2 * Copyright 2010-2011 INRIA Saclay
3 * Copyright 2013-2014 Ecole Normale Superieure
4 * Copyright 2014 INRIA Rocquencourt
5 * Copyright 2016-2017 Sven Verdoolaege
7 * Use of this software is governed by the MIT license
9 * Written by Sven Verdoolaege, INRIA Saclay - Ile-de-France,
10 * Parc Club Orsay Universite, ZAC des vignes, 4 rue Jacques Monod,
12 * and Inria Paris - Rocquencourt, Domaine de Voluceau - Rocquencourt,
13 * B.P. 105 - 78153 Le Chesnay, France
16 #include <isl_map_private.h>
17 #include <isl_union_map_private.h>
20 #include <isl_aff_private.h>
23 #include <isl_space_private.h>
24 #include <isl/union_set.h>
25 #include <isl_maybe_map.h>
26 #include <isl_id_private.h>
28 #include <bset_from_bmap.c>
29 #include <set_to_map.c>
30 #include <set_from_map.c>
31 #include <uset_to_umap.c>
32 #include <uset_from_umap.c>
33 #include <set_list_from_map_list_inl.c>
36 #define TYPE isl_union_map
38 #include "has_single_reference_templ.c"
40 #include "check_single_reference_templ.c"
42 /* Return the number of parameters of "umap", where "type"
43 * is required to be set to isl_dim_param.
45 isl_size
isl_union_map_dim(__isl_keep isl_union_map
*umap
,
46 enum isl_dim_type type
)
49 return isl_size_error
;
51 if (type
!= isl_dim_param
)
52 isl_die(isl_union_map_get_ctx(umap
), isl_error_invalid
,
53 "can only reference parameters", return isl_size_error
);
55 return isl_space_dim(umap
->dim
, type
);
58 /* Return the number of parameters of "uset", where "type"
59 * is required to be set to isl_dim_param.
61 isl_size
isl_union_set_dim(__isl_keep isl_union_set
*uset
,
62 enum isl_dim_type type
)
64 return isl_union_map_dim(uset
, type
);
67 /* Return the id of the specified dimension.
69 __isl_give isl_id
*isl_union_map_get_dim_id(__isl_keep isl_union_map
*umap
,
70 enum isl_dim_type type
, unsigned pos
)
75 if (type
!= isl_dim_param
)
76 isl_die(isl_union_map_get_ctx(umap
), isl_error_invalid
,
77 "can only reference parameters", return NULL
);
79 return isl_space_get_dim_id(umap
->dim
, type
, pos
);
82 /* Is this union set a parameter domain?
84 isl_bool
isl_union_set_is_params(__isl_keep isl_union_set
*uset
)
90 return isl_bool_error
;
91 if (uset
->table
.n
!= 1)
92 return isl_bool_false
;
94 set
= isl_set_from_union_set(isl_union_set_copy(uset
));
95 params
= isl_set_is_params(set
);
100 /* Is this union map actually a parameter domain?
101 * Users should never call this function. Outside of isl,
102 * a union map can never be a parameter domain.
104 isl_bool
isl_union_map_is_params(__isl_keep isl_union_map
*umap
)
106 return isl_union_set_is_params(uset_from_umap(umap
));
109 static __isl_give isl_union_map
*isl_union_map_alloc(
110 __isl_take isl_space
*space
, int size
)
114 space
= isl_space_params(space
);
118 umap
= isl_calloc_type(space
->ctx
, isl_union_map
);
120 isl_space_free(space
);
126 if (isl_hash_table_init(space
->ctx
, &umap
->table
, size
) < 0)
127 return isl_union_map_free(umap
);
132 /* Create an empty union map without specifying any parameters.
134 __isl_give isl_union_map
*isl_union_map_empty_ctx(isl_ctx
*ctx
)
136 return isl_union_map_empty_space(isl_space_unit(ctx
));
139 __isl_give isl_union_map
*isl_union_map_empty_space(__isl_take isl_space
*space
)
141 return isl_union_map_alloc(space
, 16);
144 /* This is an alternative name for the function above.
146 __isl_give isl_union_map
*isl_union_map_empty(__isl_take isl_space
*space
)
148 return isl_union_map_empty_space(space
);
151 /* Create an empty union set without specifying any parameters.
153 __isl_give isl_union_set
*isl_union_set_empty_ctx(isl_ctx
*ctx
)
155 return uset_from_umap(isl_union_map_empty_ctx(ctx
));
158 __isl_give isl_union_set
*isl_union_set_empty_space(__isl_take isl_space
*space
)
160 return uset_from_umap(isl_union_map_empty_space(space
));
163 /* This is an alternative name for the function above.
165 __isl_give isl_union_set
*isl_union_set_empty(__isl_take isl_space
*space
)
167 return isl_union_set_empty_space(space
);
170 isl_ctx
*isl_union_map_get_ctx(__isl_keep isl_union_map
*umap
)
172 return umap
? umap
->dim
->ctx
: NULL
;
175 isl_ctx
*isl_union_set_get_ctx(__isl_keep isl_union_set
*uset
)
177 return uset
? uset
->dim
->ctx
: NULL
;
180 /* Return the space of "umap".
182 __isl_keep isl_space
*isl_union_map_peek_space(__isl_keep isl_union_map
*umap
)
184 return umap
? umap
->dim
: NULL
;
187 /* Return the space of "uset".
189 __isl_keep isl_space
*isl_union_set_peek_space(__isl_keep isl_union_set
*uset
)
191 return isl_union_map_peek_space(uset_to_umap(uset
));
194 __isl_give isl_space
*isl_union_map_get_space(__isl_keep isl_union_map
*umap
)
196 return isl_space_copy(isl_union_map_peek_space(umap
));
199 /* Return the position of the parameter with the given name
201 * Return -1 if no such dimension can be found.
203 int isl_union_map_find_dim_by_name(__isl_keep isl_union_map
*umap
,
204 enum isl_dim_type type
, const char *name
)
208 return isl_space_find_dim_by_name(umap
->dim
, type
, name
);
211 __isl_give isl_space
*isl_union_set_get_space(__isl_keep isl_union_set
*uset
)
213 return isl_union_map_get_space(uset
);
216 static isl_stat
free_umap_entry(void **entry
, void *user
)
218 isl_map
*map
= *entry
;
223 static isl_stat
add_map(__isl_take isl_map
*map
, void *user
)
225 isl_union_map
**umap
= (isl_union_map
**)user
;
227 *umap
= isl_union_map_add_map(*umap
, map
);
232 __isl_give isl_union_map
*isl_union_map_dup(__isl_keep isl_union_map
*umap
)
239 dup
= isl_union_map_empty(isl_space_copy(umap
->dim
));
240 if (isl_union_map_foreach_map(umap
, &add_map
, &dup
) < 0)
244 isl_union_map_free(dup
);
248 __isl_give isl_union_map
*isl_union_map_cow(__isl_take isl_union_map
*umap
)
256 return isl_union_map_dup(umap
);
259 struct isl_union_align
{
264 static isl_stat
align_entry(void **entry
, void *user
)
266 isl_map
*map
= *entry
;
268 struct isl_union_align
*data
= user
;
270 exp
= isl_reordering_extend_space(isl_reordering_copy(data
->exp
),
271 isl_map_get_space(map
));
273 data
->res
= isl_union_map_add_map(data
->res
,
274 isl_map_realign(isl_map_copy(map
), exp
));
279 /* Align the parameters of umap along those of model.
280 * The result has the parameters of model first, in the same order
281 * as they appear in model, followed by any remaining parameters of
282 * umap that do not appear in model.
284 __isl_give isl_union_map
*isl_union_map_align_params(
285 __isl_take isl_union_map
*umap
, __isl_take isl_space
*model
)
287 struct isl_union_align data
= { NULL
, NULL
};
288 isl_bool equal_params
;
293 equal_params
= isl_space_has_equal_params(umap
->dim
, model
);
294 if (equal_params
< 0)
297 isl_space_free(model
);
301 data
.exp
= isl_parameter_alignment_reordering(umap
->dim
, model
);
305 data
.res
= isl_union_map_alloc(isl_reordering_get_space(data
.exp
),
307 if (isl_hash_table_foreach(umap
->dim
->ctx
, &umap
->table
,
308 &align_entry
, &data
) < 0)
311 isl_reordering_free(data
.exp
);
312 isl_union_map_free(umap
);
313 isl_space_free(model
);
316 isl_reordering_free(data
.exp
);
317 isl_union_map_free(umap
);
318 isl_union_map_free(data
.res
);
319 isl_space_free(model
);
323 __isl_give isl_union_set
*isl_union_set_align_params(
324 __isl_take isl_union_set
*uset
, __isl_take isl_space
*model
)
326 return isl_union_map_align_params(uset
, model
);
329 __isl_give isl_union_map
*isl_union_map_union(__isl_take isl_union_map
*umap1
,
330 __isl_take isl_union_map
*umap2
)
332 umap1
= isl_union_map_align_params(umap1
, isl_union_map_get_space(umap2
));
333 umap2
= isl_union_map_align_params(umap2
, isl_union_map_get_space(umap1
));
335 umap1
= isl_union_map_cow(umap1
);
337 if (!umap1
|| !umap2
)
340 if (isl_union_map_foreach_map(umap2
, &add_map
, &umap1
) < 0)
343 isl_union_map_free(umap2
);
347 isl_union_map_free(umap1
);
348 isl_union_map_free(umap2
);
352 __isl_give isl_union_set
*isl_union_set_union(__isl_take isl_union_set
*uset1
,
353 __isl_take isl_union_set
*uset2
)
355 return isl_union_map_union(uset1
, uset2
);
358 __isl_give isl_union_map
*isl_union_map_copy(__isl_keep isl_union_map
*umap
)
367 __isl_give isl_union_set
*isl_union_set_copy(__isl_keep isl_union_set
*uset
)
369 return isl_union_map_copy(uset
);
372 __isl_null isl_union_map
*isl_union_map_free(__isl_take isl_union_map
*umap
)
380 isl_hash_table_foreach(umap
->dim
->ctx
, &umap
->table
,
381 &free_umap_entry
, NULL
);
382 isl_hash_table_clear(&umap
->table
);
383 isl_space_free(umap
->dim
);
388 __isl_null isl_union_set
*isl_union_set_free(__isl_take isl_union_set
*uset
)
390 return isl_union_map_free(uset
);
393 /* Do "umap" and "space" have the same parameters?
395 isl_bool
isl_union_map_space_has_equal_params(__isl_keep isl_union_map
*umap
,
396 __isl_keep isl_space
*space
)
398 isl_space
*umap_space
;
400 umap_space
= isl_union_map_peek_space(umap
);
401 return isl_space_has_equal_params(umap_space
, space
);
404 /* Do "uset" and "space" have the same parameters?
406 isl_bool
isl_union_set_space_has_equal_params(__isl_keep isl_union_set
*uset
,
407 __isl_keep isl_space
*space
)
409 return isl_union_map_space_has_equal_params(uset_to_umap(uset
), space
);
412 /* Is the space of the map at "entry" equal to "space", ignoring parameters?
414 static isl_bool
has_space_tuples(const void *entry
, const void *val
)
416 isl_map
*map
= (isl_map
*)entry
;
417 isl_space
*space
= (isl_space
*) val
;
419 return isl_map_has_space_tuples(map
, space
);
422 /* Find the entry in "umap" with space "space" (ignoring parameters),
423 * returning isl_hash_table_entry_none if no such entry appears in "umap" and
425 * If "reserve" is set, then an entry is created if it does
426 * not exist already. Since this modifies the hash table in-place,
427 * this means "umap" must have a single reference when "reserve" is set.
429 static struct isl_hash_table_entry
*isl_union_map_find_entry(
430 __isl_keep isl_union_map
*umap
, __isl_keep isl_space
*space
,
437 if (reserve
&& isl_union_map_check_single_reference(umap
) < 0)
440 hash
= isl_space_get_tuple_hash(space
);
441 return isl_hash_table_find(isl_union_map_get_ctx(umap
), &umap
->table
,
442 hash
, &has_space_tuples
, space
, reserve
);
445 /* Find the entry in "uset" with space "space" (ignoring parameters),
446 * returning isl_hash_table_entry_none if no such entry appears in "uset" and
448 * If "reserve" is set, then an entry is created if it does
449 * not exist already. In this case, a NULL return indicates an error.
451 struct isl_hash_table_entry
*isl_union_set_find_entry(
452 __isl_keep isl_union_set
*uset
, __isl_keep isl_space
*space
,
455 return isl_union_map_find_entry(uset_to_umap(uset
), space
, reserve
);
458 __isl_give isl_union_map
*isl_union_map_add_map(__isl_take isl_union_map
*umap
,
459 __isl_take isl_map
*map
)
461 struct isl_hash_table_entry
*entry
;
468 if (isl_map_plain_is_empty(map
)) {
473 aligned
= isl_map_space_has_equal_params(map
, umap
->dim
);
477 umap
= isl_union_map_align_params(umap
, isl_map_get_space(map
));
478 map
= isl_map_align_params(map
, isl_union_map_get_space(umap
));
481 umap
= isl_union_map_cow(umap
);
483 space
= isl_map_peek_space(map
);
484 entry
= isl_union_map_find_entry(umap
, space
, 1);
491 entry
->data
= isl_map_union(entry
->data
, isl_map_copy(map
));
500 isl_union_map_free(umap
);
504 __isl_give isl_union_set
*isl_union_set_add_set(__isl_take isl_union_set
*uset
,
505 __isl_take isl_set
*set
)
507 return isl_union_map_add_map(uset
, set_to_map(set
));
510 __isl_give isl_union_map
*isl_union_map_from_map(__isl_take isl_map
*map
)
518 space
= isl_map_get_space(map
);
519 space
= isl_space_params(space
);
520 umap
= isl_union_map_empty(space
);
521 umap
= isl_union_map_add_map(umap
, map
);
526 /* This function performs the same operation as isl_union_map_from_map,
527 * but is considered as a function on an isl_map when exported.
529 __isl_give isl_union_map
*isl_map_to_union_map(__isl_take isl_map
*map
)
531 return isl_union_map_from_map(map
);
534 __isl_give isl_union_set
*isl_union_set_from_set(__isl_take isl_set
*set
)
536 return isl_union_map_from_map(set_to_map(set
));
539 /* This function performs the same operation as isl_union_set_from_set,
540 * but is considered as a function on an isl_set when exported.
542 __isl_give isl_union_set
*isl_set_to_union_set(__isl_take isl_set
*set
)
544 return isl_union_set_from_set(set
);
547 __isl_give isl_union_map
*isl_union_map_from_basic_map(
548 __isl_take isl_basic_map
*bmap
)
550 return isl_union_map_from_map(isl_map_from_basic_map(bmap
));
553 __isl_give isl_union_set
*isl_union_set_from_basic_set(
554 __isl_take isl_basic_set
*bset
)
556 return isl_union_map_from_basic_map(bset
);
559 struct isl_union_map_foreach_data
561 isl_stat (*fn
)(__isl_take isl_map
*map
, void *user
);
565 static isl_stat
call_on_copy(void **entry
, void *user
)
567 isl_map
*map
= *entry
;
568 struct isl_union_map_foreach_data
*data
;
569 data
= (struct isl_union_map_foreach_data
*)user
;
571 return data
->fn(isl_map_copy(map
), data
->user
);
574 isl_size
isl_union_map_n_map(__isl_keep isl_union_map
*umap
)
576 return umap
? umap
->table
.n
: isl_size_error
;
579 isl_size
isl_union_set_n_set(__isl_keep isl_union_set
*uset
)
581 return uset
? uset
->table
.n
: isl_size_error
;
584 isl_stat
isl_union_map_foreach_map(__isl_keep isl_union_map
*umap
,
585 isl_stat (*fn
)(__isl_take isl_map
*map
, void *user
), void *user
)
587 struct isl_union_map_foreach_data data
= { fn
, user
};
590 return isl_stat_error
;
592 return isl_hash_table_foreach(umap
->dim
->ctx
, &umap
->table
,
593 &call_on_copy
, &data
);
596 /* Internal data structure for isl_union_map_every_map.
598 * "test" is the user-specified callback function.
599 * "user" is the user-specified callback function argument.
601 * "failed" is initialized to 0 and set to 1 if "test" fails
604 struct isl_union_map_every_data
{
605 isl_bool (*test
)(__isl_keep isl_map
*map
, void *user
);
610 /* Call data->test on "map".
611 * If this fails, then set data->failed and abort.
613 static isl_stat
call_every(void **entry
, void *user
)
615 isl_map
*map
= *entry
;
616 struct isl_union_map_every_data
*data
= user
;
619 r
= data
->test(map
, data
->user
);
621 return isl_stat_error
;
625 return isl_stat_error
;
628 /* Does "test" succeed on every map in "umap"?
630 isl_bool
isl_union_map_every_map(__isl_keep isl_union_map
*umap
,
631 isl_bool (*test
)(__isl_keep isl_map
*map
, void *user
), void *user
)
633 struct isl_union_map_every_data data
= { test
, user
, 0 };
637 return isl_bool_error
;
639 r
= isl_hash_table_foreach(isl_union_map_get_ctx(umap
), &umap
->table
,
642 return isl_bool_true
;
644 return isl_bool_false
;
645 return isl_bool_error
;
648 /* Add "map" to "list".
650 static isl_stat
add_list_map(__isl_take isl_map
*map
, void *user
)
652 isl_map_list
**list
= user
;
654 *list
= isl_map_list_add(*list
, map
);
657 return isl_stat_error
;
661 /* Return the maps in "umap" as a list.
663 * First construct a list of the appropriate size and then add all the
666 __isl_give isl_map_list
*isl_union_map_get_map_list(
667 __isl_keep isl_union_map
*umap
)
673 n_maps
= isl_union_map_n_map(umap
);
676 ctx
= isl_union_map_get_ctx(umap
);
677 list
= isl_map_list_alloc(ctx
, n_maps
);
679 if (isl_union_map_foreach_map(umap
, &add_list_map
, &list
) < 0)
680 list
= isl_map_list_free(list
);
685 /* Return the sets in "uset" as a list.
