1 // Fortran interface 2 #include <ceed.h> 3 #include <ceed-impl.h> 4 #include <ceed-backend.h> 5 #include <ceed-fortran-name.h> 6 #include <stdlib.h> 7 #include <string.h> 8 9 #define FORTRAN_REQUEST_IMMEDIATE -1 10 #define FORTRAN_REQUEST_ORDERED -2 11 #define FORTRAN_NULL -3 12 #define FORTRAN_BASIS_COLLOCATED -1 13 #define FORTRAN_VECTOR_ACTIVE -1 14 #define FORTRAN_VECTOR_NONE -2 15 16 static Ceed *Ceed_dict = NULL; 17 static int Ceed_count = 0; 18 static int Ceed_n = 0; 19 static int Ceed_count_max = 0; 20 21 // This test should actually be for the gfortran version, but we don't currently 22 // have a configure system to determine that (TODO). At present, this will use 23 // the smaller integer when run with clang+gfortran=8, for example. (That is 24 // sketchy, but will likely work for users that don't have huge character 25 // strings.) 26 #if __GNUC__ >= 8 27 typedef size_t fortran_charlen_t; 28 #else 29 typedef int fortran_charlen_t; 30 #endif 31 32 #define Splice(a, b) a ## b 33 34 // Fortran strings are generally unterminated and the length is passed as an 35 // extra argument after all the normal arguments. Some compilers (I only know 36 // of Windows) place the length argument immediately after the string parameter 37 // (TODO). 38 // 39 // We can't just NULL-terminate the string in-place because that could overwrite 40 // other strings or attempt to write to read-only memory. This macro allocates 41 // a string to hold the null-terminated version of the string that C expects. 42 #define FIX_STRING(stringname) \ 43 char Splice(stringname, _c)[1024]; \ 44 if (Splice(stringname, _len) > 1023) \ 45 CeedError(NULL, 1, "Fortran string length too long %zd", (size_t)Splice(stringname, _len)); \ 46 strncpy(Splice(stringname, _c), stringname, Splice(stringname, _len)); \ 47 Splice(stringname, _c)[Splice(stringname, _len)] = 0; \ 48 49 #define fCeedInit FORTRAN_NAME(ceedinit,CEEDINIT) 50 void fCeedInit(const char* resource, int *ceed, int *err, 51 fortran_charlen_t resource_len) { 52 FIX_STRING(resource); 53 if (Ceed_count == Ceed_count_max) { 54 Ceed_count_max += Ceed_count_max/2 + 1; 55 CeedRealloc(Ceed_count_max, &Ceed_dict); 56 } 57 58 Ceed *ceed_ = &Ceed_dict[Ceed_count]; 59 *err = CeedInit(resource_c, ceed_); 60 61 if (*err == 0) { 62 *ceed = Ceed_count++; 63 Ceed_n++; 64 } 65 } 66 67 #define fCeedDestroy FORTRAN_NAME(ceeddestroy,CEEDDESTROY) 68 void fCeedDestroy(int *ceed, int *err) { 69 *err = CeedDestroy(&Ceed_dict[*ceed]); 70 71 if (*err == 0) { 72 Ceed_n--; 73 if (Ceed_n == 0) { 74 CeedFree(&Ceed_dict); 75 Ceed_count = 0; 76 Ceed_count_max = 0; 77 } 78 } 79 } 80 81 static CeedVector *CeedVector_dict = NULL; 82 static int CeedVector_count = 0; 83 static int CeedVector_n = 0; 84 static int CeedVector_count_max = 0; 85 86 #define fCeedVectorCreate FORTRAN_NAME(ceedvectorcreate,CEEDVECTORCREATE) 87 void fCeedVectorCreate(int *ceed, int *length, int *vec, int *err) { 88 if (CeedVector_count == CeedVector_count_max) { 89 CeedVector_count_max += CeedVector_count_max/2 + 1; 90 CeedRealloc(CeedVector_count_max, &CeedVector_dict); 91 } 92 93 CeedVector* vec_ = &CeedVector_dict[CeedVector_count]; 94 *err = CeedVectorCreate(Ceed_dict[*ceed], *length, vec_); 95 96 if (*err == 0) { 97 *vec = CeedVector_count++; 98 CeedVector_n++; 99 } 100 } 101 102 #define fCeedVectorSetArray FORTRAN_NAME(ceedvectorsetarray,CEEDVECTORSETARRAY) 103 void fCeedVectorSetArray(int *vec, int *memtype, int *copymode, 104 CeedScalar *array, int *err) { 105 *err = CeedVectorSetArray(CeedVector_dict[*vec], *memtype, *copymode, array); 106 } 107 108 #define fCeedVectorSetValue FORTRAN_NAME(ceedvectorsetvalue,CEEDVECTORSETVALUE) 109 void fCeedVectorSetValue(int *vec, CeedScalar *value, int *err) { 110 *err = CeedVectorSetValue(CeedVector_dict[*vec], *value); 111 } 112 113 #define fCeedVectorGetArray FORTRAN_NAME(ceedvectorgetarray,CEEDVECTORGETARRAY) 114 void fCeedVectorGetArray(int *vec, int *memtype, CeedScalar *array, 115 int64_t *offset, 116 int *err) { 117 CeedScalar *b; 118 CeedVector vec_ = CeedVector_dict[*vec]; 119 *err = CeedVectorGetArray(vec_, *memtype, &b); 120 *offset = b - array; 121 } 122 123 #define fCeedVectorGetArrayRead \ 124 FORTRAN_NAME(ceedvectorgetarrayread,CEEDVECTORGETARRAYREAD) 125 void fCeedVectorGetArrayRead(int *vec, int *memtype, CeedScalar *array, 126 int64_t *offset, int *err) { 127 const CeedScalar *b; 128 CeedVector vec_ = CeedVector_dict[*vec]; 129 *err = CeedVectorGetArrayRead(vec_, *memtype, &b); 130 *offset = b - array; 131 } 132 133 #define fCeedVectorRestoreArray \ 134 FORTRAN_NAME(ceedvectorrestorearray,CEEDVECTORRESTOREARRAY) 135 void fCeedVectorRestoreArray(int *vec, CeedScalar *array, 136 int64_t *offset, int *err) { 137 *err = CeedVectorRestoreArray(CeedVector_dict[*vec], &array); 138 *offset = 0; 139 } 140 141 #define fCeedVectorRestoreArrayRead \ 142 FORTRAN_NAME(ceedvectorrestorearrayread,CEEDVECTORRESTOREARRAYREAD) 143 void fCeedVectorRestoreArrayRead(int *vec, const CeedScalar *array, 144 int64_t *offset, int *err) { 145 *err = CeedVectorRestoreArrayRead(CeedVector_dict[*vec], &array); 146 *offset = 0; 147 } 148 149 #define fCeedVectorView FORTRAN_NAME(ceedvectorview,CEEDVECTORVIEW) 150 void fCeedVectorView(int *vec, int *err) { 151 *err = CeedVectorView(CeedVector_dict[*vec], "%12.8f", stdout); 152 } 153 154 #define fCeedVectorDestroy FORTRAN_NAME(ceedvectordestroy,CEEDVECTORDESTROY) 155 void fCeedVectorDestroy(int *vec, int *err) { 156 *err = CeedVectorDestroy(&CeedVector_dict[*vec]); 157 158 if (*err == 0) { 159 CeedVector_n--; 160 if (CeedVector_n == 0) { 161 CeedFree(&CeedVector_dict); 162 CeedVector_count = 0; 163 CeedVector_count_max = 0; 164 } 165 } 166 } 167 168 static CeedElemRestriction *CeedElemRestriction_dict = NULL; 169 static int CeedElemRestriction_count = 0; 170 static int CeedElemRestriction_n = 0; 171 static int CeedElemRestriction_count_max = 0; 172 173 #define fCeedElemRestrictionCreate \ 174 FORTRAN_NAME(ceedelemrestrictioncreate, CEEDELEMRESTRICTIONCREATE) 175 void fCeedElemRestrictionCreate(int *ceed, int *nelements, 176 int *esize, int *ndof, int *ncomp, int *memtype, int *copymode, 177 const int *indices, int *elemrestriction, int *err) { 178 if (CeedElemRestriction_count == CeedElemRestriction_count_max) { 179 CeedElemRestriction_count_max += CeedElemRestriction_count_max/2 + 1; 180 CeedRealloc(CeedElemRestriction_count_max, &CeedElemRestriction_dict); 181 } 182 183 const int *indices_ = indices; 184 185 CeedElemRestriction *elemrestriction_ = 186 &CeedElemRestriction_dict[CeedElemRestriction_count]; 187 *err = CeedElemRestrictionCreate(Ceed_dict[*ceed], *nelements, *esize, *ndof, 188 *ncomp, 189 *memtype, *copymode, indices_, elemrestriction_); 190 191 if (*err == 0) { 192 *elemrestriction = CeedElemRestriction_count++; 193 CeedElemRestriction_n++; 194 } 195 } 196 197 #define fCeedElemRestrictionCreateIdentity \ 198 FORTRAN_NAME(ceedelemrestrictioncreateidentity, CEEDELEMRESTRICTIONCREATEIDENTITY) 199 void fCeedElemRestrictionCreateIdentity(int *ceed, int *nelements, 200 int *esize, int *ndof, int *ncomp, 201 int *elemrestriction, int *err) { 202 if (CeedElemRestriction_count == CeedElemRestriction_count_max) { 203 CeedElemRestriction_count_max += CeedElemRestriction_count_max/2 + 1; 204 CeedRealloc(CeedElemRestriction_count_max, &CeedElemRestriction_dict); 205 } 206 207 CeedElemRestriction *elemrestriction_ = 208 &CeedElemRestriction_dict[CeedElemRestriction_count]; 209 *err = CeedElemRestrictionCreateIdentity(Ceed_dict[*ceed], *nelements, *esize, 210 *ndof, 211 *ncomp, elemrestriction_); 212 213 if (*err == 0) { 214 *elemrestriction = CeedElemRestriction_count++; 215 CeedElemRestriction_n++; 216 } 217 } 218 219 #define fCeedElemRestrictionCreateBlocked \ 220 FORTRAN_NAME(ceedelemrestrictioncreateblocked,CEEDELEMRESTRICTIONCREATEBLOCKED) 221 void fCeedElemRestrictionCreateBlocked(int *ceed, int *nelements, 222 int *esize, int *blocksize, int *ndof, int *ncomp, 223 int *mtype, int *cmode, 224 int *blkindices, int *elemrestriction, int *err) { 225 226 if (CeedElemRestriction_count == CeedElemRestriction_count_max) { 227 CeedElemRestriction_count_max += CeedElemRestriction_count_max/2 + 1; 228 CeedRealloc(CeedElemRestriction_count_max, &CeedElemRestriction_dict); 229 } 230 231 CeedElemRestriction *elemrestriction_ = 232 &CeedElemRestriction_dict[CeedElemRestriction_count]; 233 *err = CeedElemRestrictionCreateBlocked(Ceed_dict[*ceed], *nelements, *esize, 234 *blocksize, *ndof, *ncomp, *mtype, *cmode, blkindices, 235 elemrestriction_); 236 237 if (*err == 0) { 238 *elemrestriction = CeedElemRestriction_count++; 239 CeedElemRestriction_n++; 240 } 241 } 242 243 static CeedRequest *CeedRequest_dict = NULL; 244 static int CeedRequest_count = 0; 245 static int CeedRequest_n = 0; 246 static int CeedRequest_count_max = 0; 247 248 #define fCeedElemRestrictionApply \ 249 FORTRAN_NAME(ceedelemrestrictionapply,CEEDELEMRESTRICTIONAPPLY) 250 void fCeedElemRestrictionApply(int *elemr, int *tmode, int *lmode, 251 int *uvec, int *ruvec, int *rqst, int *err) { 252 int createRequest = 1; 253 // Check if input is CEED_REQUEST_ORDERED(-2) or CEED_REQUEST_IMMEDIATE(-1) 254 if (*rqst == FORTRAN_REQUEST_IMMEDIATE || *rqst == FORTRAN_REQUEST_ORDERED) 255 createRequest = 0; 256 257 if (createRequest && CeedRequest_count == CeedRequest_count_max) { 258 CeedRequest_count_max += CeedRequest_count_max/2 + 1; 259 CeedRealloc(CeedRequest_count_max, &CeedRequest_dict); 260 } 261 262 CeedRequest *rqst_; 263 if (*rqst == FORTRAN_REQUEST_IMMEDIATE) rqst_ = CEED_REQUEST_IMMEDIATE; 264 else if (*rqst == FORTRAN_REQUEST_ORDERED ) rqst_ = CEED_REQUEST_ORDERED; 265 else rqst_ = &CeedRequest_dict[CeedRequest_count]; 266 267 *err = CeedElemRestrictionApply(CeedElemRestriction_dict[*elemr], *tmode, 268 *lmode, CeedVector_dict[*uvec], CeedVector_dict[*ruvec], rqst_); 269 270 if (*err == 0 && createRequest) { 