////////////
 | 
					//////////////////////////////////////////////////////////////////
 | 
				
			||||||
// On node barrier
 | 
					// On node barrier
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -48,9 +48,10 @@ void GlobalSharedMemory::Init(Grid_MPI_Comm comm)
 | 
				
			|||||||
  _ShmSetup=1;
 | 
					  _ShmSetup=1;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
void GlobalSharedMemory::OptimalCommunicator(const Coordinate &processors,Grid_MPI_Comm & optimal_comm)
 | 
					void GlobalSharedMemory::OptimalCommunicator(const Coordinate &processors,Grid_MPI_Comm & optimal_comm,Coordinate &SHM)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  optimal_comm = WorldComm;
 | 
					  optimal_comm = WorldComm;
 | 
				
			||||||
 | 
					  SHM = Coordinate(processors.size(),1);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
////////////////////////////////////////////////////////////////////////////////////////////
 | 
					////////////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -122,8 +122,8 @@ 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];
 | 
				
			||||||
  cshiftVector<vobj> send_buf(buffer_size);
 | 
					  static cshiftVector<vobj> send_buf; send_buf.resize(buffer_size);
 | 
				
			||||||
  cshiftVector<vobj> recv_buf(buffer_size);
 | 
					  static cshiftVector<vobj> recv_buf; recv_buf.resize(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);
 | 
				
			||||||
@@ -198,8 +198,8 @@ 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);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  std::vector<cshiftVector<scalar_object> >  send_buf_extract(Nsimd);
 | 
					  static std::vector<cshiftVector<scalar_object> >  send_buf_extract; send_buf_extract.resize(Nsimd);
 | 
				
			||||||
  std::vector<cshiftVector<scalar_object> >  recv_buf_extract(Nsimd);
 | 
					  static std::vector<cshiftVector<scalar_object> >  recv_buf_extract; recv_buf_extract.resize(Nsimd);
 | 
				
			||||||
  scalar_object *  recv_buf_extract_mpi;
 | 
					  scalar_object *  recv_buf_extract_mpi;
 | 
				
			||||||
  scalar_object *  send_buf_extract_mpi;
 | 
					  scalar_object *  send_buf_extract_mpi;
 | 
				
			||||||
 
 | 
					 
 | 
				
			||||||
@@ -294,8 +294,8 @@ 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];
 | 
				
			||||||
  cshiftVector<vobj> send_buf_v(buffer_size);
 | 
					  static cshiftVector<vobj> send_buf_v; send_buf_v.resize(buffer_size);
 | 
				
			||||||
  cshiftVector<vobj> recv_buf_v(buffer_size);
 | 
					  static cshiftVector<vobj> recv_buf_v; recv_buf_v.resize(buffer_size);
 | 
				
			||||||
  vobj *send_buf;
 | 
					  vobj *send_buf;
 | 
				
			||||||
  vobj *recv_buf;
 | 
					  vobj *recv_buf;
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
@@ -381,8 +381,8 @@ 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);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  std::vector<cshiftVector<scalar_object> >  send_buf_extract(Nsimd);
 | 
					  static std::vector<cshiftVector<scalar_object> >  send_buf_extract; send_buf_extract.resize(Nsimd);
 | 
				
			||||||
  std::vector<cshiftVector<scalar_object> >  recv_buf_extract(Nsimd);
 | 
					  static std::vector<cshiftVector<scalar_object> >  recv_buf_extract; recv_buf_extract.resize(Nsimd);
 | 
				
			||||||
  scalar_object *  recv_buf_extract_mpi;
 | 
					  scalar_object *  recv_buf_extract_mpi;
 | 
				
			||||||
  scalar_object *  send_buf_extract_mpi;
 | 
					  scalar_object *  send_buf_extract_mpi;
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -46,3 +46,4 @@ Author: Peter Boyle <paboyle@ph.ed.ac.uk>
 | 
				
			|||||||
#include <Grid/lattice/Lattice_unary.h>
 | 
					#include <Grid/lattice/Lattice_unary.h>
 | 
				
			||||||
#include <Grid/lattice/Lattice_transfer.h>
 | 
					#include <Grid/lattice/Lattice_transfer.h>
 | 
				
			||||||
#include <Grid/lattice/Lattice_basis.h>
 | 
					#include <Grid/lattice/Lattice_basis.h>
 | 
				
			||||||
 | 
					#include <Grid/lattice/Lattice_crc.h>
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -225,7 +225,7 @@ void axpy(Lattice<vobj> &ret,sobj a,const Lattice<vobj> &x,const Lattice<vobj> &
 | 
				
			|||||||
  autoView( x_v , x, AcceleratorRead);
 | 
					  autoView( x_v , x, AcceleratorRead);
 | 
				
			||||||
  autoView( y_v , y, AcceleratorRead);
 | 
					  autoView( y_v , y, AcceleratorRead);
 | 
				
			||||||
  accelerator_for(ss,x_v.size(),vobj::Nsimd(),{
 | 
					  accelerator_for(ss,x_v.size(),vobj::Nsimd(),{
 | 
				
			||||||
    auto tmp = a*x_v(ss)+y_v(ss);
 | 
					    auto tmp = a*coalescedRead(x_v[ss])+coalescedRead(y_v[ss]);
 | 
				
			||||||
    coalescedWrite(ret_v[ss],tmp);
 | 
					    coalescedWrite(ret_v[ss],tmp);
 | 
				
			||||||
  });
 | 
					  });
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -88,6 +88,13 @@ public:
 | 
				
			|||||||
    LatticeView<vobj> accessor(*( (LatticeAccelerator<vobj> *) this),mode);
 | 
					    LatticeView<vobj> accessor(*( (LatticeAccelerator<vobj> *) this),mode);
 | 
				
			||||||
    accessor.ViewClose();
 | 
					    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
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -125,7 +125,7 @@ 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_v[k][sss]));
 | 
						  coalescedWrite(Bp[ss*nrot+j],tmp+ Qt_p[jj*Nm+k] * coalescedRead(basis_vp[k][sss]));
 | 
				
			||||||
	}
 | 
						}
 | 
				
			||||||
      });
 | 
					      });
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -134,7 +134,7 @@ 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_v[jj][sss],coalescedRead(Bp[ss*nrot+j]));
 | 
						coalescedWrite(basis_vp[jj][sss],coalescedRead(Bp[ss*nrot+j]));
 | 
				
			||||||
      });
 | 
					      });
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
#endif
 | 
					#endif
 | 
				
			||||||
 
 | 
				
			|||||||
							
								
								
									
										55
									
								
								Grid/lattice/Lattice_crc.h
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										55
									
								
								Grid/lattice/Lattice_crc.h
									
									
									
									
									
										Normal file
									
								
							@@ -0,0 +1,55 @@
 | 
				
			|||||||
 | 
					/*************************************************************************************
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Grid physics library, www.github.com/paboyle/Grid 
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Source file: ./lib/lattice/Lattice_crc.h
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Copyright (C) 2021
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					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);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class vobj> void DumpSliceNorm(std::string s,Lattice<vobj> &f,int mu=-1)
 | 
				
			||||||
 | 
					{
 | 
				
			||||||
 | 
					  auto ff = localNorm2(f);
 | 
				
			||||||
 | 
					  if ( mu==-1 ) mu = f.Grid()->Nd()-1;
 | 
				
			||||||
 | 
					  typedef typename vobj::tensor_reduced normtype;
 | 
				
			||||||
 | 
					  typedef typename normtype::scalar_object scalar;
 | 
				
			||||||
 | 
					  std::vector<scalar> sff;
 | 
				
			||||||
 | 
					  sliceSum(ff,sff,mu);
 | 
				
			||||||
 | 
					  for(int t=0;t<sff.size();t++){
 | 
				
			||||||
 | 
					    std::cout << s<<" "<<t<<" "<<sff[t]<<std::endl;
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class vobj> uint32_t crc(Lattice<vobj> & buf)
 | 
				
			||||||
 | 
					{
 | 
				
			||||||
 | 
					  autoView( buf_v , buf, CpuRead);
 | 
				
			||||||
 | 
					  return ::crc32(0L,(unsigned char *)&buf_v[0],(size_t)sizeof(vobj)*buf.oSites());
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#define CRC(U) std::cout << "FingerPrint "<<__FILE__ <<" "<< __LINE__ <<" "<< #U <<" "<<crc(U)<<std::endl;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					NAMESPACE_END(Grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -125,6 +125,12 @@ void pokeSite(const sobj &s,Lattice<vobj> &l,const Coordinate &site){
 | 
				
			|||||||
//////////////////////////////////////////////////////////
 | 
					//////////////////////////////////////////////////////////
 | 
				
			||||||
// Peek a scalar object from the SIMD array
 | 
					// Peek a scalar object from the SIMD array
 | 
				
			||||||
//////////////////////////////////////////////////////////
 | 
					//////////////////////////////////////////////////////////
 | 
				
			||||||
 | 
					template<class vobj>
 | 
				
			||||||
 | 
					typename vobj::scalar_object peekSite(const Lattice<vobj> &l,const Coordinate &site){
 | 
				
			||||||
 | 
					  typename vobj::scalar_object s;
 | 
				
			||||||
 | 
					  peekSite(s,l,site);
 | 
				
			||||||
 | 
					  return s;
 | 
				
			||||||
 | 
					}        
 | 
				
			||||||
template<class vobj,class sobj>
 | 
					template<class vobj,class sobj>
 | 
				
			||||||
void peekSite(sobj &s,const Lattice<vobj> &l,const Coordinate &site){
 | 
					void peekSite(sobj &s,const Lattice<vobj> &l,const Coordinate &site){
 | 
				
			||||||
        
 | 
					        
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -142,6 +142,15 @@ inline typename vobj::scalar_objectD sumD(const vobj *arg, Integer osites)
 | 
				
			|||||||
  return sumD_cpu(arg,osites);
 | 
					  return sumD_cpu(arg,osites);
 | 
				
			||||||
#endif  
 | 
					#endif  
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					template<class vobj>
 | 
				
			||||||
 | 
					inline typename vobj::scalar_objectD sumD_large(const vobj *arg, Integer osites)
 | 
				
			||||||
 | 
					{
 | 
				
			||||||
 | 
					#if defined(GRID_CUDA)||defined(GRID_HIP)
 | 
				
			||||||
 | 
					  return sumD_gpu_large(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)
 | 
				
			||||||
@@ -159,6 +168,22 @@ inline typename vobj::scalar_object sum(const Lattice<vobj> &arg)
 | 
				
			|||||||
  return ssum;
 | 
					  return ssum;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class vobj>
 | 
				
			||||||
 | 
					inline typename vobj::scalar_object sum_large(const Lattice<vobj> &arg)
 | 
				
			||||||
 | 
					{
 | 
				
			||||||
 | 
					#if defined(GRID_CUDA)||defined(GRID_HIP)
 | 
				
			||||||
 | 
					  autoView( arg_v, arg, AcceleratorRead);
 | 
				
			||||||
 | 
					  Integer osites = arg.Grid()->oSites();
 | 
				
			||||||
 | 
					  auto ssum= sum_gpu_large(&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);
 | 
				
			||||||
 | 
					  return ssum;
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
					////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
// Deterministic Reduction operations
 | 
					// Deterministic Reduction operations
 | 
				
			||||||
////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
					////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
@@ -207,6 +232,7 @@ inline ComplexD rankInnerProduct(const Lattice<vobj> &left,const Lattice<vobj> &
 | 
				
			|||||||
  const uint64_t sites = grid->oSites();
 | 
					  const uint64_t sites = grid->oSites();
 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
  // Might make all code paths go this way.
 | 
					  // Might make all code paths go this way.
 | 
				
			||||||
 | 
					#if 0
 | 
				
			||||||
  typedef decltype(innerProductD(vobj(),vobj())) inner_t;
 | 
					  typedef decltype(innerProductD(vobj(),vobj())) 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];
 | 
				
			||||||
@@ -216,15 +242,31 @@ inline ComplexD rankInnerProduct(const Lattice<vobj> &left,const Lattice<vobj> &
 | 
				
			|||||||
    autoView( right_v,right, AcceleratorRead);
 | 
					    autoView( right_v,right, AcceleratorRead);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    // GPU - SIMT lane compliance...
 | 
					    // GPU - SIMT lane compliance...
 | 
				
			||||||
    accelerator_for( ss, sites, 1,{
 | 
					    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);
 | 
						coalescedWrite(inner_tmp_v[ss],innerProductD(x_l,y_l));
 | 
				
			||||||
    });
 | 
					    });
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					#else
 | 
				
			||||||
 | 
					  typedef decltype(innerProduct(vobj(),vobj())) inner_t;
 | 
				
			||||||
 | 
					  Vector<inner_t> inner_tmp(sites);
 | 
				
			||||||
 | 
					  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,{
 | 
				
			||||||
 | 
						auto x_l = left_v(ss);
 | 
				
			||||||
 | 
						auto y_l = right_v(ss);
 | 
				
			||||||
 | 
						coalescedWrite(inner_tmp_v[ss],innerProduct(x_l,y_l));
 | 
				
			||||||
 | 
					    });
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
  // This is in single precision and fails some tests
 | 
					  // This is in single precision and fails some tests
 | 
				
			||||||
  auto anrm = sum(inner_tmp_v,sites);  
 | 
					  auto anrm = sumD(inner_tmp_v,sites);  
 | 
				
			||||||
  nrm = anrm;
 | 
					  nrm = anrm;
 | 
				
			||||||
  return nrm;
 | 
					  return nrm;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
@@ -258,7 +300,7 @@ axpby_norm_fast(Lattice<vobj> &z,sobj a,sobj b,const Lattice<vobj> &x,const Latt
 | 
				
			|||||||
  conformable(x,y);
 | 
					  conformable(x,y);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  typedef typename vobj::scalar_type scalar_type;
 | 
					  typedef typename vobj::scalar_type scalar_type;
 | 
				
			||||||
  typedef typename vobj::vector_typeD vector_type;
 | 
					  //  typedef typename vobj::vector_typeD vector_type;
 | 
				
			||||||
  RealD  nrm;
 | 
					  RealD  nrm;
 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
  GridBase *grid = x.Grid();
 | 
					  GridBase *grid = x.Grid();
 | 
				
			||||||
@@ -270,17 +312,29 @@ axpby_norm_fast(Lattice<vobj> &z,sobj a,sobj b,const Lattice<vobj> &x,const Latt
 | 
				
			|||||||
  autoView( x_v, x, AcceleratorRead);
 | 
					  autoView( x_v, x, AcceleratorRead);
 | 
				
			||||||
  autoView( y_v, y, AcceleratorRead);
 | 
					  autoView( y_v, y, AcceleratorRead);
 | 
				
			||||||
  autoView( z_v, z, AcceleratorWrite);
 | 
					  autoView( z_v, z, AcceleratorWrite);
 | 
				
			||||||
 | 
					#if 0
 | 
				
			||||||
  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);
 | 
					      coalescedWrite(inner_tmp_v[ss],innerProductD(tmp,tmp));
 | 
				
			||||||
      z_v[ss]=tmp;
 | 
					      coalescedWrite(z_v[ss],tmp);
 | 
				
			||||||
  });
 | 
					  });
 | 
				
			||||||
  nrm = real(TensorRemove(sum(inner_tmp_v,sites)));
 | 
					  nrm = real(TensorRemove(sum(inner_tmp_v,sites)));
 | 
				
			||||||
 | 
					#else
 | 
				
			||||||
 | 
					  typedef decltype(innerProduct(x_v[0],y_v[0])) inner_t;
 | 
				
			||||||
 | 
					  Vector<inner_t> inner_tmp(sites);
 | 
				
			||||||
 | 
					  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(inner_tmp_v,sites)));
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
  grid->GlobalSum(nrm);
 | 
					  grid->GlobalSum(nrm);
 | 
				
			||||||
  return nrm; 
 | 
					  return nrm; 
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
@@ -361,6 +415,7 @@ 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);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -419,20 +474,19 @@ 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] ) {
 | 
				
			||||||
      gsum=lsSum[lt];
 | 
					      result[t]=lsSum[lt];
 | 
				
			||||||
    } else {
 | 
					    } else {
 | 
				
			||||||
      gsum=Zero();
 | 
					      result[t]=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>
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -23,7 +23,7 @@ unsigned int nextPow2(Iterator x) {
 | 
				
			|||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template <class Iterator>
 | 
					template <class Iterator>
 | 
				
			||||||
void getNumBlocksAndThreads(const Iterator n, const size_t sizeofsobj, Iterator &threads, Iterator &blocks) {
 | 
					int getNumBlocksAndThreads(const Iterator n, const size_t sizeofsobj, Iterator &threads, Iterator &blocks) {
 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
  int device;
 | 
					  int device;
 | 
				
			||||||
#ifdef GRID_CUDA
 | 
					#ifdef GRID_CUDA
 | 
				
			||||||
@@ -37,14 +37,13 @@ void getNumBlocksAndThreads(const Iterator n, const size_t sizeofsobj, Iterator
 | 
				
			|||||||
  Iterator sharedMemPerBlock   = gpu_props[device].sharedMemPerBlock;
 | 
					  Iterator sharedMemPerBlock   = gpu_props[device].sharedMemPerBlock;
 | 
				
			||||||
  Iterator maxThreadsPerBlock  = gpu_props[device].maxThreadsPerBlock;
 | 
					  Iterator maxThreadsPerBlock  = gpu_props[device].maxThreadsPerBlock;
 | 
				
			||||||
  Iterator multiProcessorCount = gpu_props[device].multiProcessorCount;
 | 
					  Iterator multiProcessorCount = gpu_props[device].multiProcessorCount;
 | 
				
			||||||
  
 | 
					  /*  
 | 
				
			||||||
  std::cout << GridLogDebug << "GPU has:" << std::endl;
 | 
					  std::cout << GridLogDebug << "GPU has:" << std::endl;
 | 
				
			||||||
  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) {
 | 
				
			||||||
    std::cout << GridLogError << "The warp size of the GPU in use does not match the warp size set when compiling Grid." << std::endl;
 | 
					    std::cout << GridLogError << "The warp size of the GPU in use does not match the warp size set when compiling Grid." << std::endl;
 | 
				
			||||||
    exit(EXIT_FAILURE);
 | 
					    exit(EXIT_FAILURE);
 | 
				
			||||||
@@ -52,10 +51,14 @@ 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;
 | 
				
			||||||
 | 
					    return 0;
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
  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);
 | 
				
			||||||
  
 | 
					  return 1;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template <class sobj, class Iterator>
 | 
					template <class sobj, class Iterator>
 | 
				
			||||||
@@ -195,7 +198,7 @@ __global__ void reduceKernel(const vobj *lat, sobj *buffer, Iterator n) {
 | 
				
			|||||||
// Possibly promote to double and sum
 | 
					// Possibly promote to double and sum
 | 
				
			||||||
/////////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
					/////////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
template <class vobj>
 | 
					template <class vobj>
 | 
				
			||||||
inline typename vobj::scalar_objectD sumD_gpu(const vobj *lat, Integer osites) 
 | 
					inline typename vobj::scalar_objectD sumD_gpu_small(const vobj *lat, Integer osites) 
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  typedef typename vobj::scalar_objectD sobj;
 | 
					  typedef typename vobj::scalar_objectD sobj;
 | 
				
			||||||
  typedef decltype(lat) Iterator;
 | 
					  typedef decltype(lat) Iterator;
 | 
				
			||||||
@@ -204,7 +207,9 @@ inline typename vobj::scalar_objectD sumD_gpu(const vobj *lat, Integer osites)
 | 
				
			|||||||
  Integer size = osites*nsimd;
 | 
					  Integer size = osites*nsimd;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  Integer numThreads, numBlocks;
 | 
					  Integer numThreads, numBlocks;
 | 
				
			||||||
  getNumBlocksAndThreads(size, sizeof(sobj), numThreads, numBlocks);
 | 
					  int ok = getNumBlocksAndThreads(size, sizeof(sobj), numThreads, numBlocks);
 | 
				
			||||||
 | 
					  assert(ok);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  Integer smemSize = numThreads * sizeof(sobj);
 | 
					  Integer smemSize = numThreads * sizeof(sobj);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  Vector<sobj> buffer(numBlocks);
 | 
					  Vector<sobj> buffer(numBlocks);
 | 
				
			||||||
@@ -215,6 +220,54 @@ inline typename vobj::scalar_objectD sumD_gpu(const vobj *lat, Integer osites)
 | 
				
			|||||||
  auto result = buffer_v[0];
 | 
					  auto result = buffer_v[0];
 | 
				
			||||||
  return result;
 | 
					  return result;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template <class vobj>
 | 
				
			||||||
 | 
					inline typename vobj::scalar_objectD sumD_gpu_large(const vobj *lat, Integer osites)
 | 
				
			||||||
 | 
					{
 | 
				
			||||||
 | 
					  typedef typename vobj::vector_type  vector;
 | 
				
			||||||
 | 
					  typedef typename vobj::scalar_typeD scalarD;
 | 
				
			||||||
 | 
					  typedef typename vobj::scalar_objectD sobj;
 | 
				
			||||||
 | 
					  sobj ret;
 | 
				
			||||||
 | 
					  scalarD *ret_p = (scalarD *)&ret;
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					  const int words = sizeof(vobj)/sizeof(vector);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  Vector<vector> buffer(osites);
 | 
				
			||||||
 | 
					  vector *dat = (vector *)lat;
 | 
				
			||||||
 | 
					  vector *buf = &buffer[0];
 | 
				
			||||||
 | 
					  iScalar<vector> *tbuf =(iScalar<vector> *)  &buffer[0];
 | 
				
			||||||
 | 
					  for(int w=0;w<words;w++) {
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    accelerator_for(ss,osites,1,{
 | 
				
			||||||
 | 
						buf[ss] = dat[ss*words+w];
 | 
				
			||||||
 | 
					      });
 | 
				
			||||||
 | 
					      
 | 
				
			||||||
 | 
					    ret_p[w] = sumD_gpu_small(tbuf,osites);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					  return ret;
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template <class vobj>
 | 
				
			||||||
 | 
					inline typename vobj::scalar_objectD sumD_gpu(const vobj *lat, Integer osites)
 | 
				
			||||||
 | 
					{
 | 
				
			||||||
 | 
					  typedef typename vobj::vector_type  vector;
 | 
				
			||||||
 | 
					  typedef typename vobj::scalar_typeD scalarD;
 | 
				
			||||||
 | 
					  typedef typename vobj::scalar_objectD sobj;
 | 
				
			||||||
 | 
					  sobj ret;
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					  Integer nsimd= vobj::Nsimd();
 | 
				
			||||||
 | 
					  Integer size = osites*nsimd;
 | 
				
			||||||
 | 
					  Integer numThreads, numBlocks;
 | 
				
			||||||
 | 
					  int ok = getNumBlocksAndThreads(size, sizeof(sobj), numThreads, numBlocks);
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					  if ( ok ) {
 | 
				
			||||||
 | 
					    ret = sumD_gpu_small(lat,osites);
 | 
				
			||||||
 | 
					  } else {
 | 
				
			||||||
 | 
					    ret = sumD_gpu_large(lat,osites);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					  return ret;
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
/////////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
					/////////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
// Return as same precision as input performing reduction in double precision though
 | 
					// Return as same precision as input performing reduction in double precision though
 | 
				
			||||||
/////////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
					/////////////////////////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
@@ -227,6 +280,13 @@ inline typename vobj::scalar_object sum_gpu(const vobj *lat, Integer osites)
 | 
				
			|||||||
  return result;
 | 
					  return result;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template <class vobj>
 | 
				
			||||||
 | 
					inline typename vobj::scalar_object sum_gpu_large(const vobj *lat, Integer osites)
 | 
				
			||||||
 | 
					{
 | 
				
			||||||
 | 
					  typedef typename vobj::scalar_object sobj;
 | 
				
			||||||
 | 
					  sobj result;
 | 
				
			||||||
 | 
					  result = sumD_gpu_large(lat,osites);
 | 
				
			||||||
 | 
					  return result;
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
NAMESPACE_END(Grid);
 | 
					NAMESPACE_END(Grid);
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -424,9 +424,32 @@ public:
 | 
				
			|||||||
    // MT implementation does not implement fast discard even though
 | 
					    // MT implementation does not implement fast discard even though
 | 
				
			||||||
    // in principle this is possible
 | 
					    // in principle this is possible
 | 
				
			||||||
    ////////////////////////////////////////////////
 | 
					    ////////////////////////////////////////////////
 | 
				
			||||||
 | 
					#if 1
 | 
				
			||||||
 | 
					    thread_for( lidx, _grid->lSites(), {
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						int gidx;
 | 
				
			||||||
 | 
						int o_idx;
 | 
				
			||||||
 | 
						int i_idx;
 | 
				
			||||||
 | 
						int rank;
 | 
				
			||||||
 | 
						Coordinate pcoor;
 | 
				
			||||||
 | 
						Coordinate lcoor;
 | 
				
			||||||
 | 
						Coordinate gcoor;
 | 
				
			||||||
 | 
						_grid->LocalIndexToLocalCoor(lidx,lcoor);
 | 
				
			||||||
 | 
						pcoor=_grid->ThisProcessorCoor();
 | 
				
			||||||
 | 
						_grid->ProcessorCoorLocalCoorToGlobalCoor(pcoor,lcoor,gcoor);
 | 
				
			||||||
 | 
						_grid->GlobalCoorToGlobalIndex(gcoor,gidx);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						_grid->GlobalCoorToRankIndex(rank,o_idx,i_idx,gcoor);
 | 
				
			||||||
 | 
						assert(rank == _grid->ThisRank() );
 | 
				
			||||||
 | 
						
 | 
				
			||||||
 | 
						int l_idx=generator_idx(o_idx,i_idx);
 | 
				
			||||||
 | 
						_generators[l_idx] = master_engine;
 | 
				
			||||||
 | 
						Skip(_generators[l_idx],gidx); // Skip to next RNG sequence
 | 
				
			||||||
 | 
					    });
 | 
				
			||||||
 | 
					#else
 | 
				
			||||||
    // Everybody loops over global volume.
 | 
					    // Everybody loops over global volume.
 | 
				
			||||||
    thread_for( gidx, _grid->_gsites, {
 | 
					    thread_for( gidx, _grid->_gsites, {
 | 
				
			||||||
 | 
					
 | 
				
			||||||
	// Where is it?
 | 
						// Where is it?
 | 
				
			||||||
	int rank;
 | 
						int rank;
 | 
				
			||||||
	int o_idx;
 | 
						int o_idx;
 | 
				
			||||||
@@ -443,6 +466,7 @@ public:
 | 
				
			|||||||
	  Skip(_generators[l_idx],gidx); // Skip to next RNG sequence
 | 
						  Skip(_generators[l_idx],gidx); // Skip to next RNG sequence
 | 
				
			||||||
	}
 | 
						}
 | 
				
			||||||
    });
 | 
					    });
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
#else 
 | 
					#else 
 | 
				
			||||||
    ////////////////////////////////////////////////////////////////
 | 
					    ////////////////////////////////////////////////////////////////
 | 
				
			||||||
    // Machine and thread decomposition dependent seeding is efficient
 | 
					    // Machine and thread decomposition dependent seeding is efficient
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -85,6 +85,76 @@ 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
 | 
				
			||||||
@@ -364,16 +434,22 @@ inline void blockSum(Lattice<vobj> &coarseData,const Lattice<vobj> &fineData)
 | 
				
			|||||||
  autoView( coarseData_ , coarseData, AcceleratorWrite);
 | 
					  autoView( coarseData_ , coarseData, AcceleratorWrite);
 | 
				
			||||||
  autoView( fineData_   , fineData, AcceleratorRead);
 | 
					  autoView( fineData_   , fineData, AcceleratorRead);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  auto coarseData_p = &coarseData_[0];
 | 
				
			||||||
 | 
					  auto fineData_p = &fineData_[0];
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
  Coordinate fine_rdimensions = fine->_rdimensions;
 | 
					  Coordinate fine_rdimensions = fine->_rdimensions;
 | 
				
			||||||
  Coordinate coarse_rdimensions = coarse->_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++){
 | 
				
			||||||
 | 
					
 | 
				
			||||||
	int sf;
 | 
						int sf;
 | 
				
			||||||
@@ -383,9 +459,11 @@ inline void blockSum(Lattice<vobj> &coarseData,const Lattice<vobj> &fineData)
 | 
				
			|||||||
	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);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
	coarseData_[sc]=coarseData_[sc]+fineData_[sf];
 | 
						cd=cd+fineData_p[sf];
 | 
				
			||||||
      }
 | 
					      }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      coarseData_p[sc] = cd;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    });
 | 
					    });
 | 
				
			||||||
  return;
 | 
					  return;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
@@ -777,7 +855,7 @@ void ExtractSliceLocal(Lattice<vobj> &lowDim,const Lattice<vobj> & higherDim,int
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<class vobj>
 | 
					template<class vobj>
 | 
				
			||||||
void Replicate(Lattice<vobj> &coarse,Lattice<vobj> & fine)
 | 
					void Replicate(const Lattice<vobj> &coarse,Lattice<vobj> & fine)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  typedef typename vobj::scalar_object sobj;
 | 
					  typedef typename vobj::scalar_object sobj;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -65,29 +65,34 @@ GridLogger GridLogSolver (1, "Solver", GridLogColours, "NORMAL");
 | 
				
			|||||||
GridLogger GridLogError  (1, "Error" , GridLogColours, "RED");
 | 
					GridLogger GridLogError  (1, "Error" , GridLogColours, "RED");
 | 
				
			||||||
GridLogger GridLogWarning(1, "Warning", GridLogColours, "YELLOW");
 | 
					GridLogger GridLogWarning(1, "Warning", GridLogColours, "YELLOW");
 | 
				
			||||||
GridLogger GridLogMessage(1, "Message", GridLogColours, "NORMAL");
 | 
					GridLogger GridLogMessage(1, "Message", GridLogColours, "NORMAL");
 | 
				
			||||||
 | 
					GridLogger GridLogMemory (1, "Memory", GridLogColours, "NORMAL");
 | 
				
			||||||
GridLogger GridLogDebug  (1, "Debug", GridLogColours, "PURPLE");
 | 
					GridLogger GridLogDebug  (1, "Debug", GridLogColours, "PURPLE");
 | 
				
			||||||
GridLogger GridLogPerformance(1, "Performance", GridLogColours, "GREEN");
 | 
					GridLogger GridLogPerformance(1, "Performance", GridLogColours, "GREEN");
 | 
				
			||||||
GridLogger GridLogIterative  (1, "Iterative", GridLogColours, "BLUE");
 | 
					GridLogger GridLogIterative  (1, "Iterative", GridLogColours, "BLUE");
 | 
				
			||||||
GridLogger GridLogIntegrator (1, "Integrator", GridLogColours, "BLUE");
 | 
					GridLogger GridLogIntegrator (1, "Integrator", GridLogColours, "BLUE");
 | 
				
			||||||
 | 
					GridLogger GridLogHMC (1, "HMC", GridLogColours, "BLUE");
 | 
				
			||||||
 | 
					
 | 
				
			||||||
void GridLogConfigure(std::vector<std::string> &logstreams) {
 | 
					void GridLogConfigure(std::vector<std::string> &logstreams) {
 | 
				
			||||||
  GridLogError.Active(0);
 | 
					  GridLogError.Active(1);
 | 
				
			||||||
  GridLogWarning.Active(0);
 | 
					  GridLogWarning.Active(0);
 | 
				
			||||||
  GridLogMessage.Active(1); // at least the messages should be always on
 | 
					  GridLogMessage.Active(1); // at least the messages should be always on
 | 
				
			||||||
 | 
					  GridLogMemory.Active(0); // at least the messages should be always on
 | 
				
			||||||
  GridLogIterative.Active(0);
 | 
					  GridLogIterative.Active(0);
 | 
				
			||||||
  GridLogDebug.Active(0);
 | 
					  GridLogDebug.Active(0);
 | 
				
			||||||
  GridLogPerformance.Active(0);
 | 
					  GridLogPerformance.Active(0);
 | 
				
			||||||
  GridLogIntegrator.Active(1);
 | 
					  GridLogIntegrator.Active(1);
 | 
				
			||||||
  GridLogColours.Active(0);
 | 
					  GridLogColours.Active(0);
 | 
				
			||||||
 | 
					  GridLogHMC.Active(1);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  for (int i = 0; i < logstreams.size(); i++) {
 | 
					  for (int i = 0; i < logstreams.size(); i++) {
 | 
				
			||||||
    if (logstreams[i] == std::string("Error"))       GridLogError.Active(1);
 | 
					    if (logstreams[i] == std::string("Memory"))      GridLogMemory.Active(1);
 | 
				
			||||||
    if (logstreams[i] == std::string("Warning"))     GridLogWarning.Active(1);
 | 
					    if (logstreams[i] == std::string("Warning"))     GridLogWarning.Active(1);
 | 
				
			||||||
    if (logstreams[i] == std::string("NoMessage"))   GridLogMessage.Active(0);
 | 
					    if (logstreams[i] == std::string("NoMessage"))   GridLogMessage.Active(0);
 | 
				
			||||||
    if (logstreams[i] == std::string("Iterative"))   GridLogIterative.Active(1);
 | 
					    if (logstreams[i] == std::string("Iterative"))   GridLogIterative.Active(1);
 | 
				
			||||||
    if (logstreams[i] == std::string("Debug"))       GridLogDebug.Active(1);
 | 
					    if (logstreams[i] == std::string("Debug"))       GridLogDebug.Active(1);
 | 
				
			||||||
    if (logstreams[i] == std::string("Performance")) GridLogPerformance.Active(1);
 | 
					    if (logstreams[i] == std::string("Performance")) GridLogPerformance.Active(1);
 | 
				
			||||||
    if (logstreams[i] == std::string("Integrator"))  GridLogIntegrator.Active(1);
 | 
					    if (logstreams[i] == std::string("NoIntegrator"))  GridLogIntegrator.Active(0);
 | 
				
			||||||
 | 
					    if (logstreams[i] == std::string("NoHMC"))         GridLogHMC.Active(0);
 | 
				
			||||||
    if (logstreams[i] == std::string("Colours"))     GridLogColours.Active(1);
 | 
					    if (logstreams[i] == std::string("Colours"))     GridLogColours.Active(1);
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -182,6 +182,8 @@ extern GridLogger GridLogDebug  ;
 | 
				
			|||||||
extern GridLogger GridLogPerformance;
 | 
					extern GridLogger GridLogPerformance;
 | 
				
			||||||
extern GridLogger GridLogIterative  ;
 | 
					extern GridLogger GridLogIterative  ;
 | 
				
			||||||
extern GridLogger GridLogIntegrator  ;
 | 
					extern GridLogger GridLogIntegrator  ;
 | 
				
			||||||
 | 
					extern GridLogger GridLogHMC;
 | 
				
			||||||
 | 
					extern GridLogger GridLogMemory;
 | 
				
			||||||
extern Colours    GridLogColours;
 | 
					extern Colours    GridLogColours;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
std::string demangle(const char* name) ;
 | 
					std::string demangle(const char* name) ;
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -31,6 +31,7 @@ directory
 | 
				
			|||||||
#include <fstream>
 | 
					#include <fstream>
 | 
				
			||||||
#include <iomanip>
 | 
					#include <iomanip>
 | 
				
			||||||
#include <iostream>
 | 
					#include <iostream>
 | 
				
			||||||
 | 
					#include <string>
 | 
				
			||||||
#include <map>
 | 
					#include <map>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#include <pwd.h>
 | 
					#include <pwd.h>
 | 
				
			||||||
@@ -576,6 +577,8 @@ 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;
 | 
				
			||||||
      }
 | 
					      }
 | 
				
			||||||
@@ -652,7 +655,8 @@ class IldgWriter : public ScidacWriter {
 | 
				
			|||||||
    // Fill ILDG header data struct
 | 
					    // Fill ILDG header data struct
 | 
				
			||||||
    //////////////////////////////////////////////////////
 | 
					    //////////////////////////////////////////////////////
 | 
				
			||||||
    ildgFormat ildgfmt ;
 | 
					    ildgFormat ildgfmt ;
 | 
				
			||||||
    ildgfmt.field     = std::string("su3gauge");
 | 
					    const std::string stNC = std::to_string( Nc ) ;
 | 
				
			||||||
 | 
					    ildgfmt.field          = std::string("su"+stNC+"gauge");
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    if ( format == std::string("IEEE32BIG") ) { 
 | 
					    if ( format == std::string("IEEE32BIG") ) { 
 | 
				
			||||||
      ildgfmt.precision = 32;
 | 
					      ildgfmt.precision = 32;
 | 
				
			||||||
@@ -869,7 +873,8 @@ class IldgReader : public GridLimeReader {
 | 
				
			|||||||
    } else { 
 | 
					    } else { 
 | 
				
			||||||
 | 
					
 | 
				
			||||||
      assert(found_ildgFormat);
 | 
					      assert(found_ildgFormat);
 | 
				
