isl_output.c: print_nested_tuple: rename "local_dim" argument to "local_space"
[isl.git] / isl_union_templ.c
bloba687b14c461971c796351c1247ca1791247e38fa
1 /*
2 * Copyright 2010 INRIA Saclay
3 * Copyright 2013 Ecole Normale Superieure
5 * Use of this software is governed by the MIT license
7 * Written by Sven Verdoolaege, INRIA Saclay - Ile-de-France,
8 * Parc Club Orsay Universite, ZAC des vignes, 4 rue Jacques Monod,
9 * 91893 Orsay, France
10 * and Ecole Normale Superieure, 45 rue d'Ulm, 75230 Paris, France
13 __isl_give UNION *FN(UNION,cow)(__isl_take UNION *u);
15 isl_ctx *FN(UNION,get_ctx)(__isl_keep UNION *u)
17 return u ? u->space->ctx : NULL;
20 /* Return the space of "u".
22 static __isl_keep isl_space *FN(UNION,peek_space)(__isl_keep UNION *u)
24 if (!u)
25 return NULL;
26 return u->space;
29 /* Return a copy of the space of "u".
31 __isl_give isl_space *FN(UNION,get_space)(__isl_keep UNION *u)
33 return isl_space_copy(FN(UNION,peek_space)(u));
36 /* Return the number of parameters of "u", where "type"
37 * is required to be set to isl_dim_param.
39 unsigned FN(UNION,dim)(__isl_keep UNION *u, enum isl_dim_type type)
41 if (!u)
42 return 0;
44 if (type != isl_dim_param)
45 isl_die(FN(UNION,get_ctx)(u), isl_error_invalid,
46 "can only reference parameters", return 0);
48 return isl_space_dim(u->space, type);
51 /* Return the position of the parameter with the given name
52 * in "u".
53 * Return -1 if no such dimension can be found.
55 int FN(UNION,find_dim_by_name)(__isl_keep UNION *u, enum isl_dim_type type,
56 const char *name)
58 if (!u)
59 return -1;
60 return isl_space_find_dim_by_name(u->space, type, name);
63 #ifdef HAS_TYPE
64 static __isl_give UNION *FN(UNION,alloc)(__isl_take isl_space *dim,
65 enum isl_fold type, int size)
66 #else
67 static __isl_give UNION *FN(UNION,alloc)(__isl_take isl_space *dim, int size)
68 #endif
70 UNION *u;
72 dim = isl_space_params(dim);
73 if (!dim)
74 return NULL;
76 u = isl_calloc_type(dim->ctx, UNION);
77 if (!u)
78 goto error;
80 u->ref = 1;
81 #ifdef HAS_TYPE
82 u->type = type;
83 #endif
84 u->space = dim;
85 if (isl_hash_table_init(dim->ctx, &u->table, size) < 0)
86 return FN(UNION,free)(u);
88 return u;
89 error:
90 isl_space_free(dim);
91 return NULL;
94 #ifdef HAS_TYPE
95 __isl_give UNION *FN(UNION,ZERO)(__isl_take isl_space *dim, enum isl_fold type)
97 return FN(UNION,alloc)(dim, type, 16);
99 #else
100 __isl_give UNION *FN(UNION,ZERO)(__isl_take isl_space *dim)
102 return FN(UNION,alloc)(dim, 16);
104 #endif
106 __isl_give UNION *FN(UNION,copy)(__isl_keep UNION *u)
108 if (!u)
109 return NULL;
111 u->ref++;
112 return u;
115 /* Extract the element of "u" living in "space" (ignoring parameters).
117 * Return the ZERO element if "u" does not contain any element
118 * living in "space".
120 __isl_give PART *FN(FN(UNION,extract),BASE)(__isl_keep UNION *u,
121 __isl_take isl_space *space)
123 struct isl_hash_table_entry *entry;
125 space = isl_space_replace_params(space, FN(UNION,peek_space)(u));
127 entry = FN(UNION,find_part_entry)(u, space, 0);
128 if (!entry)
129 goto error;
130 if (entry == isl_hash_table_entry_none)
131 #ifdef HAS_TYPE
132 return FN(PART,ZERO)(space, u->type);
133 #else
134 return FN(PART,ZERO)(space);
135 #endif
136 isl_space_free(space);
137 return FN(PART,copy)(entry->data);
138 error:
139 isl_space_free(space);
140 return NULL;
143 /* Add "part" to "u".
144 * If "disjoint" is set, then "u" is not allowed to already have
145 * a part that is defined over a domain that overlaps with the domain
146 * of "part".
147 * Otherwise, compute the union sum of "part" and the part in "u"
148 * defined on the same space.