687 __isl_give isl_set_list
*isl_union_set_get_set_list(
688 __isl_keep isl_union_set
*uset
)
690 return set_list_from_map_list(
691 isl_union_map_get_map_list(uset_to_umap(uset
)));
694 /* Can "umap" be converted to an isl_map?
695 * That is, does it contain elements in exactly one space?
697 isl_bool
isl_union_map_isa_map(__isl_keep isl_union_map
*umap
)
701 n
= isl_union_map_n_map(umap
);
703 return isl_bool_error
;
704 return isl_bool_ok(n
== 1);
707 /* Can "uset" be converted to an isl_set?
708 * That is, does it contain elements in exactly one space?
710 isl_bool
isl_union_set_isa_set(__isl_keep isl_union_set
*uset
)
712 return isl_union_map_isa_map(uset_to_umap(uset
));
715 static isl_stat
copy_map(void **entry
, void *user
)
717 isl_map
*map
= *entry
;
718 isl_map
**map_p
= user
;
720 *map_p
= isl_map_copy(map
);
722 return isl_stat_error
;
725 __isl_give isl_map
*isl_map_from_union_map(__isl_take isl_union_map
*umap
)
731 is_map
= isl_union_map_isa_map(umap
);
734 ctx
= isl_union_map_get_ctx(umap
);
736 isl_die(ctx
, isl_error_invalid
,
737 "union map needs to contain elements in exactly "
738 "one space", goto error
);
740 isl_hash_table_foreach(ctx
, &umap
->table
, ©_map
, &map
);
742 isl_union_map_free(umap
);
746 isl_union_map_free(umap
);
750 /* This function performs the same operation as isl_map_from_union_map,
751 * but is considered as a function on an isl_union_map when exported.
753 __isl_give isl_map
*isl_union_map_as_map(__isl_take isl_union_map
*umap
)
755 return isl_map_from_union_map(umap
);
758 __isl_give isl_set
*isl_set_from_union_set(__isl_take isl_union_set
*uset
)
760 return isl_map_from_union_map(uset
);
763 /* This function performs the same operation as isl_set_from_union_set,
764 * but is considered as a function on an isl_union_set when exported.
766 __isl_give isl_set
*isl_union_set_as_set(__isl_take isl_union_set
*uset
)
768 return isl_set_from_union_set(uset
);
771 /* Extract the map in "umap" that lives in the given space (ignoring
774 __isl_give isl_map
*isl_union_map_extract_map(__isl_keep isl_union_map
*umap
,
775 __isl_take isl_space
*space
)
777 struct isl_hash_table_entry
*entry
;
779 entry
= isl_union_map_find_entry(umap
, space
, 0);
782 if (entry
== isl_hash_table_entry_none
)
783 return isl_map_empty(space
);
784 isl_space_free(space
);
785 return isl_map_copy(entry
->data
);
787 isl_space_free(space
);
791 __isl_give isl_set
*isl_union_set_extract_set(__isl_keep isl_union_set
*uset
,
792 __isl_take isl_space
*space
)
794 return set_from_map(isl_union_map_extract_map(uset
, space
));
797 /* Check if umap contains a map in the given space (ignoring parameters).
799 isl_bool
isl_union_map_contains(__isl_keep isl_union_map
*umap
,
800 __isl_keep isl_space
*space
)
802 struct isl_hash_table_entry
*entry
;
804 space
= isl_space_drop_all_params(isl_space_copy(space
));
805 space
= isl_space_align_params(space
, isl_union_map_get_space(umap
));
806 entry
= isl_union_map_find_entry(umap
, space
, 0);
807 isl_space_free(space
);
809 return isl_bool_error
;
810 return isl_bool_ok(entry
!= isl_hash_table_entry_none
);
813 isl_bool
isl_union_set_contains(__isl_keep isl_union_set
*uset
,
814 __isl_keep isl_space
*space
)
816 return isl_union_map_contains(uset
, space
);
819 isl_stat
isl_union_set_foreach_set(__isl_keep isl_union_set
*uset
,
820 isl_stat (*fn
)(__isl_take isl_set
*set
, void *user
), void *user
)
822 return isl_union_map_foreach_map(uset
,
823 (isl_stat(*)(__isl_take isl_map
*, void*))fn
, user
);
826 /* Internal data structure for isl_union_set_every_set.
828 * "test" is the user-specified callback function.
829 * "user" is the user-specified callback function argument.
831 struct isl_test_set_from_map_data
{
832 isl_bool (*test
)(__isl_keep isl_set
*set
, void *user
);
836 /* Call data->test on "map", which is part of an isl_union_set and
837 * therefore known to be an isl_set.
839 static isl_bool
test_set_from_map(__isl_keep isl_map
*map
, void *user
)
841 struct isl_test_set_from_map_data
*data
= user
;
843 return data
->test(set_from_map(map
), data
->user
);
846 /* Does "test" succeed on every set in "uset"?
848 isl_bool
isl_union_set_every_set(__isl_keep isl_union_set
*uset
,
849 isl_bool (*test
)(__isl_keep isl_set
*set
, void *user
), void *user
)
851 struct isl_test_set_from_map_data data
= { test
, user
};
853 return isl_union_map_every_map(uset_to_umap(uset
),
854 &test_set_from_map
, &data
);
857 struct isl_union_set_foreach_point_data
{
858 isl_stat (*fn
)(__isl_take isl_point
*pnt
, void *user
);
862 static isl_stat
foreach_point(__isl_take isl_set
*set
, void *user
)
864 struct isl_union_set_foreach_point_data
*data
= user
;
867 r
= isl_set_foreach_point(set
, data
->fn
, data
->user
);
873 isl_stat
isl_union_set_foreach_point(__isl_keep isl_union_set
*uset
,
874 isl_stat (*fn
)(__isl_take isl_point
*pnt
, void *user
), void *user
)
876 struct isl_union_set_foreach_point_data data
= { fn
, user
};
877 return isl_union_set_foreach_set(uset
, &foreach_point
, &data
);
880 /* Data structure that specifies how gen_bin_op should
881 * construct results from the inputs.
883 * If "subtract" is set, then a map in the first input is copied to the result
884 * if there is no corresponding map in the second input.
885 * Otherwise, a map in the first input with no corresponding map
886 * in the second input is ignored.
887 * If "filter" is not NULL, then it specifies which maps in the first
888 * input may have a matching map in the second input.
889 * In particular, it makes sure that "match_space" can be called
890 * on the space of the map.
891 * "match_space" specifies how to transform the space of a map
892 * in the first input to the space of the corresponding map
893 * in the second input.
894 * "fn_map" specifies how the matching maps, one from each input,
895 * should be combined to form a map in the result.
897 struct isl_bin_op_control
{
899 isl_bool (*filter
)(__isl_keep isl_map
*map
);
900 __isl_give isl_space
*(*match_space
)(__isl_take isl_space
*space
);
901 __isl_give isl_map
*(*fn_map
)(__isl_take isl_map
*map1
,
902 __isl_take isl_map
*map2
);
905 /* Internal data structure for gen_bin_op.
906 * "control" specifies how the maps in the result should be constructed.
907 * "umap2" is a pointer to the second argument.
908 * "res" collects the results.
910 struct isl_union_map_gen_bin_data
{
911 struct isl_bin_op_control
*control
;
912 isl_union_map
*umap2
;
916 /* Add a copy of "map" to "res" and return the result.
918 static __isl_give isl_union_map
*bin_add_map(__isl_take isl_union_map
*res
,
919 __isl_keep isl_map
*map
)
921 return isl_union_map_add_map(res
, isl_map_copy(map
));
924 /* Combine "map1" and "map2", add the result to "res" and return the result.
925 * Check whether the result is empty before adding it to "res".
927 static __isl_give isl_union_map
*bin_add_pair(__isl_take isl_union_map
*res
,
928 __isl_keep isl_map
*map1
, __isl_keep isl_map
*map2
,
929 struct isl_union_map_gen_bin_data
*data
)
934 map
= data
->control
->fn_map(isl_map_copy(map1
), isl_map_copy(map2
));
935 empty
= isl_map_is_empty(map
);
936 if (empty
< 0 || empty
) {
939 return isl_union_map_free(res
);
942 return isl_union_map_add_map(res
, map
);
945 /* Dummy match_space function that simply returns the input space.
947 static __isl_give isl_space
*identity(__isl_take isl_space
*space
)
952 /* Look for the map in data->umap2 that corresponds to "map", if any.
953 * Return (isl_bool_true, matching map) if there is one,
954 * (isl_bool_false, NULL) if there is no matching map and
955 * (isl_bool_error, NULL) on error.
957 * If not NULL, then data->control->filter specifies whether "map"
958 * can have any matching map. If so,
959 * data->control->match_space specifies which map in data->umap2
960 * corresponds to "map".
962 static __isl_keep isl_maybe_isl_map
bin_try_get_match(
963 struct isl_union_map_gen_bin_data
*data
, __isl_keep isl_map
*map
)
965 struct isl_hash_table_entry
*entry2
;
967 isl_maybe_isl_map res
= { isl_bool_error
, NULL
};
969 if (data
->control
->filter
) {
970 res
.valid
= data
->control
->filter(map
);
971 if (res
.valid
< 0 || !res
.valid
)
973 res
.valid
= isl_bool_error
;
976 space
= isl_map_get_space(map
);
977 if (data
->control
->match_space
!= &identity
)
978 space
= data
->control
->match_space(space
);
979 entry2
= isl_union_map_find_entry(data
->umap2
, space
, 0);
980 isl_space_free(space
);
982 res
.valid
= isl_bool_ok(entry2
!= isl_hash_table_entry_none
);
983 if (res
.valid
>= 0 && res
.valid
)
984 res
.value
= entry2
->data
;
989 /* isl_hash_table_foreach callback for gen_bin_op.
990 * Look for the map in data->umap2 that corresponds
991 * to the map that "entry" points to, apply the binary operation and
992 * add the result to data->res.
994 * If no corresponding map can be found, then the effect depends
995 * on data->control->subtract. If it is set, then the current map
996 * is added directly to the result. Otherwise, it is ignored.
998 static isl_stat
gen_bin_entry(void **entry
, void *user
)
1000 struct isl_union_map_gen_bin_data
*data
= user
;
1001 isl_map
*map
= *entry
;
1002 isl_maybe_isl_map m
;
1004 m
= bin_try_get_match(data
, map
);
1006 return isl_stat_error
;
1007 if (!m
.valid
&& !data
->control
->subtract
)
1011 data
->res
= bin_add_map(data
->res
, map
);
1013 data
->res
= bin_add_pair(data
->res
, map
, m
.value
, data
);
1015 return isl_stat_error
;
1020 /* Apply a binary operation to "umap1" and "umap2" based on "control".
1021 * Run over all maps in "umap1" and look for the corresponding map in "umap2"
1024 static __isl_give isl_union_map
*gen_bin_op(__isl_take isl_union_map
*umap1
,
1025 __isl_take isl_union_map
*umap2
, struct isl_bin_op_control
*control
)
1027 struct isl_union_map_gen_bin_data data
= { control
, NULL
, NULL
};
1029 umap1
= isl_union_map_align_params(umap1
, isl_union_map_get_space(umap2
));
1030 umap2
= isl_union_map_align_params(umap2
, isl_union_map_get_space(umap1
));
1032 if (!umap1
|| !umap2
)
1036 data
.res
= isl_union_map_alloc(isl_space_copy(umap1
->dim
),
1038 if (isl_hash_table_foreach(umap1
->dim
->ctx
, &umap1
->table
,
1039 &gen_bin_entry
, &data
) < 0)
1042 isl_union_map_free(umap1
);
1043 isl_union_map_free(umap2
);
1046 isl_union_map_free(umap1
);
1047 isl_union_map_free(umap2
);
1048 isl_union_map_free(data
.res
);
1052 __isl_give isl_union_map
*isl_union_map_subtract(
1053 __isl_take isl_union_map
*umap1
, __isl_take isl_union_map
*umap2
)
1055 struct isl_bin_op_control control
= {
1057 .match_space
= &identity
,
1058 .fn_map
= &isl_map_subtract
,
1061 return gen_bin_op(umap1
, umap2
, &control
);
1064 __isl_give isl_union_set
*isl_union_set_subtract(
1065 __isl_take isl_union_set
*uset1
, __isl_take isl_union_set
*uset2
)
1067 return isl_union_map_subtract(uset1
, uset2
);
1070 struct isl_union_map_gen_bin_set_data
{
1075 static isl_stat
intersect_params_entry(void **entry
, void *user
)
1077 struct isl_union_map_gen_bin_set_data
*data
= user
;
1078 isl_map
*map
= *entry
;
1081 map
= isl_map_copy(map
);
1082 map
= isl_map_intersect_params(map
, isl_set_copy(data
->set
));
1084 empty
= isl_map_is_empty(map
);
1087 return isl_stat_error
;
1090 data
->res
= isl_union_map_add_map(data
->res
, map
);
1095 static __isl_give isl_union_map
*gen_bin_set_op(__isl_take isl_union_map
*umap
,
1096 __isl_take isl_set
*set
, isl_stat (*fn
)(void **, void *))
1098 struct isl_union_map_gen_bin_set_data data
= { NULL
, NULL
};
1100 umap
= isl_union_map_align_params(umap
, isl_set_get_space(set
));
1101 set
= isl_set_align_params(set
, isl_union_map_get_space(umap
));
1107 data
.res
= isl_union_map_alloc(isl_space_copy(umap
->dim
),
1109 if (isl_hash_table_foreach(umap
->dim
->ctx
, &umap
->table
,
1113 isl_union_map_free(umap
);
1117 isl_union_map_free(umap
);
1119 isl_union_map_free(data
.res
);
1123 /* Intersect "umap" with the parameter domain "set".
1125 * If "set" does not have any constraints, then we can return immediately.
1127 __isl_give isl_union_map
*isl_union_map_intersect_params(
1128 __isl_take isl_union_map
*umap
, __isl_take isl_set
*set
)
1132 is_universe
= isl_set_plain_is_universe(set
);
1133 if (is_universe
< 0)
1140 return gen_bin_set_op(umap
, set
, &intersect_params_entry
);
1142 isl_union_map_free(umap
);
1147 __isl_give isl_union_set
*isl_union_set_intersect_params(
1148 __isl_take isl_union_set
*uset
, __isl_take isl_set
*set
)
1150 return isl_union_map_intersect_params(uset
, set
);
1153 static __isl_give isl_union_map
*union_map_intersect_params(
1154 __isl_take isl_union_map
*umap
, __isl_take isl_union_set
*uset
)
1156 return isl_union_map_intersect_params(umap
,
1157 isl_set_from_union_set(uset
));
1160 static __isl_give isl_union_map
*union_map_gist_params(
1161 __isl_take isl_union_map
*umap
, __isl_take isl_union_set
*uset
)
1163 return isl_union_map_gist_params(umap
, isl_set_from_union_set(uset
));
1166 struct isl_union_map_match_bin_data
{
1167 isl_union_map
*umap2
;
1169 __isl_give isl_map
*(*fn
)(__isl_take isl_map
*, __isl_take isl_map
*);
1172 static isl_stat
match_bin_entry(void **entry
, void *user
)
1174 struct isl_union_map_match_bin_data
*data
= user
;
1175 struct isl_hash_table_entry
*entry2
;
1177 isl_map
*map
= *entry
;
1180 space
= isl_map_peek_space(map
);
1181 entry2
= isl_union_map_find_entry(data
->umap2
, space
, 0);
1183 return isl_stat_error
;
1184 if (entry2
== isl_hash_table_entry_none
)
1187 map
= isl_map_copy(map
);
1188 map
= data
->fn(map
, isl_map_copy(entry2
->data
));
1190 empty
= isl_map_is_empty(map
);
1193 return isl_stat_error
;
1200 data
->res
= isl_union_map_add_map(data
->res
, map
);
1205 static __isl_give isl_union_map
*match_bin_op(__isl_take isl_union_map
*umap1
,
1206 __isl_take isl_union_map
*umap2
,
1207 __isl_give isl_map
*(*fn
)(__isl_take isl_map
*, __isl_take isl_map
*))
1209 struct isl_union_map_match_bin_data data
= { NULL
, NULL
, fn
};
1211 umap1
= isl_union_map_align_params(umap1
, isl_union_map_get_space(umap2
));
1212 umap2
= isl_union_map_align_params(umap2
, isl_union_map_get_space(umap1
));
1214 if (!umap1
|| !umap2
)
1218 data
.res
= isl_union_map_alloc(isl_space_copy(umap1
->dim
),
1220 if (isl_hash_table_foreach(umap1
->dim
->ctx
, &umap1
->table
,
1221 &match_bin_entry
, &data
) < 0)
1224 isl_union_map_free(umap1
);
1225 isl_union_map_free(umap2
);
1228 isl_union_map_free(umap1
);
1229 isl_union_map_free(umap2
);
1230 isl_union_map_free(data
.res
);
1234 __isl_give isl_union_map
*isl_union_map_intersect(
1235 __isl_take isl_union_map
*umap1
, __isl_take isl_union_map
*umap2
)
1237 return match_bin_op(umap1
, umap2
, &isl_map_intersect
);
1240 /* Compute the intersection of the two union_sets.
1241 * As a special case, if exactly one of the two union_sets
1242 * is a parameter domain, then intersect the parameter domain
1243 * of the other one with this set.
