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avoid PI_ERROR_OUT_OF_RESOURCES in sycl sliceSum
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@ -131,9 +131,8 @@ template<class vobj> inline void sliceSumReduction_cub(const Lattice<vobj> &Data
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#if defined(GRID_SYCL)
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template<class vobj> inline void sliceSumReduction_sycl(const Lattice<vobj> &Data, Vector <vobj> &lvSum, const int &rd, const int &e1, const int &e2, const int &stride, const int &ostride, const int &Nsimd)
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template<class vobj> inline void sliceSumReduction_sycl_small(const vobj *Data, Vector <vobj> &lvSum, const int &rd, const int &e1, const int &e2, const int &stride, const int &ostride, const int &Nsimd)
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{
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typedef typename vobj::scalar_object sobj;
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size_t subvol_size = e1*e2;
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vobj *mysum = (vobj *) malloc_shared(rd*sizeof(vobj),*theGridAccelerator);
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@ -147,7 +146,7 @@ template<class vobj> inline void sliceSumReduction_sycl(const Lattice<vobj> &Dat
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auto rb_p = &reduction_buffer[0];
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autoView(Data_v, Data, AcceleratorRead);
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// autoView(Data_v, Data, AcceleratorRead);
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//prepare reduction buffer
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accelerator_for2d( s,subvol_size, r,rd, (size_t)Nsimd,{
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@ -157,7 +156,7 @@ template<class vobj> inline void sliceSumReduction_sycl(const Lattice<vobj> &Dat
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int so=r*ostride; // base offset for start of plane
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int ss= so+n*stride+b;
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coalescedWrite(rb_p[r*subvol_size+s], coalescedRead(Data_v[ss]));
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coalescedWrite(rb_p[r*subvol_size+s], coalescedRead(Data[ss]));
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});
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@ -180,6 +179,45 @@ template<class vobj> inline void sliceSumReduction_sycl(const Lattice<vobj> &Dat
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}
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free(mysum,*theGridAccelerator);
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}
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template<class vobj> inline void sliceSumReduction_sycl_large(const vobj *Data, Vector<vobj> &lvSum, const int rd, const int e1, const int e2, const int stride, const int ostride, const int Nsimd) {
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typedef typename vobj::vector_type vector;
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const int words = sizeof(vobj)/sizeof(vector);
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const int osites = rd*e1*e2;
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commVector<vector>buffer(osites);
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vector *dat = (vector *)Data;
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vector *buf = &buffer[0];
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Vector<vector> lvSum_small(rd);
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vector *lvSum_ptr = (vector *)&lvSum[0];
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for (int w = 0; w < words; w++) {
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accelerator_for(ss,osites,1,{
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buf[ss] = dat[ss*words+w];
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});
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sliceSumReduction_sycl_small(buf,lvSum_small,rd,e1,e2,stride, ostride,Nsimd);
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for (int r = 0; r < rd; r++) {
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lvSum_ptr[w+words*r]=lvSum_small[r];
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}
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}
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}
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template<class vobj> inline void sliceSumReduction_sycl(const Lattice<vobj> &Data, Vector<vobj> &lvSum, const int rd, const int e1, const int e2, const int stride, const int ostride, const int Nsimd)
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{
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autoView(Data_v, Data, AcceleratorRead); //hipcub/cub cannot deal with large vobjs so we split into small/large case.
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if constexpr (sizeof(vobj) <= 256) {
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sliceSumReduction_sycl_small(&Data_v[0], lvSum, rd, e1, e2, stride, ostride, Nsimd);
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}
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else {
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sliceSumReduction_sycl_large(&Data_v[0], lvSum, rd, e1, e2, stride, ostride, Nsimd);
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}
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}
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#endif
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template<class vobj> inline void sliceSumReduction_cpu(const Lattice<vobj> &Data, Vector<vobj> &lvSum, const int &rd, const int &e1, const int &e2, const int &stride, const int &ostride, const int &Nsimd)
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