271 *rqst = CeedRequest_count++; 272 CeedRequest_n++; 273 } 274 } 275 276 #define fCeedRequestWait FORTRAN_NAME(ceedrequestwait, CEEDREQUESTWAIT) 277 void fCeedRequestWait(int *rqst, int *err) { 278 // TODO Uncomment this once CeedRequestWait is implemented 279 //*err = CeedRequestWait(&CeedRequest_dict[*rqst]); 280 281 if (*err == 0) { 282 CeedRequest_n--; 283 if (CeedRequest_n == 0) { 284 CeedFree(&CeedRequest_dict); 285 CeedRequest_count = 0; 286 CeedRequest_count_max = 0; 287 } 288 } 289 } 290 291 #define fCeedElemRestrictionDestroy \ 292 FORTRAN_NAME(ceedelemrestrictiondestroy,CEEDELEMRESTRICTIONDESTROY) 293 void fCeedElemRestrictionDestroy(int *elem, int *err) { 294 *err = CeedElemRestrictionDestroy(&CeedElemRestriction_dict[*elem]); 295 296 if (*err == 0) { 297 CeedElemRestriction_n--; 298 if (CeedElemRestriction_n == 0) { 299 CeedFree(&CeedElemRestriction_dict); 300 CeedElemRestriction_count = 0; 301 CeedElemRestriction_count_max = 0; 302 } 303 } 304 } 305 306 static CeedBasis *CeedBasis_dict = NULL; 307 static int CeedBasis_count = 0; 308 static int CeedBasis_n = 0; 309 static int CeedBasis_count_max = 0; 310 311 #define fCeedBasisCreateTensorH1Lagrange \ 312 FORTRAN_NAME(ceedbasiscreatetensorh1lagrange, CEEDBASISCREATETENSORH1LAGRANGE) 313 void fCeedBasisCreateTensorH1Lagrange(int *ceed, int *dim, 314 int *ncomp, int *P, int *Q, int *quadmode, int *basis, 315 int *err) { 316 if (CeedBasis_count == CeedBasis_count_max) { 317 CeedBasis_count_max += CeedBasis_count_max/2 + 1; 318 CeedRealloc(CeedBasis_count_max, &CeedBasis_dict); 319 } 320 321 *err = CeedBasisCreateTensorH1Lagrange(Ceed_dict[*ceed], *dim, *ncomp, *P, *Q, 322 *quadmode, &CeedBasis_dict[CeedBasis_count]); 323 324 if (*err == 0) { 325 *basis = CeedBasis_count++; 326 CeedBasis_n++; 327 } 328 } 329 330 #define fCeedBasisCreateTensorH1 \ 331 FORTRAN_NAME(ceedbasiscreatetensorh1, CEEDBASISCREATETENSORH1) 332 void fCeedBasisCreateTensorH1(int *ceed, int *dim, int *ncomp, int *P1d, 333 int *Q1d, const CeedScalar *interp1d, const CeedScalar *grad1d, 334 const CeedScalar *qref1d, const CeedScalar *qweight1d, int *basis, int *err) { 335 if (CeedBasis_count == CeedBasis_count_max) { 336 CeedBasis_count_max += CeedBasis_count_max/2 + 1; 337 CeedRealloc(CeedBasis_count_max, &CeedBasis_dict); 338 } 339 340 *err = CeedBasisCreateTensorH1(Ceed_dict[*ceed], *dim, *ncomp, *P1d, *Q1d, 341 interp1d, grad1d, 342 qref1d, qweight1d, &CeedBasis_dict[CeedBasis_count]); 343 344 if (*err == 0) { 345 *basis = CeedBasis_count++; 346 CeedBasis_n++; 347 } 348 } 349 350 #define fCeedBasisCreateH1 \ 351 FORTRAN_NAME(ceedbasiscreateh1, CEEDBASISCREATEH1) 352 void fCeedBasisCreateH1(int *ceed, int *topo, int *ncomp, int *ndof, 353 int *nqpts, const CeedScalar *interp, const CeedScalar *grad, 354 const CeedScalar *qref, const CeedScalar *qweight, int *basis, int *err) { 355 if (CeedBasis_count == CeedBasis_count_max) { 356 CeedBasis_count_max += CeedBasis_count_max/2 + 1; 357 CeedRealloc(CeedBasis_count_max, &CeedBasis_dict); 358 } 359 360 *err = CeedBasisCreateH1(Ceed_dict[*ceed], *topo, *ncomp, 361 *ndof, *nqpts, interp, grad, 362 qref, qweight, &CeedBasis_dict[CeedBasis_count]); 363 364 if (*err == 0) { 365 *basis = CeedBasis_count++; 366 CeedBasis_n++; 367 } 368 } 369 370 #define fCeedBasisView