interface: update to move of llvm/Support/Host.h to llvm/TargetParser/Host.h
[isl.git] / isl_map.c
blobdf15393eabefed9f2a03f368147fed1dcdb6c59b
1 /*
2 * Copyright 2008-2009 Katholieke Universiteit Leuven
3 * Copyright 2010 INRIA Saclay
4 * Copyright 2012-2014 Ecole Normale Superieure
5 * Copyright 2014 INRIA Rocquencourt
6 * Copyright 2016 INRIA Paris
7 * Copyright 2016 Sven Verdoolaege
8 * Copyright 2018-2019 Cerebras Systems
10 * Use of this software is governed by the MIT license
12 * Written by Sven Verdoolaege, K.U.Leuven, Departement
13 * Computerwetenschappen, Celestijnenlaan 200A, B-3001 Leuven, Belgium
14 * and INRIA Saclay - Ile-de-France, Parc Club Orsay Universite,
15 * ZAC des vignes, 4 rue Jacques Monod, 91893 Orsay, France
16 * and Ecole Normale Superieure, 45 rue d’Ulm, 75230 Paris, France
17 * and Inria Paris - Rocquencourt, Domaine de Voluceau - Rocquencourt,
18 * B.P. 105 - 78153 Le Chesnay, France
19 * and Centre de Recherche Inria de Paris, 2 rue Simone Iff - Voie DQ12,
20 * CS 42112, 75589 Paris Cedex 12, France
21 * and Cerebras Systems, 175 S San Antonio Rd, Los Altos, CA, USA
24 #include <string.h>
25 #include <isl_ctx_private.h>
26 #include <isl_map_private.h>
27 #include <isl_blk.h>
28 #include <isl_id_private.h>
29 #include <isl/constraint.h>
30 #include "isl_space_private.h"
31 #include "isl_equalities.h"
32 #include <isl_lp_private.h>
33 #include <isl_seq.h>
34 #include <isl/set.h>
35 #include <isl/map.h>
36 #include <isl_reordering.h>
37 #include "isl_sample.h"
38 #include <isl_sort.h>
39 #include "isl_tab.h"
40 #include <isl/vec.h>
41 #include <isl_mat_private.h>
42 #include <isl_vec_private.h>
43 #include <isl_dim_map.h>
44 #include <isl_local_space_private.h>
45 #include <isl_aff_private.h>
46 #include <isl_options_private.h>
47 #include <isl_morph.h>
48 #include <isl_val_private.h>
49 #include <isl_printer_private.h>
51 #include <bset_to_bmap.c>
52 #include <bset_from_bmap.c>
53 #include <set_to_map.c>
54 #include <set_from_map.c>
56 /* Treat "bset" as a basic map.
57 * Internally, isl_basic_set is defined to isl_basic_map, so in practice,
58 * this function performs a redundant cast.
60 static __isl_keep const isl_basic_map *const_bset_to_bmap(
61 __isl_keep const isl_basic_set *bset)
63 return (const isl_basic_map *) bset;
66 #undef TYPE
67 #define TYPE isl_basic_map
68 #include "has_single_reference_templ.c"
70 static unsigned pos(__isl_keep isl_space *space, enum isl_dim_type type)
72 switch (type) {
73 case isl_dim_param: return 1;
74 case isl_dim_in: return 1 + space->nparam;
75 case isl_dim_out: return 1 + space->nparam + space->n_in;
76 default: return 0;
80 isl_size isl_basic_map_dim(__isl_keep isl_basic_map *bmap,
81 enum isl_dim_type type)
83 if (!bmap)
84 return isl_size_error;
85 switch (type) {
86 case isl_dim_cst: return 1;
87 case isl_dim_param:
88 case isl_dim_in:
89 case isl_dim_out: return isl_space_dim(bmap->dim, type);
90 case isl_dim_div: return bmap->n_div;
91 case isl_dim_all: return isl_basic_map_total_dim(bmap);
92 default: return 0;
96 /* Return the space of "map".
98 __isl_keep isl_space *isl_map_peek_space(__isl_keep const isl_map *map)
100 return map ? map->dim : NULL;
103 /* Return the space of "set".
105 __isl_keep isl_space *isl_set_peek_space(__isl_keep isl_set *set)
107 return isl_map_peek_space(set_to_map(set));
110 isl_size isl_map_dim(__isl_keep isl_map *map, enum isl_dim_type type)
112 return isl_space_dim(isl_map_peek_space(map), type);
115 /* Return the dimensionality of the domain (tuple) of the map.
117 isl_size isl_map_domain_tuple_dim(__isl_keep isl_map *map)
119 return isl_map_dim(map, isl_dim_in);
122 /* Return the dimensionality of the range (tuple) of the map.
124 isl_size isl_map_range_tuple_dim(__isl_keep isl_map *map)
126 return isl_map_dim(map, isl_dim_out);
129 isl_size isl_set_dim(__isl_keep isl_set *set, enum isl_dim_type type)
131 return isl_map_dim(set_to_map(set), type);
134 /* Return the dimensionality of the (tuple of the) set.
136 isl_size isl_set_tuple_dim(__isl_keep isl_set *set)
138 return isl_set_dim(set, isl_dim_set);
141 /* Return the position of the variables of the given type
142 * within the sequence of variables of "bmap".
144 isl_size isl_basic_map_var_offset(__isl_keep isl_basic_map *bmap,
145 enum isl_dim_type type)
147 isl_space *space;
149 space = isl_basic_map_peek_space(bmap);
150 if (!space)
151 return isl_size_error;
153 switch (type) {
154 case isl_dim_param:
155 case isl_dim_in:
156 case isl_dim_out: return isl_space_offset(space, type);
157 case isl_dim_div: return isl_space_dim(space, isl_dim_all);
158 case isl_dim_cst:
159 default:
160 isl_die(isl_basic_map_get_ctx(bmap), isl_error_invalid,
161 "invalid dimension type", return isl_size_error);
165 /* Return the position of the variables of the given type
166 * within the sequence of variables of "bset".
168 isl_size isl_basic_set_var_offset(__isl_keep isl_basic_set *bset,
169 enum isl_dim_type type)
171 return isl_basic_map_var_offset(bset_to_bmap(bset), type);
174 /* Return the position of the coefficients of the variables of the given type
175 * within the sequence of coefficients of "bmap".
177 unsigned isl_basic_map_offset(__isl_keep isl_basic_map *bmap,
178 enum isl_dim_type type)
180 switch (type) {
181 case isl_dim_cst: return 0;
182 case isl_dim_param:
183 case isl_dim_in:
184 case isl_dim_out:
185 case isl_dim_div: return 1 + isl_basic_map_var_offset(bmap, type);
186 default: return 0;
190 unsigned isl_basic_set_offset(__isl_keep isl_basic_set *bset,
191 enum isl_dim_type type)
193 return isl_basic_map_offset(bset, type);
196 static unsigned map_offset(__isl_keep isl_map *map, enum isl_dim_type type)
198 return pos(map->dim, type);
201 isl_size isl_basic_set_dim(__isl_keep isl_basic_set *bset,
202 enum isl_dim_type type)
204 return isl_basic_map_dim(bset, type);
207 isl_size isl_basic_set_n_dim(__isl_keep isl_basic_set *bset)
209 return isl_basic_set_dim(bset, isl_dim_set);
212 isl_size isl_basic_set_n_param(__isl_keep isl_basic_set *bset)
214 return isl_basic_set_dim(bset, isl_dim_param);
217 isl_size isl_basic_set_total_dim(__isl_keep const isl_basic_set *bset)
219 return isl_basic_map_total_dim(const_bset_to_bmap(bset));
222 isl_size isl_set_n_dim(__isl_keep isl_set *set)
224 return isl_set_dim(set, isl_dim_set);
227 isl_size isl_set_n_param(__isl_keep isl_set *set)
229 return isl_set_dim(set, isl_dim_param);
232 isl_size isl_basic_map_total_dim(__isl_keep const isl_basic_map *bmap)
234 isl_size dim;
236 if (!bmap)
237 return isl_size_error;
238 dim = isl_space_dim(bmap->dim, isl_dim_all);
239 if (dim < 0)
240 return isl_size_error;
241 return dim + bmap->n_div;
244 /* Return the number of equality constraints in the description of "bmap".
245 * Return isl_size_error on error.
247 isl_size isl_basic_map_n_equality(__isl_keep isl_basic_map *bmap)
249 if (!bmap)
250 return isl_size_error;
251 return bmap->n_eq;
254 /* Return the number of equality constraints in the description of "bset".
255 * Return isl_size_error on error.
257 isl_size isl_basic_set_n_equality(__isl_keep isl_basic_set *bset)
259 return isl_basic_map_n_equality(bset_to_bmap(bset));
262 /* Return the number of inequality constraints in the description of "bmap".
263 * Return isl_size_error on error.
265 isl_size isl_basic_map_n_inequality(__isl_keep isl_basic_map *bmap)
267 if (!bmap)
268 return isl_size_error;
269 return bmap->n_ineq;
272 /* Return the number of inequality constraints in the description of "bset".
273 * Return isl_size_error on error.
275 isl_size isl_basic_set_n_inequality(__isl_keep isl_basic_set *bset)
277 return isl_basic_map_n_inequality(bset_to_bmap(bset));
280 /* Do "bmap1" and "bmap2" have the same parameters?
282 static isl_bool isl_basic_map_has_equal_params(__isl_keep isl_basic_map *bmap1,
283 __isl_keep isl_basic_map *bmap2)
285 isl_space *space1, *space2;
287 space1 = isl_basic_map_peek_space(bmap1);
288 space2 = isl_basic_map_peek_space(bmap2);
289 return isl_space_has_equal_params(space1, space2);
292 /* Do "map1" and "map2" have the same parameters?
294 isl_bool isl_map_has_equal_params(__isl_keep isl_map *map1,
295 __isl_keep isl_map *map2)
297 isl_space *space1, *space2;
299 space1 = isl_map_peek_space(map1);
300 space2 = isl_map_peek_space(map2);
301 return isl_space_has_equal_params(space1, space2);
304 /* Do "map" and "set" have the same parameters?
306 static isl_bool isl_map_set_has_equal_params(__isl_keep isl_map *map,
307 __isl_keep isl_set *set)
309 return isl_map_has_equal_params(map, set_to_map(set));
312 /* Is the tuple of type "type" of "bmap" the same as the single tuple of "bset"?
314 static isl_bool isl_basic_map_set_tuple_is_equal(__isl_keep isl_basic_map *bmap,
315 enum isl_dim_type type, __isl_keep isl_basic_set *bset)
317 isl_space *bmap_space, *bset_space;
319 bmap_space = isl_basic_map_peek_space(bmap);
320 bset_space = isl_basic_set_peek_space(bset);
321 return isl_space_tuple_is_equal(bmap_space, type,
322 bset_space, isl_dim_set);
325 /* Is the tuple of type "type" of "map" the same as the single tuple of "set"?
327 static isl_bool isl_map_set_tuple_is_equal(__isl_keep isl_map *map,
328 enum isl_dim_type type, __isl_keep isl_set *set)
330 return isl_map_tuple_is_equal(map, type, set_to_map(set), isl_dim_set);
333 isl_bool isl_map_compatible_domain(__isl_keep isl_map *map,
334 __isl_keep isl_set *set)
336 isl_bool m;
337 if (!map || !set)
338 return isl_bool_error;
339 m = isl_map_has_equal_params(map, set_to_map(set));
340 if (m < 0 || !m)
341 return m;
342 return isl_map_set_tuple_is_equal(map, isl_dim_in, set);
345 isl_bool isl_basic_map_compatible_domain(__isl_keep isl_basic_map *bmap,
346 __isl_keep isl_basic_set *bset)
348 isl_bool m;
349 if (!bmap || !bset)
350 return isl_bool_error;
351 m = isl_basic_map_has_equal_params(bmap, bset_to_bmap(bset));
352 if (m < 0 || !m)
353 return m;
354 return isl_basic_map_set_tuple_is_equal(bmap, isl_dim_in, bset);
357 isl_bool isl_map_compatible_range(__isl_keep isl_map *map,
358 __isl_keep isl_set *set)
360 isl_bool m;
361 if (!map || !set)
362 return isl_bool_error;
363 m = isl_map_has_equal_params(map, set_to_map(set));
364 if (m < 0 || !m)
365 return m;
366 return isl_map_set_tuple_is_equal(map, isl_dim_out, set);
369 isl_bool isl_basic_map_compatible_range(__isl_keep isl_basic_map *bmap,
370 __isl_keep isl_basic_set *bset)
372 isl_bool m;
373 if (!bmap || !bset)
374 return isl_bool_error;
375 m = isl_basic_map_has_equal_params(bmap, bset_to_bmap(bset));
376 if (m < 0 || !m)
377 return m;
378 return isl_basic_map_set_tuple_is_equal(bmap, isl_dim_out, bset);
381 isl_ctx *isl_basic_map_get_ctx(__isl_keep isl_basic_map *bmap)
383 return bmap ? bmap->ctx : NULL;
386 isl_ctx *isl_basic_set_get_ctx(__isl_keep isl_basic_set *bset)
388 return bset ? bset->ctx : NULL;
391 isl_ctx *isl_map_get_ctx(__isl_keep isl_map *map)
393 return map ? map->ctx : NULL;
396 isl_ctx *isl_set_get_ctx(__isl_keep isl_set *set)
398 return set ? set->ctx : NULL;
401 /* Return the space of "bmap".
403 __isl_keep isl_space *isl_basic_map_peek_space(
404 __isl_keep const isl_basic_map *bmap)
406 return bmap ? bmap->dim : NULL;
409 /* Return the space of "bset".
411 __isl_keep isl_space *isl_basic_set_peek_space(__isl_keep isl_basic_set *bset)
413 return isl_basic_map_peek_space(bset_to_bmap(bset));
416 __isl_give isl_space *isl_basic_map_get_space(__isl_keep isl_basic_map *bmap)
418 return isl_space_copy(isl_basic_map_peek_space(bmap));
421 __isl_give isl_space *isl_basic_set_get_space(__isl_keep isl_basic_set *bset)
423 return isl_basic_map_get_space(bset_to_bmap(bset));
426 /* Return the space of "bmap".
427 * This may be either a copy or the space itself
428 * if there is only one reference to "bmap".
429 * This allows the space to be modified inplace
430 * if both the basic map and its space have only a single reference.
431 * The caller is not allowed to modify "bmap" between this call and
432 * a subsequent call to isl_basic_map_restore_space.
433 * The only exception is that isl_basic_map_free can be called instead.
435 static __isl_give isl_space *isl_basic_map_take_space(
436 __isl_keep isl_basic_map *bmap)
438 isl_space *space;
440 if (!bmap)
441 return NULL;
442 if (bmap->ref != 1)
443 return isl_basic_map_get_space(bmap);
444 space = bmap->dim;
445 bmap->dim = NULL;
446 return space;
449 /* Set the space of "bmap" to "space", where the space of "bmap" may be missing
450 * due to a preceding call to isl_basic_map_take_space.
451 * However, in this case, "bmap" only has a single reference and
452 * then the call to isl_basic_map_cow has no effect.
454 static __isl_give isl_basic_map *isl_basic_map_restore_space(
455 __isl_take isl_basic_map *bmap, __isl_take isl_space *space)
457 if (!bmap || !space)
458 goto error;
460 if (bmap->dim == space) {
461 isl_space_free(space);
462 return bmap;
465 bmap = isl_basic_map_cow(bmap);
466 if (!bmap)
467 goto error;
468 isl_space_free(bmap->dim);
469 bmap->dim = space;
471 return bmap;
472 error:
473 isl_basic_map_free(bmap);
474 isl_space_free(space);
475 return NULL;
478 /* Extract the divs in "bmap" as a matrix.
480 __isl_give isl_mat *isl_basic_map_get_divs(__isl_keep isl_basic_map *bmap)
482 int i;
483 isl_ctx *ctx;
484 isl_mat *div;
485 isl_size v_div;
486 unsigned cols;
488 v_div = isl_basic_map_var_offset(bmap, isl_dim_div);
489 if (v_div < 0)
490 return NULL;
492 ctx = isl_basic_map_get_ctx(bmap);
493 cols = 1 + 1 + v_div + bmap->n_div;
494 div = isl_mat_alloc(ctx, bmap->n_div, cols);
495 if (!div)
496 return NULL;
498 for (i = 0; i < bmap->n_div; ++i)
499 isl_seq_cpy(div->row[i], bmap->div[i], cols);
501 return div;
504 /* Extract the divs in "bset" as a matrix.
506 __isl_give isl_mat *isl_basic_set_get_divs(__isl_keep isl_basic_set *bset)
508 return isl_basic_map_get_divs(bset);
511 __isl_give isl_local_space *isl_basic_map_get_local_space(
512 __isl_keep isl_basic_map *bmap)
514 isl_mat *div;
516 if (!bmap)
517 return NULL;
519 div = isl_basic_map_get_divs(bmap);
520 return isl_local_space_alloc_div(isl_space_copy(bmap->dim), div);
523 __isl_give isl_local_space *isl_basic_set_get_local_space(
524 __isl_keep isl_basic_set *bset)
526 return isl_basic_map_get_local_space(bset);
529 /* For each known div d = floor(f/m), add the constraints
531 * f - m d >= 0
532 * -(f-(m-1)) + m d >= 0
534 * Do not finalize the result.
536 static __isl_give isl_basic_map *add_known_div_constraints(
537 __isl_take isl_basic_map *bmap)
539 int i;
540 isl_size n_div;
542 n_div = isl_basic_map_dim(bmap, isl_dim_div);
543 if (n_div < 0)
544 return isl_basic_map_free(bmap);
545 if (n_div == 0)
546 return bmap;
547 bmap = isl_basic_map_cow(bmap);
548 bmap = isl_basic_map_extend_constraints(bmap, 0, 2 * n_div);
549 if (!bmap)
550 return NULL;
551 for (i = 0; i < n_div; ++i) {
552 if (isl_int_is_zero(bmap->div[i][0]))
553 continue;
554 bmap = isl_basic_map_add_div_constraints(bmap, i);
557 return bmap;
560 __isl_give isl_basic_map *isl_basic_map_from_local_space(
561 __isl_take isl_local_space *ls)
563 int i;
564 isl_size n_div;
565 isl_basic_map *bmap;
567 n_div = isl_local_space_dim(ls, isl_dim_div);
568 if (n_div < 0)
569 ls = isl_local_space_free(ls);
570 if (!ls)
571 return NULL;
573 bmap = isl_basic_map_alloc_space(isl_local_space_get_space(ls),
574 n_div, 0, 2 * n_div);
576 for (i = 0; i < n_div; ++i)
577 if (isl_basic_map_alloc_div(bmap) < 0)
578 goto error;
580 for (i = 0; i < n_div; ++i)
581 isl_seq_cpy(bmap->div[i], ls->div->row[i], ls->div->n_col);
582 bmap = add_known_div_constraints(bmap);
584 isl_local_space_free(ls);
585 return bmap;
586 error:
587 isl_local_space_free(ls);
588 isl_basic_map_free(bmap);
589 return NULL;
592 __isl_give isl_basic_set *isl_basic_set_from_local_space(
593 __isl_take isl_local_space *ls)
595 return isl_basic_map_from_local_space(ls);
598 __isl_give isl_space *isl_map_get_space(__isl_keep isl_map *map)
600 return isl_space_copy(isl_map_peek_space(map));
603 __isl_give isl_space *isl_set_get_space(__isl_keep isl_set *set)
605 if (!set)
606 return NULL;
607 return isl_space_copy(set->dim);
610 /* Return the space of "map".
611 * This may be either a copy or the space itself
612 * if there is only one reference to "map".
613 * This allows the space to be modified inplace
614 * if both the map and its space have only a single reference.
615 * The caller is not allowed to modify "map" between this call and
616 * a subsequent call to isl_map_restore_space.
617 * The only exception is that isl_map_free can be called instead.
619 static __isl_give isl_space *isl_map_take_space(__isl_keep isl_map *map)
621 isl_space *space;
623 if (!map)
624 return NULL;
625 if (map->ref != 1)
626 return isl_map_get_space(map);
627 space = map->dim;
628 map->dim = NULL;
629 return space;
632 /* Set the space of "map" to "space", where the space of "map" may be missing
633 * due to a preceding call to isl_map_take_space.
634 * However, in this case, "map" only has a single reference and
635 * then the call to isl_map_cow has no effect.
637 static __isl_give isl_map *isl_map_restore_space(__isl_take isl_map *map,
638 __isl_take isl_space *space)
640 if (!map || !space)
641 goto error;
643 if (map->dim == space) {
644 isl_space_free(space);
645 return map;
648 map = isl_map_cow(map);
649 if (!map)
650 goto error;
651 isl_space_free(map->dim);
652 map->dim = space;
654 return map;
655 error:
656 isl_map_free(map);
657 isl_space_free(space);
658 return NULL;
661 __isl_give isl_basic_map *isl_basic_map_set_tuple_name(
662 __isl_take isl_basic_map *bmap, enum isl_dim_type type, const char *s)
664 isl_space *space;
666 space = isl_basic_map_take_space(bmap);
667 space = isl_space_set_tuple_name(space, type, s);
668 bmap = isl_basic_map_restore_space(bmap, space);
669 bmap = isl_basic_map_finalize(bmap);
670 return bmap;
673 __isl_give isl_basic_set *isl_basic_set_set_tuple_name(
674 __isl_take isl_basic_set *bset, const char *s)
676 return isl_basic_map_set_tuple_name(bset, isl_dim_set, s);
679 const char *isl_basic_map_get_tuple_name(__isl_keep isl_basic_map *bmap,
680 enum isl_dim_type type)
682 return bmap ? isl_space_get_tuple_name(bmap->dim, type) : NULL;
685 __isl_give isl_map *isl_map_set_tuple_name(__isl_take isl_map *map,
686 enum isl_dim_type type, const char *s)
688 int i;
689 isl_space *space;
691 map = isl_map_cow(map);
692 if (!map)
693 return NULL;
695 for (i = 0; i < map->n; ++i) {
696 map->p[i] = isl_basic_map_set_tuple_name(map->p[i], type, s);
697 if (!map->p[i])
698 goto error;
701 space = isl_map_take_space(map);
702 space = isl_space_set_tuple_name(space, type, s);
703 map = isl_map_restore_space(map, space);
705 return map;
706 error:
707 isl_map_free(map);
708 return NULL;
711 /* Replace the identifier of the tuple of type "type" by "id".
713 __isl_give isl_basic_map *isl_basic_map_set_tuple_id(
714 __isl_take isl_basic_map *bmap,
715 enum isl_dim_type type, __isl_take isl_id *id)
717 isl_space *space;
719 space = isl_basic_map_take_space(bmap);
720 space = isl_space_set_tuple_id(space, type, id);
721 bmap = isl_basic_map_restore_space(bmap, space);
722 bmap = isl_basic_map_finalize(bmap);
723 return bmap;
726 /* Replace the identifier of the tuple by "id".
728 __isl_give isl_basic_set *isl_basic_set_set_tuple_id(
729 __isl_take isl_basic_set *bset, __isl_take isl_id *id)
731 return isl_basic_map_set_tuple_id(bset, isl_dim_set, id);
734 /* Does the input or output tuple have a name?
736 isl_bool isl_map_has_tuple_name(__isl_keep isl_map *map, enum isl_dim_type type)
738 return map ? isl_space_has_tuple_name(map->dim, type) : isl_bool_error;
741 const char *isl_map_get_tuple_name(__isl_keep isl_map *map,
742 enum isl_dim_type type)
744 return map ? isl_space_get_tuple_name(map->dim, type) : NULL;
747 __isl_give isl_set *isl_set_set_tuple_name(__isl_take isl_set *set,
748 const char *s)
750 return set_from_map(isl_map_set_tuple_name(set_to_map(set),
751 isl_dim_set, s));
754 __isl_give isl_map *isl_map_set_tuple_id(__isl_take isl_map *map,
755 enum isl_dim_type type, __isl_take isl_id *id)
757 isl_space *space;
759 space = isl_map_take_space(map);
760 space = isl_space_set_tuple_id(space, type, id);
761 map = isl_map_restore_space(map, space);
763 return isl_map_reset_space(map, isl_map_get_space(map));
766 /* Replace the identifier of the domain tuple of "map" by "id".
768 __isl_give isl_map *isl_map_set_domain_tuple_id(__isl_take isl_map *map,
769 __isl_take isl_id *id)
771 return isl_map_set_tuple_id(map, isl_dim_in, id);
774 /* Replace the identifier of the range tuple of "map" by "id".
776 __isl_give isl_map *isl_map_set_range_tuple_id(__isl_take isl_map *map,
777 __isl_take isl_id *id)
779 return isl_map_set_tuple_id(map, isl_dim_out, id);
782 __isl_give isl_set *isl_set_set_tuple_id(__isl_take isl_set *set,
783 __isl_take isl_id *id)
785 return isl_map_set_tuple_id(set, isl_dim_set, id);
788 __isl_give isl_map *isl_map_reset_tuple_id(__isl_take isl_map *map,
789 enum isl_dim_type type)
791 isl_space *space;
793 space = isl_map_take_space(map);
794 space = isl_space_reset_tuple_id(space, type);
795 map = isl_map_restore_space(map, space);
797 return isl_map_reset_space(map, isl_map_get_space(map));
800 __isl_give isl_set *isl_set_reset_tuple_id(__isl_take isl_set *set)
802 return isl_map_reset_tuple_id(set, isl_dim_set);
805 isl_bool isl_map_has_tuple_id(__isl_keep isl_map *map, enum isl_dim_type type)
807 return map ? isl_space_has_tuple_id(map->dim, type) : isl_bool_error;
810 /* Does the domain tuple of "map" have an identifier?
812 isl_bool isl_map_has_domain_tuple_id(__isl_keep isl_map *map)
814 return isl_map_has_tuple_id(map, isl_dim_in);
817 /* Does the range tuple of "map" have an identifier?
819 isl_bool isl_map_has_range_tuple_id(__isl_keep isl_map *map)
821 return isl_map_has_tuple_id(map, isl_dim_out);
824 __isl_give isl_id *isl_map_get_tuple_id(__isl_keep isl_map *map,
825 enum isl_dim_type type)
827 return map ? isl_space_get_tuple_id(map->dim, type) : NULL;
830 /* Return the identifier of the domain tuple of "map", assuming it has one.
832 __isl_give isl_id *isl_map_get_domain_tuple_id(__isl_keep isl_map *map)
834 return isl_map_get_tuple_id(map, isl_dim_in);
837 /* Return the identifier of the range tuple of "map", assuming it has one.
839 __isl_give isl_id *isl_map_get_range_tuple_id(__isl_keep isl_map *map)
841 return isl_map_get_tuple_id(map, isl_dim_out);
844 isl_bool isl_set_has_tuple_id(__isl_keep isl_set *set)
846 return isl_map_has_tuple_id(set, isl_dim_set);
849 __isl_give isl_id *isl_set_get_tuple_id(__isl_keep isl_set *set)
851 return isl_map_get_tuple_id(set, isl_dim_set);
854 /* Does the set tuple have a name?
856 isl_bool isl_set_has_tuple_name(__isl_keep isl_set *set)
858 if (!set)
859 return isl_bool_error;
860 return isl_space_has_tuple_name(set->dim, isl_dim_set);
864 const char *isl_basic_set_get_tuple_name(__isl_keep isl_basic_set *bset)
866 return bset ? isl_space_get_tuple_name(bset->dim, isl_dim_set) : NULL;
869 const char *isl_set_get_tuple_name(__isl_keep isl_set *set)
871 return set ? isl_space_get_tuple_name(set->dim, isl_dim_set) : NULL;
874 const char *isl_basic_map_get_dim_name(__isl_keep isl_basic_map *bmap,
875 enum isl_dim_type type, unsigned pos)
877 return bmap ? isl_space_get_dim_name(bmap->dim, type, pos) : NULL;
880 const char *isl_basic_set_get_dim_name(__isl_keep isl_basic_set *bset,
881 enum isl_dim_type type, unsigned pos)
883 return bset ? isl_space_get_dim_name(bset->dim, type, pos) : NULL;
886 /* Does the given dimension have a name?
888 isl_bool isl_map_has_dim_name(__isl_keep isl_map *map,
889 enum isl_dim_type type, unsigned pos)
891 if (!map)
892 return isl_bool_error;
893 return isl_space_has_dim_name(map->dim, type, pos);
896 const char *isl_map_get_dim_name(__isl_keep isl_map *map,
897 enum isl_dim_type type, unsigned pos)
899 return map ? isl_space_get_dim_name(map->dim, type, pos) : NULL;
902 const char *isl_set_get_dim_name(__isl_keep isl_set *set,
903 enum isl_dim_type type, unsigned pos)
905 return set ? isl_space_get_dim_name(set->dim, type, pos) : NULL;
908 /* Does the given dimension have a name?
910 isl_bool isl_set_has_dim_name(__isl_keep isl_set *set,
911 enum isl_dim_type type, unsigned pos)
913 if (!set)
914 return isl_bool_error;
915 return isl_space_has_dim_name(set->dim, type, pos);
918 __isl_give isl_basic_map *isl_basic_map_set_dim_name(
919 __isl_take isl_basic_map *bmap,
920 enum isl_dim_type type, unsigned pos, const char *s)
922 isl_space *space;
924 space = isl_basic_map_take_space(bmap);
925 space = isl_space_set_dim_name(space, type, pos, s);
926 bmap = isl_basic_map_restore_space(bmap, space);
927 return isl_basic_map_finalize(bmap);
930 __isl_give isl_map *isl_map_set_dim_name(__isl_take isl_map *map,
931 enum isl_dim_type type, unsigned pos, const char *s)
933 int i;
934 isl_space *space;
936 map = isl_map_cow(map);
937 if (!map)
938 return NULL;
940 for (i = 0; i < map->n; ++i) {
941 map->p[i] = isl_basic_map_set_dim_name(map->p[i], type, pos, s);
942 if (!map->p[i])
943 goto error;
946 space = isl_map_take_space(map);
947 space = isl_space_set_dim_name(space, type, pos, s);
948 map = isl_map_restore_space(map, space);
950 return map;
951 error:
952 isl_map_free(map);
953 return NULL;
956 __isl_give isl_basic_set *isl_basic_set_set_dim_name(
957 __isl_take isl_basic_set *bset,
958 enum isl_dim_type type, unsigned pos, const char *s)
960 return bset_from_bmap(isl_basic_map_set_dim_name(bset_to_bmap(bset),
961 type, pos, s));
964 __isl_give isl_set *isl_set_set_dim_name(__isl_take isl_set *set,
965 enum isl_dim_type type, unsigned pos, const char *s)
967 return set_from_map(isl_map_set_dim_name(set_to_map(set),
968 type, pos, s));
971 isl_bool isl_basic_map_has_dim_id(__isl_keep isl_basic_map *bmap,
972 enum isl_dim_type type, unsigned pos)
974 if (!bmap)
975 return isl_bool_error;
976 return isl_space_has_dim_id(bmap->dim, type, pos);
979 __isl_give isl_id *isl_basic_set_get_dim_id(__isl_keep isl_basic_set *bset,
980 enum isl_dim_type type, unsigned pos)
982 return bset ? isl_space_get_dim_id(bset->dim, type, pos) : NULL;
985 isl_bool isl_map_has_dim_id(__isl_keep isl_map *map,
986 enum isl_dim_type type, unsigned pos)
988 return map ? isl_space_has_dim_id(map->dim, type, pos) : isl_bool_error;
991 __isl_give isl_id *isl_map_get_dim_id(__isl_keep isl_map *map,
992 enum isl_dim_type type, unsigned pos)
994 return map ? isl_space_get_dim_id(map->dim, type, pos) : NULL;
997 isl_bool isl_set_has_dim_id(__isl_keep isl_set *set,
998 enum isl_dim_type type, unsigned pos)
1000 return isl_map_has_dim_id(set, type, pos);
1003 __isl_give isl_id *isl_set_get_dim_id(__isl_keep isl_set *set,
1004 enum isl_dim_type type, unsigned pos)
1006 return isl_map_get_dim_id(set, type, pos);
1009 __isl_give isl_map *isl_map_set_dim_id(__isl_take isl_map *map,
1010 enum isl_dim_type type, unsigned pos, __isl_take isl_id *id)
1012 isl_space *space;
1014 space = isl_map_take_space(map);
1015 space = isl_space_set_dim_id(space, type, pos, id);
1016 map = isl_map_restore_space(map, space);
1018 return isl_map_reset_space(map, isl_map_get_space(map));
1021 __isl_give isl_set *isl_set_set_dim_id(__isl_take isl_set *set,
1022 enum isl_dim_type type, unsigned pos, __isl_take isl_id *id)
1024 return isl_map_set_dim_id(set, type, pos, id);
1027 int isl_map_find_dim_by_id(__isl_keep isl_map *map, enum isl_dim_type type,
1028 __isl_keep isl_id *id)
1030 if (!map)
1031 return -1;
1032 return isl_space_find_dim_by_id(map->dim, type, id);
1035 int isl_set_find_dim_by_id(__isl_keep isl_set *set, enum isl_dim_type type,
1036 __isl_keep isl_id *id)
1038 return isl_map_find_dim_by_id(set, type, id);
1041 /* Return the position of the dimension of the given type and name
1042 * in "bmap".
1043 * Return -1 if no such dimension can be found.
1045 int isl_basic_map_find_dim_by_name(__isl_keep isl_basic_map *bmap,
1046 enum isl_dim_type type, const char *name)
1048 if (!bmap)
1049 return -1;
1050 return isl_space_find_dim_by_name(bmap->dim, type, name);
1053 int isl_map_find_dim_by_name(__isl_keep isl_map *map, enum isl_dim_type type,
1054 const char *name)
1056 if (!map)
1057 return -1;
1058 return isl_space_find_dim_by_name(map->dim, type, name);
1061 int isl_set_find_dim_by_name(__isl_keep isl_set *set, enum isl_dim_type type,
1062 const char *name)
1064 return isl_map_find_dim_by_name(set, type, name);
1067 /* Check whether equality i of bset is a pure stride constraint
1068 * on a single dimension, i.e., of the form
1070 * v = k e
1072 * with k a constant and e an existentially quantified variable.
1074 isl_bool isl_basic_set_eq_is_stride(__isl_keep isl_basic_set *bset, int i)
1076 isl_size nparam;
1077 isl_size d;
1078 isl_size n_div;
1079 int pos1;
1080 int pos2;
1082 nparam = isl_basic_set_dim(bset, isl_dim_param);
1083 d = isl_basic_set_dim(bset, isl_dim_set);
1084 n_div = isl_basic_set_dim(bset, isl_dim_div);
1085 if (nparam < 0 || d < 0 || n_div < 0)
1086 return isl_bool_error;
1088 if (!isl_int_is_zero(bset->eq[i][0]))
1089 return isl_bool_false;
1091 if (isl_seq_first_non_zero(bset->eq[i] + 1, nparam) != -1)
1092 return isl_bool_false;
1093 pos1 = isl_seq_first_non_zero(bset->eq[i] + 1 + nparam, d);
1094 if (pos1 == -1)
1095 return isl_bool_false;
1096 if (isl_seq_first_non_zero(bset->eq[i] + 1 + nparam + pos1 + 1,
1097 d - pos1 - 1) != -1)
1098 return isl_bool_false;
1100 pos2 = isl_seq_first_non_zero(bset->eq[i] + 1 + nparam + d, n_div);
1101 if (pos2 == -1)
1102 return isl_bool_false;
1103 if (isl_seq_first_non_zero(bset->eq[i] + 1 + nparam + d + pos2 + 1,
1104 n_div - pos2 - 1) != -1)
1105 return isl_bool_false;
1106 if (!isl_int_is_one(bset->eq[i][1 + nparam + pos1]) &&
1107 !isl_int_is_negone(bset->eq[i][1 + nparam + pos1]))
1108 return isl_bool_false;
1110 return isl_bool_true;
1113 /* Reset the user pointer on all identifiers of parameters and tuples
1114 * of the space of "map".
1116 __isl_give isl_map *isl_map_reset_user(__isl_take isl_map *map)
1118 isl_space *space;
1120 space = isl_map_get_space(map);
1121 space = isl_space_reset_user(space);
1122 map = isl_map_reset_space(map, space);
1124 return map;
1127 /* Reset the user pointer on all identifiers of parameters and tuples
1128 * of the space of "set".
1130 __isl_give isl_set *isl_set_reset_user(__isl_take isl_set *set)
1132 return isl_map_reset_user(set);
1135 isl_bool isl_basic_map_is_rational(__isl_keep isl_basic_map *bmap)
1137 if (!bmap)
1138 return isl_bool_error;
1139 return ISL_F_ISSET(bmap, ISL_BASIC_MAP_RATIONAL);
1142 /* Has "map" been marked as a rational map?
1143 * In particular, have all basic maps in "map" been marked this way?
1144 * An empty map is not considered to be rational.
1145 * Maps where only some of the basic maps are marked rational
1146 * are not allowed.
1148 isl_bool isl_map_is_rational(__isl_keep isl_map *map)
1150 int i;
1151 isl_bool rational;
1153 if (!map)
1154 return isl_bool_error;
1155 if (map->n == 0)
1156 return isl_bool_false;
1157 rational = isl_basic_map_is_rational(map->p[0]);
1158 if (rational < 0)
1159 return rational;
1160 for (i = 1; i < map->n; ++i) {
1161 isl_bool rational_i;
1163 rational_i = isl_basic_map_is_rational(map->p[i]);
1164 if (rational_i < 0)
1165 return rational_i;
1166 if (rational != rational_i)
1167 isl_die(isl_map_get_ctx(map), isl_error_unsupported,
1168 "mixed rational and integer basic maps "
1169 "not supported", return isl_bool_error);
1172 return rational;
1175 /* Has "set" been marked as a rational set?
1176 * In particular, have all basic set in "set" been marked this way?
1177 * An empty set is not considered to be rational.
1178 * Sets where only some of the basic sets are marked rational
1179 * are not allowed.
1181 isl_bool isl_set_is_rational(__isl_keep isl_set *set)
1183 return isl_map_is_rational(set);
1186 int isl_basic_set_is_rational(__isl_keep isl_basic_set *bset)
1188 return isl_basic_map_is_rational(bset);
1191 /* Does "bmap" contain any rational points?
1193 * If "bmap" has an equality for each dimension, equating the dimension
1194 * to an integer constant, then it has no rational points, even if it
1195 * is marked as rational.
1197 isl_bool isl_basic_map_has_rational(__isl_keep isl_basic_map *bmap)
1199 isl_bool has_rational = isl_bool_true;
1200 isl_size total;
1202 if (!bmap)
1203 return isl_bool_error;
1204 if (isl_basic_map_plain_is_empty(bmap))
1205 return isl_bool_false;
1206 if (!isl_basic_map_is_rational(bmap))
1207 return isl_bool_false;
1208 bmap = isl_basic_map_copy(bmap);
1209 bmap = isl_basic_map_implicit_equalities(bmap);
1210 total = isl_basic_map_dim(bmap, isl_dim_all);
1211 if (total < 0)
1212 return isl_bool_error;
1213 if (bmap->n_eq == total) {
1214 int i, j;
1215 for (i = 0; i < bmap->n_eq; ++i) {
1216 j = isl_seq_first_non_zero(bmap->eq[i] + 1, total);
1217 if (j < 0)
1218 break;
1219 if (!isl_int_is_one(bmap->eq[i][1 + j]) &&
1220 !isl_int_is_negone(bmap->eq[i][1 + j]))
1221 break;
1222 j = isl_seq_first_non_zero(bmap->eq[i] + 1 + j + 1,
1223 total - j - 1);
1224 if (j >= 0)
1225 break;
1227 if (i == bmap->n_eq)
1228 has_rational = isl_bool_false;
1230 isl_basic_map_free(bmap);
1232 return has_rational;
1235 /* Does "map" contain any rational points?
1237 isl_bool isl_map_has_rational(__isl_keep isl_map *map)
1239 int i;
1240 isl_bool has_rational;
1242 if (!map)
1243 return isl_bool_error;
1244 for (i = 0; i < map->n; ++i) {
1245 has_rational = isl_basic_map_has_rational(map->p[i]);
1246 if (has_rational < 0 || has_rational)
1247 return has_rational;
1249 return isl_bool_false;
1252 /* Does "set" contain any rational points?
1254 isl_bool isl_set_has_rational(__isl_keep isl_set *set)
1256 return isl_map_has_rational(set);
1259 /* Is this basic set a parameter domain?
1261 isl_bool isl_basic_set_is_params(__isl_keep isl_basic_set *bset)
1263 if (!bset)
1264 return isl_bool_error;
1265 return isl_space_is_params(bset->dim);
1268 /* Is this set a parameter domain?
1270 isl_bool isl_set_is_params(__isl_keep isl_set *set)
1272 if (!set)
1273 return isl_bool_error;
1274 return isl_space_is_params(set->dim);
1277 /* Is this map actually a parameter domain?
