xref: /libCEED/include/ceed/jit-source/sycl/sycl-shared-basis-tensor.h (revision d4cc18453651bd0f94c1a2e078b2646a92dafdcc)
1*9ba83ac0SJeremy L Thompson // Copyright (c) 2017-2026, Lawrence Livermore National Security, LLC and other CEED contributors.
2bd882c8aSJames Wright // All Rights Reserved. See the top-level LICENSE and NOTICE files for details.
3bd882c8aSJames Wright //
4bd882c8aSJames Wright // SPDX-License-Identifier: BSD-2-Clause
5bd882c8aSJames Wright //
6bd882c8aSJames Wright // This file is part of CEED:  http://github.com/ceed
7bd882c8aSJames Wright 
8bd882c8aSJames Wright /// @file
9bd882c8aSJames Wright /// Internal header for SYCL shared memory tensor product basis
10c0b5abf0SJeremy L Thompson #include <ceed/types.h>
11bd882c8aSJames Wright 
12bd882c8aSJames Wright #include "sycl-shared-basis-read-write-templates.h"
13bd882c8aSJames Wright #include "sycl-shared-basis-tensor-templates.h"
14bd882c8aSJames Wright 
15bd882c8aSJames Wright //
16bd882c8aSJames Wright // BASIS_NUM_NODES = CeedIntPow(BASIS_P_1D,DIM)
17bd882c8aSJames Wright // BASIS_NUM_QPTS = CeedIntPow(BASIS_Q_1D,DIM)
18bd882c8aSJames Wright 
19bd882c8aSJames Wright //------------------------------------------------------------------------------
20bd882c8aSJames Wright // Interp kernel by dim
21bd882c8aSJames Wright //------------------------------------------------------------------------------
Interp(const CeedInt num_elem,global const CeedScalar * restrict d_interp_1d,global const CeedScalar * restrict d_U,global CeedScalar * restrict d_V)22bd882c8aSJames Wright kernel void Interp(const CeedInt num_elem, global const CeedScalar *restrict d_interp_1d, global const CeedScalar *restrict d_U,
23bd882c8aSJames Wright                    global CeedScalar *restrict d_V) {
24bd882c8aSJames Wright   local CeedScalar s_B[BASIS_P_1D * BASIS_Q_1D];
25bd882c8aSJames Wright  private
26bd882c8aSJames Wright   CeedScalar r_U[BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_P_1D : 1)];
27bd882c8aSJames Wright  private
28bd882c8aSJames Wright   CeedScalar r_V[BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_Q_1D : 1)];
29bd882c8aSJames Wright 
30bd882c8aSJames Wright   local CeedScalar  scratch[BASIS_INTERP_SCRATCH_SIZE];
31bd882c8aSJames Wright   local CeedScalar *elem_scratch = scratch + get_local_id(2) * T_1D * (BASIS_DIM > 1 ? T_1D : 1);
32bd882c8aSJames Wright 
33bd882c8aSJames Wright   loadMatrix(BASIS_P_1D * BASIS_Q_1D, d_interp_1d, s_B);
34bd882c8aSJames Wright   work_group_barrier(CLK_LOCAL_MEM_FENCE);
35bd882c8aSJames Wright 
36bd882c8aSJames Wright   if (BASIS_DIM == 1) {
37bd882c8aSJames Wright     ReadElementStrided1d(BASIS_NUM_COMP, BASIS_P_1D, num_elem, 1, BASIS_NUM_NODES * num_elem, BASIS_NUM_NODES, d_U, r_U);
38bd882c8aSJames Wright     Interp1d(BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D, r_U, s_B, r_V, elem_scratch);
39bd882c8aSJames Wright     WriteElementStrided1d(BASIS_NUM_COMP, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, r_V, d_V);
40bd882c8aSJames Wright 
41bd882c8aSJames Wright   } else if (BASIS_DIM == 2) {