150 static __isl_give UNION *FN(UNION,add_part_generic)(__isl_take UNION *u,
151 __isl_take PART *part, int disjoint)
153 int empty;
154 struct isl_hash_table_entry *entry;
156 if (!part)
157 goto error;
159 empty = FN(PART,IS_ZERO)(part);
160 if (empty < 0)
161 goto error;
162 if (empty) {
163 FN(PART,free)(part);
164 return u;
167 u = FN(UNION,align_params)(u, FN(PART,get_space)(part));
168 part = FN(PART,align_params)(part, FN(UNION,get_space)(u));
170 u = FN(UNION,cow)(u);
172 if (!u)
173 goto error;
175 if (FN(UNION,check_disjoint_domain_other)(u, part) < 0)
176 goto error;
177 entry = FN(UNION,find_part_entry)(u, part->dim, 1);
178 if (!entry)
179 goto error;
181 if (!entry->data)
182 entry->data = part;
183 else {
184 if (disjoint &&
185 FN(UNION,check_disjoint_domain)(entry->data, part) < 0)
186 goto error;
187 entry->data = FN(PART,union_add_)(entry->data,
188 FN(PART,copy)(part));
189 if (!entry->data)
190 goto error;
191 empty = FN(PART,IS_ZERO)(part);
192 if (empty < 0)
193 goto error;
194 if (empty)
195 u = FN(UNION,remove_part_entry)(u, entry);
196 FN(PART,free)(part);
199 return u;
200 error:
201 FN(PART,free)(part);
202 FN(UNION,free)(u);
203 return NULL;
206 /* Add "part" to "u", where "u" is assumed not to already have
207 * a part that is defined on the same space as "part".
209 __isl_give UNION *FN(FN(UNION,add),BASE)(__isl_take UNION *u,
210 __isl_take PART *part)
212 return FN(UNION,add_part_generic)(u, part, 1);
215 #ifdef HAS_TYPE
216 /* Allocate a UNION with the same type and the same size as "u" and
217 * with space "space".
219 static __isl_give UNION *FN(UNION,alloc_same_size_on_space)(__isl_keep UNION *u,
220 __isl_take isl_space *space)
222 if (!u)
223 goto error;
224 return FN(UNION,alloc)(space, u->type, u->table.n);
225 error:
226 isl_space_free(space);
227 return NULL;
229 #else
230 /* Allocate a UNION with the same size as "u" and with space "space".
232 static __isl_give UNION *FN(UNION,alloc_same_size_on_space)(__isl_keep UNION *u,
233 __isl_take isl_space *space)
235 if (!u)
236 goto error;
237 return FN(UNION,alloc)(space, u->table.n);
238 error:
239 isl_space_free(space);
240 return NULL;
242 #endif
244 /* Allocate a UNION with the same space, the same type (if any) and
245 * the same size as "u".
247 static __isl_give UNION *FN(UNION,alloc_same_size)(__isl_keep UNION *u)
249 return FN(UNION,alloc_same_size_on_space)(u, FN(UNION,get_space)(u));
252 /* Internal data structure for isl_union_*_transform_space.
253 * "fn' is applied to each entry in the input.
254 * "res" collects the results.
256 S(UNION,transform_data)
258 __isl_give PART *(*fn)(__isl_take PART *part, void *user);
259 void *user;
261 UNION *res;
264 /* Apply data->fn to "part" and add the result to data->res.
266 static isl_stat FN(UNION,transform_entry)(__isl_take PART *part, void *user)
268 S(UNION,transform_data) *data = (S(UNION,transform_data) *)user;
270 part = data->fn(part, data->user);
271 data->res = FN(FN(UNION,add),BASE)(data->res, part);
272 if (!data->res)
273 return isl_stat_error;
275 return isl_stat_ok;
278 /* Return a UNION living in "space" that is obtained by applying "fn"
279 * to each of the entries in "u".
281 static __isl_give UNION *FN(UNION,transform_space)(__isl_take UNION *u,
282 isl_space *space,
283 __isl_give PART *(*fn)(__isl_take PART *part, void *user), void *user)
285 S(UNION,transform_data) data = { fn, user };
287 data.res = FN(UNION,alloc_same_size_on_space)(u, space);
288 if (FN(FN(UNION,foreach),BASE)(u,
289 &FN(UNION,transform_entry), &data) < 0)
290 data.res = FN(UNION,free)(data.res);
291 FN(UNION,free)(u);
292 return data.res;
295 /* Return a UNION that lives in the same space as "u" and that is obtained
296 * by applying "fn" to each of the entries in "u".
298 static __isl_give UNION *FN(UNION,transform)(__isl_take UNION *u,
299 __isl_give PART *(*fn)(__isl_take PART *part, void *user), void *user)
301 return FN(UNION,transform_space)(u, FN(UNION,get_space)(u), fn, user);
304 /* Apply data->fn to *part and store the result back into *part.