1278 * Users should never call this function. Outside of isl,
1279 * a map can never be a parameter domain.
1281 isl_bool isl_map_is_params(__isl_keep isl_map *map)
1283 if (!map)
1284 return isl_bool_error;
1285 return isl_space_is_params(map->dim);
1288 static __isl_give isl_basic_map *basic_map_init(isl_ctx *ctx,
1289 __isl_take isl_basic_map *bmap, unsigned extra,
1290 unsigned n_eq, unsigned n_ineq)
1292 int i;
1293 isl_space *space = isl_basic_map_peek_space(bmap);
1294 isl_size n_var = isl_space_dim(space, isl_dim_all);
1295 size_t row_size = 1 + n_var + extra;
1297 bmap->ctx = ctx;
1298 isl_ctx_ref(ctx);
1300 if (n_var < 0)
1301 return isl_basic_map_free(bmap);
1303 bmap->block = isl_blk_alloc(ctx, (n_ineq + n_eq) * row_size);
1304 if (isl_blk_is_error(bmap->block))
1305 goto error;
1307 bmap->ineq = isl_alloc_array(ctx, isl_int *, n_ineq + n_eq);
1308 if ((n_ineq + n_eq) && !bmap->ineq)
1309 goto error;
1311 if (extra == 0) {
1312 bmap->block2 = isl_blk_empty();
1313 bmap->div = NULL;
1314 } else {
1315 bmap->block2 = isl_blk_alloc(ctx, extra * (1 + row_size));
1316 if (isl_blk_is_error(bmap->block2))
1317 goto error;
1319 bmap->div = isl_alloc_array(ctx, isl_int *, extra);
1320 if (!bmap->div)
1321 goto error;
1324 for (i = 0; i < n_ineq + n_eq; ++i)
1325 bmap->ineq[i] = bmap->block.data + i * row_size;
1327 for (i = 0; i < extra; ++i)
1328 bmap->div[i] = bmap->block2.data + i * (1 + row_size);
1330 bmap->ref = 1;
1331 bmap->flags = 0;
1332 bmap->c_size = n_eq + n_ineq;
1333 bmap->eq = bmap->ineq + n_ineq;
1334 bmap->extra = extra;
1335 bmap->n_eq = 0;
1336 bmap->n_ineq = 0;
1337 bmap->n_div = 0;
1338 bmap->sample = NULL;
1340 return bmap;
1341 error:
1342 isl_basic_map_free(bmap);
1343 return NULL;
1346 __isl_give isl_basic_set *isl_basic_set_alloc(isl_ctx *ctx,
1347 unsigned nparam, unsigned dim, unsigned extra,
1348 unsigned n_eq, unsigned n_ineq)
1350 struct isl_basic_map *bmap;
1351 isl_space *space;
1353 space = isl_space_set_alloc(ctx, nparam, dim);
1354 if (!space)
1355 return NULL;
1357 bmap = isl_basic_map_alloc_space(space, extra, n_eq, n_ineq);
1358 return bset_from_bmap(bmap);
1361 __isl_give isl_basic_set *isl_basic_set_alloc_space(__isl_take isl_space *space,
1362 unsigned extra, unsigned n_eq, unsigned n_ineq)
1364 struct isl_basic_map *bmap;
1365 if (!space)
1366 return NULL;
1367 isl_assert(space->ctx, space->n_in == 0, goto error);
1368 bmap = isl_basic_map_alloc_space(space, extra, n_eq, n_ineq);
1369 return bset_from_bmap(bmap);
1370 error:
1371 isl_space_free(space);
1372 return NULL;
1375 __isl_give isl_basic_map *isl_basic_map_alloc_space(__isl_take isl_space *space,
1376 unsigned extra, unsigned n_eq, unsigned n_ineq)
1378 struct isl_basic_map *bmap;
1380 if (!space)
1381 return NULL;
1382 bmap = isl_calloc_type(space->ctx, struct isl_basic_map);
1383 if (!bmap)
1384 goto error;
1385 bmap->dim = space;
1387 return basic_map_init(space->ctx, bmap, extra, n_eq, n_ineq);
1388 error:
1389 isl_space_free(space);
1390 return NULL;
1393 __isl_give isl_basic_map *isl_basic_map_alloc(isl_ctx *ctx,
1394 unsigned nparam, unsigned in, unsigned out, unsigned extra,
1395 unsigned n_eq, unsigned n_ineq)
1397 struct isl_basic_map *bmap;
1398 isl_space *space;
1400 space = isl_space_alloc(ctx, nparam, in, out);
1401 if (!space)
1402 return NULL;
1404 bmap = isl_basic_map_alloc_space(space, extra, n_eq, n_ineq);
1405 return bmap;
1408 static __isl_give isl_basic_map *dup_constraints(__isl_take isl_basic_map *dst,
1409 __isl_keep isl_basic_map *src)
1411 int i;
1412 isl_size total = isl_basic_map_dim(src, isl_dim_all);
1414 if (!dst || total < 0)
1415 return isl_basic_map_free(dst);
1417 for (i = 0; i < src->n_eq; ++i) {
1418 int j = isl_basic_map_alloc_equality(dst);
1419 if (j < 0)
1420 return isl_basic_map_free(dst);
1421 isl_seq_cpy(dst->eq[j], src->eq[i], 1+total);
1424 for (i = 0; i < src->n_ineq; ++i) {
1425 int j = isl_basic_map_alloc_inequality(dst);
1426 if (j < 0)
1427 return isl_basic_map_free(dst);
1428 isl_seq_cpy(dst->ineq[j], src->ineq[i], 1+total);
1431 for (i = 0; i < src->n_div; ++i) {
1432 int j = isl_basic_map_alloc_div(dst);
1433 if (j < 0)
1434 return isl_basic_map_free(dst);
1435 isl_seq_cpy(dst->div[j], src->div[i], 1+1+total);
1437 ISL_F_SET(dst, ISL_BASIC_SET_FINAL);
1438 return dst;
1441 __isl_give isl_basic_map *isl_basic_map_dup(__isl_keep isl_basic_map *bmap)
1443 struct isl_basic_map *dup;
1445 if (!bmap)
1446 return NULL;
1447 dup = isl_basic_map_alloc_space(isl_space_copy(bmap->dim),
1448 bmap->n_div, bmap->n_eq, bmap->n_ineq);
1449 dup = dup_constraints(dup, bmap);
1450 if (!dup)
1451 return NULL;
1452 dup->flags = bmap->flags;
1453 dup->sample = isl_vec_copy(bmap->sample);
1454 return dup;
1457 __isl_give isl_basic_set *isl_basic_set_dup(__isl_keep isl_basic_set *bset)
1459 struct isl_basic_map *dup;
1461 dup = isl_basic_map_dup(bset_to_bmap(bset));
1462 return bset_from_bmap(dup);
1465 __isl_give isl_basic_set *isl_basic_set_copy(__isl_keep isl_basic_set *bset)
1467 return bset_from_bmap(isl_basic_map_copy(bset_to_bmap(bset)));
1470 __isl_give isl_set *isl_set_copy(__isl_keep isl_set *set)
1472 if (!set)
1473 return NULL;
1475 set->ref++;
1476 return set;
1479 __isl_give isl_basic_map *isl_basic_map_copy(__isl_keep isl_basic_map *bmap)
1481 if (!bmap)
1482 return NULL;
1484 if (ISL_F_ISSET(bmap, ISL_BASIC_SET_FINAL)) {
1485 bmap->ref++;
1486 return bmap;
1488 bmap = isl_basic_map_dup(bmap);
1489 if (bmap)
1490 ISL_F_SET(bmap, ISL_BASIC_SET_FINAL);
1491 return bmap;
1494 __isl_give isl_map *isl_map_copy(__isl_keep isl_map *map)
1496 if (!map)
1497 return NULL;
1499 map->ref++;
1500 return map;
1503 __isl_null isl_basic_map *isl_basic_map_free(__isl_take isl_basic_map *bmap)
1505 if (!bmap)
1506 return NULL;
1508 if (--bmap->ref > 0)
1509 return NULL;
1511 isl_ctx_deref(bmap->ctx);
1512 free(bmap->div);
1513 isl_blk_free(bmap->ctx, bmap->block2);
1514 free(bmap->ineq);
1515 isl_blk_free(bmap->ctx, bmap->block);
1516 isl_vec_free(bmap->sample);
1517 isl_space_free(bmap->dim);
1518 free(bmap);
1520 return NULL;
1523 __isl_null isl_basic_set *isl_basic_set_free(__isl_take isl_basic_set *bset)
1525 return isl_basic_map_free(bset_to_bmap(bset));
1528 static int room_for_con(__isl_keep isl_basic_map *bmap, unsigned n)
1530 return bmap->n_eq + bmap->n_ineq + n <= bmap->c_size;
1533 /* Check that "bset" does not involve any parameters.
1535 isl_stat isl_basic_set_check_no_params(__isl_keep isl_basic_set *bset)
1537 isl_size nparam;
1539 nparam = isl_basic_set_dim(bset, isl_dim_param);
1540 if (nparam < 0)
1541 return isl_stat_error;
1542 if (nparam != 0)
1543 isl_die(isl_basic_set_get_ctx(bset), isl_error_invalid,
1544 "basic set should not have any parameters",
1545 return isl_stat_error);
1546 return isl_stat_ok;
1549 /* Check that "bset" does not involve any local variables.
1551 isl_stat isl_basic_set_check_no_locals(__isl_keep isl_basic_set *bset)
1553 isl_size n_div;
1555 n_div = isl_basic_set_dim(bset, isl_dim_div);
1556 if (n_div < 0)
1557 return isl_stat_error;
1558 if (n_div != 0)
1559 isl_die(isl_basic_set_get_ctx(bset), isl_error_invalid,
1560 "basic set should not have any local variables",
1561 return isl_stat_error);
1562 return isl_stat_ok;
1565 #undef TYPE
1566 #define TYPE isl_map
1568 #include "isl_check_named_params_templ.c"
1570 #undef TYPE
1571 #define TYPE isl_basic_map
1573 static
1574 #include "isl_check_named_params_templ.c"
1576 /* Check that "bmap1" and "bmap2" have the same parameters,
1577 * reporting an error if they do not.
1579 static isl_stat isl_basic_map_check_equal_params(
1580 __isl_keep isl_basic_map *bmap1, __isl_keep isl_basic_map *bmap2)
1582 isl_bool match;
1584 match = isl_basic_map_has_equal_params(bmap1, bmap2);
1585 if (match < 0)
1586 return isl_stat_error;
1587 if (!match)
1588 isl_die(isl_basic_map_get_ctx(bmap1), isl_error_invalid,
1589 "parameters don't match", return isl_stat_error);
1590 return isl_stat_ok;
1593 #undef TYPE
1594 #define TYPE isl_map
1596 #include "isl_align_params_bin_templ.c"
1598 #undef SUFFIX
1599 #define SUFFIX set
1600 #undef ARG1
1601 #define ARG1 isl_map
1602 #undef ARG2
1603 #define ARG2 isl_set
1605 #include "isl_align_params_templ.c"
1607 isl_bool isl_map_align_params_map_map_and_test(__isl_keep isl_map *map1,
1608 __isl_keep isl_map *map2,
1609 isl_bool (*fn)(__isl_keep isl_map *map1, __isl_keep isl_map *map2))
1611 isl_bool r;
1613 if (!map1 || !map2)
1614 return isl_bool_error;
1615 if (isl_map_has_equal_params(map1, map2))
1616 return fn(map1, map2);
1617 if (isl_map_check_named_params(map1) < 0)
1618 return isl_bool_error;
1619 if (isl_map_check_named_params(map2) < 0)
1620 return isl_bool_error;
1621 map1 = isl_map_copy(map1);
1622 map2 = isl_map_copy(map2);
1623 map1 = isl_map_align_params(map1, isl_map_get_space(map2));
1624 map2 = isl_map_align_params(map2, isl_map_get_space(map1));
1625 r = fn(map1, map2);
1626 isl_map_free(map1);
1627 isl_map_free(map2);
1628 return r;
1631 int isl_basic_map_alloc_equality(__isl_keep isl_basic_map *bmap)
1633 isl_size total;
1634 struct isl_ctx *ctx;
1636 total = isl_basic_map_dim(bmap, isl_dim_all);
1637 if (total < 0)
1638 return -1;
1639 ctx = bmap->ctx;
1640 isl_assert(ctx, room_for_con(bmap, 1), return -1);
1641 isl_assert(ctx, (bmap->eq - bmap->ineq) + bmap->n_eq <= bmap->c_size,
1642 return -1);
1643 ISL_F_CLR(bmap, ISL_BASIC_MAP_NO_REDUNDANT);
1644 ISL_F_CLR(bmap, ISL_BASIC_MAP_NO_IMPLICIT);
1645 ISL_F_CLR(bmap, ISL_BASIC_MAP_ALL_EQUALITIES);
1646 ISL_F_CLR(bmap, ISL_BASIC_MAP_NORMALIZED_DIVS);
1647 if ((bmap->eq - bmap->ineq) + bmap->n_eq == bmap->c_size) {
1648 isl_int *t;
1649 int j = isl_basic_map_alloc_inequality(bmap);
1650 if (j < 0)
1651 return -1;
1652 t = bmap->ineq[j];
1653 bmap->ineq[j] = bmap->ineq[bmap->n_ineq - 1];
1654 bmap->ineq[bmap->n_ineq - 1] = bmap->eq[-1];
1655 bmap->eq[-1] = t;
1656 bmap->n_eq++;
1657 bmap->n_ineq--;
1658 bmap->eq--;
1659 return 0;
1661 isl_seq_clr(bmap->eq[bmap->n_eq] + 1 + total,
1662 bmap->extra - bmap->n_div);
1663 return bmap->n_eq++;
1666 int isl_basic_set_alloc_equality(__isl_keep isl_basic_set *bset)
1668 return isl_basic_map_alloc_equality(bset_to_bmap(bset));
1671 __isl_give isl_basic_map *isl_basic_map_free_equality(
1672 __isl_take isl_basic_map *bmap, unsigned n)
1674 if (!bmap)
1675 return NULL;
1676 if (n > bmap->n_eq)
1677 isl_die(isl_basic_map_get_ctx(bmap), isl_error_invalid,
1678 "invalid number of equalities",
1679 isl_basic_map_free(bmap));
1680 bmap->n_eq -= n;
1681 return bmap;
1684 __isl_give isl_basic_set *isl_basic_set_free_equality(
1685 __isl_take isl_basic_set *bset, unsigned n)
1687 return bset_from_bmap(isl_basic_map_free_equality(bset_to_bmap(bset),
1688 n));
1691 /* Drop the equality constraint at position "pos",
1692 * preserving the order of the other equality constraints.
1694 int isl_basic_map_drop_equality(__isl_keep isl_basic_map *bmap, unsigned pos)
1696 isl_int *t;
1697 int r;
1699 if (!bmap)
1700 return -1;
1701 isl_assert(bmap->ctx, pos < bmap->n_eq, return -1);
1703 t = bmap->eq[pos];
1704 bmap->n_eq--;
1705 for (r = pos; r < bmap->n_eq; ++r)
1706 bmap->eq[r] = bmap->eq[r + 1];
1707 bmap->eq[bmap->n_eq] = t;
1709 return 0;
1712 /* Turn inequality "pos" of "bmap" into an equality.
1714 * In particular, we move the inequality in front of the equalities
1715 * and move the last inequality in the position of the moved inequality.
1716 * Note that isl_tab_make_equalities_explicit depends on this particular
1717 * change in the ordering of the constraints.
1719 void isl_basic_map_inequality_to_equality(
1720 __isl_keep isl_basic_map *bmap, unsigned pos)
1722 isl_int *t;
1724 t = bmap->ineq[pos];
1725 bmap->ineq[pos] = bmap->ineq[bmap->n_ineq - 1];
1726 bmap->ineq[bmap->n_ineq - 1] = bmap->eq[-1];
1727 bmap->eq[-1] = t;
1728 bmap->n_eq++;
1729 bmap->n_ineq--;
1730 bmap->eq--;
1731 ISL_F_CLR(bmap, ISL_BASIC_MAP_NO_REDUNDANT);
1732 ISL_F_CLR(bmap, ISL_BASIC_MAP_SORTED);
1733 ISL_F_CLR(bmap, ISL_BASIC_MAP_NORMALIZED_DIVS);
1734 ISL_F_CLR(bmap, ISL_BASIC_MAP_ALL_EQUALITIES);
1737 static int room_for_ineq(__isl_keep isl_basic_map *bmap, unsigned n)
1739 return bmap->n_ineq + n <= bmap->eq - bmap->ineq;
1742 int isl_basic_map_alloc_inequality(__isl_keep isl_basic_map *bmap)
1744 isl_size total;
1745 struct isl_ctx *ctx;
1747 total = isl_basic_map_dim(bmap, isl_dim_all);
1748 if (total < 0)
1749 return -1;
1750 ctx = bmap->ctx;
1751 isl_assert(ctx, room_for_ineq(bmap, 1), return -1);
1752 ISL_F_CLR(bmap, ISL_BASIC_MAP_NO_IMPLICIT);
1753 ISL_F_CLR(bmap, ISL_BASIC_MAP_NO_REDUNDANT);
1754 ISL_F_CLR(bmap, ISL_BASIC_MAP_SORTED);
1755 ISL_F_CLR(bmap, ISL_BASIC_MAP_ALL_EQUALITIES);
1756 isl_seq_clr(bmap->ineq[bmap->n_ineq] + 1 + total,
1757 bmap->extra - bmap->n_div);
1758 return bmap->n_ineq++;
1761 int isl_basic_set_alloc_inequality(__isl_keep isl_basic_set *bset)
1763 return isl_basic_map_alloc_inequality(bset_to_bmap(bset));
1766 __isl_give isl_basic_map *isl_basic_map_free_inequality(
1767 __isl_take isl_basic_map *bmap, unsigned n)
1769 if (!bmap)
1770 return NULL;
1771 if (n > bmap->n_ineq)
1772 isl_die(isl_basic_map_get_ctx(bmap), isl_error_invalid,
1773 "invalid number of inequalities",
1774 return isl_basic_map_free(bmap));
1775 bmap->n_ineq -= n;
1776 return bmap;
1779 __isl_give isl_basic_set *isl_basic_set_free_inequality(
1780 __isl_take isl_basic_set *bset, unsigned n)
1782 return bset_from_bmap(isl_basic_map_free_inequality(bset_to_bmap(bset),
1783 n));
1786 int isl_basic_map_drop_inequality(__isl_keep isl_basic_map *bmap, unsigned pos)
1788 isl_int *t;
1789 if (!bmap)
1790 return -1;
1791 isl_assert(bmap->ctx, pos < bmap->n_ineq, return -1);
1793 if (pos != bmap->n_ineq - 1) {
1794 t = bmap->ineq[pos];
1795 bmap->ineq[pos] = bmap->ineq[bmap->n_ineq - 1];
1796 bmap->ineq[bmap->n_ineq - 1] = t;
1797 ISL_F_CLR(bmap, ISL_BASIC_MAP_SORTED);
1799 bmap->n_ineq--;
1800 return 0;
1803 int isl_basic_set_drop_inequality(__isl_keep isl_basic_set *bset, unsigned pos)
1805 return isl_basic_map_drop_inequality(bset_to_bmap(bset), pos);
1808 __isl_give isl_basic_map *isl_basic_map_add_eq(__isl_take isl_basic_map *bmap,
1809 isl_int *eq)
1811 isl_bool empty;
1812 isl_size total;
1813 int k;
1815 empty = isl_basic_map_plain_is_empty(bmap);
1816 if (empty < 0)
1817 return isl_basic_map_free(bmap);
1818 if (empty)
1819 return bmap;
1821 bmap = isl_basic_map_cow(bmap);
1822 bmap = isl_basic_map_extend_constraints(bmap, 1, 0);
1823 total = isl_basic_map_dim(bmap, isl_dim_all);
1824 if (total < 0)
1825 return isl_basic_map_free(bmap);
1826 k = isl_basic_map_alloc_equality(bmap);
1827 if (k < 0)
1828 goto error;
1829 isl_seq_cpy(bmap->eq[k], eq, 1 + total);
1830 return bmap;
1831 error:
1832 isl_basic_map_free(bmap);
1833 return NULL;
1836 __isl_give isl_basic_set *isl_basic_set_add_eq(__isl_take isl_basic_set *bset,
1837 isl_int *eq)
1839 return bset_from_bmap(isl_basic_map_add_eq(bset_to_bmap(bset), eq));
1842 __isl_give isl_basic_map *isl_basic_map_add_ineq(__isl_take isl_basic_map *bmap,
1843 isl_int *ineq)
1845 isl_size total;
1846 int k;
1848 bmap = isl_basic_map_cow(bmap);
1849 bmap = isl_basic_map_extend_constraints(bmap, 0, 1);
1850 total = isl_basic_map_dim(bmap, isl_dim_all);
1851 if (total < 0)
1852 return isl_basic_map_free(bmap);
1853 k = isl_basic_map_alloc_inequality(bmap);
1854 if (k < 0)
1855 goto error;
1856 isl_seq_cpy(bmap->ineq[k], ineq, 1 + total);
1857 return bmap;
1858 error:
1859 isl_basic_map_free(bmap);
1860 return NULL;
1863 __isl_give isl_basic_set *isl_basic_set_add_ineq(__isl_take isl_basic_set *bset,
1864 isl_int *ineq)
1866 return bset_from_bmap(isl_basic_map_add_ineq(bset_to_bmap(bset), ineq));
1869 int isl_basic_map_alloc_div(__isl_keep isl_basic_map *bmap)
1871 isl_size total;
1873 total = isl_basic_map_dim(bmap, isl_dim_all);
1874 if (total < 0)
1875 return -1;
1876 isl_assert(bmap->ctx, bmap->n_div < bmap->extra, return -1);
1877 isl_seq_clr(bmap->div[bmap->n_div] + 1 + 1 + total,
1878 bmap->extra - bmap->n_div);
1879 ISL_F_CLR(bmap, ISL_BASIC_MAP_NORMALIZED_DIVS);
1880 return bmap->n_div++;
1883 int isl_basic_set_alloc_div(__isl_keep isl_basic_set *bset)
1885 return isl_basic_map_alloc_div(bset_to_bmap(bset));
1888 #undef TYPE
1889 #define TYPE isl_basic_map
1890 #include "check_type_range_templ.c"
1892 /* Check that there are "n" dimensions of type "type" starting at "first"
1893 * in "bset".
1895 isl_stat isl_basic_set_check_range(__isl_keep isl_basic_set *bset,
1896 enum isl_dim_type type, unsigned first, unsigned n)
1898 return isl_basic_map_check_range(bset_to_bmap(bset),
1899 type, first, n);
1902 /* Insert an extra integer division, prescribed by "div", to "bmap"
1903 * at (integer division) position "pos".
1905 * The integer division is first added at the end and then moved
1906 * into the right position.
1908 __isl_give isl_basic_map *isl_basic_map_insert_div(
1909 __isl_take isl_basic_map *bmap, int pos, __isl_keep isl_vec *div)
1911 int i, k;
1912 isl_size total;
1914 bmap = isl_basic_map_cow(bmap);
1915 total = isl_basic_map_dim(bmap, isl_dim_all);
1916 if (total < 0 || !div)
1917 return isl_basic_map_free(bmap);
1919 if (div->size != 1 + 1 + total)
1920 isl_die(isl_basic_map_get_ctx(bmap), isl_error_invalid,
1921 "unexpected size", return isl_basic_map_free(bmap));
1922 if (isl_basic_map_check_range(bmap, isl_dim_div, pos, 0) < 0)
1923 return isl_basic_map_free(bmap);
1925 bmap = isl_basic_map_extend(bmap, 1, 0, 2);
1926 k = isl_basic_map_alloc_div(bmap);
1927 if (k < 0)
1928 return isl_basic_map_free(bmap);
1929 isl_seq_cpy(bmap->div[k], div->el, div->size);
1930 isl_int_set_si(bmap->div[k][div->size], 0);
1932 for (i = k; i > pos; --i)
1933 bmap = isl_basic_map_swap_div(bmap, i, i - 1);
1935 return bmap;
1938 isl_stat isl_basic_map_free_div(__isl_keep isl_basic_map *bmap, unsigned n)
1940 if (!bmap)
1941 return isl_stat_error;
1942 isl_assert(bmap->ctx, n <= bmap->n_div, return isl_stat_error);
1943 bmap->n_div -= n;
1944 return isl_stat_ok;
1947 static __isl_give isl_basic_map *add_constraints(
1948 __isl_take isl_basic_map *bmap1, __isl_take isl_basic_map *bmap2,
1949 unsigned i_pos, unsigned o_pos)
1951 isl_size total, n_param, n_in, n_out, n_div;
1952 unsigned o_in, o_out;
1953 isl_ctx *ctx;
1954 isl_space *space;
1955 struct isl_dim_map *dim_map;
1957 space = isl_basic_map_peek_space(bmap2);
1958 if (!bmap1 || !space)
1959 goto error;
1961 total = isl_basic_map_dim(bmap1, isl_dim_all);
1962 n_param = isl_basic_map_dim(bmap2, isl_dim_param);
1963 n_in = isl_basic_map_dim(bmap2, isl_dim_in);
1964 o_in = isl_basic_map_offset(bmap1, isl_dim_in) - 1 + i_pos;
1965 n_out = isl_basic_map_dim(bmap2, isl_dim_out);
1966 o_out = isl_basic_map_offset(bmap1, isl_dim_out) - 1 + o_pos;
1967 n_div = isl_basic_map_dim(bmap2, isl_dim_div);
1968 if (total < 0 || n_param < 0 || n_in < 0 || n_out < 0 || n_div < 0)
1969 goto error;
1970 ctx = isl_basic_map_get_ctx(bmap1);
1971 dim_map = isl_dim_map_alloc(ctx, total + n_div);
1972 isl_dim_map_dim_range(dim_map, space, isl_dim_param, 0, n_param, 0);
1973 isl_dim_map_dim_range(dim_map, space, isl_dim_in, 0, n_in, o_in);
1974 isl_dim_map_dim_range(dim_map, space, isl_dim_out, 0, n_out, o_out);
1975 isl_dim_map_div(dim_map, bmap2, total);
1977 return isl_basic_map_add_constraints_dim_map(bmap1, bmap2, dim_map);
1978 error:
1979 isl_basic_map_free(bmap1);
1980 isl_basic_map_free(bmap2);
1981 return NULL;
1984 __isl_give isl_basic_map *isl_basic_map_extend(__isl_take isl_basic_map *base,
1985 unsigned extra, unsigned n_eq, unsigned n_ineq)
1987 isl_space *space;
1988 struct isl_basic_map *ext;
1989 unsigned flags;
1990 int dims_ok;
1992 if (!base)
1993 goto error;
1995 dims_ok = base->extra >= base->n_div + extra;
1997 if (dims_ok && room_for_con(base, n_eq + n_ineq) &&
1998 room_for_ineq(base, n_ineq))
1999 return base;
2001 extra += base->extra;
2002 n_eq += base->n_eq;
2003 n_ineq += base->n_ineq;
2005 space = isl_basic_map_get_space(base);
2006 ext = isl_basic_map_alloc_space(space, extra, n_eq, n_ineq);
2007 if (!ext)
2008 goto error;
2010 if (dims_ok)
2011 ext->sample = isl_vec_copy(base->sample);
2012 flags = base->flags;
2013 ext = add_constraints(ext, base, 0, 0);
2014 if (ext) {
2015 ext->flags = flags;
2016 ISL_F_CLR(ext, ISL_BASIC_SET_FINAL);
2019 return ext;
2021 error:
2022 isl_basic_map_free(base);
2023 return NULL;
2026 __isl_give isl_basic_set *isl_basic_set_extend(__isl_take isl_basic_set *base,
2027 unsigned extra, unsigned n_eq, unsigned n_ineq)
2029 return bset_from_bmap(isl_basic_map_extend(bset_to_bmap(base),
2030 extra, n_eq, n_ineq));
2033 __isl_give isl_basic_map *isl_basic_map_extend_constraints(
2034 __isl_take isl_basic_map *base, unsigned n_eq, unsigned n_ineq)
2036 return isl_basic_map_extend(base, 0, n_eq, n_ineq);
2039 __isl_give isl_basic_set *isl_basic_set_extend_constraints(
2040 __isl_take isl_basic_set *base, unsigned n_eq, unsigned n_ineq)
2042 isl_basic_map *bmap = bset_to_bmap(base);
2043 bmap = isl_basic_map_extend_constraints(bmap, n_eq, n_ineq);
2044 return bset_from_bmap(bmap);
2047 __isl_give isl_basic_set *isl_basic_set_cow(__isl_take isl_basic_set *bset)
2049 return bset_from_bmap(isl_basic_map_cow(bset_to_bmap(bset)));
2052 __isl_give isl_basic_map *isl_basic_map_cow(__isl_take isl_basic_map *bmap)
2054 if (!bmap)
2055 return NULL;
2057 if (bmap->ref > 1) {
2058 bmap->ref--;
2059 bmap = isl_basic_map_dup(bmap);
2061 if (bmap) {
2062 ISL_F_CLR(bmap, ISL_BASIC_SET_FINAL);
2063 ISL_F_CLR(bmap, ISL_BASIC_MAP_REDUCED_COEFFICIENTS);
2065 return bmap;
2068 /* Clear all cached information in "map", either because it is about
2069 * to be modified or because it is being freed.
2070 * Always return the same pointer that is passed in.
2071 * This is needed for the use in isl_map_free.
2073 static __isl_give isl_map *clear_caches(__isl_take isl_map *map)
2075 isl_basic_map_free(map->cached_simple_hull[0]);
2076 isl_basic_map_free(map->cached_simple_hull[1]);
2077 map->cached_simple_hull[0] = NULL;
2078 map->cached_simple_hull[1] = NULL;
2079 return map;
2082 __isl_give isl_set *isl_set_cow(__isl_take isl_set *set)
2084 return isl_map_cow(set);
2087 /* Return an isl_map that is equal to "map" and that has only
2088 * a single reference.
2090 * If the original input already has only one reference, then
2091 * simply return it, but clear all cached information, since
2092 * it may be rendered invalid by the operations that will be
2093 * performed on the result.
2095 * Otherwise, create a duplicate (without any cached information).
2097 __isl_give isl_map *isl_map_cow(__isl_take isl_map *map)
2099 if (!map)
2100 return NULL;
2102 if (map->ref == 1)
2103 return clear_caches(map);
2104 map->ref--;
2105 return isl_map_dup(map);
2108 static void swap_vars(struct isl_blk blk, isl_int *a,
2109 unsigned a_len, unsigned b_len)
2111 isl_seq_cpy(blk.data, a+a_len, b_len);
2112 isl_seq_cpy(blk.data+b_len, a, a_len);
2113 isl_seq_cpy(a, blk.data, b_len+a_len);
2116 static __isl_give isl_basic_map *isl_basic_map_swap_vars(
2117 __isl_take isl_basic_map *bmap, unsigned pos, unsigned n1, unsigned n2)
2119 int i;
2120 struct isl_blk blk;
2122 if (isl_basic_map_check_range(bmap, isl_dim_all, pos - 1, n1 + n2) < 0)
2123 goto error;
2125 if (n1 == 0 || n2 == 0)
2126 return bmap;
2128 bmap = isl_basic_map_cow(bmap);
2129 if (!bmap)
2130 return NULL;
2132 blk = isl_blk_alloc(bmap->ctx, n1 + n2);
2133 if (isl_blk_is_error(blk))
2134 goto error;
2136 for (i = 0; i < bmap->n_eq; ++i)
2137 swap_vars(blk,
2138 bmap->eq[i] + pos, n1, n2);
2140 for (i = 0; i < bmap->n_ineq; ++i)
2141 swap_vars(blk,
2142 bmap->ineq[i] + pos, n1, n2);
2144 for (i = 0; i < bmap->n_div; ++i)
2145 swap_vars(blk,
2146 bmap->div[i]+1 + pos, n1, n2);
2148 isl_blk_free(bmap->ctx, blk);
2150 ISL_F_CLR(bmap, ISL_BASIC_SET_SORTED);
2151 bmap = isl_basic_map_gauss(bmap, NULL);
2152 return isl_basic_map_finalize(bmap);
2153 error:
2154 isl_basic_map_free(bmap);
2155 return NULL;
2158 /* The given basic map has turned out to be empty.
2159 * Explicitly mark it as such and change the representation
2160 * to a canonical representation of the empty basic map.
2161 * Since the basic map has conflicting constraints,
2162 * it must have at least one constraint, except perhaps
2163 * if it was already explicitly marked as being empty.
2164 * Do nothing in the latter case, i.e., if it has been marked empty and
2165 * has no constraints.
2167 __isl_give isl_basic_map *isl_basic_map_set_to_empty(
2168 __isl_take isl_basic_map *bmap)
2170 int i = 0;
2171 isl_bool empty;
2172 isl_size n;
2173 isl_size total;
2175 n = isl_basic_map_n_constraint(bmap);
2176 empty = isl_basic_map_plain_is_empty(bmap);
2177 if (n < 0 || empty < 0)
2178 return isl_basic_map_free(bmap);
2179 if (n == 0 && empty)
2180 return bmap;
2181 total = isl_basic_map_dim(bmap, isl_dim_all);
2182 if (total < 0)
2183 return isl_basic_map_free(bmap);
2184 if (isl_basic_map_free_div(bmap, bmap->n_div) < 0)
2185 return isl_basic_map_free(bmap);
2186 bmap = isl_basic_map_free_inequality(bmap, bmap->n_ineq);
2187 if (!bmap)
2188 return NULL;
2189 if (bmap->n_eq > 0) {
2190 bmap = isl_basic_map_free_equality(bmap, bmap->n_eq - 1);
2191 if (!bmap)
2192 return NULL;
2193 } else {
2194 i = isl_basic_map_alloc_equality(bmap);
2195 if (i < 0)
2196 goto error;
2198 isl_int_set_si(bmap->eq[i][0], 1);
2199 isl_seq_clr(bmap->eq[i]+1, total);
2200 ISL_F_SET(bmap, ISL_BASIC_MAP_EMPTY);
2201 isl_vec_free(bmap->sample);
2202 bmap->sample = NULL;
2203 return isl_basic_map_finalize(bmap);
2204 error:
2205 isl_basic_map_free(bmap);
2206 return NULL;
2209 __isl_give isl_basic_set *isl_basic_set_set_to_empty(
2210 __isl_take isl_basic_set *bset)
2212 return bset_from_bmap(isl_basic_map_set_to_empty(bset_to_bmap(bset)));
2215 __isl_give isl_basic_map *isl_basic_map_set_rational(
2216 __isl_take isl_basic_map *bmap)
2218 if (!bmap)
2219 return NULL;
2221 if (ISL_F_ISSET(bmap, ISL_BASIC_MAP_RATIONAL))
2222 return bmap;
2224 bmap = isl_basic_map_cow(bmap);
2225 if (!bmap)
2226 return NULL;
2228 ISL_F_SET(bmap, ISL_BASIC_MAP_RATIONAL);
2230 return isl_basic_map_finalize(bmap);
2233 __isl_give isl_basic_set *isl_basic_set_set_rational(
2234 __isl_take isl_basic_set *bset)
2236 return isl_basic_map_set_rational(bset);
2239 __isl_give isl_basic_set *isl_basic_set_set_integral(
2240 __isl_take isl_basic_set *bset)
2242 if (!bset)
2243 return NULL;
2245 if (!ISL_F_ISSET(bset, ISL_BASIC_MAP_RATIONAL))
2246 return bset;
2248 bset = isl_basic_set_cow(bset);
2249 if (!bset)
2250 return NULL;
2252 ISL_F_CLR(bset, ISL_BASIC_MAP_RATIONAL);
2254 return isl_basic_set_finalize(bset);
2257 __isl_give isl_map *isl_map_set_rational(__isl_take isl_map *map)
2259 int i;
2261 map = isl_map_cow(map);
2262 if (!map)
2263 return NULL;
2264 for (i = 0; i < map->n; ++i) {
2265 map->p[i] = isl_basic_map_set_rational(map->p[i]);
2266 if (!map->p[i])
2267 goto error;
2269 return map;
2270 error:
2271 isl_map_free(map);
2272 return NULL;
2275 __isl_give isl_set *isl_set_set_rational(__isl_take isl_set *set)
2277 return isl_map_set_rational(set);
2280 /* Swap divs "a" and "b" in "bmap" (without modifying any of the constraints
2281 * of "bmap").
2283 static void swap_div(__isl_keep isl_basic_map *bmap, int a, int b)
2285 isl_int *t = bmap->div[a];
2286 bmap->div[a] = bmap->div[b];
2287 bmap->div[b] = t;
2290 /* Swap divs "a" and "b" in "bmap" and adjust the constraints and
2291 * div definitions accordingly.
2293 __isl_give isl_basic_map *isl_basic_map_swap_div(__isl_take isl_basic_map *bmap,
2294 int a, int b)
2296 int i;
2297 isl_size off;
2299 off = isl_basic_map_var_offset(bmap, isl_dim_div);
2300 if (off < 0)
2301 return isl_basic_map_free(bmap);
2303 swap_div(bmap, a, b);
2305 for (i = 0; i < bmap->n_eq; ++i)
2306 isl_int_swap(bmap->eq[i][1+off+a], bmap->eq[i][1+off+b]);
2308 for (i = 0; i < bmap->n_ineq; ++i)
2309 isl_int_swap(bmap->ineq[i][1+off+a], bmap->ineq[i][1+off+b]);
2311 for (i = 0; i < bmap->n_div; ++i)
2312 isl_int_swap(bmap->div[i][1+1+off+a], bmap->div[i][1+1+off+b]);
2313 ISL_F_CLR(bmap, ISL_BASIC_MAP_SORTED);
2315 return bmap;
2318 static void constraint_drop_vars(isl_int *c, unsigned n, unsigned rem)
2320 isl_seq_cpy(c, c + n, rem);
2321 isl_seq_clr(c + rem, n);
2324 /* Drop n dimensions starting at first.
2326 * In principle, this frees up some extra variables as the number
2327 * of columns remains constant, but we would have to extend
2328 * the div array too as the number of rows in this array is assumed
2329 * to be equal to extra.
2331 __isl_give isl_basic_set *isl_basic_set_drop_dims(
2332 __isl_take isl_basic_set *bset, unsigned first, unsigned n)
2334 return isl_basic_map_drop(bset_to_bmap(bset), isl_dim_set, first, n);
2337 /* Move "n" divs starting at "first" to the end of the list of divs.
2339 static __isl_give isl_basic_map *move_divs_last(__isl_take isl_basic_map *bmap,
2340 unsigned first, unsigned n)
2342 isl_int **div;
2343 int i;
2345 if (first + n == bmap->n_div)
2346 return bmap;
2348 div = isl_alloc_array(bmap->ctx, isl_int *, n);
2349 if (!div)
2350 goto error;
2351 for (i = 0; i < n; ++i)
2352 div[i] = bmap->div[first + i];
2353 for (i = 0; i < bmap->n_div - first - n; ++i)
2354 bmap->div[first + i] = bmap->div[first + n + i];
2355 for (i = 0; i < n; ++i)
2356 bmap->div[bmap->n_div - n + i] = div[i];
2357 free(div);
2358 return bmap;
2359 error:
2360 isl_basic_map_free(bmap);
2361 return NULL;
2364 #undef TYPE
2365 #define TYPE isl_map
2366 static
2367 #include "check_type_range_templ.c"
2369 /* Check that there are "n" dimensions of type "type" starting at "first"
2370 * in "set".
2372 isl_stat isl_set_check_range(__isl_keep isl_set *set,
2373 enum isl_dim_type type, unsigned first, unsigned n)
2375 return isl_map_check_range(set_to_map(set), type, first, n);
2378 /* Drop "n" dimensions of type "type" starting at "first".
2379 * Perform the core computation, without cowing or
2380 * simplifying and finalizing the result.
2382 * In principle, this frees up some extra variables as the number
2383 * of columns remains constant, but we would have to extend
2384 * the div array too as the number of rows in this array is assumed
2385 * to be equal to extra.