1245 __isl_give isl_union_set
*isl_union_set_intersect(
1246 __isl_take isl_union_set
*uset1
, __isl_take isl_union_set
*uset2
)
1250 p1
= isl_union_set_is_params(uset1
);
1251 p2
= isl_union_set_is_params(uset2
);
1252 if (p1
< 0 || p2
< 0)
1255 return union_map_intersect_params(uset1
, uset2
);
1257 return union_map_intersect_params(uset2
, uset1
);
1258 return isl_union_map_intersect(uset1
, uset2
);
1260 isl_union_set_free(uset1
);
1261 isl_union_set_free(uset2
);
1265 static isl_stat
gist_params_entry(void **entry
, void *user
)
1267 struct isl_union_map_gen_bin_set_data
*data
= user
;
1268 isl_map
*map
= *entry
;
1271 map
= isl_map_copy(map
);
1272 map
= isl_map_gist_params(map
, isl_set_copy(data
->set
));
1274 empty
= isl_map_is_empty(map
);
1277 return isl_stat_error
;
1280 data
->res
= isl_union_map_add_map(data
->res
, map
);
1285 __isl_give isl_union_map
*isl_union_map_gist_params(
1286 __isl_take isl_union_map
*umap
, __isl_take isl_set
*set
)
1288 return gen_bin_set_op(umap
, set
, &gist_params_entry
);
1291 __isl_give isl_union_set
*isl_union_set_gist_params(
1292 __isl_take isl_union_set
*uset
, __isl_take isl_set
*set
)
1294 return isl_union_map_gist_params(uset
, set
);
1297 __isl_give isl_union_map
*isl_union_map_gist(__isl_take isl_union_map
*umap
,
1298 __isl_take isl_union_map
*context
)
1300 return match_bin_op(umap
, context
, &isl_map_gist
);
1303 __isl_give isl_union_set
*isl_union_set_gist(__isl_take isl_union_set
*uset
,
1304 __isl_take isl_union_set
*context
)
1306 if (isl_union_set_is_params(context
))
1307 return union_map_gist_params(uset
, context
);
1308 return isl_union_map_gist(uset
, context
);
1311 /* For each map in "umap", remove the constraints in the corresponding map
1313 * Each map in "context" is assumed to consist of a single disjunct and
1314 * to have explicit representations for all local variables.
1316 __isl_give isl_union_map
*isl_union_map_plain_gist(
1317 __isl_take isl_union_map
*umap
, __isl_take isl_union_map
*context
)
1319 return match_bin_op(umap
, context
, &isl_map_plain_gist
);
1322 /* For each set in "uset", remove the constraints in the corresponding set
1324 * Each set in "context" is assumed to consist of a single disjunct and
1325 * to have explicit representations for all local variables.
1327 __isl_give isl_union_set
*isl_union_set_plain_gist(
1328 __isl_take isl_union_set
*uset
, __isl_take isl_union_set
*context
)
1330 return isl_union_map_plain_gist(uset
, context
);
1333 static __isl_give isl_map
*lex_le_set(__isl_take isl_map
*set1
,
1334 __isl_take isl_map
*set2
)
1336 return isl_set_lex_le_set(set_from_map(set1
), set_from_map(set2
));
1339 static __isl_give isl_map
*lex_lt_set(__isl_take isl_map
*set1
,
1340 __isl_take isl_map
*set2
)
1342 return isl_set_lex_lt_set(set_from_map(set1
), set_from_map(set2
));
1345 __isl_give isl_union_map
*isl_union_set_lex_lt_union_set(
1346 __isl_take isl_union_set
*uset1
, __isl_take isl_union_set
*uset2
)
1348 return match_bin_op(uset1
, uset2
, &lex_lt_set
);
1351 __isl_give isl_union_map
*isl_union_set_lex_le_union_set(
1352 __isl_take isl_union_set
*uset1
, __isl_take isl_union_set
*uset2
)
1354 return match_bin_op(uset1
, uset2
, &lex_le_set
);
1357 __isl_give isl_union_map
*isl_union_set_lex_gt_union_set(
1358 __isl_take isl_union_set
*uset1
, __isl_take isl_union_set
*uset2
)
1360 return isl_union_map_reverse(isl_union_set_lex_lt_union_set(uset2
, uset1
));
1363 __isl_give isl_union_map
*isl_union_set_lex_ge_union_set(
1364 __isl_take isl_union_set
*uset1
, __isl_take isl_union_set
*uset2
)
1366 return isl_union_map_reverse(isl_union_set_lex_le_union_set(uset2
, uset1
));
1369 __isl_give isl_union_map
*isl_union_map_lex_gt_union_map(
1370 __isl_take isl_union_map
*umap1
, __isl_take isl_union_map
*umap2
)
1372 return isl_union_map_reverse(isl_union_map_lex_lt_union_map(umap2
, umap1
));
1375 __isl_give isl_union_map
*isl_union_map_lex_ge_union_map(
1376 __isl_take isl_union_map
*umap1
, __isl_take isl_union_map
*umap2
)
1378 return isl_union_map_reverse(isl_union_map_lex_le_union_map(umap2
, umap1
));
1381 /* Intersect the domain of "umap" with "uset".
1383 static __isl_give isl_union_map
*union_map_intersect_domain(
1384 __isl_take isl_union_map
*umap
, __isl_take isl_union_set
*uset
)
1386 struct isl_bin_op_control control
= {
1387 .match_space
= &isl_space_domain
,
1388 .fn_map
= &isl_map_intersect_domain
,
1391 return gen_bin_op(umap
, uset
, &control
);
1394 /* Intersect the domain of "umap" with "uset".
1395 * If "uset" is a parameters domain, then intersect the parameter
1396 * domain of "umap" with this set.
1398 __isl_give isl_union_map
*isl_union_map_intersect_domain_union_set(
1399 __isl_take isl_union_map
*umap
, __isl_take isl_union_set
*uset
)
1401 if (isl_union_set_is_params(uset
))
1402 return union_map_intersect_params(umap
, uset
);
1404 return union_map_intersect_domain(umap
, uset
);
1407 /* This is an alternative name for the function above.
1409 __isl_give isl_union_map
*isl_union_map_intersect_domain(
1410 __isl_take isl_union_map
*umap
, __isl_take isl_union_set
*uset
)
1412 return isl_union_map_intersect_domain_union_set(umap
, uset
);
1415 /* Remove the elements of "uset" from the domain of "umap".
1417 __isl_give isl_union_map
*isl_union_map_subtract_domain(
1418 __isl_take isl_union_map
*umap
, __isl_take isl_union_set
*dom
)
1420 struct isl_bin_op_control control
= {
1422 .match_space
= &isl_space_domain
,
1423 .fn_map
= &isl_map_subtract_domain
,
1426 return gen_bin_op(umap
, dom
, &control
);
1429 /* Remove the elements of "uset" from the range of "umap".
1431 __isl_give isl_union_map
*isl_union_map_subtract_range(
1432 __isl_take isl_union_map
*umap
, __isl_take isl_union_set
*dom
)
1434 struct isl_bin_op_control control
= {
1436 .match_space
= &isl_space_range
,
1437 .fn_map
= &isl_map_subtract_range
,
1440 return gen_bin_op(umap
, dom
, &control
);
1443 /* Compute the gist of "umap" with respect to the domain "uset".
1445 static __isl_give isl_union_map
*union_map_gist_domain(
1446 __isl_take isl_union_map
*umap
, __isl_take isl_union_set
*uset
)
1448 struct isl_bin_op_control control
= {
1449 .match_space
= &isl_space_domain
,
1450 .fn_map
= &isl_map_gist_domain
,
1453 return gen_bin_op(umap
, uset
, &control
);
1456 /* Compute the gist of "umap" with respect to the domain "uset".
1457 * If "uset" is a parameters domain, then compute the gist
1458 * with respect to this parameter domain.
1460 __isl_give isl_union_map
*isl_union_map_gist_domain(
1461 __isl_take isl_union_map
*umap
, __isl_take isl_union_set
*uset
)
1463 if (isl_union_set_is_params(uset
))
1464 return union_map_gist_params(umap
, uset
);
1466 return union_map_gist_domain(umap
, uset
);
1469 /* Compute the gist of "umap" with respect to the range "uset".
1471 __isl_give isl_union_map
*isl_union_map_gist_range(
1472 __isl_take isl_union_map
*umap
, __isl_take isl_union_set
*uset
)
1474 struct isl_bin_op_control control
= {
1475 .match_space
= &isl_space_range
,
1476 .fn_map
= &isl_map_gist_range
,
1479 return gen_bin_op(umap
, uset
, &control
);
1482 __isl_give isl_union_map
*isl_union_map_intersect_range_union_set(
1483 __isl_take isl_union_map
*umap
, __isl_take isl_union_set
*uset
)
1485 struct isl_bin_op_control control
= {
1486 .match_space
= &isl_space_range
,
1487 .fn_map
= &isl_map_intersect_range
,
1490 return gen_bin_op(umap
, uset
, &control
);
1493 /* This is an alternative name for the function above.
1495 __isl_give isl_union_map
*isl_union_map_intersect_range(
1496 __isl_take isl_union_map
*umap
, __isl_take isl_union_set
*uset
)
1498 return isl_union_map_intersect_range_union_set(umap
, uset
);
1501 /* Intersect each map in "umap" in a space [A -> B] -> C
1502 * with the corresponding map in "factor" in the space A -> C and
1503 * collect the results.
1505 __isl_give isl_union_map
*isl_union_map_intersect_domain_factor_domain(
1506 __isl_take isl_union_map
*umap
, __isl_take isl_union_map
*factor
)
1508 struct isl_bin_op_control control
= {
1509 .filter
= &isl_map_domain_is_wrapping
,
1510 .match_space
= &isl_space_domain_factor_domain
,
1511 .fn_map
= &isl_map_intersect_domain_factor_domain
,
1514 return gen_bin_op(umap
, factor
, &control
);
1517 /* Intersect each map in "umap" in a space [A -> B] -> C
1518 * with the corresponding map in "factor" in the space B -> C and
1519 * collect the results.
1521 __isl_give isl_union_map
*isl_union_map_intersect_domain_factor_range(
1522 __isl_take isl_union_map
*umap
, __isl_take isl_union_map
*factor
)
1524 struct isl_bin_op_control control
= {
1525 .filter
= &isl_map_domain_is_wrapping
,
1526 .match_space
= &isl_space_domain_factor_range
,
1527 .fn_map
= &isl_map_intersect_domain_factor_range
,
1530 return gen_bin_op(umap
, factor
, &control
);
1533 /* Intersect each map in "umap" in a space A -> [B -> C]
1534 * with the corresponding map in "factor" in the space A -> B and
1535 * collect the results.
1537 __isl_give isl_union_map
*isl_union_map_intersect_range_factor_domain(
1538 __isl_take isl_union_map
*umap
, __isl_take isl_union_map
*factor
)
1540 struct isl_bin_op_control control
= {
1541 .filter
= &isl_map_range_is_wrapping
,
1542 .match_space
= &isl_space_range_factor_domain
,
1543 .fn_map
= &isl_map_intersect_range_factor_domain
,
1546 return gen_bin_op(umap
, factor
, &control
);
1549 /* Intersect each map in "umap" in a space A -> [B -> C]
1550 * with the corresponding map in "factor" in the space A -> C and
1551 * collect the results.
1553 __isl_give isl_union_map
*isl_union_map_intersect_range_factor_range(
1554 __isl_take isl_union_map
*umap
, __isl_take isl_union_map
*factor
)
1556 struct isl_bin_op_control control
= {
1557 .filter
= &isl_map_range_is_wrapping
,
1558 .match_space
= &isl_space_range_factor_range
,
1559 .fn_map
= &isl_map_intersect_range_factor_range
,
1562 return gen_bin_op(umap
, factor
, &control
);
1565 struct isl_union_map_bin_data
{
1566 isl_union_map
*umap2
;
1569 isl_stat (*fn
)(void **entry
, void *user
);
1572 static isl_stat
apply_range_entry(void **entry
, void *user
)
1574 struct isl_union_map_bin_data
*data
= user
;
1575 isl_map
*map2
= *entry
;
1576 isl_bool empty
, match
;
1578 match
= isl_map_tuple_is_equal(data
->map
, isl_dim_out
,
1581 return isl_stat_error
;
1585 map2
= isl_map_apply_range(isl_map_copy(data
->map
), isl_map_copy(map2
));
1587 empty
= isl_map_is_empty(map2
);
1590 return isl_stat_error
;
1597 data
->res
= isl_union_map_add_map(data
->res
, map2
);
1602 static isl_stat
bin_entry(void **entry
, void *user
)
1604 struct isl_union_map_bin_data
*data
= user
;
1605 isl_map
*map
= *entry
;
1608 if (isl_hash_table_foreach(data
->umap2
->dim
->ctx
, &data
->umap2
->table
,
1609 data
->fn
, data
) < 0)
1610 return isl_stat_error
;
1615 static __isl_give isl_union_map
*bin_op(__isl_take isl_union_map
*umap1
,
1616 __isl_take isl_union_map
*umap2
,
1617 isl_stat (*fn
)(void **entry
, void *user
))
1619 struct isl_union_map_bin_data data
= { NULL
, NULL
, NULL
, fn
};
1621 umap1
= isl_union_map_align_params(umap1
, isl_union_map_get_space(umap2
));
1622 umap2
= isl_union_map_align_params(umap2
, isl_union_map_get_space(umap1
));
1624 if (!umap1
|| !umap2
)
1628 data
.res
= isl_union_map_alloc(isl_space_copy(umap1
->dim
),
1630 if (isl_hash_table_foreach(umap1
->dim
->ctx
, &umap1
->table
,
1631 &bin_entry
, &data
) < 0)
1634 isl_union_map_free(umap1
);
1635 isl_union_map_free(umap2
);
1638 isl_union_map_free(umap1
);
1639 isl_union_map_free(umap2
);
1640 isl_union_map_free(data
.res
);
1644 /* Intersect each map in "umap" in a space [A -> B] -> C
1645 * with the corresponding set in "domain" in the space A and
1646 * collect the results.
1648 __isl_give isl_union_map
*
1649 isl_union_map_intersect_domain_wrapped_domain_union_set(
1650 __isl_take isl_union_map
*umap
, __isl_take isl_union_set
*domain
)
1652 struct isl_bin_op_control control
= {
1653 .filter
= &isl_map_domain_is_wrapping
,
1654 .match_space
= &isl_space_domain_wrapped_domain
,
1655 .fn_map
= &isl_map_intersect_domain_wrapped_domain
,
1658 return gen_bin_op(umap
, domain
, &control
);
1661 /* Intersect each map in "umap" in a space A -> [B -> C]
1662 * with the corresponding set in "domain" in the space B and
1663 * collect the results.
1665 __isl_give isl_union_map
*
1666 isl_union_map_intersect_range_wrapped_domain_union_set(
1667 __isl_take isl_union_map
*umap
, __isl_take isl_union_set
*domain
)
1669 struct isl_bin_op_control control
= {
1670 .filter
= &isl_map_range_is_wrapping
,
1671 .match_space
= &isl_space_range_wrapped_domain
,
1672 .fn_map
= &isl_map_intersect_range_wrapped_domain
,
1675 return gen_bin_op(umap
, domain
, &control
);
1678 __isl_give isl_union_map
*isl_union_map_apply_range(
1679 __isl_take isl_union_map
*umap1
, __isl_take isl_union_map
*umap2
)
1681 return bin_op(umap1
, umap2
, &apply_range_entry
);
1684 __isl_give isl_union_map
*isl_union_map_apply_domain(
1685 __isl_take isl_union_map
*umap1
, __isl_take isl_union_map
*umap2
)
1687 umap1
= isl_union_map_reverse(umap1
);
1688 umap1
= isl_union_map_apply_range(umap1
, umap2
);
1689 return isl_union_map_reverse(umap1
);
1692 __isl_give isl_union_set
*isl_union_set_apply(
1693 __isl_take isl_union_set
*uset
, __isl_take isl_union_map
*umap
)
1695 return isl_union_map_apply_range(uset
, umap
);
1698 static isl_stat
map_lex_lt_entry(void **entry
, void *user
)
1700 struct isl_union_map_bin_data
*data
= user
;
1701 isl_map
*map2
= *entry
;
1704 match
= isl_map_tuple_is_equal(data
->map
, isl_dim_out
,
1707 return isl_stat_error
;
1711 map2
= isl_map_lex_lt_map(isl_map_copy(data
->map
), isl_map_copy(map2
));
1713 data
->res
= isl_union_map_add_map(data
->res
, map2
);
1718 __isl_give isl_union_map
*isl_union_map_lex_lt_union_map(
1719 __isl_take isl_union_map
*umap1
, __isl_take isl_union_map
*umap2
)
1721 return bin_op(umap1
, umap2
, &map_lex_lt_entry
);
1724 static isl_stat
map_lex_le_entry(void **entry
, void *user
)
1726 struct isl_union_map_bin_data
*data
= user
;
1727 isl_map
*map2
= *entry
;
1730 match
= isl_map_tuple_is_equal(data
->map
, isl_dim_out
,
1733 return isl_stat_error
;
1737 map2
= isl_map_lex_le_map(isl_map_copy(data
->map
), isl_map_copy(map2
));
1739 data
->res
= isl_union_map_add_map(data
->res
, map2
);
1744 __isl_give isl_union_map
*isl_union_map_lex_le_union_map(
1745 __isl_take isl_union_map
*umap1
, __isl_take isl_union_map
*umap2
)
1747 return bin_op(umap1
, umap2
, &map_lex_le_entry
);
1750 static isl_stat
product_entry(void **entry
, void *user
)
1752 struct isl_union_map_bin_data
*data
= user
;
1753 isl_map
*map2
= *entry
;
1755 map2
= isl_map_product(isl_map_copy(data
->map
), isl_map_copy(map2
));
1757 data
->res
= isl_union_map_add_map(data
->res
, map2
);
1762 __isl_give isl_union_map
*isl_union_map_product(__isl_take isl_union_map
*umap1
,
1763 __isl_take isl_union_map
*umap2
)
1765 return bin_op(umap1
, umap2
, &product_entry
);
1768 static isl_stat
set_product_entry(void **entry
, void *user
)
1770 struct isl_union_map_bin_data
*data
= user
;
1771 isl_set
*set2
= *entry
;
1773 set2
= isl_set_product(isl_set_copy(data
->map
), isl_set_copy(set2
));
1775 data
->res
= isl_union_set_add_set(data
->res
, set2
);
1780 __isl_give isl_union_set
*isl_union_set_product(__isl_take isl_union_set
*uset1
,
1781 __isl_take isl_union_set
*uset2
)
1783 return bin_op(uset1
, uset2
, &set_product_entry
);
1786 static isl_stat
domain_product_entry(void **entry
, void *user
)
1788 struct isl_union_map_bin_data
*data
= user
;
1789 isl_map
*map2
= *entry
;
1792 match
= isl_map_tuple_is_equal(data
->map
, isl_dim_out
,
1795 return isl_stat_error
;
1799 map2
= isl_map_domain_product(isl_map_copy(data
->map
),
1800 isl_map_copy(map2
));
1802 data
->res
= isl_union_map_add_map(data
->res
, map2
);
1807 /* Given two maps A -> B and C -> D, construct a map [A -> C] -> (B * D)
1809 __isl_give isl_union_map
*isl_union_map_domain_product(
1810 __isl_take isl_union_map
*umap1
, __isl_take isl_union_map
*umap2
)
1812 return bin_op(umap1
, umap2
, &domain_product_entry
);
1815 static isl_stat
range_product_entry(void **entry
, void *user
)
1817 struct isl_union_map_bin_data
*data
= user
;
1818 isl_map
*map2
= *entry
;
1821 match
= isl_map_tuple_is_equal(data
->map
, isl_dim_in
, map2
, isl_dim_in
);
1823 return isl_stat_error
;
1827 map2
= isl_map_range_product(isl_map_copy(data
->map
),
1828 isl_map_copy(map2
));
1830 data
->res
= isl_union_map_add_map(data
->res
, map2
);
1835 __isl_give isl_union_map
*isl_union_map_range_product(
1836 __isl_take isl_union_map
*umap1
, __isl_take isl_union_map
*umap2
)
1838 return bin_op(umap1
, umap2
, &range_product_entry
);
1841 /* If data->map A -> B and "map2" C -> D have the same range space,
1842 * then add (A, C) -> (B * D) to data->res.
