[ARM] Add source mode to coprocessor pattern SETs
[official-gcc.git] / gcc / omp-general.c
blob3f9aec8d6a7dc9329ab823098e5ca954a9a3278f
1 /* General types and functions that are uselful for processing of OpenMP,
2 OpenACC and similar directivers at various stages of compilation.
4 Copyright (C) 2005-2017 Free Software Foundation, Inc.
6 This file is part of GCC.
8 GCC is free software; you can redistribute it and/or modify it under
9 the terms of the GNU General Public License as published by the Free
10 Software Foundation; either version 3, or (at your option) any later
11 version.
13 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
14 WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
16 for more details.
18 You should have received a copy of the GNU General Public License
19 along with GCC; see the file COPYING3. If not see
20 <http://www.gnu.org/licenses/>. */
22 /* Find an OMP clause of type KIND within CLAUSES. */
24 #include "config.h"
25 #include "system.h"
26 #include "coretypes.h"
27 #include "backend.h"
28 #include "target.h"
29 #include "tree.h"
30 #include "gimple.h"
31 #include "ssa.h"
32 #include "diagnostic-core.h"
33 #include "fold-const.h"
34 #include "langhooks.h"
35 #include "omp-general.h"
38 tree
39 omp_find_clause (tree clauses, enum omp_clause_code kind)
41 for (; clauses ; clauses = OMP_CLAUSE_CHAIN (clauses))
42 if (OMP_CLAUSE_CODE (clauses) == kind)
43 return clauses;
45 return NULL_TREE;
48 /* Return true if DECL is a reference type. */
50 bool
51 omp_is_reference (tree decl)
53 return lang_hooks.decls.omp_privatize_by_reference (decl);
56 /* Adjust *COND_CODE and *N2 so that the former is either LT_EXPR or
57 GT_EXPR. */
59 void
60 omp_adjust_for_condition (location_t loc, enum tree_code *cond_code, tree *n2)
62 switch (*cond_code)
64 case LT_EXPR:
65 case GT_EXPR:
66 case NE_EXPR:
67 break;
68 case LE_EXPR:
69 if (POINTER_TYPE_P (TREE_TYPE (*n2)))
70 *n2 = fold_build_pointer_plus_hwi_loc (loc, *n2, 1);
71 else
72 *n2 = fold_build2_loc (loc, PLUS_EXPR, TREE_TYPE (*n2), *n2,
73 build_int_cst (TREE_TYPE (*n2), 1));
74 *cond_code = LT_EXPR;
75 break;
76 case GE_EXPR:
77 if (POINTER_TYPE_P (TREE_TYPE (*n2)))
78 *n2 = fold_build_pointer_plus_hwi_loc (loc, *n2, -1);
79 else
80 *n2 = fold_build2_loc (loc, MINUS_EXPR, TREE_TYPE (*n2), *n2,
81 build_int_cst (TREE_TYPE (*n2), 1));
82 *cond_code = GT_EXPR;
83 break;
84 default:
85 gcc_unreachable ();
89 /* Return the looping step from INCR, extracted from the step of a gimple omp
90 for statement. */
92 tree
93 omp_get_for_step_from_incr (location_t loc, tree incr)
95 tree step;
96 switch (TREE_CODE (incr))
98 case PLUS_EXPR:
99 step = TREE_OPERAND (incr, 1);
100 break;
101 case POINTER_PLUS_EXPR:
102 step = fold_convert (ssizetype, TREE_OPERAND (incr, 1));
103 break;
104 case MINUS_EXPR:
105 step = TREE_OPERAND (incr, 1);
106 step = fold_build1_loc (loc, NEGATE_EXPR, TREE_TYPE (step), step);
107 break;
108 default:
109 gcc_unreachable ();
111 return step;