306 static isl_stat FN(UNION,transform_inplace_entry)(void **part, void *user)
308 S(UNION,transform_data) *data = (S(UNION,transform_data) *) user;
310 *part = data->fn(*part, data->user);
311 if (!*part)
312 return isl_stat_error;
313 return isl_stat_ok;
316 /* Update "u" by applying "fn" to each entry.
317 * This operation is assumed not to change the number of entries nor
318 * the spaces of the entries.
320 * If there is only one reference to "u", then change "u" inplace.
321 * Otherwise, create a new UNION from "u" and discard the original.
323 static __isl_give UNION *FN(UNION,transform_inplace)(__isl_take UNION *u,
324 __isl_give PART *(*fn)(__isl_take PART *part, void *user), void *user)
326 isl_bool single_ref;
328 single_ref = FN(UNION,has_single_reference)(u);
329 if (single_ref < 0)
330 return FN(UNION,free)(u);
331 if (single_ref) {
332 S(UNION,transform_data) data = { fn, user };
333 if (FN(UNION,foreach_inplace)(u,
334 &FN(UNION,transform_inplace_entry), &data) < 0)
335 return FN(UNION,free)(u);
336 return u;
338 return FN(UNION,transform)(u, fn, user);
341 /* An isl_union_*_transform callback for use in isl_union_*_dup
342 * that simply returns "part".
344 static __isl_give PART *FN(UNION,copy_part)(__isl_take PART *part, void *user)
346 return part;
349 __isl_give UNION *FN(UNION,dup)(__isl_keep UNION *u)
351 u = FN(UNION,copy)(u);
352 return FN(UNION,transform)(u, &FN(UNION,copy_part), NULL);
355 __isl_give UNION *FN(UNION,cow)(__isl_take UNION *u)
357 if (!u)
358 return NULL;
360 if (u->ref == 1)
361 return u;
362 u->ref--;
363 return FN(UNION,dup)(u);
366 __isl_null UNION *FN(UNION,free)(__isl_take UNION *u)
368 if (!u)
369 return NULL;
371 if (--u->ref > 0)
372 return NULL;
374 isl_hash_table_foreach(u->space->ctx, &u->table,
375 &FN(UNION,free_u_entry), NULL);
376 isl_hash_table_clear(&u->table);
377 isl_space_free(u->space);
378 free(u);
379 return NULL;
382 static __isl_give PART *FN(UNION,align_entry)(__isl_take PART *part, void *user)
384 isl_reordering *exp = user;
386 exp = isl_reordering_extend_space(isl_reordering_copy(exp),
387 FN(PART,get_domain_space)(part));
388 return FN(PART,realign_domain)(part, exp);
391 /* Reorder the parameters of "u" according to the given reordering.
393 static __isl_give UNION *FN(UNION,realign_domain)(__isl_take UNION *u,
394 __isl_take isl_reordering *r)
396 isl_space *space;
398 if (!u || !r)
399 goto error;
401 space = isl_reordering_get_space(r);
402 u = FN(UNION,transform_space)(u, space, &FN(UNION,align_entry), r);
403 isl_reordering_free(r);
404 return u;
405 error:
406 FN(UNION,free)(u);
407 isl_reordering_free(r);
408 return NULL;
411 /* Align the parameters of "u" to those of "model".
413 __isl_give UNION *FN(UNION,align_params)(__isl_take UNION *u,
414 __isl_take isl_space *model)
416 isl_bool equal_params;
417 isl_reordering *r;
419 if (!u || !model)
420 goto error;
422 equal_params = isl_space_has_equal_params(u->space, model);
423 if (equal_params < 0)
424 goto error;
425 if (equal_params) {
426 isl_space_free(model);
427 return u;
430 r = isl_parameter_alignment_reordering(u->space, model);
431 isl_space_free(model);
433 return FN(UNION,realign_domain)(u, r);
434 error:
435 isl_space_free(model);
436 FN(UNION,free)(u);
437 return NULL;
440 /* Add "part" to *u, taking the union sum if "u" already has
441 * a part defined on the same space as "part".
443 static isl_stat FN(UNION,union_add_part)(__isl_take PART *part, void *user)
445 UNION **u = (UNION **)user;
447 *u = FN(UNION,add_part_generic)(*u, part, 0);
449 return isl_stat_ok;
452 /* Compute the sum of "u1" and "u2" on the union of their domains,
453 * with the actual sum on the shared domain and
454 * the defined expression on the symmetric difference of the domains.
456 * This is an internal function that is exposed under different
457 * names depending on whether the base expressions have a zero default
458 * value.
459 * If they do, then this function is called "add".
460 * Otherwise, it is called "union_add".