2387 __isl_give isl_basic_map *isl_basic_map_drop_core(
2388 __isl_take isl_basic_map *bmap, enum isl_dim_type type,
2389 unsigned first, unsigned n)
2391 int i;
2392 unsigned offset;
2393 unsigned left;
2394 isl_size total;
2396 if (isl_basic_map_check_range(bmap, type, first, n) < 0)
2397 return isl_basic_map_free(bmap);
2399 total = isl_basic_map_dim(bmap, isl_dim_all);
2400 if (total < 0)
2401 return isl_basic_map_free(bmap);
2403 offset = isl_basic_map_offset(bmap, type) + first;
2404 left = total - (offset - 1) - n;
2405 for (i = 0; i < bmap->n_eq; ++i)
2406 constraint_drop_vars(bmap->eq[i]+offset, n, left);
2408 for (i = 0; i < bmap->n_ineq; ++i)
2409 constraint_drop_vars(bmap->ineq[i]+offset, n, left);
2411 for (i = 0; i < bmap->n_div; ++i)
2412 constraint_drop_vars(bmap->div[i]+1+offset, n, left);
2414 if (type == isl_dim_div) {
2415 bmap = move_divs_last(bmap, first, n);
2416 if (!bmap)
2417 return NULL;
2418 if (isl_basic_map_free_div(bmap, n) < 0)
2419 return isl_basic_map_free(bmap);
2420 } else
2421 bmap->dim = isl_space_drop_dims(bmap->dim, type, first, n);
2422 if (!bmap->dim)
2423 return isl_basic_map_free(bmap);
2425 ISL_F_CLR(bmap, ISL_BASIC_MAP_NO_REDUNDANT);
2426 ISL_F_CLR(bmap, ISL_BASIC_MAP_SORTED);
2427 return bmap;
2430 /* Drop "n" dimensions of type "type" starting at "first".
2432 * In principle, this frees up some extra variables as the number
2433 * of columns remains constant, but we would have to extend
2434 * the div array too as the number of rows in this array is assumed
2435 * to be equal to extra.
2437 __isl_give isl_basic_map *isl_basic_map_drop(__isl_take isl_basic_map *bmap,
2438 enum isl_dim_type type, unsigned first, unsigned n)
2440 if (!bmap)
2441 return NULL;
2442 if (n == 0 && !isl_space_is_named_or_nested(bmap->dim, type))
2443 return bmap;
2445 bmap = isl_basic_map_cow(bmap);
2446 if (!bmap)
2447 return NULL;
2449 bmap = isl_basic_map_drop_core(bmap, type, first, n);
2451 bmap = isl_basic_map_simplify(bmap);
2452 return isl_basic_map_finalize(bmap);
2455 __isl_give isl_basic_set *isl_basic_set_drop(__isl_take isl_basic_set *bset,
2456 enum isl_dim_type type, unsigned first, unsigned n)
2458 return bset_from_bmap(isl_basic_map_drop(bset_to_bmap(bset),
2459 type, first, n));
2462 /* No longer consider "map" to be normalized.
2464 static __isl_give isl_map *isl_map_unmark_normalized(__isl_take isl_map *map)
2466 if (!map)
2467 return NULL;
2468 ISL_F_CLR(map, ISL_MAP_NORMALIZED);
2469 return map;
2472 __isl_give isl_map *isl_map_drop(__isl_take isl_map *map,
2473 enum isl_dim_type type, unsigned first, unsigned n)
2475 int i;
2476 isl_space *space;
2478 if (isl_map_check_range(map, type, first, n) < 0)
2479 return isl_map_free(map);
2481 if (n == 0 && !isl_space_is_named_or_nested(map->dim, type))
2482 return map;
2483 map = isl_map_cow(map);
2484 if (!map)
2485 goto error;
2487 for (i = 0; i < map->n; ++i) {
2488 map->p[i] = isl_basic_map_drop(map->p[i], type, first, n);
2489 if (!map->p[i])
2490 goto error;
2492 map = isl_map_unmark_normalized(map);
2494 space = isl_map_take_space(map);
2495 space = isl_space_drop_dims(space, type, first, n);
2496 map = isl_map_restore_space(map, space);
2498 return map;
2499 error:
2500 isl_map_free(map);
2501 return NULL;
2504 __isl_give isl_set *isl_set_drop(__isl_take isl_set *set,
2505 enum isl_dim_type type, unsigned first, unsigned n)
2507 return set_from_map(isl_map_drop(set_to_map(set), type, first, n));
2510 /* Drop the integer division at position "div", which is assumed
2511 * not to appear in any of the constraints or
2512 * in any of the other integer divisions.
2514 * Since the integer division is redundant, there is no need to cow.
2516 __isl_give isl_basic_map *isl_basic_map_drop_div(
2517 __isl_take isl_basic_map *bmap, unsigned div)
2519 return isl_basic_map_drop_core(bmap, isl_dim_div, div, 1);
2522 /* Eliminate the specified n dimensions starting at first from the
2523 * constraints, without removing the dimensions from the space.
2524 * If the set is rational, the dimensions are eliminated using Fourier-Motzkin.
2526 __isl_give isl_map *isl_map_eliminate(__isl_take isl_map *map,
2527 enum isl_dim_type type, unsigned first, unsigned n)
2529 int i;
2531 if (n == 0)
2532 return map;
2534 if (isl_map_check_range(map, type, first, n) < 0)
2535 return isl_map_free(map);
2537 map = isl_map_cow(map);
2538 if (!map)
2539 return NULL;
2541 for (i = 0; i < map->n; ++i) {
2542 map->p[i] = isl_basic_map_eliminate(map->p[i], type, first, n);
2543 if (!map->p[i])
2544 goto error;
2546 return map;
2547 error:
2548 isl_map_free(map);
2549 return NULL;
2552 /* Eliminate the specified n dimensions starting at first from the
2553 * constraints, without removing the dimensions from the space.
2554 * If the set is rational, the dimensions are eliminated using Fourier-Motzkin.
2556 __isl_give isl_set *isl_set_eliminate(__isl_take isl_set *set,
2557 enum isl_dim_type type, unsigned first, unsigned n)
2559 return set_from_map(isl_map_eliminate(set_to_map(set), type, first, n));
2562 /* Eliminate the specified n dimensions starting at first from the
2563 * constraints, without removing the dimensions from the space.
2564 * If the set is rational, the dimensions are eliminated using Fourier-Motzkin.
2566 __isl_give isl_set *isl_set_eliminate_dims(__isl_take isl_set *set,
2567 unsigned first, unsigned n)
2569 return isl_set_eliminate(set, isl_dim_set, first, n);
2572 __isl_give isl_basic_map *isl_basic_map_remove_divs(
2573 __isl_take isl_basic_map *bmap)
2575 isl_size v_div;
2577 v_div = isl_basic_map_var_offset(bmap, isl_dim_div);
2578 if (v_div < 0)
2579 return isl_basic_map_free(bmap);
2580 bmap = isl_basic_map_eliminate_vars(bmap, v_div, bmap->n_div);
2581 if (!bmap)
2582 return NULL;
2583 bmap->n_div = 0;
2584 return isl_basic_map_finalize(bmap);
2587 __isl_give isl_basic_set *isl_basic_set_remove_divs(
2588 __isl_take isl_basic_set *bset)
2590 return bset_from_bmap(isl_basic_map_remove_divs(bset_to_bmap(bset)));
2593 __isl_give isl_map *isl_map_remove_divs(__isl_take isl_map *map)
2595 int i;
2597 if (!map)
2598 return NULL;
2599 if (map->n == 0)
2600 return map;
2602 map = isl_map_cow(map);
2603 if (!map)
2604 return NULL;
2606 for (i = 0; i < map->n; ++i) {
2607 map->p[i] = isl_basic_map_remove_divs(map->p[i]);
2608 if (!map->p[i])
2609 goto error;
2611 return map;
2612 error:
2613 isl_map_free(map);
2614 return NULL;
2617 __isl_give isl_set *isl_set_remove_divs(__isl_take isl_set *set)
2619 return isl_map_remove_divs(set);
2622 __isl_give isl_basic_map *isl_basic_map_remove_dims(
2623 __isl_take isl_basic_map *bmap, enum isl_dim_type type,
2624 unsigned first, unsigned n)
2626 if (isl_basic_map_check_range(bmap, type, first, n) < 0)
2627 return isl_basic_map_free(bmap);
2628 if (n == 0 && !isl_space_is_named_or_nested(bmap->dim, type))
2629 return bmap;
2630 bmap = isl_basic_map_eliminate_vars(bmap,
2631 isl_basic_map_offset(bmap, type) - 1 + first, n);
2632 if (!bmap)
2633 return bmap;
2634 if (ISL_F_ISSET(bmap, ISL_BASIC_MAP_EMPTY) && type == isl_dim_div)
2635 return bmap;
2636 bmap = isl_basic_map_drop(bmap, type, first, n);
2637 return bmap;
2640 /* Return true if the definition of the given div (recursively) involves
2641 * any of the given variables.
2643 static isl_bool div_involves_vars(__isl_keep isl_basic_map *bmap, int div,
2644 unsigned first, unsigned n)
2646 int i;
2647 unsigned div_offset = isl_basic_map_offset(bmap, isl_dim_div);
2649 if (isl_int_is_zero(bmap->div[div][0]))
2650 return isl_bool_false;
2651 if (isl_seq_first_non_zero(bmap->div[div] + 1 + first, n) >= 0)
2652 return isl_bool_true;
2654 for (i = bmap->n_div - 1; i >= 0; --i) {
2655 isl_bool involves;
2657 if (isl_int_is_zero(bmap->div[div][1 + div_offset + i]))
2658 continue;
2659 involves = div_involves_vars(bmap, i, first, n);
2660 if (involves < 0 || involves)
2661 return involves;
2664 return isl_bool_false;
2667 /* Try and add a lower and/or upper bound on "div" to "bmap"
2668 * based on inequality "i".
2669 * "total" is the total number of variables (excluding the divs).
2670 * "v" is a temporary object that can be used during the calculations.
2671 * If "lb" is set, then a lower bound should be constructed.
2672 * If "ub" is set, then an upper bound should be constructed.
2674 * The calling function has already checked that the inequality does not
2675 * reference "div", but we still need to check that the inequality is
2676 * of the right form. We'll consider the case where we want to construct
2677 * a lower bound. The construction of upper bounds is similar.
2679 * Let "div" be of the form
2681 * q = floor((a + f(x))/d)
2683 * We essentially check if constraint "i" is of the form
2685 * b + f(x) >= 0
2687 * so that we can use it to derive a lower bound on "div".
2688 * However, we allow a slightly more general form
2690 * b + g(x) >= 0
2692 * with the condition that the coefficients of g(x) - f(x) are all
2693 * divisible by d.
2694 * Rewriting this constraint as
2696 * 0 >= -b - g(x)
2698 * adding a + f(x) to both sides and dividing by d, we obtain
2700 * (a + f(x))/d >= (a-b)/d + (f(x)-g(x))/d
2702 * Taking the floor on both sides, we obtain
2704 * q >= floor((a-b)/d) + (f(x)-g(x))/d
2706 * or
2708 * (g(x)-f(x))/d + ceil((b-a)/d) + q >= 0
2710 * In the case of an upper bound, we construct the constraint
2712 * (g(x)+f(x))/d + floor((b+a)/d) - q >= 0
2715 static __isl_give isl_basic_map *insert_bounds_on_div_from_ineq(
2716 __isl_take isl_basic_map *bmap, int div, int i,
2717 unsigned total, isl_int v, int lb, int ub)
2719 int j;
2721 for (j = 0; (lb || ub) && j < total + bmap->n_div; ++j) {
2722 if (lb) {
2723 isl_int_sub(v, bmap->ineq[i][1 + j],
2724 bmap->div[div][1 + 1 + j]);
2725 lb = isl_int_is_divisible_by(v, bmap->div[div][0]);
2727 if (ub) {
2728 isl_int_add(v, bmap->ineq[i][1 + j],
2729 bmap->div[div][1 + 1 + j]);
2730 ub = isl_int_is_divisible_by(v, bmap->div[div][0]);
2733 if (!lb && !ub)
2734 return bmap;
2736 bmap = isl_basic_map_cow(bmap);
2737 bmap = isl_basic_map_extend_constraints(bmap, 0, lb + ub);
2738 if (lb) {
2739 int k = isl_basic_map_alloc_inequality(bmap);
2740 if (k < 0)
2741 goto error;
2742 for (j = 0; j < 1 + total + bmap->n_div; ++j) {
2743 isl_int_sub(bmap->ineq[k][j], bmap->ineq[i][j],
2744 bmap->div[div][1 + j]);
2745 isl_int_cdiv_q(bmap->ineq[k][j],
2746 bmap->ineq[k][j], bmap->div[div][0]);
2748 isl_int_set_si(bmap->ineq[k][1 + total + div], 1);
2750 if (ub) {
2751 int k = isl_basic_map_alloc_inequality(bmap);
2752 if (k < 0)
2753 goto error;
2754 for (j = 0; j < 1 + total + bmap->n_div; ++j) {
2755 isl_int_add(bmap->ineq[k][j], bmap->ineq[i][j],
2756 bmap->div[div][1 + j]);
2757 isl_int_fdiv_q(bmap->ineq[k][j],
2758 bmap->ineq[k][j], bmap->div[div][0]);
2760 isl_int_set_si(bmap->ineq[k][1 + total + div], -1);
2763 return bmap;
2764 error:
2765 isl_basic_map_free(bmap);
2766 return NULL;
2769 /* This function is called right before "div" is eliminated from "bmap"
2770 * using Fourier-Motzkin.
2771 * Look through the constraints of "bmap" for constraints on the argument
2772 * of the integer division and use them to construct constraints on the
2773 * integer division itself. These constraints can then be combined
2774 * during the Fourier-Motzkin elimination.
2775 * Note that it is only useful to introduce lower bounds on "div"
2776 * if "bmap" already contains upper bounds on "div" as the newly
2777 * introduce lower bounds can then be combined with the pre-existing
2778 * upper bounds. Similarly for upper bounds.
2779 * We therefore first check if "bmap" contains any lower and/or upper bounds
2780 * on "div".
2782 * It is interesting to note that the introduction of these constraints
2783 * can indeed lead to more accurate results, even when compared to
2784 * deriving constraints on the argument of "div" from constraints on "div".
2785 * Consider, for example, the set
2787 * { [i,j,k] : 3 + i + 2j >= 0 and 2 * [(i+2j)/4] <= k }
2789 * The second constraint can be rewritten as
2791 * 2 * [(-i-2j+3)/4] + k >= 0
2793 * from which we can derive
2795 * -i - 2j + 3 >= -2k
2797 * or
2799 * i + 2j <= 3 + 2k
2801 * Combined with the first constraint, we obtain
2803 * -3 <= 3 + 2k or k >= -3
2805 * If, on the other hand we derive a constraint on [(i+2j)/4] from
2806 * the first constraint, we obtain
2808 * [(i + 2j)/4] >= [-3/4] = -1
2810 * Combining this constraint with the second constraint, we obtain
2812 * k >= -2
2814 static __isl_give isl_basic_map *insert_bounds_on_div(
2815 __isl_take isl_basic_map *bmap, int div)
2817 int i;
2818 int check_lb, check_ub;
2819 isl_int v;
2820 isl_size v_div;
2822 if (!bmap)
2823 return NULL;
2825 if (isl_int_is_zero(bmap->div[div][0]))
2826 return bmap;
2828 v_div = isl_basic_map_var_offset(bmap, isl_dim_div);
2829 if (v_div < 0)
2830 return isl_basic_map_free(bmap);
2832 check_lb = 0;
2833 check_ub = 0;
2834 for (i = 0; (!check_lb || !check_ub) && i < bmap->n_ineq; ++i) {
2835 int s = isl_int_sgn(bmap->ineq[i][1 + v_div + div]);
2836 if (s > 0)
2837 check_ub = 1;
2838 if (s < 0)
2839 check_lb = 1;
2842 if (!check_lb && !check_ub)
2843 return bmap;
2845 isl_int_init(v);
2847 for (i = 0; bmap && i < bmap->n_ineq; ++i) {
2848 if (!isl_int_is_zero(bmap->ineq[i][1 + v_div + div]))
2849 continue;
2851 bmap = insert_bounds_on_div_from_ineq(bmap, div, i, v_div, v,
2852 check_lb, check_ub);
2855 isl_int_clear(v);
2857 return bmap;
2860 /* Remove all divs (recursively) involving any of the given dimensions
2861 * in their definitions.
2863 __isl_give isl_basic_map *isl_basic_map_remove_divs_involving_dims(
2864 __isl_take isl_basic_map *bmap,
2865 enum isl_dim_type type, unsigned first, unsigned n)
2867 int i;
2869 if (isl_basic_map_check_range(bmap, type, first, n) < 0)
2870 return isl_basic_map_free(bmap);
2871 first += isl_basic_map_offset(bmap, type);
2873 for (i = bmap->n_div - 1; i >= 0; --i) {
2874 isl_bool involves;
2876 involves = div_involves_vars(bmap, i, first, n);
2877 if (involves < 0)
2878 return isl_basic_map_free(bmap);
2879 if (!involves)
2880 continue;
2881 bmap = insert_bounds_on_div(bmap, i);
2882 bmap = isl_basic_map_remove_dims(bmap, isl_dim_div, i, 1);
2883 if (!bmap)
2884 return NULL;
2885 i = bmap->n_div;
2888 return bmap;
2891 __isl_give isl_basic_set *isl_basic_set_remove_divs_involving_dims(
2892 __isl_take isl_basic_set *bset,
2893 enum isl_dim_type type, unsigned first, unsigned n)
2895 return isl_basic_map_remove_divs_involving_dims(bset, type, first, n);
2898 __isl_give isl_map *isl_map_remove_divs_involving_dims(__isl_take isl_map *map,
2899 enum isl_dim_type type, unsigned first, unsigned n)
2901 int i;
2903 if (!map)
2904 return NULL;
2905 if (map->n == 0)
2906 return map;
2908 map = isl_map_cow(map);
2909 if (!map)
2910 return NULL;
2912 for (i = 0; i < map->n; ++i) {
2913 map->p[i] = isl_basic_map_remove_divs_involving_dims(map->p[i],
2914 type, first, n);
2915 if (!map->p[i])
2916 goto error;
2918 return map;
2919 error:
2920 isl_map_free(map);
2921 return NULL;
2924 __isl_give isl_set *isl_set_remove_divs_involving_dims(__isl_take isl_set *set,
2925 enum isl_dim_type type, unsigned first, unsigned n)
2927 return set_from_map(isl_map_remove_divs_involving_dims(set_to_map(set),
2928 type, first, n));
2931 /* Does the description of "bmap" depend on the specified dimensions?
2932 * We also check whether the dimensions appear in any of the div definitions.
2933 * In principle there is no need for this check. If the dimensions appear
2934 * in a div definition, they also appear in the defining constraints of that
2935 * div.
2937 isl_bool isl_basic_map_involves_dims(__isl_keep isl_basic_map *bmap,
2938 enum isl_dim_type type, unsigned first, unsigned n)
2940 int i;
2942 if (isl_basic_map_check_range(bmap, type, first, n) < 0)
2943 return isl_bool_error;
2945 first += isl_basic_map_offset(bmap, type);
2946 for (i = 0; i < bmap->n_eq; ++i)
2947 if (isl_seq_first_non_zero(bmap->eq[i] + first, n) >= 0)
2948 return isl_bool_true;
2949 for (i = 0; i < bmap->n_ineq; ++i)
2950 if (isl_seq_first_non_zero(bmap->ineq[i] + first, n) >= 0)
2951 return isl_bool_true;
2952 for (i = 0; i < bmap->n_div; ++i) {
2953 if (isl_int_is_zero(bmap->div[i][0]))
2954 continue;
2955 if (isl_seq_first_non_zero(bmap->div[i] + 1 + first, n) >= 0)
2956 return isl_bool_true;
2959 return isl_bool_false;
2962 isl_bool isl_map_involves_dims(__isl_keep isl_map *map,
2963 enum isl_dim_type type, unsigned first, unsigned n)
2965 int i;
2967 if (isl_map_check_range(map, type, first, n) < 0)
2968 return isl_bool_error;
2970 for (i = 0; i < map->n; ++i) {
2971 isl_bool involves = isl_basic_map_involves_dims(map->p[i],
2972 type, first, n);
2973 if (involves < 0 || involves)
2974 return involves;
2977 return isl_bool_false;
2980 isl_bool isl_basic_set_involves_dims(__isl_keep isl_basic_set *bset,
2981 enum isl_dim_type type, unsigned first, unsigned n)
2983 return isl_basic_map_involves_dims(bset, type, first, n);
2986 isl_bool isl_set_involves_dims(__isl_keep isl_set *set,
2987 enum isl_dim_type type, unsigned first, unsigned n)
2989 return isl_map_involves_dims(set, type, first, n);
2992 /* Does "bset" involve any local variables, i.e., integer divisions?
2994 static isl_bool isl_basic_set_involves_locals(__isl_keep isl_basic_set *bset)
2996 isl_size n;
2998 n = isl_basic_set_dim(bset, isl_dim_div);
2999 if (n < 0)
3000 return isl_bool_error;
3001 return isl_bool_ok(n > 0);
3004 /* isl_set_every_basic_set callback that checks whether "bset"
3005 * is free of local variables.
3007 static isl_bool basic_set_no_locals(__isl_keep isl_basic_set *bset, void *user)
3009 return isl_bool_not(isl_basic_set_involves_locals(bset));
3012 /* Does "set" involve any local variables, i.e., integer divisions?
3014 isl_bool isl_set_involves_locals(__isl_keep isl_set *set)
3016 isl_bool no_locals;
3018 no_locals = isl_set_every_basic_set(set, &basic_set_no_locals, NULL);
3019 return isl_bool_not(no_locals);
3022 /* Drop all constraints in bmap that involve any of the dimensions
3023 * first to first+n-1.
3024 * This function only performs the actual removal of constraints.
3026 * This function should not call finalize since it is used by
3027 * remove_redundant_divs, which in turn is called by isl_basic_map_finalize.
3029 __isl_give isl_basic_map *isl_basic_map_drop_constraints_involving(
3030 __isl_take isl_basic_map *bmap, unsigned first, unsigned n)
3032 int i;
3034 if (n == 0)
3035 return bmap;
3037 bmap = isl_basic_map_cow(bmap);
3039 if (!bmap)
3040 return NULL;
3042 for (i = bmap->n_eq - 1; i >= 0; --i) {
3043 if (isl_seq_first_non_zero(bmap->eq[i] + 1 + first, n) == -1)
3044 continue;
3045 if (isl_basic_map_drop_equality(bmap, i) < 0)
3046 return isl_basic_map_free(bmap);
3049 for (i = bmap->n_ineq - 1; i >= 0; --i) {
3050 if (isl_seq_first_non_zero(bmap->ineq[i] + 1 + first, n) == -1)
3051 continue;
3052 if (isl_basic_map_drop_inequality(bmap, i) < 0)
3053 return isl_basic_map_free(bmap);
3056 return bmap;
3059 /* Drop all constraints in bset that involve any of the dimensions
3060 * first to first+n-1.
3061 * This function only performs the actual removal of constraints.
3063 __isl_give isl_basic_set *isl_basic_set_drop_constraints_involving(
3064 __isl_take isl_basic_set *bset, unsigned first, unsigned n)
3066 return isl_basic_map_drop_constraints_involving(bset, first, n);
3069 /* Drop all constraints in bmap that do not involve any of the dimensions
3070 * first to first + n - 1 of the given type.
3072 __isl_give isl_basic_map *isl_basic_map_drop_constraints_not_involving_dims(
3073 __isl_take isl_basic_map *bmap,
3074 enum isl_dim_type type, unsigned first, unsigned n)
3076 int i;
3078 if (n == 0) {
3079 isl_space *space = isl_basic_map_get_space(bmap);
3080 isl_basic_map_free(bmap);
3081 return isl_basic_map_universe(space);
3083 bmap = isl_basic_map_cow(bmap);
3084 if (!bmap)
3085 return NULL;
3087 if (isl_basic_map_check_range(bmap, type, first, n) < 0)
3088 return isl_basic_map_free(bmap);
3090 first += isl_basic_map_offset(bmap, type) - 1;
3092 for (i = bmap->n_eq - 1; i >= 0; --i) {
3093 if (isl_seq_first_non_zero(bmap->eq[i] + 1 + first, n) != -1)
3094 continue;
3095 if (isl_basic_map_drop_equality(bmap, i) < 0)
3096 return isl_basic_map_free(bmap);
3099 for (i = bmap->n_ineq - 1; i >= 0; --i) {
3100 if (isl_seq_first_non_zero(bmap->ineq[i] + 1 + first, n) != -1)
3101 continue;
3102 if (isl_basic_map_drop_inequality(bmap, i) < 0)
3103 return isl_basic_map_free(bmap);
3106 bmap = isl_basic_map_add_known_div_constraints(bmap);
3107 return bmap;
3110 /* Drop all constraints in bset that do not involve any of the dimensions
3111 * first to first + n - 1 of the given type.
3113 __isl_give isl_basic_set *isl_basic_set_drop_constraints_not_involving_dims(
3114 __isl_take isl_basic_set *bset,
3115 enum isl_dim_type type, unsigned first, unsigned n)
3117 return isl_basic_map_drop_constraints_not_involving_dims(bset,
3118 type, first, n);
3121 /* Drop all constraints in bmap that involve any of the dimensions
3122 * first to first + n - 1 of the given type.
3124 __isl_give isl_basic_map *isl_basic_map_drop_constraints_involving_dims(
3125 __isl_take isl_basic_map *bmap,
3126 enum isl_dim_type type, unsigned first, unsigned n)
3128 if (!bmap)
3129 return NULL;
3130 if (n == 0)
3131 return bmap;
3133 if (isl_basic_map_check_range(bmap, type, first, n) < 0)
3134 return isl_basic_map_free(bmap);
3136 bmap = isl_basic_map_remove_divs_involving_dims(bmap, type, first, n);
3137 first += isl_basic_map_offset(bmap, type) - 1;
3138 bmap = isl_basic_map_drop_constraints_involving(bmap, first, n);
3139 bmap = isl_basic_map_add_known_div_constraints(bmap);
3140 return bmap;
3143 /* Drop all constraints in bset that involve any of the dimensions
3144 * first to first + n - 1 of the given type.
3146 __isl_give isl_basic_set *isl_basic_set_drop_constraints_involving_dims(
3147 __isl_take isl_basic_set *bset,
3148 enum isl_dim_type type, unsigned first, unsigned n)
3150 return isl_basic_map_drop_constraints_involving_dims(bset,
3151 type, first, n);
3154 /* Drop constraints from "map" by applying "drop" to each basic map.
3156 static __isl_give isl_map *drop_constraints(__isl_take isl_map *map,
3157 enum isl_dim_type type, unsigned first, unsigned n,
3158 __isl_give isl_basic_map *(*drop)(__isl_take isl_basic_map *bmap,
3159 enum isl_dim_type type, unsigned first, unsigned n))
3161 int i;
3163 if (isl_map_check_range(map, type, first, n) < 0)
3164 return isl_map_free(map);
3166 map = isl_map_cow(map);
3167 if (!map)
3168 return NULL;
3170 for (i = 0; i < map->n; ++i) {
3171 map->p[i] = drop(map->p[i], type, first, n);
3172 if (!map->p[i])
3173 return isl_map_free(map);
3176 if (map->n > 1)
3177 ISL_F_CLR(map, ISL_MAP_DISJOINT);
3179 return map;
3182 /* Drop all constraints in map that involve any of the dimensions
3183 * first to first + n - 1 of the given type.
3185 __isl_give isl_map *isl_map_drop_constraints_involving_dims(
3186 __isl_take isl_map *map,
3187 enum isl_dim_type type, unsigned first, unsigned n)
3189 if (n == 0)
3190 return map;
3191 return drop_constraints(map, type, first, n,
3192 &isl_basic_map_drop_constraints_involving_dims);
3195 /* Drop all constraints in "map" that do not involve any of the dimensions
3196 * first to first + n - 1 of the given type.
3198 __isl_give isl_map *isl_map_drop_constraints_not_involving_dims(
3199 __isl_take isl_map *map,
3200 enum isl_dim_type type, unsigned first, unsigned n)
3202 if (n == 0) {
3203 isl_space *space = isl_map_get_space(map);
3204 isl_map_free(map);
3205 return isl_map_universe(space);
3207 return drop_constraints(map, type, first, n,
3208 &isl_basic_map_drop_constraints_not_involving_dims);
3211 /* Drop all constraints in set that involve any of the dimensions
3212 * first to first + n - 1 of the given type.
3214 __isl_give isl_set *isl_set_drop_constraints_involving_dims(
3215 __isl_take isl_set *set,
3216 enum isl_dim_type type, unsigned first, unsigned n)
3218 return isl_map_drop_constraints_involving_dims(set, type, first, n);
3221 /* Drop all constraints in "set" that do not involve any of the dimensions
3222 * first to first + n - 1 of the given type.
3224 __isl_give isl_set *isl_set_drop_constraints_not_involving_dims(
3225 __isl_take isl_set *set,
3226 enum isl_dim_type type, unsigned first, unsigned n)
3228 return isl_map_drop_constraints_not_involving_dims(set, type, first, n);
3231 /* Does local variable "div" of "bmap" have a complete explicit representation?
3232 * Having a complete explicit representation requires not only
3233 * an explicit representation, but also that all local variables
3234 * that appear in this explicit representation in turn have
3235 * a complete explicit representation.
3237 isl_bool isl_basic_map_div_is_known(__isl_keep isl_basic_map *bmap, int div)
3239 int i;
3240 unsigned div_offset = isl_basic_map_offset(bmap, isl_dim_div);
3241 isl_bool marked;
3243 marked = isl_basic_map_div_is_marked_unknown(bmap, div);
3244 if (marked < 0 || marked)
3245 return isl_bool_not(marked);
3247 for (i = bmap->n_div - 1; i >= 0; --i) {
3248 isl_bool known;
3250 if (isl_int_is_zero(bmap->div[div][1 + div_offset + i]))
3251 continue;
3252 known = isl_basic_map_div_is_known(bmap, i);
3253 if (known < 0 || !known)
3254 return known;
3257 return isl_bool_true;
3260 /* Remove all divs that are unknown or defined in terms of unknown divs.
3262 __isl_give isl_basic_map *isl_basic_map_remove_unknown_divs(
3263 __isl_take isl_basic_map *bmap)
3265 int i;
3267 if (!bmap)
3268 return NULL;
3270 for (i = bmap->n_div - 1; i >= 0; --i) {
3271 if (isl_basic_map_div_is_known(bmap, i))
3272 continue;
3273 bmap = isl_basic_map_remove_dims(bmap, isl_dim_div, i, 1);
3274 if (!bmap)
3275 return NULL;
3276 i = bmap->n_div;
3279 return bmap;
3282 /* Remove all divs that are unknown or defined in terms of unknown divs.
3284 __isl_give isl_basic_set *isl_basic_set_remove_unknown_divs(
3285 __isl_take isl_basic_set *bset)
3287 return isl_basic_map_remove_unknown_divs(bset);
3290 __isl_give isl_map *isl_map_remove_unknown_divs(__isl_take isl_map *map)
3292 int i;
3294 if (!map)
3295 return NULL;
3296 if (map->n == 0)
3297 return map;
3299 map = isl_map_cow(map);
3300 if (!map)
3301 return NULL;
3303 for (i = 0; i < map->n; ++i) {
3304 map->p[i] = isl_basic_map_remove_unknown_divs(map->p[i]);
3305 if (!map->p[i])
3306 goto error;
3308 return map;
3309 error:
3310 isl_map_free(map);
3311 return NULL;
3314 __isl_give isl_set *isl_set_remove_unknown_divs(__isl_take isl_set *set)
3316 return set_from_map(isl_map_remove_unknown_divs(set_to_map(set)));
3319 __isl_give isl_basic_set *isl_basic_set_remove_dims(
3320 __isl_take isl_basic_set *bset,
3321 enum isl_dim_type type, unsigned first, unsigned n)
3323 isl_basic_map *bmap = bset_to_bmap(bset);
3324 bmap = isl_basic_map_remove_dims(bmap, type, first, n);
3325 return bset_from_bmap(bmap);
3328 __isl_give isl_map *isl_map_remove_dims(__isl_take isl_map *map,
3329 enum isl_dim_type type, unsigned first, unsigned n)
3331 int i;
3333 if (n == 0)
3334 return map;
3336 map = isl_map_cow(map);
3337 if (isl_map_check_range(map, type, first, n) < 0)
3338 return isl_map_free(map);
3340 for (i = 0; i < map->n; ++i) {
3341 map->p[i] = isl_basic_map_eliminate_vars(map->p[i],
3342 isl_basic_map_offset(map->p[i], type) - 1 + first, n);
3343 if (!map->p[i])
3344 goto error;
3346 map = isl_map_drop(map, type, first, n);
3347 return map;
3348 error:
3349 isl_map_free(map);
3350 return NULL;
3353 __isl_give isl_set *isl_set_remove_dims(__isl_take isl_set *bset,
3354 enum isl_dim_type type, unsigned first, unsigned n)
3356 return set_from_map(isl_map_remove_dims(set_to_map(bset),
3357 type, first, n));
3360 /* Project out n inputs starting at first using Fourier-Motzkin */
3361 __isl_give isl_map *isl_map_remove_inputs(__isl_take isl_map *map,
3362 unsigned first, unsigned n)
3364 return isl_map_remove_dims(map, isl_dim_in, first, n);
3367 void isl_basic_set_print_internal(__isl_keep isl_basic_set *bset,
3368 FILE *out, int indent)
3370 isl_printer *p;
3372 if (!bset) {
3373 fprintf(out, "null basic set\n");
3374 return;
3377 fprintf(out, "%*s", indent, "");
3378 fprintf(out, "ref: %d, nparam: %d, dim: %d, extra: %d, flags: %x\n",
3379 bset->ref, bset->dim->nparam, bset->dim->n_out,
3380 bset->extra, bset->flags);
3382 p = isl_printer_to_file(isl_basic_set_get_ctx(bset), out);
3383 p = isl_printer_set_dump(p, 1);
3384 p = isl_printer_set_indent(p, indent);
3385 p = isl_printer_start_line(p);
3386 p = isl_printer_print_basic_set(p, bset);
3387 p = isl_printer_end_line(p);
3388 isl_printer_free(p);
3391 void isl_basic_map_print_internal(__isl_keep isl_basic_map *bmap,
3392 FILE *out, int indent)
3394 isl_printer *p;
3396 if (!bmap) {
3397 fprintf(out, "null basic map\n");
3398 return;
3401 fprintf(out, "%*s", indent, "");
3402 fprintf(out, "ref: %d, nparam: %d, in: %d, out: %d, extra: %d, "
3403 "flags: %x, n_name: %d\n",
3404 bmap->ref,
3405 bmap->dim->nparam, bmap->dim->n_in, bmap->dim->n_out,
3406 bmap->extra, bmap->flags, bmap->dim->n_id);
3408 p = isl_printer_to_file(isl_basic_map_get_ctx(bmap), out);
3409 p = isl_printer_set_dump(p, 1);
3410 p = isl_printer_set_indent(p, indent);
3411 p = isl_printer_start_line(p);
3412 p = isl_printer_print_basic_map(p, bmap);
3413 p = isl_printer_end_line(p);
3414 isl_printer_free(p);
3417 __isl_give isl_basic_map *isl_inequality_negate(__isl_take isl_basic_map *bmap,
3418 unsigned pos)
3420 isl_size total;
3422 total = isl_basic_map_dim(bmap, isl_dim_all);
3423 if (total < 0)
3424 return isl_basic_map_free(bmap);
3425 if (pos >= bmap->n_ineq)
3426 isl_die(isl_basic_map_get_ctx(bmap), isl_error_invalid,
3427 "invalid position", return isl_basic_map_free(bmap));
3428 isl_seq_neg(bmap->ineq[pos], bmap->ineq[pos], 1 + total);
3429 isl_int_sub_ui(bmap->ineq[pos][0], bmap->ineq[pos][0], 1);
3430 ISL_F_CLR(bmap, ISL_BASIC_MAP_NO_REDUNDANT);
3431 ISL_F_CLR(bmap, ISL_BASIC_MAP_SORTED);
3432 return bmap;
3435 __isl_give isl_set *isl_set_alloc_space(__isl_take isl_space *space, int n,
3436 unsigned flags)
3438 if (isl_space_check_is_set(space) < 0)
3439 goto error;
3440 return isl_map_alloc_space(space, n, flags);
3441 error:
3442 isl_space_free(space);
3443 return NULL;
3446 /* Make sure "map" has room for at least "n" more basic maps.
3448 __isl_give isl_map *isl_map_grow(__isl_take isl_map *map, int n)
3450 int i;
3451 struct isl_map *grown = NULL;
3453 if (!map)
3454 return NULL;
3455 isl_assert(map->ctx, n >= 0, goto error);
3456 if (map->n + n <= map->size)
3457 return map;
3458 grown = isl_map_alloc_space(isl_map_get_space(map), map->n + n, map->flags);
3459 if (!grown)
3460 goto error;
3461 for (i = 0; i < map->n; ++i) {
3462 grown->p[i] = isl_basic_map_copy(map->p[i]);
3463 if (!grown->p[i])
3464 goto error;
3465 grown->n++;
3467 isl_map_free(map);
3468 return grown;
3469 error:
3470 isl_map_free(grown);
3471 isl_map_free(map);
3472 return NULL;
3475 /* Make sure "set" has room for at least "n" more basic sets.
3477 __isl_give isl_set *isl_set_grow(__isl_take isl_set *set, int n)
3479 return set_from_map(isl_map_grow(set_to_map(set), n));
3482 __isl_give isl_set *isl_set_from_basic_set(__isl_take isl_basic_set *bset)
3484 return isl_map_from_basic_map(bset);
3487 /* This function performs the same operation as isl_set_from_basic_set,
3488 * but is considered as a function on an isl_basic_set when exported.
3490 __isl_give isl_set *isl_basic_set_to_set(__isl_take isl_basic_set *bset)
3492 return isl_set_from_basic_set(bset);
3495 __isl_give isl_map *isl_map_from_basic_map(__isl_take isl_basic_map *bmap)
3497 struct isl_map *map;
3499 if (!bmap)
3500 return NULL;
3502 map = isl_map_alloc_space(isl_space_copy(bmap->dim), 1, ISL_MAP_DISJOINT);
3503 return isl_map_add_basic_map(map, bmap);
3506 __isl_give isl_set *isl_set_add_basic_set(__isl_take isl_set *set,
3507 __isl_take isl_basic_set *bset)
3509 return set_from_map(isl_map_add_basic_map(set_to_map(set),
3510 bset_to_bmap(bset)));
3513 __isl_null isl_set *isl_set_free(__isl_take isl_set *set)
3515 return isl_map_free(set);
3518 void isl_set_print_internal(__isl_keep isl_set *set, FILE *out, int indent)
3520 int i;
3522 if (!set) {
3523 fprintf(out, "null set\n");
3524 return;
3527 fprintf(out, "%*s", indent, "");
3528 fprintf(out, "ref: %d, n: %d, nparam: %d, dim: %d, flags: %x\n",
3529 set->ref, set->n, set->dim->nparam, set->dim->n_out,
3530 set->flags);
3531 for (i = 0; i < set->n; ++i) {
3532 fprintf(out, "%*s", indent, "");
3533 fprintf(out, "basic set %d:\n", i);
3534 isl_basic_set_print_internal(set->p[i], out, indent+4);
3538 void isl_map_print_internal(__isl_keep isl_map *map, FILE *out, int indent)
3540 int i;
3542 if (!map) {
3543 fprintf(out, "null map\n");
3544 return;
3547 fprintf(out, "%*s", indent, "");
3548 fprintf(out, "ref: %d, n: %d, nparam: %d, in: %d, out: %d, "
3549 "flags: %x, n_name: %d\n",
3550 map->ref, map->n, map->dim->nparam, map->dim->n_in,
3551 map->dim->n_out, map->flags, map->dim->n_id);
3552 for (i = 0; i < map->n; ++i) {
3553 fprintf(out, "%*s", indent, "");
3554 fprintf(out, "basic map %d:\n", i);
3555 isl_basic_map_print_internal(map->p[i], out, indent+4);
3559 /* Check that the space of "bset" is the same as that of the domain of "bmap".
3561 static isl_stat isl_basic_map_check_compatible_domain(
3562 __isl_keep isl_basic_map *bmap, __isl_keep isl_basic_set *bset)
3564 isl_bool ok;
3566 ok = isl_basic_map_compatible_domain(bmap, bset);
3567 if (ok < 0)
3568 return isl_stat_error;
3569 if (!ok)
3570 isl_die(isl_basic_set_get_ctx(bset), isl_error_invalid,
3571 "incompatible spaces", return isl_stat_error);
3573 return isl_stat_ok;
3576 __isl_give isl_basic_map *isl_basic_map_intersect_domain(
3577 __isl_take isl_basic_map *bmap, __isl_take isl_basic_set *bset)
3579 struct isl_basic_map *bmap_domain;
3580 isl_size dim;
3582 if (isl_basic_map_check_equal_params(bmap, bset_to_bmap(bset)) < 0)
3583 goto error;
3585 dim = isl_basic_set_dim(bset, isl_dim_set);
3586 if (dim < 0)
3587 goto error;
3588 if (dim != 0 &&
3589 isl_basic_map_check_compatible_domain(bmap, bset) < 0)
3590 goto error;
3592 bmap = isl_basic_map_cow(bmap);
3593 if (!bmap)
3594 goto error;
3595 bmap = isl_basic_map_extend(bmap,
3596 bset->n_div, bset->n_eq, bset->n_ineq);
3597 bmap_domain = isl_basic_map_from_domain(bset);
3598 bmap = add_constraints(bmap, bmap_domain, 0, 0);
3600 bmap = isl_basic_map_simplify(bmap);
3601 return isl_basic_map_finalize(bmap);
3602 error:
3603 isl_basic_map_free(bmap);
3604 isl_basic_set_free(bset);
3605 return NULL;
3608 /* Check that the space of "bset" is the same as that of the range of "bmap".