114 /* Extract the header elements of parallel loop FOR_STMT and store
115 them into *FD. */
117 void
118 omp_extract_for_data (gomp_for *for_stmt, struct omp_for_data *fd,
119 struct omp_for_data_loop *loops)
121 tree t, var, *collapse_iter, *collapse_count;
122 tree count = NULL_TREE, iter_type = long_integer_type_node;
123 struct omp_for_data_loop *loop;
124 int i;
125 struct omp_for_data_loop dummy_loop;
126 location_t loc = gimple_location (for_stmt);
127 bool simd = gimple_omp_for_kind (for_stmt) & GF_OMP_FOR_SIMD;
128 bool distribute = gimple_omp_for_kind (for_stmt)
129 == GF_OMP_FOR_KIND_DISTRIBUTE;
130 bool taskloop = gimple_omp_for_kind (for_stmt)
131 == GF_OMP_FOR_KIND_TASKLOOP;
132 tree iterv, countv;
134 fd->for_stmt = for_stmt;
135 fd->pre = NULL;
136 fd->have_nowait = distribute || simd;
137 fd->have_ordered = false;
138 fd->tiling = NULL_TREE;
139 fd->collapse = 1;
140 fd->ordered = 0;
141 fd->sched_kind = OMP_CLAUSE_SCHEDULE_STATIC;
142 fd->sched_modifiers = 0;
143 fd->chunk_size = NULL_TREE;
144 fd->simd_schedule = false;
145 if (gimple_omp_for_kind (fd->for_stmt) == GF_OMP_FOR_KIND_CILKFOR)
146 fd->sched_kind = OMP_CLAUSE_SCHEDULE_CILKFOR;
147 collapse_iter = NULL;
148 collapse_count = NULL;
150 for (t = gimple_omp_for_clauses (for_stmt); t ; t = OMP_CLAUSE_CHAIN (t))
151 switch (OMP_CLAUSE_CODE (t))
153 case OMP_CLAUSE_NOWAIT:
154 fd->have_nowait = true;
155 break;
156 case OMP_CLAUSE_ORDERED:
157 fd->have_ordered = true;
158 if (OMP_CLAUSE_ORDERED_EXPR (t))
159 fd->ordered = tree_to_shwi (OMP_CLAUSE_ORDERED_EXPR (t));
160 break;
161 case OMP_CLAUSE_SCHEDULE:
162 gcc_assert (!distribute && !taskloop);
163 fd->sched_kind
164 = (enum omp_clause_schedule_kind)
165 (OMP_CLAUSE_SCHEDULE_KIND (t) & OMP_CLAUSE_SCHEDULE_MASK);
166 fd->sched_modifiers = (OMP_CLAUSE_SCHEDULE_KIND (t)
167 & ~OMP_CLAUSE_SCHEDULE_MASK);
168 fd->chunk_size = OMP_CLAUSE_SCHEDULE_CHUNK_EXPR (t);
169 fd->simd_schedule = OMP_CLAUSE_SCHEDULE_SIMD (t);
170 break;
171 case OMP_CLAUSE_DIST_SCHEDULE:
172 gcc_assert (distribute);
173 fd->chunk_size = OMP_CLAUSE_DIST_SCHEDULE_CHUNK_EXPR (t);
174 break;
175 case OMP_CLAUSE_COLLAPSE:
176 fd->collapse = tree_to_shwi (OMP_CLAUSE_COLLAPSE_EXPR (t));
177 if (fd->collapse > 1)
179 collapse_iter = &OMP_CLAUSE_COLLAPSE_ITERVAR (t);
180 collapse_count = &OMP_CLAUSE_COLLAPSE_COUNT (t);
182 break;
183 case OMP_CLAUSE_TILE:
184 fd->tiling = OMP_CLAUSE_TILE_LIST (t);
185 fd->collapse = list_length (fd->tiling);
186 gcc_assert (fd->collapse);
187 collapse_iter = &OMP_CLAUSE_TILE_ITERVAR (t);
188 collapse_count = &OMP_CLAUSE_TILE_COUNT (t);
189 break;
190 default:
191 break;
194 if (fd->collapse > 1 || fd->tiling)
195 fd->loops = loops;
196 else
197 fd->loops = &fd->loop;
199 if (fd->ordered && fd->collapse == 1 && loops != NULL)
201 fd->loops = loops;
202 iterv = NULL_TREE;
203 countv = NULL_TREE;
204 collapse_iter = &iterv;
205 collapse_count = &countv;
208 /* FIXME: for now map schedule(auto) to schedule(static).
