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https://github.com/paboyle/Grid.git
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Force strong_inline to force ipcc's hand
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c33ec96fc8
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5159b26261
@ -9,12 +9,12 @@ namespace Grid {
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///////////////////////////////////////////////////////////////////////////////////////////////////
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template<class rtype,class vtype,class mtype>
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inline void mult(iScalar<rtype> * __restrict__ ret,const iScalar<mtype> * __restrict__ lhs,const iScalar<vtype> * __restrict__ rhs){
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strong_inline void mult(iScalar<rtype> * __restrict__ ret,const iScalar<mtype> * __restrict__ lhs,const iScalar<vtype> * __restrict__ rhs){
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mult(&ret->_internal,&lhs->_internal,&rhs->_internal);
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}
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template<class rrtype,class ltype,class rtype,int N>
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inline void mult(iMatrix<rrtype,N> * __restrict__ ret,const iMatrix<ltype,N> * __restrict__ lhs,const iMatrix<rtype,N> * __restrict__ rhs){
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strong_inline void mult(iMatrix<rrtype,N> * __restrict__ ret,const iMatrix<ltype,N> * __restrict__ lhs,const iMatrix<rtype,N> * __restrict__ rhs){
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for(int c2=0;c2<N;c2++){
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for(int c1=0;c1<N;c1++){
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mult(&ret->_internal[c1][c2],&lhs->_internal[c1][0],&rhs->_internal[0][c2]);
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@ -25,7 +25,7 @@ inline void mult(iMatrix<rrtype,N> * __restrict__ ret,const iMatrix<ltype,N> * _
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return;
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}
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template<class rrtype,class ltype,class rtype,int N>
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inline void mult(iMatrix<rrtype,N> * __restrict__ ret,const iMatrix<ltype,N> * __restrict__ lhs,const iScalar<rtype> * __restrict__ rhs){
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strong_inline void mult(iMatrix<rrtype,N> * __restrict__ ret,const iMatrix<ltype,N> * __restrict__ lhs,const iScalar<rtype> * __restrict__ rhs){
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for(int c2=0;c2<N;c2++){
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for(int c1=0;c1<N;c1++){
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mult(&ret->_internal[c1][c2],&lhs->_internal[c1][c2],&rhs->_internal);
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@ -34,7 +34,7 @@ inline void mult(iMatrix<rrtype,N> * __restrict__ ret,const iMatrix<ltype,N> * _
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}
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template<class rrtype,class ltype,class rtype, int N>
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inline void mult(iMatrix<rrtype,N> * __restrict__ ret,const iScalar<ltype> * __restrict__ lhs,const iMatrix<rtype,N> * __restrict__ rhs){
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strong_inline void mult(iMatrix<rrtype,N> * __restrict__ ret,const iScalar<ltype> * __restrict__ lhs,const iMatrix<rtype,N> * __restrict__ rhs){
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for(int c2=0;c2<N;c2++){
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for(int c1=0;c1<N;c1++){
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mult(&ret->_internal[c1][c2],&lhs->_internal,&rhs->_internal[c1][c2]);
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@ -43,7 +43,7 @@ inline void mult(iMatrix<rrtype,N> * __restrict__ ret,const iScalar<ltype> * _
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}
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// Matrix left multiplies vector
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template<class rtype,class vtype,class mtype,int N>
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inline void mult(iVector<rtype,N> * __restrict__ ret,const iMatrix<mtype,N> * __restrict__ lhs,const iVector<vtype,N> * __restrict__ rhs)
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strong_inline void mult(iVector<rtype,N> * __restrict__ ret,const iMatrix<mtype,N> * __restrict__ lhs,const iVector<vtype,N> * __restrict__ rhs)
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{
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for(int c1=0;c1<N;c1++){
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mult(&ret->_internal[c1],&lhs->_internal[c1][0],&rhs->_internal[0]);
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@ -54,7 +54,7 @@ inline void mult(iVector<rtype,N> * __restrict__ ret,const iMatrix<mtype,N> * __
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return;
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}
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template<class rtype,class vtype,class mtype,int N>
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inline void mult(iVector<rtype,N> * __restrict__ ret,
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strong_inline void mult(iVector<rtype,N> * __restrict__ ret,
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const iScalar<mtype> * __restrict__ lhs,
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const iVector<vtype,N> * __restrict__ rhs){
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for(int c1=0;c1<N;c1++){
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@ -62,7 +62,7 @@ inline void mult(iVector<rtype,N> * __restrict__ ret,
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}
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}
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template<class rtype,class vtype,class mtype,int N>
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inline void mult(iVector<rtype,N> * __restrict__ ret,
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strong_inline void mult(iVector<rtype,N> * __restrict__ ret,
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const iVector<vtype,N> * __restrict__ rhs,
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const iScalar<mtype> * __restrict__ lhs){
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mult(ret,lhs,rhs);
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@ -70,7 +70,7 @@ inline void mult(iVector<rtype,N> * __restrict__ ret,
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template<class rtype,class vtype,class mtype,int N> inline
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template<class rtype,class vtype,class mtype,int N> strong_inline
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iVector<rtype,N> operator * (const iMatrix<mtype,N>& lhs,const iVector<vtype,N>& rhs)
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{
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iVector<rtype,N> ret;
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@ -78,7 +78,7 @@ iVector<rtype,N> operator * (const iMatrix<mtype,N>& lhs,const iVector<vtype,N>&
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return ret;
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}
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template<class rtype,class vtype,class mtype,int N> inline
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template<class rtype,class vtype,class mtype,int N> strong_inline
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iVector<rtype,N> operator * (const iScalar<mtype>& lhs,const iVector<vtype,N>& rhs)
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{
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iVector<rtype,N> ret;
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@ -86,7 +86,7 @@ iVector<rtype,N> operator * (const iScalar<mtype>& lhs,const iVector<vtype,N>& r
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return ret;
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}
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template<class rtype,class vtype,class mtype,int N> inline
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template<class rtype,class vtype,class mtype,int N> strong_inline
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iVector<rtype,N> operator * (const iVector<mtype,N>& lhs,const iScalar<vtype>& rhs)
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{
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iVector<rtype,N> ret;
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@ -110,14 +110,14 @@ iVector<rtype,N> operator * (const iVector<mtype,N>& lhs,const iScalar<vtype>& r
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//
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// We can special case scalar_type ??