1844 static isl_stat
flat_domain_product_entry(void **entry
, void *user
)
1846 struct isl_union_map_bin_data
*data
= user
;
1847 isl_map
*map2
= *entry
;
1850 match
= isl_map_tuple_is_equal(data
->map
, isl_dim_out
,
1853 return isl_stat_error
;
1857 map2
= isl_map_flat_domain_product(isl_map_copy(data
->map
),
1858 isl_map_copy(map2
));
1860 data
->res
= isl_union_map_add_map(data
->res
, map2
);
1865 /* Given two maps A -> B and C -> D, construct a map (A, C) -> (B * D).
1867 __isl_give isl_union_map
*isl_union_map_flat_domain_product(
1868 __isl_take isl_union_map
*umap1
, __isl_take isl_union_map
*umap2
)
1870 return bin_op(umap1
, umap2
, &flat_domain_product_entry
);
1873 static isl_stat
flat_range_product_entry(void **entry
, void *user
)
1875 struct isl_union_map_bin_data
*data
= user
;
1876 isl_map
*map2
= *entry
;
1879 match
= isl_map_tuple_is_equal(data
->map
, isl_dim_in
, map2
, isl_dim_in
);
1881 return isl_stat_error
;
1885 map2
= isl_map_flat_range_product(isl_map_copy(data
->map
),
1886 isl_map_copy(map2
));
1888 data
->res
= isl_union_map_add_map(data
->res
, map2
);
1893 __isl_give isl_union_map
*isl_union_map_flat_range_product(
1894 __isl_take isl_union_map
*umap1
, __isl_take isl_union_map
*umap2
)
1896 return bin_op(umap1
, umap2
, &flat_range_product_entry
);
1899 /* Data structure that specifies how un_op should modify
1900 * the maps in the union map.
1902 * If "inplace" is set, then the maps in the input union map
1903 * are modified in place. This means that "fn_map" should not
1904 * change the meaning of the map or that the union map only
1905 * has a single reference.
1906 * If "total" is set, then all maps need to be modified and
1907 * the results need to live in the same space.
1908 * Otherwise, a new union map is constructed to store the results.
1909 * If "filter" is not NULL, then only the input maps that satisfy "filter"
1910 * are taken into account. "filter_user" is passed as the second argument
1911 * to "filter". No filter can be set if "inplace" or
1913 * At most one of "fn_map" or "fn_map2" can be set, specifying
1914 * how the maps (selected by "filter") should be transformed.
1915 * If "fn_map2" is set, then "fn_map2_user" is passed as the second argument.
1917 struct isl_un_op_control
{
1920 isl_bool (*filter
)(__isl_keep isl_map
*map
, void *user
);
1922 __isl_give isl_map
*(*fn_map
)(__isl_take isl_map
*map
);
1923 __isl_give isl_map
*(*fn_map2
)(__isl_take isl_map
*map
, void *user
);
1927 /* Data structure for wrapping the data for un_op_filter_drop_user.
1928 * "filter" is the function that is being wrapped.
1930 struct isl_un_op_drop_user_data
{
1931 isl_bool (*filter
)(__isl_keep isl_map
*map
);
1934 /* Wrapper for isl_un_op_control filters that do not require
1935 * a second argument.
1936 * Simply call data->filter without the second argument.
1938 static isl_bool
un_op_filter_drop_user(__isl_keep isl_map
*map
, void *user
)
1940 struct isl_un_op_drop_user_data
*data
= user
;
1941 return data
->filter(map
);
1944 /* Internal data structure for "un_op".
1945 * "control" specifies how the maps in the union map should be modified.
1946 * "res" collects the results.
1948 struct isl_union_map_un_data
{
1949 struct isl_un_op_control
*control
;
1953 /* isl_hash_table_foreach callback for un_op.
1954 * Handle the map that "entry" points to.
1956 * If control->filter is set, then check if this map satisfies the filter.
1957 * If so (or if control->filter is not set), modify the map
1958 * by calling control->fn_map or control->fn_map2 (if set) and
1959 * either add the result to data->res or
1960 * replace the original entry by the result (if control->inplace is set).
1962 static isl_stat
un_entry(void **entry
, void *user
)
1964 struct isl_union_map_un_data
*data
= user
;
1965 struct isl_un_op_control
*control
= data
->control
;
1966 isl_map
*map
= *entry
;
1968 if (control
->filter
) {
1971 ok
= control
->filter(map
, control
->filter_user
);
1973 return isl_stat_error
;
1978 map
= isl_map_copy(map
);
1979 if (control
->fn_map2
!= NULL
)
1980 map
= control
->fn_map2(map
, control
->fn_map2_user
);
1981 else if (control
->fn_map
!= NULL
)
1982 map
= control
->fn_map(map
);
1984 return isl_stat_error
;
1985 if (control
->inplace
) {
1986 isl_map_free(*entry
);
1989 data
->res
= isl_union_map_add_map(data
->res
, map
);
1991 return isl_stat_error
;
1997 /* Modify the maps in "umap" based on "control".
1998 * If control->inplace is set, then modify the maps in "umap" in-place.
1999 * Otherwise, create a new union map to hold the results.
2000 * If control->total is set, then perform an inplace computation
2001 * if "umap" is only referenced once. Otherwise, create a new union map
2002 * to store the results.
2004 static __isl_give isl_union_map
*un_op(__isl_take isl_union_map
*umap
,
2005 struct isl_un_op_control
*control
)
2007 struct isl_union_map_un_data data
= { control
};
2011 if (!!control
->fn_map
&& !!control
->fn_map2
)
2012 isl_die(isl_union_map_get_ctx(umap
), isl_error_internal
,
2013 "at most one mapping function can be specified",
2014 return isl_union_map_free(umap
));
2015 if ((control
->inplace
|| control
->total
) && control
->filter
)
2016 isl_die(isl_union_map_get_ctx(umap
), isl_error_invalid
,
2017 "inplace/total modification cannot be filtered",
2018 return isl_union_map_free(umap
));
2020 if (control
->total
&& umap
->ref
== 1)
2021 control
->inplace
= 1;
2022 if (control
->inplace
) {
2027 space
= isl_union_map_get_space(umap
);
2028 data
.res
= isl_union_map_alloc(space
, umap
->table
.n
);
2030 if (isl_hash_table_foreach(isl_union_map_get_ctx(umap
),
2031 &umap
->table
, &un_entry
, &data
) < 0)
2032 data
.res
= isl_union_map_free(data
.res
);
2034 if (control
->inplace
)
2036 isl_union_map_free(umap
);
2040 __isl_give isl_union_map
*isl_union_map_from_range(
2041 __isl_take isl_union_set
*uset
)
2043 struct isl_un_op_control control
= {
2044 .fn_map
= &isl_map_from_range
,
2046 return un_op(uset
, &control
);
2049 __isl_give isl_union_map
*isl_union_map_from_domain(
2050 __isl_take isl_union_set
*uset
)
2052 return isl_union_map_reverse(isl_union_map_from_range(uset
));
2055 __isl_give isl_union_map
*isl_union_map_from_domain_and_range(
2056 __isl_take isl_union_set
*domain
, __isl_take isl_union_set
*range
)
2058 return isl_union_map_apply_range(isl_union_map_from_domain(domain
),
2059 isl_union_map_from_range(range
));
2062 /* Modify the maps in "umap" by applying "fn" on them.
2063 * "fn" should apply to all maps in "umap" and should not modify the space.
2065 static __isl_give isl_union_map
*total(__isl_take isl_union_map
*umap
,
2066 __isl_give isl_map
*(*fn
)(__isl_take isl_map
*))
2068 struct isl_un_op_control control
= {
2073 return un_op(umap
, &control
);
2076 /* Compute the affine hull of "map" and return the result as an isl_map.
2078 static __isl_give isl_map
*isl_map_affine_hull_map(__isl_take isl_map
*map
)
2080 return isl_map_from_basic_map(isl_map_affine_hull(map
));
2083 __isl_give isl_union_map
*isl_union_map_affine_hull(
2084 __isl_take isl_union_map
*umap
)
2086 return total(umap
, &isl_map_affine_hull_map
);
2089 __isl_give isl_union_set
*isl_union_set_affine_hull(
2090 __isl_take isl_union_set
*uset
)
2092 return isl_union_map_affine_hull(uset
);
2095 /* Wrapper around isl_set_combined_lineality_space
2096 * that returns the combined lineality space in the form of an isl_set
2097 * instead of an isl_basic_set.
2099 static __isl_give isl_set
*combined_lineality_space(__isl_take isl_set
*set
)
2101 return isl_set_from_basic_set(isl_set_combined_lineality_space(set
));
2104 /* For each set in "uset", compute the (linear) hull
2105 * of the lineality spaces of its basic sets and
2106 * collect and return the results.
2108 __isl_give isl_union_set
*isl_union_set_combined_lineality_space(
2109 __isl_take isl_union_set
*uset
)
2111 struct isl_un_op_control control
= {
2112 .fn_map
= &combined_lineality_space
,
2114 return un_op(uset
, &control
);
2117 /* Compute the polyhedral hull of "map" and return the result as an isl_map.
2119 static __isl_give isl_map
*isl_map_polyhedral_hull_map(__isl_take isl_map
*map
)
2121 return isl_map_from_basic_map(isl_map_polyhedral_hull(map
));
2124 __isl_give isl_union_map
*isl_union_map_polyhedral_hull(
2125 __isl_take isl_union_map
*umap
)
2127 return total(umap
, &isl_map_polyhedral_hull_map
);
2130 __isl_give isl_union_set
*isl_union_set_polyhedral_hull(
2131 __isl_take isl_union_set
*uset
)
2133 return isl_union_map_polyhedral_hull(uset
);
2136 /* Compute a superset of the convex hull of "map" that is described
2137 * by only translates of the constraints in the constituents of "map" and
2138 * return the result as an isl_map.
2140 static __isl_give isl_map
*isl_map_simple_hull_map(__isl_take isl_map
*map
)
2142 return isl_map_from_basic_map(isl_map_simple_hull(map
));
2145 __isl_give isl_union_map
*isl_union_map_simple_hull(
2146 __isl_take isl_union_map
*umap
)
2148 return total(umap
, &isl_map_simple_hull_map
);
2151 __isl_give isl_union_set
*isl_union_set_simple_hull(
2152 __isl_take isl_union_set
*uset
)
2154 return isl_union_map_simple_hull(uset
);
2157 static __isl_give isl_union_map
*inplace(__isl_take isl_union_map
*umap
,
2158 __isl_give isl_map
*(*fn
)(__isl_take isl_map
*))
2160 struct isl_un_op_control control
= {
2165 return un_op(umap
, &control
);
2168 /* Remove redundant constraints in each of the basic maps of "umap".
2169 * Since removing redundant constraints does not change the meaning
2170 * or the space, the operation can be performed in-place.
2172 __isl_give isl_union_map
*isl_union_map_remove_redundancies(
2173 __isl_take isl_union_map
*umap
)
2175 return inplace(umap
, &isl_map_remove_redundancies
);
2178 /* Remove redundant constraints in each of the basic sets of "uset".
2180 __isl_give isl_union_set
*isl_union_set_remove_redundancies(
2181 __isl_take isl_union_set
*uset
)
2183 return isl_union_map_remove_redundancies(uset
);
2186 __isl_give isl_union_map
*isl_union_map_coalesce(
2187 __isl_take isl_union_map
*umap
)
2189 return inplace(umap
, &isl_map_coalesce
);
2192 __isl_give isl_union_set
*isl_union_set_coalesce(
2193 __isl_take isl_union_set
*uset
)
2195 return isl_union_map_coalesce(uset
);
2198 __isl_give isl_union_map
*isl_union_map_detect_equalities(
2199 __isl_take isl_union_map
*umap
)
2201 return inplace(umap
, &isl_map_detect_equalities
);
2204 __isl_give isl_union_set
*isl_union_set_detect_equalities(
2205 __isl_take isl_union_set
*uset
)
2207 return isl_union_map_detect_equalities(uset
);
2210 __isl_give isl_union_map
*isl_union_map_compute_divs(
2211 __isl_take isl_union_map
*umap
)
2213 return inplace(umap
, &isl_map_compute_divs
);
2216 __isl_give isl_union_set
*isl_union_set_compute_divs(
2217 __isl_take isl_union_set
*uset
)
2219 return isl_union_map_compute_divs(uset
);
2222 __isl_give isl_union_map
*isl_union_map_lexmin(
2223 __isl_take isl_union_map
*umap
)
2225 return total(umap
, &isl_map_lexmin
);
2228 __isl_give isl_union_set
*isl_union_set_lexmin(
2229 __isl_take isl_union_set
*uset
)
2231 return isl_union_map_lexmin(uset
);
2234 __isl_give isl_union_map
*isl_union_map_lexmax(
2235 __isl_take isl_union_map
*umap
)
2237 return total(umap
, &isl_map_lexmax
);
2240 __isl_give isl_union_set
*isl_union_set_lexmax(
2241 __isl_take isl_union_set
*uset
)
2243 return isl_union_map_lexmax(uset
);
2246 /* Return the universe in the space of "map".
2248 static __isl_give isl_map
*universe(__isl_take isl_map
*map
)
2252 space
= isl_map_get_space(map
);
2254 return isl_map_universe(space
);
2257 __isl_give isl_union_map
*isl_union_map_universe(__isl_take isl_union_map
*umap
)
2259 struct isl_un_op_control control
= {
2260 .fn_map
= &universe
,
2262 return un_op(umap
, &control
);
2265 __isl_give isl_union_set
*isl_union_set_universe(__isl_take isl_union_set
*uset
)
2267 return isl_union_map_universe(uset
);
2270 __isl_give isl_union_map
*isl_union_map_reverse(__isl_take isl_union_map
*umap
)
2272 struct isl_un_op_control control
= {
2273 .fn_map
= &isl_map_reverse
,
2275 return un_op(umap
, &control
);
2278 /* Given a union map, take the maps of the form A -> (B -> C) and
2279 * return the union of the corresponding maps A -> (C -> B).
2281 __isl_give isl_union_map
*isl_union_map_range_reverse(
2282 __isl_take isl_union_map
*umap
)
2284 struct isl_un_op_drop_user_data data
= { &isl_map_range_is_wrapping
};
2285 struct isl_un_op_control control
= {
2286 .filter
= &un_op_filter_drop_user
,
2287 .filter_user
= &data
,
2288 .fn_map
= &isl_map_range_reverse
,
2290 return un_op(umap
, &control
);
2293 /* Compute the parameter domain of the given union map.
2295 __isl_give isl_set
*isl_union_map_params(__isl_take isl_union_map
*umap
)
2297 struct isl_un_op_control control
= {
2298 .fn_map
= &isl_map_params
,
2302 empty
= isl_union_map_is_empty(umap
);
2307 space
= isl_union_map_get_space(umap
);
2308 isl_union_map_free(umap
);
2309 return isl_set_empty(space
);
2311 return isl_set_from_union_set(un_op(umap
, &control
));
2313 isl_union_map_free(umap
);
2317 /* Compute the parameter domain of the given union set.
2319 __isl_give isl_set
*isl_union_set_params(__isl_take isl_union_set
*uset
)
2321 return isl_union_map_params(uset
);
2324 __isl_give isl_union_set
*isl_union_map_domain(__isl_take isl_union_map
*umap
)
2326 struct isl_un_op_control control
= {
2327 .fn_map
= &isl_map_domain
,
2329 return un_op(umap
, &control
);
2332 __isl_give isl_union_set
*isl_union_map_range(__isl_take isl_union_map
*umap
)
2334 struct isl_un_op_control control
= {
2335 .fn_map
= &isl_map_range
,
2337 return un_op(umap
, &control
);
2340 __isl_give isl_union_map
*isl_union_map_domain_map(
2341 __isl_take isl_union_map
*umap
)
2343 struct isl_un_op_control control
= {
2344 .fn_map
= &isl_map_domain_map
,
2346 return un_op(umap
, &control
);
2349 /* Construct an isl_pw_multi_aff that maps "map" to its domain and
2350 * add the result to "res".