209 There should be analysis to determine whether all iterations
210 are approximately the same amount of work (then schedule(static)
211 is best) or if it varies (then schedule(dynamic,N) is better). */
212 if (fd->sched_kind == OMP_CLAUSE_SCHEDULE_AUTO)
214 fd->sched_kind = OMP_CLAUSE_SCHEDULE_STATIC;
215 gcc_assert (fd->chunk_size == NULL);
217 gcc_assert ((fd->collapse == 1 && !fd->tiling) || collapse_iter != NULL);
218 if (taskloop)
219 fd->sched_kind = OMP_CLAUSE_SCHEDULE_RUNTIME;
220 if (fd->sched_kind == OMP_CLAUSE_SCHEDULE_RUNTIME)
221 gcc_assert (fd->chunk_size == NULL);
222 else if (fd->chunk_size == NULL)
224 /* We only need to compute a default chunk size for ordered
225 static loops and dynamic loops. */
226 if (fd->sched_kind != OMP_CLAUSE_SCHEDULE_STATIC
227 || fd->have_ordered)
228 fd->chunk_size = (fd->sched_kind == OMP_CLAUSE_SCHEDULE_STATIC)
229 ? integer_zero_node : integer_one_node;
232 int cnt = fd->ordered ? fd->ordered : fd->collapse;
233 for (i = 0; i < cnt; i++)
235 if (i == 0
236 && fd->collapse == 1
237 && !fd->tiling
238 && (fd->ordered == 0 || loops == NULL))
239 loop = &fd->loop;
240 else if (loops != NULL)
241 loop = loops + i;
242 else
243 loop = &dummy_loop;
245 loop->v = gimple_omp_for_index (for_stmt, i);
246 gcc_assert (SSA_VAR_P (loop->v));
247 gcc_assert (TREE_CODE (TREE_TYPE (loop->v)) == INTEGER_TYPE
248 || TREE_CODE (TREE_TYPE (loop->v)) == POINTER_TYPE);
249 var = TREE_CODE (loop->v) == SSA_NAME ? SSA_NAME_VAR (loop->v) : loop->v;
250 loop->n1 = gimple_omp_for_initial (for_stmt, i);
252 loop->cond_code = gimple_omp_for_cond (for_stmt, i);
253 loop->n2 = gimple_omp_for_final (for_stmt, i);
254 gcc_assert (loop->cond_code != NE_EXPR
255 || gimple_omp_for_kind (for_stmt) == GF_OMP_FOR_KIND_CILKSIMD
256 || gimple_omp_for_kind (for_stmt) == GF_OMP_FOR_KIND_CILKFOR);
257 omp_adjust_for_condition (loc, &loop->cond_code, &loop->n2);
259 t = gimple_omp_for_incr (for_stmt, i);
260 gcc_assert (TREE_OPERAND (t, 0) == var);
261 loop->step = omp_get_for_step_from_incr (loc, t);
263 if (simd
264 || (fd->sched_kind == OMP_CLAUSE_SCHEDULE_STATIC
265 && !fd->have_ordered))
267 if (fd->collapse == 1 && !fd->tiling)
268 iter_type = TREE_TYPE (loop->v);
269 else if (i == 0
270 || TYPE_PRECISION (iter_type)
271 < TYPE_PRECISION (TREE_TYPE (loop->v)))
272 iter_type
273 = build_nonstandard_integer_type
274 (TYPE_PRECISION (TREE_TYPE (loop->v)), 1);
276 else if (iter_type != long_long_unsigned_type_node)
278 if (POINTER_TYPE_P (TREE_TYPE (loop->v)))
279 iter_type = long_long_unsigned_type_node;
280 else if (TYPE_UNSIGNED (TREE_TYPE (loop->v))
281 && TYPE_PRECISION (TREE_TYPE (loop->v))
282 >= TYPE_PRECISION (iter_type))
284 tree n;
286 if (loop->cond_code == LT_EXPR)
287 n = fold_build2_loc (loc,
288 PLUS_EXPR, TREE_TYPE (loop->v),
289 loop->n2, loop->step);
290 else
291 n = loop->n1;
292 if (TREE_CODE (n) != INTEGER_CST
293 || tree_int_cst_lt (TYPE_MAX_VALUE (iter_type), n))
294 iter_type = long_long_unsigned_type_node;
296 else if (TYPE_PRECISION (TREE_TYPE (loop->v))
297 > TYPE_PRECISION (iter_type))
299 tree n1, n2;
301 if (loop->cond_code == LT_EXPR)
303 n1 = loop->n1;
304 n2 = fold_build2_loc (loc,
305 PLUS_EXPR, TREE_TYPE (loop->v),
306 loop->n2, loop->step);
308 else
310 n1 = fold_build2_loc (loc,
311 MINUS_EXPR, TREE_TYPE (loop->v),
312 loop->n2, loop->step);
313 n2 = loop->n1;
315 if (TREE_CODE (n1) != INTEGER_CST
316 || TREE_CODE (n2) != INTEGER_CST