3610 static isl_stat isl_basic_map_check_compatible_range(
3611 __isl_keep isl_basic_map *bmap, __isl_keep isl_basic_set *bset)
3613 isl_bool ok;
3615 ok = isl_basic_map_compatible_range(bmap, bset);
3616 if (ok < 0)
3617 return isl_stat_error;
3618 if (!ok)
3619 isl_die(isl_basic_set_get_ctx(bset), isl_error_invalid,
3620 "incompatible spaces", return isl_stat_error);
3622 return isl_stat_ok;
3625 __isl_give isl_basic_map *isl_basic_map_intersect_range(
3626 __isl_take isl_basic_map *bmap, __isl_take isl_basic_set *bset)
3628 struct isl_basic_map *bmap_range;
3629 isl_size dim;
3631 if (isl_basic_map_check_equal_params(bmap, bset_to_bmap(bset)) < 0)
3632 goto error;
3634 dim = isl_basic_set_dim(bset, isl_dim_set);
3635 if (dim < 0)
3636 goto error;
3637 if (dim != 0 && isl_basic_map_check_compatible_range(bmap, bset) < 0)
3638 goto error;
3640 if (isl_basic_set_plain_is_universe(bset)) {
3641 isl_basic_set_free(bset);
3642 return bmap;
3645 bmap = isl_basic_map_cow(bmap);
3646 if (!bmap)
3647 goto error;
3648 bmap = isl_basic_map_extend(bmap,
3649 bset->n_div, bset->n_eq, bset->n_ineq);
3650 bmap_range = bset_to_bmap(bset);
3651 bmap = add_constraints(bmap, bmap_range, 0, 0);
3653 bmap = isl_basic_map_simplify(bmap);
3654 return isl_basic_map_finalize(bmap);
3655 error:
3656 isl_basic_map_free(bmap);
3657 isl_basic_set_free(bset);
3658 return NULL;
3661 isl_bool isl_basic_map_contains(__isl_keep isl_basic_map *bmap,
3662 __isl_keep isl_vec *vec)
3664 int i;
3665 isl_size total;
3666 isl_int s;
3668 total = isl_basic_map_dim(bmap, isl_dim_all);
3669 if (total < 0 || !vec)
3670 return isl_bool_error;
3672 if (1 + total != vec->size)
3673 return isl_bool_false;
3675 isl_int_init(s);
3677 for (i = 0; i < bmap->n_eq; ++i) {
3678 isl_seq_inner_product(vec->el, bmap->eq[i], 1 + total, &s);
3679 if (!isl_int_is_zero(s)) {
3680 isl_int_clear(s);
3681 return isl_bool_false;
3685 for (i = 0; i < bmap->n_ineq; ++i) {
3686 isl_seq_inner_product(vec->el, bmap->ineq[i], 1 + total, &s);
3687 if (isl_int_is_neg(s)) {
3688 isl_int_clear(s);
3689 return isl_bool_false;
3693 isl_int_clear(s);
3695 return isl_bool_true;
3698 isl_bool isl_basic_set_contains(__isl_keep isl_basic_set *bset,
3699 __isl_keep isl_vec *vec)
3701 return isl_basic_map_contains(bset_to_bmap(bset), vec);
3704 __isl_give isl_basic_map *isl_basic_map_intersect(
3705 __isl_take isl_basic_map *bmap1, __isl_take isl_basic_map *bmap2)
3707 struct isl_vec *sample = NULL;
3708 isl_space *space1, *space2;
3709 isl_size dim1, dim2, nparam1, nparam2;
3711 if (isl_basic_map_check_equal_params(bmap1, bmap2) < 0)
3712 goto error;
3713 space1 = isl_basic_map_peek_space(bmap1);
3714 space2 = isl_basic_map_peek_space(bmap2);
3715 dim1 = isl_space_dim(space1, isl_dim_all);
3716 dim2 = isl_space_dim(space2, isl_dim_all);
3717 nparam1 = isl_space_dim(space1, isl_dim_param);
3718 nparam2 = isl_space_dim(space2, isl_dim_param);
3719 if (dim1 < 0 || dim2 < 0 || nparam1 < 0 || nparam2 < 0)
3720 goto error;
3721 if (dim1 == nparam1 && dim2 != nparam2)
3722 return isl_basic_map_intersect(bmap2, bmap1);
3724 if (dim2 != nparam2 &&
3725 isl_basic_map_check_equal_space(bmap1, bmap2) < 0)
3726 goto error;
3728 if (isl_basic_map_plain_is_empty(bmap1)) {
3729 isl_basic_map_free(bmap2);
3730 return bmap1;
3732 if (isl_basic_map_plain_is_empty(bmap2)) {
3733 isl_basic_map_free(bmap1);
3734 return bmap2;
3737 if (bmap1->sample &&
3738 isl_basic_map_contains(bmap1, bmap1->sample) > 0 &&
3739 isl_basic_map_contains(bmap2, bmap1->sample) > 0)
3740 sample = isl_vec_copy(bmap1->sample);
3741 else if (bmap2->sample &&
3742 isl_basic_map_contains(bmap1, bmap2->sample) > 0 &&
3743 isl_basic_map_contains(bmap2, bmap2->sample) > 0)
3744 sample = isl_vec_copy(bmap2->sample);
3746 bmap1 = isl_basic_map_cow(bmap1);
3747 if (!bmap1)
3748 goto error;
3749 bmap1 = isl_basic_map_extend(bmap1,
3750 bmap2->n_div, bmap2->n_eq, bmap2->n_ineq);
3751 bmap1 = add_constraints(bmap1, bmap2, 0, 0);
3753 if (!bmap1)
3754 isl_vec_free(sample);
3755 else if (sample) {
3756 isl_vec_free(bmap1->sample);
3757 bmap1->sample = sample;
3760 bmap1 = isl_basic_map_simplify(bmap1);
3761 return isl_basic_map_finalize(bmap1);
3762 error:
3763 if (sample)
3764 isl_vec_free(sample);
3765 isl_basic_map_free(bmap1);
3766 isl_basic_map_free(bmap2);
3767 return NULL;
3770 __isl_give isl_basic_set *isl_basic_set_intersect(
3771 __isl_take isl_basic_set *bset1, __isl_take isl_basic_set *bset2)
3773 return bset_from_bmap(isl_basic_map_intersect(bset_to_bmap(bset1),
3774 bset_to_bmap(bset2)));
3777 __isl_give isl_basic_set *isl_basic_set_intersect_params(
3778 __isl_take isl_basic_set *bset1, __isl_take isl_basic_set *bset2)
3780 return isl_basic_set_intersect(bset1, bset2);
3783 /* Does "map" consist of a single disjunct, without any local variables?
3785 static isl_bool is_convex_no_locals(__isl_keep isl_map *map)
3787 isl_size n_div;
3789 if (!map)
3790 return isl_bool_error;
3791 if (map->n != 1)
3792 return isl_bool_false;
3793 n_div = isl_basic_map_dim(map->p[0], isl_dim_div);
3794 if (n_div < 0)
3795 return isl_bool_error;
3796 if (n_div != 0)
3797 return isl_bool_false;
3798 return isl_bool_true;
3801 /* Check that "map" consists of a single disjunct, without any local variables.
3803 static isl_stat check_convex_no_locals(__isl_keep isl_map *map)
3805 isl_bool ok;
3807 ok = is_convex_no_locals(map);
3808 if (ok < 0)
3809 return isl_stat_error;
3810 if (ok)
3811 return isl_stat_ok;
3813 isl_die(isl_map_get_ctx(map), isl_error_internal,
3814 "unexpectedly not convex or involving local variables",
3815 return isl_stat_error);
3818 /* Special case of isl_map_intersect, where both map1 and map2
3819 * are convex, without any divs and such that either map1 or map2
3820 * contains a single constraint. This constraint is then simply
3821 * added to the other map.
3823 static __isl_give isl_map *map_intersect_add_constraint(
3824 __isl_take isl_map *map1, __isl_take isl_map *map2)
3826 if (check_convex_no_locals(map1) < 0 ||
3827 check_convex_no_locals(map2) < 0)
3828 goto error;
3830 if (map2->p[0]->n_eq + map2->p[0]->n_ineq != 1)
3831 return isl_map_intersect(map2, map1);
3833 map1 = isl_map_cow(map1);
3834 if (!map1)
3835 goto error;
3836 if (isl_map_plain_is_empty(map1)) {
3837 isl_map_free(map2);
3838 return map1;
3840 if (map2->p[0]->n_eq == 1)
3841 map1->p[0] = isl_basic_map_add_eq(map1->p[0], map2->p[0]->eq[0]);
3842 else
3843 map1->p[0] = isl_basic_map_add_ineq(map1->p[0],
3844 map2->p[0]->ineq[0]);
3846 map1->p[0] = isl_basic_map_simplify(map1->p[0]);
3847 map1->p[0] = isl_basic_map_finalize(map1->p[0]);
3848 if (!map1->p[0])
3849 goto error;
3851 if (isl_basic_map_plain_is_empty(map1->p[0])) {
3852 isl_basic_map_free(map1->p[0]);
3853 map1->n = 0;
3856 isl_map_free(map2);
3858 map1 = isl_map_unmark_normalized(map1);
3859 return map1;
3860 error:
3861 isl_map_free(map1);
3862 isl_map_free(map2);
3863 return NULL;
3866 /* map2 may be either a parameter domain or a map living in the same
3867 * space as map1.
3869 static __isl_give isl_map *map_intersect_internal(__isl_take isl_map *map1,
3870 __isl_take isl_map *map2)
3872 unsigned flags = 0;
3873 isl_bool equal;
3874 isl_map *result;
3875 int i, j;
3876 isl_size dim2, nparam2;
3878 if (!map1 || !map2)
3879 goto error;
3881 if ((isl_map_plain_is_empty(map1) ||
3882 isl_map_plain_is_universe(map2)) &&
3883 isl_space_is_equal(map1->dim, map2->dim)) {
3884 isl_map_free(map2);
3885 return map1;
3887 if ((isl_map_plain_is_empty(map2) ||
3888 isl_map_plain_is_universe(map1)) &&
3889 isl_space_is_equal(map1->dim, map2->dim)) {
3890 isl_map_free(map1);
3891 return map2;
3894 if (is_convex_no_locals(map1) == isl_bool_true &&
3895 is_convex_no_locals(map2) == isl_bool_true &&
3896 isl_space_is_equal(map1->dim, map2->dim) &&
3897 (map1->p[0]->n_eq + map1->p[0]->n_ineq == 1 ||
3898 map2->p[0]->n_eq + map2->p[0]->n_ineq == 1))
3899 return map_intersect_add_constraint(map1, map2);
3901 equal = isl_map_plain_is_equal(map1, map2);
3902 if (equal < 0)
3903 goto error;
3904 if (equal) {
3905 isl_map_free(map2);
3906 return map1;
3909 dim2 = isl_map_dim(map2, isl_dim_all);
3910 nparam2 = isl_map_dim(map2, isl_dim_param);
3911 if (dim2 < 0 || nparam2 < 0)
3912 goto error;
3913 if (dim2 != nparam2)
3914 isl_assert(map1->ctx,
3915 isl_space_is_equal(map1->dim, map2->dim), goto error);
3917 if (ISL_F_ISSET(map1, ISL_MAP_DISJOINT) &&
3918 ISL_F_ISSET(map2, ISL_MAP_DISJOINT))
3919 ISL_FL_SET(flags, ISL_MAP_DISJOINT);
3921 result = isl_map_alloc_space(isl_space_copy(map1->dim),
3922 map1->n * map2->n, flags);
3923 if (!result)
3924 goto error;
3925 for (i = 0; i < map1->n; ++i)
3926 for (j = 0; j < map2->n; ++j) {
3927 struct isl_basic_map *part;
3928 part = isl_basic_map_intersect(
3929 isl_basic_map_copy(map1->p[i]),
3930 isl_basic_map_copy(map2->p[j]));
3931 if (isl_basic_map_is_empty(part) < 0)
3932 part = isl_basic_map_free(part);
3933 result = isl_map_add_basic_map(result, part);
3934 if (!result)
3935 goto error;
3937 isl_map_free(map1);
3938 isl_map_free(map2);
3939 return result;
3940 error:
3941 isl_map_free(map1);
3942 isl_map_free(map2);
3943 return NULL;
3946 static __isl_give isl_map *map_intersect(__isl_take isl_map *map1,
3947 __isl_take isl_map *map2)
3949 if (isl_map_check_equal_space(map1, map2) < 0)
3950 goto error;
3951 return map_intersect_internal(map1, map2);
3952 error:
3953 isl_map_free(map1);
3954 isl_map_free(map2);
3955 return NULL;
3958 __isl_give isl_map *isl_map_intersect(__isl_take isl_map *map1,
3959 __isl_take isl_map *map2)
3961 isl_map_align_params_bin(&map1, &map2);
3962 return map_intersect(map1, map2);
3965 __isl_give isl_set *isl_set_intersect(__isl_take isl_set *set1,
3966 __isl_take isl_set *set2)
3968 return set_from_map(isl_map_intersect(set_to_map(set1),
3969 set_to_map(set2)));
3972 /* map_intersect_internal accepts intersections
3973 * with parameter domains, so we can just call that function.
3975 __isl_give isl_map *isl_map_intersect_params(__isl_take isl_map *map,
3976 __isl_take isl_set *params)
3978 isl_map_align_params_set(&map, &params);
3979 return map_intersect_internal(map, params);
3982 __isl_give isl_set *isl_set_intersect_params(__isl_take isl_set *set,
3983 __isl_take isl_set *params)
3985 return isl_map_intersect_params(set, params);
3988 __isl_give isl_basic_map *isl_basic_map_reverse(__isl_take isl_basic_map *bmap)
3990 isl_space *space;
3991 unsigned pos;
3992 isl_size n1, n2;
3994 if (!bmap)
3995 return NULL;
3996 bmap = isl_basic_map_cow(bmap);
3997 if (!bmap)
3998 return NULL;
3999 space = isl_space_reverse(isl_space_copy(bmap->dim));
4000 pos = isl_basic_map_offset(bmap, isl_dim_in);
4001 n1 = isl_basic_map_dim(bmap, isl_dim_in);
4002 n2 = isl_basic_map_dim(bmap, isl_dim_out);
4003 if (n1 < 0 || n2 < 0)
4004 bmap = isl_basic_map_free(bmap);
4005 bmap = isl_basic_map_swap_vars(bmap, pos, n1, n2);
4006 return isl_basic_map_reset_space(bmap, space);
4009 /* Given a basic map A -> (B -> C), return the corresponding basic map
4010 * A -> (C -> B).
4012 static __isl_give isl_basic_map *isl_basic_map_range_reverse(
4013 __isl_take isl_basic_map *bmap)
4015 isl_space *space;
4016 isl_size offset, n1, n2;
4018 space = isl_basic_map_peek_space(bmap);
4019 if (isl_space_check_range_is_wrapping(space) < 0)
4020 return isl_basic_map_free(bmap);
4021 offset = isl_basic_map_var_offset(bmap, isl_dim_out);
4022 n1 = isl_space_wrapped_dim(space, isl_dim_out, isl_dim_in);
4023 n2 = isl_space_wrapped_dim(space, isl_dim_out, isl_dim_out);
4024 if (offset < 0 || n1 < 0 || n2 < 0)
4025 return isl_basic_map_free(bmap);
4027 bmap = isl_basic_map_swap_vars(bmap, 1 + offset, n1, n2);
4029 space = isl_basic_map_take_space(bmap);
4030 space = isl_space_range_reverse(space);
4031 bmap = isl_basic_map_restore_space(bmap, space);
4033 return bmap;
4036 static __isl_give isl_basic_map *basic_map_space_reset(
4037 __isl_take isl_basic_map *bmap, enum isl_dim_type type)
4039 isl_space *space;
4041 if (!bmap)
4042 return NULL;
4043 if (!isl_space_is_named_or_nested(bmap->dim, type))
4044 return bmap;
4046 space = isl_basic_map_get_space(bmap);
4047 space = isl_space_reset(space, type);
4048 bmap = isl_basic_map_reset_space(bmap, space);
4049 return bmap;
4052 __isl_give isl_basic_map *isl_basic_map_insert_dims(
4053 __isl_take isl_basic_map *bmap, enum isl_dim_type type,
4054 unsigned pos, unsigned n)
4056 isl_bool rational, is_empty;
4057 isl_space *res_space;
4058 struct isl_basic_map *res;
4059 struct isl_dim_map *dim_map;
4060 isl_size total;
4061 unsigned off;
4062 enum isl_dim_type t;
4064 if (n == 0)
4065 return basic_map_space_reset(bmap, type);
4067 is_empty = isl_basic_map_plain_is_empty(bmap);
4068 total = isl_basic_map_dim(bmap, isl_dim_all);
4069 if (is_empty < 0 || total < 0)
4070 return isl_basic_map_free(bmap);
4071 res_space = isl_space_insert_dims(isl_basic_map_get_space(bmap),
4072 type, pos, n);
4073 if (!res_space)
4074 return isl_basic_map_free(bmap);
4075 if (is_empty) {
4076 isl_basic_map_free(bmap);
4077 return isl_basic_map_empty(res_space);
4080 dim_map = isl_dim_map_alloc(bmap->ctx, total + n);
4081 off = 0;
4082 for (t = isl_dim_param; t <= isl_dim_out; ++t) {
4083 isl_size dim;
4085 if (t != type) {
4086 isl_dim_map_dim(dim_map, bmap->dim, t, off);
4087 } else {
4088 isl_size size = isl_basic_map_dim(bmap, t);
4089 if (size < 0)
4090 dim_map = isl_dim_map_free(dim_map);
4091 isl_dim_map_dim_range(dim_map, bmap->dim, t,
4092 0, pos, off);
4093 isl_dim_map_dim_range(dim_map, bmap->dim, t,
4094 pos, size - pos, off + pos + n);
4096 dim = isl_space_dim(res_space, t);
4097 if (dim < 0)
4098 dim_map = isl_dim_map_free(dim_map);
4099 off += dim;
4101 isl_dim_map_div(dim_map, bmap, off);
4103 res = isl_basic_map_alloc_space(res_space,
4104 bmap->n_div, bmap->n_eq, bmap->n_ineq);
4105 rational = isl_basic_map_is_rational(bmap);
4106 if (rational < 0)
4107 res = isl_basic_map_free(res);
4108 if (rational)
4109 res = isl_basic_map_set_rational(res);
4110 res = isl_basic_map_add_constraints_dim_map(res, bmap, dim_map);
4111 return isl_basic_map_finalize(res);
4114 __isl_give isl_basic_set *isl_basic_set_insert_dims(
4115 __isl_take isl_basic_set *bset,
4116 enum isl_dim_type type, unsigned pos, unsigned n)
4118 return isl_basic_map_insert_dims(bset, type, pos, n);
4121 __isl_give isl_basic_map *isl_basic_map_add_dims(__isl_take isl_basic_map *bmap,
4122 enum isl_dim_type type, unsigned n)
4124 isl_size dim;
4126 dim = isl_basic_map_dim(bmap, type);
4127 if (dim < 0)
4128 return isl_basic_map_free(bmap);
4129 return isl_basic_map_insert_dims(bmap, type, dim, n);
4132 __isl_give isl_basic_set *isl_basic_set_add_dims(__isl_take isl_basic_set *bset,
4133 enum isl_dim_type type, unsigned n)
4135 if (!bset)
4136 return NULL;
4137 isl_assert(bset->ctx, type != isl_dim_in, goto error);
4138 return isl_basic_map_add_dims(bset, type, n);
4139 error:
4140 isl_basic_set_free(bset);
4141 return NULL;
4144 static __isl_give isl_map *map_space_reset(__isl_take isl_map *map,
4145 enum isl_dim_type type)
4147 isl_space *space;
4149 if (!map || !isl_space_is_named_or_nested(map->dim, type))
4150 return map;
4152 space = isl_map_get_space(map);
4153 space = isl_space_reset(space, type);
4154 map = isl_map_reset_space(map, space);
4155 return map;
4158 __isl_give isl_map *isl_map_insert_dims(__isl_take isl_map *map,
4159 enum isl_dim_type type, unsigned pos, unsigned n)
4161 int i;
4162 isl_space *space;
4164 if (n == 0)
4165 return map_space_reset(map, type);
4167 map = isl_map_cow(map);
4168 if (!map)
4169 return NULL;
4171 for (i = 0; i < map->n; ++i) {
4172 map->p[i] = isl_basic_map_insert_dims(map->p[i], type, pos, n);
4173 if (!map->p[i])
4174 goto error;
4177 space = isl_map_take_space(map);
4178 space = isl_space_insert_dims(space, type, pos, n);
4179 map = isl_map_restore_space(map, space);
4181 return map;
4182 error:
4183 isl_map_free(map);
4184 return NULL;
4187 __isl_give isl_set *isl_set_insert_dims(__isl_take isl_set *set,
4188 enum isl_dim_type type, unsigned pos, unsigned n)
4190 return isl_map_insert_dims(set, type, pos, n);
4193 __isl_give isl_map *isl_map_add_dims(__isl_take isl_map *map,
4194 enum isl_dim_type type, unsigned n)
4196 isl_size dim;
4198 dim = isl_map_dim(map, type);
4199 if (dim < 0)
4200 return isl_map_free(map);
4201 return isl_map_insert_dims(map, type, dim, n);
4204 __isl_give isl_set *isl_set_add_dims(__isl_take isl_set *set,
4205 enum isl_dim_type type, unsigned n)
4207 if (!set)
4208 return NULL;
4209 isl_assert(set->ctx, type != isl_dim_in, goto error);
4210 return set_from_map(isl_map_add_dims(set_to_map(set), type, n));
4211 error:
4212 isl_set_free(set);
4213 return NULL;
4216 __isl_give isl_basic_map *isl_basic_map_move_dims(
4217 __isl_take isl_basic_map *bmap,
4218 enum isl_dim_type dst_type, unsigned dst_pos,
4219 enum isl_dim_type src_type, unsigned src_pos, unsigned n)
4221 isl_space *space;
4222 struct isl_dim_map *dim_map;
4223 struct isl_basic_map *res;
4224 enum isl_dim_type t;
4225 isl_size total;
4226 unsigned off;
4228 if (!bmap)
4229 return NULL;
4230 if (n == 0) {
4231 bmap = isl_basic_map_reset(bmap, src_type);
4232 bmap = isl_basic_map_reset(bmap, dst_type);
4233 return bmap;
4236 if (isl_basic_map_check_range(bmap, src_type, src_pos, n) < 0)
4237 return isl_basic_map_free(bmap);
4239 if (dst_type == src_type && dst_pos == src_pos)
4240 return bmap;
4242 isl_assert(bmap->ctx, dst_type != src_type, goto error);
4244 if (pos(bmap->dim, dst_type) + dst_pos ==
4245 pos(bmap->dim, src_type) + src_pos +
4246 ((src_type < dst_type) ? n : 0)) {
4247 space = isl_basic_map_take_space(bmap);
4248 space = isl_space_move_dims(space, dst_type, dst_pos,
4249 src_type, src_pos, n);
4250 bmap = isl_basic_map_restore_space(bmap, space);
4251 bmap = isl_basic_map_finalize(bmap);
4253 return bmap;
4256 total = isl_basic_map_dim(bmap, isl_dim_all);
4257 if (total < 0)
4258 return isl_basic_map_free(bmap);
4259 dim_map = isl_dim_map_alloc(bmap->ctx, total);
4261 off = 0;
4262 space = isl_basic_map_peek_space(bmap);
4263 for (t = isl_dim_param; t <= isl_dim_out; ++t) {
4264 isl_size size = isl_space_dim(space, t);
4265 if (size < 0)
4266 dim_map = isl_dim_map_free(dim_map);
4267 if (t == dst_type) {
4268 isl_dim_map_dim_range(dim_map, space, t,
4269 0, dst_pos, off);
4270 off += dst_pos;
4271 isl_dim_map_dim_range(dim_map, space, src_type,
4272 src_pos, n, off);
4273 off += n;
4274 isl_dim_map_dim_range(dim_map, space, t,
4275 dst_pos, size - dst_pos, off);
4276 off += size - dst_pos;
4277 } else if (t == src_type) {
4278 isl_dim_map_dim_range(dim_map, space, t,
4279 0, src_pos, off);
4280 off += src_pos;
4281 isl_dim_map_dim_range(dim_map, space, t,
4282 src_pos + n, size - src_pos - n, off);
4283 off += size - src_pos - n;
4284 } else {
4285 isl_dim_map_dim(dim_map, space, t, off);
4286 off += size;
4289 isl_dim_map_div(dim_map, bmap, off);
4291 res = isl_basic_map_alloc_space(isl_basic_map_get_space(bmap),
4292 bmap->n_div, bmap->n_eq, bmap->n_ineq);
4293 bmap = isl_basic_map_add_constraints_dim_map(res, bmap, dim_map);
4294 space = isl_basic_map_take_space(bmap);
4295 space = isl_space_move_dims(space, dst_type, dst_pos,
4296 src_type, src_pos, n);
4297 bmap = isl_basic_map_restore_space(bmap, space);
4298 if (!bmap)
4299 goto error;
4301 ISL_F_CLR(bmap, ISL_BASIC_MAP_SORTED);
4302 bmap = isl_basic_map_gauss(bmap, NULL);
4303 bmap = isl_basic_map_finalize(bmap);
4305 return bmap;
4306 error:
4307 isl_basic_map_free(bmap);
4308 return NULL;
4311 __isl_give isl_basic_set *isl_basic_set_move_dims(__isl_take isl_basic_set *bset,
4312 enum isl_dim_type dst_type, unsigned dst_pos,
4313 enum isl_dim_type src_type, unsigned src_pos, unsigned n)
4315 isl_basic_map *bmap = bset_to_bmap(bset);
4316 bmap = isl_basic_map_move_dims(bmap, dst_type, dst_pos,
4317 src_type, src_pos, n);
4318 return bset_from_bmap(bmap);
4321 __isl_give isl_set *isl_set_move_dims(__isl_take isl_set *set,
4322 enum isl_dim_type dst_type, unsigned dst_pos,
4323 enum isl_dim_type src_type, unsigned src_pos, unsigned n)
4325 if (!set)
4326 return NULL;
4327 isl_assert(set->ctx, dst_type != isl_dim_in, goto error);
4328 return set_from_map(isl_map_move_dims(set_to_map(set),
4329 dst_type, dst_pos, src_type, src_pos, n));
4330 error:
4331 isl_set_free(set);
4332 return NULL;
4335 __isl_give isl_map *isl_map_move_dims(__isl_take isl_map *map,
4336 enum isl_dim_type dst_type, unsigned dst_pos,
4337 enum isl_dim_type src_type, unsigned src_pos, unsigned n)
4339 int i;
4340 isl_space *space;
4342 if (n == 0) {
4343 map = isl_map_reset(map, src_type);
4344 map = isl_map_reset(map, dst_type);
4345 return map;
4348 if (isl_map_check_range(map, src_type, src_pos, n))
4349 return isl_map_free(map);
4351 if (dst_type == src_type && dst_pos == src_pos)
4352 return map;
4354 isl_assert(map->ctx, dst_type != src_type, goto error);
4356 map = isl_map_cow(map);
4357 if (!map)
4358 return NULL;
4360 for (i = 0; i < map->n; ++i) {
4361 map->p[i] = isl_basic_map_move_dims(map->p[i],
4362 dst_type, dst_pos,
4363 src_type, src_pos, n);
4364 if (!map->p[i])
4365 goto error;
4368 space = isl_map_take_space(map);
4369 space = isl_space_move_dims(space, dst_type, dst_pos,
4370 src_type, src_pos, n);
4371 map = isl_map_restore_space(map, space);
4373 return map;
4374 error:
4375 isl_map_free(map);
4376 return NULL;
4379 /* Move the specified dimensions to the last columns right before
4380 * the divs. Don't change the dimension specification of bmap.
4381 * That's the responsibility of the caller.
4383 static __isl_give isl_basic_map *move_last(__isl_take isl_basic_map *bmap,
4384 enum isl_dim_type type, unsigned first, unsigned n)
4386 isl_space *space;
4387 struct isl_dim_map *dim_map;
4388 struct isl_basic_map *res;
4389 enum isl_dim_type t;
4390 isl_size total;
4391 unsigned off;
4393 if (!bmap)
4394 return NULL;
4395 if (isl_basic_map_offset(bmap, type) + first + n ==
4396 isl_basic_map_offset(bmap, isl_dim_div))
4397 return bmap;
4399 total = isl_basic_map_dim(bmap, isl_dim_all);
4400 if (total < 0)
4401 return isl_basic_map_free(bmap);
4402 dim_map = isl_dim_map_alloc(bmap->ctx, total);
4404 off = 0;
4405 space = isl_basic_map_peek_space(bmap);
4406 for (t = isl_dim_param; t <= isl_dim_out; ++t) {
4407 isl_size size = isl_space_dim(space, t);
4408 if (size < 0)
4409 dim_map = isl_dim_map_free(dim_map);
4410 if (t == type) {
4411 isl_dim_map_dim_range(dim_map, space, t,
4412 0, first, off);
4413 off += first;
4414 isl_dim_map_dim_range(dim_map, space, t,
4415 first, n, total - bmap->n_div - n);
4416 isl_dim_map_dim_range(dim_map, space, t,
4417 first + n, size - (first + n), off);
4418 off += size - (first + n);
4419 } else {
4420 isl_dim_map_dim(dim_map, space, t, off);
4421 off += size;
4424 isl_dim_map_div(dim_map, bmap, off + n);
4426 res = isl_basic_map_alloc_space(isl_basic_map_get_space(bmap),
4427 bmap->n_div, bmap->n_eq, bmap->n_ineq);
4428 res = isl_basic_map_add_constraints_dim_map(res, bmap, dim_map);
4429 return res;
4432 /* Insert "n" rows in the divs of "bmap".
4434 * The number of columns is not changed, which means that the last
4435 * dimensions of "bmap" are being reintepreted as the new divs.
4436 * The space of "bmap" is not adjusted, however, which means
4437 * that "bmap" is left in an inconsistent state. Removing "n" dimensions
4438 * from the space of "bmap" is the responsibility of the caller.
4440 static __isl_give isl_basic_map *insert_div_rows(__isl_take isl_basic_map *bmap,
4441 int n)
4443 int i;
4444 size_t row_size;
4445 isl_int **new_div;
4446 isl_int *old;
4448 bmap = isl_basic_map_cow(bmap);
4449 if (!bmap)
4450 return NULL;
4452 row_size = isl_basic_map_offset(bmap, isl_dim_div) + bmap->extra;
4453 old = bmap->block2.data;
4454 bmap->block2 = isl_blk_extend(bmap->ctx, bmap->block2,
4455 (bmap->extra + n) * (1 + row_size));
4456 if (!bmap->block2.data)
4457 return isl_basic_map_free(bmap);
4458 new_div = isl_alloc_array(bmap->ctx, isl_int *, bmap->extra + n);
4459 if (!new_div)
4460 return isl_basic_map_free(bmap);
4461 for (i = 0; i < n; ++i) {
4462 new_div[i] = bmap->block2.data +
4463 (bmap->extra + i) * (1 + row_size);
4464 isl_seq_clr(new_div[i], 1 + row_size);
4466 for (i = 0; i < bmap->extra; ++i)
4467 new_div[n + i] = bmap->block2.data + (bmap->div[i] - old);
4468 free(bmap->div);
4469 bmap->div = new_div;
4470 bmap->n_div += n;
4471 bmap->extra += n;
4473 return bmap;
4476 /* Drop constraints from "bmap" that only involve the variables
4477 * of "type" in the range [first, first + n] that are not related
4478 * to any of the variables outside that interval.
4479 * These constraints cannot influence the values for the variables
4480 * outside the interval, except in case they cause "bmap" to be empty.
4481 * Only drop the constraints if "bmap" is known to be non-empty.
4483 static __isl_give isl_basic_map *drop_irrelevant_constraints(
4484 __isl_take isl_basic_map *bmap, enum isl_dim_type type,
4485 unsigned first, unsigned n)
4487 int i;
4488 int *groups;
4489 isl_size dim, n_div;
4490 isl_bool non_empty;
4492 non_empty = isl_basic_map_plain_is_non_empty(bmap);
4493 if (non_empty < 0)
4494 return isl_basic_map_free(bmap);
4495 if (!non_empty)
4496 return bmap;
4498 dim = isl_basic_map_dim(bmap, isl_dim_all);
4499 n_div = isl_basic_map_dim(bmap, isl_dim_div);
4500 if (dim < 0 || n_div < 0)
4501 return isl_basic_map_free(bmap);
4502 groups = isl_calloc_array(isl_basic_map_get_ctx(bmap), int, dim);
4503 if (!groups)
4504 return isl_basic_map_free(bmap);
4505 first += isl_basic_map_offset(bmap, type) - 1;
4506 for (i = 0; i < first; ++i)
4507 groups[i] = -1;
4508 for (i = first + n; i < dim - n_div; ++i)
4509 groups[i] = -1;
4511 bmap = isl_basic_map_drop_unrelated_constraints(bmap, groups);
4513 return bmap;
4516 /* Turn the n dimensions of type type, starting at first
4517 * into existentially quantified variables.
4519 * If a subset of the projected out variables are unrelated
4520 * to any of the variables that remain, then the constraints
4521 * involving this subset are simply dropped first.
4523 __isl_give isl_basic_map *isl_basic_map_project_out(
4524 __isl_take isl_basic_map *bmap,
4525 enum isl_dim_type type, unsigned first, unsigned n)
4527 isl_bool empty;
4528 isl_space *space;
4530 if (n == 0)
4531 return basic_map_space_reset(bmap, type);
4532 if (type == isl_dim_div)
4533 isl_die(isl_basic_map_get_ctx(bmap), isl_error_invalid,
4534 "cannot project out existentially quantified variables",
4535 return isl_basic_map_free(bmap));
4537 empty = isl_basic_map_plain_is_empty(bmap);
4538 if (empty < 0)
4539 return isl_basic_map_free(bmap);
4540 if (empty)
4541 bmap = isl_basic_map_set_to_empty(bmap);
4543 bmap = drop_irrelevant_constraints(bmap, type, first, n);
4544 if (!bmap)
4545 return NULL;
4547 if (ISL_F_ISSET(bmap, ISL_BASIC_MAP_RATIONAL))
4548 return isl_basic_map_remove_dims(bmap, type, first, n);
4550 if (isl_basic_map_check_range(bmap, type, first, n) < 0)
4551 return isl_basic_map_free(bmap);
4553 bmap = move_last(bmap, type, first, n);
4554 bmap = isl_basic_map_cow(bmap);
4555 bmap = insert_div_rows(bmap, n);
4557 space = isl_basic_map_take_space(bmap);
4558 space = isl_space_drop_dims(space, type, first, n);
4559 bmap = isl_basic_map_restore_space(bmap, space);
4560 bmap = isl_basic_map_simplify(bmap);
4561 bmap = isl_basic_map_drop_redundant_divs(bmap);
4562 return isl_basic_map_finalize(bmap);
4565 /* Turn the n dimensions of type type, starting at first
4566 * into existentially quantified variables.
4568 __isl_give isl_basic_set *isl_basic_set_project_out(
4569 __isl_take isl_basic_set *bset, enum isl_dim_type type,
4570 unsigned first, unsigned n)
4572 return bset_from_bmap(isl_basic_map_project_out(bset_to_bmap(bset),
4573 type, first, n));
4576 /* Turn the n dimensions of type type, starting at first
4577 * into existentially quantified variables.
4579 __isl_give isl_map *isl_map_project_out(__isl_take isl_map *map,
4580 enum isl_dim_type type, unsigned first, unsigned n)
4582 int i;
4583 isl_space *space;
4585 if (n == 0)
4586 return map_space_reset(map, type);
4588 if (isl_map_check_range(map, type, first, n) < 0)
4589 return isl_map_free(map);
4591 map = isl_map_cow(map);
4592 if (!map)
4593 return NULL;
4595 for (i = 0; i < map->n; ++i) {
4596 map->p[i] = isl_basic_map_project_out(map->p[i], type, first, n);
4597 if (!map->p[i])
4598 goto error;
4601 if (map->n > 1)
4602 ISL_F_CLR(map, ISL_MAP_DISJOINT);
4603 map = isl_map_unmark_normalized(map);
4605 space = isl_map_take_space(map);
4606 space = isl_space_drop_dims(space, type, first, n);
4607 map = isl_map_restore_space(map, space);
4609 return map;
4610 error:
4611 isl_map_free(map);
4612 return NULL;
4615 #undef TYPE
4616 #define TYPE isl_map
4617 #include "isl_project_out_all_params_templ.c"
4618 #include "isl_project_out_param_templ.c"
4620 /* Turn all the dimensions of type "type", except the "n" starting at "first"
4621 * into existentially quantified variables.
4623 __isl_give isl_map *isl_map_project_onto(__isl_take isl_map *map,
4624 enum isl_dim_type type, unsigned first, unsigned n)
4626 isl_size dim;
4628 dim = isl_map_dim(map, type);
4629 if (isl_map_check_range(map, type, first, n) < 0 || dim < 0)
4630 return isl_map_free(map);
4631 map = isl_map_project_out(map, type, first + n, dim - (first + n));
4632 map = isl_map_project_out(map, type, 0, first);
4633 return map;
4636 /* Turn the n dimensions of type type, starting at first
4637 * into existentially quantified variables.
4639 __isl_give isl_set *isl_set_project_out(__isl_take isl_set *set,
4640 enum isl_dim_type type, unsigned first, unsigned n)
4642 return set_from_map(isl_map_project_out(set_to_map(set),
4643 type, first, n));
4646 /* If "set" involves a parameter with identifier "id",
4647 * then turn it into an existentially quantified variable.
4649 __isl_give isl_set *isl_set_project_out_param_id(__isl_take isl_set *set,
4650 __isl_take isl_id *id)
4652 return set_from_map(isl_map_project_out_param_id(set_to_map(set), id));
4655 /* If "set" involves any of the parameters with identifiers in "list",
4656 * then turn them into existentially quantified variables.
4658 __isl_give isl_set *isl_set_project_out_param_id_list(__isl_take isl_set *set,
4659 __isl_take isl_id_list *list)
4661 isl_map *map;
4663 map = set_to_map(set);
4664 map = isl_map_project_out_param_id_list(map, list);
4665 return set_from_map(map);
4668 /* Project out all parameters from "set" by existentially quantifying
4669 * over them.
4671 __isl_give isl_set *isl_set_project_out_all_params(__isl_take isl_set *set)
4673 return set_from_map(isl_map_project_out_all_params(set_to_map(set)));
4676 /* Return a map that projects the elements in "set" onto their
4677 * "n" set dimensions starting at "first".
4678 * "type" should be equal to isl_dim_set.
4680 __isl_give isl_map *isl_set_project_onto_map(__isl_take isl_set *set,
4681 enum isl_dim_type type, unsigned first, unsigned n)
4683 int i;
4684 isl_map *map;
4686 if (type != isl_dim_set)
4687 isl_die(isl_set_get_ctx(set), isl_error_invalid,
4688 "only set dimensions can be projected out", goto error);
4689 if (isl_set_check_range(set, type, first, n) < 0)
4690 return isl_set_free(set);
4692 map = isl_map_from_domain(set);
4693 map = isl_map_add_dims(map, isl_dim_out, n);
4694 for (i = 0; i < n; ++i)
4695 map = isl_map_equate(map, isl_dim_in, first + i,
4696 isl_dim_out, i);
4697 return map;
4698 error:
4699 isl_set_free(set);
4700 return NULL;
4703 static __isl_give isl_basic_map *add_divs(__isl_take isl_basic_map *bmap,
4704 unsigned n)
4706 int i, j;
4707 isl_size total;
4709 total = isl_basic_map_dim(bmap, isl_dim_all);
4710 if (total < 0)
4711 return isl_basic_map_free(bmap);
4712 for (i = 0; i < n; ++i) {
4713 j = isl_basic_map_alloc_div(bmap);
4714 if (j < 0)
4715 goto error;
4716 isl_seq_clr(bmap->div[j], 1 + 1 + total);
4718 return bmap;
4719 error:
4720 isl_basic_map_free(bmap);
4721 return NULL;
4724 /* Does "bmap2" apply to the range of "bmap1" (ignoring parameters)?