FORTRAN_NAME(ceedbasisview, CEEDBASISVIEW) 371 void fCeedBasisView(int *basis, int *err) { 372 *err = CeedBasisView(CeedBasis_dict[*basis], stdout); 373 } 374 375 #define fCeedQRFactorization \ 376 FORTRAN_NAME(ceedqrfactorization, CEEDQRFACTORIZATION) 377 void fCeedQRFactorization(CeedScalar *mat, CeedScalar *tau, int *m, int *n, 378 int *err) { 379 *err = CeedQRFactorization(mat, tau, *m, *n); 380 } 381 382 #define fCeedBasisGetCollocatedGrad \ 383 FORTRAN_NAME(ceedbasisgetcollocatedgrad, CEEDBASISGETCOLLOCATEDGRAD) 384 void fCeedBasisGetCollocatedGrad(int *basis, CeedScalar *colograd1d, 385 int *err) { 386 *err = CeedBasisGetCollocatedGrad(CeedBasis_dict[*basis], colograd1d); 387 } 388 389 #define fCeedBasisApply FORTRAN_NAME(ceedbasisapply, CEEDBASISAPPLY) 390 void fCeedBasisApply(int *basis, int *nelem, int *tmode, int *emode, 391 int *u, int *v, int *err) { 392 *err = CeedBasisApply(CeedBasis_dict[*basis], *nelem, *tmode, *emode, 393 *u==FORTRAN_NULL?NULL:CeedVector_dict[*u], 394 CeedVector_dict[*v]); 395 } 396 397 #define fCeedBasisGetNumNodes \ 398 FORTRAN_NAME(ceedbasisgetnumnodes, CEEDBASISGETNUMNODES) 399 void fCeedBasisGetNumNodes(int *basis, int *P, int *err) { 400 *err = CeedBasisGetNumNodes(CeedBasis_dict[*basis], P); 401 } 402 403 #define fCeedBasisGetNumQuadraturePoints \ 404 FORTRAN_NAME(ceedbasisgetnumquadraturepoints, CEEDBASISGETNUMQUADRATUREPOINTS) 405 void fCeedBasisGetNumQuadraturePoints(int *basis, int *Q, int *err) { 406 *err = CeedBasisGetNumQuadraturePoints(CeedBasis_dict[*basis], Q); 407 } 408 409 #define fCeedBasisDestroy FORTRAN_NAME(ceedbasisdestroy,CEEDBASISDESTROY) 410 void fCeedBasisDestroy(int *basis, int *err) { 411 *err = CeedBasisDestroy(&CeedBasis_dict[*basis]); 412 413 if (*err == 0) { 414 CeedBasis_n--; 415 if (CeedBasis_n == 0) { 416 CeedFree(&CeedBasis_dict); 417 CeedBasis_count = 0; 418 CeedBasis_count_max = 0; 419 } 420 } 421 } 422 423 #define fCeedGaussQuadrature FORTRAN_NAME(ceedgaussquadrature, CEEDGAUSSQUADRATURE) 424 void fCeedGaussQuadrature(int *Q, CeedScalar *qref1d, CeedScalar *qweight1d, 425 int *err) { 426 *err = CeedGaussQuadrature(*Q, qref1d, qweight1d); 427 } 428 429 #define fCeedLobattoQuadrature \ 430 FORTRAN_NAME(ceedlobattoquadrature, CEEDLOBATTOQUADRATURE) 431 void fCeedLobattoQuadrature(int *Q, CeedScalar *qref1d, CeedScalar *qweight1d, 432 int *err) { 433 *err = CeedLobattoQuadrature(*Q, qref1d, qweight1d); 434 } 435 436 static CeedQFunction *CeedQFunction_dict = NULL; 437 static int CeedQFunction_count = 0; 438 static int CeedQFunction_n = 0; 439 static int CeedQFunction_count_max = 0; 440 441 static int CeedQFunctionFortranStub(void *ctx, int nq, 442 const CeedScalar *const *u, CeedScalar *const *v) { 443 fContext *fctx = ctx; 444 int ierr; 445 446 CeedScalar *ctx_ = (CeedScalar *) fctx->innerctx; 447 fctx->f((void*)ctx_,&nq,u[0],u[1],u[2],u[3],u[4],u[5],u[6], 448 u[7],u[8],u[9],u[10],u[11],u[12],u[13],u[14],u[15], 449 v[0],v[1],v[2],v[3],v[4],v[5],v[6],v[7],v[8],v[9], 450 v[10],v[11],v[12],v[13],v[14],v[15],&ierr); 451 return ierr; 452 } 453 454 #define fCeedQFunctionCreateInterior \ 455 FORTRAN_NAME(ceedqfunctioncreateinterior, CEEDQFUNCTIONCREATEINTERIOR) 456 void fCeedQFunctionCreateInterior(int* ceed, int* vlength, 457 void (*f)(void *ctx, int *nq, 458 const CeedScalar *u,const CeedScalar *u1, 459 const CeedScalar *u2,const CeedScalar *u3, 460 const CeedScalar *u4,const CeedScalar *u5, 461 const CeedScalar *u6,const CeedScalar *u7, 462 const CeedScalar *u8,const CeedScalar *u9, 463 const CeedScalar *u10,const CeedScalar *u11, 464 const CeedScalar *u12,const CeedScalar *u13, 465 const CeedScalar *u14,const CeedScalar *u15, 466 CeedScalar *v,CeedScalar *v1,CeedScalar *v2, 467 CeedScalar *v3,CeedScalar *v4,CeedScalar *v5, 468 CeedScalar *v6,CeedScalar *v7,CeedScalar *v8, 469 CeedScalar *v9,CeedScalar *v10,CeedScalar *v11, 470 CeedScalar *v12,CeedScalar *v13,CeedScalar *v14, 471 CeedScalar *v15,int *err), 472 const char *focca, int *qf, int *err, 473 fortran_charlen_t focca_len) { 474 FIX_STRING(focca); 475 if (CeedQFunction_count == CeedQFunction_count_max) { 476 CeedQFunction_count_max += CeedQFunction_count_max/2 + 1; 477 CeedRealloc(CeedQFunction_count_max, &CeedQFunction_dict); 478 } 479 480 CeedQFunction *qf_ = &CeedQFunction_dict[CeedQFunction_count]; 481 *err = CeedQFunctionCreateInterior(Ceed_dict[*ceed], *vlength, 482 CeedQFunctionFortranStub,focca_c, qf_); 483 484 if (*err == 0) { 485 *qf = CeedQFunction_count++; 486 CeedQFunction_n++; 487 488 } 489 490 fContext *fctx; 491 *err = CeedMalloc(1, &fctx); 492 if (*err) return; 493 fctx->f = f; fctx->innerctx = NULL; fctx->innerctxsize = 0; 494 495 *err = CeedQFunctionSetContext(*qf_, fctx, sizeof(fContext)); 496 497 (*qf_)->fortranstatus = true; 498 } 499 500 #define fCeedQFunctionAddInput \ 501 FORTRAN_NAME(ceedqfunctionaddinput,CEEDQFUNCTIONADDINPUT) 502 void fCeedQFunctionAddInput(int *qf, const char *fieldname, 503 CeedInt *ncomp, CeedEvalMode *emode, int *err, 504 fortran_charlen_t fieldname_len) { 505 FIX_STRING(fieldname); 506 CeedQFunction qf_ = CeedQFunction_dict[*qf]; 507 508 *err = CeedQFunctionAddInput(qf_, fieldname_c, *ncomp, *emode); 509 } 510 511 #define fCeedQFunctionAddOutput \ 512 FORTRAN_NAME(ceedqfunctionaddoutput,CEEDQFUNCTIONADDOUTPUT) 513 void fCeedQFunctionAddOutput(int *qf, const char *fieldname, 514 CeedInt *ncomp, CeedEvalMode *emode, int *err, 515 fortran_charlen_t fieldname_len) { 516 FIX_STRING(fieldname); 517 CeedQFunction qf_ = CeedQFunction_dict[*qf]; 518 519 *err = CeedQFunctionAddOutput(qf_, fieldname_c, *ncomp, *emode); 520 } 521 522 #define fCeedQFunctionSetContext \ 523 FORTRAN_NAME(ceedqfunctionsetcontext,CEEDQFUNCTIONSETCONTEXT) 524 void fCeedQFunctionSetContext(int *qf, CeedScalar *ctx, CeedInt *n, int *err) { 525 CeedQFunction qf_ = CeedQFunction_dict[*qf]; 526 527 fContext *fctx = qf_->ctx; 528 fctx->innerctx = ctx; 529 fctx->innerctxsize = ((size_t) *n)*sizeof(CeedScalar); 530 } 531 532 #define fCeedQFunctionApply \ 533 FORTRAN_NAME(ceedqfunctionapply,CEEDQFUNCTIONAPPLY) 534 //TODO Need Fixing, double pointer 535 void fCeedQFunctionApply(int *qf, int *Q, 536 int *u, int *u1, int *u2, int *u3, 537 int *u4, int *u5, int *u6, int *u7, 538 int *u8, int *u9, int *u10, int *u11, 539 int *u12, int *u13, int *u14, int *u15, 540 int *v, int *v1, int *v2, int *v3, 541 int *v4, int *v5, int *v6, int *v7, 542 int *v8, int *v9, int *v10, int *v11, 543 int *v12, int *v13, int *v14, int *v15, int *err) { 544 CeedQFunction qf_ = CeedQFunction_dict[*qf]; 545 CeedVector *in; 546 *err = CeedCalloc(16, &in); 547 if (*err) return; 