462 static __isl_give UNION *FN(UNION,union_add_)(__isl_take UNION *u1,
463 __isl_take UNION *u2)
465 u1 = FN(UNION,align_params)(u1, FN(UNION,get_space)(u2));
466 u2 = FN(UNION,align_params)(u2, FN(UNION,get_space)(u1));
468 u1 = FN(UNION,cow)(u1);
470 if (!u1 || !u2)
471 goto error;
473 if (FN(FN(UNION,foreach),BASE)(u2, &FN(UNION,union_add_part), &u1) < 0)
474 goto error;
476 FN(UNION,free)(u2);
478 return u1;
479 error:
480 FN(UNION,free)(u1);
481 FN(UNION,free)(u2);
482 return NULL;
485 __isl_give UNION *FN(FN(UNION,from),BASE)(__isl_take PART *part)
487 isl_space *dim;
488 UNION *u;
490 if (!part)
491 return NULL;
493 dim = FN(PART,get_space)(part);
494 dim = isl_space_drop_dims(dim, isl_dim_in, 0, isl_space_dim(dim, isl_dim_in));
495 dim = isl_space_drop_dims(dim, isl_dim_out, 0, isl_space_dim(dim, isl_dim_out));
496 #ifdef HAS_TYPE
497 u = FN(UNION,ZERO)(dim, part->type);
498 #else
499 u = FN(UNION,ZERO)(dim);
500 #endif
501 u = FN(FN(UNION,add),BASE)(u, part);
503 return u;
506 S(UNION,match_bin_data) {
507 UNION *u2;
508 UNION *res;
509 __isl_give PART *(*fn)(__isl_take PART *, __isl_take PART *);
512 /* Check if data->u2 has an element living in the same space as "part".
513 * If so, call data->fn on the two elements and add the result to
514 * data->res.
516 static isl_stat FN(UNION,match_bin_entry)(__isl_take PART *part, void *user)
518 S(UNION,match_bin_data) *data = user;
519 struct isl_hash_table_entry *entry2;
520 isl_space *space;
521 PART *part2;
523 space = FN(PART,get_space)(part);
524 entry2 = FN(UNION,find_part_entry)(data->u2, space, 0);
525 isl_space_free(space);
526 if (!entry2)
527 goto error;
528 if (entry2 == isl_hash_table_entry_none) {
529 FN(PART,free)(part);
530 return isl_stat_ok;
533 part2 = entry2->data;
534 if (!isl_space_tuple_is_equal(part->dim, isl_dim_out,
535 part2->dim, isl_dim_out))
536 isl_die(FN(UNION,get_ctx)(data->u2), isl_error_invalid,
537 "entries should have the same range space",
538 goto error);
540 part = data->fn(part, FN(PART, copy)(entry2->data));
542 data->res = FN(FN(UNION,add),BASE)(data->res, part);
543 if (!data->res)
544 return isl_stat_error;
546 return isl_stat_ok;
547 error:
548 FN(PART,free)(part);
549 return isl_stat_error;
552 /* This function is currently only used from isl_polynomial.c
553 * and not from isl_fold.c.
555 static __isl_give UNION *FN(UNION,match_bin_op)(__isl_take UNION *u1,
556 __isl_take UNION *u2,
557 __isl_give PART *(*fn)(__isl_take PART *, __isl_take PART *))
558 __attribute__ ((unused));
559 /* For each pair of elements in "u1" and "u2" living in the same space,
560 * call "fn" and collect the results.
562 static __isl_give UNION *FN(UNION,match_bin_op)(__isl_take UNION *u1,
563 __isl_take UNION *u2,
564 __isl_give PART *(*fn)(__isl_take PART *, __isl_take PART *))
566 S(UNION,match_bin_data) data = { NULL, NULL, fn };
568 u1 = FN(UNION,align_params)(u1, FN(UNION,get_space)(u2));
569 u2 = FN(UNION,align_params)(u2, FN(UNION,get_space)(u1));
571 if (!u1 || !u2)
572 goto error;
574 data.u2 = u2;
575 data.res = FN(UNION,alloc_same_size)(u1);
576 if (FN(FN(UNION,foreach),BASE)(u1,
577 &FN(UNION,match_bin_entry), &data) < 0)
578 goto error;
580 FN(UNION,free)(u1);
581 FN(UNION,free)(u2);
582 return data.res;
583 error:
584 FN(UNION,free)(u1);
585 FN(UNION,free)(u2);
586 FN(UNION,free)(data.res);
587 return NULL;
590 /* Compute the sum of "u1" and "u2".
592 * If the base expressions have a default zero value, then the sum
593 * is computed on the union of the domains of "u1" and "u2".
594 * Otherwise, it is computed on their shared domains.
596 __isl_give UNION *FN(UNION,add)(__isl_take UNION *u1, __isl_take UNION *u2)
598 #if DEFAULT_IS_ZERO
599 return FN(UNION,union_add_)(u1, u2);
600 #else
601 return FN(UNION,match_bin_op)(u1, u2, &FN(PART,add));
602 #endif
605 #ifndef NO_SUB
606 /* Subtract "u2" from "u1" and return the result.