2352 static isl_stat
domain_map_upma(__isl_take isl_map
*map
, void *user
)
2354 isl_union_pw_multi_aff
**res
= user
;
2356 isl_pw_multi_aff
*pma
;
2358 ma
= isl_multi_aff_domain_map(isl_map_get_space(map
));
2359 pma
= isl_pw_multi_aff_alloc(isl_map_wrap(map
), ma
);
2360 *res
= isl_union_pw_multi_aff_add_pw_multi_aff(*res
, pma
);
2362 return *res
? isl_stat_ok
: isl_stat_error
;
2366 /* Return an isl_union_pw_multi_aff that maps a wrapped copy of "umap"
2369 __isl_give isl_union_pw_multi_aff
*isl_union_map_domain_map_union_pw_multi_aff(
2370 __isl_take isl_union_map
*umap
)
2372 isl_union_pw_multi_aff
*res
;
2374 res
= isl_union_pw_multi_aff_empty(isl_union_map_get_space(umap
));
2375 if (isl_union_map_foreach_map(umap
, &domain_map_upma
, &res
) < 0)
2376 res
= isl_union_pw_multi_aff_free(res
);
2378 isl_union_map_free(umap
);
2382 __isl_give isl_union_map
*isl_union_map_range_map(
2383 __isl_take isl_union_map
*umap
)
2385 struct isl_un_op_control control
= {
2386 .fn_map
= &isl_map_range_map
,
2388 return un_op(umap
, &control
);
2391 /* Given a collection of wrapped maps of the form A[B -> C],
2392 * return the collection of maps A[B -> C] -> B.
2394 __isl_give isl_union_map
*isl_union_set_wrapped_domain_map(
2395 __isl_take isl_union_set
*uset
)
2397 struct isl_un_op_drop_user_data data
= { &isl_set_is_wrapping
};
2398 struct isl_un_op_control control
= {
2399 .filter
= &un_op_filter_drop_user
,
2400 .filter_user
= &data
,
2401 .fn_map
= &isl_set_wrapped_domain_map
,
2403 return un_op(uset
, &control
);
2406 /* Does "map" relate elements from the same space?
2408 static isl_bool
equal_tuples(__isl_keep isl_map
*map
, void *user
)
2410 return isl_map_tuple_is_equal(map
, isl_dim_in
, map
, isl_dim_out
);
2413 __isl_give isl_union_set
*isl_union_map_deltas(__isl_take isl_union_map
*umap
)
2415 struct isl_un_op_control control
= {
2416 .filter
= &equal_tuples
,
2417 .fn_map
= &isl_map_deltas
,
2419 return un_op(umap
, &control
);
2422 __isl_give isl_union_map
*isl_union_map_deltas_map(
2423 __isl_take isl_union_map
*umap
)
2425 struct isl_un_op_control control
= {
2426 .filter
= &equal_tuples
,
2427 .fn_map
= &isl_map_deltas_map
,
2429 return un_op(umap
, &control
);
2432 __isl_give isl_union_map
*isl_union_set_identity(__isl_take isl_union_set
*uset
)
2434 struct isl_un_op_control control
= {
2435 .fn_map
= &isl_set_identity
,
2437 return un_op(uset
, &control
);
2440 /* Construct an identity isl_pw_multi_aff on "set" and add it to *res.
2442 static isl_stat
identity_upma(__isl_take isl_set
*set
, void *user
)
2444 isl_union_pw_multi_aff
**res
= user
;
2446 isl_pw_multi_aff
*pma
;
2448 space
= isl_space_map_from_set(isl_set_get_space(set
));
2449 pma
= isl_pw_multi_aff_identity(space
);
2450 pma
= isl_pw_multi_aff_intersect_domain(pma
, set
);
2451 *res
= isl_union_pw_multi_aff_add_pw_multi_aff(*res
, pma
);
2453 return *res
? isl_stat_ok
: isl_stat_error
;
2456 /* Return an identity function on "uset" in the form
2457 * of an isl_union_pw_multi_aff.
2459 __isl_give isl_union_pw_multi_aff
*isl_union_set_identity_union_pw_multi_aff(
2460 __isl_take isl_union_set
*uset
)
2462 isl_union_pw_multi_aff
*res
;
2464 res
= isl_union_pw_multi_aff_empty(isl_union_set_get_space(uset
));
2465 if (isl_union_set_foreach_set(uset
, &identity_upma
, &res
) < 0)
2466 res
= isl_union_pw_multi_aff_free(res
);
2468 isl_union_set_free(uset
);
2472 /* For each map in "umap" of the form [A -> B] -> C,
2473 * construct the map A -> C and collect the results.
2475 __isl_give isl_union_map
*isl_union_map_domain_factor_domain(
2476 __isl_take isl_union_map
*umap
)
2478 struct isl_un_op_drop_user_data data
= { &isl_map_domain_is_wrapping
};
2479 struct isl_un_op_control control
= {
2480 .filter
= &un_op_filter_drop_user
,
2481 .filter_user
= &data
,
2482 .fn_map
= &isl_map_domain_factor_domain
,
2484 return un_op(umap
, &control
);
2487 /* For each map in "umap" of the form [A -> B] -> C,
2488 * construct the map B -> C and collect the results.
2490 __isl_give isl_union_map
*isl_union_map_domain_factor_range(
2491 __isl_take isl_union_map
*umap
)
2493 struct isl_un_op_drop_user_data data
= { &isl_map_domain_is_wrapping
};
2494 struct isl_un_op_control control
= {
2495 .filter
= &un_op_filter_drop_user
,
2496 .filter_user
= &data
,
2497 .fn_map
= &isl_map_domain_factor_range
,
2499 return un_op(umap
, &control
);
2502 /* For each map in "umap" of the form A -> [B -> C],
2503 * construct the map A -> B and collect the results.
2505 __isl_give isl_union_map
*isl_union_map_range_factor_domain(
2506 __isl_take isl_union_map
*umap
)
2508 struct isl_un_op_drop_user_data data
= { &isl_map_range_is_wrapping
};
2509 struct isl_un_op_control control
= {
2510 .filter
= &un_op_filter_drop_user
,
2511 .filter_user
= &data
,
2512 .fn_map
= &isl_map_range_factor_domain
,
2514 return un_op(umap
, &control
);
2517 /* For each map in "umap" of the form A -> [B -> C],
2518 * construct the map A -> C and collect the results.
2520 __isl_give isl_union_map
*isl_union_map_range_factor_range(
2521 __isl_take isl_union_map
*umap
)
2523 struct isl_un_op_drop_user_data data
= { &isl_map_range_is_wrapping
};
2524 struct isl_un_op_control control
= {
2525 .filter
= &un_op_filter_drop_user
,
2526 .filter_user
= &data
,
2527 .fn_map
= &isl_map_range_factor_range
,
2529 return un_op(umap
, &control
);
2532 /* For each map in "umap" of the form [A -> B] -> [C -> D],
2533 * construct the map A -> C and collect the results.
2535 __isl_give isl_union_map
*isl_union_map_factor_domain(
2536 __isl_take isl_union_map
*umap
)
2538 struct isl_un_op_drop_user_data data
= { &isl_map_is_product
};
2539 struct isl_un_op_control control
= {
2540 .filter
= &un_op_filter_drop_user
,
2541 .filter_user
= &data
,
2542 .fn_map
= &isl_map_factor_domain
,
2544 return un_op(umap
, &control
);
2547 /* For each map in "umap" of the form [A -> B] -> [C -> D],
2548 * construct the map B -> D and collect the results.
2550 __isl_give isl_union_map
*isl_union_map_factor_range(
2551 __isl_take isl_union_map
*umap
)
2553 struct isl_un_op_drop_user_data data
= { &isl_map_is_product
};
2554 struct isl_un_op_control control
= {
2555 .filter
= &un_op_filter_drop_user
,
2556 .filter_user
= &data
,
2557 .fn_map
= &isl_map_factor_range
,
2559 return un_op(umap
, &control
);
2562 __isl_give isl_union_map
*isl_union_set_unwrap(__isl_take isl_union_set
*uset
)
2564 struct isl_un_op_drop_user_data data
= { &isl_set_is_wrapping
};
2565 struct isl_un_op_control control
= {
2566 .filter
= &un_op_filter_drop_user
,
2567 .filter_user
= &data
,
2568 .fn_map
= &isl_set_unwrap
,
2570 return un_op(uset
, &control
);
2573 __isl_give isl_union_set
*isl_union_map_wrap(__isl_take isl_union_map
*umap
)
2575 struct isl_un_op_control control
= {
2576 .fn_map
= &isl_map_wrap
,
2578 return un_op(umap
, &control
);
2581 struct isl_union_map_is_subset_data
{
2582 isl_union_map
*umap2
;
2586 static isl_stat
is_subset_entry(void **entry
, void *user
)
2588 struct isl_union_map_is_subset_data
*data
= user
;
2589 struct isl_hash_table_entry
*entry2
;
2591 isl_map
*map
= *entry
;
2593 space
= isl_map_peek_space(map
);
2594 entry2
= isl_union_map_find_entry(data
->umap2
, space
, 0);
2596 return isl_stat_error
;
2597 if (entry2
== isl_hash_table_entry_none
) {
2598 int empty
= isl_map_is_empty(map
);
2600 return isl_stat_error
;
2603 data
->is_subset
= isl_bool_false
;
2604 return isl_stat_error
;
2607 data
->is_subset
= isl_map_is_subset(map
, entry2
->data
);
2608 if (data
->is_subset
< 0 || !data
->is_subset
)
2609 return isl_stat_error
;
2614 isl_bool
isl_union_map_is_subset(__isl_keep isl_union_map
*umap1
,
2615 __isl_keep isl_union_map
*umap2
)
2617 struct isl_union_map_is_subset_data data
= { NULL
, isl_bool_true
};
2619 if (!umap1
|| !umap2
)
2620 return isl_bool_error
;
2623 if (isl_hash_table_foreach(umap1
->dim
->ctx
, &umap1
->table
,
2624 &is_subset_entry
, &data
) < 0 &&
2626 return isl_bool_error
;
2628 return data
.is_subset
;
2631 isl_bool
isl_union_set_is_subset(__isl_keep isl_union_set
*uset1
,
2632 __isl_keep isl_union_set
*uset2
)
2634 return isl_union_map_is_subset(uset1
, uset2
);
2637 isl_bool
isl_union_map_is_equal(__isl_keep isl_union_map
*umap1
,
2638 __isl_keep isl_union_map
*umap2
)
2642 if (!umap1
|| !umap2
)
2643 return isl_bool_error
;
2644 is_subset
= isl_union_map_is_subset(umap1
, umap2
);
2645 if (is_subset
!= isl_bool_true
)
2647 is_subset
= isl_union_map_is_subset(umap2
, umap1
);
2651 isl_bool
isl_union_set_is_equal(__isl_keep isl_union_set
*uset1
,
2652 __isl_keep isl_union_set
*uset2
)
2654 return isl_union_map_is_equal(uset1
, uset2
);
2657 isl_bool
isl_union_map_is_strict_subset(__isl_keep isl_union_map
*umap1
,
2658 __isl_keep isl_union_map
*umap2
)
2662 if (!umap1
|| !umap2
)
2663 return isl_bool_error
;
2664 is_subset
= isl_union_map_is_subset(umap1
, umap2
);
2665 if (is_subset
!= isl_bool_true
)
2667 is_subset
= isl_union_map_is_subset(umap2
, umap1
);
2668 return isl_bool_not(is_subset
);
2671 isl_bool
isl_union_set_is_strict_subset(__isl_keep isl_union_set
*uset1
,
2672 __isl_keep isl_union_set
*uset2
)
2674 return isl_union_map_is_strict_subset(uset1
, uset2
);
2677 /* Internal data structure for isl_union_map_is_disjoint.
2678 * umap2 is the union map with which we are comparing.
2679 * is_disjoint is initialized to 1 and is set to 0 as soon
2680 * as the union maps turn out not to be disjoint.
2682 struct isl_union_map_is_disjoint_data
{
2683 isl_union_map
*umap2
;
2684 isl_bool is_disjoint
;
2687 /* Check if "map" is disjoint from data->umap2 and abort
2688 * the search if it is not.
2690 static isl_stat
is_disjoint_entry(void **entry
, void *user
)
2692 struct isl_union_map_is_disjoint_data
*data
= user
;
2693 struct isl_hash_table_entry
*entry2
;
2695 isl_map
*map
= *entry
;
2697 space
= isl_map_peek_space(map
);
2698 entry2
= isl_union_map_find_entry(data
->umap2
, space
, 0);
2700 return isl_stat_error
;
2701 if (entry2
== isl_hash_table_entry_none
)
2704 data
->is_disjoint
= isl_map_is_disjoint(map
, entry2
->data
);
2705 if (data
->is_disjoint
< 0 || !data
->is_disjoint
)
2706 return isl_stat_error
;
2711 /* Are "umap1" and "umap2" disjoint?
2713 isl_bool
isl_union_map_is_disjoint(__isl_keep isl_union_map
*umap1
,
2714 __isl_keep isl_union_map
*umap2
)
2716 struct isl_union_map_is_disjoint_data data
= { NULL
, isl_bool_true
};
2718 umap1
= isl_union_map_copy(umap1
);
2719 umap2
= isl_union_map_copy(umap2
);
2720 umap1
= isl_union_map_align_params(umap1
,
2721 isl_union_map_get_space(umap2
));
2722 umap2
= isl_union_map_align_params(umap2
,
2723 isl_union_map_get_space(umap1
));
2725 if (!umap1
|| !umap2
)
2729 if (isl_hash_table_foreach(umap1
->dim
->ctx
, &umap1
->table
,
2730 &is_disjoint_entry
, &data
) < 0 &&
2734 isl_union_map_free(umap1
);
2735 isl_union_map_free(umap2
);
2737 return data
.is_disjoint
;
2739 isl_union_map_free(umap1
);
2740 isl_union_map_free(umap2
);
2741 return isl_bool_error
;
2744 /* Are "uset1" and "uset2" disjoint?
2746 isl_bool
isl_union_set_is_disjoint(__isl_keep isl_union_set
*uset1
,
2747 __isl_keep isl_union_set
*uset2
)
2749 return isl_union_map_is_disjoint(uset1
, uset2
);
2752 static isl_stat
sample_entry(void **entry
, void *user
)
2754 isl_basic_map
**sample
= (isl_basic_map
**)user
;
2755 isl_map
*map
= *entry
;
2757 *sample
= isl_map_sample(isl_map_copy(map
));
2759 return isl_stat_error
;
2760 if (!isl_basic_map_plain_is_empty(*sample
))
2761 return isl_stat_error
;
2765 __isl_give isl_basic_map
*isl_union_map_sample(__isl_take isl_union_map
*umap
)
2767 isl_basic_map
*sample
= NULL
;
2772 if (isl_hash_table_foreach(umap
->dim
->ctx
, &umap
->table
,
2773 &sample_entry
, &sample
) < 0 &&
2778 sample
= isl_basic_map_empty(isl_union_map_get_space(umap
));
2780 isl_union_map_free(umap
);
2784 isl_union_map_free(umap
);
2788 __isl_give isl_basic_set
*isl_union_set_sample(__isl_take isl_union_set
*uset
)
2790 return bset_from_bmap(isl_union_map_sample(uset
));
2793 /* Return an element in "uset" in the form of an isl_point.
2794 * Return a void isl_point if "uset" is empty.
2796 __isl_give isl_point
*isl_union_set_sample_point(__isl_take isl_union_set
*uset
)
2798 return isl_basic_set_sample_point(isl_union_set_sample(uset
));
2801 struct isl_forall_data
{
2803 isl_bool (*fn
)(__isl_keep isl_map
*map
);
2806 static isl_stat
forall_entry(void **entry
, void *user
)
2808 struct isl_forall_data
*data
= user
;
2809 isl_map
*map
= *entry
;
2811 data
->res
= data
->fn(map
);
2813 return isl_stat_error
;
2816 return isl_stat_error
;
2821 static isl_bool
union_map_forall(__isl_keep isl_union_map
*umap
,
2822 isl_bool (*fn
)(__isl_keep isl_map
*map
))
2824 struct isl_forall_data data
= { isl_bool_true
, fn
};
2827 return isl_bool_error
;
2829 if (isl_hash_table_foreach(umap
->dim
->ctx
, &umap
->table
,
2830 &forall_entry
, &data
) < 0 && data
.res
)
2831 return isl_bool_error
;
2836 struct isl_forall_user_data
{
2838 isl_bool (*fn
)(__isl_keep isl_map
*map
, void *user
);
2842 static isl_stat
forall_user_entry(void **entry
, void *user
)
2844 struct isl_forall_user_data
*data
= user
;
2845 isl_map
*map
= *entry
;
2847 data
->res
= data
->fn(map
, data
->user
);
2849 return isl_stat_error
;
2852 return isl_stat_error
;
2857 /* Check if fn(map, user) returns true for all maps "map" in umap.
2859 static isl_bool
union_map_forall_user(__isl_keep isl_union_map
*umap
,
2860 isl_bool (*fn
)(__isl_keep isl_map
*map
, void *user
), void *user
)
2862 struct isl_forall_user_data data
= { isl_bool_true
, fn
, user
};
2865 return isl_bool_error
;
2867 if (isl_hash_table_foreach(umap
->dim
->ctx
, &umap
->table
,
2868 &forall_user_entry
, &data
) < 0 && data
.res
)
2869 return isl_bool_error
;
2874 /* Is "umap" obviously empty?
2876 isl_bool
isl_union_map_plain_is_empty(__isl_keep isl_union_map
*umap
)
2880 n
= isl_union_map_n_map(umap
);
2882 return isl_bool_error
;
2886 isl_bool
isl_union_map_is_empty(__isl_keep isl_union_map
*umap
)
2888 return union_map_forall(umap
, &isl_map_is_empty
);
2891 isl_bool
isl_union_set_is_empty(__isl_keep isl_union_set
*uset
)
2893 return isl_union_map_is_empty(uset
);
2896 static isl_bool
is_subset_of_identity(__isl_keep isl_map
*map
)
2903 match
= isl_map_tuple_is_equal(map
, isl_dim_in
, map
, isl_dim_out
);
2905 return isl_bool_error
;
2907 return isl_bool_false
;
2909 space
= isl_map_get_space(map
);
2910 id
= isl_map_identity(space
);
2912 is_subset
= isl_map_is_subset(map
, id
);
2919 /* Given an isl_union_map that consists of a single map, check
2920 * if it is single-valued.
