xref: /libCEED/include/ceed/jit-source/hip/hip-ref-basis-tensor.h (revision 5aed82e4fa97acf4ba24a7f10a35f5303a6798e0)
1*5aed82e4SJeremy L Thompson // Copyright (c) 2017-2024, Lawrence Livermore National Security, LLC and other CEED contributors.
2a0154adeSJed Brown // All Rights Reserved. See the top-level LICENSE and NOTICE files for details.
3a0154adeSJed Brown //
4a0154adeSJed Brown // SPDX-License-Identifier: BSD-2-Clause
5a0154adeSJed Brown //
6a0154adeSJed Brown // This file is part of CEED:  http://github.com/ceed
7a0154adeSJed Brown 
8b2165e7aSSebastian Grimberg /// @file
9b2165e7aSSebastian Grimberg /// Internal header for HIP tensor product basis
1094b7b29bSJeremy L Thompson #ifndef CEED_HIP_REF_BASIS_TENSOR_H
1194b7b29bSJeremy L Thompson #define CEED_HIP_REF_BASIS_TENSOR_H
12b2165e7aSSebastian Grimberg 
13c9c2c079SJeremy L Thompson #include <ceed.h>
14c9c2c079SJeremy L Thompson 
15a0154adeSJed Brown //------------------------------------------------------------------------------
16a0154adeSJed Brown // Tensor Basis Kernels
17a0154adeSJed Brown //------------------------------------------------------------------------------
18a0154adeSJed Brown 
19a0154adeSJed Brown //------------------------------------------------------------------------------
20a0154adeSJed Brown // Interp
21a0154adeSJed Brown //------------------------------------------------------------------------------
222b730f8bSJeremy L Thompson extern "C" __global__ void Interp(const CeedInt num_elem, const CeedInt transpose, const CeedScalar *__restrict__ interp_1d,
232b730f8bSJeremy L Thompson                                   const CeedScalar *__restrict__ u, CeedScalar *__restrict__ v) {
24a0154adeSJed Brown   const CeedInt i = threadIdx.x;
25a0154adeSJed Brown 
26a0154adeSJed Brown   __shared__ CeedScalar s_mem[BASIS_Q_1D * BASIS_P_1D + 2 * BASIS_BUF_LEN];
27a0154adeSJed Brown   CeedScalar           *s_interp_1d = s_mem;
28a0154adeSJed Brown   CeedScalar           *s_buffer_1  = s_mem + BASIS_Q_1D * BASIS_P_1D;
29a0154adeSJed Brown   CeedScalar           *s_buffer_2  = s_buffer_1 + BASIS_BUF_LEN;
30a0154adeSJed Brown   for (CeedInt k = i; k < BASIS_Q_1D * BASIS_P_1D; k += blockDim.x) {
31a0154adeSJed Brown     s_interp_1d[k] = interp_1d[k];
32a0154adeSJed Brown   }
33a0154adeSJed Brown 
34a0154adeSJed Brown   const CeedInt P             = transpose ? BASIS_Q_1D : BASIS_P_1D;
35a0154adeSJed Brown   const CeedInt Q             = transpose ? BASIS_P_1D : BASIS_Q_1D;
362a86cc9dSSebastian Grimberg   const CeedInt stride_0      = transpose ? 1 : BASIS_P_1D;
372a86cc9dSSebastian Grimberg   const CeedInt stride_1      = transpose ? BASIS_P_1D : 1;
38a0154adeSJed Brown   const CeedInt u_stride      = transpose ? BASIS_NUM_QPTS : BASIS_NUM_NODES;
39a0154adeSJed Brown   const CeedInt v_stride      = transpose ? BASIS_NUM_NODES : BASIS_NUM_QPTS;
40a0154adeSJed Brown   const CeedInt u_comp_stride = num_elem * (transpose ? BASIS_NUM_QPTS : BASIS_NUM_NODES);
41a0154adeSJed Brown   const CeedInt v_comp_stride = num_elem * (transpose ? BASIS_NUM_NODES : BASIS_NUM_QPTS);
42a0154adeSJed Brown   const CeedInt u_size        = transpose ? BASIS_NUM_QPTS : BASIS_NUM_NODES;
43a0154adeSJed Brown 
44a0154adeSJed Brown   // Apply basis element by element
45a0154adeSJed Brown   for (CeedInt elem = blockIdx.x; elem < num_elem; elem += gridDim.x) {
46a0154adeSJed Brown     for (CeedInt comp = 0; comp < BASIS_NUM_COMP; comp++) {
47a0154adeSJed Brown       const CeedScalar *cur_u = u + elem * u_stride + comp * u_comp_stride;