608 __isl_give UNION *FN(UNION,sub)(__isl_take UNION *u1, __isl_take UNION *u2)
610 return FN(UNION,match_bin_op)(u1, u2, &FN(PART,sub));
612 #endif
614 S(UNION,any_set_data) {
615 isl_set *set;
616 __isl_give PW *(*fn)(__isl_take PW*, __isl_take isl_set*);
619 static __isl_give PART *FN(UNION,any_set_entry)(__isl_take PART *part,
620 void *user)
622 S(UNION,any_set_data) *data = user;
624 return data->fn(part, isl_set_copy(data->set));
627 /* Update each element of "u" by calling "fn" on the element and "set".
629 static __isl_give UNION *FN(UNION,any_set_op)(__isl_take UNION *u,
630 __isl_take isl_set *set,
631 __isl_give PW *(*fn)(__isl_take PW*, __isl_take isl_set*))
633 S(UNION,any_set_data) data = { NULL, fn };
635 u = FN(UNION,align_params)(u, isl_set_get_space(set));
636 set = isl_set_align_params(set, FN(UNION,get_space)(u));
638 if (!u || !set)
639 goto error;
641 data.set = set;
642 u = FN(UNION,transform)(u, &FN(UNION,any_set_entry), &data);
643 isl_set_free(set);
644 return u;
645 error:
646 FN(UNION,free)(u);
647 isl_set_free(set);
648 return NULL;
651 /* Intersect the domain of "u" with the parameter domain "context".
653 __isl_give UNION *FN(UNION,intersect_params)(__isl_take UNION *u,
654 __isl_take isl_set *set)
656 return FN(UNION,any_set_op)(u, set, &FN(PW,intersect_params));
659 /* Compute the gist of the domain of "u" with respect to
660 * the parameter domain "context".
662 __isl_give UNION *FN(UNION,gist_params)(__isl_take UNION *u,
663 __isl_take isl_set *set)
665 return FN(UNION,any_set_op)(u, set, &FN(PW,gist_params));
668 S(UNION,match_domain_data) {
669 isl_union_set *uset;
670 UNION *res;
671 __isl_give PW *(*fn)(__isl_take PW*, __isl_take isl_set*);
674 static int FN(UNION,set_has_dim)(const void *entry, const void *val)
676 isl_set *set = (isl_set *)entry;
677 isl_space *dim = (isl_space *)val;
679 return isl_space_is_equal(set->dim, dim);
682 /* Find the set in data->uset that lives in the same space as the domain
683 * of "part", apply data->fn to *entry and this set (if any), and add
684 * the result to data->res.
686 static isl_stat FN(UNION,match_domain_entry)(__isl_take PART *part, void *user)
688 S(UNION,match_domain_data) *data = user;
689 uint32_t hash;
690 struct isl_hash_table_entry *entry2;
691 isl_space *space;
693 space = FN(PART,get_domain_space)(part);
694 hash = isl_space_get_hash(space);
695 entry2 = isl_hash_table_find(data->uset->dim->ctx, &data->uset->table,
696 hash, &FN(UNION,set_has_dim), space, 0);
697 isl_space_free(space);
698 if (!entry2) {
699 FN(PART,free)(part);
700 return isl_stat_ok;
703 part = data->fn(part, isl_set_copy(entry2->data));
705 data->res = FN(FN(UNION,add),BASE)(data->res, part);
706 if (!data->res)
707 return isl_stat_error;
709 return isl_stat_ok;
712 /* Apply fn to each pair of PW in u and set in uset such that
713 * the set lives in the same space as the domain of PW
714 * and collect the results.
716 static __isl_give UNION *FN(UNION,match_domain_op)(__isl_take UNION *u,
717 __isl_take isl_union_set *uset,
718 __isl_give PW *(*fn)(__isl_take PW*, __isl_take isl_set*))
720 S(UNION,match_domain_data) data = { NULL, NULL, fn };
722 u = FN(UNION,align_params)(u, isl_union_set_get_space(uset));
723 uset = isl_union_set_align_params(uset, FN(UNION,get_space)(u));
725 if (!u || !uset)
726 goto error;
728 data.uset = uset;
729 data.res = FN(UNION,alloc_same_size)(u);
730 if (FN(FN(UNION,foreach),BASE)(u,
731 &FN(UNION,match_domain_entry), &data) < 0)
732 goto error;
734 FN(UNION,free)(u);
735 isl_union_set_free(uset);
736 return data.res;
737 error:
738 FN(UNION,free)(u);
739 isl_union_set_free(uset);
740 FN(UNION,free)(data.res);
741 return NULL;
744 /* Intersect the domain of "u" with "uset".
745 * If "uset" is a parameters domain, then intersect the parameter
746 * domain of "u" with this set.