548 in[0] = *u==FORTRAN_NULL?NULL:CeedVector_dict[*u]; 549 in[1] = *u1==FORTRAN_NULL?NULL:CeedVector_dict[*u1]; 550 in[2] = *u2==FORTRAN_NULL?NULL:CeedVector_dict[*u2]; 551 in[3] = *u3==FORTRAN_NULL?NULL:CeedVector_dict[*u3]; 552 in[4] = *u4==FORTRAN_NULL?NULL:CeedVector_dict[*u4]; 553 in[5] = *u5==FORTRAN_NULL?NULL:CeedVector_dict[*u5]; 554 in[6] = *u6==FORTRAN_NULL?NULL:CeedVector_dict[*u6]; 555 in[7] = *u7==FORTRAN_NULL?NULL:CeedVector_dict[*u7]; 556 in[8] = *u8==FORTRAN_NULL?NULL:CeedVector_dict[*u8]; 557 in[9] = *u9==FORTRAN_NULL?NULL:CeedVector_dict[*u9]; 558 in[10] = *u10==FORTRAN_NULL?NULL:CeedVector_dict[*u10]; 559 in[11] = *u11==FORTRAN_NULL?NULL:CeedVector_dict[*u11]; 560 in[12] = *u12==FORTRAN_NULL?NULL:CeedVector_dict[*u12]; 561 in[13] = *u13==FORTRAN_NULL?NULL:CeedVector_dict[*u13]; 562 in[14] = *u14==FORTRAN_NULL?NULL:CeedVector_dict[*u14]; 563 in[15] = *u15==FORTRAN_NULL?NULL:CeedVector_dict[*u15]; 564 CeedVector *out; 565 *err = CeedCalloc(16, &out); 566 if (*err) return; 567 out[0] = *v==FORTRAN_NULL?NULL:CeedVector_dict[*v]; 568 out[1] = *v1==FORTRAN_NULL?NULL:CeedVector_dict[*v1]; 569 out[2] = *v2==FORTRAN_NULL?NULL:CeedVector_dict[*v2]; 570 out[3] = *v3==FORTRAN_NULL?NULL:CeedVector_dict[*v3]; 571 out[4] = *v4==FORTRAN_NULL?NULL:CeedVector_dict[*v4]; 572 out[5] = *v5==FORTRAN_NULL?NULL:CeedVector_dict[*v5]; 573 out[6] = *v6==FORTRAN_NULL?NULL:CeedVector_dict[*v6]; 574 out[7] = *v7==FORTRAN_NULL?NULL:CeedVector_dict[*v7]; 575 out[8] = *v8==FORTRAN_NULL?NULL:CeedVector_dict[*v8]; 576 out[9] = *v9==FORTRAN_NULL?NULL:CeedVector_dict[*v9]; 577 out[10] = *v10==FORTRAN_NULL?NULL:CeedVector_dict[*v10]; 578 out[11] = *v11==FORTRAN_NULL?NULL:CeedVector_dict[*v11]; 579 out[12] = *v12==FORTRAN_NULL?NULL:CeedVector_dict[*v12]; 580 out[13] = *v13==FORTRAN_NULL?NULL:CeedVector_dict[*v13]; 581 out[14] = *v14==FORTRAN_NULL?NULL:CeedVector_dict[*v14]; 582 out[15] = *v15==FORTRAN_NULL?NULL:CeedVector_dict[*v15]; 583 *err = CeedQFunctionApply(qf_, *Q, in, out); 584 if (*err) return; 585 586 *err = CeedFree(&in); 587 if (*err) return; 588 *err = CeedFree(&out); 589 } 590 591 #define fCeedQFunctionDestroy \ 592 FORTRAN_NAME(ceedqfunctiondestroy,CEEDQFUNCTIONDESTROY) 593 void fCeedQFunctionDestroy(int *qf, int *err) { 594 *err = CeedQFunctionDestroy(&CeedQFunction_dict[*qf]); 595 596 if (*err) return; 597 CeedQFunction_n--; 598 if (CeedQFunction_n == 0) { 599 *err = CeedFree(&CeedQFunction_dict); 600 CeedQFunction_count = 0; 601 CeedQFunction_count_max = 0; 602 } 603 } 604 605 static CeedOperator *CeedOperator_dict = NULL; 606 static int CeedOperator_count = 0; 607 static int CeedOperator_n = 0; 608 static int CeedOperator_count_max = 0; 609 610 #define fCeedOperatorCreate \ 611 FORTRAN_NAME(ceedoperatorcreate, CEEDOPERATORCREATE) 612 void fCeedOperatorCreate(int* ceed, 613 int* qf, int* dqf, int* dqfT, int *op, int *err) { 614 if (CeedOperator_count == CeedOperator_count_max) 615 CeedOperator_count_max += CeedOperator_count_max/2 + 1, 616 CeedOperator_dict = 617 realloc(CeedOperator_dict, sizeof(CeedOperator)*CeedOperator_count_max); 618 619 CeedOperator *op_ = &CeedOperator_dict[CeedOperator_count]; 620 621 CeedQFunction dqf_ = NULL, dqfT_ = NULL; 622 if (*dqf != FORTRAN_NULL) dqf_ = CeedQFunction_dict[*dqf ]; 623 if (*dqfT != FORTRAN_NULL) dqfT_ = CeedQFunction_dict[*dqfT]; 624 625 *err = CeedOperatorCreate(Ceed_dict[*ceed], CeedQFunction_dict[*qf], dqf_, 626 dqfT_, op_); 627 if (*err) return; 628 *op = CeedOperator_count++; 629 CeedOperator_n++; 630 } 631 632 #define fCeedOperatorSetField \ 633 FORTRAN_NAME(ceedoperatorsetfield,CEEDOPERATORSETFIELD) 634 void fCeedOperatorSetField(int *op, const char *fieldname, 635 int *r, int *lmode, int *b, int *v, int *err, 636 fortran_charlen_t fieldname_len) { 637 FIX_STRING(fieldname); 638 CeedElemRestriction r_; 639 CeedBasis b_; 640 CeedVector v_; 641 642 CeedOperator op_ = CeedOperator_dict[*op]; 643 644 if (*r == FORTRAN_NULL) { 645 r_ = NULL; 646 } else { 647 r_ = CeedElemRestriction_dict[*r]; 648 } 649 650 if (*b == FORTRAN_NULL) { 651 b_ = NULL; 652 } else if (*b == FORTRAN_BASIS_COLLOCATED) { 653 b_ = CEED_BASIS_COLLOCATED; 654 } else { 655 b_ = CeedBasis_dict[*b]; 656 } 657 if (*v == FORTRAN_NULL) { 658 v_ = NULL; 659 } else if (*v == FORTRAN_VECTOR_ACTIVE) { 660 v_ = CEED_VECTOR_ACTIVE; 661 } else if (*v == FORTRAN_VECTOR_NONE) { 662 v_ = CEED_VECTOR_NONE; 663 } else { 664 v_ = CeedVector_dict[*v]; 665 } 666 667 *err = CeedOperatorSetField(op_, fieldname_c, r_, *lmode, b_, v_); 668 } 669 670 #define fCeedOperatorApply FORTRAN_NAME(ceedoperatorapply, CEEDOPERATORAPPLY) 671 void fCeedOperatorApply(int *op, int *ustatevec, 672 int *resvec, int *rqst, int *err) { 673 CeedVector ustatevec_ = *ustatevec == FORTRAN_NULL 674 ? NULL : CeedVector_dict[*ustatevec]; 675 CeedVector resvec_ = *resvec == FORTRAN_NULL 676 ? NULL : CeedVector_dict[*resvec]; 677 678 int createRequest = 1; 679 // Check if input is CEED_REQUEST_ORDERED(-2) or CEED_REQUEST_IMMEDIATE(-1) 680 if (*rqst == -1 || *rqst == -2) { 681 createRequest = 0; 682 } 683 684 if (createRequest && CeedRequest_count == CeedRequest_count_max) { 685 CeedRequest_count_max += CeedRequest_count_max/2 + 1; 686 CeedRealloc(CeedRequest_count_max, &CeedRequest_dict); 687 } 688 689 CeedRequest *rqst_; 690 if (*rqst == -1) rqst_ = CEED_REQUEST_IMMEDIATE; 691 else if (*rqst == -2) rqst_ = CEED_REQUEST_ORDERED; 692 else rqst_ = &CeedRequest_dict[CeedRequest_count]; 693 694 *err = CeedOperatorApply(CeedOperator_dict[*op], 695 ustatevec_, resvec_, rqst_); 696 if (*err) return; 697 if (createRequest) { 698 *rqst = CeedRequest_count++; 699 CeedRequest_n++; 700 } 701 } 702 703 #define fCeedOperatorApplyJacobian \ 704 FORTRAN_NAME(ceedoperatorapplyjacobian, CEEDOPERATORAPPLYJACOBIAN) 705 void fCeedOperatorApplyJacobian(int *op, int *qdatavec, int *ustatevec, 706 int *dustatevec, int *dresvec, int *rqst, int *err) { 707 // TODO Uncomment this when CeedOperatorApplyJacobian is implemented 708 // *err = CeedOperatorApplyJacobian(CeedOperator_dict[*op], CeedVector_dict[*qdatavec], 709 // CeedVector_dict[*ustatevec], CeedVector_dict[*dustatevec], 710 // CeedVector_dict[*dresvec], &CeedRequest_dict[*rqst]); 711 } 712 713 #define fCeedOperatorDestroy \ 714 FORTRAN_NAME(ceedoperatordestroy, CEEDOPERATORDESTROY) 715 void fCeedOperatorDestroy(int *op, int *err) { 716 *err = CeedOperatorDestroy(&CeedOperator_dict[*op]); 717 if (*err) return; 718 CeedOperator_n--; 719 if (CeedOperator_n == 0) { 720 *err = CeedFree(&CeedOperator_dict); 721 CeedOperator_count = 0; 722 CeedOperator_count_max = 0; 723 } 724 } 725