			||||||
      assert ( ildgFormat_.field == std::string("su3gauge") );
 | 
					      const std::string stNC = std::to_string( Nc ) ;
 | 
				
			||||||
 | 
					      assert ( ildgFormat_.field == std::string("su"+stNC+"gauge") );
 | 
				
			||||||
 | 
					
 | 
				
			||||||
      ///////////////////////////////////////////////////////////////////////////////////////
 | 
					      ///////////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
      // Populate our Grid metadata as best we can
 | 
					      // Populate our Grid metadata as best we can
 | 
				
			||||||
@@ -877,7 +882,7 @@ class IldgReader : public GridLimeReader {
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
      std::ostringstream vers; vers << ildgFormat_.version;
 | 
					      std::ostringstream vers; vers << ildgFormat_.version;
 | 
				
			||||||
      FieldMetaData_.hdr_version = vers.str();
 | 
					      FieldMetaData_.hdr_version = vers.str();
 | 
				
			||||||
      FieldMetaData_.data_type = std::string("4D_SU3_GAUGE_3X3");
 | 
					      FieldMetaData_.data_type = std::string("4D_SU"+stNC+"_GAUGE_"+stNC+"x"+stNC);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
      FieldMetaData_.nd=4;
 | 
					      FieldMetaData_.nd=4;
 | 
				
			||||||
      FieldMetaData_.dimension.resize(4);
 | 
					      FieldMetaData_.dimension.resize(4);
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -6,8 +6,8 @@
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
    Copyright (C) 2015
 | 
					    Copyright (C) 2015
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					 | 
				
			||||||
    Author: Peter Boyle <paboyle@ph.ed.ac.uk>
 | 
					    Author: Peter Boyle <paboyle@ph.ed.ac.uk>
 | 
				
			||||||
 | 
					    Author: Jamie Hudspith <renwick.james.hudspth@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
 | 
				
			||||||
@@ -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;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -182,8 +182,8 @@ class GaugeStatistics
 | 
				
			|||||||
public:
 | 
					public:
 | 
				
			||||||
  void operator()(Lattice<vLorentzColourMatrixD> & data,FieldMetaData &header)
 | 
					  void operator()(Lattice<vLorentzColourMatrixD> & data,FieldMetaData &header)
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
    header.link_trace=WilsonLoops<Impl>::linkTrace(data);
 | 
					    header.link_trace = WilsonLoops<Impl>::linkTrace(data);
 | 
				
			||||||
    header.plaquette =WilsonLoops<Impl>::avgPlaquette(data);
 | 
					    header.plaquette  = WilsonLoops<Impl>::avgPlaquette(data);
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
typedef GaugeStatistics<PeriodicGimplD> PeriodicGaugeStatistics;
 | 
					typedef GaugeStatistics<PeriodicGimplD> PeriodicGaugeStatistics;
 | 
				
			||||||
@@ -203,20 +203,24 @@ template<> inline void PrepareMetaData<vLorentzColourMatrixD>(Lattice<vLorentzCo
 | 
				
			|||||||
//////////////////////////////////////////////////////////////////////
 | 
					//////////////////////////////////////////////////////////////////////
 | 
				
			||||||
inline void reconstruct3(LorentzColourMatrix & cm)
 | 
					inline void reconstruct3(LorentzColourMatrix & cm)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  const int x=0;
 | 
					  assert( Nc < 4 && Nc > 1 ) ;
 | 
				
			||||||
  const int y=1;
 | 
					 | 
				
			||||||
  const int z=2;
 | 
					 | 
				
			||||||
  for(int mu=0;mu<Nd;mu++){
 | 
					  for(int mu=0;mu<Nd;mu++){
 | 
				
			||||||
    cm(mu)()(2,x) = adj(cm(mu)()(0,y)*cm(mu)()(1,z)-cm(mu)()(0,z)*cm(mu)()(1,y)); //x= yz-zy
 | 
					    #if Nc == 2
 | 
				
			||||||
    cm(mu)()(2,y) = adj(cm(mu)()(0,z)*cm(mu)()(1,x)-cm(mu)()(0,x)*cm(mu)()(1,z)); //y= zx-xz
 | 
					      cm(mu)()(1,0) = -adj(cm(mu)()(0,y)) ;
 | 
				
			||||||
    cm(mu)()(2,z) = adj(cm(mu)()(0,x)*cm(mu)()(1,y)-cm(mu)()(0,y)*cm(mu)()(1,x)); //z= xy-yx
 | 
					      cm(mu)()(1,1) =  adj(cm(mu)()(0,x)) ;
 | 
				
			||||||
 | 
					    #else
 | 
				
			||||||
 | 
					      const int x=0 , y=1 , z=2 ; // a little disinenuous labelling
 | 
				
			||||||
 | 
					      cm(mu)()(2,x) = adj(cm(mu)()(0,y)*cm(mu)()(1,z)-cm(mu)()(0,z)*cm(mu)()(1,y)); //x= yz-zy
 | 
				
			||||||
 | 
					      cm(mu)()(2,y) = adj(cm(mu)()(0,z)*cm(mu)()(1,x)-cm(mu)()(0,x)*cm(mu)()(1,z)); //y= zx-xz
 | 
				
			||||||
 | 
					      cm(mu)()(2,z) = adj(cm(mu)()(0,x)*cm(mu)()(1,y)-cm(mu)()(0,y)*cm(mu)()(1,x)); //z= xy-yx
 | 
				
			||||||
 | 
					    #endif
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
////////////////////////////////////////////////////////////////////////////////
 | 
					////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
// Some data types for intermediate storage
 | 
					// Some data types for intermediate storage
 | 
				
			||||||
////////////////////////////////////////////////////////////////////////////////
 | 
					////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
template<typename vtype> using iLorentzColour2x3 = iVector<iVector<iVector<vtype, Nc>, 2>, Nd >;
 | 
					template<typename vtype> using iLorentzColour2x3 = iVector<iVector<iVector<vtype, Nc>, Nc-1>, Nd >;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
typedef iLorentzColour2x3<Complex>  LorentzColour2x3;
 | 
					typedef iLorentzColour2x3<Complex>  LorentzColour2x3;
 | 
				
			||||||
typedef iLorentzColour2x3<ComplexF> LorentzColour2x3F;
 | 
					typedef iLorentzColour2x3<ComplexF> LorentzColour2x3F;
 | 
				
			||||||
@@ -278,7 +282,6 @@ struct GaugeSimpleMunger{
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
template <class fobj, class sobj>
 | 
					template <class fobj, class sobj>
 | 
				
			||||||
struct GaugeSimpleUnmunger {
 | 
					struct GaugeSimpleUnmunger {
 | 
				
			||||||
 | 
					 | 
				
			||||||
  void operator()(sobj &in, fobj &out) {
 | 
					  void operator()(sobj &in, fobj &out) {
 | 
				
			||||||
    for (int mu = 0; mu < Nd; mu++) {
 | 
					    for (int mu = 0; mu < Nd; mu++) {
 | 
				
			||||||
      for (int i = 0; i < Nc; i++) {
 | 
					      for (int i = 0; i < Nc; i++) {
 | 
				
			||||||
@@ -317,8 +320,8 @@ template<class fobj,class sobj>
 | 
				
			|||||||
struct Gauge3x2munger{
 | 
					struct Gauge3x2munger{
 | 
				
			||||||
  void operator() (fobj &in,sobj &out){
 | 
					  void operator() (fobj &in,sobj &out){
 | 
				
			||||||
    for(int mu=0;mu<Nd;mu++){
 | 
					    for(int mu=0;mu<Nd;mu++){
 | 
				
			||||||
      for(int i=0;i<2;i++){
 | 
					      for(int i=0;i<Nc-1;i++){
 | 
				
			||||||
	for(int j=0;j<3;j++){
 | 
						for(int j=0;j<Nc;j++){
 | 
				
			||||||
	  out(mu)()(i,j) = in(mu)(i)(j);
 | 
						  out(mu)()(i,j) = in(mu)(i)(j);
 | 
				
			||||||
	}}
 | 
						}}
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
@@ -330,8 +333,8 @@ template<class fobj,class sobj>
 | 
				
			|||||||
struct Gauge3x2unmunger{
 | 
					struct Gauge3x2unmunger{
 | 
				
			||||||
  void operator() (sobj &in,fobj &out){
 | 
					  void operator() (sobj &in,fobj &out){
 | 
				
			||||||
    for(int mu=0;mu<Nd;mu++){
 | 
					    for(int mu=0;mu<Nd;mu++){
 | 
				
			||||||
      for(int i=0;i<2;i++){
 | 
					      for(int i=0;i<Nc-1;i++){
 | 
				
			||||||
	for(int j=0;j<3;j++){
 | 
						for(int j=0;j<Nc;j++){
 | 
				
			||||||
	  out(mu)(i)(j) = in(mu)()(i,j);
 | 
						  out(mu)(i)(j) = in(mu)()(i,j);
 | 
				
			||||||
	}}
 | 
						}}
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -9,6 +9,7 @@
 | 
				
			|||||||
    Author: Matt Spraggs <matthew.spraggs@gmail.com>
 | 
					    Author: Matt Spraggs <matthew.spraggs@gmail.com>
 | 
				
			||||||
    Author: Peter Boyle <paboyle@ph.ed.ac.uk>
 | 
					    Author: Peter Boyle <paboyle@ph.ed.ac.uk>
 | 
				
			||||||
    Author: paboyle <paboyle@ph.ed.ac.uk>
 | 
					    Author: paboyle <paboyle@ph.ed.ac.uk>
 | 
				
			||||||
 | 
					    Author: Jamie Hudspith <renwick.james.hudspth@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
 | 
				
			||||||
@@ -30,6 +31,8 @@
 | 
				
			|||||||
#ifndef GRID_NERSC_IO_H
 | 
					#ifndef GRID_NERSC_IO_H
 | 
				
			||||||
#define GRID_NERSC_IO_H
 | 
					#define GRID_NERSC_IO_H
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#include <string>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
NAMESPACE_BEGIN(Grid);
 | 
					NAMESPACE_BEGIN(Grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
using namespace Grid;
 | 
					using namespace Grid;
 | 
				
			||||||
@@ -39,9 +42,11 @@ using namespace Grid;
 | 
				
			|||||||
////////////////////////////////////////////////////////////////////////////////
 | 
					////////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
class NerscIO : public BinaryIO { 
 | 
					class NerscIO : public BinaryIO { 
 | 
				
			||||||
public:
 | 
					public:
 | 
				
			||||||
 | 
					 | 
				
			||||||
  typedef Lattice<vLorentzColourMatrixD> GaugeField;
 | 
					  typedef Lattice<vLorentzColourMatrixD> GaugeField;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // Enable/disable exiting if the plaquette in the header does not match the value computed (default true)
 | 
				
			||||||
 | 
					  static bool & exitOnReadPlaquetteMismatch(){ static bool v=true; return v; }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  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);
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
@@ -145,15 +150,17 @@ public:
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
    std::string format(header.floating_point);
 | 
					    std::string format(header.floating_point);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    int ieee32big = (format == std::string("IEEE32BIG"));
 | 
					    const int ieee32big = (format == std::string("IEEE32BIG"));
 | 
				
			||||||
    int ieee32    = (format == std::string("IEEE32"));
 | 
					    const int ieee32    = (format == std::string("IEEE32"));
 | 
				
			||||||
    int ieee64big = (format == std::string("IEEE64BIG"));
 | 
					    const int ieee64big = (format == std::string("IEEE64BIG"));
 | 
				
			||||||
    int ieee64    = (format == std::string("IEEE64") || format == std::string("IEEE64LITTLE"));
 | 
					    const int ieee64    = (format == std::string("IEEE64") || \
 | 
				
			||||||
 | 
								   format == std::string("IEEE64LITTLE"));
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    uint32_t nersc_csum,scidac_csuma,scidac_csumb;
 | 
					    uint32_t nersc_csum,scidac_csuma,scidac_csumb;
 | 
				
			||||||
    // depending on datatype, set up munger;
 | 
					    // depending on datatype, set up munger;
 | 
				
			||||||
    // 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") ) {
 | 
					    const std::string stNC = std::to_string( Nc ) ;
 | 
				
			||||||
 | 
					    if ( header.data_type == std::string("4D_SU"+stNC+"_GAUGE") ) {
 | 
				
			||||||
      if ( ieee32 || ieee32big ) {
 | 
					      if ( ieee32 || ieee32big ) {
 | 
				
			||||||
	BinaryIO::readLatticeObject<vLorentzColourMatrixD, LorentzColour2x3F> 
 | 
						BinaryIO::readLatticeObject<vLorentzColourMatrixD, LorentzColour2x3F> 
 | 
				
			||||||
	  (Umu,file,Gauge3x2munger<LorentzColour2x3F,LorentzColourMatrix>(), offset,format,
 | 
						  (Umu,file,Gauge3x2munger<LorentzColour2x3F,LorentzColourMatrix>(), offset,format,
 | 
				
			||||||
@@ -164,7 +171,7 @@ public:
 | 
				
			|||||||
	  (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_SU"+stNC+"_GAUGE_"+stNC+"x"+stNC) ) {
 | 
				
			||||||
      if ( ieee32 || ieee32big ) {
 | 
					      if ( ieee32 || ieee32big ) {
 | 
				
			||||||
	BinaryIO::readLatticeObject<vLorentzColourMatrixD,LorentzColourMatrixF>
 | 
						BinaryIO::readLatticeObject<vLorentzColourMatrixD,LorentzColourMatrixF>
 | 
				
			||||||
	  (Umu,file,GaugeSimpleMunger<LorentzColourMatrixF,LorentzColourMatrix>(),offset,format,
 | 
						  (Umu,file,GaugeSimpleMunger<LorentzColourMatrixF,LorentzColourMatrix>(),offset,format,
 | 
				
			||||||
@@ -198,29 +205,40 @@ public:
 | 
				
			|||||||
      std::cerr << " nersc_csum  " <<std::hex<< nersc_csum << " " << header.checksum<< std::dec<< std::endl;
 | 
					      std::cerr << " nersc_csum  " <<std::hex<< nersc_csum << " " << header.checksum<< std::dec<< std::endl;
 | 
				
			||||||
      exit(0);
 | 
					      exit(0);
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
    assert(fabs(clone.plaquette -header.plaquette ) < 1.0e-5 );
 | 
					    if(exitOnReadPlaquetteMismatch()) assert(fabs(clone.plaquette -header.plaquette ) < 1.0e-5 );
 | 
				
			||||||
    assert(fabs(clone.link_trace-header.link_trace) < 1.0e-6 );
 | 
					    assert(fabs(clone.link_trace-header.link_trace) < 1.0e-6 );
 | 
				
			||||||
    assert(nersc_csum == header.checksum );
 | 
					    assert(nersc_csum == header.checksum );
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
    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 GaugeStats=PeriodicGaugeStatistics>
 | 
				
			||||||
 | 
					  static inline void writeConfiguration(Lattice<vLorentzColourMatrixD > &Umu,
 | 
				
			||||||
 | 
										std::string file, 
 | 
				
			||||||
 | 
										std::string ens_label = std::string("DWF"),
 | 
				
			||||||
 | 
										std::string ens_id = std::string("UKQCD"),
 | 
				
			||||||
 | 
										unsigned int sequence_number = 1)
 | 
				
			||||||
 | 
					  {
 | 
				
			||||||
 | 
					    writeConfiguration(Umu,file,0,1,ens_label,ens_id,sequence_number);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
  template<class GaugeStats=PeriodicGaugeStatistics>
 | 
					  template<class GaugeStats=PeriodicGaugeStatistics>
 | 
				
			||||||
  static inline void writeConfiguration(Lattice<vLorentzColourMatrixD > &Umu,
 | 
					  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"),
 | 
				
			||||||
 | 
										std::string ens_id = std::string("UKQCD"),
 | 
				
			||||||
 | 
										unsigned int sequence_number = 1)
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
    typedef vLorentzColourMatrixD vobj;
 | 
					    typedef vLorentzColourMatrixD vobj;
 | 
				
			||||||
    typedef typename vobj::scalar_object sobj;
 | 
					    typedef typename vobj::scalar_object sobj;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    FieldMetaData header;
 | 
					    FieldMetaData header;
 | 
				
			||||||
    ///////////////////////////////////////////
 | 
					    header.sequence_number = sequence_number;
 | 
				
			||||||
    // Following should become arguments
 | 
					    header.ensemble_id     = ens_id;
 | 
				
			||||||
    ///////////////////////////////////////////
 | 
					    header.ensemble_label  = ens_label;
 | 
				
			||||||
    header.sequence_number = 1;
 | 
					    header.hdr_version     = "1.0" ;
 | 
				
			||||||
    header.ensemble_id     = "UKQCD";
 | 
					 | 
				
			||||||
    header.ensemble_label  = "DWF";
 | 
					 | 
				
			||||||
 | 
					
 | 
				
			||||||
    typedef LorentzColourMatrixD fobj3D;
 | 
					    typedef LorentzColourMatrixD fobj3D;
 | 
				
			||||||
    typedef LorentzColour2x3D    fobj2D;
 | 
					    typedef LorentzColour2x3D    fobj2D;
 | 
				
			||||||
@@ -232,12 +250,16 @@ public:
 | 
				
			|||||||
    GaugeStats Stats; Stats(Umu,header);
 | 
					    GaugeStats Stats; Stats(Umu,header);
 | 
				
			||||||
    MachineCharacteristics(header);
 | 
					    MachineCharacteristics(header);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
	uint64_t offset;
 | 
					    uint64_t offset;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    // Sod it -- always write 3x3 double
 | 
					    // Sod it -- always write NcxNc double
 | 
				
			||||||
    header.floating_point = std::string("IEEE64BIG");
 | 
					    header.floating_point  = std::string("IEEE64BIG");
 | 
				
			||||||
    header.data_type      = std::string("4D_SU3_GAUGE_3x3");
 | 
					    const std::string stNC = std::to_string( Nc ) ;
 | 
				
			||||||
    GaugeSimpleUnmunger<fobj3D,sobj> munge;
 | 
					    if( two_row ) {
 | 
				
			||||||
 | 
					      header.data_type = std::string("4D_SU" + stNC + "_GAUGE" );
 | 
				
			||||||
 | 
					    } else {
 | 
				
			||||||
 | 
					      header.data_type = std::string("4D_SU" + stNC + "_GAUGE_" + stNC + "x" + stNC );
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
    if ( grid->IsBoss() ) { 
 | 
					    if ( grid->IsBoss() ) { 
 | 
				
			||||||
      truncate(file);
 | 
					      truncate(file);
 | 
				
			||||||
      offset = writeHeader(header,file);
 | 
					      offset = writeHeader(header,file);
 | 
				
			||||||
@@ -245,8 +267,15 @@ public:
 | 
				
			|||||||
    grid->Broadcast(0,(void *)&offset,sizeof(offset));
 | 
					    grid->Broadcast(0,(void *)&offset,sizeof(offset));
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    uint32_t nersc_csum,scidac_csuma,scidac_csumb;
 | 
					    uint32_t nersc_csum,scidac_csuma,scidac_csumb;
 | 
				
			||||||
    BinaryIO::writeLatticeObject<vobj,fobj3D>(Umu,file,munge,offset,header.floating_point,
 | 
					    if( two_row ) {
 | 
				
			||||||
					      nersc_csum,scidac_csuma,scidac_csumb);
 | 
					      Gauge3x2unmunger<fobj2D,sobj> munge;
 | 
				
			||||||
 | 
					      BinaryIO::writeLatticeObject<vobj,fobj2D>(Umu,file,munge,offset,header.floating_point,
 | 
				
			||||||
 | 
											nersc_csum,scidac_csuma,scidac_csumb);
 | 
				
			||||||
 | 
					    } else {
 | 
				
			||||||
 | 
					      GaugeSimpleUnmunger<fobj3D,sobj> munge;
 | 
				
			||||||
 | 
					      BinaryIO::writeLatticeObject<vobj,fobj3D>(Umu,file,munge,offset,header.floating_point,
 | 
				
			||||||
 | 
											nersc_csum,scidac_csuma,scidac_csumb);
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
    header.checksum = nersc_csum;
 | 
					    header.checksum = nersc_csum;
 | 
				
			||||||
    if ( grid->IsBoss() ) { 
 | 
					    if ( grid->IsBoss() ) { 
 | 
				
			||||||
      writeHeader(header,file);
 | 
					      writeHeader(header,file);
 | 
				
			||||||
@@ -278,8 +307,7 @@ public:
 | 
				
			|||||||
    header.plaquette=0.0;
 | 
					    header.plaquette=0.0;
 | 
				
			||||||
    MachineCharacteristics(header);
 | 
					    MachineCharacteristics(header);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
	uint64_t offset;
 | 
					    uint64_t offset;
 | 
				
			||||||
  
 | 
					 | 
				
			||||||
#ifdef RNG_RANLUX
 | 
					#ifdef RNG_RANLUX
 | 
				
			||||||
    header.floating_point = std::string("UINT64");
 | 
					    header.floating_point = std::string("UINT64");
 | 
				
			||||||
    header.data_type      = std::string("RANLUX48");
 | 
					    header.data_type      = std::string("RANLUX48");
 | 
				
			||||||
@@ -319,7 +347,7 @@ public:
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
    GridBase *grid = parallel.Grid();
 | 
					    GridBase *grid = parallel.Grid();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
	uint64_t offset = readHeader(file,grid,header);
 | 
					    uint64_t offset = readHeader(file,grid,header);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    FieldMetaData clone(header);
 | 
					    FieldMetaData clone(header);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -72,17 +72,9 @@ static long perf_event_open(struct perf_event_attr *hw_event, pid_t pid,
 | 
				
			|||||||
inline uint64_t cyclecount(void){ 
 | 
					inline uint64_t cyclecount(void){ 
 | 
				
			||||||
  return 0;
 | 
					  return 0;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
#define __SSC_MARK(mark) __asm__ __volatile__ ("movl %0, %%ebx; .byte 0x64, 0x67, 0x90 " ::"i"(mark):"%ebx")
 | 
					 | 
				
			||||||
#define __SSC_STOP  __SSC_MARK(0x110)
 | 
					 | 
				
			||||||
#define __SSC_START __SSC_MARK(0x111)
 | 
					 | 
				
			||||||
 | 
					 | 
				
			||||||
 | 
					
 | 
				
			||||||
#else
 | 
					#else
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define __SSC_MARK(mark) 
 | 
					 | 
				
			||||||
#define __SSC_STOP  
 | 
					 | 
				
			||||||
#define __SSC_START 
 | 
					 | 
				
			||||||
 | 
					 | 
				
			||||||
/*
 | 
					/*
 | 
				
			||||||
 * cycle counters arch dependent
 | 
					 * cycle counters arch dependent
 | 
				
			||||||
 */
 | 
					 */
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -39,9 +39,9 @@ NAMESPACE_BEGIN(Grid)
 | 
				
			|||||||
// C++11 time facilities better?
 | 
					// C++11 time facilities better?
 | 
				
			||||||
inline double usecond(void) {
 | 
					inline double usecond(void) {
 | 
				
			||||||
  struct timeval tv;
 | 
					  struct timeval tv;
 | 
				
			||||||
#ifdef TIMERS_ON
 | 
					  tv.tv_sec = 0;
 | 
				
			||||||
 | 
					  tv.tv_usec = 0;
 | 
				
			||||||
  gettimeofday(&tv,NULL);
 | 
					  gettimeofday(&tv,NULL);
 | 
				
			||||||
#endif
 | 
					 | 
				
			||||||
  return 1.0*tv.tv_usec + 1.0e6*tv.tv_sec;
 | 
					  return 1.0*tv.tv_usec + 1.0e6*tv.tv_sec;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -16,8 +16,12 @@
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
#ifdef __NVCC__
 | 
					#ifdef __NVCC__
 | 
				
			||||||
#pragma push
 | 
					#pragma push
 | 
				
			||||||
 | 
					#if (__CUDACC_VER_MAJOR__ >= 11) && (__CUDACC_VER_MINOR__ >= 5)
 | 
				
			||||||
 | 
					#pragma nv_diag_suppress declared_but_not_referenced // suppress "function was declared but never referenced warning"
 | 
				
			||||||
 | 
					#else
 | 
				
			||||||
#pragma diag_suppress declared_but_not_referenced // suppress "function was declared but never referenced warning"
 | 
					#pragma diag_suppress declared_but_not_referenced // suppress "function was declared but never referenced warning"
 | 
				
			||||||
#endif
 | 
					#endif
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#include "pugixml.h"
 | 
					#include "pugixml.h"
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -63,6 +63,7 @@ static constexpr int Ngp=2; // gparity index range
 | 
				
			|||||||
#define ColourIndex  (2)
 | 
					#define ColourIndex  (2)
 | 
				
			||||||
#define SpinIndex    (1)
 | 
					#define SpinIndex    (1)
 | 
				
			||||||
#define LorentzIndex (0)
 | 
					#define LorentzIndex (0)
 | 
				
			||||||
 | 
					#define GparityFlavourIndex (0)
 | 
				
			||||||
 | 
					
 | 
				
			||||||
// Also should make these a named enum type
 | 
					// Also should make these a named enum type
 | 
				
			||||||
static constexpr int DaggerNo=0;
 | 
					static constexpr int DaggerNo=0;
 | 
				
			||||||
@@ -87,6 +88,8 @@ template<typename T> struct isCoarsened {
 | 
				
			|||||||
template <typename T> using IfCoarsened    = Invoke<std::enable_if< isCoarsened<T>::value,int> > ;
 | 
					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> > ;
 | 
					template <typename T> using IfNotCoarsened = Invoke<std::enable_if<!isCoarsened<T>::value,int> > ;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					const int GparityFlavourTensorIndex = 3; //TensorLevel counts from the bottom!
 | 
				
			||||||
 | 
					
 | 
				
			||||||
// 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 
 | 
				
			||||||
@@ -110,8 +113,10 @@ template<typename vtype> using iHalfSpinColourVector      = iScalar<iVector<iVec
 | 
				
			|||||||
    template<typename vtype> using iSpinColourSpinColourMatrix  = iScalar<iMatrix<iMatrix<iMatrix<iMatrix<vtype, Nc>, Ns>, Nc>, Ns> >;
 | 
					    template<typename vtype> using iSpinColourSpinColourMatrix  = iScalar<iMatrix<iMatrix<iMatrix<iMatrix<vtype, Nc>, Ns>, Nc>, Ns> >;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<typename vtype> using iGparityFlavourVector                = iVector<iScalar<iScalar<vtype> >, Ngp>;
 | 
				
			||||||
template<typename vtype> using iGparitySpinColourVector       = iVector<iVector<iVector<vtype, Nc>, Ns>, Ngp >;
 | 
					template<typename vtype> using iGparitySpinColourVector       = iVector<iVector<iVector<vtype, Nc>, Ns>, Ngp >;
 | 
				
			||||||
template<typename vtype> using iGparityHalfSpinColourVector   = iVector<iVector<iVector<vtype, Nc>, Nhs>, Ngp >;
 | 
					template<typename vtype> using iGparityHalfSpinColourVector   = iVector<iVector<iVector<vtype, Nc>, Nhs>, Ngp >;
 | 
				
			||||||
 | 
					template<typename vtype> using iGparityFlavourMatrix = iMatrix<iScalar<iScalar<vtype> >, Ngp>;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
// Spin matrix
 | 
					// Spin matrix
 | 
				
			||||||
typedef iSpinMatrix<Complex  >          SpinMatrix;
 | 
					typedef iSpinMatrix<Complex  >          SpinMatrix;
 | 
				
			||||||
@@ -176,6 +181,16 @@ typedef iDoubleStoredColourMatrix<vComplex > vDoubleStoredColourMatrix;
 | 
				
			|||||||
typedef iDoubleStoredColourMatrix<vComplexF> vDoubleStoredColourMatrixF;
 | 
					typedef iDoubleStoredColourMatrix<vComplexF> vDoubleStoredColourMatrixF;
 | 
				
			||||||
typedef iDoubleStoredColourMatrix<vComplexD> vDoubleStoredColourMatrixD;
 | 
					typedef iDoubleStoredColourMatrix<vComplexD> vDoubleStoredColourMatrixD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					//G-parity flavour matrix
 | 
				
			||||||
 | 
					typedef iGparityFlavourMatrix<Complex> GparityFlavourMatrix;
 | 
				
			||||||
 | 
					typedef iGparityFlavourMatrix<ComplexF> GparityFlavourMatrixF;
 | 
				
			||||||
 | 
					typedef iGparityFlavourMatrix<ComplexD> GparityFlavourMatrixD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					typedef iGparityFlavourMatrix<vComplex> vGparityFlavourMatrix;
 | 
				
			||||||
 | 
					typedef iGparityFlavourMatrix<vComplexF> vGparityFlavourMatrixF;
 | 
				
			||||||
 | 
					typedef iGparityFlavourMatrix<vComplexD> vGparityFlavourMatrixD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
// Spin vector
 | 
					// Spin vector
 | 
				
			||||||
typedef iSpinVector<Complex >           SpinVector;
 | 
					typedef iSpinVector<Complex >           SpinVector;
 | 
				
			||||||
typedef iSpinVector<ComplexF>           SpinVectorF;
 | 
					typedef iSpinVector<ComplexF>           SpinVectorF;
 | 
				
			||||||
@@ -220,6 +235,16 @@ typedef iHalfSpinColourVector<ComplexD> HalfSpinColourVectorD;
 | 
				
			|||||||
typedef iHalfSpinColourVector<vComplex > vHalfSpinColourVector;
 | 
					typedef iHalfSpinColourVector<vComplex > vHalfSpinColourVector;
 | 
				
			||||||
typedef iHalfSpinColourVector<vComplexF> vHalfSpinColourVectorF;
 | 
					typedef iHalfSpinColourVector<vComplexF> vHalfSpinColourVectorF;
 | 
				
			||||||
typedef iHalfSpinColourVector<vComplexD> vHalfSpinColourVectorD;
 | 
					typedef iHalfSpinColourVector<vComplexD> vHalfSpinColourVectorD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					//G-parity flavour vector
 | 
				
			||||||
 | 
					typedef iGparityFlavourVector<Complex >         GparityFlavourVector;
 | 
				
			||||||
 | 
					typedef iGparityFlavourVector<ComplexF>         GparityFlavourVectorF;
 | 
				
			||||||
 | 
					typedef iGparityFlavourVector<ComplexD>         GparityFlavourVectorD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					typedef iGparityFlavourVector<vComplex >         vGparityFlavourVector;
 | 
				
			||||||
 | 
					typedef iGparityFlavourVector<vComplexF>         vGparityFlavourVectorF;
 | 
				
			||||||
 | 
					typedef iGparityFlavourVector<vComplexD>         vGparityFlavourVectorD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    
 | 
					    
 | 
				
			||||||
// singlets
 | 
					// singlets
 | 
				
			||||||
typedef iSinglet<Complex >         TComplex;     // FIXME This is painful. Tensor singlet complex type.
 | 
					typedef iSinglet<Complex >         TComplex;     // FIXME This is painful. Tensor singlet complex type.
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -40,6 +40,29 @@ class Action
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
public:
 | 
					public:
 | 
				
			||||||
  bool is_smeared = false;
 | 
					  bool is_smeared = false;
 | 
				
			||||||
 | 
					  RealD deriv_norm_sum;
 | 
				
			||||||
 | 
					  RealD deriv_max_sum;
 | 
				
			||||||
 | 
					  int   deriv_num;
 | 
				
			||||||
 | 
					  RealD deriv_us;
 | 
				
			||||||
 | 
					  RealD S_us;
 | 
				
			||||||
 | 
					  RealD refresh_us;
 | 
				
			||||||
 | 
					  void  reset_timer(void)        {
 | 
				
			||||||
 | 
					    deriv_us = S_us = refresh_us = 0.0;
 | 
				
			||||||
 | 
					    deriv_num=0;
 | 
				
			||||||
 | 
					    deriv_norm_sum = deriv_max_sum=0.0;
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					  void  deriv_log(RealD nrm, RealD max) { deriv_max_sum+=max; deriv_norm_sum+=nrm; deriv_num++;}
 | 
				
			||||||
 | 
					  RealD deriv_max_average(void)         { return deriv_max_sum/deriv_num; };
 | 
				
			||||||
 | 
					  RealD deriv_norm_average(void)        { return deriv_norm_sum/deriv_num; };
 | 
				
			||||||
 | 
					  RealD deriv_timer(void)        { return deriv_us; };
 | 
				
			||||||
 | 
					  RealD S_timer(void)            { return deriv_us; };
 | 
				
			||||||
 | 
					  RealD refresh_timer(void)      { return deriv_us; };
 | 
				
			||||||
 | 
					  void deriv_timer_start(void)   { deriv_us-=usecond(); }
 | 
				
			||||||
 | 
					  void deriv_timer_stop(void)    { deriv_us+=usecond(); }
 | 
				
			||||||
 | 
					  void refresh_timer_start(void) { refresh_us-=usecond(); }
 | 
				
			||||||
 | 
					  void refresh_timer_stop(void)  { refresh_us+=usecond(); }
 | 
				
			||||||
 | 
					  void S_timer_start(void)       { S_us-=usecond(); }
 | 
				
			||||||
 | 
					  void S_timer_stop(void)        { S_us+=usecond(); }
 | 
				
			||||||
  // Heatbath?
 | 
					  // Heatbath?
 | 
				
			||||||
  virtual void refresh(const GaugeField& U, GridSerialRNG &sRNG, GridParallelRNG& pRNG) = 0; // refresh pseudofermions
 | 
					  virtual void refresh(const GaugeField& U, GridSerialRNG &sRNG, 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
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -37,6 +37,10 @@ NAMESPACE_CHECK(ActionSet);
 | 
				
			|||||||
#include <Grid/qcd/action/ActionParams.h>
 | 
					#include <Grid/qcd/action/ActionParams.h>
 | 
				
			||||||
NAMESPACE_CHECK(ActionParams);
 | 
					NAMESPACE_CHECK(ActionParams);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#include <Grid/qcd/action/filters/MomentumFilter.h>
 | 
				
			||||||
 | 
					#include <Grid/qcd/action/filters/DirichletFilter.h>
 | 
				
			||||||
 | 
					#include <Grid/qcd/action/filters/DDHMCFilter.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
////////////////////////////////////////////
 | 
					////////////////////////////////////////////
 | 
				
			||||||
// Gauge Actions
 | 
					// Gauge Actions
 | 
				
			||||||
////////////////////////////////////////////
 | 
					////////////////////////////////////////////
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -37,24 +37,33 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
// These can move into a params header and be given MacroMagic serialisation
 | 
					// These can move into a params header and be given MacroMagic serialisation
 | 
				
			||||||
struct GparityWilsonImplParams {
 | 
					struct GparityWilsonImplParams {
 | 
				
			||||||
  Coordinate twists;
 | 
					  Coordinate twists;
 | 
				
			||||||
  GparityWilsonImplParams() : twists(Nd, 0) {};
 | 
					                     //mu=Nd-1 is assumed to be the time direction and a twist value of 1 indicates antiperiodic BCs
 | 
				
			||||||
 | 
					  Coordinate dirichlet; // Blocksize of dirichlet BCs
 | 
				
			||||||
 | 
					  GparityWilsonImplParams() : twists(Nd, 0), dirichlet(Nd, 0) {};
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
struct WilsonImplParams {
 | 
					struct WilsonImplParams {
 | 
				
			||||||
  bool overlapCommsCompute;
 | 
					  bool overlapCommsCompute;
 | 
				
			||||||
 | 
					  Coordinate dirichlet; // Blocksize of dirichlet BCs
 | 
				
			||||||
  AcceleratorVector<Real,Nd> twist_n_2pi_L;
 | 
					  AcceleratorVector<Real,Nd> twist_n_2pi_L;
 | 
				
			||||||
  AcceleratorVector<Complex,Nd> boundary_phases;
 | 
					  AcceleratorVector<Complex,Nd> boundary_phases;
 | 
				
			||||||
  WilsonImplParams()  {
 | 
					  WilsonImplParams()  {
 | 
				
			||||||
 | 
					    dirichlet.resize(Nd,0);
 | 
				
			||||||
    boundary_phases.resize(Nd, 1.0);
 | 
					    boundary_phases.resize(Nd, 1.0);
 | 
				
			||||||
      twist_n_2pi_L.resize(Nd, 0.0);
 | 
					      twist_n_2pi_L.resize(Nd, 0.0);
 | 
				
			||||||
  };
 | 
					  };
 | 
				
			||||||
  WilsonImplParams(const AcceleratorVector<Complex,Nd> phi) : boundary_phases(phi), overlapCommsCompute(false) {
 | 
					  WilsonImplParams(const AcceleratorVector<Complex,Nd> phi) : boundary_phases(phi), overlapCommsCompute(false) {
 | 
				
			||||||
    twist_n_2pi_L.resize(Nd, 0.0);
 | 
					    twist_n_2pi_L.resize(Nd, 0.0);
 | 
				