4726 isl_bool isl_basic_map_applies_range(__isl_keep isl_basic_map *bmap1,
4727 __isl_keep isl_basic_map *bmap2)
4729 isl_space *space1, *space2;
4731 space1 = isl_basic_map_peek_space(bmap1);
4732 space2 = isl_basic_map_peek_space(bmap2);
4733 return isl_space_tuple_is_equal(space1, isl_dim_out,
4734 space2, isl_dim_in);
4737 /* Check that "bmap2" applies to the range of "bmap1" (ignoring parameters).
4739 static isl_stat isl_basic_map_check_applies_range(
4740 __isl_keep isl_basic_map *bmap1, __isl_keep isl_basic_map *bmap2)
4742 isl_bool equal;
4744 equal = isl_basic_map_applies_range(bmap1, bmap2);
4745 if (equal < 0)
4746 return isl_stat_error;
4747 if (!equal)
4748 isl_die(isl_basic_map_get_ctx(bmap1), isl_error_invalid,
4749 "spaces don't match", return isl_stat_error);
4750 return isl_stat_ok;
4753 __isl_give isl_basic_map *isl_basic_map_apply_range(
4754 __isl_take isl_basic_map *bmap1, __isl_take isl_basic_map *bmap2)
4756 isl_space *space_result = NULL;
4757 struct isl_basic_map *bmap;
4758 isl_size n_in, n_out, n, nparam;
4759 unsigned total, pos;
4760 struct isl_dim_map *dim_map1, *dim_map2;
4762 if (isl_basic_map_check_equal_params(bmap1, bmap2) < 0)
4763 goto error;
4764 if (isl_basic_map_check_applies_range(bmap1, bmap2) < 0)
4765 goto error;
4767 n_in = isl_basic_map_dim(bmap1, isl_dim_in);
4768 n_out = isl_basic_map_dim(bmap2, isl_dim_out);
4769 n = isl_basic_map_dim(bmap1, isl_dim_out);
4770 nparam = isl_basic_map_dim(bmap1, isl_dim_param);
4771 if (n_in < 0 || n_out < 0 || n < 0 || nparam < 0)
4772 goto error;
4774 space_result = isl_space_join(isl_basic_map_get_space(bmap1),
4775 isl_basic_map_get_space(bmap2));
4777 total = nparam + n_in + n_out + bmap1->n_div + bmap2->n_div + n;
4778 dim_map1 = isl_dim_map_alloc(bmap1->ctx, total);
4779 dim_map2 = isl_dim_map_alloc(bmap1->ctx, total);
4780 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_param, pos = 0);
4781 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_param, pos = 0);
4782 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_in, pos += nparam);
4783 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_out, pos += n_in);
4784 isl_dim_map_div(dim_map1, bmap1, pos += n_out);
4785 isl_dim_map_div(dim_map2, bmap2, pos += bmap1->n_div);
4786 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_out, pos += bmap2->n_div);
4787 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_in, pos);
4789 bmap = isl_basic_map_alloc_space(space_result,
4790 bmap1->n_div + bmap2->n_div + n,
4791 bmap1->n_eq + bmap2->n_eq,
4792 bmap1->n_ineq + bmap2->n_ineq);
4793 bmap = isl_basic_map_add_constraints_dim_map(bmap, bmap1, dim_map1);
4794 bmap = isl_basic_map_add_constraints_dim_map(bmap, bmap2, dim_map2);
4795 bmap = add_divs(bmap, n);
4796 bmap = isl_basic_map_simplify(bmap);
4797 bmap = isl_basic_map_drop_redundant_divs(bmap);
4798 return isl_basic_map_finalize(bmap);
4799 error:
4800 isl_basic_map_free(bmap1);
4801 isl_basic_map_free(bmap2);
4802 return NULL;
4805 __isl_give isl_basic_set *isl_basic_set_apply(__isl_take isl_basic_set *bset,
4806 __isl_take isl_basic_map *bmap)
4808 if (isl_basic_map_check_compatible_domain(bmap, bset) < 0)
4809 goto error;
4811 return bset_from_bmap(isl_basic_map_apply_range(bset_to_bmap(bset),
4812 bmap));
4813 error:
4814 isl_basic_set_free(bset);
4815 isl_basic_map_free(bmap);
4816 return NULL;
4819 __isl_give isl_basic_map *isl_basic_map_apply_domain(
4820 __isl_take isl_basic_map *bmap1, __isl_take isl_basic_map *bmap2)
4822 if (isl_basic_map_check_equal_params(bmap1, bmap2) < 0)
4823 goto error;
4824 if (!isl_space_tuple_is_equal(bmap1->dim, isl_dim_in,
4825 bmap2->dim, isl_dim_in))
4826 isl_die(isl_basic_map_get_ctx(bmap1), isl_error_invalid,
4827 "spaces don't match", goto error);
4829 bmap1 = isl_basic_map_reverse(bmap1);
4830 bmap1 = isl_basic_map_apply_range(bmap1, bmap2);
4831 return isl_basic_map_reverse(bmap1);
4832 error:
4833 isl_basic_map_free(bmap1);
4834 isl_basic_map_free(bmap2);
4835 return NULL;
4838 /* Given two basic maps A -> f(A) and B -> g(B), construct a basic map
4839 * A \cap B -> f(A) + f(B)
4841 __isl_give isl_basic_map *isl_basic_map_sum(__isl_take isl_basic_map *bmap1,
4842 __isl_take isl_basic_map *bmap2)
4844 isl_size n_in, n_out, nparam;
4845 unsigned total, pos;
4846 struct isl_basic_map *bmap = NULL;
4847 struct isl_dim_map *dim_map1, *dim_map2;
4848 int i;
4850 if (isl_basic_map_check_equal_space(bmap1, bmap2) < 0)
4851 goto error;
4853 nparam = isl_basic_map_dim(bmap1, isl_dim_param);
4854 n_in = isl_basic_map_dim(bmap1, isl_dim_in);
4855 n_out = isl_basic_map_dim(bmap1, isl_dim_out);
4856 if (nparam < 0 || n_in < 0 || n_out < 0)
4857 goto error;
4859 total = nparam + n_in + n_out + bmap1->n_div + bmap2->n_div + 2 * n_out;
4860 dim_map1 = isl_dim_map_alloc(bmap1->ctx, total);
4861 dim_map2 = isl_dim_map_alloc(bmap2->ctx, total);
4862 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_param, pos = 0);
4863 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_param, pos);
4864 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_in, pos += nparam);
4865 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_in, pos);
4866 isl_dim_map_div(dim_map1, bmap1, pos += n_in + n_out);
4867 isl_dim_map_div(dim_map2, bmap2, pos += bmap1->n_div);
4868 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_out, pos += bmap2->n_div);
4869 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_out, pos += n_out);
4871 bmap = isl_basic_map_alloc_space(isl_space_copy(bmap1->dim),
4872 bmap1->n_div + bmap2->n_div + 2 * n_out,
4873 bmap1->n_eq + bmap2->n_eq + n_out,
4874 bmap1->n_ineq + bmap2->n_ineq);
4875 for (i = 0; i < n_out; ++i) {
4876 int j = isl_basic_map_alloc_equality(bmap);
4877 if (j < 0)
4878 goto error;
4879 isl_seq_clr(bmap->eq[j], 1+total);
4880 isl_int_set_si(bmap->eq[j][1+nparam+n_in+i], -1);
4881 isl_int_set_si(bmap->eq[j][1+pos+i], 1);
4882 isl_int_set_si(bmap->eq[j][1+pos-n_out+i], 1);
4884 bmap = isl_basic_map_add_constraints_dim_map(bmap, bmap1, dim_map1);
4885 bmap = isl_basic_map_add_constraints_dim_map(bmap, bmap2, dim_map2);
4886 bmap = add_divs(bmap, 2 * n_out);
4888 bmap = isl_basic_map_simplify(bmap);
4889 return isl_basic_map_finalize(bmap);
4890 error:
4891 isl_basic_map_free(bmap);
4892 isl_basic_map_free(bmap1);
4893 isl_basic_map_free(bmap2);
4894 return NULL;
4897 /* Given two maps A -> f(A) and B -> g(B), construct a map
4898 * A \cap B -> f(A) + f(B)
4900 __isl_give isl_map *isl_map_sum(__isl_take isl_map *map1,
4901 __isl_take isl_map *map2)
4903 struct isl_map *result;
4904 int i, j;
4906 if (isl_map_check_equal_space(map1, map2) < 0)
4907 goto error;
4909 result = isl_map_alloc_space(isl_space_copy(map1->dim),
4910 map1->n * map2->n, 0);
4911 if (!result)
4912 goto error;
4913 for (i = 0; i < map1->n; ++i)
4914 for (j = 0; j < map2->n; ++j) {
4915 struct isl_basic_map *part;
4916 part = isl_basic_map_sum(
4917 isl_basic_map_copy(map1->p[i]),
4918 isl_basic_map_copy(map2->p[j]));
4919 if (isl_basic_map_is_empty(part))
4920 isl_basic_map_free(part);
4921 else
4922 result = isl_map_add_basic_map(result, part);
4923 if (!result)
4924 goto error;
4926 isl_map_free(map1);
4927 isl_map_free(map2);
4928 return result;
4929 error:
4930 isl_map_free(map1);
4931 isl_map_free(map2);
4932 return NULL;
4935 __isl_give isl_set *isl_set_sum(__isl_take isl_set *set1,
4936 __isl_take isl_set *set2)
4938 return set_from_map(isl_map_sum(set_to_map(set1), set_to_map(set2)));
4941 /* Given a basic map A -> f(A), construct A -> -f(A).
4943 __isl_give isl_basic_map *isl_basic_map_neg(__isl_take isl_basic_map *bmap)
4945 int i, j;
4946 unsigned off;
4947 isl_size n;
4949 bmap = isl_basic_map_cow(bmap);
4950 n = isl_basic_map_dim(bmap, isl_dim_out);
4951 if (n < 0)
4952 return isl_basic_map_free(bmap);
4954 off = isl_basic_map_offset(bmap, isl_dim_out);
4955 for (i = 0; i < bmap->n_eq; ++i)
4956 for (j = 0; j < n; ++j)
4957 isl_int_neg(bmap->eq[i][off+j], bmap->eq[i][off+j]);
4958 for (i = 0; i < bmap->n_ineq; ++i)
4959 for (j = 0; j < n; ++j)
4960 isl_int_neg(bmap->ineq[i][off+j], bmap->ineq[i][off+j]);
4961 for (i = 0; i < bmap->n_div; ++i)
4962 for (j = 0; j < n; ++j)
4963 isl_int_neg(bmap->div[i][1+off+j], bmap->div[i][1+off+j]);
4964 bmap = isl_basic_map_gauss(bmap, NULL);
4965 return isl_basic_map_finalize(bmap);
4968 __isl_give isl_basic_set *isl_basic_set_neg(__isl_take isl_basic_set *bset)
4970 return isl_basic_map_neg(bset);
4973 /* Given a map A -> f(A), construct A -> -f(A).
4975 __isl_give isl_map *isl_map_neg(__isl_take isl_map *map)
4977 int i;
4979 map = isl_map_cow(map);
4980 if (!map)
4981 return NULL;
4983 for (i = 0; i < map->n; ++i) {
4984 map->p[i] = isl_basic_map_neg(map->p[i]);
4985 if (!map->p[i])
4986 goto error;
4989 return map;
4990 error:
4991 isl_map_free(map);
4992 return NULL;
4995 __isl_give isl_set *isl_set_neg(__isl_take isl_set *set)
4997 return set_from_map(isl_map_neg(set_to_map(set)));
5000 /* Given a basic map A -> f(A) and an integer d, construct a basic map
5001 * A -> floor(f(A)/d).
5003 __isl_give isl_basic_map *isl_basic_map_floordiv(__isl_take isl_basic_map *bmap,
5004 isl_int d)
5006 isl_size n_in, n_out, nparam;
5007 unsigned total, pos;
5008 struct isl_basic_map *result = NULL;
5009 struct isl_dim_map *dim_map;
5010 int i;
5012 nparam = isl_basic_map_dim(bmap, isl_dim_param);
5013 n_in = isl_basic_map_dim(bmap, isl_dim_in);
5014 n_out = isl_basic_map_dim(bmap, isl_dim_out);
5015 if (nparam < 0 || n_in < 0 || n_out < 0)
5016 return isl_basic_map_free(bmap);
5018 total = nparam + n_in + n_out + bmap->n_div + n_out;
5019 dim_map = isl_dim_map_alloc(bmap->ctx, total);
5020 isl_dim_map_dim(dim_map, bmap->dim, isl_dim_param, pos = 0);
5021 isl_dim_map_dim(dim_map, bmap->dim, isl_dim_in, pos += nparam);
5022 isl_dim_map_div(dim_map, bmap, pos += n_in + n_out);
5023 isl_dim_map_dim(dim_map, bmap->dim, isl_dim_out, pos += bmap->n_div);
5025 result = isl_basic_map_alloc_space(isl_space_copy(bmap->dim),
5026 bmap->n_div + n_out,
5027 bmap->n_eq, bmap->n_ineq + 2 * n_out);
5028 result = isl_basic_map_add_constraints_dim_map(result, bmap, dim_map);
5029 result = add_divs(result, n_out);
5030 for (i = 0; i < n_out; ++i) {
5031 int j;
5032 j = isl_basic_map_alloc_inequality(result);
5033 if (j < 0)
5034 goto error;
5035 isl_seq_clr(result->ineq[j], 1+total);
5036 isl_int_neg(result->ineq[j][1+nparam+n_in+i], d);
5037 isl_int_set_si(result->ineq[j][1+pos+i], 1);
5038 j = isl_basic_map_alloc_inequality(result);
5039 if (j < 0)
5040 goto error;
5041 isl_seq_clr(result->ineq[j], 1+total);
5042 isl_int_set(result->ineq[j][1+nparam+n_in+i], d);
5043 isl_int_set_si(result->ineq[j][1+pos+i], -1);
5044 isl_int_sub_ui(result->ineq[j][0], d, 1);
5047 result = isl_basic_map_simplify(result);
5048 return isl_basic_map_finalize(result);
5049 error:
5050 isl_basic_map_free(result);
5051 return NULL;
5054 /* Given a map A -> f(A) and an integer d, construct a map
5055 * A -> floor(f(A)/d).
5057 __isl_give isl_map *isl_map_floordiv(__isl_take isl_map *map, isl_int d)
5059 int i;
5061 map = isl_map_cow(map);
5062 if (!map)
5063 return NULL;
5065 ISL_F_CLR(map, ISL_MAP_DISJOINT);
5066 for (i = 0; i < map->n; ++i) {
5067 map->p[i] = isl_basic_map_floordiv(map->p[i], d);
5068 if (!map->p[i])
5069 goto error;
5071 map = isl_map_unmark_normalized(map);
5073 return map;
5074 error:
5075 isl_map_free(map);
5076 return NULL;
5079 /* Given a map A -> f(A) and an integer d, construct a map
5080 * A -> floor(f(A)/d).
5082 __isl_give isl_map *isl_map_floordiv_val(__isl_take isl_map *map,
5083 __isl_take isl_val *d)
5085 if (!map || !d)
5086 goto error;
5087 if (!isl_val_is_int(d))
5088 isl_die(isl_val_get_ctx(d), isl_error_invalid,
5089 "expecting integer denominator", goto error);
5090 map = isl_map_floordiv(map, d->n);
5091 isl_val_free(d);
5092 return map;
5093 error:
5094 isl_map_free(map);
5095 isl_val_free(d);
5096 return NULL;
5099 static __isl_give isl_basic_map *var_equal(__isl_take isl_basic_map *bmap,
5100 unsigned pos)
5102 int i;
5103 isl_size nparam;
5104 isl_size n_in;
5105 isl_size total;
5107 total = isl_basic_map_dim(bmap, isl_dim_all);
5108 nparam = isl_basic_map_dim(bmap, isl_dim_param);
5109 n_in = isl_basic_map_dim(bmap, isl_dim_in);
5110 if (total < 0 || nparam < 0 || n_in < 0)
5111 return isl_basic_map_free(bmap);
5112 i = isl_basic_map_alloc_equality(bmap);
5113 if (i < 0)
5114 goto error;
5115 isl_seq_clr(bmap->eq[i], 1 + total);
5116 isl_int_set_si(bmap->eq[i][1+nparam+pos], -1);
5117 isl_int_set_si(bmap->eq[i][1+nparam+n_in+pos], 1);
5118 return isl_basic_map_finalize(bmap);
5119 error:
5120 isl_basic_map_free(bmap);
5121 return NULL;
5124 /* Add a constraint to "bmap" expressing i_pos < o_pos
5126 static __isl_give isl_basic_map *var_less(__isl_take isl_basic_map *bmap,
5127 unsigned pos)
5129 int i;
5130 isl_size nparam;
5131 isl_size n_in;
5132 isl_size total;
5134 total = isl_basic_map_dim(bmap, isl_dim_all);
5135 nparam = isl_basic_map_dim(bmap, isl_dim_param);
5136 n_in = isl_basic_map_dim(bmap, isl_dim_in);
5137 if (total < 0 || nparam < 0 || n_in < 0)
5138 return isl_basic_map_free(bmap);
5139 i = isl_basic_map_alloc_inequality(bmap);
5140 if (i < 0)
5141 goto error;
5142 isl_seq_clr(bmap->ineq[i], 1 + total);
5143 isl_int_set_si(bmap->ineq[i][0], -1);
5144 isl_int_set_si(bmap->ineq[i][1+nparam+pos], -1);
5145 isl_int_set_si(bmap->ineq[i][1+nparam+n_in+pos], 1);
5146 return isl_basic_map_finalize(bmap);
5147 error:
5148 isl_basic_map_free(bmap);
5149 return NULL;
5152 /* Add a constraint to "bmap" expressing i_pos <= o_pos
5154 static __isl_give isl_basic_map *var_less_or_equal(
5155 __isl_take isl_basic_map *bmap, unsigned pos)
5157 int i;
5158 isl_size nparam;
5159 isl_size n_in;
5160 isl_size total;
5162 total = isl_basic_map_dim(bmap, isl_dim_all);
5163 nparam = isl_basic_map_dim(bmap, isl_dim_param);
5164 n_in = isl_basic_map_dim(bmap, isl_dim_in);
5165 if (total < 0 || nparam < 0 || n_in < 0)
5166 return isl_basic_map_free(bmap);
5167 i = isl_basic_map_alloc_inequality(bmap);
5168 if (i < 0)
5169 goto error;
5170 isl_seq_clr(bmap->ineq[i], 1 + total);
5171 isl_int_set_si(bmap->ineq[i][1+nparam+pos], -1);
5172 isl_int_set_si(bmap->ineq[i][1+nparam+n_in+pos], 1);
5173 return isl_basic_map_finalize(bmap);
5174 error:
5175 isl_basic_map_free(bmap);
5176 return NULL;
5179 /* Add a constraint to "bmap" expressing i_pos > o_pos
5181 static __isl_give isl_basic_map *var_more(__isl_take isl_basic_map *bmap,
5182 unsigned pos)
5184 int i;
5185 isl_size nparam;
5186 isl_size n_in;
5187 isl_size total;
5189 total = isl_basic_map_dim(bmap, isl_dim_all);
5190 nparam = isl_basic_map_dim(bmap, isl_dim_param);
5191 n_in = isl_basic_map_dim(bmap, isl_dim_in);
5192 if (total < 0 || nparam < 0 || n_in < 0)
5193 return isl_basic_map_free(bmap);
5194 i = isl_basic_map_alloc_inequality(bmap);
5195 if (i < 0)
5196 goto error;
5197 isl_seq_clr(bmap->ineq[i], 1 + total);
5198 isl_int_set_si(bmap->ineq[i][0], -1);
5199 isl_int_set_si(bmap->ineq[i][1+nparam+pos], 1);
5200 isl_int_set_si(bmap->ineq[i][1+nparam+n_in+pos], -1);
5201 return isl_basic_map_finalize(bmap);
5202 error:
5203 isl_basic_map_free(bmap);
5204 return NULL;
5207 /* Add a constraint to "bmap" expressing i_pos >= o_pos
5209 static __isl_give isl_basic_map *var_more_or_equal(
5210 __isl_take isl_basic_map *bmap, unsigned pos)
5212 int i;
5213 isl_size nparam;
5214 isl_size n_in;
5215 isl_size total;
5217 total = isl_basic_map_dim(bmap, isl_dim_all);
5218 nparam = isl_basic_map_dim(bmap, isl_dim_param);
5219 n_in = isl_basic_map_dim(bmap, isl_dim_in);
5220 if (total < 0 || nparam < 0 || n_in < 0)
5221 return isl_basic_map_free(bmap);
5222 i = isl_basic_map_alloc_inequality(bmap);
5223 if (i < 0)
5224 goto error;
5225 isl_seq_clr(bmap->ineq[i], 1 + total);
5226 isl_int_set_si(bmap->ineq[i][1+nparam+pos], 1);
5227 isl_int_set_si(bmap->ineq[i][1+nparam+n_in+pos], -1);
5228 return isl_basic_map_finalize(bmap);
5229 error:
5230 isl_basic_map_free(bmap);
5231 return NULL;
5234 __isl_give isl_basic_map *isl_basic_map_equal(
5235 __isl_take isl_space *space, unsigned n_equal)
5237 int i;
5238 struct isl_basic_map *bmap;
5239 bmap = isl_basic_map_alloc_space(space, 0, n_equal, 0);
5240 if (!bmap)
5241 return NULL;
5242 for (i = 0; i < n_equal && bmap; ++i)
5243 bmap = var_equal(bmap, i);
5244 return isl_basic_map_finalize(bmap);
5247 /* Return a relation on of dimension "space" expressing i_[0..pos] << o_[0..pos]
5249 __isl_give isl_basic_map *isl_basic_map_less_at(__isl_take isl_space *space,
5250 unsigned pos)
5252 int i;
5253 struct isl_basic_map *bmap;
5254 bmap = isl_basic_map_alloc_space(space, 0, pos, 1);
5255 if (!bmap)
5256 return NULL;
5257 for (i = 0; i < pos && bmap; ++i)
5258 bmap = var_equal(bmap, i);
5259 if (bmap)
5260 bmap = var_less(bmap, pos);
5261 return isl_basic_map_finalize(bmap);
5264 /* Return a relation on "space" expressing i_[0..pos] <<= o_[0..pos]
5266 __isl_give isl_basic_map *isl_basic_map_less_or_equal_at(
5267 __isl_take isl_space *space, unsigned pos)
5269 int i;
5270 isl_basic_map *bmap;
5272 bmap = isl_basic_map_alloc_space(space, 0, pos, 1);
5273 for (i = 0; i < pos; ++i)
5274 bmap = var_equal(bmap, i);
5275 bmap = var_less_or_equal(bmap, pos);
5276 return isl_basic_map_finalize(bmap);
5279 /* Return a relation on "space" expressing i_pos > o_pos
5281 __isl_give isl_basic_map *isl_basic_map_more_at(__isl_take isl_space *space,
5282 unsigned pos)
5284 int i;
5285 struct isl_basic_map *bmap;
5286 bmap = isl_basic_map_alloc_space(space, 0, pos, 1);
5287 if (!bmap)
5288 return NULL;
5289 for (i = 0; i < pos && bmap; ++i)
5290 bmap = var_equal(bmap, i);
5291 if (bmap)
5292 bmap = var_more(bmap, pos);
5293 return isl_basic_map_finalize(bmap);
5296 /* Return a relation on "space" expressing i_[0..pos] >>= o_[0..pos]
5298 __isl_give isl_basic_map *isl_basic_map_more_or_equal_at(
5299 __isl_take isl_space *space, unsigned pos)
5301 int i;
5302 isl_basic_map *bmap;
5304 bmap = isl_basic_map_alloc_space(space, 0, pos, 1);
5305 for (i = 0; i < pos; ++i)
5306 bmap = var_equal(bmap, i);
5307 bmap = var_more_or_equal(bmap, pos);
5308 return isl_basic_map_finalize(bmap);
5311 static __isl_give isl_map *map_lex_lte_first(__isl_take isl_space *space,
5312 unsigned n, int equal)
5314 struct isl_map *map;
5315 int i;
5317 if (n == 0 && equal)
5318 return isl_map_universe(space);
5320 map = isl_map_alloc_space(isl_space_copy(space), n, ISL_MAP_DISJOINT);
5322 for (i = 0; i + 1 < n; ++i)
5323 map = isl_map_add_basic_map(map,
5324 isl_basic_map_less_at(isl_space_copy(space), i));
5325 if (n > 0) {
5326 if (equal)
5327 map = isl_map_add_basic_map(map,
5328 isl_basic_map_less_or_equal_at(space, n - 1));
5329 else
5330 map = isl_map_add_basic_map(map,
5331 isl_basic_map_less_at(space, n - 1));
5332 } else
5333 isl_space_free(space);
5335 return map;
5338 static __isl_give isl_map *map_lex_lte(__isl_take isl_space *space, int equal)
5340 if (!space)
5341 return NULL;
5342 return map_lex_lte_first(space, space->n_out, equal);
5345 __isl_give isl_map *isl_map_lex_lt_first(__isl_take isl_space *space,
5346 unsigned n)
5348 return map_lex_lte_first(space, n, 0);
5351 __isl_give isl_map *isl_map_lex_le_first(__isl_take isl_space *space,
5352 unsigned n)
5354 return map_lex_lte_first(space, n, 1);
5357 __isl_give isl_map *isl_map_lex_lt(__isl_take isl_space *set_space)
5359 return map_lex_lte(isl_space_map_from_set(set_space), 0);
5362 __isl_give isl_map *isl_map_lex_le(__isl_take isl_space *set_space)
5364 return map_lex_lte(isl_space_map_from_set(set_space), 1);
5367 static __isl_give isl_map *map_lex_gte_first(__isl_take isl_space *space,
5368 unsigned n, int equal)
5370 struct isl_map *map;
5371 int i;
5373 if (n == 0 && equal)
5374 return isl_map_universe(space);
5376 map = isl_map_alloc_space(isl_space_copy(space), n, ISL_MAP_DISJOINT);
5378 for (i = 0; i + 1 < n; ++i)
5379 map = isl_map_add_basic_map(map,
5380 isl_basic_map_more_at(isl_space_copy(space), i));
5381 if (n > 0) {
5382 if (equal)
5383 map = isl_map_add_basic_map(map,
5384 isl_basic_map_more_or_equal_at(space, n - 1));
5385 else
5386 map = isl_map_add_basic_map(map,
5387 isl_basic_map_more_at(space, n - 1));
5388 } else
5389 isl_space_free(space);
5391 return map;
5394 static __isl_give isl_map *map_lex_gte(__isl_take isl_space *space, int equal)
5396 if (!space)
5397 return NULL;
5398 return map_lex_gte_first(space, space->n_out, equal);
5401 __isl_give isl_map *isl_map_lex_gt_first(__isl_take isl_space *space,
5402 unsigned n)
5404 return map_lex_gte_first(space, n, 0);
5407 __isl_give isl_map *isl_map_lex_ge_first(__isl_take isl_space *space,
5408 unsigned n)
5410 return map_lex_gte_first(space, n, 1);
5413 __isl_give isl_map *isl_map_lex_gt(__isl_take isl_space *set_space)
5415 return map_lex_gte(isl_space_map_from_set(set_space), 0);
5418 __isl_give isl_map *isl_map_lex_ge(__isl_take isl_space *set_space)
5420 return map_lex_gte(isl_space_map_from_set(set_space), 1);
5423 __isl_give isl_map *isl_set_lex_le_set(__isl_take isl_set *set1,
5424 __isl_take isl_set *set2)
5426 isl_map *map;
5427 map = isl_map_lex_le(isl_set_get_space(set1));
5428 map = isl_map_intersect_domain(map, set1);
5429 map = isl_map_intersect_range(map, set2);
5430 return map;
5433 __isl_give isl_map *isl_set_lex_lt_set(__isl_take isl_set *set1,
5434 __isl_take isl_set *set2)
5436 isl_map *map;
5437 map = isl_map_lex_lt(isl_set_get_space(set1));
5438 map = isl_map_intersect_domain(map, set1);
5439 map = isl_map_intersect_range(map, set2);
5440 return map;
5443 __isl_give isl_map *isl_set_lex_ge_set(__isl_take isl_set *set1,
5444 __isl_take isl_set *set2)
5446 isl_map *map;
5447 map = isl_map_lex_ge(isl_set_get_space(set1));
5448 map = isl_map_intersect_domain(map, set1);
5449 map = isl_map_intersect_range(map, set2);
5450 return map;
5453 __isl_give isl_map *isl_set_lex_gt_set(__isl_take isl_set *set1,
5454 __isl_take isl_set *set2)
5456 isl_map *map;
5457 map = isl_map_lex_gt(isl_set_get_space(set1));
5458 map = isl_map_intersect_domain(map, set1);
5459 map = isl_map_intersect_range(map, set2);
5460 return map;
5463 __isl_give isl_map *isl_map_lex_le_map(__isl_take isl_map *map1,
5464 __isl_take isl_map *map2)
5466 isl_map *map;
5467 map = isl_map_lex_le(isl_space_range(isl_map_get_space(map1)));
5468 map = isl_map_apply_domain(map, isl_map_reverse(map1));
5469 map = isl_map_apply_range(map, isl_map_reverse(map2));
5470 return map;
5473 __isl_give isl_map *isl_map_lex_lt_map(__isl_take isl_map *map1,
5474 __isl_take isl_map *map2)
5476 isl_map *map;
5477 map = isl_map_lex_lt(isl_space_range(isl_map_get_space(map1)));
5478 map = isl_map_apply_domain(map, isl_map_reverse(map1));
5479 map = isl_map_apply_range(map, isl_map_reverse(map2));
5480 return map;
5483 __isl_give isl_map *isl_map_lex_ge_map(__isl_take isl_map *map1,
5484 __isl_take isl_map *map2)
5486 isl_map *map;
5487 map = isl_map_lex_ge(isl_space_range(isl_map_get_space(map1)));
5488 map = isl_map_apply_domain(map, isl_map_reverse(map1));
5489 map = isl_map_apply_range(map, isl_map_reverse(map2));
5490 return map;
5493 __isl_give isl_map *isl_map_lex_gt_map(__isl_take isl_map *map1,
5494 __isl_take isl_map *map2)
5496 isl_map *map;
5497 map = isl_map_lex_gt(isl_space_range(isl_map_get_space(map1)));
5498 map = isl_map_apply_domain(map, isl_map_reverse(map1));
5499 map = isl_map_apply_range(map, isl_map_reverse(map2));
5500 return map;
5503 /* For the div d = floor(f/m) at position "div", add the constraint
5505 * f - m d >= 0
5507 static __isl_give isl_basic_map *add_upper_div_constraint(
5508 __isl_take isl_basic_map *bmap, unsigned div)
5510 int i;
5511 isl_size v_div = isl_basic_map_var_offset(bmap, isl_dim_div);
5512 isl_size n_div;
5513 unsigned pos;
5515 n_div = isl_basic_map_dim(bmap, isl_dim_div);
5516 if (v_div < 0 || n_div < 0)
5517 return isl_basic_map_free(bmap);
5518 pos = v_div + div;
5519 i = isl_basic_map_alloc_inequality(bmap);
5520 if (i < 0)
5521 return isl_basic_map_free(bmap);
5522 isl_seq_cpy(bmap->ineq[i], bmap->div[div] + 1, 1 + v_div + n_div);
5523 isl_int_neg(bmap->ineq[i][1 + pos], bmap->div[div][0]);
5525 return bmap;
5528 /* For the div d = floor(f/m) at position "div", add the constraint
5530 * -(f-(m-1)) + m d >= 0
5532 static __isl_give isl_basic_map *add_lower_div_constraint(
5533 __isl_take isl_basic_map *bmap, unsigned div)
5535 int i;
5536 isl_size v_div = isl_basic_map_var_offset(bmap, isl_dim_div);
5537 isl_size n_div;
5538 unsigned pos;
5540 n_div = isl_basic_map_dim(bmap, isl_dim_div);
5541 if (v_div < 0 || n_div < 0)
5542 return isl_basic_map_free(bmap);
5543 pos = v_div + div;
5544 i = isl_basic_map_alloc_inequality(bmap);
5545 if (i < 0)
5546 return isl_basic_map_free(bmap);
5547 isl_seq_neg(bmap->ineq[i], bmap->div[div] + 1, 1 + v_div + n_div);
5548 isl_int_set(bmap->ineq[i][1 + pos], bmap->div[div][0]);
5549 isl_int_add(bmap->ineq[i][0], bmap->ineq[i][0], bmap->ineq[i][1 + pos]);
5550 isl_int_sub_ui(bmap->ineq[i][0], bmap->ineq[i][0], 1);
5552 return bmap;
5555 /* For the div d = floor(f/m) at position "pos", add the constraints
5557 * f - m d >= 0
5558 * -(f-(m-1)) + m d >= 0
5560 * Note that the second constraint is the negation of
5562 * f - m d >= m
5564 __isl_give isl_basic_map *isl_basic_map_add_div_constraints(
5565 __isl_take isl_basic_map *bmap, unsigned pos)
5567 bmap = add_upper_div_constraint(bmap, pos);
5568 bmap = add_lower_div_constraint(bmap, pos);
5569 return bmap;
5572 /* For each known div d = floor(f/m), add the constraints
5574 * f - m d >= 0
5575 * -(f-(m-1)) + m d >= 0
5577 * Remove duplicate constraints in case of some these div constraints
5578 * already appear in "bmap".
5580 __isl_give isl_basic_map *isl_basic_map_add_known_div_constraints(
5581 __isl_take isl_basic_map *bmap)
5583 isl_size n_div;
5585 n_div = isl_basic_map_dim(bmap, isl_dim_div);
5586 if (n_div < 0)
5587 return isl_basic_map_free(bmap);
5588 if (n_div == 0)
5589 return bmap;
5591 bmap = add_known_div_constraints(bmap);
5592 bmap = isl_basic_map_remove_duplicate_constraints(bmap, NULL, 0);
5593 bmap = isl_basic_map_finalize(bmap);
5594 return bmap;
5597 /* Add the div constraint of sign "sign" for div "div" of "bmap".
5599 * In particular, if this div is of the form d = floor(f/m),
5600 * then add the constraint
5602 * f - m d >= 0
5604 * if sign < 0 or the constraint
5606 * -(f-(m-1)) + m d >= 0
5608 * if sign > 0.
5610 __isl_give isl_basic_map *isl_basic_map_add_div_constraint(
5611 __isl_take isl_basic_map *bmap, unsigned div, int sign)
5613 if (sign < 0)
5614 return add_upper_div_constraint(bmap, div);
5615 else
5616 return add_lower_div_constraint(bmap, div);
5619 __isl_give isl_basic_set *isl_basic_map_underlying_set(
5620 __isl_take isl_basic_map *bmap)
5622 isl_space *space;
5624 if (!bmap)
5625 goto error;
5626 if (bmap->dim->nparam == 0 && bmap->dim->n_in == 0 &&
5627 bmap->n_div == 0 &&
5628 !isl_space_is_named_or_nested(bmap->dim, isl_dim_in) &&
5629 !isl_space_is_named_or_nested(bmap->dim, isl_dim_out))
5630 return bset_from_bmap(bmap);
5631 bmap = isl_basic_map_cow(bmap);
5632 if (!bmap)
5633 return NULL;
5634 space = isl_basic_map_take_space(bmap);
5635 space = isl_space_underlying(space, bmap->n_div);
5636 bmap = isl_basic_map_restore_space(bmap, space);
5637 if (!bmap)
5638 return NULL;
5639 bmap->extra -= bmap->n_div;
5640 bmap->n_div = 0;
5641 bmap = isl_basic_map_finalize(bmap);
5642 return bset_from_bmap(bmap);
5643 error:
5644 isl_basic_map_free(bmap);
5645 return NULL;
5648 __isl_give isl_basic_set *isl_basic_set_underlying_set(
5649 __isl_take isl_basic_set *bset)
5651 return isl_basic_map_underlying_set(bset_to_bmap(bset));
5654 /* Replace each element in "list" by the result of applying
5655 * isl_basic_map_underlying_set to the element.
5657 __isl_give isl_basic_set_list *isl_basic_map_list_underlying_set(
5658 __isl_take isl_basic_map_list *list)
5660 int i;
5661 isl_size n;
5663 n = isl_basic_map_list_n_basic_map(list);
5664 if (n < 0)
5665 goto error;
5667 for (i = 0; i < n; ++i) {
5668 isl_basic_map *bmap;
5669 isl_basic_set *bset;
5671 bmap = isl_basic_map_list_get_basic_map(list, i);
5672 bset = isl_basic_set_underlying_set(bmap);
5673 list = isl_basic_set_list_set_basic_set(list, i, bset);
5676 return list;
5677 error:
5678 isl_basic_map_list_free(list);
5679 return NULL;
5682 __isl_give isl_basic_map *isl_basic_map_overlying_set(
5683 __isl_take isl_basic_set *bset, __isl_take isl_basic_map *like)
5685 struct isl_basic_map *bmap;
5686 struct isl_ctx *ctx;
5687 isl_size dim, bmap_total;
5688 unsigned total;
5689 int i;
5691 if (!bset || !like)
5692 goto error;
5693 ctx = bset->ctx;
5694 if (isl_basic_set_check_no_params(bset) < 0 ||
5695 isl_basic_set_check_no_locals(bset) < 0)
5696 goto error;
5697 dim = isl_basic_set_dim(bset, isl_dim_set);
5698 bmap_total = isl_basic_map_dim(like, isl_dim_all);
5699 if (dim < 0 || bmap_total < 0)
5700 goto error;
5701 isl_assert(ctx, dim == bmap_total, goto error);
5702 if (like->n_div == 0) {
5703 isl_space *space = isl_basic_map_get_space(like);
5704 isl_basic_map_free(like);
5705 return isl_basic_map_reset_space(bset, space);
5707 bset = isl_basic_set_cow(bset);
5708 if (!bset)
5709 goto error;
5710 total = dim + bset->extra;
5711 bmap = bset_to_bmap(bset);
5712 isl_space_free(isl_basic_map_take_space(bmap));
5713 bmap = isl_basic_map_restore_space(bmap, isl_basic_map_get_space(like));
5714 if (!bmap)
5715 goto error;
5716 bmap->n_div = like->n_div;
5717 bmap->extra += like->n_div;
5718 if (bmap->extra) {
5719 unsigned ltotal;
5720 isl_int **div;
5721 ltotal = total - bmap->extra + like->extra;
5722 if (ltotal > total)
5723 ltotal = total;
5724 bmap->block2 = isl_blk_extend(ctx, bmap->block2,
5725 bmap->extra * (1 + 1 + total));
5726 if (isl_blk_is_error(bmap->block2))
5727 goto error;
5728 div = isl_realloc_array(ctx, bmap->div, isl_int *, bmap->extra);
5729 if (!div)
5730 goto error;
5731 bmap->div = div;
5732 for (i = 0; i < bmap->extra; ++i)
5733 bmap->div[i] = bmap->block2.data + i * (1 + 1 + total);
5734 for (i = 0; i < like->n_div; ++i) {
5735 isl_seq_cpy(bmap->div[i], like->div[i], 1 + 1 + ltotal);
5736 isl_seq_clr(bmap->div[i]+1+1+ltotal, total - ltotal);
5738 bmap = isl_basic_map_add_known_div_constraints(bmap);
5740 isl_basic_map_free(like);
5741 bmap = isl_basic_map_simplify(bmap);
5742 bmap = isl_basic_map_finalize(bmap);
5743 return bmap;
5744 error:
5745 isl_basic_map_free(like);
5746 isl_basic_set_free(bset);
5747 return NULL;
5750 __isl_give isl_basic_set *isl_basic_set_from_underlying_set(
5751 __isl_take isl_basic_set *bset, __isl_take isl_basic_set *like)
5753 return bset_from_bmap(isl_basic_map_overlying_set(bset,
5754 bset_to_bmap(like)));
5757 __isl_give isl_set *isl_map_underlying_set(__isl_take isl_map *map)
5759 int i;
5761 map = isl_map_cow(map);
5762 if (!map)
5763 return NULL;
5764 map->dim = isl_space_cow(map->dim);
5765 if (!map->dim)
5766 goto error;
5768 for (i = 1; i < map->n; ++i)
5769 isl_assert(map->ctx, map->p[0]->n_div == map->p[i]->n_div,
5770 goto error);
5771 for (i = 0; i < map->n; ++i) {
5772 map->p[i] = bset_to_bmap(
5773 isl_basic_map_underlying_set(map->p[i]));
5774 if (!map->p[i])
5775 goto error;
5777 if (map->n == 0)
5778 map->dim = isl_space_underlying(map->dim, 0);
5779 else {
5780 isl_space_free(map->dim);
5781 map->dim = isl_space_copy(map->p[0]->dim);
5783 if (!map->dim)
5784 goto error;
5785 return set_from_map(map);
5786 error:
5787 isl_map_free(map);
5788 return NULL;
5791 /* Replace the space of "bmap" by "space".