42bd882c8aSJames Wright     ReadElementStrided2d(BASIS_NUM_COMP, BASIS_P_1D, num_elem, 1, BASIS_NUM_NODES * num_elem, BASIS_NUM_NODES, d_U, r_U);
43bd882c8aSJames Wright     InterpTensor2d(BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D, r_U, s_B, r_V, elem_scratch);
44bd882c8aSJames Wright     WriteElementStrided2d(BASIS_NUM_COMP, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, r_V, d_V);
45bd882c8aSJames Wright 
46bd882c8aSJames Wright   } else if (BASIS_DIM == 3) {
47bd882c8aSJames Wright     ReadElementStrided3d(BASIS_NUM_COMP, BASIS_P_1D, num_elem, 1, BASIS_NUM_NODES * num_elem, BASIS_NUM_NODES, d_U, r_U);
48bd882c8aSJames Wright     InterpTensor3d(BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D, r_U, s_B, r_V, elem_scratch);
49bd882c8aSJames Wright     WriteElementStrided3d(BASIS_NUM_COMP, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, r_V, d_V);
50bd882c8aSJames Wright   }
51bd882c8aSJames Wright }
52bd882c8aSJames Wright 
InterpTranspose(const CeedInt num_elem,global const CeedScalar * restrict d_interp_1d,global const CeedScalar * restrict d_U,global CeedScalar * restrict d_V)53bd882c8aSJames Wright kernel void InterpTranspose(const CeedInt num_elem, global const CeedScalar *restrict d_interp_1d, global const CeedScalar *restrict d_U,
54bd882c8aSJames Wright                             global CeedScalar *restrict d_V) {
55bd882c8aSJames Wright   // local size:
56bd882c8aSJames Wright   // 1d: elems_per_block * T_1d
57bd882c8aSJames Wright   // 2d,3d: elems_per_block * T_1d * T_1d
58bd882c8aSJames Wright   local CeedScalar s_B[BASIS_P_1D * BASIS_Q_1D];
59bd882c8aSJames Wright  private
60bd882c8aSJames Wright   CeedScalar r_U[BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_Q_1D : 1)];
61bd882c8aSJames Wright  private
62bd882c8aSJames Wright   CeedScalar r_V[BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_P_1D : 1)];
63bd882c8aSJames Wright 
64bd882c8aSJames Wright   local CeedScalar  scratch[BASIS_INTERP_SCRATCH_SIZE];
65bd882c8aSJames Wright   local CeedScalar *elem_scratch = scratch + get_local_id(2) * T_1D * (BASIS_DIM > 1 ? T_1D : 1);
66bd882c8aSJames Wright 
67bd882c8aSJames Wright   loadMatrix(BASIS_P_1D * BASIS_Q_1D, d_interp_1d, s_B);
68bd882c8aSJames Wright   work_group_barrier(CLK_LOCAL_MEM_FENCE);
69bd882c8aSJames Wright 
70bd882c8aSJames Wright   if (BASIS_DIM == 1) {
71bd882c8aSJames Wright     ReadElementStrided1d(BASIS_NUM_COMP, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, d_U, r_U);
72bd882c8aSJames Wright     InterpTranspose1d(BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D, r_U, s_B, r_V, elem_scratch);
73bd882c8aSJames Wright     WriteElementStrided1d(BASIS_NUM_COMP, BASIS_P_1D, num_elem, 1, BASIS_NUM_NODES * num_elem, BASIS_NUM_NODES, r_V, d_V);
74bd882c8aSJames Wright 
75bd882c8aSJames Wright   } else if (BASIS_DIM == 2) {
76bd882c8aSJames Wright     ReadElementStrided2d(BASIS_NUM_COMP, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, d_U, r_U);
77bd882c8aSJames Wright     InterpTransposeTensor2d(BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D, r_U, s_B, r_V, elem_scratch);