			||||||
 | 
					    dirichlet.resize(Nd,0);
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
struct StaggeredImplParams {
 | 
					struct StaggeredImplParams {
 | 
				
			||||||
  StaggeredImplParams()  {};
 | 
					  Coordinate dirichlet; // Blocksize of dirichlet BCs
 | 
				
			||||||
 | 
					  StaggeredImplParams()
 | 
				
			||||||
 | 
					  {
 | 
				
			||||||
 | 
					    dirichlet.resize(Nd,0);
 | 
				
			||||||
 | 
					  };
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
  struct OneFlavourRationalParams : Serializable {
 | 
					  struct OneFlavourRationalParams : Serializable {
 | 
				
			||||||
@@ -63,9 +72,11 @@ struct StaggeredImplParams {
 | 
				
			|||||||
				    RealD, hi, 
 | 
									    RealD, hi, 
 | 
				
			||||||
				    int,   MaxIter, 
 | 
									    int,   MaxIter, 
 | 
				
			||||||
				    RealD, tolerance, 
 | 
									    RealD, tolerance, 
 | 
				
			||||||
 | 
									    RealD, mdtolerance, 
 | 
				
			||||||
				    int,   degree, 
 | 
									    int,   degree, 
 | 
				
			||||||
				    int,   precision,
 | 
									    int,   precision,
 | 
				
			||||||
				    int,   BoundsCheckFreq);
 | 
									    int,   BoundsCheckFreq,
 | 
				
			||||||
 | 
									    RealD, BoundsCheckTol);
 | 
				
			||||||
    
 | 
					    
 | 
				
			||||||
  // MaxIter and tolerance, vectors??
 | 
					  // MaxIter and tolerance, vectors??
 | 
				
			||||||
    
 | 
					    
 | 
				
			||||||
@@ -76,16 +87,62 @@ struct StaggeredImplParams {
 | 
				
			|||||||
				RealD tol      = 1.0e-8, 
 | 
									RealD tol      = 1.0e-8, 
 | 
				
			||||||
                           	int _degree    = 10,
 | 
					                           	int _degree    = 10,
 | 
				
			||||||
				int _precision = 64,
 | 
									int _precision = 64,
 | 
				
			||||||
				int _BoundsCheckFreq=20)
 | 
									int _BoundsCheckFreq=20,
 | 
				
			||||||
 | 
									RealD mdtol    = 1.0e-6,
 | 
				
			||||||
 | 
									double _BoundsCheckTol=1e-6)
 | 
				
			||||||
      : lo(_lo),
 | 
					      : lo(_lo),
 | 
				
			||||||
	hi(_hi),
 | 
						hi(_hi),
 | 
				
			||||||
	MaxIter(_maxit),
 | 
						MaxIter(_maxit),
 | 
				
			||||||
	tolerance(tol),
 | 
						tolerance(tol),
 | 
				
			||||||
 | 
					        mdtolerance(mdtol),
 | 
				
			||||||
	degree(_degree),
 | 
						degree(_degree),
 | 
				
			||||||
        precision(_precision),
 | 
					        precision(_precision),
 | 
				
			||||||
        BoundsCheckFreq(_BoundsCheckFreq){};
 | 
					        BoundsCheckFreq(_BoundsCheckFreq),
 | 
				
			||||||
 | 
					        BoundsCheckTol(_BoundsCheckTol){};
 | 
				
			||||||
  };
 | 
					  };
 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
 | 
					  /*Action parameters for the generalized rational action
 | 
				
			||||||
 | 
					    The approximation is for (M^dag M)^{1/inv_pow}
 | 
				
			||||||
 | 
					    where inv_pow is the denominator of the fractional power.
 | 
				
			||||||
 | 
					    Default inv_pow=2 for square root, making this equivalent to 
 | 
				
			||||||
 | 
					    the OneFlavourRational action
 | 
				
			||||||
 | 
					  */
 | 
				
			||||||
 | 
					    struct RationalActionParams : Serializable {
 | 
				
			||||||
 | 
					    GRID_SERIALIZABLE_CLASS_MEMBERS(RationalActionParams, 
 | 
				
			||||||
 | 
									    int, inv_pow, 
 | 
				
			||||||
 | 
									    RealD, lo, //low eigenvalue bound of rational approx
 | 
				
			||||||
 | 
									    RealD, hi, //high eigenvalue bound of rational approx
 | 
				
			||||||
 | 
									    int,   MaxIter,  //maximum iterations in msCG
 | 
				
			||||||
 | 
									    RealD, action_tolerance,  //msCG tolerance in action evaluation
 | 
				
			||||||
 | 
									    int,   action_degree, //rational approx tolerance in action evaluation
 | 
				
			||||||
 | 
									    RealD, md_tolerance,  //msCG tolerance in MD integration
 | 
				
			||||||
 | 
									    int,   md_degree, //rational approx tolerance in MD integration
 | 
				
			||||||
 | 
									    int,   precision, //precision of floating point arithmetic
 | 
				
			||||||
 | 
									    int,   BoundsCheckFreq); //frequency the approximation is tested (with Metropolis degree/tolerance); 0 disables the check
 | 
				
			||||||
 | 
					  // constructor 
 | 
				
			||||||
 | 
					  RationalActionParams(int _inv_pow = 2,
 | 
				
			||||||
 | 
							       RealD _lo      = 0.0, 
 | 
				
			||||||
 | 
							       RealD _hi      = 1.0, 
 | 
				
			||||||
 | 
							       int _maxit     = 1000,
 | 
				
			||||||
 | 
							       RealD _action_tolerance      = 1.0e-8, 
 | 
				
			||||||
 | 
							       int _action_degree    = 10,
 | 
				
			||||||
 | 
							       RealD _md_tolerance      = 1.0e-8, 
 | 
				
			||||||
 | 
							       int _md_degree    = 10,
 | 
				
			||||||
 | 
							       int _precision = 64,
 | 
				
			||||||
 | 
							       int _BoundsCheckFreq=20)
 | 
				
			||||||
 | 
					    : inv_pow(_inv_pow), 
 | 
				
			||||||
 | 
					      lo(_lo),
 | 
				
			||||||
 | 
					      hi(_hi),
 | 
				
			||||||
 | 
					      MaxIter(_maxit),
 | 
				
			||||||
 | 
					      action_tolerance(_action_tolerance),
 | 
				
			||||||
 | 
					      action_degree(_action_degree),
 | 
				
			||||||
 | 
					      md_tolerance(_md_tolerance),
 | 
				
			||||||
 | 
					      md_degree(_md_degree),
 | 
				
			||||||
 | 
					      precision(_precision),
 | 
				
			||||||
 | 
					      BoundsCheckFreq(_BoundsCheckFreq){};
 | 
				
			||||||
 | 
					  };
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
NAMESPACE_END(Grid);
 | 
					NAMESPACE_END(Grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#endif
 | 
					#endif
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -68,9 +68,17 @@ public:
 | 
				
			|||||||
  ///////////////////////////////////////////////////////////////
 | 
					  ///////////////////////////////////////////////////////////////
 | 
				
			||||||
  // Support for MADWF tricks
 | 
					  // Support for MADWF tricks
 | 
				
			||||||
  ///////////////////////////////////////////////////////////////
 | 
					  ///////////////////////////////////////////////////////////////
 | 
				
			||||||
  RealD Mass(void) { return mass; };
 | 
					  RealD Mass(void) { return (mass_plus + mass_minus) / 2.0; };
 | 
				
			||||||
 | 
					  RealD MassPlus(void) { return mass_plus; };
 | 
				
			||||||
 | 
					  RealD MassMinus(void) { return mass_minus; };
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  void  SetMass(RealD _mass) { 
 | 
					  void  SetMass(RealD _mass) { 
 | 
				
			||||||
    mass=_mass; 
 | 
					    mass_plus=mass_minus=_mass; 
 | 
				
			||||||
 | 
					    SetCoefficientsInternal(_zolo_hi,_gamma,_b,_c);  // Reset coeffs
 | 
				
			||||||
 | 
					  } ;
 | 
				
			||||||
 | 
					  void  SetMass(RealD _mass_plus, RealD _mass_minus) { 
 | 
				
			||||||
 | 
					    mass_plus=_mass_plus;
 | 
				
			||||||
 | 
					    mass_minus=_mass_minus;
 | 
				
			||||||
    SetCoefficientsInternal(_zolo_hi,_gamma,_b,_c);  // Reset coeffs
 | 
					    SetCoefficientsInternal(_zolo_hi,_gamma,_b,_c);  // Reset coeffs
 | 
				
			||||||
  } ;
 | 
					  } ;
 | 
				
			||||||
  void  P(const FermionField &psi, FermionField &chi);
 | 
					  void  P(const FermionField &psi, FermionField &chi);
 | 
				
			||||||
@@ -108,7 +116,7 @@ public:
 | 
				
			|||||||
  void   MeooeDag5D    (const FermionField &in, FermionField &out);
 | 
					  void   MeooeDag5D    (const FermionField &in, FermionField &out);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  //    protected:
 | 
					  //    protected:
 | 
				
			||||||
  RealD mass;
 | 
					  RealD mass_plus, mass_minus;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  // Save arguments to SetCoefficientsInternal
 | 
					  // Save arguments to SetCoefficientsInternal
 | 
				
			||||||
  Vector<Coeff_t> _gamma;
 | 
					  Vector<Coeff_t> _gamma;
 | 
				
			||||||
 
 | 
				
			|||||||
							
								
								
									
										435
									
								
								Grid/qcd/action/fermion/CloverHelpers.h
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										435
									
								
								Grid/qcd/action/fermion/CloverHelpers.h
									
									
									
									
									
										Normal file
									
								
							@@ -0,0 +1,435 @@
 | 
				
			|||||||
 | 
					/*************************************************************************************
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Grid physics library, www.github.com/paboyle/Grid
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Source file: ./lib/qcd/action/fermion/WilsonCloverFermionImplementation.h
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Copyright (C) 2017 - 2022
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Author: paboyle <paboyle@ph.ed.ac.uk>
 | 
				
			||||||
 | 
					    Author: Daniel Richtmann <daniel.richtmann@gmail.com>
 | 
				
			||||||
 | 
					    Author: Mattia Bruno <mattia.bruno@cern.ch>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    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/Grid.h>
 | 
				
			||||||
 | 
					#include <Grid/qcd/spin/Dirac.h>
 | 
				
			||||||
 | 
					#include <Grid/qcd/action/fermion/WilsonCloverHelpers.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					////////////////////////////////////////////
 | 
				
			||||||
 | 
					// Standard Clover
 | 
				
			||||||
 | 
					//   (4+m0) + csw * clover_term
 | 
				
			||||||
 | 
					// Exp Clover
 | 
				
			||||||
 | 
					//   (4+m0) * exp(csw/(4+m0) clover_term)
 | 
				
			||||||
 | 
					//   = (4+m0) + csw * clover_term + ...
 | 
				
			||||||
 | 
					////////////////////////////////////////////
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					NAMESPACE_BEGIN(Grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					//////////////////////////////////
 | 
				
			||||||
 | 
					// Generic Standard Clover
 | 
				
			||||||
 | 
					//////////////////////////////////
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl>
 | 
				
			||||||
 | 
					class CloverHelpers: public WilsonCloverHelpers<Impl> {
 | 
				
			||||||
 | 
					public:
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  INHERIT_IMPL_TYPES(Impl);
 | 
				
			||||||
 | 
					  INHERIT_CLOVER_TYPES(Impl);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  typedef WilsonCloverHelpers<Impl> Helpers;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  static void Instantiate(CloverField& CloverTerm, CloverField& CloverTermInv, RealD csw_t, RealD diag_mass) {
 | 
				
			||||||
 | 
					    GridBase *grid = CloverTerm.Grid();
 | 
				
			||||||
 | 
					    CloverTerm += diag_mass;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    int lvol = grid->lSites();
 | 
				
			||||||
 | 
					    int DimRep = Impl::Dimension;
 | 
				
			||||||
 | 
					    {
 | 
				
			||||||
 | 
					      autoView(CTv,CloverTerm,CpuRead);
 | 
				
			||||||
 | 
					      autoView(CTIv,CloverTermInv,CpuWrite);
 | 
				
			||||||
 | 
					      thread_for(site, lvol, {
 | 
				
			||||||
 | 
					        Coordinate lcoor;
 | 
				
			||||||
 | 
					        grid->LocalIndexToLocalCoor(site, lcoor);
 | 
				
			||||||
 | 
					        Eigen::MatrixXcd EigenCloverOp = Eigen::MatrixXcd::Zero(Ns * DimRep, Ns * DimRep);
 | 
				
			||||||
 | 
					        Eigen::MatrixXcd EigenInvCloverOp = Eigen::MatrixXcd::Zero(Ns * DimRep, Ns * DimRep);
 | 
				
			||||||
 | 
					        typename SiteClover::scalar_object Qx = Zero(), Qxinv = Zero();
 | 
				
			||||||
 | 
					        peekLocalSite(Qx, CTv, lcoor);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					        for (int j = 0; j < Ns; j++)
 | 
				
			||||||
 | 
					          for (int k = 0; k < Ns; k++)
 | 
				
			||||||
 | 
					            for (int a = 0; a < DimRep; a++)
 | 
				
			||||||
 | 
					              for (int b = 0; b < DimRep; b++){
 | 
				
			||||||
 | 
					                auto zz =  Qx()(j, k)(a, b);
 | 
				
			||||||
 | 
					                EigenCloverOp(a + j * DimRep, b + k * DimRep) = std::complex<double>(zz);
 | 
				
			||||||
 | 
					              }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					        EigenInvCloverOp = EigenCloverOp.inverse();
 | 
				
			||||||
 | 
					        for (int j = 0; j < Ns; j++)
 | 
				
			||||||
 | 
					          for (int k = 0; k < Ns; k++)
 | 
				
			||||||
 | 
					            for (int a = 0; a < DimRep; a++)
 | 
				
			||||||
 | 
					              for (int b = 0; b < DimRep; b++)
 | 
				
			||||||
 | 
					                Qxinv()(j, k)(a, b) = EigenInvCloverOp(a + j * DimRep, b + k * DimRep);
 | 
				
			||||||
 | 
					               pokeLocalSite(Qxinv, CTIv, lcoor);
 | 
				
			||||||
 | 
					      });
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  static GaugeLinkField Cmunu(std::vector<GaugeLinkField> &U, GaugeLinkField &lambda, int mu, int nu) {
 | 
				
			||||||
 | 
					    return Helpers::Cmunu(U, lambda, mu, nu);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					//////////////////////////////////
 | 
				
			||||||
 | 
					// Generic Exp Clover
 | 
				
			||||||
 | 
					//////////////////////////////////
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl>
 | 
				
			||||||
 | 
					class ExpCloverHelpers: public WilsonCloverHelpers<Impl> {
 | 
				
			||||||
 | 
					public:
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  INHERIT_IMPL_TYPES(Impl);
 | 
				
			||||||
 | 
					  INHERIT_CLOVER_TYPES(Impl);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  template <typename vtype> using iImplClover = iScalar<iMatrix<iMatrix<vtype, Impl::Dimension>, Ns>>;
 | 
				
			||||||
 | 
					  typedef WilsonCloverHelpers<Impl> Helpers;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // Can this be avoided?
 | 
				
			||||||
 | 
					  static void IdentityTimesC(const CloverField& in, RealD c) {
 | 
				
			||||||
 | 
					    int DimRep = Impl::Dimension;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    autoView(in_v, in, AcceleratorWrite);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    accelerator_for(ss, in.Grid()->oSites(), 1, {
 | 
				
			||||||
 | 
					      for (int sa=0; sa<Ns; sa++)
 | 
				
			||||||
 | 
					        for (int ca=0; ca<DimRep; ca++)
 | 
				
			||||||
 | 
					          in_v[ss]()(sa,sa)(ca,ca) = c;
 | 
				
			||||||
 | 
					    });
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  static int getNMAX(RealD prec, RealD R) {
 | 
				
			||||||
 | 
					    /* compute stop condition for exponential */
 | 
				
			||||||
 | 
					    int NMAX=1;
 | 
				
			||||||
 | 
					    RealD cond=R*R/2.;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    while (cond*std::exp(R)>prec) {
 | 
				
			||||||
 | 
					      NMAX++;
 | 
				
			||||||
 | 
					      cond*=R/(double)(NMAX+1);
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					    return NMAX;
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  static int getNMAX(Lattice<iImplClover<vComplexD>> &t, RealD R) {return getNMAX(1e-12,R);}
 | 
				
			||||||
 | 
					  static int getNMAX(Lattice<iImplClover<vComplexF>> &t, RealD R) {return getNMAX(1e-6,R);}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  static void Instantiate(CloverField& Clover, CloverField& CloverInv, RealD csw_t, RealD diag_mass) {
 | 
				
			||||||
 | 
					    GridBase* grid = Clover.Grid();
 | 
				
			||||||
 | 
					    CloverField ExpClover(grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    int NMAX = getNMAX(Clover, 3.*csw_t/diag_mass);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Clover *= (1.0/diag_mass);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    // Taylor expansion, slow but generic
 | 
				
			||||||
 | 
					    // Horner scheme: a0 + a1 x + a2 x^2 + .. = a0 + x (a1 + x(...))
 | 
				
			||||||
 | 
					    // qN = cN
 | 
				
			||||||
 | 
					    // qn = cn + qn+1 X
 | 
				
			||||||
 | 
					    std::vector<RealD> cn(NMAX+1);
 | 
				
			||||||
 | 
					    cn[0] = 1.0;
 | 
				
			||||||
 | 
					    for (int i=1; i<=NMAX; i++)
 | 
				
			||||||
 | 
					      cn[i] = cn[i-1] / RealD(i);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    ExpClover = Zero();
 | 
				
			||||||
 | 
					    IdentityTimesC(ExpClover, cn[NMAX]);
 | 
				
			||||||
 | 
					    for (int i=NMAX-1; i>=0; i--)
 | 
				
			||||||
 | 
					      ExpClover = ExpClover * Clover + cn[i];
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    // prepare inverse
 | 
				
			||||||
 | 
					    CloverInv = (-1.0)*Clover;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Clover = ExpClover * diag_mass;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    ExpClover = Zero();
 | 
				
			||||||
 | 
					    IdentityTimesC(ExpClover, cn[NMAX]);
 | 
				
			||||||
 | 
					    for (int i=NMAX-1; i>=0; i--)
 | 
				
			||||||
 | 
					      ExpClover = ExpClover * CloverInv + cn[i];
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    CloverInv = ExpClover * (1.0/diag_mass);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  static GaugeLinkField Cmunu(std::vector<GaugeLinkField> &U, GaugeLinkField &lambda, int mu, int nu) {
 | 
				
			||||||
 | 
					    assert(0);
 | 
				
			||||||
 | 
					    return lambda;
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					//////////////////////////////////
 | 
				
			||||||
 | 
					// Compact Standard Clover
 | 
				
			||||||
 | 
					//////////////////////////////////
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl>
 | 
				
			||||||
 | 
					class CompactCloverHelpers: public CompactWilsonCloverHelpers<Impl>,
 | 
				
			||||||
 | 
					                            public WilsonCloverHelpers<Impl> {
 | 
				
			||||||
 | 
					public:
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  INHERIT_IMPL_TYPES(Impl);
 | 
				
			||||||
 | 
					  INHERIT_CLOVER_TYPES(Impl);
 | 
				
			||||||
 | 
					  INHERIT_COMPACT_CLOVER_TYPES(Impl);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  typedef WilsonCloverHelpers<Impl> Helpers;
 | 
				
			||||||
 | 
					  typedef CompactWilsonCloverHelpers<Impl> CompactHelpers;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  static void MassTerm(CloverField& Clover, RealD diag_mass) {
 | 
				
			||||||
 | 
					    Clover += diag_mass;
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  static void Exponentiate_Clover(CloverDiagonalField& Diagonal,
 | 
				
			||||||
 | 
					                          CloverTriangleField& Triangle,
 | 
				
			||||||
 | 
					                          RealD csw_t, RealD diag_mass) {
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    // Do nothing
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // TODO: implement Cmunu for better performances with compact layout, but don't do it
 | 
				
			||||||
 | 
					  // here, but rather in WilsonCloverHelpers.h -> CompactWilsonCloverHelpers
 | 
				
			||||||
 | 
					  static GaugeLinkField Cmunu(std::vector<GaugeLinkField> &U, GaugeLinkField &lambda, int mu, int nu) {
 | 
				
			||||||
 | 
					    return Helpers::Cmunu(U, lambda, mu, nu);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					//////////////////////////////////
 | 
				
			||||||
 | 
					// Compact Exp Clover
 | 
				
			||||||
 | 
					//////////////////////////////////
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl>
 | 
				
			||||||
 | 
					class CompactExpCloverHelpers: public CompactWilsonCloverHelpers<Impl> {
 | 
				
			||||||
 | 
					public:
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  INHERIT_IMPL_TYPES(Impl);
 | 
				
			||||||
 | 
					  INHERIT_CLOVER_TYPES(Impl);
 | 
				
			||||||
 | 
					  INHERIT_COMPACT_CLOVER_TYPES(Impl);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  template <typename vtype> using iImplClover = iScalar<iMatrix<iMatrix<vtype, Impl::Dimension>, Ns>>;
 | 
				
			||||||
 | 
					  typedef CompactWilsonCloverHelpers<Impl> CompactHelpers;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  static void MassTerm(CloverField& Clover, RealD diag_mass) {
 | 
				
			||||||
 | 
					    // do nothing!
 | 
				
			||||||
 | 
					    // mass term is multiplied to exp(Clover) below
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  static int getNMAX(RealD prec, RealD R) {
 | 
				
			||||||
 | 
					    /* compute stop condition for exponential */
 | 
				
			||||||
 | 
					    int NMAX=1;
 | 
				
			||||||
 | 
					    RealD cond=R*R/2.;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    while (cond*std::exp(R)>prec) {
 | 
				
			||||||
 | 
					      NMAX++;
 | 
				
			||||||
 | 
					      cond*=R/(double)(NMAX+1);
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					    return NMAX;
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  static int getNMAX(Lattice<iImplCloverDiagonal<vComplexD>> &t, RealD R) {return getNMAX(1e-12,R);}
 | 
				
			||||||
 | 
					  static int getNMAX(Lattice<iImplCloverDiagonal<vComplexF>> &t, RealD R) {return getNMAX(1e-6,R);}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  static void ExponentiateHermitean6by6(const iMatrix<ComplexD,6> &arg, const RealD& alpha, const std::vector<RealD>& cN, const int Niter, iMatrix<ComplexD,6>& dest){
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  	  typedef iMatrix<ComplexD,6> mat;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  	  RealD qn[6];
 | 
				
			||||||
 | 
					  	  RealD qnold[6];
 | 
				
			||||||
 | 
					  	  RealD p[5];
 | 
				
			||||||
 | 
					  	  RealD trA2, trA3, trA4;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  	  mat A2, A3, A4, A5;
 | 
				
			||||||
 | 
					  	  A2 = alpha * alpha * arg * arg;
 | 
				
			||||||
 | 
					  	  A3 = alpha * arg * A2;
 | 
				
			||||||
 | 
					  	  A4 = A2 * A2;
 | 
				
			||||||
 | 
					  	  A5 = A2 * A3;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  	  trA2 = toReal( trace(A2) );
 | 
				
			||||||
 | 
					  	  trA3 = toReal( trace(A3) );
 | 
				
			||||||
 | 
					  	  trA4 = toReal( trace(A4));
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  	  p[0] = toReal( trace(A3 * A3)) / 6.0 - 0.125 * trA4 * trA2 - trA3 * trA3 / 18.0 + trA2 * trA2 * trA2/ 48.0;
 | 
				
			||||||
 | 
					  	  p[1] = toReal( trace(A5)) / 5.0 - trA3 * trA2 / 6.0;
 | 
				
			||||||
 | 
					  	  p[2] = toReal( trace(A4)) / 4.0 - 0.125 * trA2 * trA2;
 | 
				
			||||||
 | 
					  	  p[3] = trA3 / 3.0;
 | 
				
			||||||
 | 
					  	  p[4] = 0.5 * trA2;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  	  qnold[0] = cN[Niter];
 | 
				
			||||||
 | 
					  	  qnold[1] = 0.0;
 | 
				
			||||||
 | 
					  	  qnold[2] = 0.0;
 | 
				
			||||||
 | 
					  	  qnold[3] = 0.0;
 | 
				
			||||||
 | 
					  	  qnold[4] = 0.0;
 | 
				
			||||||
 | 
					  	  qnold[5] = 0.0;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  	  for(int i = Niter-1; i >= 0; i--)
 | 
				
			||||||
 | 
					  	  {
 | 
				
			||||||
 | 
					  	   qn[0] = p[0] * qnold[5] + cN[i];
 | 
				
			||||||
 | 
					  	   qn[1] = p[1] * qnold[5] + qnold[0];
 | 
				
			||||||
 | 
					  	   qn[2] = p[2] * qnold[5] + qnold[1];
 | 
				
			||||||
 | 
					  	   qn[3] = p[3] * qnold[5] + qnold[2];
 | 
				
			||||||
 | 
					  	   qn[4] = p[4] * qnold[5] + qnold[3];
 | 
				
			||||||
 | 
					  	   qn[5] = qnold[4];
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  	   qnold[0] = qn[0];
 | 
				
			||||||
 | 
					  	   qnold[1] = qn[1];
 | 
				
			||||||
 | 
					  	   qnold[2] = qn[2];
 | 
				
			||||||
 | 
					  	   qnold[3] = qn[3];
 | 
				
			||||||
 | 
					  	   qnold[4] = qn[4];
 | 
				
			||||||
 | 
					  	   qnold[5] = qn[5];
 | 
				
			||||||
 | 
					  	  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  	  mat unit(1.0);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  	  dest = (qn[0] * unit + qn[1] * alpha * arg + qn[2] * A2 + qn[3] * A3 + qn[4] * A4 + qn[5] * A5);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  static void Exponentiate_Clover(CloverDiagonalField& Diagonal, CloverTriangleField& Triangle, RealD csw_t, RealD diag_mass) {
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    GridBase* grid = Diagonal.Grid();
 | 
				
			||||||
 | 
					    int NMAX = getNMAX(Diagonal, 3.*csw_t/diag_mass);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    //
 | 
				
			||||||
 | 
					    // Implementation completely in Daniel's layout
 | 
				
			||||||
 | 
					    //
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    // Taylor expansion with Cayley-Hamilton recursion
 | 
				
			||||||
 | 
					    // underlying Horner scheme as above
 | 
				
			||||||
 | 
					    std::vector<RealD> cn(NMAX+1);
 | 
				
			||||||
 | 
					    cn[0] = 1.0;
 | 
				
			||||||
 | 
					    for (int i=1; i<=NMAX; i++){
 | 
				
			||||||
 | 
					      cn[i] = cn[i-1] / RealD(i);
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      // Taken over from Daniel's implementation
 | 
				
			||||||
 | 
					      conformable(Diagonal, Triangle);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      long lsites = grid->lSites();
 | 
				
			||||||
 | 
					    {
 | 
				
			||||||
 | 
					      typedef typename SiteCloverDiagonal::scalar_object scalar_object_diagonal;
 | 
				
			||||||
 | 
					      typedef typename SiteCloverTriangle::scalar_object scalar_object_triangle;
 | 
				
			||||||
 | 
					      typedef iMatrix<ComplexD,6> mat;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      autoView(diagonal_v,  Diagonal,  CpuRead);
 | 
				
			||||||
 | 
					      autoView(triangle_v,  Triangle,  CpuRead);
 | 
				
			||||||
 | 
					      autoView(diagonalExp_v, Diagonal, CpuWrite);
 | 
				
			||||||
 | 
					      autoView(triangleExp_v, Triangle, CpuWrite);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      thread_for(site, lsites, { // NOTE: Not on GPU because of (peek/poke)LocalSite
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    	  mat srcCloverOpUL(0.0); // upper left block
 | 
				
			||||||
 | 
					    	  mat srcCloverOpLR(0.0); // lower right block
 | 
				
			||||||
 | 
					    	  mat ExpCloverOp;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					        scalar_object_diagonal diagonal_tmp     = Zero();
 | 
				
			||||||
 | 
					        scalar_object_diagonal diagonal_exp_tmp = Zero();
 | 
				
			||||||
 | 
					        scalar_object_triangle triangle_tmp     = Zero();
 | 
				
			||||||
 | 
					        scalar_object_triangle triangle_exp_tmp = Zero();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					        Coordinate lcoor;
 | 
				
			||||||
 | 
					        grid->LocalIndexToLocalCoor(site, lcoor);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					        peekLocalSite(diagonal_tmp, diagonal_v, lcoor);
 | 
				
			||||||
 | 
					        peekLocalSite(triangle_tmp, triangle_v, lcoor);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					        int block;
 | 
				
			||||||
 | 
					        block = 0;
 | 
				
			||||||
 | 
					        for(int i = 0; i < 6; i++){
 | 
				
			||||||
 | 
					        	for(int j = 0; j < 6; j++){
 | 
				
			||||||
 | 
					        		if (i == j){
 | 
				
			||||||
 | 
					        			srcCloverOpUL(i,j) = static_cast<ComplexD>(TensorRemove(diagonal_tmp()(block)(i)));
 | 
				
			||||||
 | 
					        		}
 | 
				
			||||||
 | 
					        		else{
 | 
				
			||||||
 | 
					        			srcCloverOpUL(i,j) = static_cast<ComplexD>(TensorRemove(CompactHelpers::triangle_elem(triangle_tmp, block, i, j)));
 | 
				
			||||||
 | 
					        		}
 | 
				
			||||||
 | 
					        	}
 | 
				
			||||||
 | 
					        }
 | 
				
			||||||
 | 
					        block = 1;
 | 
				
			||||||
 | 
					        for(int i = 0; i < 6; i++){
 | 
				
			||||||
 | 
					          	for(int j = 0; j < 6; j++){
 | 
				
			||||||
 | 
					           		if (i == j){
 | 
				
			||||||
 | 
					           			srcCloverOpLR(i,j) = static_cast<ComplexD>(TensorRemove(diagonal_tmp()(block)(i)));
 | 
				
			||||||
 | 
					           		}
 | 
				
			||||||
 | 
					           		else{
 | 
				
			||||||
 | 
					           			srcCloverOpLR(i,j) = static_cast<ComplexD>(TensorRemove(CompactHelpers::triangle_elem(triangle_tmp, block, i, j)));
 | 
				
			||||||
 | 
					           		}
 | 
				
			||||||
 | 
					            }
 | 
				
			||||||
 | 
					        }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					        // exp(Clover)
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					        ExponentiateHermitean6by6(srcCloverOpUL,1.0/diag_mass,cn,NMAX,ExpCloverOp);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					        block = 0;
 | 
				
			||||||
 | 
					        for(int i = 0; i < 6; i++){
 | 
				
			||||||
 | 
					        	for(int j = 0; j < 6; j++){
 | 
				
			||||||
 | 
					            	if (i == j){
 | 
				
			||||||
 | 
					            		diagonal_exp_tmp()(block)(i) = ExpCloverOp(i,j);
 | 
				
			||||||
 | 
					            	}
 | 
				
			||||||
 | 
					            	else if(i < j){
 | 
				
			||||||
 | 
					            		triangle_exp_tmp()(block)(CompactHelpers::triangle_index(i, j)) = ExpCloverOp(i,j);
 | 
				
			||||||
 | 
					            	}
 | 
				
			||||||
 | 
					           	}
 | 
				
			||||||
 | 
					        }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					        ExponentiateHermitean6by6(srcCloverOpLR,1.0/diag_mass,cn,NMAX,ExpCloverOp);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					        block = 1;
 | 
				
			||||||
 | 
					        for(int i = 0; i < 6; i++){
 | 
				
			||||||
 | 
					        	for(int j = 0; j < 6; j++){
 | 
				
			||||||
 | 
					              	if (i == j){
 | 
				
			||||||
 | 
					              		diagonal_exp_tmp()(block)(i) = ExpCloverOp(i,j);
 | 
				
			||||||
 | 
					               	}
 | 
				
			||||||
 | 
					               	else if(i < j){
 | 
				
			||||||
 | 
					               		triangle_exp_tmp()(block)(CompactHelpers::triangle_index(i, j)) = ExpCloverOp(i,j);
 | 
				
			||||||
 | 
					               	}
 | 
				
			||||||
 | 
					            }
 | 
				
			||||||
 | 
					        }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					        pokeLocalSite(diagonal_exp_tmp, diagonalExp_v, lcoor);
 | 
				
			||||||
 | 
					        pokeLocalSite(triangle_exp_tmp, triangleExp_v, lcoor);
 | 
				
			||||||
 | 
					      });
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Diagonal *= diag_mass;
 | 
				
			||||||
 | 
					    Triangle *= diag_mass;
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  static GaugeLinkField Cmunu(std::vector<GaugeLinkField> &U, GaugeLinkField &lambda, int mu, int nu) {
 | 
				
			||||||
 | 
					    assert(0);
 | 
				
			||||||
 | 
					    return lambda;
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					NAMESPACE_END(Grid);
 | 
				
			||||||
							
								
								
									
										241
									
								
								Grid/qcd/action/fermion/CompactWilsonCloverFermion.h
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										241
									
								
								Grid/qcd/action/fermion/CompactWilsonCloverFermion.h
									
									
									
									
									