48a0154adeSJed Brown       CeedScalar       *cur_v = v + elem * v_stride + comp * v_comp_stride;
49672b0f2aSSebastian Grimberg       CeedInt           pre   = u_size;
50672b0f2aSSebastian Grimberg       CeedInt           post  = 1;
51672b0f2aSSebastian Grimberg 
52a0154adeSJed Brown       for (CeedInt k = i; k < u_size; k += blockDim.x) {
53a0154adeSJed Brown         s_buffer_1[k] = cur_u[k];
54a0154adeSJed Brown       }
55a0154adeSJed Brown       for (CeedInt d = 0; d < BASIS_DIM; d++) {
56a0154adeSJed Brown         __syncthreads();
57a0154adeSJed Brown         // Update buffers used
58a0154adeSJed Brown         pre /= P;
59a0154adeSJed Brown         const CeedScalar *in       = d % 2 ? s_buffer_2 : s_buffer_1;
60a0154adeSJed Brown         CeedScalar       *out      = d == BASIS_DIM - 1 ? cur_v : (d % 2 ? s_buffer_1 : s_buffer_2);
61672b0f2aSSebastian Grimberg         const CeedInt     writeLen = pre * post * Q;
62a0154adeSJed Brown 
63a0154adeSJed Brown         // Contract along middle index
64a0154adeSJed Brown         for (CeedInt k = i; k < writeLen; k += blockDim.x) {
65a0154adeSJed Brown           const CeedInt c  = k % post;
66a0154adeSJed Brown           const CeedInt j  = (k / post) % Q;
67a0154adeSJed Brown           const CeedInt a  = k / (post * Q);
68a0154adeSJed Brown           CeedScalar    vk = 0;
69a0154adeSJed Brown 
70672b0f2aSSebastian Grimberg           for (CeedInt b = 0; b < P; b++) vk += s_interp_1d[j * stride_0 + b * stride_1] * in[(a * P + b) * post + c];
71a0154adeSJed Brown           out[k] = vk;
72a0154adeSJed Brown         }
73a0154adeSJed Brown         post *= Q;
74a0154adeSJed Brown       }
75a0154adeSJed Brown     }
76a0154adeSJed Brown   }
77a0154adeSJed Brown }
78a0154adeSJed Brown 
79a0154adeSJed Brown //------------------------------------------------------------------------------
80a0154adeSJed Brown // Grad
81a0154adeSJed Brown //------------------------------------------------------------------------------
822b730f8bSJeremy L Thompson extern "C" __global__ void Grad(const CeedInt num_elem, const CeedInt transpose, const CeedScalar *__restrict__ interp_1d,
832b730f8bSJeremy L Thompson                                 const CeedScalar *__restrict__ grad_1d, const CeedScalar *__restrict__ u, CeedScalar *__restrict__ v) {
84a0154adeSJed Brown   const CeedInt i = threadIdx.x;
85a0154adeSJed Brown 
86a0154adeSJed Brown   __shared__ CeedScalar s_mem[2 * (BASIS_Q_1D * BASIS_P_1D + BASIS_BUF_LEN)];
87a0154adeSJed Brown   CeedScalar           *s_interp_1d = s_mem;
88a0154adeSJed Brown   CeedScalar           *s_grad_1d   = s_interp_1d + BASIS_Q_1D * BASIS_P_1D;
89a0154adeSJed Brown   CeedScalar           *s_buffer_1  = s_grad_1d + BASIS_Q_1D * BASIS_P_1D;
90a0154adeSJed Brown   CeedScalar           *s_buffer_2  = s_buffer_1 + BASIS_BUF_LEN;
91a0154adeSJed Brown   for (CeedInt k = i; k < BASIS_Q_1D * BASIS_P_1D; k += blockDim.x) {
92a0154adeSJed Brown     s_interp_1d[k] = interp_1d[k];
93a0154adeSJed Brown     s_grad_1d[k]   = grad_1d[k];
94a0154adeSJed Brown   }
95a0154adeSJed Brown 
96a0154adeSJed Brown   const CeedInt P             = transpose ? BASIS_Q_1D : BASIS_P_1D;
97a0154adeSJed Brown   const CeedInt Q             = transpose ? BASIS_P_1D : BASIS_Q_1D;
982a86cc9dSSebastian Grimberg   const CeedInt stride_0      = transpose ? 1 : BASIS_P_1D;
992a86cc9dSSebastian Grimberg   const CeedInt stride_1      = transpose ? BASIS_P_1D : 1;
100a0154adeSJed Brown   const CeedInt u_stride      = transpose ? BASIS_NUM_QPTS : BASIS_NUM_NODES;
101a0154adeSJed Brown   const CeedInt v_stride      = transpose ? BASIS_NUM_NODES : BASIS_NUM_QPTS;