78bd882c8aSJames Wright     WriteElementStrided2d(BASIS_NUM_COMP, BASIS_P_1D, num_elem, 1, BASIS_NUM_NODES * num_elem, BASIS_NUM_NODES, r_V, d_V);
79bd882c8aSJames Wright 
80bd882c8aSJames Wright   } else if (BASIS_DIM == 3) {
81bd882c8aSJames Wright     ReadElementStrided3d(BASIS_NUM_COMP, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, d_U, r_U);
82bd882c8aSJames Wright     InterpTransposeTensor3d(BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D, r_U, s_B, r_V, elem_scratch);
83bd882c8aSJames Wright     WriteElementStrided3d(BASIS_NUM_COMP, BASIS_P_1D, num_elem, 1, BASIS_NUM_NODES * num_elem, BASIS_NUM_NODES, r_V, d_V);
84bd882c8aSJames Wright   }
85bd882c8aSJames Wright }
86bd882c8aSJames Wright 
87bd882c8aSJames Wright //------------------------------------------------------------------------------
88bd882c8aSJames Wright // Grad kernel by dim
89bd882c8aSJames Wright //------------------------------------------------------------------------------
Grad(const CeedInt num_elem,global const CeedScalar * restrict d_interp_1d,global const CeedScalar * restrict d_grad_1d,global const CeedScalar * restrict d_U,global CeedScalar * restrict d_V)90bd882c8aSJames Wright kernel void Grad(const CeedInt num_elem, global const CeedScalar *restrict d_interp_1d, global const CeedScalar *restrict d_grad_1d,
91bd882c8aSJames Wright                  global const CeedScalar *restrict d_U, global CeedScalar *restrict d_V) {
92bd882c8aSJames Wright   local CeedScalar s_B[BASIS_P_1D * BASIS_Q_1D];  // Todo, don't allocate s_B for dimension 1
93bd882c8aSJames Wright   local CeedScalar s_G[BASIS_Q_1D * (BASIS_HAS_COLLOCATED_GRAD ? BASIS_Q_1D : BASIS_P_1D)];
94bd882c8aSJames Wright 
95bd882c8aSJames Wright  private
96bd882c8aSJames Wright   CeedScalar r_U[BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_P_1D : 1)];
97bd882c8aSJames Wright  private
98bd882c8aSJames Wright   CeedScalar r_V[BASIS_NUM_COMP * BASIS_DIM * (BASIS_DIM > 2 ? BASIS_Q_1D : 1)];
99bd882c8aSJames Wright 
100bd882c8aSJames Wright   local CeedScalar  scratch[BASIS_GRAD_SCRATCH_SIZE];
101bd882c8aSJames Wright   local CeedScalar *elem_scratch = scratch + get_local_id(2) * T_1D * (BASIS_DIM > 1 ? T_1D : 1);
102bd882c8aSJames Wright 
103bd882c8aSJames Wright   loadMatrix(BASIS_P_1D * BASIS_Q_1D, d_interp_1d, s_B);
104bd882c8aSJames Wright   loadMatrix(BASIS_Q_1D * (BASIS_HAS_COLLOCATED_GRAD ? BASIS_Q_1D : BASIS_P_1D), d_grad_1d, s_G);
105bd882c8aSJames Wright   work_group_barrier(CLK_LOCAL_MEM_FENCE);
106bd882c8aSJames Wright 
107bd882c8aSJames Wright   if (BASIS_DIM == 1) {
108bd882c8aSJames Wright     ReadElementStrided1d(BASIS_NUM_COMP, BASIS_P_1D, num_elem, 1, BASIS_NUM_NODES * num_elem, BASIS_NUM_NODES, d_U, r_U);
109bd882c8aSJames Wright     Grad1d(BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D, r_U, s_G, r_V, elem_scratch);
110bd882c8aSJames Wright     WriteElementStrided1d(BASIS_NUM_COMP, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, r_V, d_V);
111bd882c8aSJames Wright 
112bd882c8aSJames Wright   } else if (BASIS_DIM == 2) {