										Normal file
									
								
							@@ -0,0 +1,241 @@
 | 
				
			|||||||
 | 
					/*************************************************************************************
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    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>
 | 
				
			||||||
 | 
					#include <Grid/qcd/action/fermion/CloverHelpers.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 CloverHelpers>
 | 
				
			||||||
 | 
					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);
 | 
				
			||||||
@@ -53,6 +53,7 @@ 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);
 | 
				
			||||||
@@ -115,9 +116,9 @@ 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;
 | 
				
			||||||
@@ -137,62 +138,93 @@ typedef WilsonTMFermion<WilsonImplF> WilsonTMFermionF;
 | 
				
			|||||||
typedef WilsonTMFermion<WilsonImplD> WilsonTMFermionD;
 | 
					typedef WilsonTMFermion<WilsonImplD> WilsonTMFermionD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
// Clover fermions
 | 
					// Clover fermions
 | 
				
			||||||
typedef WilsonCloverFermion<WilsonImplR> WilsonCloverFermionR;
 | 
					template <typename WImpl> using WilsonClover = WilsonCloverFermion<WImpl, CloverHelpers<WImpl>>;
 | 
				
			||||||
typedef WilsonCloverFermion<WilsonImplF> WilsonCloverFermionF;
 | 
					template <typename WImpl> using WilsonExpClover = WilsonCloverFermion<WImpl, ExpCloverHelpers<WImpl>>;
 | 
				
			||||||
typedef WilsonCloverFermion<WilsonImplD> WilsonCloverFermionD;
 | 
					 | 
				
			||||||
 | 
					
 | 
				
			||||||
typedef WilsonCloverFermion<WilsonAdjImplR> WilsonCloverAdjFermionR;
 | 
					typedef WilsonClover<WilsonImplR> WilsonCloverFermionR;
 | 
				
			||||||
typedef WilsonCloverFermion<WilsonAdjImplF> WilsonCloverAdjFermionF;
 | 
					typedef WilsonClover<WilsonImplF> WilsonCloverFermionF;
 | 
				
			||||||
typedef WilsonCloverFermion<WilsonAdjImplD> WilsonCloverAdjFermionD;
 | 
					typedef WilsonClover<WilsonImplD> WilsonCloverFermionD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
typedef WilsonCloverFermion<WilsonTwoIndexSymmetricImplR> WilsonCloverTwoIndexSymmetricFermionR;
 | 
					typedef WilsonExpClover<WilsonImplR> WilsonExpCloverFermionR;
 | 
				
			||||||
typedef WilsonCloverFermion<WilsonTwoIndexSymmetricImplF> WilsonCloverTwoIndexSymmetricFermionF;
 | 
					typedef WilsonExpClover<WilsonImplF> WilsonExpCloverFermionF;
 | 
				
			||||||
typedef WilsonCloverFermion<WilsonTwoIndexSymmetricImplD> WilsonCloverTwoIndexSymmetricFermionD;
 | 
					typedef WilsonExpClover<WilsonImplD> WilsonExpCloverFermionD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
typedef WilsonCloverFermion<WilsonTwoIndexAntiSymmetricImplR> WilsonCloverTwoIndexAntiSymmetricFermionR;
 | 
					typedef WilsonClover<WilsonAdjImplR> WilsonCloverAdjFermionR;
 | 
				
			||||||
typedef WilsonCloverFermion<WilsonTwoIndexAntiSymmetricImplF> WilsonCloverTwoIndexAntiSymmetricFermionF;
 | 
					typedef WilsonClover<WilsonAdjImplF> WilsonCloverAdjFermionF;
 | 
				
			||||||
typedef WilsonCloverFermion<WilsonTwoIndexAntiSymmetricImplD> WilsonCloverTwoIndexAntiSymmetricFermionD;
 | 
					typedef WilsonClover<WilsonAdjImplD> WilsonCloverAdjFermionD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					typedef WilsonClover<WilsonTwoIndexSymmetricImplR> WilsonCloverTwoIndexSymmetricFermionR;
 | 
				
			||||||
 | 
					typedef WilsonClover<WilsonTwoIndexSymmetricImplF> WilsonCloverTwoIndexSymmetricFermionF;
 | 
				
			||||||
 | 
					typedef WilsonClover<WilsonTwoIndexSymmetricImplD> WilsonCloverTwoIndexSymmetricFermionD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					typedef WilsonClover<WilsonTwoIndexAntiSymmetricImplR> WilsonCloverTwoIndexAntiSymmetricFermionR;
 | 
				
			||||||
 | 
					typedef WilsonClover<WilsonTwoIndexAntiSymmetricImplF> WilsonCloverTwoIndexAntiSymmetricFermionF;
 | 
				
			||||||
 | 
					typedef WilsonClover<WilsonTwoIndexAntiSymmetricImplD> WilsonCloverTwoIndexAntiSymmetricFermionD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					// Compact Clover fermions
 | 
				
			||||||
 | 
					template <typename WImpl> using CompactWilsonClover = CompactWilsonCloverFermion<WImpl, CompactCloverHelpers<WImpl>>;
 | 
				
			||||||
 | 
					template <typename WImpl> using CompactWilsonExpClover = CompactWilsonCloverFermion<WImpl, CompactExpCloverHelpers<WImpl>>;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					typedef CompactWilsonClover<WilsonImplR> CompactWilsonCloverFermionR;
 | 
				
			||||||
 | 
					typedef CompactWilsonClover<WilsonImplF> CompactWilsonCloverFermionF;
 | 
				
			||||||
 | 
					typedef CompactWilsonClover<WilsonImplD> CompactWilsonCloverFermionD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					typedef CompactWilsonExpClover<WilsonImplR> CompactWilsonExpCloverFermionR;
 | 
				
			||||||
 | 
					typedef CompactWilsonExpClover<WilsonImplF> CompactWilsonExpCloverFermionF;
 | 
				
			||||||
 | 
					typedef CompactWilsonExpClover<WilsonImplD> CompactWilsonExpCloverFermionD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					typedef CompactWilsonClover<WilsonAdjImplR> CompactWilsonCloverAdjFermionR;
 | 
				
			||||||
 | 
					typedef CompactWilsonClover<WilsonAdjImplF> CompactWilsonCloverAdjFermionF;
 | 
				
			||||||
 | 
					typedef CompactWilsonClover<WilsonAdjImplD> CompactWilsonCloverAdjFermionD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					typedef CompactWilsonClover<WilsonTwoIndexSymmetricImplR> CompactWilsonCloverTwoIndexSymmetricFermionR;
 | 
				
			||||||
 | 
					typedef CompactWilsonClover<WilsonTwoIndexSymmetricImplF> CompactWilsonCloverTwoIndexSymmetricFermionF;
 | 
				
			||||||
 | 
					typedef CompactWilsonClover<WilsonTwoIndexSymmetricImplD> CompactWilsonCloverTwoIndexSymmetricFermionD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					typedef CompactWilsonClover<WilsonTwoIndexAntiSymmetricImplR> CompactWilsonCloverTwoIndexAntiSymmetricFermionR;
 | 
				
			||||||
 | 
					typedef CompactWilsonClover<WilsonTwoIndexAntiSymmetricImplF> CompactWilsonCloverTwoIndexAntiSymmetricFermionF;
 | 
				
			||||||
 | 
					typedef CompactWilsonClover<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;
 | 
				
			||||||
@@ -235,49 +267,49 @@ 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;
 | 
				
			||||||
@@ -291,12 +323,6 @@ typedef ImprovedStaggeredFermion5D<StaggeredImplR> ImprovedStaggeredFermion5DR;
 | 
				
			|||||||
typedef ImprovedStaggeredFermion5D<StaggeredImplF> ImprovedStaggeredFermion5DF;
 | 
					typedef ImprovedStaggeredFermion5D<StaggeredImplF> ImprovedStaggeredFermion5DF;
 | 
				
			||||||
typedef ImprovedStaggeredFermion5D<StaggeredImplD> ImprovedStaggeredFermion5DD;
 | 
					typedef ImprovedStaggeredFermion5D<StaggeredImplD> ImprovedStaggeredFermion5DD;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#ifndef GRID_CUDA
 | 
					 | 
				
			||||||
typedef ImprovedStaggeredFermion5D<StaggeredVec5dImplR> ImprovedStaggeredFermionVec5dR;
 | 
					 | 
				
			||||||
typedef ImprovedStaggeredFermion5D<StaggeredVec5dImplF> ImprovedStaggeredFermionVec5dF;
 | 
					 | 
				
			||||||
typedef ImprovedStaggeredFermion5D<StaggeredVec5dImplD> ImprovedStaggeredFermionVec5dD;
 | 
					 | 
				
			||||||
#endif
 | 
					 | 
				
			||||||
 | 
					 | 
				
			||||||
NAMESPACE_END(Grid);
 | 
					NAMESPACE_END(Grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
////////////////////
 | 
					////////////////////
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -49,6 +49,8 @@ public:
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
  virtual FermionField &tmp(void) = 0;
 | 
					  virtual FermionField &tmp(void) = 0;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  virtual void DirichletBlock(const Coordinate & _Block) { assert(0); };
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
  GridBase * Grid(void)   { return FermionGrid(); };   // this is all the linalg routines need to know
 | 
					  GridBase * Grid(void)   { return FermionGrid(); };   // this is all the linalg routines need to know
 | 
				
			||||||
  GridBase * RedBlackGrid(void) { return FermionRedBlackGrid(); };
 | 
					  GridBase * RedBlackGrid(void) { return FermionRedBlackGrid(); };
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -183,7 +183,8 @@ NAMESPACE_CHECK(ImplStaggered);
 | 
				
			|||||||
/////////////////////////////////////////////////////////////////////////////
 | 
					/////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
// Single flavour one component spinors with colour index. 5d vec
 | 
					// Single flavour one component spinors with colour index. 5d vec
 | 
				
			||||||
/////////////////////////////////////////////////////////////////////////////
 | 
					/////////////////////////////////////////////////////////////////////////////
 | 
				
			||||||
#include <Grid/qcd/action/fermion/StaggeredVec5dImpl.h> 
 | 
					// Deprecate Vec5d
 | 
				
			||||||
NAMESPACE_CHECK(ImplStaggered5dVec);  
 | 
					//#include <Grid/qcd/action/fermion/StaggeredVec5dImpl.h> 
 | 
				
			||||||
 | 
					//NAMESPACE_CHECK(ImplStaggered5dVec);  
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -30,6 +30,18 @@ directory
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
NAMESPACE_BEGIN(Grid);
 | 
					NAMESPACE_BEGIN(Grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					/*
 | 
				
			||||||
 | 
					  Policy implementation for G-parity boundary conditions
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  Rather than treating the gauge field as a flavored field, the Grid implementation of G-parity treats the gauge field as a regular
 | 
				
			||||||
 | 
					  field with complex conjugate boundary conditions. In order to ensure the second flavor interacts with the conjugate links and the first
 | 
				
			||||||
 | 
					  with the regular links we overload the functionality of doubleStore, whose purpose is to store the gauge field and the barrel-shifted gauge field
 | 
				
			||||||
 | 
					  to avoid communicating links when applying the Dirac operator, such that the double-stored field contains also a flavor index which maps to
 | 
				
			||||||
 | 
					  either the link or the conjugate link. This flavored field is then used by multLink to apply the correct link to a spinor.
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  Here the first Nd-1 directions are treated as "spatial", and a twist value of 1 indicates G-parity BCs in that direction. 
 | 
				
			||||||
 | 
					  mu=Nd-1 is assumed to be the time direction and a twist value of 1 indicates antiperiodic BCs
 | 
				
			||||||
 | 
					 */
 | 
				
			||||||
template <class S, class Representation = FundamentalRepresentation, class Options=CoeffReal>
 | 
					template <class S, class Representation = FundamentalRepresentation, class Options=CoeffReal>
 | 
				
			||||||
class GparityWilsonImpl : public ConjugateGaugeImpl<GaugeImplTypes<S, Representation::Dimension> > {
 | 
					class GparityWilsonImpl : public ConjugateGaugeImpl<GaugeImplTypes<S, Representation::Dimension> > {
 | 
				
			||||||
public:
 | 
					public:
 | 
				
			||||||
@@ -113,7 +125,7 @@ public:
 | 
				
			|||||||
    || ((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
 | 
					    permute_lane = permute_lane && SE->_around_the_world && St.parameters.twists[mmu] && mmu < Nd-1; //only if we are going around the world in a spatial direction
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    //Apply the links
 | 
					    //Apply the links
 | 
				
			||||||
    int f_upper = permute_lane ? 1 : 0;
 | 
					    int f_upper = permute_lane ? 1 : 0;
 | 
				
			||||||
@@ -139,10 +151,10 @@ public:
 | 
				
			|||||||
    assert((distance == 1) || (distance == -1));  // nearest neighbour stencil hard code
 | 
					    assert((distance == 1) || (distance == -1));  // nearest neighbour stencil hard code
 | 
				
			||||||
    assert((sl == 1) || (sl == 2));
 | 
					    assert((sl == 1) || (sl == 2));
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    if ( SE->_around_the_world && St.parameters.twists[mmu] ) {
 | 
					    //If this site is an global boundary site, perform the G-parity flavor twist
 | 
				
			||||||
 | 
					    if ( mmu < Nd-1 && SE->_around_the_world && St.parameters.twists[mmu] ) {
 | 
				
			||||||
      if ( sl == 2 ) {
 | 
					      if ( sl == 2 ) {
 | 
				
			||||||
       
 | 
						//Only do the twist for lanes on the edge of the physical node
 | 
				
			||||||
	ExtractBuffer<sobj> vals(Nsimd);
 | 
						ExtractBuffer<sobj> vals(Nsimd);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
	extract(chi,vals);
 | 
						extract(chi,vals);
 | 
				
			||||||
@@ -197,6 +209,19 @@ public:
 | 
				
			|||||||
    reg = memory;
 | 
					    reg = memory;
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  //Poke 'poke_f0' onto flavor 0 and 'poke_f1' onto flavor 1 in direction mu of the doubled gauge field Uds
 | 
				
			||||||
 | 
					  inline void pokeGparityDoubledGaugeField(DoubledGaugeField &Uds, const GaugeLinkField &poke_f0, const GaugeLinkField &poke_f1, const int mu){
 | 
				
			||||||
 | 
					    autoView(poke_f0_v, poke_f0, CpuRead);
 | 
				
			||||||
 | 
					    autoView(poke_f1_v, poke_f1, CpuRead);
 | 
				
			||||||
 | 
					    autoView(Uds_v, Uds, CpuWrite);
 | 
				
			||||||
 | 
					    thread_foreach(ss,poke_f0_v,{
 | 
				
			||||||
 | 
						Uds_v[ss](0)(mu) = poke_f0_v[ss]();
 | 
				
			||||||
 | 
						Uds_v[ss](1)(mu) = poke_f1_v[ss]();
 | 
				
			||||||
 | 
					      });
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					    
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  inline void DoubleStore(GridBase *GaugeGrid,DoubledGaugeField &Uds,const GaugeField &Umu)
 | 
					  inline void DoubleStore(GridBase *GaugeGrid,DoubledGaugeField &Uds,const GaugeField &Umu)
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
    conformable(Uds.Grid(),GaugeGrid);
 | 
					    conformable(Uds.Grid(),GaugeGrid);
 | 
				
			||||||
@@ -207,14 +232,19 @@ public:
 | 
				
			|||||||
    GaugeLinkField Uconj(GaugeGrid);
 | 
					    GaugeLinkField Uconj(GaugeGrid);
 | 
				
			||||||
   
 | 
					   
 | 
				
			||||||
    Lattice<iScalar<vInteger> > coor(GaugeGrid);
 | 
					    Lattice<iScalar<vInteger> > coor(GaugeGrid);
 | 
				
			||||||
        
 | 
					
 | 
				
			||||||
    for(int mu=0;mu<Nd;mu++){
 | 
					    //Here the first Nd-1 directions are treated as "spatial", and a twist value of 1 indicates G-parity BCs in that direction. 
 | 
				
			||||||
          
 | 
					    //mu=Nd-1 is assumed to be the time direction and a twist value of 1 indicates antiperiodic BCs        
 | 
				
			||||||
      LatticeCoordinate(coor,mu);
 | 
					    for(int mu=0;mu<Nd-1;mu++){
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      if( Params.twists[mu] ){
 | 
				
			||||||
 | 
						LatticeCoordinate(coor,mu);
 | 
				
			||||||
 | 
					      }
 | 
				
			||||||
          
 | 
					          
 | 
				
			||||||
      U     = PeekIndex<LorentzIndex>(Umu,mu);
 | 
					      U     = PeekIndex<LorentzIndex>(Umu,mu);
 | 
				
			||||||
      Uconj = conjugate(U);
 | 
					      Uconj = conjugate(U);
 | 
				
			||||||
     
 | 
					     
 | 
				
			||||||
 | 
					      // Implement the isospin rotation sign on the boundary between f=1 and f=0
 | 
				
			||||||
      // This phase could come from a simple bc 1,1,-1,1 ..
 | 
					      // This phase could come from a simple bc 1,1,-1,1 ..
 | 
				
			||||||
      int neglink = GaugeGrid->GlobalDimensions()[mu]-1;
 | 
					      int neglink = GaugeGrid->GlobalDimensions()[mu]-1;
 | 
				
			||||||
      if ( Params.twists[mu] ) { 
 | 
					      if ( Params.twists[mu] ) { 
 | 
				
			||||||
@@ -229,7 +259,7 @@ public:
 | 
				
			|||||||
	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
 | 
				
			||||||
@@ -260,6 +290,38 @@ public:
 | 
				
			|||||||
        });
 | 
					        });
 | 
				
			||||||
      }
 | 
					      }
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    { //periodic / antiperiodic temporal BCs
 | 
				
			||||||
 | 
					      int mu = Nd-1;
 | 
				
			||||||
 | 
					      int L   = GaugeGrid->GlobalDimensions()[mu];
 | 
				
			||||||
 | 
					      int Lmu = L - 1;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      LatticeCoordinate(coor, mu);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      U = PeekIndex<LorentzIndex>(Umu, mu); //Get t-directed links
 | 
				
			||||||
 | 
					      
 | 
				
			||||||
 | 
					      GaugeLinkField *Upoke = &U;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      if(Params.twists[mu]){ //antiperiodic
 | 
				
			||||||
 | 
						Utmp =  where(coor == Lmu, -U, U);
 | 
				
			||||||
 | 
						Upoke = &Utmp;
 | 
				
			||||||
 | 
					      }
 | 
				
			||||||
 | 
					    
 | 
				
			||||||
 | 
					      Uconj = conjugate(*Upoke); //second flavor interacts with conjugate links      
 | 
				
			||||||
 | 
					      pokeGparityDoubledGaugeField(Uds, *Upoke, Uconj, mu);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      //Get the barrel-shifted field
 | 
				
			||||||
 | 
					      Utmp = adj(Cshift(U, mu, -1)); //is a forward shift!
 | 
				
			||||||
 | 
					      Upoke = &Utmp;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					      if(Params.twists[mu]){
 | 
				
			||||||
 | 
						U = where(coor == 0, -Utmp, Utmp);  //boundary phase
 | 
				
			||||||
 | 
						Upoke = &U;
 | 
				
			||||||
 | 
					      }
 | 
				
			||||||
 | 
					      
 | 
				
			||||||
 | 
					      Uconj = conjugate(*Upoke);
 | 
				
			||||||
 | 
					      pokeGparityDoubledGaugeField(Uds, *Upoke, Uconj, mu + 4);
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
  inline void InsertForce4D(GaugeField &mat, FermionField &Btilde, FermionField &A, int mu) {
 | 
					  inline void InsertForce4D(GaugeField &mat, FermionField &Btilde, FermionField &A, int mu) {
 | 
				
			||||||
@@ -298,28 +360,48 @@ public:
 | 
				
			|||||||
  inline void extractLinkField(std::vector<GaugeLinkField> &mat, DoubledGaugeField &Uds){
 | 
					  inline void extractLinkField(std::vector<GaugeLinkField> &mat, DoubledGaugeField &Uds){
 | 
				
			||||||
    assert(0);
 | 
					    assert(0);
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
  
 | 
					 
 | 
				
			||||||
  inline void InsertForce5D(GaugeField &mat, FermionField &Btilde, FermionField Ã, int mu) {
 | 
					  inline void InsertForce5D(GaugeField &mat, FermionField &Btilde, FermionField Ã, int mu) {
 | 
				
			||||||
 | 
					    int Ls=Btilde.Grid()->_fdimensions[0];
 | 
				
			||||||
    int Ls = Btilde.Grid()->_fdimensions[0];
 | 
					    
 | 
				
			||||||
        
 | 
					 | 
				
			||||||
    GaugeLinkField tmp(mat.Grid());
 | 
					 | 
				
			||||||
    tmp = Zero();
 | 
					 | 
				
			||||||
    {
 | 
					    {
 | 
				
			||||||
      autoView( tmp_v , tmp, CpuWrite);
 | 
					      GridBase *GaugeGrid = mat.Grid();
 | 
				
			||||||
      autoView( Atilde_v , Atilde, CpuRead);
 | 
					      Lattice<iScalar<vInteger> > coor(GaugeGrid);
 | 
				
			||||||
      autoView( Btilde_v , Btilde, CpuRead);
 | 
					
 | 
				
			||||||
      thread_for(ss,tmp.Grid()->oSites(),{
 | 
					      if( Params.twists[mu] ){
 | 
				
			||||||
	  for (int s = 0; s < Ls; s++) {
 | 
						LatticeCoordinate(coor,mu);
 | 
				
			||||||
	    int sF = s + Ls * ss;
 | 
					      }
 | 
				
			||||||
	    auto ttmp = traceIndex<SpinIndex>(outerProduct(Btilde_v[sF], Atilde_v[sF]));
 | 
					
 | 
				
			||||||
	    tmp_v[ss]() = tmp_v[ss]() + ttmp(0, 0) + conjugate(ttmp(1, 1));
 | 
					      autoView( mat_v , mat, AcceleratorWrite);
 | 
				
			||||||
	  }
 | 
					      autoView( Btilde_v , Btilde, AcceleratorRead);
 | 
				
			||||||
	});
 | 
					      autoView( Atilde_v , Atilde, AcceleratorRead);
 | 
				
			||||||
 | 
					      accelerator_for(sss,mat.Grid()->oSites(), FermionField::vector_type::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
 | 
				
			||||||
 | 
						      //Flavor 0
 | 
				
			||||||
 | 
					  	      auto bb = coalescedRead(Btilde_v[sF](0)(spn) ); //color vector
 | 
				
			||||||
 | 
					  	      auto aa = coalescedRead(Atilde_v[sF](0)(spn) );
 | 
				
			||||||
 | 
					  	      sum = sum + outerProduct(bb,aa);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  	      //Flavor 1
 | 
				
			||||||
 | 
					  	      bb = coalescedRead(Btilde_v[sF](1)(spn) );
 | 
				
			||||||
 | 
					  	      aa = coalescedRead(Atilde_v[sF](1)(spn) );
 | 
				
			||||||
 | 
					  	      sum = sum + conjugate(outerProduct(bb,aa));
 | 
				
			||||||
 | 
					  	    }
 | 
				
			||||||
 | 
					  	  }	    
 | 
				
			||||||
 | 
					  	  coalescedWrite(mat_v[sU](mu)(), sum);
 | 
				
			||||||
 | 
					  	});
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
    PokeIndex<LorentzIndex>(mat, tmp, mu);
 | 
					 | 
				
			||||||
    return;
 | 
					 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -327,8 +409,8 @@ 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);
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -72,19 +72,23 @@ public:
 | 
				
			|||||||
    
 | 
					    
 | 
				
			||||||
  StaggeredImpl(const ImplParams &p = ImplParams()) : Params(p){};
 | 
					  StaggeredImpl(const ImplParams &p = ImplParams()) : Params(p){};
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
  static accelerator_inline void multLink(SiteSpinor &phi,
 | 
					  template<class _Spinor>
 | 
				
			||||||
 | 
					  static accelerator_inline void multLink(_Spinor &phi,
 | 
				
			||||||
		       const SiteDoubledGaugeField &U,
 | 
							       const SiteDoubledGaugeField &U,
 | 
				
			||||||
		       const SiteSpinor &chi,
 | 
							       const _Spinor &chi,
 | 
				
			||||||
		       int mu)
 | 
							       int mu)
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
    mult(&phi(), &U(mu), &chi());
 | 
					    auto UU = coalescedRead(U(mu));
 | 
				
			||||||
 | 
					    mult(&phi(), &UU, &chi());
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
  static accelerator_inline void multLinkAdd(SiteSpinor &phi,
 | 
					  template<class _Spinor>
 | 
				
			||||||
 | 
					  static accelerator_inline void multLinkAdd(_Spinor &phi,
 | 
				
			||||||
			  const SiteDoubledGaugeField &U,
 | 
								  const SiteDoubledGaugeField &U,
 | 
				
			||||||
			  const SiteSpinor &chi,
 | 
								  const _Spinor &chi,
 | 
				
			||||||
			  int mu)
 | 
								  int mu)
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
    mac(&phi(), &U(mu), &chi());
 | 
					    auto UU = coalescedRead(U(mu));
 | 
				
			||||||
 | 
					    mac(&phi(), &UU, &chi());
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
  template <class ref>
 | 
					  template <class ref>
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -4,10 +4,11 @@
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
    Source file: ./lib/qcd/action/fermion/WilsonCloverFermion.h
 | 
					    Source file: ./lib/qcd/action/fermion/WilsonCloverFermion.h
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    Copyright (C) 2017
 | 
					    Copyright (C) 2017 - 2022
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    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
 | 
				
			||||||
@@ -29,7 +30,9 @@
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
#pragma once
 | 
					#pragma once
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#include <Grid/Grid.h>
 | 
					#include <Grid/qcd/action/fermion/WilsonCloverTypes.h>
 | 
				
			||||||
 | 
					#include <Grid/qcd/action/fermion/WilsonCloverHelpers.h>
 | 
				
			||||||
 | 
					#include <Grid/qcd/action/fermion/CloverHelpers.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
NAMESPACE_BEGIN(Grid);
 | 
					NAMESPACE_BEGIN(Grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -49,19 +52,16 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
// csw_r = csw_t to recover the isotropic version
 | 
					// csw_r = csw_t to recover the isotropic version
 | 
				
			||||||
//////////////////////////////////////////////////////////////////
 | 
					//////////////////////////////////////////////////////////////////
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template <class Impl>
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
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);
 | 
				
			||||||
  template <typename vtype>
 | 
					  INHERIT_CLOVER_TYPES(Impl);
 | 
				
			||||||
  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){};
 | 
				
			||||||
@@ -72,42 +72,7 @@ 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()) : WilsonFermion<Impl>(_Umu,
 | 
					                      const ImplParams &impl_p = ImplParams());
 | 
				
			||||||
                                                                                     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);
 | 
				
			||||||
@@ -124,250 +89,21 @@ 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());
 | 
					 | 
				
			||||||
 | 
					
 | 
				
			||||||
    // Guido: Here we are hitting some performance issues:
 | 
					public:
 | 
				
			||||||
    // 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;
 | 
					 | 
				
			||||||
  }
 | 
					 | 
				
			||||||
 | 
					 | 
				
			||||||
protected:
 | 
					 | 
				
			||||||
  // 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
 | 
				
			||||||
  CloverFieldType CloverTerm, CloverTermInv;                 // Clover term
 | 
					  CloverField CloverTerm, CloverTermInv;                     // Clover term
 | 
				
			||||||
  CloverFieldType CloverTermEven, CloverTermOdd;             // Clover term EO
 | 
					  CloverField CloverTermEven, CloverTermOdd;                 // Clover term EO
 | 
				
			||||||
  CloverFieldType CloverTermInvEven, CloverTermInvOdd;       // Clover term Inv EO
 | 
					  CloverField CloverTermInvEven, CloverTermInvOdd;           // Clover term Inv EO
 | 
				
			||||||
  CloverFieldType CloverTermDagEven, CloverTermDagOdd;       // Clover term Dag EO
 | 
					  CloverField CloverTermDagEven, CloverTermDagOdd;           // Clover term Dag EO
 | 
				
			||||||
  CloverFieldType CloverTermInvDagEven, CloverTermInvDagOdd; // Clover term Inv Dag EO
 | 
					  CloverField CloverTermInvDagEven, CloverTermInvDagOdd;     // Clover term Inv Dag EO
 | 
				
			||||||
 | 
					 | 
				
			||||||
 public:
 | 
					 | 
				
			||||||
  // 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();
 | 
					 | 
				
			||||||
    autoView(T_v,T,AcceleratorWrite);
 | 
					 | 
				
			||||||
    autoView(F_v,F,AcceleratorRead);
 | 
					 | 
				
			||||||
    accelerator_for(i, CloverTerm.Grid()->oSites(),1,
 | 
					 | 
				
			||||||
    {
 | 
					 | 
				
			||||||
      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();
 | 
					 | 
				
			||||||
    
 | 
					 | 
				
			||||||
    autoView(T_v, T,AcceleratorWrite);
 | 
					 | 
				
			||||||
    autoView(F_v, F,AcceleratorRead);
 | 
					 | 
				
			||||||
    accelerator_for(i, CloverTerm.Grid()->oSites(),1,
 | 
					 | 
				
			||||||
    {
 | 
					 | 
				
			||||||
      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();
 | 
					 | 
				
			||||||
 | 
					 | 
				
			||||||
    autoView(T_v,T,AcceleratorWrite);
 | 
					 | 
				
			||||||
    autoView(F_v,F,AcceleratorRead);
 | 
					 | 
				
			||||||
    accelerator_for(i, CloverTerm.Grid()->oSites(),1,
 | 
					 | 
				
			||||||
    {
 | 
					 | 
				
			||||||
      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();
 | 
					 | 
				
			||||||
 | 
					 | 
				
			||||||
    autoView( T_v , T, AcceleratorWrite);
 | 
					 | 
				
			||||||
    autoView( F_v , F, AcceleratorRead);
 | 
					 | 
				
			||||||
    accelerator_for(i, CloverTerm.Grid()->oSites(),1,
 | 
					 | 
				
			||||||
    {
 | 
					 | 
				
			||||||
      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();
 | 
					 | 
				
			||||||
    
 | 
					 | 
				
			||||||
    autoView( T_v ,T,AcceleratorWrite);
 | 
					 | 
				
			||||||
    autoView( F_v ,F,AcceleratorRead);
 | 
					 | 
				
			||||||
    accelerator_for(i, CloverTerm.Grid()->oSites(),1,
 | 
					 | 
				
			||||||
    {
 | 
					 | 
				
			||||||
      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();
 | 
					 | 
				
			||||||
 | 
					 | 
				
			||||||
    autoView( T_v , T,AcceleratorWrite);
 | 
					 | 
				
			||||||
    autoView( F_v , F,AcceleratorRead);
 | 
					 | 
				
			||||||
    accelerator_for(i, CloverTerm.Grid()->oSites(),1,
 | 
					 | 
				
			||||||
    {
 | 
					 | 
				
			||||||
      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);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 
 | 
				
			|||||||
							
								
								
									
										763
									
								
								Grid/qcd/action/fermion/WilsonCloverHelpers.h
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										763
									
								
								Grid/qcd/action/fermion/WilsonCloverHelpers.h
									
									
									
									
									
										Normal file
									
								
							@@ -0,0 +1,763 @@
 | 
				
			|||||||
 | 
					/*************************************************************************************
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    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);
 | 
				
			||||||
							
								
								
									
										90
									
								
								Grid/qcd/action/fermion/WilsonCloverTypes.h
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										90
									
								
								Grid/qcd/action/fermion/WilsonCloverTypes.h
									
									
									
									
									
										Normal file
									
								
							@@ -0,0 +1,90 @@
 | 
				
			|||||||
 | 
					/*************************************************************************************
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    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 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);
 | 
				
			||||||
@@ -68,11 +68,12 @@ public:
 | 
				
			|||||||
  /*****************************************************/
 | 
					  /*****************************************************/
 | 
				
			||||||
  /* Compress includes precision change if mpi data is not same */
 | 
					  /* Compress includes precision change if mpi data is not same */
 | 
				
			||||||
  /*****************************************************/
 | 
					  /*****************************************************/
 | 
				
			||||||
  template<class _SiteHalfSpinor, class _SiteSpinor>
 | 
					  accelerator_inline void Compress(SiteHalfSpinor &buf,const SiteSpinor &in) const {
 | 
				
			||||||
  accelerator_inline void Compress(_SiteHalfSpinor *buf,Integer o,const _SiteSpinor &in) const {
 | 
					    typedef decltype(coalescedRead(buf)) sobj;
 | 
				
			||||||
    _SiteHalfSpinor tmp;
 | 
					    sobj sp;
 | 
				
			||||||
    projector::Proj(tmp,in,mu,dag);
 | 
					    auto sin = coalescedRead(in);
 | 
				
			||||||
    vstream(buf[o],tmp);
 | 
					    projector::Proj(sp,sin,mu,dag);
 | 
				
			||||||
 | 
					    coalescedWrite(buf,sp);
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  /*****************************************************/
 | 
					  /*****************************************************/
 | 
				
			||||||
@@ -82,13 +83,18 @@ public:
 | 
				
			|||||||
				   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) const {
 | 
				
			||||||
 | 
					#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 */
 | 
				
			||||||
  /*****************************************************/
 | 
					  /*****************************************************/
 | 
				
			||||||
@@ -105,6 +111,28 @@ public:
 | 
				
			|||||||
					   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) const
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
 | 
					#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);
 | 
				
			||||||
@@ -112,6 +140,7 @@ 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
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  /*****************************************************/
 | 
					  /*****************************************************/
 | 
				
			||||||
@@ -121,6 +150,7 @@ public:
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#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 >
 | 
				
			||||||
@@ -149,13 +179,23 @@ public:
 | 
				
			|||||||
  /*****************************************************/
 | 
					  /*****************************************************/
 | 
				
			||||||
  /* Compress includes precision change if mpi data is not same */
 | 
					  /* Compress includes precision change if mpi data is not same */
 | 
				
			||||||
  /*****************************************************/
 | 
					  /*****************************************************/
 | 
				
			||||||
  template<class _SiteHalfSpinor, class _SiteSpinor>
 | 
					  accelerator_inline void Compress(SiteHalfSpinor &buf,const SiteSpinor &in) const {
 | 
				
			||||||
  accelerator_inline void Compress(_SiteHalfSpinor *buf,Integer o,const _SiteSpinor &in) const {
 | 
					    SiteHalfSpinor hsp;
 | 
				
			||||||
    _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 */
 | 
				
			||||||
@@ -203,6 +243,7 @@ public:
 | 
				
			|||||||
  accelerator_inline bool DecompressionStep(void) const { return true; }
 | 
					  accelerator_inline bool DecompressionStep(void) const { return true; }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define DECLARE_PROJ(Projector,Compressor,spProj)			\
 | 
					#define DECLARE_PROJ(Projector,Compressor,spProj)			\
 | 
				
			||||||
  class Projector {							\
 | 
					  class Projector {							\
 | 
				
			||||||
@@ -253,35 +294,10 @@ 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;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  double timer0;
 | 
					  void ZeroCountersi(void)  {  }
 | 
				
			||||||
  double timer1;
 | 
					  void Reporti(int calls)  {  }
 | 
				
			||||||
  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;
 | 
					  //  Vector<int> surface_list;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  WilsonStencil(GridBase *grid,
 | 
					  WilsonStencil(GridBase *grid,
 | 
				
			||||||
		int npoints,
 | 
							int npoints,
 | 
				
			||||||
@@ -291,10 +307,11 @@ public:
 | 
				
			|||||||
    : CartesianStencil<vobj,cobj,Parameters> (grid,npoints,checkerboard,directions,distances,p) 
 | 
					    : CartesianStencil<vobj,cobj,Parameters> (grid,npoints,checkerboard,directions,distances,p) 
 | 
				
			||||||
  { 
 | 
					  { 
 | 
				
			||||||
    ZeroCountersi();
 | 
					    ZeroCountersi();
 | 
				
			||||||
    surface_list.resize(0);
 | 
					    //    surface_list.resize(0);
 | 
				
			||||||
    this->same_node.resize(npoints);
 | 
					    this->same_node.resize(npoints);
 | 
				
			||||||
  };
 | 
					  };
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  /*
 | 
				
			||||||
  void BuildSurfaceList(int Ls,int vol4){
 | 
					  void BuildSurfaceList(int Ls,int vol4){
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    // find same node for SHM
 | 
					    // find same node for SHM
 | 
				
			||||||
@@ -315,32 +332,25 @@ public:
 | 
				
			|||||||
      }
 | 
					      }
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					  */
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
  template < class compressor>
 | 
					  template < class compressor>
 | 
				
			||||||
  void HaloExchangeOpt(const Lattice<vobj> &source,compressor &compress) 
 | 
					  void HaloExchangeOpt(const Lattice<vobj> &source,compressor &compress) 
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
    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>
 | 
				
			||||||
@@ -352,12 +362,9 @@ 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;
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
@@ -393,7 +400,6 @@ 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();
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -75,6 +75,10 @@ public:
 | 
				
			|||||||
  FermionField _tmp;
 | 
					  FermionField _tmp;
 | 
				
			||||||
  FermionField &tmp(void) { return _tmp; }
 | 
					  FermionField &tmp(void) { return _tmp; }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  int Dirichlet;
 | 
				
			||||||
 | 
					  Coordinate Block; 
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  /********** Deprecate timers **********/
 | 
				
			||||||
  void Report(void);
 | 
					  void Report(void);
 | 
				
			||||||
  void ZeroCounters(void);
 | 
					  void ZeroCounters(void);
 | 
				
			||||||
  double DhopCalls;
 | 
					  double DhopCalls;
 | 
				
			||||||
@@ -173,7 +177,10 @@ public:
 | 
				
			|||||||
		  GridCartesian         &FourDimGrid,
 | 
							  GridCartesian         &FourDimGrid,
 | 
				
			||||||
		  GridRedBlackCartesian &FourDimRedBlackGrid,
 | 
							  GridRedBlackCartesian &FourDimRedBlackGrid,
 | 
				
			||||||
		  double _M5,const ImplParams &p= ImplParams());
 | 
							  double _M5,const ImplParams &p= ImplParams());
 | 
				
			||||||
    
 | 
					
 | 
				
			||||||
 | 
					  virtual void DirichletBlock(const Coordinate & block)
 | 
				
			||||||
 | 
					  {
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
  // Constructors
 | 
					  // Constructors
 | 
				
			||||||
  /*
 | 
					  /*
 | 
				
			||||||
    WilsonFermion5D(int simd, 
 | 
					    WilsonFermion5D(int simd, 
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -184,18 +184,22 @@ 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();
 | 
				
			||||||
    {
 | 
					    {
 | 
				
			||||||
 | 
					      const int Nsimd = SiteSpinor::Nsimd();
 | 
				
			||||||
      autoView( tmp_v , tmp, AcceleratorWrite);
 | 
					      autoView( tmp_v , tmp, AcceleratorWrite);
 | 
				
			||||||
      autoView( Btilde_v , Btilde, AcceleratorRead);
 | 
					      autoView( Btilde_v , Btilde, AcceleratorRead);
 | 
				
			||||||
      autoView( Atilde_v , Atilde, AcceleratorRead);
 | 
					      autoView( Atilde_v , Atilde, AcceleratorRead);
 | 
				
			||||||
@@ -208,6 +212,29 @@ public:
 | 
				
			|||||||
	});
 | 
						});
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
    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    
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -216,17 +243,17 @@ 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
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -47,7 +47,7 @@ CayleyFermion5D<Impl>::CayleyFermion5D(GaugeField &_Umu,
 | 
				
			|||||||
			FiveDimRedBlackGrid,
 | 
								FiveDimRedBlackGrid,
 | 
				
			||||||
			FourDimGrid,
 | 
								FourDimGrid,
 | 
				
			||||||
			FourDimRedBlackGrid,_M5,p),
 | 
								FourDimRedBlackGrid,_M5,p),
 | 
				
			||||||
  mass(_mass)
 | 
					  mass_plus(_mass), mass_minus(_mass)
 | 
				
			||||||
{ 
 | 
					{ 
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -209,8 +209,8 @@ void CayleyFermion5D<Impl>::M5D   (const FermionField &psi, FermionField &chi)
 | 
				
			|||||||
{
 | 
					{
 | 
				
			||||||
  int Ls=this->Ls;
 | 
					  int Ls=this->Ls;
 | 
				
			||||||
  Vector<Coeff_t> diag (Ls,1.0);
 | 
					  Vector<Coeff_t> diag (Ls,1.0);
 | 
				