2922 static isl_bool
single_map_is_single_valued(__isl_keep isl_union_map
*umap
)
2927 umap
= isl_union_map_copy(umap
);
2928 map
= isl_map_from_union_map(umap
);
2929 sv
= isl_map_is_single_valued(map
);
2935 /* Internal data structure for single_valued_on_domain.
2937 * "umap" is the union map to be tested.
2938 * "sv" is set to 1 as long as "umap" may still be single-valued.
2940 struct isl_union_map_is_sv_data
{
2941 isl_union_map
*umap
;
2945 /* Check if the data->umap is single-valued on "set".
2947 * If data->umap consists of a single map on "set", then test it
2950 * Otherwise, compute
2954 * check if the result is a subset of the identity mapping and
2955 * store the result in data->sv.
2957 * Terminate as soon as data->umap has been determined not to
2960 static isl_stat
single_valued_on_domain(__isl_take isl_set
*set
, void *user
)
2962 struct isl_union_map_is_sv_data
*data
= user
;
2963 isl_union_map
*umap
, *test
;
2966 umap
= isl_union_map_copy(data
->umap
);
2967 umap
= isl_union_map_intersect_domain(umap
,
2968 isl_union_set_from_set(set
));
2970 n
= isl_union_map_n_map(umap
);
2972 data
->sv
= isl_bool_error
;
2973 } else if (n
== 1) {
2974 data
->sv
= single_map_is_single_valued(umap
);
2975 isl_union_map_free(umap
);
2977 test
= isl_union_map_reverse(isl_union_map_copy(umap
));
2978 test
= isl_union_map_apply_range(test
, umap
);
2980 data
->sv
= union_map_forall(test
, &is_subset_of_identity
);
2982 isl_union_map_free(test
);
2985 if (data
->sv
< 0 || !data
->sv
)
2986 return isl_stat_error
;
2990 /* Check if the given map is single-valued.
2992 * If the union map consists of a single map, then test it as an isl_map.
2993 * Otherwise, check if the union map is single-valued on each of its
2996 isl_bool
isl_union_map_is_single_valued(__isl_keep isl_union_map
*umap
)
2998 isl_union_map
*universe
;
2999 isl_union_set
*domain
;
3000 struct isl_union_map_is_sv_data data
;
3003 n
= isl_union_map_n_map(umap
);
3005 return isl_bool_error
;
3007 return single_map_is_single_valued(umap
);
3009 universe
= isl_union_map_universe(isl_union_map_copy(umap
));
3010 domain
= isl_union_map_domain(universe
);
3012 data
.sv
= isl_bool_true
;
3014 if (isl_union_set_foreach_set(domain
,
3015 &single_valued_on_domain
, &data
) < 0 && data
.sv
)
3016 data
.sv
= isl_bool_error
;
3017 isl_union_set_free(domain
);
3022 isl_bool
isl_union_map_is_injective(__isl_keep isl_union_map
*umap
)
3026 umap
= isl_union_map_copy(umap
);
3027 umap
= isl_union_map_reverse(umap
);
3028 in
= isl_union_map_is_single_valued(umap
);
3029 isl_union_map_free(umap
);
3034 /* Is "map" obviously not an identity relation because
3035 * it maps elements from one space to another space?
3036 * Update *non_identity accordingly.
3038 * In particular, if the domain and range spaces are the same,
3039 * then the map is not considered to obviously not be an identity relation.
3040 * Otherwise, the map is considered to obviously not be an identity relation
3041 * if it is is non-empty.
3043 * If "map" is determined to obviously not be an identity relation,
3044 * then the search is aborted.
3046 static isl_stat
map_plain_is_not_identity(__isl_take isl_map
*map
, void *user
)
3048 isl_bool
*non_identity
= user
;
3051 equal
= isl_map_tuple_is_equal(map
, isl_dim_in
, map
, isl_dim_out
);
3052 if (equal
>= 0 && !equal
)
3053 *non_identity
= isl_bool_not(isl_map_is_empty(map
));
3055 *non_identity
= isl_bool_not(equal
);
3058 if (*non_identity
< 0 || *non_identity
)
3059 return isl_stat_error
;
3064 /* Is "umap" obviously not an identity relation because
3065 * it maps elements from one space to another space?
3067 * As soon as a map has been found that maps elements to a different space,
3068 * non_identity is changed and the search is aborted.
3070 static isl_bool
isl_union_map_plain_is_not_identity(
3071 __isl_keep isl_union_map
*umap
)
3073 isl_bool non_identity
;
3075 non_identity
= isl_bool_false
;
3076 if (isl_union_map_foreach_map(umap
, &map_plain_is_not_identity
,
3077 &non_identity
) < 0 &&
3078 non_identity
== isl_bool_false
)
3079 return isl_bool_error
;
3081 return non_identity
;
3084 /* Does "map" only map elements to themselves?
3085 * Update *identity accordingly.
3087 * If "map" is determined not to be an identity relation,
3088 * then the search is aborted.
3090 static isl_stat
map_is_identity(__isl_take isl_map
*map
, void *user
)
3092 isl_bool
*identity
= user
;
3094 *identity
= isl_map_is_identity(map
);
3097 if (*identity
< 0 || !*identity
)
3098 return isl_stat_error
;
3103 /* Does "umap" only map elements to themselves?
3105 * First check if there are any maps that map elements to different spaces.
3106 * If not, then check that all the maps (between identical spaces)
3107 * are identity relations.
3109 isl_bool
isl_union_map_is_identity(__isl_keep isl_union_map
*umap
)
3111 isl_bool non_identity
;
3114 non_identity
= isl_union_map_plain_is_not_identity(umap
);
3115 if (non_identity
< 0 || non_identity
)
3116 return isl_bool_not(non_identity
);
3118 identity
= isl_bool_true
;
3119 if (isl_union_map_foreach_map(umap
, &map_is_identity
, &identity
) < 0 &&
3120 identity
== isl_bool_true
)
3121 return isl_bool_error
;
3126 /* Represents a map that has a fixed value (v) for one of its
3128 * The map in this structure is not reference counted, so it
3129 * is only valid while the isl_union_map from which it was
3130 * obtained is still alive.
3132 struct isl_fixed_map
{
3137 static struct isl_fixed_map
*alloc_isl_fixed_map_array(isl_ctx
*ctx
,
3141 struct isl_fixed_map
*v
;
3143 v
= isl_calloc_array(ctx
, struct isl_fixed_map
, n
);
3146 for (i
= 0; i
< n
; ++i
)
3147 isl_int_init(v
[i
].v
);
3151 static void free_isl_fixed_map_array(struct isl_fixed_map
*v
, int n
)
3157 for (i
= 0; i
< n
; ++i
)
3158 isl_int_clear(v
[i
].v
);
3162 /* Compare the "v" field of two isl_fixed_map structs.
3164 static int qsort_fixed_map_cmp(const void *p1
, const void *p2
)
3166 const struct isl_fixed_map
*e1
= (const struct isl_fixed_map
*) p1
;
3167 const struct isl_fixed_map
*e2
= (const struct isl_fixed_map
*) p2
;
3169 return isl_int_cmp(e1
->v
, e2
->v
);
3172 /* Internal data structure used while checking whether all maps
3173 * in a union_map have a fixed value for a given output dimension.
3174 * v is the list of maps, with the fixed value for the dimension
3175 * n is the number of maps considered so far
3176 * pos is the output dimension under investigation
3178 struct isl_fixed_dim_data
{
3179 struct isl_fixed_map
*v
;
3184 static isl_bool
fixed_at_pos(__isl_keep isl_map
*map
, void *user
)
3186 struct isl_fixed_dim_data
*data
= user
;
3188 data
->v
[data
->n
].map
= map
;
3189 return isl_map_plain_is_fixed(map
, isl_dim_out
, data
->pos
,
3190 &data
->v
[data
->n
++].v
);
3193 static isl_bool
plain_injective_on_range(__isl_take isl_union_map
*umap
,
3194 int first
, int n_range
);
3196 /* Given a list of the maps, with their fixed values at output dimension "pos",
3197 * check whether the ranges of the maps form an obvious partition.
3199 * We first sort the maps according to their fixed values.
3200 * If all maps have a different value, then we know the ranges form
3202 * Otherwise, we collect the maps with the same fixed value and
3203 * check whether each such collection is obviously injective
3204 * based on later dimensions.
3206 static int separates(struct isl_fixed_map
*v
, int n
,
3207 __isl_take isl_space
*space
, int pos
, int n_range
)
3214 qsort(v
, n
, sizeof(*v
), &qsort_fixed_map_cmp
);
3216 for (i
= 0; i
+ 1 < n
; ++i
) {
3218 isl_union_map
*part
;
3221 for (j
= i
+ 1; j
< n
; ++j
)
3222 if (isl_int_ne(v
[i
].v
, v
[j
].v
))
3228 part
= isl_union_map_alloc(isl_space_copy(space
), j
- i
);
3229 for (k
= i
; k
< j
; ++k
)
3230 part
= isl_union_map_add_map(part
,
3231 isl_map_copy(v
[k
].map
));
3233 injective
= plain_injective_on_range(part
, pos
+ 1, n_range
);
3242 isl_space_free(space
);
3243 free_isl_fixed_map_array(v
, n
);
3246 isl_space_free(space
);
3247 free_isl_fixed_map_array(v
, n
);
3251 /* Check whether the maps in umap have obviously distinct ranges.
3252 * In particular, check for an output dimension in the range
3253 * [first,n_range) for which all maps have a fixed value
3254 * and then check if these values, possibly along with fixed values
3255 * at later dimensions, entail distinct ranges.
3257 static isl_bool
plain_injective_on_range(__isl_take isl_union_map
*umap
,
3258 int first
, int n_range
)
3262 struct isl_fixed_dim_data data
= { NULL
};
3264 ctx
= isl_union_map_get_ctx(umap
);
3266 n
= isl_union_map_n_map(umap
);
3271 isl_union_map_free(umap
);
3272 return isl_bool_true
;
3275 if (first
>= n_range
) {
3276 isl_union_map_free(umap
);
3277 return isl_bool_false
;
3280 data
.v
= alloc_isl_fixed_map_array(ctx
, n
);
3284 for (data
.pos
= first
; data
.pos
< n_range
; ++data
.pos
) {
3290 fixed
= union_map_forall_user(umap
, &fixed_at_pos
, &data
);
3295 space
= isl_union_map_get_space(umap
);
3296 injective
= separates(data
.v
, n
, space
, data
.pos
, n_range
);
3297 isl_union_map_free(umap
);
3301 free_isl_fixed_map_array(data
.v
, n
);
3302 isl_union_map_free(umap
);
3304 return isl_bool_false
;
3306 free_isl_fixed_map_array(data
.v
, n
);
3307 isl_union_map_free(umap
);
3308 return isl_bool_error
;
3311 /* Check whether the maps in umap that map to subsets of "ran"
3312 * have obviously distinct ranges.
3314 static isl_bool
plain_injective_on_range_wrap(__isl_keep isl_set
*ran
,
3318 isl_union_map
*umap
= user
;
3320 dim
= isl_set_dim(ran
, isl_dim_set
);
3322 return isl_bool_error
;
3324 umap
= isl_union_map_copy(umap
);
3325 umap
= isl_union_map_intersect_range(umap
,
3326 isl_union_set_from_set(isl_set_copy(ran
)));
3327 return plain_injective_on_range(umap
, 0, dim
);
3330 /* Check if the given union_map is obviously injective.
3332 * In particular, we first check if all individual maps are obviously
3333 * injective and then check if all the ranges of these maps are
3334 * obviously disjoint.
3336 isl_bool
isl_union_map_plain_is_injective(__isl_keep isl_union_map
*umap
)
3339 isl_union_map
*univ
;
3342 in
= union_map_forall(umap
, &isl_map_plain_is_injective
);
3344 return isl_bool_error
;
3346 return isl_bool_false
;
3348 univ
= isl_union_map_universe(isl_union_map_copy(umap
));
3349 ran
= isl_union_map_range(univ
);
3351 in
= union_map_forall_user(ran
, &plain_injective_on_range_wrap
, umap
);
3353 isl_union_set_free(ran
);
3358 isl_bool
isl_union_map_is_bijective(__isl_keep isl_union_map
*umap
)
3362 sv
= isl_union_map_is_single_valued(umap
);
3366 return isl_union_map_is_injective(umap
);
3369 __isl_give isl_union_map
*isl_union_map_zip(__isl_take isl_union_map
*umap
)
3371 struct isl_un_op_drop_user_data data
= { &isl_map_can_zip
};
3372 struct isl_un_op_control control
= {
3373 .filter
= &un_op_filter_drop_user
,
3374 .filter_user
= &data
,
3375 .fn_map
= &isl_map_zip
,
3377 return un_op(umap
, &control
);
3380 /* Given a union map, take the maps of the form A -> (B -> C) and
3381 * return the union of the corresponding maps (A -> B) -> C.
3383 __isl_give isl_union_map
*isl_union_map_uncurry(__isl_take isl_union_map
*umap
)
3385 struct isl_un_op_drop_user_data data
= { &isl_map_can_uncurry
};
3386 struct isl_un_op_control control
= {
3387 .filter
= &un_op_filter_drop_user
,
3388 .filter_user
= &data
,
3389 .fn_map
= &isl_map_uncurry
,
3391 return un_op(umap
, &control
);
3394 /* Given a union map, take the maps of the form (A -> B) -> C and
3395 * return the union of the corresponding maps A -> (B -> C).
3397 __isl_give isl_union_map
*isl_union_map_curry(__isl_take isl_union_map
*umap
)
3399 struct isl_un_op_drop_user_data data
= { &isl_map_can_curry
};
3400 struct isl_un_op_control control
= {
3401 .filter
= &un_op_filter_drop_user
,
3402 .filter_user
= &data
,
3403 .fn_map
= &isl_map_curry
,
3405 return un_op(umap
, &control
);
3408 /* Given a union map, take the maps of the form A -> ((B -> C) -> D) and
3409 * return the union of the corresponding maps A -> (B -> (C -> D)).
3411 __isl_give isl_union_map
*isl_union_map_range_curry(
3412 __isl_take isl_union_map
*umap
)
3414 struct isl_un_op_drop_user_data data
= { &isl_map_can_range_curry
};
3415 struct isl_un_op_control control
= {
3416 .filter
= &un_op_filter_drop_user
,
3417 .filter_user
= &data
,
3418 .fn_map
= &isl_map_range_curry
,
3420 return un_op(umap
, &control
);
3423 __isl_give isl_union_set
*isl_union_set_lift(__isl_take isl_union_set
*uset
)
3425 struct isl_un_op_control control
= {
3426 .fn_map
= &isl_set_lift
,
3428 return un_op(uset
, &control
);
3431 static isl_stat
coefficients_entry(void **entry
, void *user
)
3433 isl_set
*set
= *entry
;
3434 isl_union_set
**res
= user
;
3436 set
= isl_set_copy(set
);
3437 set
= isl_set_from_basic_set(isl_set_coefficients(set
));
3438 *res
= isl_union_set_add_set(*res
, set
);
3443 __isl_give isl_union_set
*isl_union_set_coefficients(
3444 __isl_take isl_union_set
*uset
)
3453 ctx
= isl_union_set_get_ctx(uset
);
3454 space
= isl_space_set_alloc(ctx
, 0, 0);
3455 res
= isl_union_map_alloc(space
, uset
->table
.n
);
3456 if (isl_hash_table_foreach(uset
->dim
->ctx
, &uset
->table
,
3457 &coefficients_entry
, &res
) < 0)
3460 isl_union_set_free(uset
);
3463 isl_union_set_free(uset
);
3464 isl_union_set_free(res
);
3468 static isl_stat
solutions_entry(void **entry
, void *user
)
3470 isl_set
*set
= *entry
;
3471 isl_union_set
**res
= user
;
3473 set
= isl_set_copy(set
);
3474 set
= isl_set_from_basic_set(isl_set_solutions(set
));
3476 *res
= isl_union_set_from_set(set
);
3478 *res
= isl_union_set_add_set(*res
, set
);
3481 return isl_stat_error
;
3486 __isl_give isl_union_set
*isl_union_set_solutions(
3487 __isl_take isl_union_set
*uset
)
3489 isl_union_set
*res
= NULL
;
3494 if (uset
->table
.n
== 0) {
3495 res
= isl_union_set_empty(isl_union_set_get_space(uset
));
3496 isl_union_set_free(uset
);
3500 if (isl_hash_table_foreach(uset
->dim
->ctx
, &uset
->table
,
3501 &solutions_entry
, &res
) < 0)
3504 isl_union_set_free(uset
);
3507 isl_union_set_free(uset
);
3508 isl_union_set_free(res
);
3512 /* Is the domain space of "map" equal to "space"?
3514 static int domain_match(__isl_keep isl_map
*map
, __isl_keep isl_space
*space
)
3516 return isl_map_space_tuple_is_equal(map
, isl_dim_in
,
3517 space
, isl_dim_out
);
3520 /* Is the range space of "map" equal to "space"?
3522 static int range_match(__isl_keep isl_map
*map
, __isl_keep isl_space
*space
)
3524 return isl_map_space_tuple_is_equal(map
, isl_dim_out
,
3525 space
, isl_dim_out
);
3528 /* Is the set space of "map" equal to "space"?
3530 static int set_match(__isl_keep isl_map
*map
, __isl_keep isl_space
*space
)
3532 return isl_map_space_tuple_is_equal(map
, isl_dim_set
,
3533 space
, isl_dim_out
);
3536 /* Internal data structure for preimage_pw_multi_aff.
3538 * "pma" is the function under which the preimage should be taken.
3539 * "space" is the space of "pma".
3540 * "res" collects the results.
3541 * "fn" computes the preimage for a given map.
3542 * "match" returns true if "fn" can be called.