113bd882c8aSJames Wright     ReadElementStrided2d(BASIS_NUM_COMP, BASIS_P_1D, num_elem, 1, BASIS_NUM_NODES * num_elem, BASIS_NUM_NODES, d_U, r_U);
114bd882c8aSJames Wright     GradTensor2d(BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D, r_U, s_B, s_G, r_V, elem_scratch);
115bd882c8aSJames Wright     WriteElementStrided2d(BASIS_NUM_COMP * BASIS_DIM, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, r_V, d_V);
116bd882c8aSJames Wright 
117bd882c8aSJames Wright   } else if (BASIS_DIM == 3) {
118bd882c8aSJames Wright     ReadElementStrided3d(BASIS_NUM_COMP, BASIS_P_1D, num_elem, 1, BASIS_NUM_NODES * num_elem, BASIS_NUM_NODES, d_U, r_U);
119bd882c8aSJames Wright     if (BASIS_HAS_COLLOCATED_GRAD) GradTensorCollocated3d(BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D, r_U, s_B, s_G, r_V, elem_scratch);
120bd882c8aSJames Wright     else GradTensor3d(BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D, r_U, s_B, s_G, r_V, elem_scratch);
121bd882c8aSJames Wright     WriteElementStrided3d(BASIS_NUM_COMP * BASIS_DIM, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, r_V, d_V);
122bd882c8aSJames Wright   }
123bd882c8aSJames Wright }
124bd882c8aSJames Wright 
GradTranspose(const CeedInt num_elem,global const CeedScalar * restrict d_interp_1d,global const CeedScalar * restrict d_grad_1d,global const CeedScalar * restrict d_U,global CeedScalar * restrict d_V)125bd882c8aSJames Wright kernel void GradTranspose(const CeedInt num_elem, global const CeedScalar *restrict d_interp_1d, global const CeedScalar *restrict d_grad_1d,
126bd882c8aSJames Wright                           global const CeedScalar *restrict d_U, global CeedScalar *restrict d_V) {
127bd882c8aSJames Wright   local CeedScalar s_B[BASIS_P_1D * BASIS_Q_1D];  // Todo, don't allocate s_B for dimension 1
128bd882c8aSJames Wright   local CeedScalar s_G[BASIS_Q_1D * (BASIS_HAS_COLLOCATED_GRAD ? BASIS_Q_1D : BASIS_P_1D)];
129bd882c8aSJames Wright 
130bd882c8aSJames Wright  private
131bd882c8aSJames Wright   CeedScalar r_U[BASIS_NUM_COMP * BASIS_DIM * (BASIS_DIM > 2 ? BASIS_Q_1D : 1)];
132bd882c8aSJames Wright  private
133bd882c8aSJames Wright   CeedScalar r_V[BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_P_1D : 1)];
134bd882c8aSJames Wright 
135bd882c8aSJames Wright   local CeedScalar  scratch[BASIS_GRAD_SCRATCH_SIZE];
136bd882c8aSJames Wright   local CeedScalar *elem_scratch = scratch + get_local_id(2) * T_1D * (BASIS_DIM > 1 ? T_1D : 1);
137bd882c8aSJames Wright 
138bd882c8aSJames Wright   loadMatrix(BASIS_P_1D * BASIS_Q_1D, d_interp_1d, s_B);
139bd882c8aSJames Wright   loadMatrix(BASIS_Q_1D * (BASIS_HAS_COLLOCATED_GRAD ? BASIS_Q_1D : BASIS_P_1D), d_grad_1d, s_G);
140bd882c8aSJames Wright   work_group_barrier(CLK_LOCAL_MEM_FENCE);
141bd882c8aSJames Wright 
142bd882c8aSJames Wright   if (BASIS_DIM == 1) {
143bd882c8aSJames Wright     ReadElementStrided1d(BASIS_NUM_COMP, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, d_U, r_U);
144bd882c8aSJames Wright     GradTranspose1d(BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D, r_U, s_G, r_V, elem_scratch);