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template<class l,class r>
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inline auto operator * (const iScalar<l>& lhs,const iScalar<r>& rhs) -> iScalar<decltype(lhs._internal * rhs._internal)>
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strong_inline auto operator * (const iScalar<l>& lhs,const iScalar<r>& rhs) -> iScalar<decltype(lhs._internal * rhs._internal)>
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{
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typedef iScalar<decltype(lhs._internal*rhs._internal)> ret_t;
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ret_t ret;
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mult(&ret,&lhs,&rhs);
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return ret;
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}
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template<class l,class r,int N> inline
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template<class l,class r,int N> strong_inline
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auto operator * (const iMatrix<l,N>& lhs,const iMatrix<r,N>& rhs) -> iMatrix<decltype(lhs._internal[0][0]*rhs._internal[0][0]),N>
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{
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typedef decltype(lhs._internal[0][0]*rhs._internal[0][0]) ret_t;
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@ -125,7 +125,7 @@ auto operator * (const iMatrix<l,N>& lhs,const iMatrix<r,N>& rhs) -> iMatrix<dec
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mult(&ret,&lhs,&rhs);
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return ret;
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}
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template<class l,class r, int N> inline
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template<class l,class r, int N> strong_inline
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auto operator * (const iMatrix<r,N>& lhs,const iScalar<l>& rhs) -> iMatrix<decltype(lhs._internal[0][0]*rhs._internal),N>
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{
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typedef decltype(lhs._internal[0][0]*rhs._internal) ret_t;
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@ -137,7 +137,7 @@ auto operator * (const iMatrix<r,N>& lhs,const iScalar<l>& rhs) -> iMatrix<declt
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}}
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return ret;
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}
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template<class l,class r,int N> inline
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template<class l,class r,int N> strong_inline
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auto operator * (const iScalar<l>& lhs,const iMatrix<r,N>& rhs) -> iMatrix<decltype(lhs._internal*rhs._internal[0][0]),N>
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{
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typedef decltype(lhs._internal*rhs._internal[0][0]) ret_t;
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@ -148,7 +148,7 @@ auto operator * (const iScalar<l>& lhs,const iMatrix<r,N>& rhs) -> iMatrix<declt
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}}
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return ret;
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}
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template<class l,class r,int N> inline
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template<class l,class r,int N> strong_inline
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auto operator * (const iMatrix<l,N>& lhs,const iVector<r,N>& rhs) -> iVector<decltype(lhs._internal[0][0]*rhs._internal[0]),N>
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{
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typedef decltype(lhs._internal[0][0]*rhs._internal[0]) ret_t;
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@ -161,7 +161,7 @@ auto operator * (const iMatrix<l,N>& lhs,const iVector<r,N>& rhs) -> iVector<dec
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}
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return ret;
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}
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template<class l,class r,int N> inline
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template<class l,class r,int N> strong_inline
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auto operator * (const iScalar<l>& lhs,const iVector<r,N>& rhs) -> iVector<decltype(lhs._internal*rhs._internal[0]),N>
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{
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typedef decltype(lhs._internal*rhs._internal[0]) ret_t;
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@ -171,7 +171,7 @@ auto operator * (const iScalar<l>& lhs,const iVector<r,N>& rhs) -> iVector<declt
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}
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return ret;
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}
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template<class l,class r,int N> inline
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template<class l,class r,int N> strong_inline
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auto operator * (const iVector<l,N>& lhs,const iScalar<r>& rhs) -> iVector<decltype(lhs._internal[0]*rhs._internal),N>
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{
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typedef decltype(lhs._internal[0]*rhs._internal) ret_t;
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