5793 * If the space of "bmap" is identical to "space" (including the identifiers
5794 * of the input and output dimensions), then simply return the original input.
5796 __isl_give isl_basic_map *isl_basic_map_reset_space(
5797 __isl_take isl_basic_map *bmap, __isl_take isl_space *space)
5799 isl_bool equal;
5800 isl_space *bmap_space;
5802 bmap_space = isl_basic_map_peek_space(bmap);
5803 equal = isl_space_is_equal(bmap_space, space);
5804 if (equal >= 0 && equal)
5805 equal = isl_space_has_equal_ids(bmap_space, space);
5806 if (equal < 0)
5807 goto error;
5808 if (equal) {
5809 isl_space_free(space);
5810 return bmap;
5812 isl_space_free(isl_basic_map_take_space(bmap));
5813 bmap = isl_basic_map_restore_space(bmap, space);
5815 bmap = isl_basic_map_finalize(bmap);
5817 return bmap;
5818 error:
5819 isl_basic_map_free(bmap);
5820 isl_space_free(space);
5821 return NULL;
5824 __isl_give isl_basic_set *isl_basic_set_reset_space(
5825 __isl_take isl_basic_set *bset, __isl_take isl_space *space)
5827 return bset_from_bmap(isl_basic_map_reset_space(bset_to_bmap(bset),
5828 space));
5831 /* Check that the total dimensions of "map" and "space" are the same.
5833 static isl_stat check_map_space_equal_total_dim(__isl_keep isl_map *map,
5834 __isl_keep isl_space *space)
5836 isl_size dim1, dim2;
5838 dim1 = isl_map_dim(map, isl_dim_all);
5839 dim2 = isl_space_dim(space, isl_dim_all);
5840 if (dim1 < 0 || dim2 < 0)
5841 return isl_stat_error;
5842 if (dim1 == dim2)
5843 return isl_stat_ok;
5844 isl_die(isl_map_get_ctx(map), isl_error_invalid,
5845 "total dimensions do not match", return isl_stat_error);
5848 __isl_give isl_map *isl_map_reset_space(__isl_take isl_map *map,
5849 __isl_take isl_space *space)
5851 int i;
5853 map = isl_map_cow(map);
5854 if (!map || !space)
5855 goto error;
5857 for (i = 0; i < map->n; ++i) {
5858 map->p[i] = isl_basic_map_reset_space(map->p[i],
5859 isl_space_copy(space));
5860 if (!map->p[i])
5861 goto error;
5863 isl_space_free(isl_map_take_space(map));
5864 map = isl_map_restore_space(map, space);
5866 return map;
5867 error:
5868 isl_map_free(map);
5869 isl_space_free(space);
5870 return NULL;
5873 /* Replace the space of "map" by "space", without modifying
5874 * the dimension of "map".
5876 * If the space of "map" is identical to "space" (including the identifiers
5877 * of the input and output dimensions), then simply return the original input.
5879 __isl_give isl_map *isl_map_reset_equal_dim_space(__isl_take isl_map *map,
5880 __isl_take isl_space *space)
5882 isl_bool equal;
5883 isl_space *map_space;
5885 map_space = isl_map_peek_space(map);
5886 equal = isl_space_is_equal(map_space, space);
5887 if (equal >= 0 && equal)
5888 equal = isl_space_has_equal_ids(map_space, space);
5889 if (equal < 0)
5890 goto error;
5891 if (equal) {
5892 isl_space_free(space);
5893 return map;
5895 if (check_map_space_equal_total_dim(map, space) < 0)
5896 goto error;
5897 return isl_map_reset_space(map, space);
5898 error:
5899 isl_map_free(map);
5900 isl_space_free(space);
5901 return NULL;
5904 __isl_give isl_set *isl_set_reset_space(__isl_take isl_set *set,
5905 __isl_take isl_space *space)
5907 return set_from_map(isl_map_reset_space(set_to_map(set), space));
5910 /* Compute the parameter domain of the given basic set.
5912 __isl_give isl_basic_set *isl_basic_set_params(__isl_take isl_basic_set *bset)
5914 isl_bool is_params;
5915 isl_space *space;
5916 isl_size n;
5918 is_params = isl_basic_set_is_params(bset);
5919 if (is_params < 0)
5920 return isl_basic_set_free(bset);
5921 if (is_params)
5922 return bset;
5924 n = isl_basic_set_dim(bset, isl_dim_set);
5925 if (n < 0)
5926 return isl_basic_set_free(bset);
5927 bset = isl_basic_set_project_out(bset, isl_dim_set, 0, n);
5928 space = isl_basic_set_get_space(bset);
5929 space = isl_space_params(space);
5930 bset = isl_basic_set_reset_space(bset, space);
5931 return bset;
5934 /* Construct a zero-dimensional basic set with the given parameter domain.
5936 __isl_give isl_basic_set *isl_basic_set_from_params(
5937 __isl_take isl_basic_set *bset)
5939 isl_space *space;
5940 space = isl_basic_set_get_space(bset);
5941 space = isl_space_set_from_params(space);
5942 bset = isl_basic_set_reset_space(bset, space);
5943 return bset;
5946 /* Compute the parameter domain of the given set.
5948 __isl_give isl_set *isl_set_params(__isl_take isl_set *set)
5950 return isl_map_params(set_to_map(set));
5953 /* Construct a zero-dimensional set with the given parameter domain.
5955 __isl_give isl_set *isl_set_from_params(__isl_take isl_set *set)
5957 isl_space *space;
5958 space = isl_set_get_space(set);
5959 space = isl_space_set_from_params(space);
5960 set = isl_set_reset_space(set, space);
5961 return set;
5964 /* Compute the parameter domain of the given map.
5966 __isl_give isl_set *isl_map_params(__isl_take isl_map *map)
5968 isl_space *space;
5969 isl_size n_in, n_out;
5971 n_in = isl_map_dim(map, isl_dim_in);
5972 n_out = isl_map_dim(map, isl_dim_out);
5973 if (n_in < 0 || n_out < 0)
5974 return isl_map_free(map);
5975 map = isl_map_project_out(map, isl_dim_in, 0, n_in);
5976 map = isl_map_project_out(map, isl_dim_out, 0, n_out);
5977 space = isl_map_get_space(map);
5978 space = isl_space_params(space);
5979 map = isl_map_reset_space(map, space);
5980 return map;
5983 __isl_give isl_basic_set *isl_basic_map_domain(__isl_take isl_basic_map *bmap)
5985 isl_space *space;
5986 isl_size n_out;
5988 n_out = isl_basic_map_dim(bmap, isl_dim_out);
5989 if (n_out < 0)
5990 return isl_basic_map_free(bmap);
5991 space = isl_space_domain(isl_basic_map_get_space(bmap));
5993 bmap = isl_basic_map_project_out(bmap, isl_dim_out, 0, n_out);
5995 return isl_basic_map_reset_space(bmap, space);
5998 isl_bool isl_basic_map_may_be_set(__isl_keep isl_basic_map *bmap)
6000 if (!bmap)
6001 return isl_bool_error;
6002 return isl_space_may_be_set(bmap->dim);
6005 /* Is this basic map actually a set?
6006 * Users should never call this function. Outside of isl,
6007 * the type should indicate whether something is a set or a map.
6009 isl_bool isl_basic_map_is_set(__isl_keep isl_basic_map *bmap)
6011 if (!bmap)
6012 return isl_bool_error;
6013 return isl_space_is_set(bmap->dim);
6016 __isl_give isl_basic_set *isl_basic_map_range(__isl_take isl_basic_map *bmap)
6018 isl_bool is_set;
6020 is_set = isl_basic_map_is_set(bmap);
6021 if (is_set < 0)
6022 goto error;
6023 if (is_set)
6024 return bmap;
6025 return isl_basic_map_domain(isl_basic_map_reverse(bmap));
6026 error:
6027 isl_basic_map_free(bmap);
6028 return NULL;
6031 __isl_give isl_basic_map *isl_basic_map_domain_map(
6032 __isl_take isl_basic_map *bmap)
6034 int i;
6035 isl_space *space;
6036 isl_basic_map *domain;
6037 isl_size nparam, n_in, n_out;
6039 nparam = isl_basic_map_dim(bmap, isl_dim_param);
6040 n_in = isl_basic_map_dim(bmap, isl_dim_in);
6041 n_out = isl_basic_map_dim(bmap, isl_dim_out);
6042 if (nparam < 0 || n_in < 0 || n_out < 0)
6043 return isl_basic_map_free(bmap);
6045 space = isl_basic_map_get_space(bmap);
6046 space = isl_space_from_range(isl_space_domain(space));
6047 domain = isl_basic_map_universe(space);
6049 bmap = isl_basic_map_from_domain(isl_basic_map_wrap(bmap));
6050 bmap = isl_basic_map_apply_range(bmap, domain);
6051 bmap = isl_basic_map_extend_constraints(bmap, n_in, 0);
6053 for (i = 0; i < n_in; ++i)
6054 bmap = isl_basic_map_equate(bmap, isl_dim_in, i,
6055 isl_dim_out, i);
6057 bmap = isl_basic_map_gauss(bmap, NULL);
6058 return isl_basic_map_finalize(bmap);
6061 __isl_give isl_basic_map *isl_basic_map_range_map(
6062 __isl_take isl_basic_map *bmap)
6064 int i;
6065 isl_space *space;
6066 isl_basic_map *range;
6067 isl_size nparam, n_in, n_out;
6069 nparam = isl_basic_map_dim(bmap, isl_dim_param);
6070 n_in = isl_basic_map_dim(bmap, isl_dim_in);
6071 n_out = isl_basic_map_dim(bmap, isl_dim_out);
6072 if (nparam < 0 || n_in < 0 || n_out < 0)
6073 return isl_basic_map_free(bmap);
6075 space = isl_basic_map_get_space(bmap);
6076 space = isl_space_from_range(isl_space_range(space));
6077 range = isl_basic_map_universe(space);
6079 bmap = isl_basic_map_from_domain(isl_basic_map_wrap(bmap));
6080 bmap = isl_basic_map_apply_range(bmap, range);
6081 bmap = isl_basic_map_extend_constraints(bmap, n_out, 0);
6083 for (i = 0; i < n_out; ++i)
6084 bmap = isl_basic_map_equate(bmap, isl_dim_in, n_in + i,
6085 isl_dim_out, i);
6087 bmap = isl_basic_map_gauss(bmap, NULL);
6088 return isl_basic_map_finalize(bmap);
6091 int isl_map_may_be_set(__isl_keep isl_map *map)
6093 if (!map)
6094 return -1;
6095 return isl_space_may_be_set(map->dim);
6098 /* Is this map actually a set?
6099 * Users should never call this function. Outside of isl,
6100 * the type should indicate whether something is a set or a map.
6102 isl_bool isl_map_is_set(__isl_keep isl_map *map)
6104 if (!map)
6105 return isl_bool_error;
6106 return isl_space_is_set(map->dim);
6109 __isl_give isl_set *isl_map_range(__isl_take isl_map *map)
6111 isl_space *space;
6112 isl_size n_in;
6114 n_in = isl_map_dim(map, isl_dim_in);
6115 if (n_in < 0)
6116 return set_from_map(isl_map_free(map));
6117 space = isl_space_range(isl_map_get_space(map));
6119 map = isl_map_project_out(map, isl_dim_in, 0, n_in);
6121 return set_from_map(isl_map_reset_space(map, space));
6124 /* Transform "map" by applying "fn_space" to its space and "fn_bmap"
6125 * to each of its basic maps.
6127 static __isl_give isl_map *isl_map_transform(__isl_take isl_map *map,
6128 __isl_give isl_space *(*fn_space)(__isl_take isl_space *space),
6129 __isl_give isl_basic_map *(*fn_bmap)(__isl_take isl_basic_map *bmap))
6131 int i;
6132 isl_space *space;
6134 map = isl_map_cow(map);
6135 if (!map)
6136 return NULL;
6138 for (i = 0; i < map->n; ++i) {
6139 map->p[i] = fn_bmap(map->p[i]);
6140 if (!map->p[i])
6141 return isl_map_free(map);
6143 map = isl_map_unmark_normalized(map);
6145 space = isl_map_take_space(map);
6146 space = fn_space(space);
6147 map = isl_map_restore_space(map, space);
6149 return map;
6152 __isl_give isl_map *isl_map_domain_map(__isl_take isl_map *map)
6154 return isl_map_transform(map, &isl_space_domain_map,
6155 &isl_basic_map_domain_map);
6158 __isl_give isl_map *isl_map_range_map(__isl_take isl_map *map)
6160 return isl_map_transform(map, &isl_space_range_map,
6161 &isl_basic_map_range_map);
6164 /* Given a wrapped map of the form A[B -> C],
6165 * return the map A[B -> C] -> B.
6167 __isl_give isl_map *isl_set_wrapped_domain_map(__isl_take isl_set *set)
6169 isl_id *id;
6170 isl_map *map;
6172 if (!set)
6173 return NULL;
6174 if (!isl_set_has_tuple_id(set))
6175 return isl_map_domain_map(isl_set_unwrap(set));
6177 id = isl_set_get_tuple_id(set);
6178 map = isl_map_domain_map(isl_set_unwrap(set));
6179 map = isl_map_set_tuple_id(map, isl_dim_in, id);
6181 return map;
6184 __isl_give isl_basic_map *isl_basic_map_from_domain(
6185 __isl_take isl_basic_set *bset)
6187 return isl_basic_map_reverse(isl_basic_map_from_range(bset));
6190 __isl_give isl_basic_map *isl_basic_map_from_range(
6191 __isl_take isl_basic_set *bset)
6193 isl_space *space;
6194 space = isl_basic_set_get_space(bset);
6195 space = isl_space_from_range(space);
6196 bset = isl_basic_set_reset_space(bset, space);
6197 return bset_to_bmap(bset);
6200 /* Create a relation with the given set as range.
6201 * The domain of the created relation is a zero-dimensional
6202 * flat anonymous space.
6204 __isl_give isl_map *isl_map_from_range(__isl_take isl_set *set)
6206 isl_space *space;
6207 space = isl_set_get_space(set);
6208 space = isl_space_from_range(space);
6209 set = isl_set_reset_space(set, space);
6210 return set_to_map(set);
6213 /* Create a relation with the given set as domain.
6214 * The range of the created relation is a zero-dimensional
6215 * flat anonymous space.
6217 __isl_give isl_map *isl_map_from_domain(__isl_take isl_set *set)
6219 return isl_map_reverse(isl_map_from_range(set));
6222 __isl_give isl_basic_map *isl_basic_map_from_domain_and_range(
6223 __isl_take isl_basic_set *domain, __isl_take isl_basic_set *range)
6225 return isl_basic_map_apply_range(isl_basic_map_reverse(domain), range);
6228 __isl_give isl_map *isl_map_from_domain_and_range(__isl_take isl_set *domain,
6229 __isl_take isl_set *range)
6231 return isl_map_apply_range(isl_map_reverse(domain), range);
6234 /* Return a newly allocated isl_map with given space and flags and
6235 * room for "n" basic maps.
6236 * Make sure that all cached information is cleared.
6238 __isl_give isl_map *isl_map_alloc_space(__isl_take isl_space *space, int n,
6239 unsigned flags)
6241 struct isl_map *map;
6243 if (!space)
6244 return NULL;
6245 if (n < 0)
6246 isl_die(space->ctx, isl_error_internal,
6247 "negative number of basic maps", goto error);
6248 map = isl_calloc(space->ctx, struct isl_map,
6249 sizeof(struct isl_map) +
6250 (n - 1) * sizeof(struct isl_basic_map *));
6251 if (!map)
6252 goto error;
6254 map->ctx = space->ctx;
6255 isl_ctx_ref(map->ctx);
6256 map->ref = 1;
6257 map->size = n;
6258 map->n = 0;
6259 map->dim = space;
6260 map->flags = flags;
6261 return map;
6262 error:
6263 isl_space_free(space);
6264 return NULL;
6267 __isl_give isl_basic_map *isl_basic_map_empty(__isl_take isl_space *space)
6269 struct isl_basic_map *bmap;
6270 bmap = isl_basic_map_alloc_space(space, 0, 1, 0);
6271 bmap = isl_basic_map_set_to_empty(bmap);
6272 return bmap;
6275 __isl_give isl_basic_set *isl_basic_set_empty(__isl_take isl_space *space)
6277 struct isl_basic_set *bset;
6278 bset = isl_basic_set_alloc_space(space, 0, 1, 0);
6279 bset = isl_basic_set_set_to_empty(bset);
6280 return bset;
6283 __isl_give isl_basic_map *isl_basic_map_universe(__isl_take isl_space *space)
6285 struct isl_basic_map *bmap;
6286 bmap = isl_basic_map_alloc_space(space, 0, 0, 0);
6287 bmap = isl_basic_map_finalize(bmap);
6288 return bmap;
6291 __isl_give isl_basic_set *isl_basic_set_universe(__isl_take isl_space *space)
6293 struct isl_basic_set *bset;
6294 bset = isl_basic_set_alloc_space(space, 0, 0, 0);
6295 bset = isl_basic_set_finalize(bset);
6296 return bset;
6299 __isl_give isl_basic_map *isl_basic_map_nat_universe(
6300 __isl_take isl_space *space)
6302 int i;
6303 isl_size total = isl_space_dim(space, isl_dim_all);
6304 isl_basic_map *bmap;
6306 if (total < 0)
6307 space = isl_space_free(space);
6308 bmap = isl_basic_map_alloc_space(space, 0, 0, total);
6309 for (i = 0; i < total; ++i) {
6310 int k = isl_basic_map_alloc_inequality(bmap);
6311 if (k < 0)
6312 goto error;
6313 isl_seq_clr(bmap->ineq[k], 1 + total);
6314 isl_int_set_si(bmap->ineq[k][1 + i], 1);
6316 return bmap;
6317 error:
6318 isl_basic_map_free(bmap);
6319 return NULL;
6322 __isl_give isl_basic_set *isl_basic_set_nat_universe(
6323 __isl_take isl_space *space)
6325 return isl_basic_map_nat_universe(space);
6328 __isl_give isl_map *isl_map_nat_universe(__isl_take isl_space *space)
6330 return isl_map_from_basic_map(isl_basic_map_nat_universe(space));
6333 __isl_give isl_set *isl_set_nat_universe(__isl_take isl_space *space)
6335 return isl_map_nat_universe(space);
6338 __isl_give isl_map *isl_map_empty(__isl_take isl_space *space)
6340 return isl_map_alloc_space(space, 0, ISL_MAP_DISJOINT);
6343 __isl_give isl_set *isl_set_empty(__isl_take isl_space *space)
6345 return isl_set_alloc_space(space, 0, ISL_MAP_DISJOINT);
6348 __isl_give isl_map *isl_map_universe(__isl_take isl_space *space)
6350 struct isl_map *map;
6351 if (!space)
6352 return NULL;
6353 map = isl_map_alloc_space(isl_space_copy(space), 1, ISL_MAP_DISJOINT);
6354 map = isl_map_add_basic_map(map, isl_basic_map_universe(space));
6355 return map;
6358 /* This function performs the same operation as isl_map_universe,
6359 * but is considered as a function on an isl_space when exported.
6361 __isl_give isl_map *isl_space_universe_map(__isl_take isl_space *space)
6363 return isl_map_universe(space);
6366 __isl_give isl_set *isl_set_universe(__isl_take isl_space *space)
6368 struct isl_set *set;
6369 if (!space)
6370 return NULL;
6371 set = isl_set_alloc_space(isl_space_copy(space), 1, ISL_MAP_DISJOINT);
6372 set = isl_set_add_basic_set(set, isl_basic_set_universe(space));
6373 return set;
6376 /* This function performs the same operation as isl_set_universe,
6377 * but is considered as a function on an isl_space when exported.
6379 __isl_give isl_set *isl_space_universe_set(__isl_take isl_space *space)
6381 return isl_set_universe(space);
6384 __isl_give isl_map *isl_map_dup(__isl_keep isl_map *map)
6386 int i;
6387 struct isl_map *dup;
6389 if (!map)
6390 return NULL;
6391 dup = isl_map_alloc_space(isl_space_copy(map->dim), map->n, map->flags);
6392 for (i = 0; i < map->n; ++i)
6393 dup = isl_map_add_basic_map(dup, isl_basic_map_copy(map->p[i]));
6394 return dup;
6397 __isl_give isl_map *isl_map_add_basic_map(__isl_take isl_map *map,
6398 __isl_take isl_basic_map *bmap)
6400 if (!bmap || !map)
6401 goto error;
6402 if (isl_basic_map_plain_is_empty(bmap)) {
6403 isl_basic_map_free(bmap);
6404 return map;
6406 if (isl_map_basic_map_check_equal_space(map, bmap) < 0)
6407 goto error;
6408 isl_assert(map->ctx, map->n < map->size, goto error);
6409 map->p[map->n] = bmap;
6410 map->n++;
6411 map = isl_map_unmark_normalized(map);
6412 return map;
6413 error:
6414 if (map)
6415 isl_map_free(map);
6416 if (bmap)
6417 isl_basic_map_free(bmap);
6418 return NULL;
6421 __isl_null isl_map *isl_map_free(__isl_take isl_map *map)
6423 int i;
6425 if (!map)
6426 return NULL;
6428 if (--map->ref > 0)
6429 return NULL;
6431 clear_caches(map);
6432 isl_ctx_deref(map->ctx);
6433 for (i = 0; i < map->n; ++i)
6434 isl_basic_map_free(map->p[i]);
6435 isl_space_free(map->dim);
6436 free(map);
6438 return NULL;
6441 static __isl_give isl_basic_map *isl_basic_map_fix_pos_si(
6442 __isl_take isl_basic_map *bmap, unsigned pos, int value)
6444 int j;
6445 isl_size total;
6447 total = isl_basic_map_dim(bmap, isl_dim_all);
6448 if (total < 0)
6449 return isl_basic_map_free(bmap);
6451 bmap = isl_basic_map_cow(bmap);
6452 bmap = isl_basic_map_extend_constraints(bmap, 1, 0);
6453 j = isl_basic_map_alloc_equality(bmap);
6454 if (j < 0)
6455 goto error;
6456 isl_seq_clr(bmap->eq[j] + 1, total);
6457 isl_int_set_si(bmap->eq[j][pos], -1);
6458 isl_int_set_si(bmap->eq[j][0], value);
6459 bmap = isl_basic_map_simplify(bmap);
6460 return isl_basic_map_finalize(bmap);
6461 error:
6462 isl_basic_map_free(bmap);
6463 return NULL;
6466 static __isl_give isl_basic_map *isl_basic_map_fix_pos(
6467 __isl_take isl_basic_map *bmap, unsigned pos, isl_int value)
6469 int j;
6470 isl_size total;
6472 total = isl_basic_map_dim(bmap, isl_dim_all);
6473 if (total < 0)
6474 return isl_basic_map_free(bmap);
6476 bmap = isl_basic_map_cow(bmap);
6477 bmap = isl_basic_map_extend_constraints(bmap, 1, 0);
6478 j = isl_basic_map_alloc_equality(bmap);
6479 if (j < 0)
6480 goto error;
6481 isl_seq_clr(bmap->eq[j] + 1, total);
6482 isl_int_set_si(bmap->eq[j][pos], -1);
6483 isl_int_set(bmap->eq[j][0], value);
6484 bmap = isl_basic_map_simplify(bmap);
6485 return isl_basic_map_finalize(bmap);
6486 error:
6487 isl_basic_map_free(bmap);
6488 return NULL;
6491 __isl_give isl_basic_map *isl_basic_map_fix_si(__isl_take isl_basic_map *bmap,
6492 enum isl_dim_type type, unsigned pos, int value)
6494 if (isl_basic_map_check_range(bmap, type, pos, 1) < 0)
6495 return isl_basic_map_free(bmap);
6496 return isl_basic_map_fix_pos_si(bmap,
6497 isl_basic_map_offset(bmap, type) + pos, value);
6500 __isl_give isl_basic_map *isl_basic_map_fix(__isl_take isl_basic_map *bmap,
6501 enum isl_dim_type type, unsigned pos, isl_int value)
6503 if (isl_basic_map_check_range(bmap, type, pos, 1) < 0)
6504 return isl_basic_map_free(bmap);
6505 return isl_basic_map_fix_pos(bmap,
6506 isl_basic_map_offset(bmap, type) + pos, value);
6509 /* Fix the value of the variable at position "pos" of type "type" of "bmap"
6510 * to be equal to "v".
6512 __isl_give isl_basic_map *isl_basic_map_fix_val(__isl_take isl_basic_map *bmap,
6513 enum isl_dim_type type, unsigned pos, __isl_take isl_val *v)
6515 if (!bmap || !v)
6516 goto error;
6517 if (!isl_val_is_int(v))
6518 isl_die(isl_basic_map_get_ctx(bmap), isl_error_invalid,
6519 "expecting integer value", goto error);
6520 if (isl_basic_map_check_range(bmap, type, pos, 1) < 0)
6521 goto error;
6522 pos += isl_basic_map_offset(bmap, type);
6523 bmap = isl_basic_map_fix_pos(bmap, pos, v->n);
6524 isl_val_free(v);
6525 return bmap;
6526 error:
6527 isl_basic_map_free(bmap);
6528 isl_val_free(v);
6529 return NULL;
6532 /* Fix the value of the variable at position "pos" of type "type" of "bset"
6533 * to be equal to "v".
6535 __isl_give isl_basic_set *isl_basic_set_fix_val(__isl_take isl_basic_set *bset,
6536 enum isl_dim_type type, unsigned pos, __isl_take isl_val *v)
6538 return isl_basic_map_fix_val(bset, type, pos, v);
6541 __isl_give isl_basic_set *isl_basic_set_fix_si(__isl_take isl_basic_set *bset,
6542 enum isl_dim_type type, unsigned pos, int value)
6544 return bset_from_bmap(isl_basic_map_fix_si(bset_to_bmap(bset),
6545 type, pos, value));
6548 __isl_give isl_basic_set *isl_basic_set_fix(__isl_take isl_basic_set *bset,
6549 enum isl_dim_type type, unsigned pos, isl_int value)
6551 return bset_from_bmap(isl_basic_map_fix(bset_to_bmap(bset),
6552 type, pos, value));
6555 /* Remove the basic map at position "i" from "map" if this basic map
6556 * is (obviously) empty.
6558 static __isl_give isl_map *remove_if_empty(__isl_take isl_map *map, int i)
6560 isl_bool empty;
6562 if (!map)
6563 return NULL;
6565 empty = isl_basic_map_plain_is_empty(map->p[i]);
6566 if (empty < 0)
6567 return isl_map_free(map);
6568 if (!empty)
6569 return map;
6571 isl_basic_map_free(map->p[i]);
6572 map->n--;
6573 if (i != map->n) {
6574 map->p[i] = map->p[map->n];
6575 map = isl_map_unmark_normalized(map);
6579 return map;
6582 /* Perform "fn" on each basic map of "map", where we may not be holding
6583 * the only reference to "map".
6584 * In particular, "fn" should be a semantics preserving operation
6585 * that we want to apply to all copies of "map". We therefore need
6586 * to be careful not to modify "map" in a way that breaks "map"
6587 * in case anything goes wrong.
6589 __isl_give isl_map *isl_map_inline_foreach_basic_map(__isl_take isl_map *map,
6590 __isl_give isl_basic_map *(*fn)(__isl_take isl_basic_map *bmap))
6592 struct isl_basic_map *bmap;
6593 int i;
6595 if (!map)
6596 return NULL;
6598 for (i = map->n - 1; i >= 0; --i) {
6599 bmap = isl_basic_map_copy(map->p[i]);
6600 bmap = fn(bmap);
6601 if (!bmap)
6602 goto error;
6603 isl_basic_map_free(map->p[i]);
6604 map->p[i] = bmap;
6605 map = remove_if_empty(map, i);
6606 if (!map)
6607 return NULL;
6610 return map;
6611 error:
6612 isl_map_free(map);
6613 return NULL;
6616 __isl_give isl_map *isl_map_fix_si(__isl_take isl_map *map,
6617 enum isl_dim_type type, unsigned pos, int value)
6619 int i;
6621 map = isl_map_cow(map);
6622 if (isl_map_check_range(map, type, pos, 1) < 0)
6623 return isl_map_free(map);
6624 for (i = map->n - 1; i >= 0; --i) {
6625 map->p[i] = isl_basic_map_fix_si(map->p[i], type, pos, value);
6626 map = remove_if_empty(map, i);
6627 if (!map)
6628 return NULL;
6630 map = isl_map_unmark_normalized(map);
6631 return map;
6634 __isl_give isl_set *isl_set_fix_si(__isl_take isl_set *set,
6635 enum isl_dim_type type, unsigned pos, int value)
6637 return set_from_map(isl_map_fix_si(set_to_map(set), type, pos, value));
6640 __isl_give isl_map *isl_map_fix(__isl_take isl_map *map,
6641 enum isl_dim_type type, unsigned pos, isl_int value)
6643 int i;
6645 map = isl_map_cow(map);
6646 if (isl_map_check_range(map, type, pos, 1) < 0)
6647 return isl_map_free(map);
6648 for (i = 0; i < map->n; ++i) {
6649 map->p[i] = isl_basic_map_fix(map->p[i], type, pos, value);
6650 if (!map->p[i])
6651 goto error;
6653 map = isl_map_unmark_normalized(map);
6654 return map;
6655 error:
6656 isl_map_free(map);
6657 return NULL;
6660 __isl_give isl_set *isl_set_fix(__isl_take isl_set *set,
6661 enum isl_dim_type type, unsigned pos, isl_int value)
6663 return set_from_map(isl_map_fix(set_to_map(set), type, pos, value));
6666 /* Fix the value of the variable at position "pos" of type "type" of "map"
6667 * to be equal to "v".
6669 __isl_give isl_map *isl_map_fix_val(__isl_take isl_map *map,
6670 enum isl_dim_type type, unsigned pos, __isl_take isl_val *v)
6672 int i;
6674 map = isl_map_cow(map);
6675 if (!map || !v)
6676 goto error;
6678 if (!isl_val_is_int(v))
6679 isl_die(isl_map_get_ctx(map), isl_error_invalid,
6680 "expecting integer value", goto error);
6681 if (isl_map_check_range(map, type, pos, 1) < 0)
6682 goto error;
6683 for (i = map->n - 1; i >= 0; --i) {
6684 map->p[i] = isl_basic_map_fix_val(map->p[i], type, pos,
6685 isl_val_copy(v));
6686 map = remove_if_empty(map, i);
6687 if (!map)
6688 goto error;
6690 map = isl_map_unmark_normalized(map);
6691 isl_val_free(v);
6692 return map;
6693 error:
6694 isl_map_free(map);
6695 isl_val_free(v);
6696 return NULL;
6699 /* Fix the value of the variable at position "pos" of type "type" of "set"
6700 * to be equal to "v".
6702 __isl_give isl_set *isl_set_fix_val(__isl_take isl_set *set,
6703 enum isl_dim_type type, unsigned pos, __isl_take isl_val *v)
6705 return isl_map_fix_val(set, type, pos, v);
6708 __isl_give isl_map *isl_map_fix_input_si(__isl_take isl_map *map,
6709 unsigned input, int value)
6711 return isl_map_fix_si(map, isl_dim_in, input, value);
6714 __isl_give isl_set *isl_set_fix_dim_si(__isl_take isl_set *set, unsigned dim,
6715 int value)
6717 return set_from_map(isl_map_fix_si(set_to_map(set),
6718 isl_dim_set, dim, value));
6721 static __isl_give isl_basic_map *basic_map_bound_si(
6722 __isl_take isl_basic_map *bmap,
6723 enum isl_dim_type type, unsigned pos, int value, int upper)
6725 int j;
6726 isl_size total;
6728 if (isl_basic_map_check_range(bmap, type, pos, 1) < 0)
6729 return isl_basic_map_free(bmap);
6730 total = isl_basic_map_dim(bmap, isl_dim_all);
6731 if (total < 0)
6732 return isl_basic_map_free(bmap);
6733 pos += isl_basic_map_offset(bmap, type);
6734 bmap = isl_basic_map_cow(bmap);
6735 bmap = isl_basic_map_extend_constraints(bmap, 0, 1);
6736 j = isl_basic_map_alloc_inequality(bmap);
6737 if (j < 0)
6738 goto error;
6739 isl_seq_clr(bmap->ineq[j], 1 + total);
6740 if (upper) {
6741 isl_int_set_si(bmap->ineq[j][pos], -1);
6742 isl_int_set_si(bmap->ineq[j][0], value);
6743 } else {
6744 isl_int_set_si(bmap->ineq[j][pos], 1);
6745 isl_int_set_si(bmap->ineq[j][0], -value);
6747 bmap = isl_basic_map_simplify(bmap);
6748 return isl_basic_map_finalize(bmap);
6749 error:
6750 isl_basic_map_free(bmap);
6751 return NULL;
6754 __isl_give isl_basic_map *isl_basic_map_lower_bound_si(
6755 __isl_take isl_basic_map *bmap,
6756 enum isl_dim_type type, unsigned pos, int value)
6758 return basic_map_bound_si(bmap, type, pos, value, 0);
6761 /* Constrain the values of the given dimension to be no greater than "value".
6763 __isl_give isl_basic_map *isl_basic_map_upper_bound_si(
6764 __isl_take isl_basic_map *bmap,
6765 enum isl_dim_type type, unsigned pos, int value)
6767 return basic_map_bound_si(bmap, type, pos, value, 1);
6770 static __isl_give isl_map *map_bound_si(__isl_take isl_map *map,
6771 enum isl_dim_type type, unsigned pos, int value, int upper)
6773 int i;
6775 map = isl_map_cow(map);
6776 if (isl_map_check_range(map, type, pos, 1) < 0)
6777 return isl_map_free(map);
6778 for (i = 0; i < map->n; ++i) {
6779 map->p[i] = basic_map_bound_si(map->p[i],
6780 type, pos, value, upper);
6781 if (!map->p[i])
6782 goto error;
6784 map = isl_map_unmark_normalized(map);
6785 return map;
6786 error:
6787 isl_map_free(map);
6788 return NULL;
6791 __isl_give isl_map *isl_map_lower_bound_si(__isl_take isl_map *map,
6792 enum isl_dim_type type, unsigned pos, int value)
6794 return map_bound_si(map, type, pos, value, 0);
6797 __isl_give isl_map *isl_map_upper_bound_si(__isl_take isl_map *map,
6798 enum isl_dim_type type, unsigned pos, int value)
6800 return map_bound_si(map, type, pos, value, 1);
6803 __isl_give isl_set *isl_set_lower_bound_si(__isl_take isl_set *set,
6804 enum isl_dim_type type, unsigned pos, int value)
6806 return set_from_map(isl_map_lower_bound_si(set_to_map(set),
6807 type, pos, value));
6810 __isl_give isl_set *isl_set_upper_bound_si(__isl_take isl_set *set,
6811 enum isl_dim_type type, unsigned pos, int value)
6813 return isl_map_upper_bound_si(set, type, pos, value);
6816 /* Bound the given variable of "bmap" from below (or above is "upper"
6817 * is set) to "value".
6819 static __isl_give isl_basic_map *basic_map_bound(
6820 __isl_take isl_basic_map *bmap,
6821 enum isl_dim_type type, unsigned pos, isl_int value, int upper)
6823 int j;
6824 isl_size total;
6826 if (isl_basic_map_check_range(bmap, type, pos, 1) < 0)
6827 return isl_basic_map_free(bmap);
6828 total = isl_basic_map_dim(bmap, isl_dim_all);
6829 if (total < 0)
6830 return isl_basic_map_free(bmap);
6831 pos += isl_basic_map_offset(bmap, type);
6832 bmap = isl_basic_map_cow(bmap);
6833 bmap = isl_basic_map_extend_constraints(bmap, 0, 1);
6834 j = isl_basic_map_alloc_inequality(bmap);
6835 if (j < 0)
6836 goto error;
6837 isl_seq_clr(bmap->ineq[j], 1 + total);
6838 if (upper) {
6839 isl_int_set_si(bmap->ineq[j][pos], -1);
6840 isl_int_set(bmap->ineq[j][0], value);
6841 } else {
6842 isl_int_set_si(bmap->ineq[j][pos], 1);
6843 isl_int_neg(bmap->ineq[j][0], value);
6845 bmap = isl_basic_map_simplify(bmap);
6846 return isl_basic_map_finalize(bmap);
6847 error:
6848 isl_basic_map_free(bmap);
6849 return NULL;
6852 /* Bound the given variable of "map" from below (or above is "upper"
6853 * is set) to "value".
6855 static __isl_give isl_map *map_bound(__isl_take isl_map *map,
6856 enum isl_dim_type type, unsigned pos, isl_int value, int upper)
6858 int i;
6860 map = isl_map_cow(map);
6861 if (isl_map_check_range(map, type, pos, 1) < 0)
6862 return isl_map_free(map);
6863 for (i = map->n - 1; i >= 0; --i) {
6864 map->p[i] = basic_map_bound(map->p[i], type, pos, value, upper);
6865 map = remove_if_empty(map, i);
6866 if (!map)
6867 return NULL;
6869 map = isl_map_unmark_normalized(map);
6870 return map;
6873 __isl_give isl_map *isl_map_lower_bound(__isl_take isl_map *map,
6874 enum isl_dim_type type, unsigned pos, isl_int value)
6876 return map_bound(map, type, pos, value, 0);
6879 __isl_give isl_map *isl_map_upper_bound(__isl_take isl_map *map,
6880 enum isl_dim_type type, unsigned pos, isl_int value)
6882 return map_bound(map, type, pos, value, 1);
6885 __isl_give isl_set *isl_set_lower_bound(__isl_take isl_set *set,
6886 enum isl_dim_type type, unsigned pos, isl_int value)
6888 return isl_map_lower_bound(set, type, pos, value);
6891 __isl_give isl_set *isl_set_upper_bound(__isl_take isl_set *set,
6892 enum isl_dim_type type, unsigned pos, isl_int value)
6894 return isl_map_upper_bound(set, type, pos, value);
6897 /* Force the values of the variable at position "pos" of type "type" of "map"
6898 * to be no smaller than "value".
6900 __isl_give isl_map *isl_map_lower_bound_val(__isl_take isl_map *map,
6901 enum isl_dim_type type, unsigned pos, __isl_take isl_val *value)
6903 if (!value)
6904 goto error;
6905 if (!isl_val_is_int(value))
6906 isl_die(isl_map_get_ctx(map), isl_error_invalid,
6907 "expecting integer value", goto error);
6908 map = isl_map_lower_bound(map, type, pos, value->n);
6909 isl_val_free(value);
6910 return map;
6911 error:
6912 isl_val_free(value);
6913 isl_map_free(map);
6914 return NULL;
6917 /* Force the values of the variable at position "pos" of type "type" of "set"
6918 * to be no smaller than "value".
6920 __isl_give isl_set *isl_set_lower_bound_val(__isl_take isl_set *set,
6921 enum isl_dim_type type, unsigned pos, __isl_take isl_val *value)
6923 isl_map *map;
6925 map = set_to_map(set);
6926 return set_from_map(isl_map_lower_bound_val(map, type, pos, value));
6929 /* Force the values of the variable at position "pos" of type "type" of "map"
6930 * to be no greater than "value".
6932 __isl_give isl_map *isl_map_upper_bound_val(__isl_take isl_map *map,
6933 enum isl_dim_type type, unsigned pos, __isl_take isl_val *value)
6935 if (!value)
6936 goto error;
6937 if (!isl_val_is_int(value))
6938 isl_die(isl_map_get_ctx(map), isl_error_invalid,
6939 "expecting integer value", goto error);
6940 map = isl_map_upper_bound(map, type, pos, value->n);
6941 isl_val_free(value);
6942 return map;
6943 error:
6944 isl_val_free(value);
6945 isl_map_free(map);
6946 return NULL;
6949 /* Force the values of the variable at position "pos" of type "type" of "set"
6950 * to be no greater than "value".
6952 __isl_give isl_set *isl_set_upper_bound_val(__isl_take isl_set *set,
6953 enum isl_dim_type type, unsigned pos, __isl_take isl_val *value)
6955 isl_map *map;
6957 map = set_to_map(set);
6958 return set_from_map(isl_map_upper_bound_val(map, type, pos, value));
6961 /* If "mv" has an explicit domain, then intersect the domain of "map"
6962 * with this explicit domain.
6964 * An isl_multi_val object never has an explicit domain,
6965 * so simply return "map".