			||||||
  Vector<Coeff_t> upper(Ls,-1.0); upper[Ls-1]=mass;
 | 
					  Vector<Coeff_t> upper(Ls,-1.0); upper[Ls-1]=mass_minus;
 | 
				
			||||||
  Vector<Coeff_t> lower(Ls,-1.0); lower[0]   =mass;
 | 
					  Vector<Coeff_t> lower(Ls,-1.0); lower[0]   =mass_plus;
 | 
				
			||||||
  M5D(psi,chi,chi,lower,diag,upper);
 | 
					  M5D(psi,chi,chi,lower,diag,upper);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
template<class Impl>
 | 
					template<class Impl>
 | 
				
			||||||
@@ -220,8 +220,8 @@ void CayleyFermion5D<Impl>::Meooe5D    (const FermionField &psi, FermionField &D
 | 
				
			|||||||
  Vector<Coeff_t> diag = bs;
 | 
					  Vector<Coeff_t> diag = bs;
 | 
				
			||||||
  Vector<Coeff_t> upper= cs;
 | 
					  Vector<Coeff_t> upper= cs;
 | 
				
			||||||
  Vector<Coeff_t> lower= cs; 
 | 
					  Vector<Coeff_t> lower= cs; 
 | 
				
			||||||
  upper[Ls-1]=-mass*upper[Ls-1];
 | 
					  upper[Ls-1]=-mass_minus*upper[Ls-1];
 | 
				
			||||||
  lower[0]   =-mass*lower[0];
 | 
					  lower[0]   =-mass_plus*lower[0];
 | 
				
			||||||
  M5D(psi,psi,Din,lower,diag,upper);
 | 
					  M5D(psi,psi,Din,lower,diag,upper);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
// FIXME Redunant with the above routine; check this and eliminate
 | 
					// FIXME Redunant with the above routine; check this and eliminate
 | 
				
			||||||
@@ -235,8 +235,8 @@ template<class Impl> void CayleyFermion5D<Impl>::Meo5D     (const FermionField &
 | 
				
			|||||||
    upper[i]=-ceo[i];
 | 
					    upper[i]=-ceo[i];
 | 
				
			||||||
    lower[i]=-ceo[i];
 | 
					    lower[i]=-ceo[i];
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
  upper[Ls-1]=-mass*upper[Ls-1];
 | 
					  upper[Ls-1]=-mass_minus*upper[Ls-1];
 | 
				
			||||||
  lower[0]   =-mass*lower[0];
 | 
					  lower[0]   =-mass_plus*lower[0];
 | 
				
			||||||
  M5D(psi,psi,chi,lower,diag,upper);
 | 
					  M5D(psi,psi,chi,lower,diag,upper);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
template<class Impl>
 | 
					template<class Impl>
 | 
				
			||||||
@@ -250,8 +250,8 @@ void CayleyFermion5D<Impl>::Mooee       (const FermionField &psi, FermionField &
 | 
				
			|||||||
    upper[i]=-cee[i];
 | 
					    upper[i]=-cee[i];
 | 
				
			||||||
    lower[i]=-cee[i];
 | 
					    lower[i]=-cee[i];
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
  upper[Ls-1]=-mass*upper[Ls-1];
 | 
					  upper[Ls-1]=-mass_minus*upper[Ls-1];
 | 
				
			||||||
  lower[0]   =-mass*lower[0];
 | 
					  lower[0]   =-mass_plus*lower[0];
 | 
				
			||||||
  M5D(psi,psi,chi,lower,diag,upper);
 | 
					  M5D(psi,psi,chi,lower,diag,upper);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
template<class Impl>
 | 
					template<class Impl>
 | 
				
			||||||
@@ -266,9 +266,9 @@ void CayleyFermion5D<Impl>::MooeeDag    (const FermionField &psi, FermionField &
 | 
				
			|||||||
    // Assemble the 5d matrix
 | 
					    // Assemble the 5d matrix
 | 
				
			||||||
    if ( s==0 ) {
 | 
					    if ( s==0 ) {
 | 
				
			||||||
      upper[s] = -cee[s+1] ;
 | 
					      upper[s] = -cee[s+1] ;
 | 
				
			||||||
      lower[s] = mass*cee[Ls-1];
 | 
					      lower[s] = mass_minus*cee[Ls-1];
 | 
				
			||||||
    } else if ( s==(Ls-1)) { 
 | 
					    } else if ( s==(Ls-1)) { 
 | 
				
			||||||
      upper[s] = mass*cee[0];
 | 
					      upper[s] = mass_plus*cee[0];
 | 
				
			||||||
      lower[s] = -cee[s-1];
 | 
					      lower[s] = -cee[s-1];
 | 
				
			||||||
    } else {
 | 
					    } else {
 | 
				
			||||||
      upper[s]=-cee[s+1];
 | 
					      upper[s]=-cee[s+1];
 | 
				
			||||||
@@ -291,8 +291,8 @@ void CayleyFermion5D<Impl>::M5Ddag (const FermionField &psi, FermionField &chi)
 | 
				
			|||||||
  Vector<Coeff_t> diag(Ls,1.0);
 | 
					  Vector<Coeff_t> diag(Ls,1.0);
 | 
				
			||||||
  Vector<Coeff_t> upper(Ls,-1.0);
 | 
					  Vector<Coeff_t> upper(Ls,-1.0);
 | 
				
			||||||
  Vector<Coeff_t> lower(Ls,-1.0);
 | 
					  Vector<Coeff_t> lower(Ls,-1.0);
 | 
				
			||||||
  upper[Ls-1]=-mass*upper[Ls-1];
 | 
					  upper[Ls-1]=-mass_plus*upper[Ls-1];
 | 
				
			||||||
  lower[0]   =-mass*lower[0];
 | 
					  lower[0]   =-mass_minus*lower[0];
 | 
				
			||||||
  M5Ddag(psi,chi,chi,lower,diag,upper);
 | 
					  M5Ddag(psi,chi,chi,lower,diag,upper);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -307,9 +307,9 @@ void CayleyFermion5D<Impl>::MeooeDag5D    (const FermionField &psi, FermionField
 | 
				
			|||||||
  for (int s=0;s<Ls;s++){
 | 
					  for (int s=0;s<Ls;s++){
 | 
				
			||||||
    if ( s== 0 ) {
 | 
					    if ( s== 0 ) {
 | 
				
			||||||
      upper[s] = cs[s+1];
 | 
					      upper[s] = cs[s+1];
 | 
				
			||||||
      lower[s] =-mass*cs[Ls-1];
 | 
					      lower[s] =-mass_minus*cs[Ls-1];
 | 
				
			||||||
    } else if ( s==(Ls-1) ) { 
 | 
					    } else if ( s==(Ls-1) ) { 
 | 
				
			||||||
      upper[s] =-mass*cs[0];
 | 
					      upper[s] =-mass_plus*cs[0];
 | 
				
			||||||
      lower[s] = cs[s-1];
 | 
					      lower[s] = cs[s-1];
 | 
				
			||||||
    } else { 
 | 
					    } else { 
 | 
				
			||||||
      upper[s] = cs[s+1];
 | 
					      upper[s] = cs[s+1];
 | 
				
			||||||
@@ -552,7 +552,7 @@ void CayleyFermion5D<Impl>::SetCoefficientsInternal(RealD zolo_hi,Vector<Coeff_t
 | 
				
			|||||||
      
 | 
					      
 | 
				
			||||||
      lee[i] =-cee[i+1]/bee[i]; // sub-diag entry on the ith column
 | 
					      lee[i] =-cee[i+1]/bee[i]; // sub-diag entry on the ith column
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
      leem[i]=mass*cee[Ls-1]/bee[0];
 | 
					      leem[i]=mass_minus*cee[Ls-1]/bee[0];
 | 
				
			||||||
      for(int j=0;j<i;j++) {
 | 
					      for(int j=0;j<i;j++) {
 | 
				
			||||||
	assert(bee[j+1]!=Coeff_t(0.0));
 | 
						assert(bee[j+1]!=Coeff_t(0.0));
 | 
				
			||||||
	leem[i]*= aee[j]/bee[j+1];
 | 
						leem[i]*= aee[j]/bee[j+1];
 | 
				
			||||||
@@ -560,7 +560,7 @@ void CayleyFermion5D<Impl>::SetCoefficientsInternal(RealD zolo_hi,Vector<Coeff_t
 | 
				
			|||||||
      
 | 
					      
 | 
				
			||||||
      uee[i] =-aee[i]/bee[i];   // up-diag entry on the ith row
 | 
					      uee[i] =-aee[i]/bee[i];   // up-diag entry on the ith row
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
      ueem[i]=mass;
 | 
					      ueem[i]=mass_plus;
 | 
				
			||||||
      for(int j=1;j<=i;j++) ueem[i]*= cee[j]/bee[j];
 | 
					      for(int j=1;j<=i;j++) ueem[i]*= cee[j]/bee[j];
 | 
				
			||||||
      ueem[i]*= aee[0]/bee[0];
 | 
					      ueem[i]*= aee[0]/bee[0];
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
@@ -573,7 +573,7 @@ void CayleyFermion5D<Impl>::SetCoefficientsInternal(RealD zolo_hi,Vector<Coeff_t
 | 
				
			|||||||
  }
 | 
					  }
 | 
				
			||||||
	
 | 
						
 | 
				
			||||||
  { 
 | 
					  { 
 | 
				
			||||||
    Coeff_t delta_d=mass*cee[Ls-1];
 | 
					    Coeff_t delta_d=mass_minus*cee[Ls-1];
 | 
				
			||||||
    for(int j=0;j<Ls-1;j++) {
 | 
					    for(int j=0;j<Ls-1;j++) {
 | 
				
			||||||
      assert(bee[j] != Coeff_t(0.0));
 | 
					      assert(bee[j] != Coeff_t(0.0));
 | 
				
			||||||
      delta_d *= cee[j]/bee[j];
 | 
					      delta_d *= cee[j]/bee[j];
 | 
				
			||||||
@@ -642,6 +642,10 @@ void CayleyFermion5D<Impl>::ContractConservedCurrent( PropagatorField &q_in_1,
 | 
				
			|||||||
						      Current curr_type,
 | 
											      Current curr_type,
 | 
				
			||||||
						      unsigned int mu)
 | 
											      unsigned int mu)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  assert(mass_plus == mass_minus);
 | 
				
			||||||
 | 
					  RealD mass = mass_plus;
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
#if (!defined(GRID_HIP))
 | 
					#if (!defined(GRID_HIP))
 | 
				
			||||||
  Gamma::Algebra Gmu [] = {
 | 
					  Gamma::Algebra Gmu [] = {
 | 
				
			||||||
    Gamma::Algebra::GammaX,
 | 
					    Gamma::Algebra::GammaX,
 | 
				
			||||||
@@ -777,6 +781,8 @@ void CayleyFermion5D<Impl>::SeqConservedCurrent(PropagatorField &q_in,
 | 
				
			|||||||
  assert(mu>=0);
 | 
					  assert(mu>=0);
 | 
				
			||||||
  assert(mu<Nd);
 | 
					  assert(mu<Nd);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  assert(mass_plus == mass_minus);
 | 
				
			||||||
 | 
					  RealD mass = mass_plus;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#if 0
 | 
					#if 0
 | 
				
			||||||
  int tshift = (mu == Nd-1) ? 1 : 0;
 | 
					  int tshift = (mu == Nd-1) ? 1 : 0;
 | 
				
			||||||
@@ -828,6 +834,7 @@ void CayleyFermion5D<Impl>::SeqConservedCurrent(PropagatorField &q_in,
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
#if (!defined(GRID_HIP))
 | 
					#if (!defined(GRID_HIP))
 | 
				
			||||||
  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
 | 
				
			||||||
  ////////////////////////////////////////////////
 | 
					  ////////////////////////////////////////////////
 | 
				
			||||||
@@ -880,17 +887,29 @@ 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];
 | 
				
			||||||
@@ -907,7 +926,7 @@ 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    = G_s[s]*( Utmp*ph - gmu*Utmp*ph ); // Forward hop
 | 
					    tmp    = sign*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
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -922,7 +941,13 @@ 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 );
 | 
				
			||||||
    tmp    = where((lcoor>=tmin+tshift),tmp,zz); // Mask the time 
 | 
					    // 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);
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -66,18 +66,17 @@ CayleyFermion5D<Impl>::M5D(const FermionField &psi_i,
 | 
				
			|||||||
  M5Dcalls++;
 | 
					  M5Dcalls++;
 | 
				
			||||||
  M5Dtime-=usecond();
 | 
					  M5Dtime-=usecond();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  uint64_t nloop = grid->oSites()/Ls;
 | 
					  uint64_t nloop = grid->oSites();
 | 
				
			||||||
  accelerator_for(sss,nloop,Simd::Nsimd(),{
 | 
					  accelerator_for(sss,nloop,Simd::Nsimd(),{
 | 
				
			||||||
    uint64_t ss= sss*Ls;
 | 
					    uint64_t s = sss%Ls;
 | 
				
			||||||
 | 
					    uint64_t ss= sss-s;
 | 
				
			||||||
    typedef decltype(coalescedRead(psi[0])) spinor;
 | 
					    typedef decltype(coalescedRead(psi[0])) spinor;
 | 
				
			||||||
    spinor tmp1, tmp2;
 | 
					    spinor tmp1, tmp2;
 | 
				
			||||||
    for(int s=0;s<Ls;s++){
 | 
					    uint64_t idx_u = ss+((s+1)%Ls);
 | 
				
			||||||
      uint64_t idx_u = ss+((s+1)%Ls);
 | 
					    uint64_t idx_l = ss+((s+Ls-1)%Ls);
 | 
				
			||||||
      uint64_t idx_l = ss+((s+Ls-1)%Ls);
 | 
					    spProj5m(tmp1,psi(idx_u));
 | 
				
			||||||
      spProj5m(tmp1,psi(idx_u));
 | 
					    spProj5p(tmp2,psi(idx_l));
 | 
				
			||||||
      spProj5p(tmp2,psi(idx_l));
 | 
					    coalescedWrite(chi[ss+s],pdiag[s]*phi(ss+s)+pupper[s]*tmp1+plower[s]*tmp2);
 | 
				
			||||||
      coalescedWrite(chi[ss+s],pdiag[s]*phi(ss+s)+pupper[s]*tmp1+plower[s]*tmp2);
 | 
					 | 
				
			||||||
    }
 | 
					 | 
				
			||||||
  });
 | 
					  });
 | 
				
			||||||
  M5Dtime+=usecond();
 | 
					  M5Dtime+=usecond();
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
@@ -108,18 +107,17 @@ CayleyFermion5D<Impl>::M5Ddag(const FermionField &psi_i,
 | 
				
			|||||||
  M5Dcalls++;
 | 
					  M5Dcalls++;
 | 
				
			||||||
  M5Dtime-=usecond();
 | 
					  M5Dtime-=usecond();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  uint64_t nloop = grid->oSites()/Ls;
 | 
					  uint64_t nloop = grid->oSites();
 | 
				
			||||||
  accelerator_for(sss,nloop,Simd::Nsimd(),{
 | 
					  accelerator_for(sss,nloop,Simd::Nsimd(),{
 | 
				
			||||||
    uint64_t ss=sss*Ls;
 | 
					    uint64_t s = sss%Ls;
 | 
				
			||||||
 | 
					    uint64_t ss= sss-s;
 | 
				
			||||||
    typedef decltype(coalescedRead(psi[0])) spinor;
 | 
					    typedef decltype(coalescedRead(psi[0])) spinor;
 | 
				
			||||||
    spinor tmp1,tmp2;
 | 
					    spinor tmp1,tmp2;
 | 
				
			||||||
    for(int s=0;s<Ls;s++){
 | 
					    uint64_t idx_u = ss+((s+1)%Ls);
 | 
				
			||||||
      uint64_t idx_u = ss+((s+1)%Ls);
 | 
					    uint64_t idx_l = ss+((s+Ls-1)%Ls);
 | 
				
			||||||
      uint64_t idx_l = ss+((s+Ls-1)%Ls);
 | 
					    spProj5p(tmp1,psi(idx_u));
 | 
				
			||||||
      spProj5p(tmp1,psi(idx_u));
 | 
					    spProj5m(tmp2,psi(idx_l));
 | 
				
			||||||
      spProj5m(tmp2,psi(idx_l));
 | 
					    coalescedWrite(chi[ss+s],pdiag[s]*phi(ss+s)+pupper[s]*tmp1+plower[s]*tmp2);
 | 
				
			||||||
      coalescedWrite(chi[ss+s],pdiag[s]*phi(ss+s)+pupper[s]*tmp1+plower[s]*tmp2);
 | 
					 | 
				
			||||||
    }
 | 
					 | 
				
			||||||
  });
 | 
					  });
 | 
				
			||||||
  M5Dtime+=usecond();
 | 
					  M5Dtime+=usecond();
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -0,0 +1,373 @@
 | 
				
			|||||||
 | 
					/*************************************************************************************
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Grid physics library, www.github.com/paboyle/Grid
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Source file: ./lib/qcd/action/fermion/CompactWilsonCloverFermionImplementation.h
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Copyright (C) 2017 - 2022
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Author: paboyle <paboyle@ph.ed.ac.uk>
 | 
				
			||||||
 | 
					    Author: Guido Cossu <guido.cossu@ed.ac.uk>
 | 
				
			||||||
 | 
					    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 */
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#include <Grid/Grid.h>
 | 
				
			||||||
 | 
					#include <Grid/qcd/spin/Dirac.h>
 | 
				
			||||||
 | 
					#include <Grid/qcd/action/fermion/CompactWilsonCloverFermion.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					NAMESPACE_BEGIN(Grid);
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					CompactWilsonCloverFermion<Impl, CloverHelpers>::CompactWilsonCloverFermion(GaugeField& _Umu,
 | 
				
			||||||
 | 
					                                                                            GridCartesian& Fgrid,
 | 
				
			||||||
 | 
					                                                                            GridRedBlackCartesian& Hgrid,
 | 
				
			||||||
 | 
					                                                                            const RealD _mass,
 | 
				
			||||||
 | 
					                                                                            const RealD _csw_r,
 | 
				
			||||||
 | 
					                                                                            const RealD _csw_t,
 | 
				
			||||||
 | 
					                                                                            const RealD _cF,
 | 
				
			||||||
 | 
					                                                                            const WilsonAnisotropyCoefficients& clover_anisotropy,
 | 
				
			||||||
 | 
					                                                                            const ImplParams& impl_p)
 | 
				
			||||||
 | 
					  : WilsonBase(_Umu, Fgrid, Hgrid, _mass, impl_p, clover_anisotropy)
 | 
				
			||||||
 | 
					  , csw_r(_csw_r)
 | 
				
			||||||
 | 
					  , csw_t(_csw_t)
 | 
				
			||||||
 | 
					  , cF(_cF)
 | 
				
			||||||
 | 
					  , open_boundaries(impl_p.boundary_phases[Nd-1] == 0.0)
 | 
				
			||||||
 | 
					  , Diagonal(&Fgrid),        Triangle(&Fgrid)
 | 
				
			||||||
 | 
					  , DiagonalEven(&Hgrid),    TriangleEven(&Hgrid)
 | 
				
			||||||
 | 
					  , DiagonalOdd(&Hgrid),     TriangleOdd(&Hgrid)
 | 
				
			||||||
 | 
					  , DiagonalInv(&Fgrid),     TriangleInv(&Fgrid)
 | 
				
			||||||
 | 
					  , DiagonalInvEven(&Hgrid), TriangleInvEven(&Hgrid)
 | 
				
			||||||
 | 
					  , DiagonalInvOdd(&Hgrid),  TriangleInvOdd(&Hgrid)
 | 
				
			||||||
 | 
					  , Tmp(&Fgrid)
 | 
				
			||||||
 | 
					  , BoundaryMask(&Fgrid)
 | 
				
			||||||
 | 
					  , BoundaryMaskEven(&Hgrid), BoundaryMaskOdd(&Hgrid)
 | 
				
			||||||
 | 
					{
 | 
				
			||||||
 | 
					  assert(Nd == 4 && Nc == 3 && Ns == 4 && Impl::Dimension == 3);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  csw_r *= 0.5;
 | 
				
			||||||
 | 
					  csw_t *= 0.5;
 | 
				
			||||||
 | 
					  if (clover_anisotropy.isAnisotropic)
 | 
				
			||||||
 | 
					    csw_r /= clover_anisotropy.xi_0;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  ImportGauge(_Umu);
 | 
				
			||||||
 | 
					  if (open_boundaries) {
 | 
				
			||||||
 | 
					    this->BoundaryMaskEven.Checkerboard() = Even;
 | 
				
			||||||
 | 
					    this->BoundaryMaskOdd.Checkerboard() = Odd;
 | 
				
			||||||
 | 
					    CompactHelpers::SetupMasks(this->BoundaryMask, this->BoundaryMaskEven, this->BoundaryMaskOdd);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::Dhop(const FermionField& in, FermionField& out, int dag) {
 | 
				
			||||||
 | 
					  WilsonBase::Dhop(in, out, dag);
 | 
				
			||||||
 | 
					  if(open_boundaries) ApplyBoundaryMask(out);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::DhopOE(const FermionField& in, FermionField& out, int dag) {
 | 
				
			||||||
 | 
					  WilsonBase::DhopOE(in, out, dag);
 | 
				
			||||||
 | 
					  if(open_boundaries) ApplyBoundaryMask(out);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::DhopEO(const FermionField& in, FermionField& out, int dag) {
 | 
				
			||||||
 | 
					  WilsonBase::DhopEO(in, out, dag);
 | 
				
			||||||
 | 
					  if(open_boundaries) ApplyBoundaryMask(out);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::DhopDir(const FermionField& in, FermionField& out, int dir, int disp) {
 | 
				
			||||||
 | 
					  WilsonBase::DhopDir(in, out, dir, disp);
 | 
				
			||||||
 | 
					  if(this->open_boundaries) ApplyBoundaryMask(out);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::DhopDirAll(const FermionField& in, std::vector<FermionField>& out) {
 | 
				
			||||||
 | 
					  WilsonBase::DhopDirAll(in, out);
 | 
				
			||||||
 | 
					  if(this->open_boundaries) {
 | 
				
			||||||
 | 
					    for(auto& o : out) ApplyBoundaryMask(o);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::M(const FermionField& in, FermionField& out) {
 | 
				
			||||||
 | 
					  out.Checkerboard() = in.Checkerboard();
 | 
				
			||||||
 | 
					  WilsonBase::Dhop(in, out, DaggerNo); // call base to save applying bc
 | 
				
			||||||
 | 
					  Mooee(in, Tmp);
 | 
				
			||||||
 | 
					  axpy(out, 1.0, out, Tmp);
 | 
				
			||||||
 | 
					  if(open_boundaries) ApplyBoundaryMask(out);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::Mdag(const FermionField& in, FermionField& out) {
 | 
				
			||||||
 | 
					  out.Checkerboard() = in.Checkerboard();
 | 
				
			||||||
 | 
					  WilsonBase::Dhop(in, out, DaggerYes);  // call base to save applying bc
 | 
				
			||||||
 | 
					  MooeeDag(in, Tmp);
 | 
				
			||||||
 | 
					  axpy(out, 1.0, out, Tmp);
 | 
				
			||||||
 | 
					  if(open_boundaries) ApplyBoundaryMask(out);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::Meooe(const FermionField& in, FermionField& out) {
 | 
				
			||||||
 | 
					  WilsonBase::Meooe(in, out);
 | 
				
			||||||
 | 
					  if(open_boundaries) ApplyBoundaryMask(out);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::MeooeDag(const FermionField& in, FermionField& out) {
 | 
				
			||||||
 | 
					  WilsonBase::MeooeDag(in, out);
 | 
				
			||||||
 | 
					  if(open_boundaries) ApplyBoundaryMask(out);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::Mooee(const FermionField& in, FermionField& out) {
 | 
				
			||||||
 | 
					  if(in.Grid()->_isCheckerBoarded) {
 | 
				
			||||||
 | 
					    if(in.Checkerboard() == Odd) {
 | 
				
			||||||
 | 
					      MooeeInternal(in, out, DiagonalOdd, TriangleOdd);
 | 
				
			||||||
 | 
					    } else {
 | 
				
			||||||
 | 
					      MooeeInternal(in, out, DiagonalEven, TriangleEven);
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					  } else {
 | 
				
			||||||
 | 
					    MooeeInternal(in, out, Diagonal, Triangle);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					  if(open_boundaries) ApplyBoundaryMask(out);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::MooeeDag(const FermionField& in, FermionField& out) {
 | 
				
			||||||
 | 
					  Mooee(in, out); // blocks are hermitian
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::MooeeInv(const FermionField& in, FermionField& out) {
 | 
				
			||||||
 | 
					  if(in.Grid()->_isCheckerBoarded) {
 | 
				
			||||||
 | 
					    if(in.Checkerboard() == Odd) {
 | 
				
			||||||
 | 
					      MooeeInternal(in, out, DiagonalInvOdd, TriangleInvOdd);
 | 
				
			||||||
 | 
					    } else {
 | 
				
			||||||
 | 
					      MooeeInternal(in, out, DiagonalInvEven, TriangleInvEven);
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					  } else {
 | 
				
			||||||
 | 
					    MooeeInternal(in, out, DiagonalInv, TriangleInv);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					  if(open_boundaries) ApplyBoundaryMask(out);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::MooeeInvDag(const FermionField& in, FermionField& out) {
 | 
				
			||||||
 | 
					  MooeeInv(in, out); // blocks are hermitian
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::Mdir(const FermionField& in, FermionField& out, int dir, int disp) {
 | 
				
			||||||
 | 
					  DhopDir(in, out, dir, disp);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::MdirAll(const FermionField& in, std::vector<FermionField>& out) {
 | 
				
			||||||
 | 
					  DhopDirAll(in, out);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::MDeriv(GaugeField& force, const FermionField& X, const FermionField& Y, int dag) {
 | 
				
			||||||
 | 
					  assert(!open_boundaries); // TODO check for changes required for open bc
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // NOTE: code copied from original clover term
 | 
				
			||||||
 | 
					  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());
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // 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*CloverHelpers::Cmunu(U, lambda, mu, nu);   // checked
 | 
				
			||||||
 | 
					      count++;
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    pokeLorentz(clover_force, U[mu] * force_mu, mu);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					  //clover_force *= csw;
 | 
				
			||||||
 | 
					  force += clover_force;
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::MooDeriv(GaugeField& mat, const FermionField& U, const FermionField& V, int dag) {
 | 
				
			||||||
 | 
					  assert(0);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::MeeDeriv(GaugeField& mat, const FermionField& U, const FermionField& V, int dag) {
 | 
				
			||||||
 | 
					  assert(0);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::MooeeInternal(const FermionField&        in,
 | 
				
			||||||
 | 
					                    FermionField&              out,
 | 
				
			||||||
 | 
					                    const CloverDiagonalField& diagonal,
 | 
				
			||||||
 | 
					                    const CloverTriangleField& triangle) {
 | 
				
			||||||
 | 
					  assert(in.Checkerboard() == Odd || in.Checkerboard() == Even);
 | 
				
			||||||
 | 
					  out.Checkerboard() = in.Checkerboard();
 | 
				
			||||||
 | 
					  conformable(in, out);
 | 
				
			||||||
 | 
					  conformable(in, diagonal);
 | 
				
			||||||
 | 
					  conformable(in, triangle);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  CompactHelpers::MooeeKernel(diagonal.oSites(), 1, in, out, diagonal, triangle);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void CompactWilsonCloverFermion<Impl, CloverHelpers>::ImportGauge(const GaugeField& _Umu) {
 | 
				
			||||||
 | 
					  // NOTE: parts copied from original implementation
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // Import gauge into base class
 | 
				
			||||||
 | 
					  double t0 = usecond();
 | 
				
			||||||
 | 
					  WilsonBase::ImportGauge(_Umu); // NOTE: called here and in wilson constructor -> performed twice, but can't avoid that
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // Initialize temporary variables
 | 
				
			||||||
 | 
					  double t1 = usecond();
 | 
				
			||||||
 | 
					  conformable(_Umu.Grid(), this->GaugeGrid());
 | 
				
			||||||
 | 
					  GridBase* grid = _Umu.Grid();
 | 
				
			||||||
 | 
					  typename Impl::GaugeLinkField Bx(grid), By(grid), Bz(grid), Ex(grid), Ey(grid), Ez(grid);
 | 
				
			||||||
 | 
					  CloverField TmpOriginal(grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // Compute the field strength terms mu>nu
 | 
				
			||||||
 | 
					  double t2 = usecond();
 | 
				
			||||||
 | 
					  WilsonLoops<Impl>::FieldStrength(Bx, _Umu, Zdir, Ydir);
 | 
				
			||||||
 | 
					  WilsonLoops<Impl>::FieldStrength(By, _Umu, Zdir, Xdir);
 | 
				
			||||||
 | 
					  WilsonLoops<Impl>::FieldStrength(Bz, _Umu, Ydir, Xdir);
 | 
				
			||||||
 | 
					  WilsonLoops<Impl>::FieldStrength(Ex, _Umu, Tdir, Xdir);
 | 
				
			||||||
 | 
					  WilsonLoops<Impl>::FieldStrength(Ey, _Umu, Tdir, Ydir);
 | 
				
			||||||
 | 
					  WilsonLoops<Impl>::FieldStrength(Ez, _Umu, Tdir, Zdir);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // Compute the Clover Operator acting on Colour and Spin
 | 
				
			||||||
 | 
					  // multiply here by the clover coefficients for the anisotropy
 | 
				
			||||||
 | 
					  double t3 = usecond();
 | 
				
			||||||
 | 
					  TmpOriginal  = Helpers::fillCloverYZ(Bx) * csw_r;
 | 
				
			||||||
 | 
					  TmpOriginal += Helpers::fillCloverXZ(By) * csw_r;
 | 
				
			||||||
 | 
					  TmpOriginal += Helpers::fillCloverXY(Bz) * csw_r;
 | 
				
			||||||
 | 
					  TmpOriginal += Helpers::fillCloverXT(Ex) * csw_t;
 | 
				
			||||||
 | 
					  TmpOriginal += Helpers::fillCloverYT(Ey) * csw_t;
 | 
				
			||||||
 | 
					  TmpOriginal += Helpers::fillCloverZT(Ez) * csw_t;
 | 
				
			||||||
 | 
					  // Handle mass term based on clover policy
 | 
				
			||||||
 | 
					  CloverHelpers::MassTerm(TmpOriginal, this->diag_mass);
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					  // Convert the data layout of the clover term
 | 
				
			||||||
 | 
					  double t4 = usecond();
 | 
				
			||||||
 | 
					  CompactHelpers::ConvertLayout(TmpOriginal, Diagonal, Triangle);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // Exponentiate the clover (nothing happens in case of the standard clover)
 | 
				
			||||||
 | 
					  double t5 = usecond();
 | 
				
			||||||
 | 
					  CloverHelpers::Exponentiate_Clover(Diagonal, Triangle, csw_t, this->diag_mass);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // Possible modify the boundary values
 | 
				
			||||||
 | 
					  double t6 = usecond();
 | 
				
			||||||
 | 
					  if(open_boundaries) CompactHelpers::ModifyBoundaries(Diagonal, Triangle, csw_t, cF, this->diag_mass);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // Invert the Clover term (explicit inversion needed for the improvement in case of open boundary conditions)
 | 
				
			||||||
 | 
					  double t7 = usecond();
 | 
				
			||||||
 | 
					  CompactHelpers::Invert(Diagonal, Triangle, DiagonalInv, TriangleInv);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // Fill the remaining clover fields
 | 
				
			||||||
 | 
					  double t8 = usecond();
 | 
				
			||||||
 | 
					  pickCheckerboard(Even, DiagonalEven,    Diagonal);
 | 
				
			||||||
 | 
					  pickCheckerboard(Even, TriangleEven,    Triangle);
 | 
				
			||||||
 | 
					  pickCheckerboard(Odd,  DiagonalOdd,     Diagonal);
 | 
				
			||||||
 | 
					  pickCheckerboard(Odd,  TriangleOdd,     Triangle);
 | 
				
			||||||
 | 
					  pickCheckerboard(Even, DiagonalInvEven, DiagonalInv);
 | 
				
			||||||
 | 
					  pickCheckerboard(Even, TriangleInvEven, TriangleInv);
 | 
				
			||||||
 | 
					  pickCheckerboard(Odd,  DiagonalInvOdd,  DiagonalInv);
 | 
				
			||||||
 | 
					  pickCheckerboard(Odd,  TriangleInvOdd,  TriangleInv);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // Report timings
 | 
				
			||||||
 | 
					  double t9 = usecond();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "CompactWilsonCloverFermion::ImportGauge timings:" << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "WilsonFermion::Importgauge = " << (t1 - t0) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "allocations =                " << (t2 - t1) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "field strength =             " << (t3 - t2) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "fill clover =                " << (t4 - t3) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "convert =                    " << (t5 - t4) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "exponentiation =             " << (t6 - t5) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "boundaries =                 " << (t7 - t6) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "inversions =                 " << (t8 - t7) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "pick cbs =                   " << (t9 - t8) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "total =                      " << (t9 - t0) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					NAMESPACE_END(Grid);
 | 
				
			||||||
@@ -680,7 +680,8 @@ void StaggeredKernels<Impl>::DhopSiteAsm(StencilView &st,
 | 
				
			|||||||
  gauge2 =(uint64_t)&UU[sU]( Z );				\
 | 
					  gauge2 =(uint64_t)&UU[sU]( Z );				\
 | 
				
			||||||
  gauge3 =(uint64_t)&UU[sU]( T ); 
 | 
					  gauge3 =(uint64_t)&UU[sU]( T ); 
 | 
				
			||||||
  
 | 
					  
 | 
				
			||||||
 | 
					#undef STAG_VEC5D
 | 
				
			||||||
 | 
					#ifdef STAG_VEC5D
 | 
				
			||||||
  // This is the single precision 5th direction vectorised kernel
 | 
					  // This is the single precision 5th direction vectorised kernel
 | 
				
			||||||
#include <Grid/simd/Intel512single.h>
 | 
					#include <Grid/simd/Intel512single.h>
 | 
				
			||||||
template <> void StaggeredKernels<StaggeredVec5dImplF>::DhopSiteAsm(StencilView &st,
 | 
					template <> void StaggeredKernels<StaggeredVec5dImplF>::DhopSiteAsm(StencilView &st,
 | 
				
			||||||
@@ -790,7 +791,7 @@ template <> void StaggeredKernels<StaggeredVec5dImplD>::DhopSiteAsm(StencilView
 | 
				
			|||||||
#endif
 | 
					#endif
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
   
 | 
					   
 | 
				
			||||||
   
 | 
					#endif   
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define PERMUTE_DIR3 __asm__ (	\
 | 
					#define PERMUTE_DIR3 __asm__ (	\
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -32,25 +32,50 @@ Author: paboyle <paboyle@ph.ed.ac.uk>
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
NAMESPACE_BEGIN(Grid);
 | 
					NAMESPACE_BEGIN(Grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define LOAD_CHI(b)		\
 | 
					#ifdef GRID_SIMT
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#define LOAD_CHI(ptype,b)			\
 | 
				
			||||||
 | 
					  const SiteSpinor & ref (b[offset]);				\
 | 
				
			||||||
 | 
					  Chi_0=coalescedReadPermute<ptype>(ref()()(0),perm,lane);	\
 | 
				
			||||||
 | 
					  Chi_1=coalescedReadPermute<ptype>(ref()()(1),perm,lane);	\
 | 
				
			||||||
 | 
					  Chi_2=coalescedReadPermute<ptype>(ref()()(2),perm,lane);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#define LOAD_CHI_COMMS(b)		\
 | 
				
			||||||
  const SiteSpinor & ref (b[offset]);	\
 | 
					  const SiteSpinor & ref (b[offset]);	\
 | 
				
			||||||
    Chi_0=ref()()(0);\
 | 
					  Chi_0=coalescedRead(ref()()(0),lane);	\
 | 
				
			||||||
    Chi_1=ref()()(1);\
 | 
					  Chi_1=coalescedRead(ref()()(1),lane);	\
 | 
				
			||||||
    Chi_2=ref()()(2);
 | 
					  Chi_2=coalescedRead(ref()()(2),lane);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#define PERMUTE_DIR(dir)	;
 | 
				
			||||||
 | 
					#else
 | 
				
			||||||
 | 
					#define LOAD_CHI(ptype,b)      LOAD_CHI_COMMS(b)
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#define LOAD_CHI_COMMS(b)		\
 | 
				
			||||||
 | 
					  const SiteSpinor & ref (b[offset]);	\
 | 
				
			||||||
 | 
					  Chi_0=ref()()(0);			\
 | 
				
			||||||
 | 
					  Chi_1=ref()()(1);			\
 | 
				
			||||||
 | 
					  Chi_2=ref()()(2);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#define PERMUTE_DIR(dir)			\
 | 
				