102a0154adeSJed Brown   const CeedInt u_comp_stride = num_elem * (transpose ? BASIS_NUM_QPTS : BASIS_NUM_NODES);
103a0154adeSJed Brown   const CeedInt v_comp_stride = num_elem * (transpose ? BASIS_NUM_NODES : BASIS_NUM_QPTS);
104a0154adeSJed Brown   const CeedInt u_dim_stride  = transpose ? num_elem * BASIS_NUM_QPTS * BASIS_NUM_COMP : 0;
105a0154adeSJed Brown   const CeedInt v_dim_stride  = transpose ? 0 : num_elem * BASIS_NUM_QPTS * BASIS_NUM_COMP;
106a0154adeSJed Brown 
107a0154adeSJed Brown   // Apply basis element by element
108a0154adeSJed Brown   for (CeedInt elem = blockIdx.x; elem < num_elem; elem += gridDim.x) {
109a0154adeSJed Brown     for (CeedInt comp = 0; comp < BASIS_NUM_COMP; comp++) {
110a0154adeSJed Brown       // dim*dim contractions for grad
111a0154adeSJed Brown       for (CeedInt dim_1 = 0; dim_1 < BASIS_DIM; dim_1++) {
112a0154adeSJed Brown         CeedInt           pre   = transpose ? BASIS_NUM_QPTS : BASIS_NUM_NODES;
113a0154adeSJed Brown         CeedInt           post  = 1;
1142b730f8bSJeremy L Thompson         const CeedScalar *cur_u = u + elem * u_stride + dim_1 * u_dim_stride + comp * u_comp_stride;
1152b730f8bSJeremy L Thompson         CeedScalar       *cur_v = v + elem * v_stride + dim_1 * v_dim_stride + comp * v_comp_stride;
116672b0f2aSSebastian Grimberg 
117a0154adeSJed Brown         for (CeedInt dim_2 = 0; dim_2 < BASIS_DIM; dim_2++) {
118a0154adeSJed Brown           __syncthreads();
119a0154adeSJed Brown           // Update buffers used
120a0154adeSJed Brown           pre /= P;
121a0154adeSJed Brown           const CeedScalar *op       = dim_1 == dim_2 ? s_grad_1d : s_interp_1d;
1222b730f8bSJeremy L Thompson           const CeedScalar *in       = dim_2 == 0 ? cur_u : (dim_2 % 2 ? s_buffer_2 : s_buffer_1);
1232b730f8bSJeremy L Thompson           CeedScalar       *out      = dim_2 == BASIS_DIM - 1 ? cur_v : (dim_2 % 2 ? s_buffer_1 : s_buffer_2);
124672b0f2aSSebastian Grimberg           const CeedInt     writeLen = pre * post * Q;
125a0154adeSJed Brown 
126a0154adeSJed Brown           // Contract along middle index
127a0154adeSJed Brown           for (CeedInt k = i; k < writeLen; k += blockDim.x) {
128a0154adeSJed Brown             const CeedInt c   = k % post;
129a0154adeSJed Brown             const CeedInt j   = (k / post) % Q;
130a0154adeSJed Brown             const CeedInt a   = k / (post * Q);
131a0154adeSJed Brown             CeedScalar    v_k = 0;
132a0154adeSJed Brown 
133672b0f2aSSebastian Grimberg             for (CeedInt b = 0; b < P; b++) v_k += op[j * stride_0 + b * stride_1] * in[(a * P + b) * post + c];
1342b730f8bSJeremy L Thompson             if (transpose && dim_2 == BASIS_DIM - 1) out[k] += v_k;
1352b730f8bSJeremy L Thompson             else out[k] = v_k;
136a0154adeSJed Brown           }
137a0154adeSJed Brown           post *= Q;
138a0154adeSJed Brown         }
139a0154adeSJed Brown       }
140a0154adeSJed Brown     }
141a0154adeSJed Brown   }
142a0154adeSJed Brown }
143a0154adeSJed Brown 
144a0154adeSJed Brown //------------------------------------------------------------------------------
145a0154adeSJed Brown // 1D quadrature weights
146a0154adeSJed Brown //------------------------------------------------------------------------------
1472b730f8bSJeremy L Thompson __device__ void Weight1d(const CeedInt num_elem, const CeedScalar *q_weight_1d, CeedScalar *w) {
148b2165e7aSSebastian Grimberg   const CeedInt i = threadIdx.x;
149672b0f2aSSebastian Grimberg 
150b2165e7aSSebastian Grimberg   if (i < BASIS_Q_1D) {