145bd882c8aSJames Wright     WriteElementStrided1d(BASIS_NUM_COMP, BASIS_P_1D, num_elem, 1, BASIS_NUM_NODES * num_elem, BASIS_NUM_NODES, r_V, d_V);
146bd882c8aSJames Wright 
147bd882c8aSJames Wright   } else if (BASIS_DIM == 2) {
148bd882c8aSJames Wright     ReadElementStrided2d(BASIS_NUM_COMP * BASIS_DIM, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, d_U, r_U);
149bd882c8aSJames Wright     GradTransposeTensor2d(BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D, r_U, s_B, s_G, r_V, elem_scratch);
150bd882c8aSJames Wright     WriteElementStrided2d(BASIS_NUM_COMP, BASIS_P_1D, num_elem, 1, BASIS_NUM_NODES * num_elem, BASIS_NUM_NODES, r_V, d_V);
151bd882c8aSJames Wright 
152bd882c8aSJames Wright   } else if (BASIS_DIM == 3) {
153bd882c8aSJames Wright     ReadElementStrided3d(BASIS_NUM_COMP * BASIS_DIM, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, d_U, r_U);
154bd882c8aSJames Wright     if (BASIS_HAS_COLLOCATED_GRAD) GradTransposeTensorCollocated3d(BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D, r_U, s_B, s_G, r_V, elem_scratch);
155bd882c8aSJames Wright     else GradTransposeTensor3d(BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D, r_U, s_B, s_G, r_V, elem_scratch);
156bd882c8aSJames Wright     WriteElementStrided3d(BASIS_NUM_COMP, BASIS_P_1D, num_elem, 1, BASIS_NUM_NODES * num_elem, BASIS_NUM_NODES, r_V, d_V);
157bd882c8aSJames Wright   }
158bd882c8aSJames Wright }
159bd882c8aSJames Wright 
160bd882c8aSJames Wright //------------------------------------------------------------------------------
161bd882c8aSJames Wright // Weight kernels by dim
162bd882c8aSJames Wright //------------------------------------------------------------------------------
Weight(const CeedInt num_elem,global const CeedScalar * restrict q_weight_1d,global CeedScalar * restrict d_W)163bd882c8aSJames Wright kernel void Weight(const CeedInt num_elem, global const CeedScalar *restrict q_weight_1d, global CeedScalar *restrict d_W) {
164bd882c8aSJames Wright  private
165bd882c8aSJames Wright   CeedScalar r_W[BASIS_DIM > 2 ? BASIS_Q_1D : 1];
166bd882c8aSJames Wright 
167bd882c8aSJames Wright   // void prefetch(q_weight_1d,BASIS_Q_1D);
168bd882c8aSJames Wright 
169bd882c8aSJames Wright   if (BASIS_DIM == 1) {
170bd882c8aSJames Wright     Weight1d(BASIS_Q_1D, q_weight_1d, r_W);
171bd882c8aSJames Wright     WriteElementStrided1d(1, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, r_W, d_W);
172bd882c8aSJames Wright 
173bd882c8aSJames Wright   } else if (BASIS_DIM == 2) {
174bd882c8aSJames Wright     WeightTensor2d(BASIS_Q_1D, q_weight_1d, r_W);
175bd882c8aSJames Wright     WriteElementStrided2d(1, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, r_W, d_W);
176bd882c8aSJames Wright 
177bd882c8aSJames Wright   } else if (BASIS_DIM == 3) {
178bd882c8aSJames Wright     WeightTensor3d(BASIS_Q_1D, q_weight_1d, r_W);
179bd882c8aSJames Wright     WriteElementStrided3d(1, BASIS_Q_1D, num_elem, 1, BASIS_NUM_QPTS * num_elem, BASIS_NUM_QPTS, r_W, d_W);
180bd882c8aSJames Wright   }
181bd882c8aSJames Wright }
182