317 || !tree_int_cst_lt (TYPE_MIN_VALUE (iter_type), n1)
318 || !tree_int_cst_lt (n2, TYPE_MAX_VALUE (iter_type)))
319 iter_type = long_long_unsigned_type_node;
323 if (i >= fd->collapse)
324 continue;
326 if (collapse_count && *collapse_count == NULL)
328 t = fold_binary (loop->cond_code, boolean_type_node,
329 fold_convert (TREE_TYPE (loop->v), loop->n1),
330 fold_convert (TREE_TYPE (loop->v), loop->n2));
331 if (t && integer_zerop (t))
332 count = build_zero_cst (long_long_unsigned_type_node);
333 else if ((i == 0 || count != NULL_TREE)
334 && TREE_CODE (TREE_TYPE (loop->v)) == INTEGER_TYPE
335 && TREE_CONSTANT (loop->n1)
336 && TREE_CONSTANT (loop->n2)
337 && TREE_CODE (loop->step) == INTEGER_CST)
339 tree itype = TREE_TYPE (loop->v);
341 if (POINTER_TYPE_P (itype))
342 itype = signed_type_for (itype);
343 t = build_int_cst (itype, (loop->cond_code == LT_EXPR ? -1 : 1));
344 t = fold_build2_loc (loc,
345 PLUS_EXPR, itype,
346 fold_convert_loc (loc, itype, loop->step), t);
347 t = fold_build2_loc (loc, PLUS_EXPR, itype, t,
348 fold_convert_loc (loc, itype, loop->n2));
349 t = fold_build2_loc (loc, MINUS_EXPR, itype, t,
350 fold_convert_loc (loc, itype, loop->n1));
351 if (TYPE_UNSIGNED (itype) && loop->cond_code == GT_EXPR)
352 t = fold_build2_loc (loc, TRUNC_DIV_EXPR, itype,
353 fold_build1_loc (loc, NEGATE_EXPR, itype, t),
354 fold_build1_loc (loc, NEGATE_EXPR, itype,
355 fold_convert_loc (loc, itype,
356 loop->step)));
357 else
358 t = fold_build2_loc (loc, TRUNC_DIV_EXPR, itype, t,
359 fold_convert_loc (loc, itype, loop->step));
360 t = fold_convert_loc (loc, long_long_unsigned_type_node, t);
361 if (count != NULL_TREE)
362 count = fold_build2_loc (loc,
363 MULT_EXPR, long_long_unsigned_type_node,
364 count, t);
365 else
366 count = t;
367 if (TREE_CODE (count) != INTEGER_CST)
368 count = NULL_TREE;
370 else if (count && !integer_zerop (count))
371 count = NULL_TREE;
375 if (count
376 && !simd
377 && (fd->sched_kind != OMP_CLAUSE_SCHEDULE_STATIC
378 || fd->have_ordered))
380 if (!tree_int_cst_lt (count, TYPE_MAX_VALUE (long_integer_type_node)))
381 iter_type = long_long_unsigned_type_node;
382 else
383 iter_type = long_integer_type_node;
385 else if (collapse_iter && *collapse_iter != NULL)
386 iter_type = TREE_TYPE (*collapse_iter);
387 fd->iter_type = iter_type;
388 if (collapse_iter && *collapse_iter == NULL)
389 *collapse_iter = create_tmp_var (iter_type, ".iter");
390 if (collapse_count && *collapse_count == NULL)
392 if (count)
393 *collapse_count = fold_convert_loc (loc, iter_type, count);
394 else
395 *collapse_count = create_tmp_var (iter_type, ".count");
398 if (fd->collapse > 1 || fd->tiling || (fd->ordered && loops))
400 fd->loop.v = *collapse_iter;
401 fd->loop.n1 = build_int_cst (TREE_TYPE (fd->loop.v), 0);
402 fd->loop.n2 = *collapse_count;
403 fd->loop.step = build_int_cst (TREE_TYPE (fd->loop.v), 1);
404 fd->loop.cond_code = LT_EXPR;
406 else if (loops)
407 loops[0] = fd->loop;
410 /* Build a call to GOMP_barrier. */
412 gimple *
413 omp_build_barrier (tree lhs)
415 tree fndecl = builtin_decl_explicit (lhs ? BUILT_IN_GOMP_BARRIER_CANCEL
416 : BUILT_IN_GOMP_BARRIER);
417 gcall *g = gimple_build_call (fndecl, 0);
418 if (lhs)
419 gimple_call_set_lhs (g, lhs);
420 return g;
423 /* Return maximum possible vectorization factor for the target. */
426 omp_max_vf (void)
428 if (!optimize
429 || optimize_debug
430 || !flag_tree_loop_optimize