			||||||
 | 
					  permute##dir(Chi_0,Chi_0);			\
 | 
				
			||||||
 | 
					  permute##dir(Chi_1,Chi_1);			\
 | 
				
			||||||
 | 
					  permute##dir(Chi_2,Chi_2);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
// To splat or not to splat depends on the implementation
 | 
					// To splat or not to splat depends on the implementation
 | 
				
			||||||
#define MULT(A,UChi)				\
 | 
					#define MULT(A,UChi)				\
 | 
				
			||||||
  auto & ref(U[sU](A));			\
 | 
					  auto & ref(U[sU](A));			\
 | 
				
			||||||
   Impl::loadLinkElement(U_00,ref()(0,0));      \
 | 
					    U_00=coalescedRead(ref()(0,0),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_10,ref()(1,0));      \
 | 
					    U_10=coalescedRead(ref()(1,0),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_20,ref()(2,0));      \
 | 
					    U_20=coalescedRead(ref()(2,0),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_01,ref()(0,1));      \
 | 
					    U_01=coalescedRead(ref()(0,1),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_11,ref()(1,1));      \
 | 
					    U_11=coalescedRead(ref()(1,1),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_21,ref()(2,1));      \
 | 
					    U_21=coalescedRead(ref()(2,1),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_02,ref()(0,2));     \
 | 
					    U_02=coalescedRead(ref()(0,2),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_12,ref()(1,2));     \
 | 
					    U_12=coalescedRead(ref()(1,2),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_22,ref()(2,2));     \
 | 
					    U_22=coalescedRead(ref()(2,2),lane);				\
 | 
				
			||||||
    UChi ## _0  = U_00*Chi_0;	       \
 | 
					    UChi ## _0  = U_00*Chi_0;	       \
 | 
				
			||||||
    UChi ## _1  = U_10*Chi_0;\
 | 
					    UChi ## _1  = U_10*Chi_0;\
 | 
				
			||||||
    UChi ## _2  = U_20*Chi_0;\
 | 
					    UChi ## _2  = U_20*Chi_0;\
 | 
				
			||||||
@@ -63,15 +88,15 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
#define MULT_ADD(U,A,UChi)			\
 | 
					#define MULT_ADD(U,A,UChi)			\
 | 
				
			||||||
  auto & ref(U[sU](A));			\
 | 
					  auto & ref(U[sU](A));			\
 | 
				
			||||||
   Impl::loadLinkElement(U_00,ref()(0,0));      \
 | 
					    U_00=coalescedRead(ref()(0,0),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_10,ref()(1,0));      \
 | 
					    U_10=coalescedRead(ref()(1,0),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_20,ref()(2,0));      \
 | 
					    U_20=coalescedRead(ref()(2,0),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_01,ref()(0,1));      \
 | 
					    U_01=coalescedRead(ref()(0,1),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_11,ref()(1,1));      \
 | 
					    U_11=coalescedRead(ref()(1,1),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_21,ref()(2,1));      \
 | 
					    U_21=coalescedRead(ref()(2,1),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_02,ref()(0,2));     \
 | 
					    U_02=coalescedRead(ref()(0,2),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_12,ref()(1,2));     \
 | 
					    U_12=coalescedRead(ref()(1,2),lane);				\
 | 
				
			||||||
   Impl::loadLinkElement(U_22,ref()(2,2));     \
 | 
					    U_22=coalescedRead(ref()(2,2),lane);				\
 | 
				
			||||||
    UChi ## _0 += U_00*Chi_0;	       \
 | 
					    UChi ## _0 += U_00*Chi_0;	       \
 | 
				
			||||||
    UChi ## _1 += U_10*Chi_0;\
 | 
					    UChi ## _1 += U_10*Chi_0;\
 | 
				
			||||||
    UChi ## _2 += U_20*Chi_0;\
 | 
					    UChi ## _2 += U_20*Chi_0;\
 | 
				
			||||||
@@ -83,24 +108,18 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
    UChi ## _2 += U_22*Chi_2;
 | 
					    UChi ## _2 += U_22*Chi_2;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define PERMUTE_DIR(dir)			\
 | 
					 | 
				
			||||||
  permute##dir(Chi_0,Chi_0);			\
 | 
					 | 
				
			||||||
  permute##dir(Chi_1,Chi_1);			\
 | 
					 | 
				
			||||||
  permute##dir(Chi_2,Chi_2);
 | 
					 | 
				
			||||||
 | 
					 | 
				
			||||||
 | 
					 | 
				
			||||||
#define HAND_STENCIL_LEG_BASE(Dir,Perm,skew)	\
 | 
					#define HAND_STENCIL_LEG_BASE(Dir,Perm,skew)	\
 | 
				
			||||||
  SE=st.GetEntry(ptype,Dir+skew,sF);	\
 | 
					  SE=st.GetEntry(ptype,Dir+skew,sF);	\
 | 
				
			||||||
  offset = SE->_offset;			\
 | 
					  offset = SE->_offset;			\
 | 
				
			||||||
  local  = SE->_is_local;		\
 | 
					  local  = SE->_is_local;		\
 | 
				
			||||||
  perm   = SE->_permute;		\
 | 
					  perm   = SE->_permute;		\
 | 
				
			||||||
  if ( local ) {						\
 | 
					  if ( local ) {						\
 | 
				
			||||||
    LOAD_CHI(in);					\
 | 
					    LOAD_CHI(Perm,in);						\
 | 
				
			||||||
    if ( perm) {						\
 | 
					    if ( perm) {						\
 | 
				
			||||||
      PERMUTE_DIR(Perm);					\
 | 
					      PERMUTE_DIR(Perm);					\
 | 
				
			||||||
    }								\
 | 
					    }								\
 | 
				
			||||||
  } else {							\
 | 
					  } else {							\
 | 
				
			||||||
    LOAD_CHI(buf);						\
 | 
					    LOAD_CHI_COMMS(buf);					\
 | 
				
			||||||
  }								
 | 
					  }								
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define HAND_STENCIL_LEG_BEGIN(Dir,Perm,skew,even)		\
 | 
					#define HAND_STENCIL_LEG_BEGIN(Dir,Perm,skew,even)		\
 | 
				
			||||||
@@ -116,19 +135,18 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					 | 
				
			||||||
#define HAND_STENCIL_LEG_INT(U,Dir,Perm,skew,even)	\
 | 
					#define HAND_STENCIL_LEG_INT(U,Dir,Perm,skew,even)	\
 | 
				
			||||||
  SE=st.GetEntry(ptype,Dir+skew,sF);			\
 | 
					  SE=st.GetEntry(ptype,Dir+skew,sF);			\
 | 
				
			||||||
  offset = SE->_offset;					\
 | 
					  offset = SE->_offset;					\
 | 
				
			||||||
  local  = SE->_is_local;				\
 | 
					  local  = SE->_is_local;				\
 | 
				
			||||||
  perm   = SE->_permute;				\
 | 
					  perm   = SE->_permute;				\
 | 
				
			||||||
  if ( local ) {					\
 | 
					  if ( local ) {					\
 | 
				
			||||||
    LOAD_CHI(in);				\
 | 
					    LOAD_CHI(Perm,in);					\
 | 
				
			||||||
    if ( perm) {					\
 | 
					    if ( perm) {					\
 | 
				
			||||||
      PERMUTE_DIR(Perm);				\
 | 
					      PERMUTE_DIR(Perm);				\
 | 
				
			||||||
    }							\
 | 
					    }							\
 | 
				
			||||||
  } else if ( st.same_node[Dir] ) {			\
 | 
					  } else if ( st.same_node[Dir] ) {			\
 | 
				
			||||||
    LOAD_CHI(buf);					\
 | 
					    LOAD_CHI_COMMS(buf);				\
 | 
				
			||||||
  }							\
 | 
					  }							\
 | 
				
			||||||
  if (local || st.same_node[Dir] ) {		\
 | 
					  if (local || st.same_node[Dir] ) {		\
 | 
				
			||||||
    MULT_ADD(U,Dir,even);				\
 | 
					    MULT_ADD(U,Dir,even);				\
 | 
				
			||||||
@@ -140,10 +158,32 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
  local  = SE->_is_local;				\
 | 
					  local  = SE->_is_local;				\
 | 
				
			||||||
  if ((!local) && (!st.same_node[Dir]) ) {		\
 | 
					  if ((!local) && (!st.same_node[Dir]) ) {		\
 | 
				
			||||||
    nmu++;							\
 | 
					    nmu++;							\
 | 
				
			||||||
    { LOAD_CHI(buf);	  }					\
 | 
					    { LOAD_CHI_COMMS(buf);	  }				\
 | 
				
			||||||
    { MULT_ADD(U,Dir,even); }					\
 | 
					    { MULT_ADD(U,Dir,even); }					\
 | 
				
			||||||
  }								
 | 
					  }								
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#define HAND_DECLARATIONS(Simd) \
 | 
				
			||||||
 | 
					  Simd even_0;			\
 | 
				
			||||||
 | 
					  Simd even_1;			\
 | 
				
			||||||
 | 
					  Simd even_2;			\
 | 
				
			||||||
 | 
					  Simd odd_0;			\
 | 
				
			||||||
 | 
					  Simd odd_1;			\
 | 
				
			||||||
 | 
					  Simd odd_2;		        \
 | 
				
			||||||
 | 
							      		\
 | 
				
			||||||
 | 
					  Simd Chi_0;			\
 | 
				
			||||||
 | 
					  Simd Chi_1;			\
 | 
				
			||||||
 | 
					  Simd Chi_2;			\
 | 
				
			||||||
 | 
									\
 | 
				
			||||||
 | 
					  Simd U_00;			\
 | 
				
			||||||
 | 
					  Simd U_10;			\
 | 
				
			||||||
 | 
					  Simd U_20;			\
 | 
				
			||||||
 | 
					  Simd U_01;			\
 | 
				
			||||||
 | 
					  Simd U_11;			\
 | 
				
			||||||
 | 
					  Simd U_21;			\
 | 
				
			||||||
 | 
					  Simd U_02;			\
 | 
				
			||||||
 | 
					  Simd U_12;			\
 | 
				
			||||||
 | 
					  Simd U_22;			
 | 
				
			||||||
 | 
					  
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template <class Impl>
 | 
					template <class Impl>
 | 
				
			||||||
template <int Naik> accelerator_inline
 | 
					template <int Naik> accelerator_inline
 | 
				
			||||||
@@ -155,28 +195,14 @@ void StaggeredKernels<Impl>::DhopSiteHand(StencilView &st,
 | 
				
			|||||||
  typedef typename Simd::scalar_type S;
 | 
					  typedef typename Simd::scalar_type S;
 | 
				
			||||||
  typedef typename Simd::vector_type V;
 | 
					  typedef typename Simd::vector_type V;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  Simd even_0; // 12 regs on knc
 | 
					 | 
				
			||||||
  Simd even_1;
 | 
					 | 
				
			||||||
  Simd even_2;
 | 
					 | 
				
			||||||
  Simd odd_0; // 12 regs on knc
 | 
					 | 
				
			||||||
  Simd odd_1;
 | 
					 | 
				
			||||||
  Simd odd_2;
 | 
					 | 
				
			||||||
 | 
					
 | 
				
			||||||
  Simd Chi_0;    // two spinor; 6 regs
 | 
					  const int Nsimd = SiteHalfSpinor::Nsimd();
 | 
				
			||||||
  Simd Chi_1;
 | 
					  const int lane=acceleratorSIMTlane(Nsimd);
 | 
				
			||||||
  Simd Chi_2;
 | 
					  typedef decltype( coalescedRead( in[0]()()(0) )) Simt;
 | 
				
			||||||
  
 | 
					  HAND_DECLARATIONS(Simt);
 | 
				
			||||||
  Simd U_00;  // two rows of U matrix
 | 
					 | 
				
			||||||
  Simd U_10;
 | 
					 | 
				
			||||||
  Simd U_20;  
 | 
					 | 
				
			||||||
  Simd U_01;
 | 
					 | 
				
			||||||
  Simd U_11;
 | 
					 | 
				
			||||||
  Simd U_21;  // 2 reg left.
 | 
					 | 
				
			||||||
  Simd U_02;
 | 
					 | 
				
			||||||
  Simd U_12;
 | 
					 | 
				
			||||||
  Simd U_22; 
 | 
					 | 
				
			||||||
 | 
					
 | 
				
			||||||
  SiteSpinor result;
 | 
					  typedef decltype( coalescedRead( in[0] )) calcSiteSpinor;
 | 
				
			||||||
 | 
					  calcSiteSpinor result;
 | 
				
			||||||
  int offset,local,perm, ptype;
 | 
					  int offset,local,perm, ptype;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  StencilEntry *SE;
 | 
					  StencilEntry *SE;
 | 
				
			||||||
@@ -215,7 +241,7 @@ void StaggeredKernels<Impl>::DhopSiteHand(StencilView &st,
 | 
				
			|||||||
      result()()(1) = even_1 + odd_1;
 | 
					      result()()(1) = even_1 + odd_1;
 | 
				
			||||||
      result()()(2) = even_2 + odd_2;
 | 
					      result()()(2) = even_2 + odd_2;
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
    vstream(out[sF],result);
 | 
					    coalescedWrite(out[sF],result);
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -230,28 +256,13 @@ void StaggeredKernels<Impl>::DhopSiteHandInt(StencilView &st,
 | 
				
			|||||||
  typedef typename Simd::scalar_type S;
 | 
					  typedef typename Simd::scalar_type S;
 | 
				
			||||||
  typedef typename Simd::vector_type V;
 | 
					  typedef typename Simd::vector_type V;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  Simd even_0; // 12 regs on knc
 | 
					  const int Nsimd = SiteHalfSpinor::Nsimd();
 | 
				
			||||||
  Simd even_1;
 | 
					  const int lane=acceleratorSIMTlane(Nsimd);
 | 
				
			||||||
  Simd even_2;
 | 
					  typedef decltype( coalescedRead( in[0]()()(0) )) Simt;
 | 
				
			||||||
  Simd odd_0; // 12 regs on knc
 | 
					  HAND_DECLARATIONS(Simt);
 | 
				
			||||||
  Simd odd_1;
 | 
					 | 
				
			||||||
  Simd odd_2;
 | 
					 | 
				
			||||||
 | 
					
 | 
				
			||||||
  Simd Chi_0;    // two spinor; 6 regs
 | 
					  typedef decltype( coalescedRead( in[0] )) calcSiteSpinor;
 | 
				
			||||||
  Simd Chi_1;
 | 
					  calcSiteSpinor result;
 | 
				
			||||||
  Simd Chi_2;
 | 
					 | 
				
			||||||
  
 | 
					 | 
				
			||||||
  Simd U_00;  // two rows of U matrix
 | 
					 | 
				
			||||||
  Simd U_10;
 | 
					 | 
				
			||||||
  Simd U_20;  
 | 
					 | 
				
			||||||
  Simd U_01;
 | 
					 | 
				
			||||||
  Simd U_11;
 | 
					 | 
				
			||||||
  Simd U_21;  // 2 reg left.
 | 
					 | 
				
			||||||
  Simd U_02;
 | 
					 | 
				
			||||||
  Simd U_12;
 | 
					 | 
				
			||||||
  Simd U_22; 
 | 
					 | 
				
			||||||
 | 
					 | 
				
			||||||
  SiteSpinor result;
 | 
					 | 
				
			||||||
  int offset, ptype, local, perm;
 | 
					  int offset, ptype, local, perm;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  StencilEntry *SE;
 | 
					  StencilEntry *SE;
 | 
				
			||||||
@@ -261,8 +272,8 @@ void StaggeredKernels<Impl>::DhopSiteHandInt(StencilView &st,
 | 
				
			|||||||
  //    int sF=s+LLs*sU;
 | 
					  //    int sF=s+LLs*sU;
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    even_0 = Zero();    even_1 = Zero();    even_2 = Zero();
 | 
					    zeroit(even_0);    zeroit(even_1);    zeroit(even_2);
 | 
				
			||||||
     odd_0 = Zero();     odd_1 = Zero();     odd_2 = Zero();
 | 
					    zeroit(odd_0);    zeroit(odd_1);    zeroit(odd_2);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    skew = 0;
 | 
					    skew = 0;
 | 
				
			||||||
    HAND_STENCIL_LEG_INT(U,Xp,3,skew,even);  
 | 
					    HAND_STENCIL_LEG_INT(U,Xp,3,skew,even);  
 | 
				
			||||||
@@ -294,7 +305,7 @@ void StaggeredKernels<Impl>::DhopSiteHandInt(StencilView &st,
 | 
				
			|||||||
      result()()(1) = even_1 + odd_1;
 | 
					      result()()(1) = even_1 + odd_1;
 | 
				
			||||||
      result()()(2) = even_2 + odd_2;
 | 
					      result()()(2) = even_2 + odd_2;
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
    vstream(out[sF],result);
 | 
					    coalescedWrite(out[sF],result);
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -309,28 +320,13 @@ void StaggeredKernels<Impl>::DhopSiteHandExt(StencilView &st,
 | 
				
			|||||||
  typedef typename Simd::scalar_type S;
 | 
					  typedef typename Simd::scalar_type S;
 | 
				
			||||||
  typedef typename Simd::vector_type V;
 | 
					  typedef typename Simd::vector_type V;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  Simd even_0; // 12 regs on knc
 | 
					  const int Nsimd = SiteHalfSpinor::Nsimd();
 | 
				
			||||||
  Simd even_1;
 | 
					  const int lane=acceleratorSIMTlane(Nsimd);
 | 
				
			||||||
  Simd even_2;
 | 
					  typedef decltype( coalescedRead( in[0]()()(0) )) Simt;
 | 
				
			||||||
  Simd odd_0; // 12 regs on knc
 | 
					  HAND_DECLARATIONS(Simt);
 | 
				
			||||||
  Simd odd_1;
 | 
					 | 
				
			||||||
  Simd odd_2;
 | 
					 | 
				
			||||||
 | 
					
 | 
				
			||||||
  Simd Chi_0;    // two spinor; 6 regs
 | 
					  typedef decltype( coalescedRead( in[0] )) calcSiteSpinor;
 | 
				
			||||||
  Simd Chi_1;
 | 
					  calcSiteSpinor result;
 | 
				
			||||||
  Simd Chi_2;
 | 
					 | 
				
			||||||
  
 | 
					 | 
				
			||||||
  Simd U_00;  // two rows of U matrix
 | 
					 | 
				
			||||||
  Simd U_10;
 | 
					 | 
				
			||||||
  Simd U_20;  
 | 
					 | 
				
			||||||
  Simd U_01;
 | 
					 | 
				
			||||||
  Simd U_11;
 | 
					 | 
				
			||||||
  Simd U_21;  // 2 reg left.
 | 
					 | 
				
			||||||
  Simd U_02;
 | 
					 | 
				
			||||||
  Simd U_12;
 | 
					 | 
				
			||||||
  Simd U_22; 
 | 
					 | 
				
			||||||
 | 
					 | 
				
			||||||
  SiteSpinor result;
 | 
					 | 
				
			||||||
  int offset, ptype, local;
 | 
					  int offset, ptype, local;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  StencilEntry *SE;
 | 
					  StencilEntry *SE;
 | 
				
			||||||
@@ -340,8 +336,8 @@ void StaggeredKernels<Impl>::DhopSiteHandExt(StencilView &st,
 | 
				
			|||||||
  //    int sF=s+LLs*sU;
 | 
					  //    int sF=s+LLs*sU;
 | 
				
			||||||
  {
 | 
					  {
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    even_0 = Zero();    even_1 = Zero();    even_2 = Zero();
 | 
					    zeroit(even_0);    zeroit(even_1);    zeroit(even_2);
 | 
				
			||||||
     odd_0 = Zero();     odd_1 = Zero();     odd_2 = Zero();
 | 
					    zeroit(odd_0);    zeroit(odd_1);    zeroit(odd_2);
 | 
				
			||||||
    int nmu=0;
 | 
					    int nmu=0;
 | 
				
			||||||
    skew = 0;
 | 
					    skew = 0;
 | 
				
			||||||
    HAND_STENCIL_LEG_EXT(U,Xp,3,skew,even);  
 | 
					    HAND_STENCIL_LEG_EXT(U,Xp,3,skew,even);  
 | 
				
			||||||
@@ -374,7 +370,7 @@ void StaggeredKernels<Impl>::DhopSiteHandExt(StencilView &st,
 | 
				
			|||||||
	result()()(1) = even_1 + odd_1;
 | 
						result()()(1) = even_1 + odd_1;
 | 
				
			||||||
	result()()(2) = even_2 + odd_2;
 | 
						result()()(2) = even_2 + odd_2;
 | 
				
			||||||
      }
 | 
					      }
 | 
				
			||||||
      out[sF] = out[sF] + result;
 | 
					      coalescedWrite(out[sF] , out(sF)+ result);
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
@@ -397,6 +393,7 @@ void StaggeredKernels<Impl>::DhopSiteHandExt(StencilView &st,
 | 
				
			|||||||
						     const FermionFieldView &in, FermionFieldView &out, int dag); \
 | 
											     const FermionFieldView &in, FermionFieldView &out, int dag); \
 | 
				
			||||||
*/
 | 
					*/
 | 
				
			||||||
#undef LOAD_CHI
 | 
					#undef LOAD_CHI
 | 
				
			||||||
 | 
					#undef HAND_DECLARATIONS
 | 
				
			||||||
 | 
					
 | 
				
			||||||
NAMESPACE_END(Grid);
 | 
					NAMESPACE_END(Grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -35,39 +35,32 @@ NAMESPACE_BEGIN(Grid);
 | 
				
			|||||||
#define GENERIC_STENCIL_LEG(U,Dir,skew,multLink)		\
 | 
					#define GENERIC_STENCIL_LEG(U,Dir,skew,multLink)		\
 | 
				
			||||||
  SE = st.GetEntry(ptype, Dir+skew, sF);			\
 | 
					  SE = st.GetEntry(ptype, Dir+skew, sF);			\
 | 
				
			||||||
  if (SE->_is_local ) {						\
 | 
					  if (SE->_is_local ) {						\
 | 
				
			||||||
    if (SE->_permute) {						\
 | 
					    int perm= SE->_permute;						\
 | 
				
			||||||
      chi_p = χ						\
 | 
					    chi = coalescedReadPermute(in[SE->_offset],ptype,perm,lane);\
 | 
				
			||||||
      permute(chi,  in[SE->_offset], ptype);			\
 | 
					 | 
				
			||||||
    } else {							\
 | 
					 | 
				
			||||||
      chi_p = &in[SE->_offset];					\
 | 
					 | 
				
			||||||
    }								\
 | 
					 | 
				
			||||||
  } else {							\
 | 
					  } else {							\
 | 
				
			||||||
    chi_p = &buf[SE->_offset];					\
 | 
					    chi = coalescedRead(buf[SE->_offset],lane);			\
 | 
				
			||||||
  }								\
 | 
					  }								\
 | 
				
			||||||
  multLink(Uchi, U[sU], *chi_p, Dir);			
 | 
					  acceleratorSynchronise();					\
 | 
				
			||||||
 | 
					  multLink(Uchi, U[sU], chi, Dir);			
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define GENERIC_STENCIL_LEG_INT(U,Dir,skew,multLink)		\
 | 
					#define GENERIC_STENCIL_LEG_INT(U,Dir,skew,multLink)		\
 | 
				
			||||||
  SE = st.GetEntry(ptype, Dir+skew, sF);			\
 | 
					  SE = st.GetEntry(ptype, Dir+skew, sF);			\
 | 
				
			||||||
  if (SE->_is_local ) {						\
 | 
					  if (SE->_is_local ) {						\
 | 
				
			||||||
    if (SE->_permute) {						\
 | 
					    int perm= SE->_permute;						\
 | 
				
			||||||
      chi_p = χ						\
 | 
					    chi = coalescedReadPermute(in[SE->_offset],ptype,perm,lane);\
 | 
				
			||||||
      permute(chi,  in[SE->_offset], ptype);			\
 | 
					 | 
				
			||||||
    } else {							\
 | 
					 | 
				
			||||||
      chi_p = &in[SE->_offset];					\
 | 
					 | 
				
			||||||
    }								\
 | 
					 | 
				
			||||||
  } else if ( st.same_node[Dir] ) {				\
 | 
					  } else if ( st.same_node[Dir] ) {				\
 | 
				
			||||||
    chi_p = &buf[SE->_offset];					\
 | 
					    chi = coalescedRead(buf[SE->_offset],lane);                 \
 | 
				
			||||||
  }								\
 | 
					  }								\
 | 
				
			||||||
  if (SE->_is_local || st.same_node[Dir] ) {			\
 | 
					  if (SE->_is_local || st.same_node[Dir] ) {			\
 | 
				
			||||||
    multLink(Uchi, U[sU], *chi_p, Dir);				\
 | 
					    multLink(Uchi, U[sU], chi, Dir);				\
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define GENERIC_STENCIL_LEG_EXT(U,Dir,skew,multLink)		\
 | 
					#define GENERIC_STENCIL_LEG_EXT(U,Dir,skew,multLink)		\
 | 
				
			||||||
  SE = st.GetEntry(ptype, Dir+skew, sF);			\
 | 
					  SE = st.GetEntry(ptype, Dir+skew, sF);			\
 | 
				
			||||||
  if ((!SE->_is_local) && (!st.same_node[Dir]) ) {		\
 | 
					  if ((!SE->_is_local) && (!st.same_node[Dir]) ) {		\
 | 
				
			||||||
    nmu++;							\
 | 
					    nmu++;							\
 | 
				
			||||||
    chi_p = &buf[SE->_offset];					\
 | 
					    chi = coalescedRead(buf[SE->_offset],lane);			\
 | 
				
			||||||
    multLink(Uchi, U[sU], *chi_p, Dir);				\
 | 
					    multLink(Uchi, U[sU], chi, Dir);				\
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template <class Impl>
 | 
					template <class Impl>
 | 
				
			||||||
@@ -84,12 +77,14 @@ void StaggeredKernels<Impl>::DhopSiteGeneric(StencilView &st,
 | 
				
			|||||||
					     SiteSpinor *buf, int sF, int sU, 
 | 
										     SiteSpinor *buf, int sF, int sU, 
 | 
				
			||||||
					     const FermionFieldView &in, FermionFieldView &out, int dag) 
 | 
										     const FermionFieldView &in, FermionFieldView &out, int dag) 
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  const SiteSpinor *chi_p;
 | 
					  typedef decltype(coalescedRead(in[0])) calcSpinor;
 | 
				
			||||||
  SiteSpinor chi;
 | 
					  calcSpinor chi;
 | 
				
			||||||
  SiteSpinor Uchi;
 | 
					  calcSpinor Uchi;
 | 
				
			||||||
  StencilEntry *SE;
 | 
					  StencilEntry *SE;
 | 
				
			||||||
  int ptype;
 | 
					  int ptype;
 | 
				
			||||||
  int skew;
 | 
					  int skew;
 | 
				
			||||||
 | 
					  const int Nsimd = SiteHalfSpinor::Nsimd();
 | 
				
			||||||
 | 
					  const int lane=acceleratorSIMTlane(Nsimd);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  //  for(int s=0;s<LLs;s++){
 | 
					  //  for(int s=0;s<LLs;s++){
 | 
				
			||||||
  //
 | 
					  //
 | 
				
			||||||
@@ -118,7 +113,7 @@ void StaggeredKernels<Impl>::DhopSiteGeneric(StencilView &st,
 | 
				
			|||||||
    if ( dag ) { 
 | 
					    if ( dag ) { 
 | 
				
			||||||
      Uchi = - Uchi;
 | 
					      Uchi = - Uchi;
 | 
				
			||||||
    } 
 | 
					    } 
 | 
				
			||||||
    vstream(out[sF], Uchi);
 | 
					    coalescedWrite(out[sF], Uchi,lane);
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -130,13 +125,16 @@ template <int Naik> accelerator_inline
 | 
				
			|||||||
void StaggeredKernels<Impl>::DhopSiteGenericInt(StencilView &st, 
 | 
					void StaggeredKernels<Impl>::DhopSiteGenericInt(StencilView &st, 
 | 
				
			||||||
						DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU,
 | 
											DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU,
 | 
				
			||||||
						SiteSpinor *buf, int sF, int sU, 
 | 
											SiteSpinor *buf, int sF, int sU, 
 | 
				
			||||||
						const FermionFieldView &in, FermionFieldView &out,int dag) {
 | 
											const FermionFieldView &in, FermionFieldView &out,int dag)
 | 
				
			||||||
  const SiteSpinor *chi_p;
 | 
					{
 | 
				
			||||||
  SiteSpinor chi;
 | 
					  typedef decltype(coalescedRead(in[0])) calcSpinor;
 | 
				
			||||||
  SiteSpinor Uchi;
 | 
					  calcSpinor chi;
 | 
				
			||||||
 | 
					  calcSpinor Uchi;
 | 
				
			||||||
  StencilEntry *SE;
 | 
					  StencilEntry *SE;
 | 
				
			||||||
  int ptype;
 | 
					  int ptype;
 | 
				
			||||||
  int skew ;
 | 
					  int skew ;
 | 
				
			||||||
 | 
					  const int Nsimd = SiteHalfSpinor::Nsimd();
 | 
				
			||||||
 | 
					  const int lane=acceleratorSIMTlane(Nsimd);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  //  for(int s=0;s<LLs;s++){
 | 
					  //  for(int s=0;s<LLs;s++){
 | 
				
			||||||
  //    int sF=LLs*sU+s;
 | 
					  //    int sF=LLs*sU+s;
 | 
				
			||||||
@@ -165,7 +163,7 @@ void StaggeredKernels<Impl>::DhopSiteGenericInt(StencilView &st,
 | 
				
			|||||||
    if ( dag ) {
 | 
					    if ( dag ) {
 | 
				
			||||||
      Uchi = - Uchi;
 | 
					      Uchi = - Uchi;
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
    vstream(out[sF], Uchi);
 | 
					    coalescedWrite(out[sF], Uchi,lane);
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -178,14 +176,17 @@ template <int Naik> accelerator_inline
 | 
				
			|||||||
void StaggeredKernels<Impl>::DhopSiteGenericExt(StencilView &st, 
 | 
					void StaggeredKernels<Impl>::DhopSiteGenericExt(StencilView &st, 
 | 
				
			||||||
						DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU,
 | 
											DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU,
 | 
				
			||||||
						SiteSpinor *buf, int sF, int sU,
 | 
											SiteSpinor *buf, int sF, int sU,
 | 
				
			||||||
						const FermionFieldView &in, FermionFieldView &out,int dag) {
 | 
											const FermionFieldView &in, FermionFieldView &out,int dag)
 | 
				
			||||||
  const SiteSpinor *chi_p;
 | 
					{
 | 
				
			||||||
  //  SiteSpinor chi;
 | 
					  typedef decltype(coalescedRead(in[0])) calcSpinor;
 | 
				
			||||||
  SiteSpinor Uchi;
 | 
					  calcSpinor chi;
 | 
				
			||||||
 | 
					  calcSpinor Uchi;
 | 
				
			||||||
  StencilEntry *SE;
 | 
					  StencilEntry *SE;
 | 
				
			||||||
  int ptype;
 | 
					  int ptype;
 | 
				
			||||||
  int nmu=0;
 | 
					  int nmu=0;
 | 
				
			||||||
  int skew ;
 | 
					  int skew ;
 | 
				
			||||||
 | 
					  const int Nsimd = SiteHalfSpinor::Nsimd();
 | 
				
			||||||
 | 
					  const int lane=acceleratorSIMTlane(Nsimd);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  //  for(int s=0;s<LLs;s++){
 | 
					  //  for(int s=0;s<LLs;s++){
 | 
				
			||||||
  //    int sF=LLs*sU+s;
 | 
					  //    int sF=LLs*sU+s;
 | 
				
			||||||
@@ -211,11 +212,12 @@ void StaggeredKernels<Impl>::DhopSiteGenericExt(StencilView &st,
 | 
				
			|||||||
    GENERIC_STENCIL_LEG_EXT(UUU,Zm,skew,Impl::multLinkAdd);
 | 
					    GENERIC_STENCIL_LEG_EXT(UUU,Zm,skew,Impl::multLinkAdd);
 | 
				
			||||||
    GENERIC_STENCIL_LEG_EXT(UUU,Tm,skew,Impl::multLinkAdd);
 | 
					    GENERIC_STENCIL_LEG_EXT(UUU,Tm,skew,Impl::multLinkAdd);
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
    if ( nmu ) { 
 | 
					    if ( nmu ) {
 | 
				
			||||||
      if ( dag ) { 
 | 
					      auto _out = coalescedRead(out[sF],lane);
 | 
				
			||||||
	out[sF] = out[sF] - Uchi;
 | 
					      if ( dag ) {
 | 
				
			||||||
 | 
						coalescedWrite(out[sF], _out-Uchi,lane);
 | 
				
			||||||
      } else { 
 | 
					      } else { 
 | 
				
			||||||
	out[sF] = out[sF] + Uchi;
 | 
						coalescedWrite(out[sF], _out+Uchi,lane);
 | 
				
			||||||
      }
 | 
					      }
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
@@ -261,6 +263,8 @@ void StaggeredKernels<Impl>::DhopImproved(StencilImpl &st, LebesgueOrder &lo,
 | 
				
			|||||||
  GridBase *FGrid=in.Grid();  
 | 
					  GridBase *FGrid=in.Grid();  
 | 
				
			||||||
  GridBase *UGrid=U.Grid();  
 | 
					  GridBase *UGrid=U.Grid();  
 | 
				
			||||||
  typedef StaggeredKernels<Impl> ThisKernel;
 | 
					  typedef StaggeredKernels<Impl> ThisKernel;
 | 
				
			||||||
 | 
					  const int Nsimd = SiteHalfSpinor::Nsimd();
 | 
				
			||||||
 | 
					  const int lane=acceleratorSIMTlane(Nsimd);
 | 
				
			||||||
  autoView( UUU_v , UUU, AcceleratorRead);
 | 
					  autoView( UUU_v , UUU, AcceleratorRead);
 | 
				
			||||||
  autoView( U_v   ,   U, AcceleratorRead);
 | 
					  autoView( U_v   ,   U, AcceleratorRead);
 | 
				
			||||||
  autoView( in_v  ,  in, AcceleratorRead);
 | 
					  autoView( in_v  ,  in, AcceleratorRead);
 | 
				
			||||||
@@ -301,6 +305,8 @@ void StaggeredKernels<Impl>::DhopNaive(StencilImpl &st, LebesgueOrder &lo,
 | 
				
			|||||||
  GridBase *FGrid=in.Grid();  
 | 
					  GridBase *FGrid=in.Grid();  
 | 
				
			||||||
  GridBase *UGrid=U.Grid();  
 | 
					  GridBase *UGrid=U.Grid();  
 | 
				
			||||||
  typedef StaggeredKernels<Impl> ThisKernel;
 | 
					  typedef StaggeredKernels<Impl> ThisKernel;
 | 
				
			||||||
 | 
					  const int Nsimd = SiteHalfSpinor::Nsimd();
 | 
				
			||||||
 | 
					  const int lane=acceleratorSIMTlane(Nsimd);
 | 
				
			||||||
  autoView( UUU_v ,   U, AcceleratorRead);
 | 
					  autoView( UUU_v ,   U, AcceleratorRead);
 | 
				
			||||||
  autoView( U_v   ,   U, AcceleratorRead);
 | 
					  autoView( U_v   ,   U, AcceleratorRead);
 | 
				
			||||||
  autoView( in_v  ,  in, AcceleratorRead);
 | 
					  autoView( in_v  ,  in, AcceleratorRead);
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -2,12 +2,13 @@
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
    Grid physics library, www.github.com/paboyle/Grid
 | 
					    Grid physics library, www.github.com/paboyle/Grid
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    Source file: ./lib/qcd/action/fermion/WilsonCloverFermion.cc
 | 
					    Source file: ./lib/qcd/action/fermion/WilsonCloverFermionImplementation.h
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    Copyright (C) 2017
 | 
					    Copyright (C) 2017 - 2022
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    Author: paboyle <paboyle@ph.ed.ac.uk>
 | 
					    Author: paboyle <paboyle@ph.ed.ac.uk>
 | 
				
			||||||
    Author: Guido Cossu <guido.cossu@ed.ac.uk>
 | 
					    Author: Guido Cossu <guido.cossu@ed.ac.uk>
 | 
				
			||||||
 | 
					    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
 | 
				
			||||||
@@ -33,9 +34,48 @@
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
NAMESPACE_BEGIN(Grid);
 | 
					NAMESPACE_BEGIN(Grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					WilsonCloverFermion<Impl, CloverHelpers>::WilsonCloverFermion(GaugeField&                         _Umu,
 | 
				
			||||||
 | 
					                                               GridCartesian&                      Fgrid,
 | 
				