3544 struct isl_union_map_preimage_data
{
3546 isl_pw_multi_aff
*pma
;
3548 int (*match
)(__isl_keep isl_map
*map
, __isl_keep isl_space
*space
);
3549 __isl_give isl_map
*(*fn
)(__isl_take isl_map
*map
,
3550 __isl_take isl_pw_multi_aff
*pma
);
3553 /* Call data->fn to compute the preimage of the domain or range of *entry
3554 * under the function represented by data->pma, provided the domain/range
3555 * space of *entry matches the target space of data->pma
3556 * (as given by data->match), and add the result to data->res.
3558 static isl_stat
preimage_entry(void **entry
, void *user
)
3561 isl_map
*map
= *entry
;
3562 struct isl_union_map_preimage_data
*data
= user
;
3565 m
= data
->match(map
, data
->space
);
3567 return isl_stat_error
;
3571 map
= isl_map_copy(map
);
3572 map
= data
->fn(map
, isl_pw_multi_aff_copy(data
->pma
));
3574 empty
= isl_map_is_empty(map
);
3575 if (empty
< 0 || empty
) {
3577 return empty
< 0 ? isl_stat_error
: isl_stat_ok
;
3580 data
->res
= isl_union_map_add_map(data
->res
, map
);
3585 /* Compute the preimage of the domain or range of "umap" under the function
3586 * represented by "pma".
3587 * In other words, plug in "pma" in the domain or range of "umap".
3588 * The function "fn" performs the actual preimage computation on a map,
3589 * while "match" determines to which maps the function should be applied.
3591 static __isl_give isl_union_map
*preimage_pw_multi_aff(
3592 __isl_take isl_union_map
*umap
, __isl_take isl_pw_multi_aff
*pma
,
3593 int (*match
)(__isl_keep isl_map
*map
, __isl_keep isl_space
*space
),
3594 __isl_give isl_map
*(*fn
)(__isl_take isl_map
*map
,
3595 __isl_take isl_pw_multi_aff
*pma
))
3599 struct isl_union_map_preimage_data data
;
3601 umap
= isl_union_map_align_params(umap
,
3602 isl_pw_multi_aff_get_space(pma
));
3603 pma
= isl_pw_multi_aff_align_params(pma
, isl_union_map_get_space(umap
));
3608 ctx
= isl_union_map_get_ctx(umap
);
3609 space
= isl_union_map_get_space(umap
);
3610 data
.space
= isl_pw_multi_aff_get_space(pma
);
3612 data
.res
= isl_union_map_alloc(space
, umap
->table
.n
);
3615 if (isl_hash_table_foreach(ctx
, &umap
->table
, &preimage_entry
,
3617 data
.res
= isl_union_map_free(data
.res
);
3619 isl_space_free(data
.space
);
3620 isl_union_map_free(umap
);
3621 isl_pw_multi_aff_free(pma
);
3624 isl_union_map_free(umap
);
3625 isl_pw_multi_aff_free(pma
);
3629 /* Compute the preimage of the domain of "umap" under the function
3630 * represented by "pma".
3631 * In other words, plug in "pma" in the domain of "umap".
3632 * The result contains maps that live in the same spaces as the maps of "umap"
3633 * with domain space equal to the target space of "pma",
3634 * except that the domain has been replaced by the domain space of "pma".
3636 __isl_give isl_union_map
*isl_union_map_preimage_domain_pw_multi_aff(
3637 __isl_take isl_union_map
*umap
, __isl_take isl_pw_multi_aff
*pma
)
3639 return preimage_pw_multi_aff(umap
, pma
, &domain_match
,
3640 &isl_map_preimage_domain_pw_multi_aff
);
3643 /* Compute the preimage of the range of "umap" under the function
3644 * represented by "pma".
3645 * In other words, plug in "pma" in the range of "umap".
3646 * The result contains maps that live in the same spaces as the maps of "umap"
3647 * with range space equal to the target space of "pma",
3648 * except that the range has been replaced by the domain space of "pma".
3650 __isl_give isl_union_map
*isl_union_map_preimage_range_pw_multi_aff(
3651 __isl_take isl_union_map
*umap
, __isl_take isl_pw_multi_aff
*pma
)
3653 return preimage_pw_multi_aff(umap
, pma
, &range_match
,
3654 &isl_map_preimage_range_pw_multi_aff
);
3657 /* Compute the preimage of "uset" under the function represented by "pma".
3658 * In other words, plug in "pma" in "uset".
3659 * The result contains sets that live in the same spaces as the sets of "uset"
3660 * with space equal to the target space of "pma",
3661 * except that the space has been replaced by the domain space of "pma".
3663 __isl_give isl_union_set
*isl_union_set_preimage_pw_multi_aff(
3664 __isl_take isl_union_set
*uset
, __isl_take isl_pw_multi_aff
*pma
)
3666 return preimage_pw_multi_aff(uset
, pma
, &set_match
,
3667 &isl_set_preimage_pw_multi_aff
);
3670 /* Compute the preimage of the domain of "umap" under the function
3671 * represented by "ma".
3672 * In other words, plug in "ma" in the domain of "umap".
3673 * The result contains maps that live in the same spaces as the maps of "umap"
3674 * with domain space equal to the target space of "ma",
3675 * except that the domain has been replaced by the domain space of "ma".
3677 __isl_give isl_union_map
*isl_union_map_preimage_domain_multi_aff(
3678 __isl_take isl_union_map
*umap
, __isl_take isl_multi_aff
*ma
)
3680 return isl_union_map_preimage_domain_pw_multi_aff(umap
,
3681 isl_pw_multi_aff_from_multi_aff(ma
));
3684 /* Compute the preimage of the range of "umap" under the function
3685 * represented by "ma".
3686 * In other words, plug in "ma" in the range of "umap".
3687 * The result contains maps that live in the same spaces as the maps of "umap"
3688 * with range space equal to the target space of "ma",
3689 * except that the range has been replaced by the domain space of "ma".
3691 __isl_give isl_union_map
*isl_union_map_preimage_range_multi_aff(
3692 __isl_take isl_union_map
*umap
, __isl_take isl_multi_aff
*ma
)
3694 return isl_union_map_preimage_range_pw_multi_aff(umap
,
3695 isl_pw_multi_aff_from_multi_aff(ma
));
3698 /* Compute the preimage of "uset" under the function represented by "ma".
3699 * In other words, plug in "ma" in "uset".
3700 * The result contains sets that live in the same spaces as the sets of "uset"
3701 * with space equal to the target space of "ma",
3702 * except that the space has been replaced by the domain space of "ma".
3704 __isl_give isl_union_map
*isl_union_set_preimage_multi_aff(
3705 __isl_take isl_union_set
*uset
, __isl_take isl_multi_aff
*ma
)
3707 return isl_union_set_preimage_pw_multi_aff(uset
,
3708 isl_pw_multi_aff_from_multi_aff(ma
));
3711 /* Internal data structure for preimage_multi_pw_aff.
3713 * "mpa" is the function under which the preimage should be taken.
3714 * "space" is the space of "mpa".
3715 * "res" collects the results.
3716 * "fn" computes the preimage for a given map.
3717 * "match" returns true if "fn" can be called.
3719 struct isl_union_map_preimage_mpa_data
{
3721 isl_multi_pw_aff
*mpa
;
3723 int (*match
)(__isl_keep isl_map
*map
, __isl_keep isl_space
*space
);
3724 __isl_give isl_map
*(*fn
)(__isl_take isl_map
*map
,
3725 __isl_take isl_multi_pw_aff
*mpa
);
3728 /* Call data->fn to compute the preimage of the domain or range of *entry
3729 * under the function represented by data->mpa, provided the domain/range
3730 * space of *entry matches the target space of data->mpa
3731 * (as given by data->match), and add the result to data->res.
3733 static isl_stat
preimage_mpa_entry(void **entry
, void *user
)
3736 isl_map
*map
= *entry
;
3737 struct isl_union_map_preimage_mpa_data
*data
= user
;
3740 m
= data
->match(map
, data
->space
);
3742 return isl_stat_error
;
3746 map
= isl_map_copy(map
);
3747 map
= data
->fn(map
, isl_multi_pw_aff_copy(data
->mpa
));
3749 empty
= isl_map_is_empty(map
);
3750 if (empty
< 0 || empty
) {
3752 return empty
< 0 ? isl_stat_error
: isl_stat_ok
;
3755 data
->res
= isl_union_map_add_map(data
->res
, map
);
3760 /* Compute the preimage of the domain or range of "umap" under the function
3761 * represented by "mpa".
3762 * In other words, plug in "mpa" in the domain or range of "umap".
3763 * The function "fn" performs the actual preimage computation on a map,
3764 * while "match" determines to which maps the function should be applied.
3766 static __isl_give isl_union_map
*preimage_multi_pw_aff(
3767 __isl_take isl_union_map
*umap
, __isl_take isl_multi_pw_aff
*mpa
,
3768 int (*match
)(__isl_keep isl_map
*map
, __isl_keep isl_space
*space
),
3769 __isl_give isl_map
*(*fn
)(__isl_take isl_map
*map
,
3770 __isl_take isl_multi_pw_aff
*mpa
))
3774 struct isl_union_map_preimage_mpa_data data
;
3776 umap
= isl_union_map_align_params(umap
,
3777 isl_multi_pw_aff_get_space(mpa
));
3778 mpa
= isl_multi_pw_aff_align_params(mpa
, isl_union_map_get_space(umap
));
3783 ctx
= isl_union_map_get_ctx(umap
);
3784 space
= isl_union_map_get_space(umap
);
3785 data
.space
= isl_multi_pw_aff_get_space(mpa
);
3787 data
.res
= isl_union_map_alloc(space
, umap
->table
.n
);
3790 if (isl_hash_table_foreach(ctx
, &umap
->table
, &preimage_mpa_entry
,
3792 data
.res
= isl_union_map_free(data
.res
);
3794 isl_space_free(data
.space
);
3795 isl_union_map_free(umap
);
3796 isl_multi_pw_aff_free(mpa
);
3799 isl_union_map_free(umap
);
3800 isl_multi_pw_aff_free(mpa
);
3804 /* Compute the preimage of the domain of "umap" under the function
3805 * represented by "mpa".
3806 * In other words, plug in "mpa" in the domain of "umap".
3807 * The result contains maps that live in the same spaces as the maps of "umap"
3808 * with domain space equal to the target space of "mpa",
3809 * except that the domain has been replaced by the domain space of "mpa".
3811 __isl_give isl_union_map
*isl_union_map_preimage_domain_multi_pw_aff(
3812 __isl_take isl_union_map
*umap
, __isl_take isl_multi_pw_aff
*mpa
)
3814 return preimage_multi_pw_aff(umap
, mpa
, &domain_match
,
3815 &isl_map_preimage_domain_multi_pw_aff
);
3818 /* Internal data structure for preimage_upma.
3820 * "umap" is the map of which the preimage should be computed.
3821 * "res" collects the results.
3822 * "fn" computes the preimage for a given piecewise multi-affine function.
3824 struct isl_union_map_preimage_upma_data
{
3825 isl_union_map
*umap
;
3827 __isl_give isl_union_map
*(*fn
)(__isl_take isl_union_map
*umap
,
3828 __isl_take isl_pw_multi_aff
*pma
);
3831 /* Call data->fn to compute the preimage of the domain or range of data->umap
3832 * under the function represented by pma and add the result to data->res.
3834 static isl_stat
preimage_upma(__isl_take isl_pw_multi_aff
*pma
, void *user
)
3836 struct isl_union_map_preimage_upma_data
*data
= user
;
3837 isl_union_map
*umap
;
3839 umap
= isl_union_map_copy(data
->umap
);
3840 umap
= data
->fn(umap
, pma
);
3841 data
->res
= isl_union_map_union(data
->res
, umap
);
3843 return data
->res
? isl_stat_ok
: isl_stat_error
;
3846 /* Compute the preimage of the domain or range of "umap" under the function
3847 * represented by "upma".
3848 * In other words, plug in "upma" in the domain or range of "umap".
3849 * The function "fn" performs the actual preimage computation
3850 * on a piecewise multi-affine function.
3852 static __isl_give isl_union_map
*preimage_union_pw_multi_aff(
3853 __isl_take isl_union_map
*umap
,
3854 __isl_take isl_union_pw_multi_aff
*upma
,
3855 __isl_give isl_union_map
*(*fn
)(__isl_take isl_union_map
*umap
,
3856 __isl_take isl_pw_multi_aff
*pma
))
3858 struct isl_union_map_preimage_upma_data data
;
3861 data
.res
= isl_union_map_empty(isl_union_map_get_space(umap
));
3863 if (isl_union_pw_multi_aff_foreach_pw_multi_aff(upma
,
3864 &preimage_upma
, &data
) < 0)
3865 data
.res
= isl_union_map_free(data
.res
);
3867 isl_union_map_free(umap
);
3868 isl_union_pw_multi_aff_free(upma
);
3873 /* Compute the preimage of the domain of "umap" under the function
3874 * represented by "upma".
3875 * In other words, plug in "upma" in the domain of "umap".
3876 * The result contains maps that live in the same spaces as the maps of "umap"
3877 * with domain space equal to one of the target spaces of "upma",
3878 * except that the domain has been replaced by one of the domain spaces that
3879 * correspond to that target space of "upma".
3881 __isl_give isl_union_map
*isl_union_map_preimage_domain_union_pw_multi_aff(
3882 __isl_take isl_union_map
*umap
,
3883 __isl_take isl_union_pw_multi_aff
*upma
)
3885 return preimage_union_pw_multi_aff(umap
, upma
,
3886 &isl_union_map_preimage_domain_pw_multi_aff
);
3889 /* Compute the preimage of the range of "umap" under the function
3890 * represented by "upma".
3891 * In other words, plug in "upma" in the range of "umap".
3892 * The result contains maps that live in the same spaces as the maps of "umap"
3893 * with range space equal to one of the target spaces of "upma",
3894 * except that the range has been replaced by one of the domain spaces that
3895 * correspond to that target space of "upma".
3897 __isl_give isl_union_map
*isl_union_map_preimage_range_union_pw_multi_aff(
3898 __isl_take isl_union_map
*umap
,
3899 __isl_take isl_union_pw_multi_aff
*upma
)
3901 return preimage_union_pw_multi_aff(umap
, upma
,
3902 &isl_union_map_preimage_range_pw_multi_aff
);
3905 /* Compute the preimage of "uset" under the function represented by "upma".
3906 * In other words, plug in "upma" in the range of "uset".
3907 * The result contains sets that live in the same spaces as the sets of "uset"
3908 * with space equal to one of the target spaces of "upma",
3909 * except that the space has been replaced by one of the domain spaces that
3910 * correspond to that target space of "upma".
3912 __isl_give isl_union_set
*isl_union_set_preimage_union_pw_multi_aff(
3913 __isl_take isl_union_set
*uset
,
3914 __isl_take isl_union_pw_multi_aff
*upma
)
3916 return preimage_union_pw_multi_aff(uset
, upma
,
3917 &isl_union_set_preimage_pw_multi_aff
);
3920 /* Reset the user pointer on all identifiers of parameters and tuples
3921 * of the spaces of "umap".
3923 __isl_give isl_union_map
*isl_union_map_reset_user(
3924 __isl_take isl_union_map
*umap
)
3926 umap
= isl_union_map_cow(umap
);
3929 umap
->dim
= isl_space_reset_user(umap
->dim
);
3931 return isl_union_map_free(umap
);
3932 return total(umap
, &isl_map_reset_user
);
3935 /* Reset the user pointer on all identifiers of parameters and tuples
3936 * of the spaces of "uset".
3938 __isl_give isl_union_set
*isl_union_set_reset_user(
3939 __isl_take isl_union_set
*uset
)
3941 return isl_union_map_reset_user(uset
);
3944 /* Remove all existentially quantified variables and integer divisions
3945 * from "umap" using Fourier-Motzkin elimination.
3947 __isl_give isl_union_map
*isl_union_map_remove_divs(
3948 __isl_take isl_union_map
*umap
)
3950 return total(umap
, &isl_map_remove_divs
);
3953 /* Remove all existentially quantified variables and integer divisions
3954 * from "uset" using Fourier-Motzkin elimination.
3956 __isl_give isl_union_set
*isl_union_set_remove_divs(
3957 __isl_take isl_union_set
*uset
)
3959 return isl_union_map_remove_divs(uset
);
3962 /* Internal data structure for isl_union_map_project_out.
3963 * "type", "first" and "n" are the arguments for the isl_map_project_out
3965 * "res" collects the results.
3967 struct isl_union_map_project_out_data
{
3968 enum isl_dim_type type
;
3975 /* Turn the data->n dimensions of type data->type, starting at data->first
3976 * into existentially quantified variables and add the result to data->res.
3978 static isl_stat
project_out(__isl_take isl_map
*map
, void *user
)
3980 struct isl_union_map_project_out_data
*data
= user
;
3982 map
= isl_map_project_out(map
, data
->type
, data
->first
, data
->n
);
3983 data
->res
= isl_union_map_add_map(data
->res
, map
);
3988 /* Turn the "n" dimensions of type "type", starting at "first"
3989 * into existentially quantified variables.
3990 * Since the space of an isl_union_map only contains parameters,
3991 * type is required to be equal to isl_dim_param.
3993 __isl_give isl_union_map
*isl_union_map_project_out(
3994 __isl_take isl_union_map
*umap
,
3995 enum isl_dim_type type
, unsigned first
, unsigned n
)
3998 struct isl_union_map_project_out_data data
= { type
, first
, n
};
4003 if (type
!= isl_dim_param
)
4004 isl_die(isl_union_map_get_ctx(umap
), isl_error_invalid
,
4005 "can only project out parameters",
4006 return isl_union_map_free(umap
));
4008 space
= isl_union_map_get_space(umap
);
4009 space
= isl_space_drop_dims(space
, type
, first
, n
);
4010 data
.res
= isl_union_map_empty(space
);
4011 if (isl_union_map_foreach_map(umap
, &project_out
, &data
) < 0)
4012 data
.res
= isl_union_map_free(data
.res
);
4014 isl_union_map_free(umap
);
4020 #define TYPE isl_union_map
4021 #include "isl_project_out_all_params_templ.c"
4023 /* Turn the "n" dimensions of type "type", starting at "first"
4024 * into existentially quantified variables.