6967 static __isl_give isl_map *isl_map_intersect_multi_val_explicit_domain(
6968 __isl_take isl_map *map, __isl_keep isl_multi_val *mv)
6970 return map;
6973 #undef BASE
6974 #define BASE val
6975 #include "isl_map_bound_templ.c"
6977 /* Apply "map_bound" to "set" with the corresponding value in "bound"
6978 * for each set dimension, by treating the set as a map.
6980 static __isl_give isl_set *set_bound_multi_val(__isl_take isl_set *set,
6981 __isl_take isl_multi_val *bound,
6982 __isl_give isl_map *map_bound(__isl_take isl_map *map,
6983 unsigned pos, __isl_take isl_val *value))
6985 isl_map *map;
6987 map = set_to_map(set);
6988 return set_from_map(map_bound_multi_val(map, bound, map_bound));
6991 #undef BASE
6992 #define BASE pw_aff
6993 #include "isl_map_bound_templ.c"
6995 /* Apply "map_bound" to "set" with the corresponding value in "bound"
6996 * for each set dimension, by converting the set and the bound
6997 * to objects living in a map space.
6999 static __isl_give isl_set *set_bound_multi_pw_aff(__isl_take isl_set *set,
7000 __isl_take isl_multi_pw_aff *bound,
7001 __isl_give isl_map *set_bound(__isl_take isl_map *map,
7002 unsigned pos, __isl_take TYPE *value))
7004 isl_map *map;
7006 map = isl_map_from_range(set);
7007 bound = isl_multi_pw_aff_from_range(bound);
7008 map = map_bound_multi_pw_aff(map, bound, set_bound);
7009 return isl_map_range(map);
7012 /* Wrapper around isl_map_lower_bound_val for use in map_bound_multi_val,
7013 * setting a bound on the given output dimension.
7015 static __isl_give isl_map *map_lower_bound_val(__isl_take isl_map *map,
7016 unsigned pos, __isl_take isl_val *v)
7018 return isl_map_lower_bound_val(map, isl_dim_out, pos, v);
7021 /* Force the values of the set dimensions of "set"
7022 * to be no smaller than the corresponding values in "lower".
7024 __isl_give isl_set *isl_set_lower_bound_multi_val(__isl_take isl_set *set,
7025 __isl_take isl_multi_val *lower)
7027 return set_bound_multi_val(set, lower, &map_lower_bound_val);
7030 /* Wrapper around isl_map_upper_bound_val for use in map_bound_multi_val,
7031 * setting a bound on the given output dimension.
7033 static __isl_give isl_map *map_upper_bound_val(__isl_take isl_map *map,
7034 unsigned pos, __isl_take isl_val *v)
7036 return isl_map_upper_bound_val(map, isl_dim_out, pos, v);
7039 /* Force the values of the set dimensions of "set"
7040 * to be no greater than the corresponding values in "upper".
7042 __isl_give isl_set *isl_set_upper_bound_multi_val(__isl_take isl_set *set,
7043 __isl_take isl_multi_val *upper)
7045 return set_bound_multi_val(set, upper, &map_upper_bound_val);
7048 /* Force the symbolic constant expression "bound"
7049 * to satisfy the relation "order" with respect to
7050 * the output variable at position "pos" of "map".
7052 * Create an affine expression representing the output variable
7053 * in terms of the range and
7054 * compare it using "order" to "bound" (defined on the domain).
7055 * The result is a relation between elements in domain and range that
7056 * can be intersected with "map".
7058 static __isl_give isl_map *map_bound_pw_aff(__isl_take isl_map *map,
7059 unsigned pos, __isl_take isl_pw_aff *bound,
7060 __isl_give isl_map *(*order)(__isl_take isl_pw_aff *pa1,
7061 __isl_take isl_pw_aff *pa2))
7063 isl_space *space;
7064 isl_local_space *ls;
7065 isl_pw_aff *var;
7067 space = isl_space_range(isl_map_get_space(map));
7068 ls = isl_local_space_from_space(space);
7069 var = isl_pw_aff_var_on_domain(ls, isl_dim_set, pos);
7070 map = isl_map_intersect(map, order(bound, var));
7071 return map;
7074 /* Force the values of the output variable at position "pos" of "map"
7075 * to be no smaller than the symbolic constant expression "lower".
7077 static __isl_give isl_map *map_lower_bound_pw_aff(__isl_take isl_map *map,
7078 unsigned pos, __isl_take isl_pw_aff *lower)
7080 return map_bound_pw_aff(map, pos, lower, &isl_pw_aff_le_map);
7083 /* Force the values of the output variable at position "pos" of "map"
7084 * to be no greater than the symbolic constant expression "upper".
7086 static __isl_give isl_map *map_upper_bound_pw_aff(__isl_take isl_map *map,
7087 unsigned pos, __isl_take isl_pw_aff *upper)
7089 return map_bound_pw_aff(map, pos, upper, &isl_pw_aff_ge_map);
7092 /* Force the values of the set dimensions of "set"
7093 * to be no smaller than the corresponding constant symbolic expressions
7094 * in "lower".
7096 __isl_give isl_set *isl_set_lower_bound_multi_pw_aff(__isl_take isl_set *set,
7097 __isl_take isl_multi_pw_aff *lower)
7099 return set_bound_multi_pw_aff(set, lower, &map_lower_bound_pw_aff);
7102 /* Force the values of the set dimensions of "set"
7103 * to be no greater than the corresponding constant symbolic expressions
7104 * in "upper".
7106 __isl_give isl_set *isl_set_upper_bound_multi_pw_aff(__isl_take isl_set *set,
7107 __isl_take isl_multi_pw_aff *upper)
7109 return set_bound_multi_pw_aff(set, upper, &map_upper_bound_pw_aff);
7112 /* Force the values of the output dimensions of "map"
7113 * to be no smaller than the corresponding constant symbolic expressions
7114 * in "lower".
7116 __isl_give isl_map *isl_map_lower_bound_multi_pw_aff(__isl_take isl_map *map,
7117 __isl_take isl_multi_pw_aff *lower)
7119 return map_bound_multi_pw_aff(map, lower, &map_lower_bound_pw_aff);
7122 /* Force the values of the output dimensions of "map"
7123 * to be no greater than the corresponding constant symbolic expressions
7124 * in "upper".
7126 __isl_give isl_map *isl_map_upper_bound_multi_pw_aff(__isl_take isl_map *map,
7127 __isl_take isl_multi_pw_aff *upper)
7129 return map_bound_multi_pw_aff(map, upper, &map_upper_bound_pw_aff);
7132 /* Bound the given variable of "bset" from below (or above is "upper"
7133 * is set) to "value".
7135 static __isl_give isl_basic_set *isl_basic_set_bound(
7136 __isl_take isl_basic_set *bset, enum isl_dim_type type, unsigned pos,
7137 isl_int value, int upper)
7139 return bset_from_bmap(basic_map_bound(bset_to_bmap(bset),
7140 type, pos, value, upper));
7143 /* Bound the given variable of "bset" from below (or above is "upper"
7144 * is set) to "value".
7146 static __isl_give isl_basic_set *isl_basic_set_bound_val(
7147 __isl_take isl_basic_set *bset, enum isl_dim_type type, unsigned pos,
7148 __isl_take isl_val *value, int upper)
7150 if (!value)
7151 goto error;
7152 if (!isl_val_is_int(value))
7153 isl_die(isl_basic_set_get_ctx(bset), isl_error_invalid,
7154 "expecting integer value", goto error);
7155 bset = isl_basic_set_bound(bset, type, pos, value->n, upper);
7156 isl_val_free(value);
7157 return bset;
7158 error:
7159 isl_val_free(value);
7160 isl_basic_set_free(bset);
7161 return NULL;
7164 /* Bound the given variable of "bset" from below to "value".
7166 __isl_give isl_basic_set *isl_basic_set_lower_bound_val(
7167 __isl_take isl_basic_set *bset, enum isl_dim_type type, unsigned pos,
7168 __isl_take isl_val *value)
7170 return isl_basic_set_bound_val(bset, type, pos, value, 0);
7173 /* Bound the given variable of "bset" from above to "value".
7175 __isl_give isl_basic_set *isl_basic_set_upper_bound_val(
7176 __isl_take isl_basic_set *bset, enum isl_dim_type type, unsigned pos,
7177 __isl_take isl_val *value)
7179 return isl_basic_set_bound_val(bset, type, pos, value, 1);
7182 __isl_give isl_map *isl_map_reverse(__isl_take isl_map *map)
7184 return isl_map_transform(map, &isl_space_reverse,
7185 &isl_basic_map_reverse);
7188 /* Given a map A -> (B -> C), return the corresponding map A -> (C -> B).
7190 __isl_give isl_map *isl_map_range_reverse(__isl_take isl_map *map)
7192 return isl_map_transform(map, &isl_space_range_reverse,
7193 &isl_basic_map_range_reverse);
7196 #undef TYPE
7197 #define TYPE isl_pw_multi_aff
7198 #undef SUFFIX
7199 #define SUFFIX _pw_multi_aff
7200 #undef EMPTY
7201 #define EMPTY isl_pw_multi_aff_empty
7202 #undef ADD
7203 #define ADD isl_pw_multi_aff_union_add
7204 #include "isl_map_lexopt_templ.c"
7206 /* Given a map "map", compute the lexicographically minimal
7207 * (or maximal) image element for each domain element in dom,
7208 * in the form of an isl_pw_multi_aff.
7209 * If "empty" is not NULL, then set *empty to those elements in dom that
7210 * do not have an image element.
7211 * If "flags" includes ISL_OPT_FULL, then "dom" is NULL and the optimum
7212 * should be computed over the domain of "map". "empty" is also NULL
7213 * in this case.
7215 * We first compute the lexicographically minimal or maximal element
7216 * in the first basic map. This results in a partial solution "res"
7217 * and a subset "todo" of dom that still need to be handled.
7218 * We then consider each of the remaining maps in "map" and successively
7219 * update both "res" and "todo".
7220 * If "empty" is NULL, then the todo sets are not needed and therefore
7221 * also not computed.
7223 static __isl_give isl_pw_multi_aff *isl_map_partial_lexopt_aligned_pw_multi_aff(
7224 __isl_take isl_map *map, __isl_take isl_set *dom,
7225 __isl_give isl_set **empty, unsigned flags)
7227 int i;
7228 int full;
7229 isl_pw_multi_aff *res;
7230 isl_set *todo;
7232 full = ISL_FL_ISSET(flags, ISL_OPT_FULL);
7233 if (!map || (!full && !dom))
7234 goto error;
7236 if (isl_map_plain_is_empty(map)) {
7237 if (empty)
7238 *empty = dom;
7239 else
7240 isl_set_free(dom);
7241 return isl_pw_multi_aff_from_map(map);
7244 res = basic_map_partial_lexopt_pw_multi_aff(
7245 isl_basic_map_copy(map->p[0]),
7246 isl_set_copy(dom), empty, flags);
7248 if (empty)
7249 todo = *empty;
7250 for (i = 1; i < map->n; ++i) {
7251 isl_pw_multi_aff *res_i;
7253 res_i = basic_map_partial_lexopt_pw_multi_aff(
7254 isl_basic_map_copy(map->p[i]),
7255 isl_set_copy(dom), empty, flags);
7257 if (ISL_FL_ISSET(flags, ISL_OPT_MAX))
7258 res = isl_pw_multi_aff_union_lexmax(res, res_i);
7259 else
7260 res = isl_pw_multi_aff_union_lexmin(res, res_i);
7262 if (empty)
7263 todo = isl_set_intersect(todo, *empty);
7266 isl_set_free(dom);
7267 isl_map_free(map);
7269 if (empty)
7270 *empty = todo;
7272 return res;
7273 error:
7274 if (empty)
7275 *empty = NULL;
7276 isl_set_free(dom);
7277 isl_map_free(map);
7278 return NULL;
7281 #undef TYPE
7282 #define TYPE isl_map
7283 #undef SUFFIX
7284 #define SUFFIX
7285 #undef EMPTY
7286 #define EMPTY isl_map_empty
7287 #undef ADD
7288 #define ADD isl_map_union_disjoint
7289 #include "isl_map_lexopt_templ.c"
7291 /* Given a map "map", compute the lexicographically minimal
7292 * (or maximal) image element for each domain element in "dom",
7293 * in the form of an isl_map.
7294 * If "empty" is not NULL, then set *empty to those elements in "dom" that
7295 * do not have an image element.
7296 * If "flags" includes ISL_OPT_FULL, then "dom" is NULL and the optimum
7297 * should be computed over the domain of "map". "empty" is also NULL
7298 * in this case.
7300 * If the input consists of more than one disjunct, then first
7301 * compute the desired result in the form of an isl_pw_multi_aff and
7302 * then convert that into an isl_map.
7304 * This function used to have an explicit implementation in terms
7305 * of isl_maps, but it would continually intersect the domains of
7306 * partial results with the complement of the domain of the next
7307 * partial solution, potentially leading to an explosion in the number
7308 * of disjuncts if there are several disjuncts in the input.
7309 * An even earlier implementation of this function would look for
7310 * better results in the domain of the partial result and for extra
7311 * results in the complement of this domain, which would lead to
7312 * even more splintering.
7314 static __isl_give isl_map *isl_map_partial_lexopt_aligned(
7315 __isl_take isl_map *map, __isl_take isl_set *dom,
7316 __isl_give isl_set **empty, unsigned flags)
7318 int full;
7319 struct isl_map *res;
7320 isl_pw_multi_aff *pma;
7322 full = ISL_FL_ISSET(flags, ISL_OPT_FULL);
7323 if (!map || (!full && !dom))
7324 goto error;
7326 if (isl_map_plain_is_empty(map)) {
7327 if (empty)
7328 *empty = dom;
7329 else
7330 isl_set_free(dom);
7331 return map;
7334 if (map->n == 1) {
7335 res = basic_map_partial_lexopt(isl_basic_map_copy(map->p[0]),
7336 dom, empty, flags);
7337 isl_map_free(map);
7338 return res;
7341 pma = isl_map_partial_lexopt_aligned_pw_multi_aff(map, dom, empty,
7342 flags);
7343 return isl_map_from_pw_multi_aff_internal(pma);
7344 error:
7345 if (empty)
7346 *empty = NULL;
7347 isl_set_free(dom);
7348 isl_map_free(map);
7349 return NULL;
7352 __isl_give isl_map *isl_map_partial_lexmax(
7353 __isl_take isl_map *map, __isl_take isl_set *dom,
7354 __isl_give isl_set **empty)
7356 return isl_map_partial_lexopt(map, dom, empty, ISL_OPT_MAX);
7359 __isl_give isl_map *isl_map_partial_lexmin(
7360 __isl_take isl_map *map, __isl_take isl_set *dom,
7361 __isl_give isl_set **empty)
7363 return isl_map_partial_lexopt(map, dom, empty, 0);
7366 __isl_give isl_set *isl_set_partial_lexmin(
7367 __isl_take isl_set *set, __isl_take isl_set *dom,
7368 __isl_give isl_set **empty)
7370 return set_from_map(isl_map_partial_lexmin(set_to_map(set),
7371 dom, empty));
7374 __isl_give isl_set *isl_set_partial_lexmax(
7375 __isl_take isl_set *set, __isl_take isl_set *dom,
7376 __isl_give isl_set **empty)
7378 return set_from_map(isl_map_partial_lexmax(set_to_map(set),
7379 dom, empty));
7382 /* Compute the lexicographic minimum (or maximum if "flags" includes
7383 * ISL_OPT_MAX) of "bset" over its parametric domain.
7385 __isl_give isl_set *isl_basic_set_lexopt(__isl_take isl_basic_set *bset,
7386 unsigned flags)
7388 return isl_basic_map_lexopt(bset, flags);
7391 __isl_give isl_map *isl_basic_map_lexmax(__isl_take isl_basic_map *bmap)
7393 return isl_basic_map_lexopt(bmap, ISL_OPT_MAX);
7396 __isl_give isl_set *isl_basic_set_lexmin(__isl_take isl_basic_set *bset)
7398 return set_from_map(isl_basic_map_lexmin(bset_to_bmap(bset)));
7401 __isl_give isl_set *isl_basic_set_lexmax(__isl_take isl_basic_set *bset)
7403 return set_from_map(isl_basic_map_lexmax(bset_to_bmap(bset)));
7406 /* Compute the lexicographic minimum of "bset" over its parametric domain
7407 * for the purpose of quantifier elimination.
7408 * That is, find an explicit representation for all the existentially
7409 * quantified variables in "bset" by computing their lexicographic
7410 * minimum.
7412 static __isl_give isl_set *isl_basic_set_lexmin_compute_divs(
7413 __isl_take isl_basic_set *bset)
7415 return isl_basic_set_lexopt(bset, ISL_OPT_QE);
7418 /* Given a basic map with one output dimension, compute the minimum or
7419 * maximum of that dimension as an isl_pw_aff.
7421 * Compute the optimum as a lexicographic optimum over the single
7422 * output dimension and extract the single isl_pw_aff from the result.
7424 static __isl_give isl_pw_aff *basic_map_dim_opt(__isl_keep isl_basic_map *bmap,
7425 int max)
7427 isl_pw_multi_aff *pma;
7428 isl_pw_aff *pwaff;
7430 bmap = isl_basic_map_copy(bmap);
7431 pma = isl_basic_map_lexopt_pw_multi_aff(bmap, max ? ISL_OPT_MAX : 0);
7432 pwaff = isl_pw_multi_aff_get_pw_aff(pma, 0);
7433 isl_pw_multi_aff_free(pma);
7435 return pwaff;
7438 /* Compute the minimum or maximum of the given output dimension
7439 * as a function of the parameters and the input dimensions,
7440 * but independently of the other output dimensions.
7442 * We first project out the other output dimension and then compute
7443 * the "lexicographic" maximum in each basic map, combining the results
7444 * using isl_pw_aff_union_max.
7446 static __isl_give isl_pw_aff *map_dim_opt(__isl_take isl_map *map, int pos,
7447 int max)
7449 int i;
7450 isl_pw_aff *pwaff;
7451 isl_size n_out;
7453 n_out = isl_map_dim(map, isl_dim_out);
7454 if (n_out < 0)
7455 map = isl_map_free(map);
7456 map = isl_map_project_out(map, isl_dim_out, pos + 1, n_out - (pos + 1));
7457 map = isl_map_project_out(map, isl_dim_out, 0, pos);
7458 if (!map)
7459 return NULL;
7461 if (map->n == 0) {
7462 isl_space *space = isl_map_get_space(map);
7463 isl_map_free(map);
7464 return isl_pw_aff_empty(space);
7467 pwaff = basic_map_dim_opt(map->p[0], max);
7468 for (i = 1; i < map->n; ++i) {
7469 isl_pw_aff *pwaff_i;
7471 pwaff_i = basic_map_dim_opt(map->p[i], max);
7472 pwaff = isl_pw_aff_union_opt(pwaff, pwaff_i, max);
7475 isl_map_free(map);
7477 return pwaff;
7480 /* Compute the minimum of the given output dimension as a function of the
7481 * parameters and input dimensions, but independently of
7482 * the other output dimensions.
7484 __isl_give isl_pw_aff *isl_map_dim_min(__isl_take isl_map *map, int pos)
7486 return map_dim_opt(map, pos, 0);
7489 /* Compute the maximum of the given output dimension as a function of the
7490 * parameters and input dimensions, but independently of
7491 * the other output dimensions.
7493 __isl_give isl_pw_aff *isl_map_dim_max(__isl_take isl_map *map, int pos)
7495 return map_dim_opt(map, pos, 1);
7498 /* Compute the minimum or maximum of the given set dimension
7499 * as a function of the parameters,
7500 * but independently of the other set dimensions.
7502 static __isl_give isl_pw_aff *set_dim_opt(__isl_take isl_set *set, int pos,
7503 int max)
7505 return map_dim_opt(set, pos, max);
7508 /* Compute the maximum of the given set dimension as a function of the
7509 * parameters, but independently of the other set dimensions.
7511 __isl_give isl_pw_aff *isl_set_dim_max(__isl_take isl_set *set, int pos)
7513 return set_dim_opt(set, pos, 1);
7516 /* Compute the minimum of the given set dimension as a function of the
7517 * parameters, but independently of the other set dimensions.
7519 __isl_give isl_pw_aff *isl_set_dim_min(__isl_take isl_set *set, int pos)
7521 return set_dim_opt(set, pos, 0);
7524 /* Apply a preimage specified by "mat" on the parameters of "bset".
7525 * bset is assumed to have only parameters and divs.
7527 static __isl_give isl_basic_set *basic_set_parameter_preimage(
7528 __isl_take isl_basic_set *bset, __isl_take isl_mat *mat)
7530 isl_size nparam;
7532 nparam = isl_basic_set_dim(bset, isl_dim_param);
7533 if (nparam < 0 || !mat)
7534 goto error;
7536 bset->dim = isl_space_cow(bset->dim);
7537 if (!bset->dim)
7538 goto error;
7540 isl_assert(bset->ctx, mat->n_row == 1 + nparam, goto error);
7542 bset->dim->nparam = 0;
7543 bset->dim->n_out = nparam;
7544 bset = isl_basic_set_preimage(bset, mat);
7545 if (bset) {
7546 bset->dim->nparam = bset->dim->n_out;
7547 bset->dim->n_out = 0;
7549 return bset;
7550 error:
7551 isl_mat_free(mat);
7552 isl_basic_set_free(bset);
7553 return NULL;
7556 /* Apply a preimage specified by "mat" on the parameters of "set".
7557 * set is assumed to have only parameters and divs.
7559 static __isl_give isl_set *set_parameter_preimage(__isl_take isl_set *set,
7560 __isl_take isl_mat *mat)
7562 isl_space *space;
7563 isl_size nparam;
7565 nparam = isl_set_dim(set, isl_dim_param);
7566 if (nparam < 0 || !mat)
7567 goto error;
7569 if (mat->n_row != 1 + nparam)
7570 isl_die(isl_set_get_ctx(set), isl_error_internal,
7571 "unexpected number of rows", goto error);
7573 space = isl_set_get_space(set);
7574 space = isl_space_move_dims(space, isl_dim_set, 0,
7575 isl_dim_param, 0, nparam);
7576 set = isl_set_reset_space(set, space);
7577 set = isl_set_preimage(set, mat);
7578 nparam = isl_set_dim(set, isl_dim_out);
7579 if (nparam < 0)
7580 set = isl_set_free(set);
7581 space = isl_set_get_space(set);
7582 space = isl_space_move_dims(space, isl_dim_param, 0,
7583 isl_dim_out, 0, nparam);
7584 set = isl_set_reset_space(set, space);
7585 return set;
7586 error:
7587 isl_mat_free(mat);
7588 isl_set_free(set);
7589 return NULL;
7592 /* Intersect the basic set "bset" with the affine space specified by the
7593 * equalities in "eq".
7595 static __isl_give isl_basic_set *basic_set_append_equalities(
7596 __isl_take isl_basic_set *bset, __isl_take isl_mat *eq)
7598 int i, k;
7599 unsigned len;
7601 if (!bset || !eq)
7602 goto error;
7604 bset = isl_basic_set_extend(bset, 0, eq->n_row, 0);
7605 if (!bset)
7606 goto error;
7608 len = isl_basic_set_offset(bset, isl_dim_div) + bset->extra;
7609 for (i = 0; i < eq->n_row; ++i) {
7610 k = isl_basic_set_alloc_equality(bset);
7611 if (k < 0)
7612 goto error;
7613 isl_seq_cpy(bset->eq[k], eq->row[i], eq->n_col);
7614 isl_seq_clr(bset->eq[k] + eq->n_col, len - eq->n_col);
7616 isl_mat_free(eq);
7618 bset = isl_basic_set_gauss(bset, NULL);
7619 bset = isl_basic_set_finalize(bset);
7621 return bset;
7622 error:
7623 isl_mat_free(eq);
7624 isl_basic_set_free(bset);
7625 return NULL;
7628 /* Intersect the set "set" with the affine space specified by the
7629 * equalities in "eq".
7631 static __isl_give isl_set *set_append_equalities(__isl_take isl_set *set,
7632 __isl_take isl_mat *eq)
7634 int i;
7636 if (!set || !eq)
7637 goto error;
7639 for (i = 0; i < set->n; ++i) {
7640 set->p[i] = basic_set_append_equalities(set->p[i],
7641 isl_mat_copy(eq));
7642 if (!set->p[i])
7643 goto error;
7645 isl_mat_free(eq);
7646 return set;
7647 error:
7648 isl_mat_free(eq);
7649 isl_set_free(set);
7650 return NULL;
7653 /* Given a basic set "bset" that only involves parameters and existentially
7654 * quantified variables, return the index of the first equality
7655 * that only involves parameters. If there is no such equality then
7656 * return bset->n_eq.
7658 * This function assumes that isl_basic_set_gauss has been called on "bset".
7660 static int first_parameter_equality(__isl_keep isl_basic_set *bset)
7662 int i, j;
7663 isl_size nparam, n_div;
7665 nparam = isl_basic_set_dim(bset, isl_dim_param);
7666 n_div = isl_basic_set_dim(bset, isl_dim_div);
7667 if (nparam < 0 || n_div < 0)
7668 return -1;
7670 for (i = 0, j = n_div - 1; i < bset->n_eq && j >= 0; --j) {
7671 if (!isl_int_is_zero(bset->eq[i][1 + nparam + j]))
7672 ++i;
7675 return i;
7678 /* Compute an explicit representation for the existentially quantified
7679 * variables in "bset" by computing the "minimal value" of the set
7680 * variables. Since there are no set variables, the computation of
7681 * the minimal value essentially computes an explicit representation
7682 * of the non-empty part(s) of "bset".
7684 * The input only involves parameters and existentially quantified variables.
7685 * All equalities among parameters have been removed.
7687 * Since the existentially quantified variables in the result are in general
7688 * going to be different from those in the input, we first replace
7689 * them by the minimal number of variables based on their equalities.
7690 * This should simplify the parametric integer programming.
7692 static __isl_give isl_set *base_compute_divs(__isl_take isl_basic_set *bset)
7694 isl_morph *morph1, *morph2;
7695 isl_set *set;
7696 isl_size n;
7698 if (!bset)
7699 return NULL;
7700 if (bset->n_eq == 0)
7701 return isl_basic_set_lexmin_compute_divs(bset);
7703 morph1 = isl_basic_set_parameter_compression(bset);
7704 bset = isl_morph_basic_set(isl_morph_copy(morph1), bset);
7705 bset = isl_basic_set_lift(bset);
7706 morph2 = isl_basic_set_variable_compression(bset, isl_dim_set);
7707 bset = isl_morph_basic_set(morph2, bset);
7708 n = isl_basic_set_dim(bset, isl_dim_set);
7709 if (n < 0)
7710 bset = isl_basic_set_free(bset);
7711 bset = isl_basic_set_project_out(bset, isl_dim_set, 0, n);
7713 set = isl_basic_set_lexmin_compute_divs(bset);
7715 set = isl_morph_set(isl_morph_inverse(morph1), set);
7717 return set;
7720 /* Project the given basic set onto its parameter domain, possibly introducing
7721 * new, explicit, existential variables in the constraints.
7722 * The input has parameters and (possibly implicit) existential variables.
7723 * The output has the same parameters, but only
7724 * explicit existentially quantified variables.
7726 * The actual projection is performed by pip, but pip doesn't seem
7727 * to like equalities very much, so we first remove the equalities
7728 * among the parameters by performing a variable compression on
7729 * the parameters. Afterward, an inverse transformation is performed
7730 * and the equalities among the parameters are inserted back in.
7732 * The variable compression on the parameters may uncover additional
7733 * equalities that were only implicit before. We therefore check
7734 * if there are any new parameter equalities in the result and
7735 * if so recurse. The removal of parameter equalities is required
7736 * for the parameter compression performed by base_compute_divs.
7738 static __isl_give isl_set *parameter_compute_divs(
7739 __isl_take isl_basic_set *bset)
7741 int i;
7742 struct isl_mat *eq;
7743 struct isl_mat *T, *T2;
7744 struct isl_set *set;
7745 isl_size nparam;
7747 bset = isl_basic_set_cow(bset);
7748 if (!bset)
7749 return NULL;
7751 if (bset->n_eq == 0)
7752 return base_compute_divs(bset);
7754 bset = isl_basic_set_gauss(bset, NULL);
7755 if (!bset)
7756 return NULL;
7757 if (isl_basic_set_plain_is_empty(bset))
7758 return isl_set_from_basic_set(bset);
7760 i = first_parameter_equality(bset);
7761 if (i == bset->n_eq)
7762 return base_compute_divs(bset);
7764 nparam = isl_basic_set_dim(bset, isl_dim_param);
7765 if (nparam < 0)
7766 return isl_set_from_basic_set(isl_basic_set_free(bset));
7767 eq = isl_mat_sub_alloc6(bset->ctx, bset->eq, i, bset->n_eq - i,
7768 0, 1 + nparam);
7769 eq = isl_mat_cow(eq);
7770 T = isl_mat_variable_compression(isl_mat_copy(eq), &T2);
7771 if (T && T->n_col == 0) {
7772 isl_mat_free(T);
7773 isl_mat_free(T2);
7774 isl_mat_free(eq);
7775 bset = isl_basic_set_set_to_empty(bset);
7776 return isl_set_from_basic_set(bset);
7778 bset = basic_set_parameter_preimage(bset, T);
7780 i = first_parameter_equality(bset);
7781 if (!bset)
7782 set = NULL;
7783 else if (i == bset->n_eq)
7784 set = base_compute_divs(bset);
7785 else
7786 set = parameter_compute_divs(bset);
7787 set = set_parameter_preimage(set, T2);
7788 set = set_append_equalities(set, eq);
7789 return set;
7792 /* Insert the divs from "ls" before those of "bmap".
7794 * The number of columns is not changed, which means that the last
7795 * dimensions of "bmap" are being reintepreted as the divs from "ls".
7796 * The caller is responsible for removing the same number of dimensions
7797 * from the space of "bmap".
7799 static __isl_give isl_basic_map *insert_divs_from_local_space(
7800 __isl_take isl_basic_map *bmap, __isl_keep isl_local_space *ls)
7802 int i;
7803 isl_size n_div;
7804 int old_n_div;
7806 n_div = isl_local_space_dim(ls, isl_dim_div);
7807 if (n_div < 0)
7808 return isl_basic_map_free(bmap);
7809 if (n_div == 0)
7810 return bmap;
7812 old_n_div = bmap->n_div;
7813 bmap = insert_div_rows(bmap, n_div);
7814 if (!bmap)
7815 return NULL;
7817 for (i = 0; i < n_div; ++i) {
7818 isl_seq_cpy(bmap->div[i], ls->div->row[i], ls->div->n_col);
7819 isl_seq_clr(bmap->div[i] + ls->div->n_col, old_n_div);
7822 return bmap;
7825 /* Replace the space of "bmap" by the space and divs of "ls".
7827 * If "ls" has any divs, then we simplify the result since we may
7828 * have discovered some additional equalities that could simplify
7829 * the div expressions.
7831 static __isl_give isl_basic_map *basic_replace_space_by_local_space(
7832 __isl_take isl_basic_map *bmap, __isl_take isl_local_space *ls)
7834 isl_size n_div;
7836 bmap = isl_basic_map_cow(bmap);
7837 n_div = isl_local_space_dim(ls, isl_dim_div);
7838 if (!bmap || n_div < 0)
7839 goto error;
7841 bmap = insert_divs_from_local_space(bmap, ls);
7842 if (!bmap)
7843 goto error;
7845 isl_space_free(bmap->dim);
7846 bmap->dim = isl_local_space_get_space(ls);
7847 if (!bmap->dim)
7848 goto error;
7850 isl_local_space_free(ls);
7851 if (n_div > 0)
7852 bmap = isl_basic_map_simplify(bmap);
7853 bmap = isl_basic_map_finalize(bmap);
7854 return bmap;
7855 error:
7856 isl_basic_map_free(bmap);
7857 isl_local_space_free(ls);
7858 return NULL;
7861 /* Replace the space of "map" by the space and divs of "ls".
7863 static __isl_give isl_map *replace_space_by_local_space(__isl_take isl_map *map,
7864 __isl_take isl_local_space *ls)
7866 int i;
7868 map = isl_map_cow(map);
7869 if (!map || !ls)
7870 goto error;
7872 for (i = 0; i < map->n; ++i) {
7873 map->p[i] = basic_replace_space_by_local_space(map->p[i],
7874 isl_local_space_copy(ls));
7875 if (!map->p[i])
7876 goto error;
7878 isl_space_free(isl_map_take_space(map));
7879 map = isl_map_restore_space(map, isl_local_space_get_space(ls));
7881 isl_local_space_free(ls);
7882 return map;
7883 error:
7884 isl_local_space_free(ls);
7885 isl_map_free(map);
7886 return NULL;
7889 /* Compute an explicit representation for the existentially
7890 * quantified variables for which do not know any explicit representation yet.
7892 * We first sort the existentially quantified variables so that the
7893 * existentially quantified variables for which we already have an explicit
7894 * representation are placed before those for which we do not.
7895 * The input dimensions, the output dimensions and the existentially
7896 * quantified variables for which we already have an explicit
7897 * representation are then turned into parameters.
7898 * compute_divs returns a map with the same parameters and
7899 * no input or output dimensions and the dimension specification
7900 * is reset to that of the input, including the existentially quantified
7901 * variables for which we already had an explicit representation.
7903 static __isl_give isl_map *compute_divs(__isl_take isl_basic_map *bmap)
7905 struct isl_basic_set *bset;
7906 struct isl_set *set;
7907 struct isl_map *map;
7908 isl_space *space;
7909 isl_local_space *ls;
7910 isl_size nparam;
7911 isl_size n_in;
7912 isl_size n_out;
7913 int n_known;
7914 int i;
7916 bmap = isl_basic_map_sort_divs(bmap);
7917 bmap = isl_basic_map_cow(bmap);
7918 if (!bmap)
7919 return NULL;
7921 n_known = isl_basic_map_first_unknown_div(bmap);
7922 nparam = isl_basic_map_dim(bmap, isl_dim_param);
7923 n_in = isl_basic_map_dim(bmap, isl_dim_in);
7924 n_out = isl_basic_map_dim(bmap, isl_dim_out);
7925 if (n_known < 0 || nparam < 0 || n_in < 0 || n_out < 0)
7926 return isl_map_from_basic_map(isl_basic_map_free(bmap));
7928 space = isl_space_set_alloc(bmap->ctx,
7929 nparam + n_in + n_out + n_known, 0);
7930 if (!space)
7931 goto error;
7933 ls = isl_basic_map_get_local_space(bmap);
7934 ls = isl_local_space_drop_dims(ls, isl_dim_div,
7935 n_known, bmap->n_div - n_known);
7936 if (n_known > 0) {
7937 for (i = n_known; i < bmap->n_div; ++i)
7938 swap_div(bmap, i - n_known, i);
7939 bmap->n_div -= n_known;
7940 bmap->extra -= n_known;
7942 bmap = isl_basic_map_reset_space(bmap, space);
7943 bset = bset_from_bmap(bmap);
7945 set = parameter_compute_divs(bset);
7946 map = set_to_map(set);
7947 map = replace_space_by_local_space(map, ls);
7949 return map;
7950 error:
7951 isl_basic_map_free(bmap);
7952 return NULL;
7955 /* Remove the explicit representation of local variable "div",
7956 * if there is any.
7958 __isl_give isl_basic_map *isl_basic_map_mark_div_unknown(
7959 __isl_take isl_basic_map *bmap, int div)
7961 isl_bool unknown;
7963 unknown = isl_basic_map_div_is_marked_unknown(bmap, div);
7964 if (unknown < 0)
7965 return isl_basic_map_free(bmap);
7966 if (unknown)
7967 return bmap;
7969 bmap = isl_basic_map_cow(bmap);
7970 if (!bmap)
7971 return NULL;
7972 isl_int_set_si(bmap->div[div][0], 0);
7973 return bmap;
7976 /* Is local variable "div" of "bmap" marked as not having an explicit
7977 * representation?
7978 * Note that even if "div" is not marked in this way and therefore
7979 * has an explicit representation, this representation may still
7980 * depend (indirectly) on other local variables that do not
7981 * have an explicit representation.
7983 isl_bool isl_basic_map_div_is_marked_unknown(__isl_keep isl_basic_map *bmap,
7984 int div)
7986 if (isl_basic_map_check_range(bmap, isl_dim_div, div, 1) < 0)
7987 return isl_bool_error;
7988 return isl_int_is_zero(bmap->div[div][0]);
7991 /* Return the position of the first local variable that does not
7992 * have an explicit representation.
7993 * Return the total number of local variables if they all have
7994 * an explicit representation.
7995 * Return -1 on error.
7997 int isl_basic_map_first_unknown_div(__isl_keep isl_basic_map *bmap)
7999 int i;
8001 if (!bmap)
8002 return -1;
8004 for (i = 0; i < bmap->n_div; ++i) {
8005 if (!isl_basic_map_div_is_known(bmap, i))
8006 return i;
8008 return bmap->n_div;
8011 /* Return the position of the first local variable that does not
8012 * have an explicit representation.
8013 * Return the total number of local variables if they all have
8014 * an explicit representation.
8015 * Return -1 on error.
8017 int isl_basic_set_first_unknown_div(__isl_keep isl_basic_set *bset)
8019 return isl_basic_map_first_unknown_div(bset);
8022 /* Does "bmap" have an explicit representation for all local variables?
8024 isl_bool isl_basic_map_divs_known(__isl_keep isl_basic_map *bmap)
8026 int first;
8027 isl_size n;
8029 n = isl_basic_map_dim(bmap, isl_dim_div);
8030 first = isl_basic_map_first_unknown_div(bmap);
8031 if (n < 0 || first < 0)
8032 return isl_bool_error;
8033 return first == n;
8036 /* Do all basic maps in "map" have an explicit representation
8037 * for all local variables?
8039 isl_bool isl_map_divs_known(__isl_keep isl_map *map)
8041 int i;
8043 if (!map)
8044 return isl_bool_error;
8046 for (i = 0; i < map->n; ++i) {
8047 int known = isl_basic_map_divs_known(map->p[i]);
8048 if (known <= 0)
8049 return known;
8052 return isl_bool_true;
8055 /* If bmap contains any unknown divs, then compute explicit
8056 * expressions for them. However, this computation may be
8057 * quite expensive, so first try to remove divs that aren't
8058 * strictly needed.
8060 __isl_give isl_map *isl_basic_map_compute_divs(__isl_take isl_basic_map *bmap)
8062 int known;
8063 struct isl_map *map;
8065 known = isl_basic_map_divs_known(bmap);
8066 if (known < 0)
8067 goto error;
8068 if (known)
8069 return isl_map_from_basic_map(bmap);
8071 bmap = isl_basic_map_drop_redundant_divs(bmap);
8073 known = isl_basic_map_divs_known(bmap);
8074 if (known < 0)
8075 goto error;
8076 if (known)
8077 return isl_map_from_basic_map(bmap);
8079 map = compute_divs(bmap);
8080 return map;
8081 error:
8082 isl_basic_map_free(bmap);
8083 return NULL;
8086 __isl_give isl_map *isl_map_compute_divs(__isl_take isl_map *map)
8088 int i;
8089 int known;
8090 struct isl_map *res;
8092 if (!map)
8093 return NULL;
8094 if (map->n == 0)
8095 return map;
8097 known = isl_map_divs_known(map);
8098 if (known < 0) {
8099 isl_map_free(map);
8100 return NULL;
8102 if (known)
8103 return map;
8105 res = isl_basic_map_compute_divs(isl_basic_map_copy(map->p[0]));
8106 for (i = 1 ; i < map->n; ++i) {
8107 struct isl_map *r2;
8108 r2 = isl_basic_map_compute_divs(isl_basic_map_copy(map->p[i]));
8109 if (ISL_F_ISSET(map, ISL_MAP_DISJOINT))
8110 res = isl_map_union_disjoint(res, r2);
8111 else
8112 res = isl_map_union(res, r2);
8114 isl_map_free(map);
8116 return res;
8119 __isl_give isl_set *isl_basic_set_compute_divs(__isl_take isl_basic_set *bset)
8121 return set_from_map(isl_basic_map_compute_divs(bset_to_bmap(bset)));
8124 __isl_give isl_set *isl_set_compute_divs(__isl_take isl_set *set)
8126 return set_from_map(isl_map_compute_divs(set_to_map(set)));
8129 __isl_give isl_set *isl_map_domain(__isl_take isl_map *map)
8131 isl_space *space;
8132 isl_size n_out;
8134 n_out = isl_map_dim(map, isl_dim_out);
8135 if (n_out < 0)
8136 return set_from_map(isl_map_free(map));
8137 space = isl_space_domain(isl_map_get_space(map));
8139 map = isl_map_project_out(map, isl_dim_out, 0, n_out);
8141 return set_from_map(isl_map_reset_space(map, space));
8144 /* Return the union of "map1" and "map2", where we assume for now that
8145 * "map1" and "map2" are disjoint. Note that the basic maps inside
8146 * "map1" or "map2" may not be disjoint from each other.