431 || (!flag_tree_loop_vectorize
432 && (global_options_set.x_flag_tree_loop_vectorize
433 || global_options_set.x_flag_tree_vectorize)))
434 return 1;
436 int vf = 1;
437 int vs = targetm.vectorize.autovectorize_vector_sizes ();
438 if (vs)
439 vf = 1 << floor_log2 (vs);
440 else
442 machine_mode vqimode = targetm.vectorize.preferred_simd_mode (QImode);
443 if (GET_MODE_CLASS (vqimode) == MODE_VECTOR_INT)
444 vf = GET_MODE_NUNITS (vqimode);
446 return vf;
449 /* Return maximum SIMT width if offloading may target SIMT hardware. */
452 omp_max_simt_vf (void)
454 if (!optimize)
455 return 0;
456 if (ENABLE_OFFLOADING)
457 for (const char *c = getenv ("OFFLOAD_TARGET_NAMES"); c;)
459 if (!strncmp (c, "nvptx", strlen ("nvptx")))
460 return 32;
461 else if ((c = strchr (c, ',')))
462 c++;
464 return 0;
467 /* Encode an oacc launch argument. This matches the GOMP_LAUNCH_PACK
468 macro on gomp-constants.h. We do not check for overflow. */
470 tree
471 oacc_launch_pack (unsigned code, tree device, unsigned op)
473 tree res;
475 res = build_int_cst (unsigned_type_node, GOMP_LAUNCH_PACK (code, 0, op));
476 if (device)
478 device = fold_build2 (LSHIFT_EXPR, unsigned_type_node,
479 device, build_int_cst (unsigned_type_node,
480 GOMP_LAUNCH_DEVICE_SHIFT));
481 res = fold_build2 (BIT_IOR_EXPR, unsigned_type_node, res, device);
483 return res;
486 /* FIXME: What is the following comment for? */
487 /* Look for compute grid dimension clauses and convert to an attribute
488 attached to FN. This permits the target-side code to (a) massage
489 the dimensions, (b) emit that data and (c) optimize. Non-constant
490 dimensions are pushed onto ARGS.
492 The attribute value is a TREE_LIST. A set of dimensions is
493 represented as a list of INTEGER_CST. Those that are runtime
494 exprs are represented as an INTEGER_CST of zero.
496 TODO: Normally the attribute will just contain a single such list. If
497 however it contains a list of lists, this will represent the use of
498 device_type. Each member of the outer list is an assoc list of
499 dimensions, keyed by the device type. The first entry will be the
500 default. Well, that's the plan. */
502 /* Replace any existing oacc fn attribute with updated dimensions. */
504 void
505 oacc_replace_fn_attrib (tree fn, tree dims)
507 tree ident = get_identifier (OACC_FN_ATTRIB);
508 tree attribs = DECL_ATTRIBUTES (fn);
510 /* If we happen to be present as the first attrib, drop it. */
511 if (attribs && TREE_PURPOSE (attribs) == ident)
512 attribs = TREE_CHAIN (attribs);
513 DECL_ATTRIBUTES (fn) = tree_cons (ident, dims, attribs);
516 /* Scan CLAUSES for launch dimensions and attach them to the oacc
517 function attribute. Push any that are non-constant onto the ARGS
518 list, along with an appropriate GOMP_LAUNCH_DIM tag. IS_KERNEL is
519 true, if these are for a kernels region offload function. */
521 void
522 oacc_set_fn_attrib (tree fn, tree clauses, bool is_kernel, vec<tree> *args)
524 /* Must match GOMP_DIM ordering. */
525 static const omp_clause_code ids[]
526 = { OMP_CLAUSE_NUM_GANGS, OMP_CLAUSE_NUM_WORKERS,
527 OMP_CLAUSE_VECTOR_LENGTH };
528 unsigned ix;
529 tree dims[GOMP_DIM_MAX];
531 tree attr = NULL_TREE;
532 unsigned non_const = 0;
534 for (ix = GOMP_DIM_MAX; ix--;)
536 tree clause = omp_find_clause (clauses, ids[ix]);
537 tree dim = NULL_TREE;
539 if (clause)
540 dim = OMP_CLAUSE_EXPR (clause, ids[ix]);
541 dims[ix] = dim;
