1 // Copyright (c) 2017, Lawrence Livermore National Security, LLC. Produced at 2 // the Lawrence Livermore National Laboratory. LLNL-CODE-734707. All Rights 3 // reserved. See files LICENSE and NOTICE for details. 4 // 5 // This file is part of CEED, a collection of benchmarks, miniapps, software 6 // libraries and APIs for efficient high-order finite element and spectral 7 // element discretizations for exascale applications. For more information and 8 // source code availability see http://github.com/ceed. 9 // 10 // The CEED research is supported by the Exascale Computing Project 17-SC-20-SC, 11 // a collaborative effort of two U.S. Department of Energy organizations (Office 12 // of Science and the National Nuclear Security Administration) responsible for 13 // the planning and preparation of a capable exascale ecosystem, including 14 // software, applications, hardware, advanced system engineering and early 15 // testbed platforms, in support of the nation's exascale computing imperative. 16 17 /// @file 18 /// Private header for frontend components of libCEED 19 #ifndef _ceed_impl_h 20 #define _ceed_impl_h 21 22 #include <ceed/ceed.h> 23 #include <ceed/backend.h> 24 #include <stdbool.h> 25 26 /** @defgroup CeedUser Public API for Ceed 27 @ingroup Ceed 28 */ 29 /** @defgroup CeedBackend Backend API for Ceed 30 @ingroup Ceed 31 */ 32 /** @defgroup CeedDeveloper Internal library functions for Ceed 33 @ingroup Ceed 34 */ 35 /** @defgroup CeedVectorUser Public API for CeedVector 36 @ingroup CeedVector 37 */ 38 /** @defgroup CeedVectorBackend Backend API for CeedVector 39 @ingroup CeedVector 40 */ 41 /** @defgroup CeedVectorDeveloper Internal library functions for CeedVector 42 @ingroup CeedVector 43 */ 44 /** @defgroup CeedElemRestrictionUser Public API for CeedElemRestriction 45 @ingroup CeedElemRestriction 46 */ 47 /** @defgroup CeedElemRestrictionBackend Backend API for CeedElemRestriction 48 @ingroup CeedElemRestriction 49 */ 50 /** @defgroup CeedElemRestrictionDeveloper Internal library functions for CeedElemRestriction 51 @ingroup CeedElemRestriction 52 */ 53 /** @defgroup CeedBasisUser Public API for CeedBasis 54 @ingroup CeedBasis 55 */ 56 /** @defgroup CeedBasisBackend Backend API for CeedBasis 57 @ingroup CeedBasis 58 */ 59 /** @defgroup CeedBasisDeveloper Internal library functions for CeedBasis 60 @ingroup CeedBasis 61 */ 62 /** @defgroup CeedQFunctionUser Public API for CeedQFunction 63 @ingroup CeedQFunction 64 */ 65 /** @defgroup CeedQFunctionBackend Backend API for CeedQFunction 66 @ingroup CeedQFunction 67 */ 68 /** @defgroup CeedQFunctionDeveloper Internal library functions for CeedQFunction 69 @ingroup CeedQFunction 70 */ 71 /** @defgroup CeedOperatorUser Public API for CeedOperator 72 @ingroup CeedOperator 73 */ 74 /** @defgroup CeedOperatorBackend Backend API for CeedOperator 75 @ingroup CeedOperator 76 */ 77 /** @defgroup CeedOperatorDeveloper Internal library functions for CeedOperator 78 @ingroup CeedOperator 79 */ 80 81 // Lookup table field for backend functions 82 typedef struct { 83 const char *func_name; 84 size_t offset; 85 } FOffset; 86 87 // Lookup table field for object delegates 88 typedef struct { 89 char *obj_name; 90 Ceed delegate; 91 } ObjDelegate; 92 93 struct Ceed_private { 94 const char *resource; 95 Ceed delegate; 96 Ceed parent; 97 ObjDelegate *obj_delegates; 98 int obj_delegate_count; 99 Ceed op_fallback_ceed, op_fallback_parent; 100 const