4025 * Since the space of an isl_union_set only contains parameters,
4026 * "type" is required to be equal to isl_dim_param.
4028 __isl_give isl_union_set
*isl_union_set_project_out(
4029 __isl_take isl_union_set
*uset
,
4030 enum isl_dim_type type
, unsigned first
, unsigned n
)
4032 return isl_union_map_project_out(uset
, type
, first
, n
);
4035 /* Project out all parameters from "uset" by existentially quantifying
4038 __isl_give isl_union_set
*isl_union_set_project_out_all_params(
4039 __isl_take isl_union_set
*uset
)
4041 return uset_from_umap(
4042 isl_union_map_project_out_all_params(uset_to_umap(uset
)));
4045 /* Internal data structure for isl_union_map_involves_dims.
4046 * "first" and "n" are the arguments for the isl_map_involves_dims calls.
4048 struct isl_union_map_involves_dims_data
{
4053 /* Does "map" _not_ involve the data->n parameters starting at data->first?
4055 static isl_bool
map_excludes(__isl_keep isl_map
*map
, void *user
)
4057 struct isl_union_map_involves_dims_data
*data
= user
;
4060 involves
= isl_map_involves_dims(map
,
4061 isl_dim_param
, data
->first
, data
->n
);
4062 return isl_bool_not(involves
);
4065 /* Does "umap" involve any of the n parameters starting at first?
4066 * "type" is required to be set to isl_dim_param.
4068 * "umap" involves any of those parameters if any of its maps
4069 * involve the parameters. In other words, "umap" does not
4070 * involve any of the parameters if all its maps to not
4071 * involve the parameters.
4073 isl_bool
isl_union_map_involves_dims(__isl_keep isl_union_map
*umap
,
4074 enum isl_dim_type type
, unsigned first
, unsigned n
)
4076 struct isl_union_map_involves_dims_data data
= { first
, n
};
4079 if (type
!= isl_dim_param
)
4080 isl_die(isl_union_map_get_ctx(umap
), isl_error_invalid
,
4081 "can only reference parameters", return isl_bool_error
);
4083 excludes
= union_map_forall_user(umap
, &map_excludes
, &data
);
4085 return isl_bool_not(excludes
);
4088 /* Internal data structure for isl_union_map_reset_range_space.
4089 * "range" is the space from which to set the range space.
4090 * "res" collects the results.
4092 struct isl_union_map_reset_range_space_data
{
4097 /* Replace the range space of "map" by the range space of data->range and
4098 * add the result to data->res.
4100 static isl_stat
reset_range_space(__isl_take isl_map
*map
, void *user
)
4102 struct isl_union_map_reset_range_space_data
*data
= user
;
4105 space
= isl_map_get_space(map
);
4106 space
= isl_space_domain(space
);
4107 space
= isl_space_extend_domain_with_range(space
,
4108 isl_space_copy(data
->range
));
4109 map
= isl_map_reset_space(map
, space
);
4110 data
->res
= isl_union_map_add_map(data
->res
, map
);
4112 return data
->res
? isl_stat_ok
: isl_stat_error
;
4115 /* Replace the range space of all the maps in "umap" by
4116 * the range space of "space".
4118 * This assumes that all maps have the same output dimension.
4119 * This function should therefore not be made publicly available.
4121 * Since the spaces of the maps change, so do their hash value.
4122 * We therefore need to create a new isl_union_map.
4124 __isl_give isl_union_map
*isl_union_map_reset_range_space(
4125 __isl_take isl_union_map
*umap
, __isl_take isl_space
*space
)
4127 struct isl_union_map_reset_range_space_data data
= { space
};
4129 data
.res
= isl_union_map_empty(isl_union_map_get_space(umap
));
4130 if (isl_union_map_foreach_map(umap
, &reset_range_space
, &data
) < 0)
4131 data
.res
= isl_union_map_free(data
.res
);
4133 isl_space_free(space
);
4134 isl_union_map_free(umap
);
4138 /* Check that "umap" and "space" have the same number of parameters.
4140 static isl_stat
check_union_map_space_equal_dim(__isl_keep isl_union_map
*umap
,
4141 __isl_keep isl_space
*space
)
4143 isl_size dim1
, dim2
;
4145 dim1
= isl_union_map_dim(umap
, isl_dim_param
);
4146 dim2
= isl_space_dim(space
, isl_dim_param
);
4147 if (dim1
< 0 || dim2
< 0)
4148 return isl_stat_error
;
4151 isl_die(isl_union_map_get_ctx(umap
), isl_error_invalid
,
4152 "number of parameters does not match", return isl_stat_error
);
4155 /* Internal data structure for isl_union_map_reset_equal_dim_space.
4156 * "space" is the target space.
4157 * "res" collects the results.
4159 struct isl_union_map_reset_params_data
{
4164 /* Replace the parameters of "map" by those of data->space and
4165 * add the result to data->res.
4167 static isl_stat
reset_params(__isl_take isl_map
*map
, void *user
)
4169 struct isl_union_map_reset_params_data
*data
= user
;
4172 space
= isl_map_get_space(map
);
4173 space
= isl_space_replace_params(space
, data
->space
);
4174 map
= isl_map_reset_equal_dim_space(map
, space
);
4175 data
->res
= isl_union_map_add_map(data
->res
, map
);
4177 return data
->res
? isl_stat_ok
: isl_stat_error
;
4180 /* Replace the space of "umap" by "space", without modifying
4181 * the dimension of "umap", i.e., the number of parameters of "umap".
4183 * Since the hash values of the maps in the union map depend
4184 * on the parameters, a new union map needs to be constructed.
4186 __isl_give isl_union_map
*isl_union_map_reset_equal_dim_space(
4187 __isl_take isl_union_map
*umap
, __isl_take isl_space
*space
)
4189 struct isl_union_map_reset_params_data data
= { space
};
4191 isl_space
*umap_space
;
4193 umap_space
= isl_union_map_peek_space(umap
);
4194 equal
= isl_space_is_equal(umap_space
, space
);
4198 isl_space_free(space
);
4201 if (check_union_map_space_equal_dim(umap
, space
) < 0)
4204 data
.res
= isl_union_map_empty(isl_space_copy(space
));
4205 if (isl_union_map_foreach_map(umap
, &reset_params
, &data
) < 0)
4206 data
.res
= isl_union_map_free(data
.res
);
4208 isl_space_free(space
);
4209 isl_union_map_free(umap
);
4212 isl_union_map_free(umap
);
4213 isl_space_free(space
);
4217 /* Internal data structure for isl_union_map_order_at_multi_union_pw_aff.
4218 * "mupa" is the function from which the isl_multi_pw_affs are extracted.
4219 * "order" is applied to the extracted isl_multi_pw_affs that correspond
4220 * to the domain and the range of each map.
4221 * "res" collects the results.
4223 struct isl_union_order_at_data
{
4224 isl_multi_union_pw_aff
*mupa
;
4225 __isl_give isl_map
*(*order
)(__isl_take isl_multi_pw_aff
*mpa1
,
4226 __isl_take isl_multi_pw_aff
*mpa2
);
4230 /* Intersect "map" with the result of applying data->order to
4231 * the functions in data->mupa that apply to the domain and the range
4232 * of "map" and add the result to data->res.
4234 static isl_stat
order_at(__isl_take isl_map
*map
, void *user
)
4236 struct isl_union_order_at_data
*data
= user
;
4238 isl_multi_pw_aff
*mpa1
, *mpa2
;
4241 space
= isl_space_domain(isl_map_get_space(map
));
4242 mpa1
= isl_multi_union_pw_aff_extract_multi_pw_aff(data
->mupa
, space
);
4243 space
= isl_space_range(isl_map_get_space(map
));
4244 mpa2
= isl_multi_union_pw_aff_extract_multi_pw_aff(data
->mupa
, space
);
4245 order
= data
->order(mpa1
, mpa2
);
4246 map
= isl_map_intersect(map
, order
);
4247 data
->res
= isl_union_map_add_map(data
->res
, map
);
4249 return data
->res
? isl_stat_ok
: isl_stat_error
;
4252 /* If "mupa" has a non-trivial explicit domain, then intersect
4253 * domain and range of "umap" with this explicit domain.
4254 * If the explicit domain only describes constraints on the parameters,
4255 * then the intersection only needs to be performed once.
4257 static __isl_give isl_union_map
*intersect_explicit_domain(
4258 __isl_take isl_union_map
*umap
, __isl_keep isl_multi_union_pw_aff
*mupa
)
4260 isl_bool non_trivial
, is_params
;
4263 non_trivial
= isl_multi_union_pw_aff_has_non_trivial_domain(mupa
);
4264 if (non_trivial
< 0)
4265 return isl_union_map_free(umap
);
4268 mupa
= isl_multi_union_pw_aff_copy(mupa
);
4269 dom
= isl_multi_union_pw_aff_domain(mupa
);
4270 is_params
= isl_union_set_is_params(dom
);
4271 if (is_params
< 0) {
4272 isl_union_set_free(dom
);
4273 return isl_union_map_free(umap
);
4278 set
= isl_union_set_params(dom
);
4279 umap
= isl_union_map_intersect_params(umap
, set
);
4282 umap
= isl_union_map_intersect_domain(umap
, isl_union_set_copy(dom
));
4283 umap
= isl_union_map_intersect_range(umap
, dom
);
4287 /* Intersect each map in "umap" with the result of calling "order"
4288 * on the functions is "mupa" that apply to the domain and the range
4291 static __isl_give isl_union_map
*isl_union_map_order_at_multi_union_pw_aff(
4292 __isl_take isl_union_map
*umap
, __isl_take isl_multi_union_pw_aff
*mupa
,
4293 __isl_give isl_map
*(*order
)(__isl_take isl_multi_pw_aff
*mpa1
,
4294 __isl_take isl_multi_pw_aff
*mpa2
))
4296 struct isl_union_order_at_data data
;
4298 umap
= isl_union_map_align_params(umap
,
4299 isl_multi_union_pw_aff_get_space(mupa
));
4300 mupa
= isl_multi_union_pw_aff_align_params(mupa
,
4301 isl_union_map_get_space(umap
));
4302 umap
= intersect_explicit_domain(umap
, mupa
);
4305 data
.res
= isl_union_map_empty(isl_union_map_get_space(umap
));
4306 if (isl_union_map_foreach_map(umap
, &order_at
, &data
) < 0)
4307 data
.res
= isl_union_map_free(data
.res
);
4309 isl_multi_union_pw_aff_free(mupa
);
4310 isl_union_map_free(umap
);
4314 /* Return the subset of "umap" where the domain and the range
4315 * have equal "mupa" values.
4317 __isl_give isl_union_map
*isl_union_map_eq_at_multi_union_pw_aff(
4318 __isl_take isl_union_map
*umap
,
4319 __isl_take isl_multi_union_pw_aff
*mupa
)
4321 return isl_union_map_order_at_multi_union_pw_aff(umap
, mupa
,
4322 &isl_multi_pw_aff_eq_map
);
4327 #include "isl_union_map_lex_templ.c"
4331 #include "isl_union_map_lex_templ.c"
4335 #include "isl_union_map_lex_templ.c"
4339 #include "isl_union_map_lex_templ.c"
4341 /* Return the union of the elements in the list "list".
4343 __isl_give isl_union_set
*isl_union_set_list_union(
4344 __isl_take isl_union_set_list
*list
)
4352 n
= isl_union_set_list_n_union_set(list
);
4356 ctx
= isl_union_set_list_get_ctx(list
);
4357 space
= isl_space_params_alloc(ctx
, 0);
4358 res
= isl_union_set_empty(space
);
4360 for (i
= 0; i
< n
; ++i
) {
4361 isl_union_set
*uset_i
;
4363 uset_i
= isl_union_set_list_get_union_set(list
, i
);
4364 res
= isl_union_set_union(res
, uset_i
);
4367 isl_union_set_list_free(list
);
4370 isl_union_set_list_free(list
);
4374 /* Update *hash with the hash value of "map".
4376 static isl_stat
add_hash(__isl_take isl_map
*map
, void *user
)
4378 uint32_t *hash
= user
;
4381 map_hash
= isl_map_get_hash(map
);
4382 isl_hash_hash(*hash
, map_hash
);
4388 /* Return a hash value that digests "umap".
4390 uint32_t isl_union_map_get_hash(__isl_keep isl_union_map
*umap
)
4397 hash
= isl_hash_init();
4398 if (isl_union_map_foreach_map(umap
, &add_hash
, &hash
) < 0)
4404 /* Return a hash value that digests "uset".
4406 uint32_t isl_union_set_get_hash(__isl_keep isl_union_set
*uset
)
4408 return isl_union_map_get_hash(uset
);
4411 /* Add the number of basic sets in "set" to "n".
4413 static isl_stat
add_n(__isl_take isl_set
*set
, void *user
)
4418 set_n
= isl_set_n_basic_set(set
);
4422 return set_n
< 0 ? isl_stat_error
: isl_stat_ok
;
4425 /* Return the total number of basic sets in "uset".
4427 int isl_union_set_n_basic_set(__isl_keep isl_union_set
*uset
)
4431 if (isl_union_set_foreach_set(uset
, &add_n
, &n
) < 0)
4437 /* Add the basic sets in "set" to "list".
4439 static isl_stat
add_list(__isl_take isl_set
*set
, void *user
)
4441 isl_basic_set_list
**list
= user
;
4442 isl_basic_set_list
*list_i
;
4444 list_i
= isl_set_get_basic_set_list(set
);
4445 *list
= isl_basic_set_list_concat(*list
, list_i
);
4449 return isl_stat_error
;
4453 /* Return a list containing all the basic sets in "uset".
4455 * First construct a list of the appropriate size and
4456 * then add all the elements.
4458 __isl_give isl_basic_set_list
*isl_union_set_get_basic_set_list(
4459 __isl_keep isl_union_set
*uset
)
4463 isl_basic_set_list
*list
;
4467 ctx
= isl_union_set_get_ctx(uset
);
4468 n
= isl_union_set_n_basic_set(uset
);
4471 list
= isl_basic_set_list_alloc(ctx
, n
);
4472 if (isl_union_set_foreach_set(uset
, &add_list
, &list
) < 0)
4473 list
= isl_basic_set_list_free(list
);
4478 /* Internal data structure for isl_union_map_remove_map_if.
4479 * "fn" and "user" are the arguments to isl_union_map_remove_map_if.
4481 struct isl_union_map_remove_map_if_data
{
4482 isl_bool (*fn
)(__isl_keep isl_map
*map
, void *user
);
4486 /* isl_un_op_control filter that negates the result of data->fn
4489 static isl_bool
not(__isl_keep isl_map
*map
, void *user
)
4491 struct isl_union_map_remove_map_if_data
*data
= user
;
4493 return isl_bool_not(data
->fn(map
, data
->user
));
4496 /* Dummy isl_un_op_control transformation callback that
4497 * simply returns the input.
4499 static __isl_give isl_map
*map_id(__isl_take isl_map
*map
)
4504 /* Call "fn" on every map in "umap" and remove those maps
4505 * for which the callback returns true.
4507 * Use un_op to keep only those maps that are not filtered out,
4508 * applying an identity transformation on them.
4510 __isl_give isl_union_map
*isl_union_map_remove_map_if(
4511 __isl_take isl_union_map
*umap
,
4512 isl_bool (*fn
)(__isl_keep isl_map
*map
, void *user
), void *user
)
4514 struct isl_union_map_remove_map_if_data data
= { fn
, user
};
4515 struct isl_un_op_control control
= {
4517 .filter_user
= &data
,
4520 return un_op(umap
, &control
);
4523 /* Does "map" have "space" as domain (ignoring parameters)?
4525 static isl_bool
has_domain_space_tuples(__isl_keep isl_map
*map
, void *user
)
4527 isl_space
*space
= user
;
4529 return isl_space_has_domain_tuples(space
, isl_map_peek_space(map
));
4532 /* Does "map" have "space" as range (ignoring parameters)?
4534 static isl_bool
has_range_space_tuples(__isl_keep isl_map
*map
, void *user
)
4536 isl_space
*space
= user
;
4538 return isl_space_has_range_tuples(space
, isl_map_peek_space(map
));
4541 /* Wrapper around isl_map_bind_range for use as a un_op callback.
4543 static __isl_give isl_map
*bind_range(__isl_take isl_map
*map
, void *user
)
4545 isl_multi_id
*tuple
= user
;
4547 return isl_map_bind_range(map
, isl_multi_id_copy(tuple
));
4550 /* Bind the output dimensions of "umap" to parameters with identifiers
4551 * specified by "tuple", living in the range space of "umap",
4552 * for those maps that have a matching range space.
4554 __isl_give isl_union_set
*isl_union_map_bind_range(
4555 __isl_take isl_union_map
*umap
, __isl_take isl_multi_id
*tuple
)
4557 struct isl_un_op_control control
= {
4558 .filter
= &has_range_space_tuples
,
4559 .filter_user
= isl_multi_id_peek_space(tuple
),
4560 .fn_map2
= &bind_range
,
4561 .fn_map2_user
= tuple
,
4563 isl_union_set
*bound
;
4565 bound
= uset_from_umap(un_op(umap
, &control
));
4566 isl_multi_id_free(tuple
);
4570 /* Only keep those elements in "umap" that have a domain in "space".
4572 __isl_give isl_union_map
*isl_union_map_intersect_domain_space(
4573 __isl_take isl_union_map
*umap
, __isl_take isl_space
*space
)
4575 struct isl_un_op_control control
= {
4576 .filter
= &has_domain_space_tuples
,
4577 .filter_user
= space
,
4580 umap
= un_op(umap
, &control
);
4581 isl_space_free(space
);
4585 /* Only keep those elements in "umap" that have a range in "space".
4587 __isl_give isl_union_map
*isl_union_map_intersect_range_space(
4588 __isl_take isl_union_map
*umap
, __isl_take isl_space
*space
)
4590 struct isl_un_op_control control
= {
4591 .filter
= &has_range_space_tuples
,
4592 .filter_user
= space
,
4595 umap
= un_op(umap
, &control
);
4596 isl_space_free(space
);