			||||||
 | 
					                                               GridRedBlackCartesian&              Hgrid,
 | 
				
			||||||
 | 
					                                               const RealD                         _mass,
 | 
				
			||||||
 | 
					                                               const RealD                         _csw_r,
 | 
				
			||||||
 | 
					                                               const RealD                         _csw_t,
 | 
				
			||||||
 | 
					                                               const WilsonAnisotropyCoefficients& clover_anisotropy,
 | 
				
			||||||
 | 
					                                               const ImplParams&                   impl_p)
 | 
				
			||||||
 | 
					  : 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);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
// *NOT* EO
 | 
					// *NOT* EO
 | 
				
			||||||
template <class Impl>
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
void WilsonCloverFermion<Impl>::M(const FermionField &in, FermionField &out)
 | 
					void WilsonCloverFermion<Impl, CloverHelpers>::M(const FermionField &in, FermionField &out)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  FermionField temp(out.Grid());
 | 
					  FermionField temp(out.Grid());
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -49,8 +89,8 @@ void WilsonCloverFermion<Impl>::M(const FermionField &in, FermionField &out)
 | 
				
			|||||||
  out += temp;
 | 
					  out += temp;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template <class Impl>
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
void WilsonCloverFermion<Impl>::Mdag(const FermionField &in, FermionField &out)
 | 
					void WilsonCloverFermion<Impl, CloverHelpers>::Mdag(const FermionField &in, FermionField &out)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  FermionField temp(out.Grid());
 | 
					  FermionField temp(out.Grid());
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -64,13 +104,16 @@ void WilsonCloverFermion<Impl>::Mdag(const FermionField &in, FermionField &out)
 | 
				
			|||||||
  out += temp;
 | 
					  out += temp;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template <class Impl>
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
void WilsonCloverFermion<Impl>::ImportGauge(const GaugeField &_Umu)
 | 
					void WilsonCloverFermion<Impl, CloverHelpers>::ImportGauge(const GaugeField &_Umu)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  double t0 = usecond();
 | 
				
			||||||
  WilsonFermion<Impl>::ImportGauge(_Umu);
 | 
					  WilsonFermion<Impl>::ImportGauge(_Umu);
 | 
				
			||||||
 | 
					  double t1 = usecond();
 | 
				
			||||||
  GridBase *grid = _Umu.Grid();
 | 
					  GridBase *grid = _Umu.Grid();
 | 
				
			||||||
  typename Impl::GaugeLinkField Bx(grid), By(grid), Bz(grid), Ex(grid), Ey(grid), Ez(grid);
 | 
					  typename Impl::GaugeLinkField Bx(grid), By(grid), Bz(grid), Ex(grid), Ey(grid), Ez(grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  double t2 = usecond();
 | 
				
			||||||
  // Compute the field strength terms mu>nu
 | 
					  // Compute the field strength terms mu>nu
 | 
				
			||||||
  WilsonLoops<Impl>::FieldStrength(Bx, _Umu, Zdir, Ydir);
 | 
					  WilsonLoops<Impl>::FieldStrength(Bx, _Umu, Zdir, Ydir);
 | 
				
			||||||
  WilsonLoops<Impl>::FieldStrength(By, _Umu, Zdir, Xdir);
 | 
					  WilsonLoops<Impl>::FieldStrength(By, _Umu, Zdir, Xdir);
 | 
				
			||||||
@@ -79,52 +122,20 @@ void WilsonCloverFermion<Impl>::ImportGauge(const GaugeField &_Umu)
 | 
				
			|||||||
  WilsonLoops<Impl>::FieldStrength(Ey, _Umu, Tdir, Ydir);
 | 
					  WilsonLoops<Impl>::FieldStrength(Ey, _Umu, Tdir, Ydir);
 | 
				
			||||||
  WilsonLoops<Impl>::FieldStrength(Ez, _Umu, Tdir, Zdir);
 | 
					  WilsonLoops<Impl>::FieldStrength(Ez, _Umu, Tdir, Zdir);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  double t3 = usecond();
 | 
				
			||||||
  // Compute the Clover Operator acting on Colour and Spin
 | 
					  // Compute the Clover Operator acting on Colour and Spin
 | 
				
			||||||
  // multiply here by the clover coefficients for the anisotropy
 | 
					  // multiply here by the clover coefficients for the anisotropy
 | 
				
			||||||
  CloverTerm  = fillCloverYZ(Bx) * csw_r;
 | 
					  CloverTerm  = Helpers::fillCloverYZ(Bx) * csw_r;
 | 
				
			||||||
  CloverTerm += fillCloverXZ(By) * csw_r;
 | 
					  CloverTerm += Helpers::fillCloverXZ(By) * csw_r;
 | 
				
			||||||
  CloverTerm += fillCloverXY(Bz) * csw_r;
 | 
					  CloverTerm += Helpers::fillCloverXY(Bz) * csw_r;
 | 
				
			||||||
  CloverTerm += fillCloverXT(Ex) * csw_t;
 | 
					  CloverTerm += Helpers::fillCloverXT(Ex) * csw_t;
 | 
				
			||||||
  CloverTerm += fillCloverYT(Ey) * csw_t;
 | 
					  CloverTerm += Helpers::fillCloverYT(Ey) * csw_t;
 | 
				
			||||||
  CloverTerm += fillCloverZT(Ez) * csw_t;
 | 
					  CloverTerm += Helpers::fillCloverZT(Ez) * csw_t;
 | 
				
			||||||
  CloverTerm += diag_mass;
 | 
					   
 | 
				
			||||||
 | 
					  double t4 = usecond();
 | 
				
			||||||
  int lvol = _Umu.Grid()->lSites();
 | 
					  CloverHelpers::Instantiate(CloverTerm, CloverTermInv, csw_t, this->diag_mass);
 | 
				
			||||||
  int DimRep = Impl::Dimension;
 | 
					 | 
				
			||||||
 | 
					 | 
				
			||||||
  {
 | 
					 | 
				
			||||||
    autoView(CTv,CloverTerm,CpuRead);
 | 
					 | 
				
			||||||
    autoView(CTIv,CloverTermInv,CpuWrite);
 | 
					 | 
				
			||||||
    thread_for(site, lvol, {
 | 
					 | 
				
			||||||
      Coordinate lcoor;
 | 
					 | 
				
			||||||
      grid->LocalIndexToLocalCoor(site, lcoor);
 | 
					 | 
				
			||||||
      Eigen::MatrixXcd EigenCloverOp = Eigen::MatrixXcd::Zero(Ns * DimRep, Ns * DimRep);
 | 
					 | 
				
			||||||
      Eigen::MatrixXcd EigenInvCloverOp = Eigen::MatrixXcd::Zero(Ns * DimRep, Ns * DimRep);
 | 
					 | 
				
			||||||
      typename SiteCloverType::scalar_object Qx = Zero(), Qxinv = Zero();
 | 
					 | 
				
			||||||
      peekLocalSite(Qx, CTv, lcoor);
 | 
					 | 
				
			||||||
      //if (csw!=0){
 | 
					 | 
				
			||||||
      for (int j = 0; j < Ns; j++)
 | 
					 | 
				
			||||||
	for (int k = 0; k < Ns; k++)
 | 
					 | 
				
			||||||
	  for (int a = 0; a < DimRep; a++)
 | 
					 | 
				
			||||||
	    for (int b = 0; b < DimRep; b++){
 | 
					 | 
				
			||||||
	      auto zz =  Qx()(j, k)(a, b);
 | 
					 | 
				
			||||||
	      EigenCloverOp(a + j * DimRep, b + k * DimRep) = std::complex<double>(zz);
 | 
					 | 
				
			||||||
	    }
 | 
					 | 
				
			||||||
      //   if (site==0) std::cout << "site =" << site << "\n" << EigenCloverOp << std::endl;
 | 
					 | 
				
			||||||
      
 | 
					 | 
				
			||||||
      EigenInvCloverOp = EigenCloverOp.inverse();
 | 
					 | 
				
			||||||
      //std::cout << EigenInvCloverOp << std::endl;
 | 
					 | 
				
			||||||
      for (int j = 0; j < Ns; j++)
 | 
					 | 
				
			||||||
	for (int k = 0; k < Ns; k++)
 | 
					 | 
				
			||||||
	  for (int a = 0; a < DimRep; a++)
 | 
					 | 
				
			||||||
	    for (int b = 0; b < DimRep; b++)
 | 
					 | 
				
			||||||
	      Qxinv()(j, k)(a, b) = EigenInvCloverOp(a + j * DimRep, b + k * DimRep);
 | 
					 | 
				
			||||||
      //    if (site==0) std::cout << "site =" << site << "\n" << EigenInvCloverOp << std::endl;
 | 
					 | 
				
			||||||
      //  }
 | 
					 | 
				
			||||||
      pokeLocalSite(Qxinv, CTIv, lcoor);
 | 
					 | 
				
			||||||
    });
 | 
					 | 
				
			||||||
  }
 | 
					 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  double t5 = usecond();
 | 
				
			||||||
  // Separate the even and odd parts
 | 
					  // Separate the even and odd parts
 | 
				
			||||||
  pickCheckerboard(Even, CloverTermEven, CloverTerm);
 | 
					  pickCheckerboard(Even, CloverTermEven, CloverTerm);
 | 
				
			||||||
  pickCheckerboard(Odd, CloverTermOdd, CloverTerm);
 | 
					  pickCheckerboard(Odd, CloverTermOdd, CloverTerm);
 | 
				
			||||||
@@ -137,37 +148,47 @@ void WilsonCloverFermion<Impl>::ImportGauge(const GaugeField &_Umu)
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
  pickCheckerboard(Even, CloverTermInvDagEven, adj(CloverTermInv));
 | 
					  pickCheckerboard(Even, CloverTermInvDagEven, adj(CloverTermInv));
 | 
				
			||||||
  pickCheckerboard(Odd, CloverTermInvDagOdd, adj(CloverTermInv));
 | 
					  pickCheckerboard(Odd, CloverTermInvDagOdd, adj(CloverTermInv));
 | 
				
			||||||
 | 
					  double t6 = usecond();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "WilsonCloverFermion::ImportGauge timings:" << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "WilsonFermion::Importgauge = " << (t1 - t0) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "allocations =                " << (t2 - t1) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "field strength =             " << (t3 - t2) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "fill clover =                " << (t4 - t3) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "instantiation =              " << (t5 - t4) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "pick cbs =                   " << (t6 - t5) / 1e6 << std::endl;
 | 
				
			||||||
 | 
					  std::cout << GridLogDebug << "total =                      " << (t6 - t0) / 1e6 << std::endl;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template <class Impl>
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
void WilsonCloverFermion<Impl>::Mooee(const FermionField &in, FermionField &out)
 | 
					void WilsonCloverFermion<Impl, CloverHelpers>::Mooee(const FermionField &in, FermionField &out)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  this->MooeeInternal(in, out, DaggerNo, InverseNo);
 | 
					  this->MooeeInternal(in, out, DaggerNo, InverseNo);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template <class Impl>
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
void WilsonCloverFermion<Impl>::MooeeDag(const FermionField &in, FermionField &out)
 | 
					void WilsonCloverFermion<Impl, CloverHelpers>::MooeeDag(const FermionField &in, FermionField &out)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  this->MooeeInternal(in, out, DaggerYes, InverseNo);
 | 
					  this->MooeeInternal(in, out, DaggerYes, InverseNo);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template <class Impl>
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
void WilsonCloverFermion<Impl>::MooeeInv(const FermionField &in, FermionField &out)
 | 
					void WilsonCloverFermion<Impl, CloverHelpers>::MooeeInv(const FermionField &in, FermionField &out)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  this->MooeeInternal(in, out, DaggerNo, InverseYes);
 | 
					  this->MooeeInternal(in, out, DaggerNo, InverseYes);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template <class Impl>
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
void WilsonCloverFermion<Impl>::MooeeInvDag(const FermionField &in, FermionField &out)
 | 
					void WilsonCloverFermion<Impl, CloverHelpers>::MooeeInvDag(const FermionField &in, FermionField &out)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  this->MooeeInternal(in, out, DaggerYes, InverseYes);
 | 
					  this->MooeeInternal(in, out, DaggerYes, InverseYes);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template <class Impl>
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
void WilsonCloverFermion<Impl>::MooeeInternal(const FermionField &in, FermionField &out, int dag, int inv)
 | 
					void WilsonCloverFermion<Impl, CloverHelpers>::MooeeInternal(const FermionField &in, FermionField &out, int dag, int inv)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  out.Checkerboard() = in.Checkerboard();
 | 
					  out.Checkerboard() = in.Checkerboard();
 | 
				
			||||||
  CloverFieldType *Clover;
 | 
					  CloverField *Clover;
 | 
				
			||||||
  assert(in.Checkerboard() == Odd || in.Checkerboard() == Even);
 | 
					  assert(in.Checkerboard() == Odd || in.Checkerboard() == Even);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  if (dag)
 | 
					  if (dag)
 | 
				
			||||||
@@ -182,12 +203,12 @@ void WilsonCloverFermion<Impl>::MooeeInternal(const FermionField &in, FermionFie
 | 
				
			|||||||
      {
 | 
					      {
 | 
				
			||||||
        Clover = (inv) ? &CloverTermInvDagEven : &CloverTermDagEven;
 | 
					        Clover = (inv) ? &CloverTermInvDagEven : &CloverTermDagEven;
 | 
				
			||||||
      }
 | 
					      }
 | 
				
			||||||
      out = *Clover * in;
 | 
					      Helpers::multCloverField(out, *Clover, in);
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
    else
 | 
					    else
 | 
				
			||||||
    {
 | 
					    {
 | 
				
			||||||
      Clover = (inv) ? &CloverTermInv : &CloverTerm;
 | 
					      Clover = (inv) ? &CloverTermInv : &CloverTerm;
 | 
				
			||||||
      out = adj(*Clover) * in;
 | 
					      Helpers::multCloverField(out, *Clover, in); // don't bother with adj, hermitian anyway
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
  else
 | 
					  else
 | 
				
			||||||
@@ -205,29 +226,109 @@ void WilsonCloverFermion<Impl>::MooeeInternal(const FermionField &in, FermionFie
 | 
				
			|||||||
        //  std::cout << "Calling clover term Even" << std::endl;
 | 
					        //  std::cout << "Calling clover term Even" << std::endl;
 | 
				
			||||||
        Clover = (inv) ? &CloverTermInvEven : &CloverTermEven;
 | 
					        Clover = (inv) ? &CloverTermInvEven : &CloverTermEven;
 | 
				
			||||||
      }
 | 
					      }
 | 
				
			||||||
      out = *Clover * in;
 | 
					      Helpers::multCloverField(out, *Clover, in);
 | 
				
			||||||
      //  std::cout << GridLogMessage << "*Clover.Checkerboard() "  << (*Clover).Checkerboard() << std::endl;
 | 
					      //  std::cout << GridLogMessage << "*Clover.Checkerboard() "  << (*Clover).Checkerboard() << std::endl;
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
    else
 | 
					    else
 | 
				
			||||||
    {
 | 
					    {
 | 
				
			||||||
      Clover = (inv) ? &CloverTermInv : &CloverTerm;
 | 
					      Clover = (inv) ? &CloverTermInv : &CloverTerm;
 | 
				
			||||||
      out = *Clover * in;
 | 
					      Helpers::multCloverField(out, *Clover, in);
 | 
				
			||||||
    }
 | 
					    }
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					 | 
				
			||||||
} // MooeeInternal
 | 
					} // MooeeInternal
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					// Derivative parts unpreconditioned pseudofermions
 | 
				
			||||||
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
 | 
					void WilsonCloverFermion<Impl, CloverHelpers>::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());
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  // 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*CloverHelpers::Cmunu(U, lambda, mu, nu);                   // checked
 | 
				
			||||||
 | 
					      count++;
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    pokeLorentz(clover_force, U[mu] * force_mu, mu);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					  //clover_force *= csw;
 | 
				
			||||||
 | 
					  force += clover_force;
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
// Derivative parts
 | 
					// Derivative parts
 | 
				
			||||||
template <class Impl>
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
void WilsonCloverFermion<Impl>::MooDeriv(GaugeField &mat, const FermionField &X, const FermionField &Y, int dag)
 | 
					void WilsonCloverFermion<Impl, CloverHelpers>::MooDeriv(GaugeField &mat, const FermionField &X, const FermionField &Y, int dag)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  assert(0);
 | 
					  assert(0);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
// Derivative parts
 | 
					// Derivative parts
 | 
				
			||||||
template <class Impl>
 | 
					template<class Impl, class CloverHelpers>
 | 
				
			||||||
void WilsonCloverFermion<Impl>::MeeDeriv(GaugeField &mat, const FermionField &U, const FermionField &V, int dag)
 | 
					void WilsonCloverFermion<Impl, CloverHelpers>::MeeDeriv(GaugeField &mat, const FermionField &U, const FermionField &V, int dag)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  assert(0); // not implemented yet
 | 
					  assert(0); // not implemented yet
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -60,7 +60,8 @@ WilsonFermion5D<Impl>::WilsonFermion5D(GaugeField &_Umu,
 | 
				
			|||||||
  UmuOdd (_FourDimRedBlackGrid),
 | 
					  UmuOdd (_FourDimRedBlackGrid),
 | 
				
			||||||
  Lebesgue(_FourDimGrid),
 | 
					  Lebesgue(_FourDimGrid),
 | 
				
			||||||
  LebesgueEvenOdd(_FourDimRedBlackGrid),
 | 
					  LebesgueEvenOdd(_FourDimRedBlackGrid),
 | 
				
			||||||
  _tmp(&FiveDimRedBlackGrid)
 | 
					  _tmp(&FiveDimRedBlackGrid),
 | 
				
			||||||
 | 
					  Dirichlet(0)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  // some assertions
 | 
					  // some assertions
 | 
				
			||||||
  assert(FiveDimGrid._ndimension==5);
 | 
					  assert(FiveDimGrid._ndimension==5);
 | 
				
			||||||
@@ -91,6 +92,19 @@ WilsonFermion5D<Impl>::WilsonFermion5D(GaugeField &_Umu,
 | 
				
			|||||||
    assert(FourDimRedBlackGrid._simd_layout[d]  ==FourDimGrid._simd_layout[d]);
 | 
					    assert(FourDimRedBlackGrid._simd_layout[d]  ==FourDimGrid._simd_layout[d]);
 | 
				
			||||||
  }
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  if ( p.dirichlet.size() == Nd+1) {
 | 
				
			||||||
 | 
					    Coordinate block = p.dirichlet;
 | 
				
			||||||
 | 
					    if ( block[0] || block[1] || block[2] || block[3] || block[4] ){
 | 
				
			||||||
 | 
					      Dirichlet = 1;
 | 
				
			||||||
 | 
					      Block = block;
 | 
				
			||||||
 | 
					    }
 | 
				
			||||||
 | 
					  } else {
 | 
				
			||||||
 | 
					    Coordinate block(Nd+1,0);
 | 
				
			||||||
 | 
					    Block = block;
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  ZeroCounters();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  if (Impl::LsVectorised) { 
 | 
					  if (Impl::LsVectorised) { 
 | 
				
			||||||
 | 
					
 | 
				
			||||||
    int nsimd = Simd::Nsimd();
 | 
					    int nsimd = Simd::Nsimd();
 | 
				
			||||||
@@ -218,6 +232,14 @@ void WilsonFermion5D<Impl>::ImportGauge(const GaugeField &_Umu)
 | 
				
			|||||||
{
 | 
					{
 | 
				
			||||||
  GaugeField HUmu(_Umu.Grid());
 | 
					  GaugeField HUmu(_Umu.Grid());
 | 
				
			||||||
  HUmu = _Umu*(-0.5);
 | 
					  HUmu = _Umu*(-0.5);
 | 
				
			||||||
 | 
					  if ( Dirichlet ) {
 | 
				
			||||||
 | 
					    std::cout << GridLogMessage << " Dirichlet BCs 5d " <<Block<<std::endl;
 | 
				
			||||||
 | 
					    Coordinate GaugeBlock(Nd);
 | 
				
			||||||
 | 
					    for(int d=0;d<Nd;d++) GaugeBlock[d] = Block[d+1];
 | 
				
			||||||
 | 
					    std::cout << GridLogMessage << " Dirichlet BCs 4d " <<GaugeBlock<<std::endl;
 | 
				
			||||||
 | 
					    DirichletFilter<GaugeField> Filter(GaugeBlock);
 | 
				
			||||||
 | 
					    Filter.applyFilter(HUmu);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
  Impl::DoubleStore(GaugeGrid(),Umu,HUmu);
 | 
					  Impl::DoubleStore(GaugeGrid(),Umu,HUmu);
 | 
				
			||||||
  pickCheckerboard(Even,UmuEven,Umu);
 | 
					  pickCheckerboard(Even,UmuEven,Umu);
 | 
				
			||||||
  pickCheckerboard(Odd ,UmuOdd,Umu);
 | 
					  pickCheckerboard(Odd ,UmuOdd,Umu);
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -4,12 +4,13 @@ Grid physics library, www.github.com/paboyle/Grid
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
Source file: ./lib/qcd/action/fermion/WilsonFermion.cc
 | 
					Source file: ./lib/qcd/action/fermion/WilsonFermion.cc
 | 
				
			||||||
 | 
					
 | 
				
			||||||
Copyright (C) 2015
 | 
					Copyright (C) 2022
 | 
				
			||||||
 | 
					
 | 
				
			||||||
Author: Peter Boyle <pabobyle@ph.ed.ac.uk>
 | 
					Author: Peter Boyle <pabobyle@ph.ed.ac.uk>
 | 
				
			||||||
Author: Peter Boyle <paboyle@ph.ed.ac.uk>
 | 
					Author: Peter Boyle <paboyle@ph.ed.ac.uk>
 | 
				
			||||||
Author: Peter Boyle <peterboyle@Peters-MacBook-Pro-2.local>
 | 
					Author: Peter Boyle <peterboyle@Peters-MacBook-Pro-2.local>
 | 
				
			||||||
Author: paboyle <paboyle@ph.ed.ac.uk>
 | 
					Author: paboyle <paboyle@ph.ed.ac.uk>
 | 
				
			||||||
 | 
					Author: Fabian Joswig <fabian.joswig@ed.ac.uk>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
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
 | 
				
			||||||
@@ -599,11 +600,47 @@ void WilsonFermion<Impl>::ContractConservedCurrent(PropagatorField &q_in_1,
 | 
				
			|||||||
                                                   Current curr_type,
 | 
					                                                   Current curr_type,
 | 
				
			||||||
                                                   unsigned int mu)
 | 
					                                                   unsigned int mu)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  if(curr_type != Current::Vector)
 | 
				
			||||||
 | 
					  {
 | 
				
			||||||
 | 
					    std::cout << GridLogError << "Only the conserved vector current is implemented so far." << std::endl;
 | 
				
			||||||
 | 
					    exit(1);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  Gamma g5(Gamma::Algebra::Gamma5);
 | 
					  Gamma g5(Gamma::Algebra::Gamma5);
 | 
				
			||||||
  conformable(_grid, q_in_1.Grid());
 | 
					  conformable(_grid, q_in_1.Grid());
 | 
				
			||||||
  conformable(_grid, q_in_2.Grid());
 | 
					  conformable(_grid, q_in_2.Grid());
 | 
				
			||||||
  conformable(_grid, q_out.Grid());
 | 
					  conformable(_grid, q_out.Grid());
 | 
				
			||||||
  assert(0);
 | 
					  auto UGrid= this->GaugeGrid();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  PropagatorField tmp_shifted(UGrid);
 | 
				
			||||||
 | 
					  PropagatorField g5Lg5(UGrid);
 | 
				
			||||||
 | 
					  PropagatorField R(UGrid);
 | 
				
			||||||
 | 
					  PropagatorField gmuR(UGrid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Gamma::Algebra Gmu [] = {
 | 
				
			||||||
 | 
					    Gamma::Algebra::GammaX,
 | 
				
			||||||
 | 
					    Gamma::Algebra::GammaY,
 | 
				
			||||||
 | 
					    Gamma::Algebra::GammaZ,
 | 
				
			||||||
 | 
					    Gamma::Algebra::GammaT,
 | 
				
			||||||
 | 
					  };
 | 
				
			||||||
 | 
					  Gamma gmu=Gamma(Gmu[mu]);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  g5Lg5=g5*q_in_1*g5;
 | 
				
			||||||
 | 
					  tmp_shifted=Cshift(q_in_2,mu,1);
 | 
				
			||||||
 | 
					  Impl::multLinkField(R,this->Umu,tmp_shifted,mu);
 | 
				
			||||||
 | 
					  gmuR=gmu*R;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  q_out=adj(g5Lg5)*R;
 | 
				
			||||||
 | 
					  q_out-=adj(g5Lg5)*gmuR;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  tmp_shifted=Cshift(q_in_1,mu,1);
 | 
				
			||||||
 | 
					  Impl::multLinkField(g5Lg5,this->Umu,tmp_shifted,mu);
 | 
				
			||||||
 | 
					  g5Lg5=g5*g5Lg5*g5;
 | 
				
			||||||
 | 
					  R=q_in_2;
 | 
				
			||||||
 | 
					  gmuR=gmu*R;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  q_out-=adj(g5Lg5)*R;
 | 
				
			||||||
 | 
					  q_out-=adj(g5Lg5)*gmuR;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -617,9 +654,51 @@ void WilsonFermion<Impl>::SeqConservedCurrent(PropagatorField &q_in,
 | 
				
			|||||||
                                              unsigned int tmax,
 | 
					                                              unsigned int tmax,
 | 
				
			||||||
					      ComplexField &lattice_cmplx)
 | 
										      ComplexField &lattice_cmplx)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
					  if(curr_type != Current::Vector)
 | 
				
			||||||
 | 
					  {
 | 
				
			||||||
 | 
					    std::cout << GridLogError << "Only the conserved vector current is implemented so far." << std::endl;
 | 
				
			||||||
 | 
					    exit(1);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  int tshift = (mu == Nd-1) ? 1 : 0;
 | 
				
			||||||
 | 
					  unsigned int LLt    = GridDefaultLatt()[Tp];
 | 
				
			||||||
  conformable(_grid, q_in.Grid());
 | 
					  conformable(_grid, q_in.Grid());
 | 
				
			||||||
  conformable(_grid, q_out.Grid());
 | 
					  conformable(_grid, q_out.Grid());
 | 
				
			||||||
  assert(0);
 | 
					  auto UGrid= this->GaugeGrid();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  PropagatorField tmp(UGrid);
 | 
				
			||||||
 | 
					  PropagatorField Utmp(UGrid);
 | 
				
			||||||
 | 
					  PropagatorField L(UGrid);
 | 
				
			||||||
 | 
					  PropagatorField zz (UGrid);
 | 
				
			||||||
 | 
					  zz=Zero();
 | 
				
			||||||
 | 
					  LatticeInteger lcoor(UGrid); LatticeCoordinate(lcoor,Nd-1);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Gamma::Algebra Gmu [] = {
 | 
				
			||||||
 | 
					    Gamma::Algebra::GammaX,
 | 
				
			||||||
 | 
					    Gamma::Algebra::GammaY,
 | 
				
			||||||
 | 
					    Gamma::Algebra::GammaZ,
 | 
				
			||||||
 | 
					    Gamma::Algebra::GammaT,
 | 
				
			||||||
 | 
					  };
 | 
				
			||||||
 | 
					  Gamma gmu=Gamma(Gmu[mu]);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  tmp = Cshift(q_in,mu,1);
 | 
				
			||||||
 | 
					  Impl::multLinkField(Utmp,this->Umu,tmp,mu);
 | 
				
			||||||
 | 
					  tmp = ( Utmp*lattice_cmplx - gmu*Utmp*lattice_cmplx ); // Forward hop
 | 
				
			||||||
 | 
					  tmp = where((lcoor>=tmin),tmp,zz); // Mask the time
 | 
				
			||||||
 | 
					  q_out = where((lcoor<=tmax),tmp,zz); // Position of current complicated
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					  tmp = q_in *lattice_cmplx;
 | 
				
			||||||
 | 
					  tmp = Cshift(tmp,mu,-1);
 | 
				
			||||||
 | 
					  Impl::multLinkField(Utmp,this->Umu,tmp,mu+Nd); // Adjoint link
 | 
				
			||||||
 | 
					  tmp = -( Utmp + gmu*Utmp );
 | 
				
			||||||
 | 
					  // 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);
 | 
				
			||||||
 | 
					  }
 | 
				
			||||||
 | 
					  q_out+= where((lcoor<=tmax+tshift),tmp,zz); // Position of current complicated
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
NAMESPACE_END(Grid);
 | 
					NAMESPACE_END(Grid);
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -73,17 +73,17 @@ WilsonKernels<ZWilsonImplF>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					//#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplFH>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplFH>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					//#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplFH>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplFH>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
@@ -102,17 +102,17 @@ WilsonKernels<ZWilsonImplF>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldVi
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					//#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplFH>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplFH>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					//#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplFH>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplFH>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
@@ -131,17 +131,17 @@ WilsonKernels<ZWilsonImplF>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldVi
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					//#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplFH>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplFH>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					//#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplFH>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplFH>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -165,17 +165,17 @@ WilsonKernels<ZWilsonImplF>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldVi
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					//#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplFH>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplFH>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					//#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplFH>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplFH>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
@@ -194,17 +194,17 @@ WilsonKernels<ZWilsonImplF>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFiel
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					//#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplFH>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplFH>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					//#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplFH>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplFH>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
@@ -223,17 +223,17 @@ WilsonKernels<ZWilsonImplF>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFiel
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					//#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplFH>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplFH>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					//#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplFH>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplFH>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -280,17 +280,17 @@ WilsonKernels<ZWilsonImplD>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					// #pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					// template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplDF>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					// WilsonKernels<WilsonImplDF>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					// 						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					// #include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					// #pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					// template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplDF>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					// WilsonKernels<ZWilsonImplDF>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					// 						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					// #include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
@@ -309,17 +309,17 @@ WilsonKernels<ZWilsonImplD>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldVi
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					// #pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					// template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplDF>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					// WilsonKernels<WilsonImplDF>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					// 						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					// #include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					// #pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					// template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplDF>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					// WilsonKernels<ZWilsonImplDF>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					// 						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					// #include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
@@ -338,17 +338,17 @@ WilsonKernels<ZWilsonImplD>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldVi
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					// #pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					// template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplDF>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					// WilsonKernels<WilsonImplDF>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					// 						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					// #include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					// #pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					// template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplDF>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					// WilsonKernels<ZWilsonImplDF>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					// 						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					// #include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
/////////////////////////////////////////////////////////////////
 | 
					/////////////////////////////////////////////////////////////////
 | 
				
			||||||
@@ -371,17 +371,17 @@ WilsonKernels<ZWilsonImplD>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldVi
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					// #pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					// template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplDF>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					// WilsonKernels<WilsonImplDF>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					// 						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					// #include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					// #pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					// template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplDF>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					// WilsonKernels<ZWilsonImplDF>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					// 						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					// #include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
@@ -400,17 +400,17 @@ WilsonKernels<ZWilsonImplD>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFiel
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					// #pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					// template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplDF>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					// WilsonKernels<WilsonImplDF>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					// 						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					// #include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					// #pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					// template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplDF>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					// WilsonKernels<ZWilsonImplDF>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					// 						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					// #include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
@@ -429,17 +429,17 @@ WilsonKernels<ZWilsonImplD>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFiel
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					// #pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					// template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplDF>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					// WilsonKernels<WilsonImplDF>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					// 						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					// #include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
					// #pragma GCC optimize ("-O3", "-fno-schedule-insns", "-fno-schedule-insns2")
 | 
				
			||||||
template<> void
 | 
					// template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplDF>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					// WilsonKernels<ZWilsonImplDF>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					// 						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
					// #include <qcd/action/fermion/implementation/WilsonKernelsAsmBodyA64FX.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -74,15 +74,15 @@ WilsonKernels<ZWilsonImplF>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplFH>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplFH>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					//
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplFH>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplFH>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#define INTERIOR
 | 
					#define INTERIOR
 | 
				
			||||||
@@ -97,15 +97,15 @@ WilsonKernels<ZWilsonImplF>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldVi
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplFH>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplFH>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					//
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplFH>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplFH>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
@@ -121,15 +121,15 @@ WilsonKernels<ZWilsonImplF>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldVi
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplFH>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplFH>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					//
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplFH>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplFH>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
/////////////////////////////////////////////////////////////////
 | 
					/////////////////////////////////////////////////////////////////
 | 
				
			||||||
// XYZT vectorised, dag Kernel, single
 | 
					// XYZT vectorised, dag Kernel, single
 | 
				
			||||||
@@ -148,15 +148,15 @@ WilsonKernels<ZWilsonImplF>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldVi
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplFH>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplFH>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					//
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplFH>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplFH>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#define INTERIOR
 | 
					#define INTERIOR
 | 
				
			||||||
@@ -171,15 +171,15 @@ WilsonKernels<ZWilsonImplF>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFiel
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplFH>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplFH>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					//
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplFH>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplFH>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#undef INTERIOR
 | 
					#undef INTERIOR
 | 
				
			||||||
@@ -194,15 +194,15 @@ WilsonKernels<ZWilsonImplF>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFiel
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
				    
 | 
									    
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplFH>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplFH>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
				    
 | 
					//
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplFH>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplFH>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
				    
 | 
									    
 | 
				
			||||||
#undef MAYBEPERM
 | 
					#undef MAYBEPERM
 | 
				
			||||||
#undef MULT_2SPIN
 | 
					#undef MULT_2SPIN
 | 
				
			||||||
@@ -228,14 +228,14 @@ WilsonKernels<ZDomainWallVec5dImplF>::AsmDhopSite(StencilView &st, DoubledGaugeF
 | 
				
			|||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
												 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<DomainWallVec5dImplFH>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<DomainWallVec5dImplFH>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZDomainWallVec5dImplFH>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZDomainWallVec5dImplFH>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#define INTERIOR
 | 
					#define INTERIOR
 | 
				
			||||||
@@ -249,14 +249,14 @@ WilsonKernels<ZDomainWallVec5dImplF>::AsmDhopSiteInt(StencilView &st, DoubledGau
 | 
				
			|||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
												 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<DomainWallVec5dImplFH>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<DomainWallVec5dImplFH>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZDomainWallVec5dImplFH>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZDomainWallVec5dImplFH>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#undef INTERIOR
 | 
					#undef INTERIOR
 | 
				
			||||||
@@ -273,15 +273,15 @@ WilsonKernels<ZDomainWallVec5dImplF>::AsmDhopSiteExt(StencilView &st, DoubledGau
 | 
				
			|||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
												 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
				    
 | 
									    
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<DomainWallVec5dImplFH>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<DomainWallVec5dImplFH>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
				    
 | 
					//
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZDomainWallVec5dImplFH>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZDomainWallVec5dImplFH>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
				    
 | 
									    
 | 
				
			||||||
/////////////////////////////////////////////////////////////////
 | 
					/////////////////////////////////////////////////////////////////
 | 
				
			||||||
// Ls vectorised, dag Kernel, single
 | 
					// Ls vectorised, dag Kernel, single
 | 
				
			||||||
@@ -299,14 +299,14 @@ WilsonKernels<ZDomainWallVec5dImplF>::AsmDhopSiteDag(StencilView &st, DoubledGau
 | 
				
			|||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
												    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<DomainWallVec5dImplFH>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
					//WilsonKernels<DomainWallVec5dImplFH>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
				
			||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZDomainWallVec5dImplFH>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZDomainWallVec5dImplFH>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
				
			||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#define INTERIOR
 | 
					#define INTERIOR
 | 
				
			||||||
@@ -320,14 +320,14 @@ WilsonKernels<ZDomainWallVec5dImplF>::AsmDhopSiteDagInt(StencilView &st, Doubled
 | 
				
			|||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
												    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<DomainWallVec5dImplFH>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
					//WilsonKernels<DomainWallVec5dImplFH>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
				
			||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZDomainWallVec5dImplFH>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZDomainWallVec5dImplFH>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
				
			||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#undef INTERIOR
 | 
					#undef INTERIOR
 | 
				
			||||||
@@ -341,14 +341,14 @@ WilsonKernels<ZDomainWallVec5dImplF>::AsmDhopSiteDagExt(StencilView &st, Doubled
 | 
				
			|||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
												    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<DomainWallVec5dImplFH>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
					//WilsonKernels<DomainWallVec5dImplFH>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
				
			||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZDomainWallVec5dImplFH>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZDomainWallVec5dImplFH>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
				
			||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#endif  // VEC 5D
 | 
					#endif  // VEC 5D
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -392,14 +392,14 @@ WilsonKernels<ZWilsonImplD>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplDF>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplDF>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplDF>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplDF>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#define INTERIOR
 | 
					#define INTERIOR
 | 
				
