12 #include "../tmop.hpp"
14 #include "../linearform.hpp"
15 #include "../../general/forall.hpp"
16 #include "../../linalg/kernels.hpp"
22 const double lim_normal,
36 const bool const_c0 = c0_.
Size() == 1;
38 constexpr
int DIM = 3;
39 const int D1D = T_D1D ? T_D1D : d1d;
40 const int Q1D = T_Q1D ? T_Q1D : q1d;
42 const auto C0 = const_c0 ?
45 const auto LD =
Reshape(lim_dist.
Read(), D1D, D1D, D1D, NE);
55 MFEM_FORALL_3D(e, NE, Q1D, Q1D, Q1D,
57 const int D1D = T_D1D ? T_D1D : d1d;
58 const int Q1D = T_Q1D ? T_Q1D : q1d;
59 constexpr
int MQ1 = T_Q1D ? T_Q1D : T_MAX;
60 constexpr
int MD1 = T_D1D ? T_D1D : T_MAX;
61 constexpr
int MDQ = (MQ1 > MD1) ? MQ1 : MD1;
63 MFEM_SHARED
double B[MQ1*MD1];
64 MFEM_SHARED
double sBLD[MQ1*MD1];
65 kernels::internal::LoadB<MD1,MQ1>(D1D,Q1D,bld,sBLD);
68 MFEM_SHARED
double sm0[MDQ*MDQ*MDQ];
69 MFEM_SHARED
double sm1[MDQ*MDQ*MDQ];
75 MFEM_SHARED
double DDD0[3][MD1*MD1*MD1];
76 MFEM_SHARED
double DDQ0[3][MD1*MD1*MQ1];
77 MFEM_SHARED
double DQQ0[3][MD1*MQ1*MQ1];
78 MFEM_SHARED
double QQQ0[3][MQ1*MQ1*MQ1];
80 MFEM_SHARED
double DDD1[3][MD1*MD1*MD1];
81 MFEM_SHARED
double DDQ1[3][MD1*MD1*MQ1];
82 MFEM_SHARED
double DQQ1[3][MD1*MQ1*MQ1];
83 MFEM_SHARED
double QQQ1[3][MQ1*MQ1*MQ1];
85 kernels::internal::LoadX(e,D1D,LD,DDD);
86 kernels::internal::LoadX<MD1>(e,D1D,X0,DDD0);
87 kernels::internal::LoadX<MD1>(e,D1D,X1,DDD1);
89 kernels::internal::LoadB<MD1,MQ1>(D1D,Q1D,
b,B);
91 kernels::internal::EvalX(D1D,Q1D,BLD,DDD,DDQ);
92 kernels::internal::EvalY(D1D,Q1D,BLD,DDQ,DQQ);
93 kernels::internal::EvalZ(D1D,Q1D,BLD,DQQ,QQQ);
95 kernels::internal::EvalX<MD1,MQ1>(D1D,Q1D,B,DDD0,DDQ0);
96 kernels::internal::EvalY<MD1,MQ1>(D1D,Q1D,B,DDQ0,DQQ0);
97 kernels::internal::EvalZ<MD1,MQ1>(D1D,Q1D,B,DQQ0,QQQ0);
99 kernels::internal::EvalX<MD1,MQ1>(D1D,Q1D,B,DDD1,DDQ1);
100 kernels::internal::EvalY<MD1,MQ1>(D1D,Q1D,B,DDQ1,DQQ1);
101 kernels::internal::EvalZ<MD1,MQ1>(D1D,Q1D,B,DQQ1,QQQ1);
103 MFEM_FOREACH_THREAD(qz,z,Q1D)
105 MFEM_FOREACH_THREAD(qy,y,Q1D)
107 MFEM_FOREACH_THREAD(qx,x,Q1D)
109 const double *Jtr = &J(0,0,qx,qy,qz,e);
110 const double detJtr = kernels::Det<3>(Jtr);
111 const double weight = W(qx,qy,qz) * detJtr;
113 double D, p0[3], p1[3];
114 const double coeff0 = const_c0 ? C0(0,0,0,0) : C0(qx,qy,qz,e);
115 kernels::internal::PullEval(qx,qy,qz,QQQ,D);
116 kernels::internal::PullEval<MQ1>(Q1D,qx,qy,qz,QQQ0,p0);
117 kernels::internal::PullEval<MQ1>(Q1D,qx,qy,qz,QQQ1,p1);
124 const double dist = D;
125 const double a = 1.0 / (dist * dist);
126 const double w = weight * lim_normal * coeff0;
127 kernels::Subtract<3>(w*
a, p1, p0, d1);
128 kernels::internal::PushEval<MQ1>(Q1D,qx,qy,qz,d1,QQQ0);
133 kernels::internal::LoadBt<MD1,MQ1>(D1D,Q1D,
b,B);
134 kernels::internal::EvalXt<MD1,MQ1>(D1D,Q1D,B,QQQ0,DQQ0);
135 kernels::internal::EvalYt<MD1,MQ1>(D1D,Q1D,B,DQQ0,DDQ0);
136 kernels::internal::EvalZt<MD1,MQ1>(D1D,Q1D,B,DDQ0,Y,e);
143 const int D1D =
PA.maps->ndof;
144 const int Q1D =
PA.maps->nqpt;
145 const int id = (D1D << 4 ) | Q1D;
152 MFEM_VERIFY(
PA.maps_lim->ndof == D1D,
"");
153 MFEM_VERIFY(
PA.maps_lim->nqpt == Q1D,
"");
157 MFEM_LAUNCH_TMOP_KERNEL(AddMultPA_Kernel_C0_3D,
id,ln,LD,C0,N,J,W,B,BLD,X0,X,Y);
struct mfem::TMOP_Integrator::@23 PA
const double * Read(bool on_dev=true) const
Shortcut for mfem::Read( GetMemory(), TotalSize(), on_dev).
int Size() const
Returns the size of the vector.
MFEM_REGISTER_TMOP_KERNELS(void, DatcSize, const int NE, const int ncomp, const int sizeidx, const DenseMatrix &w_, const Array< double > &b_, const Vector &x_, DenseTensor &j_, const int d1d, const int q1d)
const T * Read(bool on_dev=true) const
Shortcut for mfem::Read(a.GetMemory(), a.Size(), on_dev).
A basic generic Tensor class, appropriate for use on the GPU.
virtual double * ReadWrite(bool on_dev=true)
Shortcut for mfem::ReadWrite(vec.GetMemory(), vec.Size(), on_dev).
void AddMultPA_C0_3D(const Vector &, Vector &) const
Rank 3 tensor (array of matrices)
virtual const double * Read(bool on_dev=true) const
Shortcut for mfem::Read(vec.GetMemory(), vec.Size(), on_dev).
MFEM_HOST_DEVICE DeviceTensor< sizeof...(Dims), T > Reshape(T *ptr, Dims...dims)
Wrap a pointer as a DeviceTensor with automatically deduced template parameters.