151b2165e7aSSebastian Grimberg     const size_t elem = blockIdx.x;
152672b0f2aSSebastian Grimberg 
153b2165e7aSSebastian Grimberg     if (elem < num_elem) w[elem * BASIS_Q_1D + i] = q_weight_1d[i];
154a0154adeSJed Brown   }
155a0154adeSJed Brown }
156a0154adeSJed Brown 
157a0154adeSJed Brown //------------------------------------------------------------------------------
158a0154adeSJed Brown // 2D quadrature weights
159a0154adeSJed Brown //------------------------------------------------------------------------------
1602b730f8bSJeremy L Thompson __device__ void Weight2d(const CeedInt num_elem, const CeedScalar *q_weight_1d, CeedScalar *w) {
161b2165e7aSSebastian Grimberg   const CeedInt i = threadIdx.x;
162b2165e7aSSebastian Grimberg   const CeedInt j = threadIdx.y;
163672b0f2aSSebastian Grimberg 
164b2165e7aSSebastian Grimberg   if (i < BASIS_Q_1D && j < BASIS_Q_1D) {
165b2165e7aSSebastian Grimberg     const size_t elem = blockIdx.x;
166672b0f2aSSebastian Grimberg 
167b2165e7aSSebastian Grimberg     if (elem < num_elem) {
168b2165e7aSSebastian Grimberg       const size_t ind = (elem * BASIS_Q_1D + j) * BASIS_Q_1D + i;
169672b0f2aSSebastian Grimberg 
170b2165e7aSSebastian Grimberg       w[ind] = q_weight_1d[i] * q_weight_1d[j];
171b2165e7aSSebastian Grimberg     }
172a0154adeSJed Brown   }
173a0154adeSJed Brown }
174a0154adeSJed Brown 
175a0154adeSJed Brown //------------------------------------------------------------------------------
176a0154adeSJed Brown // 3D quadrature weights
177a0154adeSJed Brown //------------------------------------------------------------------------------
1782b730f8bSJeremy L Thompson __device__ void Weight3d(const CeedInt num_elem, const CeedScalar *q_weight_1d, CeedScalar *w) {
179b2165e7aSSebastian Grimberg   const CeedInt i = threadIdx.x;
180b2165e7aSSebastian Grimberg   const CeedInt j = threadIdx.y;
181672b0f2aSSebastian Grimberg 
182b2165e7aSSebastian Grimberg   if (i < BASIS_Q_1D && j < BASIS_Q_1D) {
183b2165e7aSSebastian Grimberg     const size_t elem = blockIdx.x;
184672b0f2aSSebastian Grimberg 
185b2165e7aSSebastian Grimberg     if (elem < num_elem) {
186a0154adeSJed Brown       for (CeedInt k = 0; k < BASIS_Q_1D; k++) {
187b2165e7aSSebastian Grimberg         const size_t ind = ((elem * BASIS_Q_1D + k) * BASIS_Q_1D + j) * BASIS_Q_1D + i;
188672b0f2aSSebastian Grimberg 
189b2165e7aSSebastian Grimberg         w[ind] = q_weight_1d[i] * q_weight_1d[j] * q_weight_1d[k];
190b2165e7aSSebastian Grimberg       }
191b2165e7aSSebastian Grimberg     }
192a0154adeSJed Brown   }
193a0154adeSJed Brown }
194a0154adeSJed Brown 
195a0154adeSJed Brown //------------------------------------------------------------------------------
196a0154adeSJed Brown // Quadrature weights
197a0154adeSJed Brown //------------------------------------------------------------------------------
1982b730f8bSJeremy L Thompson extern "C" __global__ void Weight(const CeedInt num_elem, const CeedScalar *__restrict__ q_weight_1d, CeedScalar *__restrict__ v) {
1992b730f8bSJeremy L Thompson   if (BASIS_DIM == 1) Weight1d(num_elem, q_weight_1d, v);
2002b730f8bSJeremy L Thompson   else if (BASIS_DIM == 2) Weight2d(num_elem, q_weight_1d, v);
2012b730f8bSJeremy L Thompson   else if (BASIS_DIM == 3) Weight3d(num_elem, q_weight_1d, v);
202a0154adeSJed Brown }
203a0154adeSJed Brown 
204a0154adeSJed Brown //------------------------------------------------------------------------------
205b2165e7aSSebastian Grimberg 
20694b7b29bSJeremy L Thompson #endif  // CEED_HIP_REF_BASIS_TENSOR_H
207