748 __isl_give UNION *FN(UNION,intersect_domain)(__isl_take UNION *u,
749 __isl_take isl_union_set *uset)
751 if (isl_union_set_is_params(uset))
752 return FN(UNION,intersect_params)(u,
753 isl_set_from_union_set(uset));
754 return FN(UNION,match_domain_op)(u, uset, &FN(PW,intersect_domain));
757 /* Take the set (which may be empty) in data->uset that lives
758 * in the same space as the domain of "pw", subtract it from the domain
759 * of "part" and return the result.
761 static __isl_give PART *FN(UNION,subtract_domain_entry)(__isl_take PART *part,
762 void *user)
764 isl_union_set *uset = user;
765 isl_space *space;
766 isl_set *set;
768 space = FN(PART,get_domain_space)(part);
769 set = isl_union_set_extract_set(uset, space);
770 return FN(PART,subtract_domain)(part, set);
773 /* Subtract "uset' from the domain of "u".
775 __isl_give UNION *FN(UNION,subtract_domain)(__isl_take UNION *u,
776 __isl_take isl_union_set *uset)
778 u = FN(UNION,transform)(u, &FN(UNION,subtract_domain_entry), uset);
779 isl_union_set_free(uset);
780 return u;
783 __isl_give UNION *FN(UNION,gist)(__isl_take UNION *u,
784 __isl_take isl_union_set *uset)
786 if (isl_union_set_is_params(uset))
787 return FN(UNION,gist_params)(u, isl_set_from_union_set(uset));
788 return FN(UNION,match_domain_op)(u, uset, &FN(PW,gist));
791 /* Coalesce an entry in a UNION. Coalescing is performed in-place.
792 * Since the UNION may have several references, the entry is only
793 * replaced if the coalescing is successful.
795 static isl_stat FN(UNION,coalesce_entry)(void **entry, void *user)
797 PART **part_p = (PART **) entry;
798 PART *part;
800 part = FN(PART,copy)(*part_p);
801 part = FN(PW,coalesce)(part);
802 if (!part)
803 return isl_stat_error;
804 FN(PART,free)(*part_p);
805 *part_p = part;
807 return isl_stat_ok;
810 __isl_give UNION *FN(UNION,coalesce)(__isl_take UNION *u)
812 if (FN(UNION,foreach_inplace)(u, &FN(UNION,coalesce_entry), NULL) < 0)
813 goto error;
815 return u;
816 error:
817 FN(UNION,free)(u);
818 return NULL;
821 static isl_stat FN(UNION,domain_entry)(__isl_take PART *part, void *user)
823 isl_union_set **uset = (isl_union_set **)user;
825 *uset = isl_union_set_add_set(*uset, FN(PART,domain)(part));
827 return isl_stat_ok;
830 __isl_give isl_union_set *FN(UNION,domain)(__isl_take UNION *u)
832 isl_union_set *uset;
834 uset = isl_union_set_empty(FN(UNION,get_space)(u));
835 if (FN(FN(UNION,foreach),BASE)(u, &FN(UNION,domain_entry), &uset) < 0)
836 goto error;
838 FN(UNION,free)(u);
840 return uset;
841 error:
842 isl_union_set_free(uset);
843 FN(UNION,free)(u);
844 return NULL;
847 #ifdef HAS_TYPE
848 /* Negate the type of "u".
850 static __isl_give UNION *FN(UNION,negate_type)(__isl_take UNION *u)
852 u = FN(UNION,cow)(u);
853 if (!u)
854 return NULL;
855 u->type = isl_fold_type_negate(u->type);
856 return u;
858 #else
859 /* Negate the type of "u".
860 * Since "u" does not have a type, do nothing.
862 static __isl_give UNION *FN(UNION,negate_type)(__isl_take UNION *u)
864 return u;
866 #endif
868 /* Multiply "part" by the isl_val "user" and return the result.
870 static __isl_give PART *FN(UNION,scale_val_entry)(__isl_take PART *part,
871 void *user)
873 isl_val *v = user;
875 return FN(PART,scale_val)(part, isl_val_copy(v));
878 /* Multiply "u" by "v" and return the result.
880 __isl_give UNION *FN(UNION,scale_val)(__isl_take UNION *u,
881 __isl_take isl_val *v)
883 if (!u || !v)
884 goto error;
885 if (isl_val_is_one(v)) {
886 isl_val_free(v);
887 return u;
890 if (DEFAULT_IS_ZERO && u && isl_val_is_zero(v)) {
891 UNION *zero;
892 isl_space *space = FN(UNION,get_space)(u);
893 #ifdef HAS_TYPE
894 zero = FN(UNION,ZERO)(space, u->type);
895 #else
896 zero = FN(UNION,ZERO)(space);
897 #endif
898 FN(UNION,free)(u);
899 isl_val_free(v);
900 return zero;
903 if (!isl_val_is_rat(v))
904 isl_die(isl_val_get_ctx(v), isl_error_invalid,
905 "expecting rational factor", goto error);
907 u = FN(UNION,transform_inplace)(u, &FN(UNION,scale_val_entry), v);
908 if (isl_val_is_neg(v))
909 u = FN(UNION,negate_type)(u);
911 isl_val_free(v);
912 return u;
913 error:
914 isl_val_free(v);
915 FN(UNION,free)(u);
916 return NULL;
919 /* Divide "part" by the isl_val "user" and return the result.