char *op_fallback_resource; 101 int (*Error)(Ceed, const char *, int, const char *, int, const char *, 102 va_list *); 103 int (*GetPreferredMemType)(CeedMemType *); 104 int (*Destroy)(Ceed); 105 int (*VectorCreate)(CeedInt, CeedVector); 106 int (*ElemRestrictionCreate)(CeedMemType, CeedCopyMode, 107 const CeedInt *, CeedElemRestriction); 108 int (*ElemRestrictionCreateBlocked)(CeedMemType, CeedCopyMode, 109 const CeedInt *, CeedElemRestriction); 110 int (*BasisCreateTensorH1)(CeedInt, CeedInt, CeedInt, const CeedScalar *, 111 const CeedScalar *, const CeedScalar *, 112 const CeedScalar *, CeedBasis); 113 int (*BasisCreateH1)(CeedElemTopology, CeedInt, CeedInt, CeedInt, 114 const CeedScalar *, 115 const CeedScalar *, const CeedScalar *, 116 const CeedScalar *, CeedBasis); 117 int (*TensorContractCreate)(CeedBasis, CeedTensorContract); 118 int (*QFunctionCreate)(CeedQFunction); 119 int (*QFunctionContextCreate)(CeedQFunctionContext); 120 int (*OperatorCreate)(CeedOperator); 121 int (*CompositeOperatorCreate)(CeedOperator); 122 int ref_count; 123 void *data; 124 bool is_debug; 125 bool is_deterministic; 126 char err_msg[CEED_MAX_RESOURCE_LEN]; 127 FOffset *f_offsets; 128 }; 129 130 struct CeedVector_private { 131 Ceed ceed; 132 int (*HasValidArray)(CeedVector, bool *); 133 int (*HasBorrowedArrayOfType)(CeedVector, CeedMemType, bool *); 134 int (*SetArray)(CeedVector, CeedMemType, CeedCopyMode, CeedScalar *); 135 int (*SetValue)(CeedVector, CeedScalar); 136 int (*SyncArray)(CeedVector, CeedMemType); 137 int (*TakeArray)(CeedVector, CeedMemType, CeedScalar **); 138 int (*GetArray)(CeedVector, CeedMemType, CeedScalar **); 139 int (*GetArrayRead)(CeedVector, CeedMemType, const CeedScalar **); 140 int (*GetArrayWrite)(CeedVector, CeedMemType, CeedScalar **); 141 int (*RestoreArray)(CeedVector); 142 int (*RestoreArrayRead)(CeedVector); 143 int (*Norm)(CeedVector, CeedNormType, CeedScalar *); 144 int (*Scale)(CeedVector, CeedScalar); 145 int (*AXPY)(CeedVector, CeedScalar, CeedVector); 146 int (*PointwiseMult)(CeedVector, CeedVector, CeedVector); 147 int (*Reciprocal)(CeedVector); 148 int (*Destroy)(CeedVector); 149 int ref_count; 150 CeedInt length; 151 uint64_t state; 152 uint64_t num_readers; 153 void *data; 154 }; 155 156 struct CeedElemRestriction_private { 157 Ceed ceed; 158 int (*Apply)(CeedElemRestriction, CeedTransposeMode, CeedVector, CeedVector, 159 CeedRequest *); 160 int (*ApplyBlock)(CeedElemRestriction, CeedInt, CeedTransposeMode, CeedVector, 161 CeedVector, CeedRequest *); 162 int (*GetOffsets)(CeedElemRestriction, CeedMemType, const CeedInt **); 163 int (*Destroy)(CeedElemRestriction); 164 int ref_count; 165 CeedInt num_elem; /* number of elements */ 166 CeedInt elem_size; /* number of nodes per element */ 167 CeedInt num_comp; /* number of components */ 168 CeedInt comp_stride; /* Component stride for L-vector ordering */ 169 CeedInt l_size; /* size of the L-vector, can be used for checking 170 for correct vector sizes */ 171 CeedInt blk_size; /* number of elements in a batch */ 172 CeedInt num_blk; /* number of blocks of elements */ 173 CeedInt *strides; /* strides between [nodes, components, elements] */ 174 CeedInt layout[3]; /* E-vector layout [nodes, components, elements] */ 175 uint64_t num_readers; /* number of instances of offset read only access */ 176 void *data; /* place for the backend to store any data */ 177 }; 178 179 struct CeedBasis_private { 180 Ceed ceed; 181 