542 if (dim && TREE_CODE (dim) != INTEGER_CST)
544 dim = integer_zero_node;
545 non_const |= GOMP_DIM_MASK (ix);
547 attr = tree_cons (NULL_TREE, dim, attr);
548 /* Note kernelness with TREE_PUBLIC. */
549 if (is_kernel)
550 TREE_PUBLIC (attr) = 1;
553 oacc_replace_fn_attrib (fn, attr);
555 if (non_const)
557 /* Push a dynamic argument set. */
558 args->safe_push (oacc_launch_pack (GOMP_LAUNCH_DIM,
559 NULL_TREE, non_const));
560 for (unsigned ix = 0; ix != GOMP_DIM_MAX; ix++)
561 if (non_const & GOMP_DIM_MASK (ix))
562 args->safe_push (dims[ix]);
566 /* Process the routine's dimension clauess to generate an attribute
567 value. Issue diagnostics as appropriate. We default to SEQ
568 (OpenACC 2.5 clarifies this). All dimensions have a size of zero
569 (dynamic). TREE_PURPOSE is set to indicate whether that dimension
570 can have a loop partitioned on it. non-zero indicates
571 yes, zero indicates no. By construction once a non-zero has been
572 reached, further inner dimensions must also be non-zero. We set
573 TREE_VALUE to zero for the dimensions that may be partitioned and
574 1 for the other ones -- if a loop is (erroneously) spawned at
575 an outer level, we don't want to try and partition it. */
577 tree
578 oacc_build_routine_dims (tree clauses)
580 /* Must match GOMP_DIM ordering. */
581 static const omp_clause_code ids[]
582 = {OMP_CLAUSE_GANG, OMP_CLAUSE_WORKER, OMP_CLAUSE_VECTOR, OMP_CLAUSE_SEQ};
583 int ix;
584 int level = -1;
586 for (; clauses; clauses = OMP_CLAUSE_CHAIN (clauses))
587 for (ix = GOMP_DIM_MAX + 1; ix--;)
588 if (OMP_CLAUSE_CODE (clauses) == ids[ix])
590 if (level >= 0)
591 error_at (OMP_CLAUSE_LOCATION (clauses),
592 "multiple loop axes specified for routine");
593 level = ix;
594 break;
597 /* Default to SEQ. */
598 if (level < 0)
599 level = GOMP_DIM_MAX;
601 tree dims = NULL_TREE;
603 for (ix = GOMP_DIM_MAX; ix--;)
604 dims = tree_cons (build_int_cst (boolean_type_node, ix >= level),
605 build_int_cst (integer_type_node, ix < level), dims);
607 return dims;
610 /* Retrieve the oacc function attrib and return it. Non-oacc
611 functions will return NULL. */
613 tree
614 oacc_get_fn_attrib (tree fn)
616 return lookup_attribute (OACC_FN_ATTRIB, DECL_ATTRIBUTES (fn));
619 /* Return true if this oacc fn attrib is for a kernels offload
620 region. We use the TREE_PUBLIC flag of each dimension -- only
621 need to check the first one. */
623 bool
624 oacc_fn_attrib_kernels_p (tree attr)
626 return TREE_PUBLIC (TREE_VALUE (attr));
629 /* Extract an oacc execution dimension from FN. FN must be an
630 offloaded function or routine that has already had its execution
631 dimensions lowered to the target-specific values. */
634 oacc_get_fn_dim_size (tree fn, int axis)
636 tree attrs = oacc_get_fn_attrib (fn);
638 gcc_assert (axis < GOMP_DIM_MAX);
640 tree dims = TREE_VALUE (attrs);
641 while (axis--)
642 dims = TREE_CHAIN (dims);
644 int size = TREE_INT_CST_LOW (TREE_VALUE (dims));
646 return size;
649 /* Extract the dimension axis from an IFN_GOACC_DIM_POS or
650 IFN_GOACC_DIM_SIZE call. */
653 oacc_get_ifn_dim_arg (const gimple *stmt)
655 gcc_checking_assert (gimple_call_internal_fn (stmt) == IFN_GOACC_DIM_SIZE
656 || gimple_call_internal_fn (stmt) == IFN_GOACC_DIM_POS);
657 tree arg = gimple_call_arg (stmt, 0);
658 HOST_WIDE_INT axis = TREE_INT_CST_LOW (arg);
660 gcc_checking_assert (axis >= 0 && axis < GOMP_DIM_MAX);
661 return (int) axis;