921 static __isl_give PART *FN(UNION,scale_down_val_entry)(__isl_take PART *part,
922 void *user)
924 isl_val *v = user;
926 return FN(PART,scale_down_val)(part, isl_val_copy(v));
929 /* Divide "u" by "v" and return the result.
931 __isl_give UNION *FN(UNION,scale_down_val)(__isl_take UNION *u,
932 __isl_take isl_val *v)
934 if (!u || !v)
935 goto error;
936 if (isl_val_is_one(v)) {
937 isl_val_free(v);
938 return u;
941 if (!isl_val_is_rat(v))
942 isl_die(isl_val_get_ctx(v), isl_error_invalid,
943 "expecting rational factor", goto error);
944 if (isl_val_is_zero(v))
945 isl_die(isl_val_get_ctx(v), isl_error_invalid,
946 "cannot scale down by zero", goto error);
948 u = FN(UNION,transform_inplace)(u, &FN(UNION,scale_down_val_entry), v);
949 if (isl_val_is_neg(v))
950 u = FN(UNION,negate_type)(u);
952 isl_val_free(v);
953 return u;
954 error:
955 isl_val_free(v);
956 FN(UNION,free)(u);
957 return NULL;
960 S(UNION,plain_is_equal_data)
962 UNION *u2;
963 isl_bool is_equal;
966 static isl_stat FN(UNION,plain_is_equal_entry)(void **entry, void *user)
968 S(UNION,plain_is_equal_data) *data = user;
969 struct isl_hash_table_entry *entry2;
970 PW *pw = *entry;
972 entry2 = FN(UNION,find_part_entry)(data->u2, pw->dim, 0);
973 if (!entry2 || entry2 == isl_hash_table_entry_none) {
974 if (!entry2)
975 data->is_equal = isl_bool_error;
976 else
977 data->is_equal = isl_bool_false;
978 return isl_stat_error;
981 data->is_equal = FN(PW,plain_is_equal)(pw, entry2->data);
982 if (data->is_equal < 0 || !data->is_equal)
983 return isl_stat_error;
985 return isl_stat_ok;
988 isl_bool FN(UNION,plain_is_equal)(__isl_keep UNION *u1, __isl_keep UNION *u2)
990 S(UNION,plain_is_equal_data) data = { NULL, isl_bool_true };
991 int n1, n2;
993 if (!u1 || !u2)
994 return isl_bool_error;
995 if (u1 == u2)
996 return isl_bool_true;
997 if (u1->table.n != u2->table.n)
998 return isl_bool_false;
999 n1 = FN(FN(UNION,n),BASE)(u1);
1000 n2 = FN(FN(UNION,n),BASE)(u2);
1001 if (n1 < 0 || n2 < 0)
1002 return isl_bool_error;
1003 if (n1 != n2)
1004 return isl_bool_false;
1006 u1 = FN(UNION,copy)(u1);
1007 u2 = FN(UNION,copy)(u2);
1008 u1 = FN(UNION,align_params)(u1, FN(UNION,get_space)(u2));
1009 u2 = FN(UNION,align_params)(u2, FN(UNION,get_space)(u1));
1010 if (!u1 || !u2)
1011 goto error;
1013 data.u2 = u2;
1014 if (FN(UNION,foreach_inplace)(u1,
1015 &FN(UNION,plain_is_equal_entry), &data) < 0 &&
1016 data.is_equal)
1017 goto error;
1019 FN(UNION,free)(u1);
1020 FN(UNION,free)(u2);
1022 return data.is_equal;
1023 error:
1024 FN(UNION,free)(u1);
1025 FN(UNION,free)(u2);
1026 return isl_bool_error;
1029 /* Check whether the element that "entry" points to involves any NaNs and
1030 * store the result in *nan.
1031 * Abort as soon as one such element has been found.
1033 static isl_stat FN(UNION,involves_nan_entry)(void **entry, void *user)
1035 isl_bool *nan = user;
1036 PW *pw = *entry;
1038 *nan = FN(PW,involves_nan)(pw);
1039 if (*nan < 0 || !nan)
1040 return isl_stat_error;
1042 return isl_stat_ok;
1045 /* Does "u" involve any NaNs?
1047 isl_bool FN(UNION,involves_nan)(__isl_keep UNION *u)
1049 isl_bool nan = isl_bool_false;
1051 if (!u)
1052 return isl_bool_error;
1054 if (FN(UNION,foreach_inplace)(u,
1055 &FN(UNION,involves_nan_entry), &nan) < 0 &&
1056 !nan)
1057 return isl_bool_error;
1059 return nan;
1062 /* Internal data structure for isl_union_*_drop_dims.