int (*Apply)(CeedBasis, CeedInt, CeedTransposeMode, CeedEvalMode, 182 CeedVector, CeedVector); 183 int (*Destroy)(CeedBasis); 184 int ref_count; 185 bool tensor_basis; /* flag for tensor basis */ 186 CeedInt dim; /* topological dimension */ 187 CeedElemTopology topo; /* element topology */ 188 CeedInt num_comp; /* number of field components (1 for scalar fields) */ 189 CeedInt P_1d; /* number of nodes in one dimension */ 190 CeedInt Q_1d; /* number of quadrature points in one dimension */ 191 CeedInt P; /* total number of nodes */ 192 CeedInt Q; /* total number of quadrature points */ 193 CeedScalar *q_ref_1d; /* Array of length Q1d holding the locations of 194 quadrature points on the 1D reference 195 element [-1, 1] */ 196 CeedScalar 197 *q_weight_1d; /* array of length Q1d holding the quadrature weights on 198 the reference element */ 199 CeedScalar 200 *interp; /* row-major matrix of shape [Q, P] expressing the values of 201 nodal basis functions at quadrature points */ 202 CeedScalar 203 *interp_1d; /* row-major matrix of shape [Q1d, P1d] expressing the values of 204 nodal basis functions at quadrature points */ 205 CeedScalar 206 *grad; /* row-major matrix of shape [dim*Q, P] matrix expressing 207 derivatives of nodal basis functions at quadrature points */ 208 CeedScalar 209 *grad_1d; /* row-major matrix of shape [Q1d, P1d] matrix expressing 210 derivatives of nodal basis functions at quadrature points */ 211 CeedTensorContract contract; /* tensor contraction object */ 212 void *data; /* place for the backend to store any data */ 213 }; 214 215 struct CeedTensorContract_private { 216 Ceed ceed; 217 int (*Apply)(CeedTensorContract, CeedInt, CeedInt, CeedInt, CeedInt, 218 const CeedScalar *restrict, CeedTransposeMode, const CeedInt, 219 const CeedScalar *restrict, CeedScalar *restrict); 220 int (*Destroy)(CeedTensorContract); 221 int ref_count; 222 void *data; 223 }; 224 225 struct CeedQFunctionField_private { 226 const char *field_name; 227 CeedInt size; 228 CeedEvalMode eval_mode; 229 }; 230 231 struct CeedQFunction_private { 232 Ceed ceed; 233 int (*Apply)(CeedQFunction, CeedInt, CeedVector *, CeedVector *); 234 int (*SetCUDAUserFunction)(CeedQFunction, void *); 235 int (*SetHIPUserFunction)(CeedQFunction, void *); 236 int (*Destroy)(CeedQFunction); 237 int ref_count; 238 CeedInt vec_length; /* Number of quadrature points must be padded to a 239 multiple of vec_length */ 240 CeedQFunctionField *input_fields; 241 CeedQFunctionField *output_fields; 242 CeedInt num_input_fields, num_output_fields; 243 CeedQFunctionUser function; 244 const char *source_path; 245 const char *kernel_name; 246 const char *gallery_name; 247 bool is_gallery; 248 bool is_identity; 249 bool is_fortran; 250 bool is_immutable; 251 CeedQFunctionContext ctx; /* user context for function */ 252 void *data; /* place for the backend to store any data */ 253 }; 254 255 struct CeedQFunctionContext_private { 256 Ceed ceed; 257 int ref_count; 258 int (*HasValidData)(CeedQFunctionContext, bool *); 259 int (*HasBorrowedDataOfType)(CeedQFunctionContext, CeedMemType, bool *); 260 int (*SetData)(CeedQFunctionContext, CeedMemType, CeedCopyMode, void *); 261 int (*TakeData)(CeedQFunctionContext, CeedMemType, void *); 262 int (*GetData)(CeedQFunctionContext, CeedMemType, void *); 263 int (*RestoreData)(CeedQFunctionContext); 264 int (*Destroy)(CeedQFunctionContext); 265 CeedInt num_fields; 266 CeedInt max_fields; 267 