			||||||
@@ -413,14 +413,14 @@ WilsonKernels<ZWilsonImplD>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldVi
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplDF>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplDF>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplDF>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplDF>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#undef INTERIOR
 | 
					#undef INTERIOR
 | 
				
			||||||
@@ -434,14 +434,14 @@ WilsonKernels<ZWilsonImplD>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldVi
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplDF>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplDF>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplDF>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplDF>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
      
 | 
					      
 | 
				
			||||||
/////////////////////////////////////////////////////////////////
 | 
					/////////////////////////////////////////////////////////////////
 | 
				
			||||||
// XYZT vectorised, dag Kernel, single
 | 
					// XYZT vectorised, dag Kernel, single
 | 
				
			||||||
@@ -459,14 +459,14 @@ WilsonKernels<ZWilsonImplD>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldVi
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplDF>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplDF>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplDF>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplDF>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#define INTERIOR
 | 
					#define INTERIOR
 | 
				
			||||||
@@ -480,14 +480,14 @@ WilsonKernels<ZWilsonImplD>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFiel
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplDF>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplDF>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplDF>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplDF>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#undef INTERIOR
 | 
					#undef INTERIOR
 | 
				
			||||||
@@ -501,14 +501,14 @@ WilsonKernels<ZWilsonImplD>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFiel
 | 
				
			|||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
											int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
				    
 | 
									    
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<WilsonImplDF>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<WilsonImplDF>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZWilsonImplDF>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZWilsonImplDF>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//						int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
				    
 | 
									    
 | 
				
			||||||
#undef MAYBEPERM
 | 
					#undef MAYBEPERM
 | 
				
			||||||
#undef MULT_2SPIN
 | 
					#undef MULT_2SPIN
 | 
				
			||||||
@@ -533,14 +533,14 @@ WilsonKernels<ZDomainWallVec5dImplD>::AsmDhopSite(StencilView &st, DoubledGaugeF
 | 
				
			|||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
												 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<DomainWallVec5dImplDF>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<DomainWallVec5dImplDF>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZDomainWallVec5dImplDF>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZDomainWallVec5dImplDF>::AsmDhopSite(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#define INTERIOR
 | 
					#define INTERIOR
 | 
				
			||||||
@@ -554,14 +554,14 @@ WilsonKernels<ZDomainWallVec5dImplD>::AsmDhopSiteInt(StencilView &st, DoubledGau
 | 
				
			|||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
												 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<DomainWallVec5dImplDF>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<DomainWallVec5dImplDF>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZDomainWallVec5dImplDF>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZDomainWallVec5dImplDF>::AsmDhopSiteInt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#undef INTERIOR
 | 
					#undef INTERIOR
 | 
				
			||||||
@@ -577,14 +577,14 @@ WilsonKernels<ZDomainWallVec5dImplD>::AsmDhopSiteExt(StencilView &st, DoubledGau
 | 
				
			|||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
												 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
				    
 | 
									    
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<DomainWallVec5dImplDF>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<DomainWallVec5dImplDF>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZDomainWallVec5dImplDF>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZDomainWallVec5dImplDF>::AsmDhopSiteExt(StencilView &st, DoubledGaugeFieldView &U, SiteHalfSpinor *buf,
 | 
				
			||||||
							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							 int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
				    
 | 
									    
 | 
				
			||||||
/////////////////////////////////////////////////////////////////
 | 
					/////////////////////////////////////////////////////////////////
 | 
				
			||||||
// Ls vectorised, dag Kernel, single
 | 
					// Ls vectorised, dag Kernel, single
 | 
				
			||||||
@@ -602,14 +602,14 @@ WilsonKernels<ZDomainWallVec5dImplD>::AsmDhopSiteDag(StencilView &st, DoubledGau
 | 
				
			|||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
												    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<DomainWallVec5dImplDF>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
					//WilsonKernels<DomainWallVec5dImplDF>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
				
			||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZDomainWallVec5dImplDF>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZDomainWallVec5dImplDF>::AsmDhopSiteDag(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
				
			||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#define INTERIOR
 | 
					#define INTERIOR
 | 
				
			||||||
@@ -623,14 +623,14 @@ WilsonKernels<ZDomainWallVec5dImplD>::AsmDhopSiteDagInt(StencilView &st, Doubled
 | 
				
			|||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
												    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<DomainWallVec5dImplDF>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
					//WilsonKernels<DomainWallVec5dImplDF>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
				
			||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZDomainWallVec5dImplDF>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZDomainWallVec5dImplDF>::AsmDhopSiteDagInt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
				
			||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#undef INTERIOR_AND_EXTERIOR
 | 
					#undef INTERIOR_AND_EXTERIOR
 | 
				
			||||||
#undef INTERIOR
 | 
					#undef INTERIOR
 | 
				
			||||||
@@ -645,14 +645,14 @@ WilsonKernels<ZDomainWallVec5dImplD>::AsmDhopSiteDagExt(StencilView &st, Doubled
 | 
				
			|||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
												    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<DomainWallVec5dImplDF>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
					//WilsonKernels<DomainWallVec5dImplDF>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
				
			||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
template<> void 
 | 
					//template<> void
 | 
				
			||||||
WilsonKernels<ZDomainWallVec5dImplDF>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
					//WilsonKernels<ZDomainWallVec5dImplDF>::AsmDhopSiteDagExt(StencilView &st, DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
				
			||||||
							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
					//							    int ss,int ssU,int Ls,int Ns,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
					//#include <qcd/action/fermion/implementation/WilsonKernelsAsmBody.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#endif  // VEC 5D
 | 
					#endif  // VEC 5D
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -77,23 +77,23 @@ Author: paboyle <paboyle@ph.ed.ac.uk>
 | 
				
			|||||||
#define REGISTER
 | 
					#define REGISTER
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#ifdef GRID_SIMT
 | 
					#ifdef GRID_SIMT
 | 
				
			||||||
#define LOAD_CHIMU(ptype)		\
 | 
					#define LOAD_CHIMU(Ptype)		\
 | 
				
			||||||
  {const SiteSpinor & ref (in[offset]);	\
 | 
					  {const SiteSpinor & ref (in[offset]);	\
 | 
				
			||||||
    Chimu_00=coalescedReadPermute<ptype>(ref()(0)(0),perm,lane);	\
 | 
					    Chimu_00=coalescedReadPermute<Ptype>(ref()(0)(0),perm,lane);	\
 | 
				
			||||||
    Chimu_01=coalescedReadPermute<ptype>(ref()(0)(1),perm,lane);		\
 | 
					    Chimu_01=coalescedReadPermute<Ptype>(ref()(0)(1),perm,lane);		\
 | 
				
			||||||
    Chimu_02=coalescedReadPermute<ptype>(ref()(0)(2),perm,lane);		\
 | 
					    Chimu_02=coalescedReadPermute<Ptype>(ref()(0)(2),perm,lane);		\
 | 
				
			||||||
    Chimu_10=coalescedReadPermute<ptype>(ref()(1)(0),perm,lane);		\
 | 
					    Chimu_10=coalescedReadPermute<Ptype>(ref()(1)(0),perm,lane);		\
 | 
				
			||||||
    Chimu_11=coalescedReadPermute<ptype>(ref()(1)(1),perm,lane);		\
 | 
					    Chimu_11=coalescedReadPermute<Ptype>(ref()(1)(1),perm,lane);		\
 | 
				
			||||||
    Chimu_12=coalescedReadPermute<ptype>(ref()(1)(2),perm,lane);		\
 | 
					    Chimu_12=coalescedReadPermute<Ptype>(ref()(1)(2),perm,lane);		\
 | 
				
			||||||
    Chimu_20=coalescedReadPermute<ptype>(ref()(2)(0),perm,lane);		\
 | 
					    Chimu_20=coalescedReadPermute<Ptype>(ref()(2)(0),perm,lane);		\
 | 
				
			||||||
    Chimu_21=coalescedReadPermute<ptype>(ref()(2)(1),perm,lane);		\
 | 
					    Chimu_21=coalescedReadPermute<Ptype>(ref()(2)(1),perm,lane);		\
 | 
				
			||||||
    Chimu_22=coalescedReadPermute<ptype>(ref()(2)(2),perm,lane);		\
 | 
					    Chimu_22=coalescedReadPermute<Ptype>(ref()(2)(2),perm,lane);		\
 | 
				
			||||||
    Chimu_30=coalescedReadPermute<ptype>(ref()(3)(0),perm,lane);		\
 | 
					    Chimu_30=coalescedReadPermute<Ptype>(ref()(3)(0),perm,lane);		\
 | 
				
			||||||
    Chimu_31=coalescedReadPermute<ptype>(ref()(3)(1),perm,lane);		\
 | 
					    Chimu_31=coalescedReadPermute<Ptype>(ref()(3)(1),perm,lane);		\
 | 
				
			||||||
    Chimu_32=coalescedReadPermute<ptype>(ref()(3)(2),perm,lane);	}
 | 
					    Chimu_32=coalescedReadPermute<Ptype>(ref()(3)(2),perm,lane);	}
 | 
				
			||||||
#define PERMUTE_DIR(dir) ;
 | 
					#define PERMUTE_DIR(dir) ;
 | 
				
			||||||
#else
 | 
					#else
 | 
				
			||||||
#define LOAD_CHIMU(ptype)		\
 | 
					#define LOAD_CHIMU(Ptype)		\
 | 
				
			||||||
  {const SiteSpinor & ref (in[offset]);	\
 | 
					  {const SiteSpinor & ref (in[offset]);	\
 | 
				
			||||||
    Chimu_00=ref()(0)(0);\
 | 
					    Chimu_00=ref()(0)(0);\
 | 
				
			||||||
    Chimu_01=ref()(0)(1);\
 | 
					    Chimu_01=ref()(0)(1);\
 | 
				
			||||||
@@ -109,12 +109,12 @@ Author: paboyle <paboyle@ph.ed.ac.uk>
 | 
				
			|||||||
    Chimu_32=ref()(3)(2);}
 | 
					    Chimu_32=ref()(3)(2);}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define PERMUTE_DIR(dir)			\
 | 
					#define PERMUTE_DIR(dir)			\
 | 
				
			||||||
  permute##dir(Chi_00,Chi_00);	\
 | 
					  permute##dir(Chi_00,Chi_00);			\
 | 
				
			||||||
      permute##dir(Chi_01,Chi_01);\
 | 
					  permute##dir(Chi_01,Chi_01);			\
 | 
				
			||||||
      permute##dir(Chi_02,Chi_02);\
 | 
					  permute##dir(Chi_02,Chi_02);			\
 | 
				
			||||||
      permute##dir(Chi_10,Chi_10);	\
 | 
					  permute##dir(Chi_10,Chi_10);			\
 | 
				
			||||||
      permute##dir(Chi_11,Chi_11);\
 | 
					  permute##dir(Chi_11,Chi_11);			\
 | 
				
			||||||
      permute##dir(Chi_12,Chi_12);
 | 
					  permute##dir(Chi_12,Chi_12);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#endif
 | 
					#endif
 | 
				
			||||||
 | 
					
 | 
				
			||||||
@@ -371,88 +371,91 @@ Author: paboyle <paboyle@ph.ed.ac.uk>
 | 
				
			|||||||
  result_32-= UChi_12;
 | 
					  result_32-= UChi_12;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define HAND_STENCIL_LEGB(PROJ,PERM,DIR,RECON)	\
 | 
					#define HAND_STENCIL_LEGB(PROJ,PERM,DIR,RECON)	\
 | 
				
			||||||
  SE=st.GetEntry(ptype,DIR,ss);			\
 | 
					  {int ptype;					\
 | 
				
			||||||
  offset = SE->_offset;				\
 | 
					   SE=st.GetEntry(ptype,DIR,ss);		\
 | 
				
			||||||
  local  = SE->_is_local;			\
 | 
					   auto offset = SE->_offset;			\
 | 
				
			||||||
  perm   = SE->_permute;			\
 | 
					   auto local  = SE->_is_local;			\
 | 
				
			||||||
  if ( local ) {				\
 | 
					   auto perm   = SE->_permute;			\
 | 
				
			||||||
    LOAD_CHIMU(PERM);				\
 | 
					   if ( local ) {				\
 | 
				
			||||||
    PROJ;					\
 | 
					     LOAD_CHIMU(PERM);				\
 | 
				
			||||||
    if ( perm) {				\
 | 
					     PROJ;					\
 | 
				
			||||||
      PERMUTE_DIR(PERM);			\
 | 
					     if ( perm) {				\
 | 
				
			||||||
    }						\
 | 
					       PERMUTE_DIR(PERM);			\
 | 
				
			||||||
  } else {					\
 | 
					     }						\
 | 
				
			||||||
    LOAD_CHI;					\
 | 
					   } else {					\
 | 
				
			||||||
  }						\
 | 
					     LOAD_CHI;					\
 | 
				
			||||||
  acceleratorSynchronise();			\
 | 
					   }						\
 | 
				
			||||||
  MULT_2SPIN(DIR);				\
 | 
					   acceleratorSynchronise();			\
 | 
				
			||||||
  RECON;					
 | 
					   MULT_2SPIN(DIR);				\
 | 
				
			||||||
 | 
					   RECON;					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define HAND_STENCIL_LEG(PROJ,PERM,DIR,RECON)	\
 | 
					#define HAND_STENCIL_LEG(PROJ,PERM,DIR,RECON)		\
 | 
				
			||||||
  SE=&st_p[DIR+8*ss];				\
 | 
					  { SE=&st_p[DIR+8*ss];						\
 | 
				
			||||||
  ptype=st_perm[DIR];				\
 | 
					  auto ptype=st_perm[DIR];					\
 | 
				
			||||||
  offset = SE->_offset;				\
 | 
					  auto offset = SE->_offset;					\
 | 
				
			||||||
  local  = SE->_is_local;			\
 | 
					  auto local  = SE->_is_local;					\
 | 
				
			||||||
  perm   = SE->_permute;			\
 | 
					  auto perm   = SE->_permute;					\
 | 
				
			||||||
  if ( local ) {				\
 | 
					  if ( local ) {						\
 | 
				
			||||||
    LOAD_CHIMU(PERM);				\
 | 
					    LOAD_CHIMU(PERM);						\
 | 
				
			||||||
    PROJ;					\
 | 
					    PROJ;							\
 | 
				
			||||||
    if ( perm) {				\
 | 
					    if ( perm) {						\
 | 
				
			||||||
      PERMUTE_DIR(PERM);			\
 | 
					      PERMUTE_DIR(PERM);					\
 | 
				
			||||||
    }						\
 | 
					    }								\
 | 
				
			||||||
  } else {					\
 | 
					  } else {							\
 | 
				
			||||||
    LOAD_CHI;					\
 | 
					    LOAD_CHI;							\
 | 
				
			||||||
  }						\
 | 
					  }								\
 | 
				
			||||||
  acceleratorSynchronise();			\
 | 
					  acceleratorSynchronise();					\
 | 
				
			||||||
  MULT_2SPIN(DIR);				\
 | 
					  MULT_2SPIN(DIR);						\
 | 
				
			||||||
  RECON;					
 | 
					  RECON;					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define HAND_STENCIL_LEGA(PROJ,PERM,DIR,RECON)				\
 | 
					#define HAND_STENCIL_LEGA(PROJ,PERM,DIR,RECON)				\
 | 
				
			||||||
  SE=&st_p[DIR+8*ss];							\
 | 
					  { SE=&st_p[DIR+8*ss];							\
 | 
				
			||||||
  ptype=st_perm[DIR];							\
 | 
					    auto ptype=st_perm[DIR];						\
 | 
				
			||||||
 /*SE=st.GetEntry(ptype,DIR,ss);*/					\
 | 
					    /*SE=st.GetEntry(ptype,DIR,ss);*/					\
 | 
				
			||||||
  offset = SE->_offset;				\
 | 
					    auto offset = SE->_offset;						\
 | 
				
			||||||
  perm   = SE->_permute;			\
 | 
					    auto perm   = SE->_permute;						\
 | 
				
			||||||
  LOAD_CHIMU(PERM);				\
 | 
					    LOAD_CHIMU(PERM);							\
 | 
				
			||||||
  PROJ;						\
 | 
					    PROJ;								\
 | 
				
			||||||
  MULT_2SPIN(DIR);				\
 | 
					    MULT_2SPIN(DIR);							\
 | 
				
			||||||
  RECON;					
 | 
					    RECON;					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define HAND_STENCIL_LEG_INT(PROJ,PERM,DIR,RECON)	\
 | 
					#define HAND_STENCIL_LEG_INT(PROJ,PERM,DIR,RECON)	\
 | 
				
			||||||
  SE=st.GetEntry(ptype,DIR,ss);			\
 | 
					  { int ptype;						\
 | 
				
			||||||
  offset = SE->_offset;				\
 | 
					  SE=st.GetEntry(ptype,DIR,ss);				\
 | 
				
			||||||
  local  = SE->_is_local;			\
 | 
					  auto offset = SE->_offset;					\
 | 
				
			||||||
  perm   = SE->_permute;			\
 | 
					  auto local  = SE->_is_local;					\
 | 
				
			||||||
  if ( local ) {				\
 | 
					  auto perm   = SE->_permute;					\
 | 
				
			||||||
    LOAD_CHIMU(PERM);				\
 | 
					  if ( local ) {						\
 | 
				
			||||||
    PROJ;					\
 | 
					    LOAD_CHIMU(PERM);						\
 | 
				
			||||||
    if ( perm) {				\
 | 
					    PROJ;							\
 | 
				
			||||||
      PERMUTE_DIR(PERM);			\
 | 
					    if ( perm) {						\
 | 
				
			||||||
    }						\
 | 
					      PERMUTE_DIR(PERM);					\
 | 
				
			||||||
  } else if ( st.same_node[DIR] ) {		\
 | 
					    }								\
 | 
				
			||||||
    LOAD_CHI;					\
 | 
					  } else if ( st.same_node[DIR] ) {				\
 | 
				
			||||||
  }						\
 | 
					    LOAD_CHI;							\
 | 
				
			||||||
  acceleratorSynchronise();			\
 | 
					  }								\
 | 
				
			||||||
  if (local || st.same_node[DIR] ) {		\
 | 
					  acceleratorSynchronise();					\
 | 
				
			||||||
    MULT_2SPIN(DIR);				\
 | 
					  if (local || st.same_node[DIR] ) {				\
 | 
				
			||||||
    RECON;					\
 | 
					    MULT_2SPIN(DIR);						\
 | 
				
			||||||
  }						\
 | 
					    RECON;							\
 | 
				
			||||||
  acceleratorSynchronise();			
 | 
					  }								\
 | 
				
			||||||
 | 
					  acceleratorSynchronise();			}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define HAND_STENCIL_LEG_EXT(PROJ,PERM,DIR,RECON)	\
 | 
					#define HAND_STENCIL_LEG_EXT(PROJ,PERM,DIR,RECON)	\
 | 
				
			||||||
  SE=st.GetEntry(ptype,DIR,ss);			\
 | 
					  { int ptype;						\
 | 
				
			||||||
  offset = SE->_offset;				\
 | 
					  SE=st.GetEntry(ptype,DIR,ss);				\
 | 
				
			||||||
  if((!SE->_is_local)&&(!st.same_node[DIR]) ) {	\
 | 
					  auto offset = SE->_offset;				\
 | 
				
			||||||
    LOAD_CHI;					\
 | 
					  if((!SE->_is_local)&&(!st.same_node[DIR]) ) {		\
 | 
				
			||||||
    MULT_2SPIN(DIR);				\
 | 
					    LOAD_CHI;						\
 | 
				
			||||||
    RECON;					\
 | 
					    MULT_2SPIN(DIR);					\
 | 
				
			||||||
    nmu++;					\
 | 
					    RECON;						\
 | 
				
			||||||
  }						\
 | 
					    nmu++;						\
 | 
				
			||||||
  acceleratorSynchronise();			
 | 
					  }							\
 | 
				
			||||||
 | 
					  acceleratorSynchronise();			}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define HAND_RESULT(ss)				\
 | 
					#define HAND_RESULT(ss)					\
 | 
				
			||||||
  {						\
 | 
					  {							\
 | 
				
			||||||
    SiteSpinor & ref (out[ss]);			\
 | 
					    SiteSpinor & ref (out[ss]);				\
 | 
				
			||||||
    coalescedWrite(ref()(0)(0),result_00,lane);		\
 | 
					    coalescedWrite(ref()(0)(0),result_00,lane);		\
 | 
				
			||||||
    coalescedWrite(ref()(0)(1),result_01,lane);		\
 | 
					    coalescedWrite(ref()(0)(1),result_01,lane);		\
 | 
				
			||||||
    coalescedWrite(ref()(0)(2),result_02,lane);		\
 | 
					    coalescedWrite(ref()(0)(2),result_02,lane);		\
 | 
				
			||||||
@@ -563,7 +566,6 @@ WilsonKernels<Impl>::HandDhopSiteSycl(StencilVector st_perm,StencilEntry *st_p,
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
  HAND_DECLARATIONS(Simt);
 | 
					  HAND_DECLARATIONS(Simt);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  int offset,local,perm, ptype;
 | 
					 | 
				
			||||||
  StencilEntry *SE;
 | 
					  StencilEntry *SE;
 | 
				
			||||||
  HAND_STENCIL_LEG(XM_PROJ,3,Xp,XM_RECON);
 | 
					  HAND_STENCIL_LEG(XM_PROJ,3,Xp,XM_RECON);
 | 
				
			||||||
  HAND_STENCIL_LEG(YM_PROJ,2,Yp,YM_RECON_ACCUM);
 | 
					  HAND_STENCIL_LEG(YM_PROJ,2,Yp,YM_RECON_ACCUM);
 | 
				
			||||||
@@ -593,9 +595,7 @@ WilsonKernels<Impl>::HandDhopSite(StencilView &st, DoubledGaugeFieldView &U,Site
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
  HAND_DECLARATIONS(Simt);
 | 
					  HAND_DECLARATIONS(Simt);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  int offset,local,perm, ptype;
 | 
					 | 
				
			||||||
  StencilEntry *SE;
 | 
					  StencilEntry *SE;
 | 
				
			||||||
 | 
					 | 
				
			||||||
  HAND_STENCIL_LEG(XM_PROJ,3,Xp,XM_RECON);
 | 
					  HAND_STENCIL_LEG(XM_PROJ,3,Xp,XM_RECON);
 | 
				
			||||||
  HAND_STENCIL_LEG(YM_PROJ,2,Yp,YM_RECON_ACCUM);
 | 
					  HAND_STENCIL_LEG(YM_PROJ,2,Yp,YM_RECON_ACCUM);
 | 
				
			||||||
  HAND_STENCIL_LEG(ZM_PROJ,1,Zp,ZM_RECON_ACCUM);
 | 
					  HAND_STENCIL_LEG(ZM_PROJ,1,Zp,ZM_RECON_ACCUM);
 | 
				
			||||||
@@ -623,8 +623,6 @@ void WilsonKernels<Impl>::HandDhopSiteDag(StencilView &st,DoubledGaugeFieldView
 | 
				
			|||||||
  HAND_DECLARATIONS(Simt);
 | 
					  HAND_DECLARATIONS(Simt);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  StencilEntry *SE;
 | 
					  StencilEntry *SE;
 | 
				
			||||||
  int offset,local,perm, ptype;
 | 
					 | 
				
			||||||
  
 | 
					 | 
				
			||||||
  HAND_STENCIL_LEG(XP_PROJ,3,Xp,XP_RECON);
 | 
					  HAND_STENCIL_LEG(XP_PROJ,3,Xp,XP_RECON);
 | 
				
			||||||
  HAND_STENCIL_LEG(YP_PROJ,2,Yp,YP_RECON_ACCUM);
 | 
					  HAND_STENCIL_LEG(YP_PROJ,2,Yp,YP_RECON_ACCUM);
 | 
				
			||||||
  HAND_STENCIL_LEG(ZP_PROJ,1,Zp,ZP_RECON_ACCUM);
 | 
					  HAND_STENCIL_LEG(ZP_PROJ,1,Zp,ZP_RECON_ACCUM);
 | 
				
			||||||
@@ -640,8 +638,8 @@ template<class Impl>  accelerator_inline void
 | 
				
			|||||||
WilsonKernels<Impl>::HandDhopSiteInt(StencilView &st,DoubledGaugeFieldView &U,SiteHalfSpinor  *buf,
 | 
					WilsonKernels<Impl>::HandDhopSiteInt(StencilView &st,DoubledGaugeFieldView &U,SiteHalfSpinor  *buf,
 | 
				
			||||||
					  int ss,int sU,const FermionFieldView &in, FermionFieldView &out)
 | 
										  int ss,int sU,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  auto st_p = st._entries_p;						
 | 
					  //  auto st_p = st._entries_p;						
 | 
				
			||||||
  auto st_perm = st._permute_type;					
 | 
					  //  auto st_perm = st._permute_type;					
 | 
				
			||||||
// T==0, Z==1, Y==2, Z==3 expect 1,2,2,2 simd layout etc...
 | 
					// T==0, Z==1, Y==2, Z==3 expect 1,2,2,2 simd layout etc...
 | 
				
			||||||
  typedef typename Simd::scalar_type S;
 | 
					  typedef typename Simd::scalar_type S;
 | 
				
			||||||
  typedef typename Simd::vector_type V;
 | 
					  typedef typename Simd::vector_type V;
 | 
				
			||||||
@@ -652,7 +650,6 @@ WilsonKernels<Impl>::HandDhopSiteInt(StencilView &st,DoubledGaugeFieldView &U,Si
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
  HAND_DECLARATIONS(Simt);
 | 
					  HAND_DECLARATIONS(Simt);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  int offset,local,perm, ptype;
 | 
					 | 
				
			||||||
  StencilEntry *SE;
 | 
					  StencilEntry *SE;
 | 
				
			||||||
  ZERO_RESULT;
 | 
					  ZERO_RESULT;
 | 
				
			||||||
  HAND_STENCIL_LEG_INT(XM_PROJ,3,Xp,XM_RECON_ACCUM);
 | 
					  HAND_STENCIL_LEG_INT(XM_PROJ,3,Xp,XM_RECON_ACCUM);
 | 
				
			||||||
@@ -670,8 +667,8 @@ template<class Impl> accelerator_inline
 | 
				
			|||||||
void WilsonKernels<Impl>::HandDhopSiteDagInt(StencilView &st,DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
					void WilsonKernels<Impl>::HandDhopSiteDagInt(StencilView &st,DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
				
			||||||
						  int ss,int sU,const FermionFieldView &in, FermionFieldView &out)
 | 
											  int ss,int sU,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  auto st_p = st._entries_p;						
 | 
					  //  auto st_p = st._entries_p;						
 | 
				
			||||||
  auto st_perm = st._permute_type;					
 | 
					  //  auto st_perm = st._permute_type;					
 | 
				
			||||||
  typedef typename Simd::scalar_type S;
 | 
					  typedef typename Simd::scalar_type S;
 | 
				
			||||||
  typedef typename Simd::vector_type V;
 | 
					  typedef typename Simd::vector_type V;
 | 
				
			||||||
  typedef decltype( coalescedRead( in[0]()(0)(0) )) Simt;
 | 
					  typedef decltype( coalescedRead( in[0]()(0)(0) )) Simt;
 | 
				
			||||||
@@ -682,7 +679,6 @@ void WilsonKernels<Impl>::HandDhopSiteDagInt(StencilView &st,DoubledGaugeFieldVi
 | 
				
			|||||||
  HAND_DECLARATIONS(Simt);
 | 
					  HAND_DECLARATIONS(Simt);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  StencilEntry *SE;
 | 
					  StencilEntry *SE;
 | 
				
			||||||
  int offset,local,perm, ptype;
 | 
					 | 
				
			||||||
  ZERO_RESULT;
 | 
					  ZERO_RESULT;
 | 
				
			||||||
  HAND_STENCIL_LEG_INT(XP_PROJ,3,Xp,XP_RECON_ACCUM);
 | 
					  HAND_STENCIL_LEG_INT(XP_PROJ,3,Xp,XP_RECON_ACCUM);
 | 
				
			||||||
  HAND_STENCIL_LEG_INT(YP_PROJ,2,Yp,YP_RECON_ACCUM);
 | 
					  HAND_STENCIL_LEG_INT(YP_PROJ,2,Yp,YP_RECON_ACCUM);
 | 
				
			||||||
@@ -699,8 +695,8 @@ template<class Impl>  accelerator_inline void
 | 
				
			|||||||
WilsonKernels<Impl>::HandDhopSiteExt(StencilView &st,DoubledGaugeFieldView &U,SiteHalfSpinor  *buf,
 | 
					WilsonKernels<Impl>::HandDhopSiteExt(StencilView &st,DoubledGaugeFieldView &U,SiteHalfSpinor  *buf,
 | 
				
			||||||
					  int ss,int sU,const FermionFieldView &in, FermionFieldView &out)
 | 
										  int ss,int sU,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  auto st_p = st._entries_p;						
 | 
					  //  auto st_p = st._entries_p;						
 | 
				
			||||||
  auto st_perm = st._permute_type;					
 | 
					  //  auto st_perm = st._permute_type;					
 | 
				
			||||||
// T==0, Z==1, Y==2, Z==3 expect 1,2,2,2 simd layout etc...
 | 
					// T==0, Z==1, Y==2, Z==3 expect 1,2,2,2 simd layout etc...
 | 
				
			||||||
  typedef typename Simd::scalar_type S;
 | 
					  typedef typename Simd::scalar_type S;
 | 
				
			||||||
  typedef typename Simd::vector_type V;
 | 
					  typedef typename Simd::vector_type V;
 | 
				
			||||||
@@ -711,7 +707,7 @@ WilsonKernels<Impl>::HandDhopSiteExt(StencilView &st,DoubledGaugeFieldView &U,Si
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
  HAND_DECLARATIONS(Simt);
 | 
					  HAND_DECLARATIONS(Simt);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  int offset, ptype;
 | 
					  //  int offset, ptype;
 | 
				
			||||||
  StencilEntry *SE;
 | 
					  StencilEntry *SE;
 | 
				
			||||||
  int nmu=0;
 | 
					  int nmu=0;
 | 
				
			||||||
  ZERO_RESULT;
 | 
					  ZERO_RESULT;
 | 
				
			||||||
@@ -730,8 +726,8 @@ template<class Impl>  accelerator_inline
 | 
				
			|||||||
void WilsonKernels<Impl>::HandDhopSiteDagExt(StencilView &st,DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
					void WilsonKernels<Impl>::HandDhopSiteDagExt(StencilView &st,DoubledGaugeFieldView &U,SiteHalfSpinor *buf,
 | 
				
			||||||
						  int ss,int sU,const FermionFieldView &in, FermionFieldView &out)
 | 
											  int ss,int sU,const FermionFieldView &in, FermionFieldView &out)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
  auto st_p = st._entries_p;						
 | 
					  //  auto st_p = st._entries_p;						
 | 
				
			||||||
  auto st_perm = st._permute_type;					
 | 
					  //  auto st_perm = st._permute_type;					
 | 
				
			||||||
  typedef typename Simd::scalar_type S;
 | 
					  typedef typename Simd::scalar_type S;
 | 
				
			||||||
  typedef typename Simd::vector_type V;
 | 
					  typedef typename Simd::vector_type V;
 | 
				
			||||||
  typedef decltype( coalescedRead( in[0]()(0)(0) )) Simt;
 | 
					  typedef decltype( coalescedRead( in[0]()(0)(0) )) Simt;
 | 
				
			||||||
@@ -742,7 +738,7 @@ void WilsonKernels<Impl>::HandDhopSiteDagExt(StencilView &st,DoubledGaugeFieldVi
 | 
				
			|||||||
  HAND_DECLARATIONS(Simt);
 | 
					  HAND_DECLARATIONS(Simt);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
  StencilEntry *SE;
 | 
					  StencilEntry *SE;
 | 
				
			||||||
  int offset, ptype;
 | 
					  //  int offset, ptype;
 | 
				
			||||||
  int nmu=0;
 | 
					  int nmu=0;
 | 
				
			||||||
  ZERO_RESULT;
 | 
					  ZERO_RESULT;
 | 
				
			||||||
  HAND_STENCIL_LEG_EXT(XP_PROJ,3,Xp,XP_RECON_ACCUM);
 | 
					  HAND_STENCIL_LEG_EXT(XP_PROJ,3,Xp,XP_RECON_ACCUM);
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -440,6 +440,17 @@ void WilsonKernels<Impl>::DhopDirKernel( StencilImpl &st, DoubledGaugeField &U,S
 | 
				
			|||||||
 | 
					
 | 
				
			||||||
#define KERNEL_CALL(A) KERNEL_CALLNB(A); accelerator_barrier();
 | 
					#define KERNEL_CALL(A) KERNEL_CALLNB(A); accelerator_barrier();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#define KERNEL_CALL_EXT(A)						\
 | 
				
			||||||
 | 
					  const uint64_t    NN = Nsite*Ls;					\
 | 
				
			||||||
 | 
					  const uint64_t    sz = st.surface_list.size();			\
 | 
				
			||||||
 | 
					  auto ptr = &st.surface_list[0];					\
 | 
				
			||||||
 | 
					  accelerator_forNB( ss, sz, Simd::Nsimd(), {				\
 | 
				
			||||||
 | 
					      int sF = ptr[ss];							\
 | 
				
			||||||
 | 
					      int sU = ss/Ls;							\
 | 
				
			||||||
 | 
					      WilsonKernels<Impl>::A(st_v,U_v,buf,sF,sU,in_v,out_v);		\
 | 
				
			||||||
 | 
					    });									\
 | 
				
			||||||
 | 
					  accelerator_barrier();
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#define ASM_CALL(A)							\
 | 
					#define ASM_CALL(A)							\
 | 
				
			||||||
  thread_for( ss, Nsite, {						\
 | 
					  thread_for( ss, Nsite, {						\
 | 
				
			||||||
    int sU = ss;							\
 | 
					    int sU = ss;							\
 | 
				
			||||||
 
 | 
				
			|||||||
@@ -0,0 +1,44 @@
 | 
				
			|||||||
 | 
					/*************************************************************************************
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Grid physics library, www.github.com/paboyle/Grid
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Source file: ./lib/ qcd/action/fermion/instantiation/CompactWilsonCloverFermionInstantiation.cc.master
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Copyright (C) 2017 - 2022
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    Author: paboyle <paboyle@ph.ed.ac.uk>
 | 
				
			||||||
 | 
					    Author: Guido Cossu <guido.cossu@ed.ac.uk>
 | 
				
			||||||
 | 
					    Author: Daniel Richtmann <daniel.richtmann@gmail.com>
 | 
				
			||||||
 | 
					    Author: Mattia Bruno <mattia.bruno@cern.ch>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					    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 */
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#include <Grid/Grid.h>
 | 
				
			||||||
 | 
					#include <Grid/qcd/spin/Dirac.h>
 | 
				
			||||||
 | 
					#include <Grid/qcd/action/fermion/CompactWilsonCloverFermion.h>
 | 
				
			||||||
 | 
					#include <Grid/qcd/action/fermion/implementation/CompactWilsonCloverFermionImplementation.h>
 | 
				
			||||||
 | 
					#include <Grid/qcd/action/fermion/CloverHelpers.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					NAMESPACE_BEGIN(Grid);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#include "impl.h"
 | 
				
			||||||
 | 
					template class CompactWilsonCloverFermion<IMPLEMENTATION, CompactCloverHelpers<IMPLEMENTATION>>; 
 | 
				
			||||||
 | 
					template class CompactWilsonCloverFermion<IMPLEMENTATION, CompactExpCloverHelpers<IMPLEMENTATION>>; 
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					NAMESPACE_END(Grid);
 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
../CayleyFermion5DInstantiation.cc.master
 | 
					 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
../ContinuedFractionFermion5DInstantiation.cc.master
 | 
					 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
../DomainWallEOFAFermionInstantiation.cc.master
 | 
					 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
../MobiusEOFAFermionInstantiation.cc.master
 | 
					 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
../PartialFractionFermion5DInstantiation.cc.master
 | 
					 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
../WilsonCloverFermionInstantiation.cc.master
 | 
					 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
../WilsonFermion5DInstantiation.cc.master
 | 
					 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
../WilsonFermionInstantiation.cc.master
 | 
					 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
../WilsonKernelsInstantiationGparity.cc.master
 | 
					 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
../WilsonTMFermionInstantiation.cc.master
 | 
					 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
#define IMPLEMENTATION GparityWilsonImplDF
 | 
					 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
../CayleyFermion5DInstantiation.cc.master
 | 
					 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
../ContinuedFractionFermion5DInstantiation.cc.master
 | 
					 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
../DomainWallEOFAFermionInstantiation.cc.master
 | 
					 | 
				
			||||||
@@ -1 +0,0 @@
 | 
				
			|||||||
../MobiusEOFAFermionInstantiation.cc.master
 | 
					 | 
				
			||||||
Some files were not shown because too many files have changed in this diff Show More
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	Block a user