1063 * type, first and n are passed to isl_*_drop_dims.
1065 S(UNION,drop_dims_data) {
1066 enum isl_dim_type type;
1067 unsigned first;
1068 unsigned n;
1071 /* Drop the parameters specified by "data" from "part" and return the result.
1073 static __isl_give PART *FN(UNION,drop_dims_entry)(__isl_take PART *part,
1074 void *user)
1076 S(UNION,drop_dims_data) *data = user;
1078 return FN(PART,drop_dims)(part, data->type, data->first, data->n);
1081 /* Drop the specified parameters from "u".
1082 * That is, type is required to be isl_dim_param.
1084 __isl_give UNION *FN(UNION,drop_dims)( __isl_take UNION *u,
1085 enum isl_dim_type type, unsigned first, unsigned n)
1087 isl_space *space;
1088 S(UNION,drop_dims_data) data = { type, first, n };
1090 if (!u)
1091 return NULL;
1093 if (type != isl_dim_param)
1094 isl_die(FN(UNION,get_ctx)(u), isl_error_invalid,
1095 "can only project out parameters",
1096 return FN(UNION,free)(u));
1098 space = FN(UNION,get_space)(u);
1099 space = isl_space_drop_dims(space, type, first, n);
1100 return FN(UNION,transform_space)(u, space, &FN(UNION,drop_dims_entry),
1101 &data);
1104 /* Internal data structure for isl_union_*_set_dim_name.
1105 * pos is the position of the parameter that needs to be renamed.
1106 * s is the new name.
1108 S(UNION,set_dim_name_data) {
1109 unsigned pos;
1110 const char *s;
1113 /* Change the name of the parameter at position data->pos of "part" to data->s
1114 * and return the result.
1116 static __isl_give PART *FN(UNION,set_dim_name_entry)(__isl_take PART *part,
1117 void *user)
1119 S(UNION,set_dim_name_data) *data = user;
1121 return FN(PART,set_dim_name)(part, isl_dim_param, data->pos, data->s);
1124 /* Change the name of the parameter at position "pos" to "s".
1125 * That is, type is required to be isl_dim_param.
1127 __isl_give UNION *FN(UNION,set_dim_name)(__isl_take UNION *u,
1128 enum isl_dim_type type, unsigned pos, const char *s)
1130 S(UNION,set_dim_name_data) data = { pos, s };
1131 isl_space *space;
1133 if (!u)
1134 return NULL;
1136 if (type != isl_dim_param)
1137 isl_die(FN(UNION,get_ctx)(u), isl_error_invalid,
1138 "can only set parameter names",
1139 return FN(UNION,free)(u));
1141 space = FN(UNION,get_space)(u);
1142 space = isl_space_set_dim_name(space, type, pos, s);
1143 return FN(UNION,transform_space)(u, space,
1144 &FN(UNION,set_dim_name_entry), &data);
1147 /* Reset the user pointer on all identifiers of parameters and tuples
1148 * of the space of "part" and return the result.
1150 static __isl_give PART *FN(UNION,reset_user_entry)(__isl_take PART *part,
1151 void *user)
1153 return FN(PART,reset_user)(part);
1156 /* Reset the user pointer on all identifiers of parameters and tuples
1157 * of the spaces of "u".
1159 __isl_give UNION *FN(UNION,reset_user)(__isl_take UNION *u)
1161 isl_space *space;
1163 space = FN(UNION,get_space)(u);
1164 space = isl_space_reset_user(space);
1165 return FN(UNION,transform_space)(u, space, &FN(UNION,reset_user_entry),
1166 NULL);
1169 /* Add the base expression held by "entry" to "list".
1171 static isl_stat FN(UNION,add_to_list)(void **entry, void *user)
1173 PW *pw = *entry;
1174 LIST(PART) **list = user;
1176 *list = FN(LIST(PART),add)(*list, FN(PART,copy)(pw));
1177 if (!*list)
1178 return isl_stat_error;
1180 return isl_stat_ok;
1183 /* Return a list containing all the base expressions in "u".
1185 * First construct a list of the appropriate size and
1186 * then add all the elements.
1188 __isl_give LIST(PART) *FN(FN(UNION,get),LIST(BASE))(__isl_keep UNION *u)
1190 int n;
1191 LIST(PART) *list;
1193 if (!u)
1194 return NULL;
1195 n = FN(FN(UNION,n),BASE)(u);
1196 if (n < 0)
1197 return NULL;
1198 list = FN(LIST(PART),alloc)(FN(UNION,get_ctx(u)), n);
1199 if (FN(UNION,foreach_inplace)(u, &FN(UNION,add_to_list), &list) < 0)
1200 return FN(LIST(PART),free)(list);
1202 return list;