CeedQFunctionContextFieldDescription *field_descriptions; 268 uint64_t state; 269 size_t ctx_size; 270 void *data; 271 }; 272 273 /// Struct to handle the context data to use the Fortran QFunction stub 274 /// @ingroup CeedQFunction 275 struct CeedFortranContext_private { 276 CeedQFunctionContext innerctx; 277 void (*f)(void *ctx, int *nq, 278 const CeedScalar *u,const CeedScalar *u1, 279 const CeedScalar *u2,const CeedScalar *u3, 280 const CeedScalar *u4,const CeedScalar *u5, 281 const CeedScalar *u6,const CeedScalar *u7, 282 const CeedScalar *u8,const CeedScalar *u9, 283 const CeedScalar *u10,const CeedScalar *u11, 284 const CeedScalar *u12,const CeedScalar *u13, 285 const CeedScalar *u14,const CeedScalar *u15, 286 CeedScalar *v,CeedScalar *v1,CeedScalar *v2, 287 CeedScalar *v3,CeedScalar *v4,CeedScalar *v5, 288 CeedScalar *v6,CeedScalar *v7,CeedScalar *v8, 289 CeedScalar *v9, CeedScalar *v10,CeedScalar *v11, 290 CeedScalar *v12,CeedScalar *v13,CeedScalar *v14, 291 CeedScalar *v15, int *err); 292 }; 293 typedef struct CeedFortranContext_private *CeedFortranContext; 294 295 struct CeedOperatorField_private { 296 CeedElemRestriction elem_restr; /* Restriction from L-vector */ 297 CeedBasis basis; /* Basis or CEED_BASIS_COLLOCATED for 298 collocated fields */ 299 CeedVector vec; /* State vector for passive fields or 300 CEED_VECTOR_NONE for no vector */ 301 const char *field_name; /* matching QFunction field name */ 302 }; 303 304 struct CeedOperator_private { 305 Ceed ceed; 306 CeedOperator op_fallback; 307 CeedQFunction qf_fallback; 308 int ref_count; 309 int (*LinearAssembleQFunction)(CeedOperator, CeedVector *, 310 CeedElemRestriction *, CeedRequest *); 311 int (*LinearAssembleQFunctionUpdate)(CeedOperator, CeedVector, 312 CeedElemRestriction, CeedRequest *); 313 int (*LinearAssembleDiagonal)(CeedOperator, CeedVector, CeedRequest *); 314 int (*LinearAssembleAddDiagonal)(CeedOperator, CeedVector, CeedRequest *); 315 int (*LinearAssemblePointBlockDiagonal)(CeedOperator, CeedVector, 316 CeedRequest *); 317 int (*LinearAssembleAddPointBlockDiagonal)(CeedOperator, CeedVector, 318 CeedRequest *); 319 int (*LinearAssembleSymbolic)(CeedOperator, CeedInt *, CeedInt **, CeedInt **); 320 int (*LinearAssemble)(CeedOperator, CeedVector); 321 int (*CreateFDMElementInverse)(CeedOperator, CeedOperator *, CeedRequest *); 322 int (*Apply)(CeedOperator, CeedVector, CeedVector, CeedRequest *); 323 int (*ApplyComposite)(CeedOperator, CeedVector, CeedVector, CeedRequest *); 324 int (*ApplyAdd)(CeedOperator, CeedVector, CeedVector, CeedRequest *); 325 int (*ApplyAddComposite)(CeedOperator, CeedVector, CeedVector, CeedRequest *); 326 int (*ApplyJacobian)(CeedOperator, CeedVector, CeedVector, CeedVector, 327 CeedVector, CeedRequest *); 328 int (*Destroy)(CeedOperator); 329 CeedOperatorField *input_fields; 330 CeedOperatorField *output_fields; 331 CeedInt num_elem; /* Number of elements */ 332 CeedInt num_qpts; /* Number of quadrature points over all elements */ 333 CeedInt num_fields; /* Number of fields that have been set */ 334 CeedQFunction qf; 335 CeedQFunction dqf; 336 CeedQFunction dqfT; 337 bool is_immutable; 338 bool is_interface_setup; 339 bool is_backend_setup; 340 bool is_composite; 341 bool has_restriction; 342 bool has_qf_assembled; 343 CeedVector qf_assembled; 344 CeedElemRestriction qf_assembled_rstr; 345 CeedOperator *sub_operators; 346 CeedInt num_suboperators; 347 void *data; 348 }; 349 350 #endif 351