8147 * Also note that this function is also called from isl_map_union,
8148 * which takes care of handling the situation where "map1" and "map2"
8149 * may not be disjoint.
8151 * If one of the inputs is empty, we can simply return the other input.
8152 * Similarly, if one of the inputs is universal, then it is equal to the union.
8154 static __isl_give isl_map *map_union_disjoint(__isl_take isl_map *map1,
8155 __isl_take isl_map *map2)
8157 int i;
8158 unsigned flags = 0;
8159 struct isl_map *map = NULL;
8160 int is_universe;
8162 if (isl_map_check_equal_space(map1, map2) < 0)
8163 goto error;
8165 if (map1->n == 0) {
8166 isl_map_free(map1);
8167 return map2;
8169 if (map2->n == 0) {
8170 isl_map_free(map2);
8171 return map1;
8174 is_universe = isl_map_plain_is_universe(map1);
8175 if (is_universe < 0)
8176 goto error;
8177 if (is_universe) {
8178 isl_map_free(map2);
8179 return map1;
8182 is_universe = isl_map_plain_is_universe(map2);
8183 if (is_universe < 0)
8184 goto error;
8185 if (is_universe) {
8186 isl_map_free(map1);
8187 return map2;
8190 if (ISL_F_ISSET(map1, ISL_MAP_DISJOINT) &&
8191 ISL_F_ISSET(map2, ISL_MAP_DISJOINT))
8192 ISL_FL_SET(flags, ISL_MAP_DISJOINT);
8194 map = isl_map_alloc_space(isl_space_copy(map1->dim),
8195 map1->n + map2->n, flags);
8196 if (!map)
8197 goto error;
8198 for (i = 0; i < map1->n; ++i) {
8199 map = isl_map_add_basic_map(map,
8200 isl_basic_map_copy(map1->p[i]));
8201 if (!map)
8202 goto error;
8204 for (i = 0; i < map2->n; ++i) {
8205 map = isl_map_add_basic_map(map,
8206 isl_basic_map_copy(map2->p[i]));
8207 if (!map)
8208 goto error;
8210 isl_map_free(map1);
8211 isl_map_free(map2);
8212 return map;
8213 error:
8214 isl_map_free(map);
8215 isl_map_free(map1);
8216 isl_map_free(map2);
8217 return NULL;
8220 /* Return the union of "map1" and "map2", where "map1" and "map2" are
8221 * guaranteed to be disjoint by the caller.
8223 * Note that this functions is called from within isl_map_make_disjoint,
8224 * so we have to be careful not to touch the constraints of the inputs
8225 * in any way.
8227 __isl_give isl_map *isl_map_union_disjoint(__isl_take isl_map *map1,
8228 __isl_take isl_map *map2)
8230 isl_map_align_params_bin(&map1, &map2);
8231 return map_union_disjoint(map1, map2);
8234 /* Return the union of "map1" and "map2", where "map1" and "map2" may
8235 * not be disjoint.
8237 * We currently simply call map_union_disjoint, the internal operation
8238 * of which does not really depend on the inputs being disjoint.
8239 * If the result contains more than one basic map, then we clear
8240 * the disjoint flag since the result may contain basic maps from
8241 * both inputs and these are not guaranteed to be disjoint.
8243 * As a special case, if "map1" and "map2" are obviously equal,
8244 * then we simply return "map1".
8246 __isl_give isl_map *isl_map_union(__isl_take isl_map *map1,
8247 __isl_take isl_map *map2)
8249 int equal;
8251 if (isl_map_align_params_bin(&map1, &map2) < 0)
8252 goto error;
8254 equal = isl_map_plain_is_equal(map1, map2);
8255 if (equal < 0)
8256 goto error;
8257 if (equal) {
8258 isl_map_free(map2);
8259 return map1;
8262 map1 = map_union_disjoint(map1, map2);
8263 if (!map1)
8264 return NULL;
8265 if (map1->n > 1)
8266 ISL_F_CLR(map1, ISL_MAP_DISJOINT);
8267 return map1;
8268 error:
8269 isl_map_free(map1);
8270 isl_map_free(map2);
8271 return NULL;
8274 __isl_give isl_set *isl_set_union_disjoint(
8275 __isl_take isl_set *set1, __isl_take isl_set *set2)
8277 return set_from_map(isl_map_union_disjoint(set_to_map(set1),
8278 set_to_map(set2)));
8281 __isl_give isl_set *isl_set_union(__isl_take isl_set *set1,
8282 __isl_take isl_set *set2)
8284 return set_from_map(isl_map_union(set_to_map(set1), set_to_map(set2)));
8287 /* Apply "fn" to pairs of elements from "map" and "set" and collect
8288 * the results in a map living in "space".
8290 * "map" and "set" are assumed to be compatible and non-NULL.
8292 static __isl_give isl_map *map_intersect_set(__isl_take isl_map *map,
8293 __isl_take isl_space *space, __isl_take isl_set *set,
8294 __isl_give isl_basic_map *fn(__isl_take isl_basic_map *bmap,
8295 __isl_take isl_basic_set *bset))
8297 unsigned flags = 0;
8298 struct isl_map *result;
8299 int i, j;
8301 if (isl_set_plain_is_universe(set)) {
8302 isl_set_free(set);
8303 return isl_map_reset_equal_dim_space(map, space);
8306 if (ISL_F_ISSET(map, ISL_MAP_DISJOINT) &&
8307 ISL_F_ISSET(set, ISL_MAP_DISJOINT))
8308 ISL_FL_SET(flags, ISL_MAP_DISJOINT);
8310 result = isl_map_alloc_space(space, map->n * set->n, flags);
8311 for (i = 0; result && i < map->n; ++i)
8312 for (j = 0; j < set->n; ++j) {
8313 result = isl_map_add_basic_map(result,
8314 fn(isl_basic_map_copy(map->p[i]),
8315 isl_basic_set_copy(set->p[j])));
8316 if (!result)
8317 break;
8320 isl_map_free(map);
8321 isl_set_free(set);
8322 return result;
8325 __isl_give isl_map *isl_map_intersect_range(__isl_take isl_map *map,
8326 __isl_take isl_set *set)
8328 isl_bool ok;
8329 isl_space *space;
8331 isl_map_align_params_set(&map, &set);
8332 ok = isl_map_compatible_range(map, set);
8333 if (ok < 0)
8334 goto error;
8335 if (!ok)
8336 isl_die(set->ctx, isl_error_invalid,
8337 "incompatible spaces", goto error);
8339 space = isl_map_get_space(map);
8340 return map_intersect_set(map, space, set,
8341 &isl_basic_map_intersect_range);
8342 error:
8343 isl_map_free(map);
8344 isl_set_free(set);
8345 return NULL;
8348 /* Intersect the domain of "map" with "set".
8350 * If the domain dimensions of "map" do not have any identifiers,
8351 * then copy them over from "set".
8353 __isl_give isl_map *isl_map_intersect_domain(__isl_take isl_map *map,
8354 __isl_take isl_set *set)
8356 isl_bool ok;
8357 isl_space *space;
8359 isl_map_align_params_set(&map, &set);
8360 ok = isl_map_compatible_domain(map, set);
8361 if (ok < 0)
8362 goto error;
8363 if (!ok)
8364 isl_die(set->ctx, isl_error_invalid,
8365 "incompatible spaces", goto error);
8367 space = isl_map_get_space(map);
8368 space = isl_space_copy_ids_if_unset(space, isl_dim_in,
8369 isl_set_peek_space(set), isl_dim_set);
8370 return map_intersect_set(map, space, set,
8371 &isl_basic_map_intersect_domain);
8372 error:
8373 isl_map_free(map);
8374 isl_set_free(set);
8375 return NULL;
8378 #undef TYPE
8379 #define TYPE isl_map
8380 static
8381 #include "isl_copy_tuple_id_templ.c"
8383 /* Data structure that specifies how isl_map_intersect_factor
8384 * should operate.
8386 * "preserve_type" is the tuple where the factor differs from
8387 * the input map and of which the identifiers needs
8388 * to be preserved explicitly.
8389 * "other_factor" is used to extract the space of the other factor
8390 * from the space of the product ("map").
8391 * "product" is used to combine the given factor and a universe map
8392 * in the space returned by "other_factor" to produce a map
8393 * that lives in the same space as the input map.
8395 struct isl_intersect_factor_control {
8396 enum isl_dim_type preserve_type;
8397 __isl_give isl_space *(*other_factor)(__isl_take isl_space *space);
8398 __isl_give isl_map *(*product)(__isl_take isl_map *factor,
8399 __isl_take isl_map *other);
8402 /* Given a map "map" in some product space and a map "factor"
8403 * living in some factor space, return the intersection.
8405 * After aligning the parameters,
8406 * the map "factor" is first extended to a map living in the same space
8407 * as "map" and then a regular intersection is computed.
8409 * Note that the extension is computed as a product, which is anonymous
8410 * by default. If "map" has an identifier on the corresponding tuple,
8411 * then this identifier needs to be set on the product
8412 * before the intersection is computed.
8414 static __isl_give isl_map *isl_map_intersect_factor(
8415 __isl_take isl_map *map, __isl_take isl_map *factor,
8416 struct isl_intersect_factor_control *control)
8418 isl_bool equal;
8419 isl_space *space;
8420 isl_map *other, *product;
8422 equal = isl_map_has_equal_params(map, factor);
8423 if (equal < 0)
8424 goto error;
8425 if (!equal) {
8426 map = isl_map_align_params(map, isl_map_get_space(factor));
8427 factor = isl_map_align_params(factor, isl_map_get_space(map));
8430 space = isl_map_get_space(map);
8431 other = isl_map_universe(control->other_factor(space));
8432 product = control->product(factor, other);
8434 space = isl_map_peek_space(map);
8435 product = isl_map_copy_tuple_id(product, control->preserve_type,
8436 space, control->preserve_type);
8437 return map_intersect(map, product);
8438 error:
8439 isl_map_free(map);
8440 isl_map_free(factor);
8441 return NULL;
8444 /* Return the domain product of "map2" and "map1".
8446 static __isl_give isl_map *isl_map_reverse_domain_product(
8447 __isl_take isl_map *map1, __isl_take isl_map *map2)
8449 return isl_map_domain_product(map2, map1);
8452 /* Return the range product of "map2" and "map1".
8454 static __isl_give isl_map *isl_map_reverse_range_product(
8455 __isl_take isl_map *map1, __isl_take isl_map *map2)
8457 return isl_map_range_product(map2, map1);
8460 /* Given a map "map" in a space [A -> B] -> C and a map "factor"
8461 * in the space A -> C, return the intersection.
8463 __isl_give isl_map *isl_map_intersect_domain_factor_domain(
8464 __isl_take isl_map *map, __isl_take isl_map *factor)
8466 struct isl_intersect_factor_control control = {
8467 .preserve_type = isl_dim_in,
8468 .other_factor = isl_space_domain_factor_range,
8469 .product = isl_map_domain_product,
8472 return isl_map_intersect_factor(map, factor, &control);
8475 /* Given a map "map" in a space [A -> B] -> C and a map "factor"
8476 * in the space B -> C, return the intersection.
8478 __isl_give isl_map *isl_map_intersect_domain_factor_range(
8479 __isl_take isl_map *map, __isl_take isl_map *factor)
8481 struct isl_intersect_factor_control control = {
8482 .preserve_type = isl_dim_in,
8483 .other_factor = isl_space_domain_factor_domain,
8484 .product = isl_map_reverse_domain_product,
8487 return isl_map_intersect_factor(map, factor, &control);
8490 /* Given a map "map" in a space A -> [B -> C] and a map "factor"
8491 * in the space A -> B, return the intersection.
8493 __isl_give isl_map *isl_map_intersect_range_factor_domain(
8494 __isl_take isl_map *map, __isl_take isl_map *factor)
8496 struct isl_intersect_factor_control control = {
8497 .preserve_type = isl_dim_out,
8498 .other_factor = isl_space_range_factor_range,
8499 .product = isl_map_range_product,
8502 return isl_map_intersect_factor(map, factor, &control);
8505 /* Given a map "map" in a space A -> [B -> C] and a map "factor"
8506 * in the space A -> C, return the intersection.
8508 __isl_give isl_map *isl_map_intersect_range_factor_range(
8509 __isl_take isl_map *map, __isl_take isl_map *factor)
8511 struct isl_intersect_factor_control control = {
8512 .preserve_type = isl_dim_out,
8513 .other_factor = isl_space_range_factor_domain,
8514 .product = isl_map_reverse_range_product,
8517 return isl_map_intersect_factor(map, factor, &control);
8520 /* Given a set "set" in a space [A -> B] and a set "domain"
8521 * in the space A, return the intersection.
8523 * The set "domain" is first extended to a set living in the space
8524 * [A -> B] and then a regular intersection is computed.
8526 __isl_give isl_set *isl_set_intersect_factor_domain(__isl_take isl_set *set,
8527 __isl_take isl_set *domain)
8529 struct isl_intersect_factor_control control = {
8530 .preserve_type = isl_dim_set,
8531 .other_factor = isl_space_factor_range,
8532 .product = isl_map_range_product,
8535 return set_from_map(isl_map_intersect_factor(set_to_map(set),
8536 set_to_map(domain), &control));
8539 /* Given a set "set" in a space [A -> B] and a set "range"
8540 * in the space B, return the intersection.
8542 * The set "range" is first extended to a set living in the space
8543 * [A -> B] and then a regular intersection is computed.
8545 __isl_give isl_set *isl_set_intersect_factor_range(__isl_take isl_set *set,
8546 __isl_take isl_set *range)
8548 struct isl_intersect_factor_control control = {
8549 .preserve_type = isl_dim_set,
8550 .other_factor = isl_space_factor_domain,
8551 .product = isl_map_reverse_range_product,
8554 return set_from_map(isl_map_intersect_factor(set_to_map(set),
8555 set_to_map(range), &control));
8558 /* Given a map "map" in a space [A -> B] -> C and a set "domain"
8559 * in the space A, return the intersection.
8561 * The set "domain" is extended to a set living in the space [A -> B] and
8562 * the domain of "map" is intersected with this set.
8564 __isl_give isl_map *isl_map_intersect_domain_wrapped_domain(
8565 __isl_take isl_map *map, __isl_take isl_set *domain)
8567 isl_space *space;
8568 isl_set *factor;
8570 isl_map_align_params_set(&map, &domain);
8571 space = isl_map_get_space(map);
8572 space = isl_space_domain_wrapped_range(space);
8573 factor = isl_set_universe(space);
8574 domain = isl_set_product(domain, factor);
8575 return isl_map_intersect_domain(map, domain);
8578 /* Given a map "map" in a space A -> [B -> C] and a set "domain"
8579 * in the space B, return the intersection.
8581 * The set "domain" is extended to a set living in the space [B -> C] and
8582 * the range of "map" is intersected with this set.
8584 __isl_give isl_map *isl_map_intersect_range_wrapped_domain(
8585 __isl_take isl_map *map, __isl_take isl_set *domain)
8587 isl_space *space;
8588 isl_set *factor;
8590 isl_map_align_params_set(&map, &domain);
8591 space = isl_map_get_space(map);
8592 space = isl_space_range_wrapped_range(space);
8593 factor = isl_set_universe(space);
8594 domain = isl_set_product(domain, factor);
8595 return isl_map_intersect_range(map, domain);
8598 __isl_give isl_map *isl_map_apply_domain(__isl_take isl_map *map1,
8599 __isl_take isl_map *map2)
8601 if (isl_map_align_params_bin(&map1, &map2) < 0)
8602 goto error;
8603 map1 = isl_map_reverse(map1);
8604 map1 = isl_map_apply_range(map1, map2);
8605 return isl_map_reverse(map1);
8606 error:
8607 isl_map_free(map1);
8608 isl_map_free(map2);
8609 return NULL;
8612 __isl_give isl_map *isl_map_apply_range(__isl_take isl_map *map1,
8613 __isl_take isl_map *map2)
8615 isl_space *space;
8616 struct isl_map *result;
8617 int i, j;
8619 if (isl_map_align_params_bin(&map1, &map2) < 0)
8620 goto error;
8622 space = isl_space_join(isl_space_copy(map1->dim),
8623 isl_space_copy(map2->dim));
8625 result = isl_map_alloc_space(space, map1->n * map2->n, 0);
8626 if (!result)
8627 goto error;
8628 for (i = 0; i < map1->n; ++i)
8629 for (j = 0; j < map2->n; ++j) {
8630 result = isl_map_add_basic_map(result,
8631 isl_basic_map_apply_range(
8632 isl_basic_map_copy(map1->p[i]),
8633 isl_basic_map_copy(map2->p[j])));
8634 if (!result)
8635 goto error;
8637 isl_map_free(map1);
8638 isl_map_free(map2);
8639 if (result && result->n <= 1)
8640 ISL_F_SET(result, ISL_MAP_DISJOINT);
8641 return result;
8642 error:
8643 isl_map_free(map1);
8644 isl_map_free(map2);
8645 return NULL;
8648 /* Is "bmap" a transformation, i.e.,
8649 * does it relate elements from the same space.
8651 isl_bool isl_basic_map_is_transformation(__isl_keep isl_basic_map *bmap)
8653 isl_space *space;
8655 space = isl_basic_map_peek_space(bmap);
8656 return isl_space_tuple_is_equal(space, isl_dim_in, space, isl_dim_out);
8659 /* Check that "bmap" is a transformation, i.e.,
8660 * that it relates elements from the same space.
8662 static isl_stat isl_basic_map_check_transformation(
8663 __isl_keep isl_basic_map *bmap)
8665 isl_bool equal;
8667 equal = isl_basic_map_is_transformation(bmap);
8668 if (equal < 0)
8669 return isl_stat_error;
8670 if (!equal)
8671 isl_die(isl_basic_map_get_ctx(bmap), isl_error_invalid,
8672 "domain and range don't match", return isl_stat_error);
8673 return isl_stat_ok;
8677 * returns range - domain
8679 __isl_give isl_basic_set *isl_basic_map_deltas(__isl_take isl_basic_map *bmap)
8681 isl_space *target_space;
8682 struct isl_basic_set *bset;
8683 isl_size dim;
8684 isl_size nparam;
8685 isl_size total;
8686 int i;
8688 if (isl_basic_map_check_transformation(bmap) < 0)
8689 return isl_basic_map_free(bmap);
8690 dim = isl_basic_map_dim(bmap, isl_dim_in);
8691 nparam = isl_basic_map_dim(bmap, isl_dim_param);
8692 if (dim < 0 || nparam < 0)
8693 goto error;
8694 target_space = isl_space_domain(isl_basic_map_get_space(bmap));
8695 bmap = isl_basic_map_from_range(isl_basic_map_wrap(bmap));
8696 bmap = isl_basic_map_add_dims(bmap, isl_dim_in, dim);
8697 total = isl_basic_map_dim(bmap, isl_dim_all);
8698 if (total < 0)
8699 bmap = isl_basic_map_free(bmap);
8700 bmap = isl_basic_map_extend_constraints(bmap, dim, 0);
8701 for (i = 0; i < dim; ++i) {
8702 int j = isl_basic_map_alloc_equality(bmap);
8703 if (j < 0) {
8704 bmap = isl_basic_map_free(bmap);
8705 break;
8707 isl_seq_clr(bmap->eq[j], 1 + total);
8708 isl_int_set_si(bmap->eq[j][1+nparam+i], 1);
8709 isl_int_set_si(bmap->eq[j][1+nparam+dim+i], 1);
8710 isl_int_set_si(bmap->eq[j][1+nparam+2*dim+i], -1);
8712 bset = isl_basic_map_domain(bmap);
8713 bset = isl_basic_set_reset_space(bset, target_space);
8714 return bset;
8715 error:
8716 isl_basic_map_free(bmap);
8717 return NULL;
8720 /* Is the tuple of type "type1" of "map" the same as
8721 * the tuple of type "type2" of "space"?
8723 isl_bool isl_map_space_tuple_is_equal(__isl_keep isl_map *map,
8724 enum isl_dim_type type1, __isl_keep isl_space *space,
8725 enum isl_dim_type type2)
8727 isl_space *map_space;
8729 map_space = isl_map_peek_space(map);
8730 return isl_space_tuple_is_equal(map_space, type1, space, type2);
8733 /* Is the tuple of type "type1" of "map1" the same as
8734 * the tuple of type "type2" of "map2"?
8736 isl_bool isl_map_tuple_is_equal(__isl_keep isl_map *map1,
8737 enum isl_dim_type type1, __isl_keep isl_map *map2,
8738 enum isl_dim_type type2)
8740 isl_space *space1, *space2;
8742 space1 = isl_map_peek_space(map1);
8743 space2 = isl_map_peek_space(map2);
8744 return isl_space_tuple_is_equal(space1, type1, space2, type2);
8747 /* Is the space of "obj" equal to "space", ignoring parameters?
8749 isl_bool isl_map_has_space_tuples(__isl_keep isl_map *map,
8750 __isl_keep isl_space *space)
8752 isl_space *map_space;
8754 map_space = isl_map_peek_space(map);
8755 return isl_space_has_equal_tuples(map_space, space);
8758 /* Check that "map" is a transformation, i.e.,
8759 * that it relates elements from the same space.
8761 isl_stat isl_map_check_transformation(__isl_keep isl_map *map)
8763 isl_bool equal;
8765 equal = isl_map_tuple_is_equal(map, isl_dim_in, map, isl_dim_out);
8766 if (equal < 0)
8767 return isl_stat_error;
8768 if (!equal)
8769 isl_die(isl_map_get_ctx(map), isl_error_invalid,
8770 "domain and range don't match", return isl_stat_error);
8771 return isl_stat_ok;
8775 * returns range - domain
8777 __isl_give isl_set *isl_map_deltas(__isl_take isl_map *map)
8779 int i;
8780 isl_space *space;
8781 struct isl_set *result;
8783 if (isl_map_check_transformation(map) < 0)
8784 goto error;
8785 space = isl_map_get_space(map);
8786 space = isl_space_domain(space);
8787 result = isl_set_alloc_space(space, map->n, 0);
8788 if (!result)
8789 goto error;
8790 for (i = 0; i < map->n; ++i)
8791 result = isl_set_add_basic_set(result,
8792 isl_basic_map_deltas(isl_basic_map_copy(map->p[i])));
8793 isl_map_free(map);
8794 return result;
8795 error:
8796 isl_map_free(map);
8797 return NULL;
8801 * returns [domain -> range] -> range - domain
8803 __isl_give isl_basic_map *isl_basic_map_deltas_map(
8804 __isl_take isl_basic_map *bmap)
8806 int i, k;
8807 isl_space *space;
8808 isl_basic_map *domain;
8809 isl_size nparam, n;
8810 isl_size total;
8812 if (isl_basic_map_check_transformation(bmap) < 0)
8813 return isl_basic_map_free(bmap);
8815 nparam = isl_basic_map_dim(bmap, isl_dim_param);
8816 n = isl_basic_map_dim(bmap, isl_dim_in);
8817 if (nparam < 0 || n < 0)
8818 return isl_basic_map_free(bmap);
8820 space = isl_basic_map_get_space(bmap);
8821 space = isl_space_from_range(isl_space_domain(space));
8822 domain = isl_basic_map_universe(space);
8824 bmap = isl_basic_map_from_domain(isl_basic_map_wrap(bmap));
8825 bmap = isl_basic_map_apply_range(bmap, domain);
8826 bmap = isl_basic_map_extend_constraints(bmap, n, 0);
8828 total = isl_basic_map_dim(bmap, isl_dim_all);
8829 if (total < 0)
8830 return isl_basic_map_free(bmap);
8832 for (i = 0; i < n; ++i) {
8833 k = isl_basic_map_alloc_equality(bmap);
8834 if (k < 0)
8835 goto error;
8836 isl_seq_clr(bmap->eq[k], 1 + total);
8837 isl_int_set_si(bmap->eq[k][1 + nparam + i], 1);
8838 isl_int_set_si(bmap->eq[k][1 + nparam + n + i], -1);
8839 isl_int_set_si(bmap->eq[k][1 + nparam + n + n + i], 1);
8842 bmap = isl_basic_map_gauss(bmap, NULL);
8843 return isl_basic_map_finalize(bmap);
8844 error:
8845 isl_basic_map_free(bmap);
8846 return NULL;
8850 * returns [domain -> range] -> range - domain
8852 __isl_give isl_map *isl_map_deltas_map(__isl_take isl_map *map)
8854 if (isl_map_check_transformation(map) < 0)
8855 return isl_map_free(map);
8857 return isl_map_transform(map, &isl_space_range_map,
8858 &isl_basic_map_deltas_map);
8861 /* Return pairs of elements { x -> y } such that y - x is in "deltas".
8863 __isl_give isl_map *isl_set_translation(__isl_take isl_set *deltas)
8865 isl_space *space;
8866 isl_map *map;
8868 space = isl_space_map_from_set(isl_set_get_space(deltas));
8869 map = isl_map_deltas_map(isl_map_universe(space));
8870 map = isl_map_intersect_range(map, deltas);
8872 return isl_set_unwrap(isl_map_domain(map));
8875 __isl_give isl_basic_map *isl_basic_map_identity(__isl_take isl_space *space)
8877 isl_size n_in, n_out;
8879 n_in = isl_space_dim(space, isl_dim_in);
8880 n_out = isl_space_dim(space, isl_dim_out);
8881 if (n_in < 0 || n_out < 0)
8882 goto error;
8883 if (n_in != n_out)
8884 isl_die(space->ctx, isl_error_invalid,
8885 "number of input and output dimensions needs to be "
8886 "the same", goto error);
8887 return isl_basic_map_equal(space, n_in);
8888 error:
8889 isl_space_free(space);
8890 return NULL;
8893 __isl_give isl_map *isl_map_identity(__isl_take isl_space *space)
8895 return isl_map_from_basic_map(isl_basic_map_identity(space));
8898 __isl_give isl_map *isl_set_identity(__isl_take isl_set *set)
8900 isl_space *space = isl_set_get_space(set);
8901 isl_map *id;
8902 id = isl_map_identity(isl_space_map_from_set(space));
8903 return isl_map_intersect_range(id, set);
8906 /* Construct a basic set with all set dimensions having only non-negative
8907 * values.
8909 __isl_give isl_basic_set *isl_basic_set_positive_orthant(
8910 __isl_take isl_space *space)
8912 int i;
8913 isl_size nparam;
8914 isl_size dim;
8915 isl_size total;
8916 struct isl_basic_set *bset;
8918 nparam = isl_space_dim(space, isl_dim_param);
8919 dim = isl_space_dim(space, isl_dim_set);
8920 total = isl_space_dim(space, isl_dim_all);
8921 if (nparam < 0 || dim < 0 || total < 0)
8922 space = isl_space_free(space);
8923 bset = isl_basic_set_alloc_space(space, 0, 0, dim);
8924 if (!bset)
8925 return NULL;
8926 for (i = 0; i < dim; ++i) {
8927 int k = isl_basic_set_alloc_inequality(bset);
8928 if (k < 0)
8929 goto error;
8930 isl_seq_clr(bset->ineq[k], 1 + total);
8931 isl_int_set_si(bset->ineq[k][1 + nparam + i], 1);
8933 return bset;
8934 error:
8935 isl_basic_set_free(bset);
8936 return NULL;
8939 /* Construct the half-space x_pos >= 0.
8941 static __isl_give isl_basic_set *nonneg_halfspace(__isl_take isl_space *space,
8942 int pos)
8944 int k;
8945 isl_size total;
8946 isl_basic_set *nonneg;
8948 total = isl_space_dim(space, isl_dim_all);
8949 if (total < 0)
8950 space = isl_space_free(space);
8951 nonneg = isl_basic_set_alloc_space(space, 0, 0, 1);
8952 k = isl_basic_set_alloc_inequality(nonneg);
8953 if (k < 0)
8954 goto error;
8955 isl_seq_clr(nonneg->ineq[k], 1 + total);
8956 isl_int_set_si(nonneg->ineq[k][pos], 1);
8958 return isl_basic_set_finalize(nonneg);
8959 error:
8960 isl_basic_set_free(nonneg);
8961 return NULL;
8964 /* Construct the half-space x_pos <= -1.
8966 static __isl_give isl_basic_set *neg_halfspace(__isl_take isl_space *space,
8967 int pos)
8969 int k;
8970 isl_size total;
8971 isl_basic_set *neg;
8973 total = isl_space_dim(space, isl_dim_all);
8974 if (total < 0)
8975 space = isl_space_free(space);
8976 neg = isl_basic_set_alloc_space(space, 0, 0, 1);
8977 k = isl_basic_set_alloc_inequality(neg);
8978 if (k < 0)
8979 goto error;
8980 isl_seq_clr(neg->ineq[k], 1 + total);
8981 isl_int_set_si(neg->ineq[k][0], -1);
8982 isl_int_set_si(neg->ineq[k][pos], -1);
8984 return isl_basic_set_finalize(neg);
8985 error:
8986 isl_basic_set_free(neg);
8987 return NULL;
8990 __isl_give isl_set *isl_set_split_dims(__isl_take isl_set *set,
8991 enum isl_dim_type type, unsigned first, unsigned n)
8993 int i;
8994 unsigned offset;
8995 isl_basic_set *nonneg;
8996 isl_basic_set *neg;
8998 if (n == 0)
8999 return set;
9001 if (isl_set_check_range(set, type, first, n) < 0)
9002 return isl_set_free(set);
9004 offset = pos(set->dim, type);
9005 for (i = 0; i < n; ++i) {
9006 nonneg = nonneg_halfspace(isl_set_get_space(set),
9007 offset + first + i);
9008 neg = neg_halfspace(isl_set_get_space(set), offset + first + i);
9010 set = isl_set_intersect(set, isl_basic_set_union(nonneg, neg));
9013 return set;
9016 static isl_stat foreach_orthant(__isl_take isl_set *set, int *signs, int first,
9017 int len,
9018 isl_stat (*fn)(__isl_take isl_set *orthant, int *signs, void *user),
9019 void *user)
9021 isl_set *half;
9023 if (!set)
9024 return isl_stat_error;
9025 if (isl_set_plain_is_empty(set)) {
9026 isl_set_free(set);
9027 return isl_stat_ok;
9029 if (first == len)
9030 return fn(set, signs, user);
9032 signs[first] = 1;
9033 half = isl_set_from_basic_set(nonneg_halfspace(isl_set_get_space(set),
9034 1 + first));
9035 half = isl_set_intersect(half, isl_set_copy(set));
9036 if (foreach_orthant(half, signs, first + 1, len, fn, user) < 0)
9037 goto error;
9039 signs[first] = -1;
9040 half = isl_set_from_basic_set(neg_halfspace(isl_set_get_space(set),
9041 1 + first));
9042 half = isl_set_intersect(half, set);
9043 return foreach_orthant(half, signs, first + 1, len, fn, user);
9044 error:
9045 isl_set_free(set);
9046 return isl_stat_error;
9049 /* Call "fn" on the intersections of "set" with each of the orthants
9050 * (except for obviously empty intersections). The orthant is identified
9051 * by the signs array, with each entry having value 1 or -1 according
9052 * to the sign of the corresponding variable.
9054 isl_stat isl_set_foreach_orthant(__isl_keep isl_set *set,
9055 isl_stat (*fn)(__isl_take isl_set *orthant, int *signs, void *user),
9056 void *user)
9058 isl_size nparam;
9059 isl_size nvar;
9060 int *signs;
9061 isl_stat r;
9063 if (!set)
9064 return isl_stat_error;
9065 if (isl_set_plain_is_empty(set))
9066 return isl_stat_ok;
9068 nparam = isl_set_dim(set, isl_dim_param);
9069 nvar = isl_set_dim(set, isl_dim_set);
9070 if (nparam < 0 || nvar < 0)
9071 return isl_stat_error;
9073 signs = isl_alloc_array(set->ctx, int, nparam + nvar);
9075 r = foreach_orthant(isl_set_copy(set), signs, 0, nparam + nvar,
9076 fn, user);
9078 free(signs);
9080 return r;
9083 isl_bool isl_set_is_equal(__isl_keep isl_set *set1, __isl_keep isl_set *set2)
9085 return isl_map_is_equal(set_to_map(set1), set_to_map(set2));
9088 isl_bool isl_basic_map_is_subset(__isl_keep isl_basic_map *bmap1,
9089 __isl_keep isl_basic_map *bmap2)
9091 isl_bool is_subset;
9092 struct isl_map *map1;
9093 struct isl_map *map2;
9095 if (!bmap1 || !bmap2)
9096 return isl_bool_error;
9098 map1 = isl_map_from_basic_map(isl_basic_map_copy(bmap1));
9099 map2 = isl_map_from_basic_map(isl_basic_map_copy(bmap2));
9101 is_subset = isl_map_is_subset(map1, map2);
9103 isl_map_free(map1);
9104 isl_map_free(map2);
9106 return is_subset;
9109 isl_bool isl_basic_set_is_subset(__isl_keep isl_basic_set *bset1,
9110 __isl_keep isl_basic_set *bset2)
9112 return isl_basic_map_is_subset(bset1, bset2);
9115 isl_bool isl_basic_map_is_equal(__isl_keep isl_basic_map *bmap1,
9116 __isl_keep isl_basic_map *bmap2)
9118 isl_bool is_subset;
9120 if (!bmap1 || !bmap2)
9121 return isl_bool_error;
9122 is_subset = isl_basic_map_is_subset(bmap1, bmap2);
9123 if (is_subset != isl_bool_true)
9124 return is_subset;
9125 is_subset = isl_basic_map_is_subset(bmap2, bmap1);
9126 return is_subset;
9129 isl_bool isl_basic_set_is_equal(__isl_keep isl_basic_set *bset1,
9130 __isl_keep isl_basic_set *bset2)
9132 return isl_basic_map_is_equal(
9133 bset_to_bmap(bset1), bset_to_bmap(bset2));
9136 isl_bool isl_map_is_empty(__isl_keep isl_map *map)
9138 int i;
9139 int is_empty;
9141 if (!map)
9142 return isl_bool_error;
9143 for (i = 0; i < map->n; ++i) {
9144 is_empty = isl_basic_map_is_empty(map->p[i]);
9145 if (is_empty < 0)
9146 return isl_bool_error;
9147 if (!is_empty)
9148 return isl_bool_false;
9150 return isl_bool_true;
9153 isl_bool isl_map_plain_is_empty(__isl_keep isl_map *map)
9155 return map ? map->n == 0 : isl_bool_error;
9158 isl_bool isl_set_plain_is_empty(__isl_keep isl_set *set)
9160 return set ? set->n == 0 : isl_bool_error;
9163 isl_bool isl_set_is_empty(__isl_keep isl_set *set)
9165 return isl_map_is_empty(set_to_map(set));
9168 #undef TYPE
9169 #define TYPE isl_basic_map
9171 static
9172 #include "isl_type_has_equal_space_bin_templ.c"
9173 #include "isl_type_check_equal_space_templ.c"
9175 /* Check that "bset1" and "bset2" live in the same space,
9176 * reporting an error if they do not.
9178 isl_stat isl_basic_set_check_equal_space(__isl_keep isl_basic_set *bset1,
9179 __isl_keep isl_basic_set *bset2)
9181 return isl_basic_map_check_equal_space(bset_to_bmap(bset1),
9182 bset_to_bmap(bset1));
9185 #undef TYPE
9186 #define TYPE isl_map
9188 #include "isl_type_has_equal_space_bin_templ.c"
9189 #include "isl_type_check_equal_space_templ.c"
9190 #include "isl_type_has_space_templ.c"
9192 isl_bool isl_set_has_equal_space(__isl_keep isl_set *set1,
9193 __isl_keep isl_set *set2)
9195 return isl_map_has_equal_space(set_to_map(set1), set_to_map(set2));
9198 #undef TYPE1
9199 #define TYPE1 isl_map
9200 #undef TYPE2
9201 #define TYPE2 isl_basic_map
9202 #undef TYPE_PAIR
9203 #define TYPE_PAIR isl_map_basic_map
9205 static
9206 #include "isl_type_has_equal_space_templ.c"
9207 #include "isl_type_check_equal_space_templ.c"
9209 /* Check that "set" and "bset" live in the same space,
9210 * reporting an error if they do not.
9212 isl_stat isl_set_basic_set_check_equal_space(__isl_keep isl_set *set,
9213 __isl_keep isl_basic_set *bset)
9215 return isl_map_basic_map_check_equal_space(set_to_map(set),
9216 bset_to_bmap(bset));
9219 static isl_bool map_is_equal(__isl_keep isl_map *map1, __isl_keep isl_map *map2)
9221 isl_bool is_subset;
9223 if (!map1 || !map2)
9224 return isl_bool_error;
9225 is_subset = isl_map_is_subset(map1, map2);
9226 if (is_subset != isl_bool_true)
9227 return is_subset;
9228 is_subset = isl_map_is_subset(map2, map1);
9229 return is_subset;
9232 /* Is "map1" equal to "map2"?
9234 * First check if they are obviously equal.
9235 * If not, then perform a more detailed analysis.
9237 isl_bool isl_map_is_equal(__isl_keep isl_map *map1, __isl_keep isl_map *map2)
9239 isl_bool equal;
9241 equal = isl_map_plain_is_equal(map1, map2);
9242 if (equal < 0 || equal)
9243 return equal;
9244 return isl_map_align_params_map_map_and_test(map1, map2, &map_is_equal);
9247 isl_bool isl_basic_map_is_strict_subset(__isl_keep isl_basic_map *bmap1,
9248 __isl_keep isl_basic_map *bmap2)
9250 isl_bool is_subset;
9252 if (!bmap1 || !bmap2)
9253 return isl_bool_error;
9254 is_subset = isl_basic_map_is_subset(bmap1, bmap2);
9255 if (is_subset != isl_bool_true)
9256 return is_subset;
9257 is_subset = isl_basic_map_is_subset(bmap2, bmap1);
9258 return isl_bool_not(is_subset);
9261 isl_bool isl_map_is_strict_subset(__isl_keep isl_map *map1,
9262 __isl_keep isl_map *map2)
9264 isl_bool is_subset;
9266 if (!map1 || !map2)
9267 return isl_bool_error;
9268 is_subset = isl_map_is_subset(map1, map2);
9269 if (is_subset != isl_bool_true)
9270 return is_subset;
9271 is_subset = isl_map_is_subset(map2, map1);
9272 return isl_bool_not(is_subset);
9275 isl_bool isl_set_is_strict_subset(__isl_keep isl_set *set1,
9276 __isl_keep isl_set *set2)
9278 return isl_map_is_strict_subset(set_to_map(set1), set_to_map(set2));
9281 /* Is "bmap" obviously equal to the universe with the same space?
9283 * That is, does it not have any constraints?
9285 isl_bool isl_basic_map_plain_is_universe(__isl_keep isl_basic_map *bmap)
9287 if (!bmap)
9288 return isl_bool_error;
9289 return bmap->n_eq == 0 && bmap->n_ineq == 0;
9292 /* Is "bset" obviously equal to the universe with the same space?
9294 isl_bool isl_basic_set_plain_is_universe(__isl_keep isl_basic_set *bset)
9296 return isl_basic_map_plain_is_universe(bset);
9299 /* If "c" does not involve any existentially quantified variables,
9300 * then set *univ to false and abort
9302 static isl_stat involves_divs(__isl_take isl_constraint *c, void *user)
9304 isl_bool *univ = user;
9305 isl_size n;
9307 n = isl_constraint_dim(c, isl_dim_div);
9308 if (n < 0)
9309 c = isl_constraint_free(c);
9310 *univ = isl_constraint_involves_dims(c, isl_dim_div, 0, n);
9311 isl_constraint_free(c);
9312 if (*univ < 0 || !*univ)
9313 return isl_stat_error;
9314 return isl_stat_ok;
9317 /* Is "bmap" equal to the universe with the same space?
9319 * First check if it is obviously equal to the universe.
9320 * If not and if there are any constraints not involving
9321 * existentially quantified variables, then it is certainly
9322 * not equal to the universe.
9323 * Otherwise, check if the universe is a subset of "bmap".
9325 isl_bool isl_basic_map_is_universe(__isl_keep isl_basic_map *bmap)
9327 isl_size n_div;
9328 isl_bool univ;
9329 isl_basic_map *test;
9331 univ = isl_basic_map_plain_is_universe(bmap);
9332 if (univ < 0 || univ)
9333 return univ;
9334 n_div = isl_basic_map_dim(bmap, isl_dim_div);
9335 if (n_div < 0)
9336 return isl_bool_error;
9337 if (n_div == 0)
9338 return isl_bool_false;
9339 univ = isl_bool_true;
9340 if (isl_basic_map_foreach_constraint(bmap, &involves_divs, &univ) < 0 &&
9341 univ)
9342 return isl_bool_error;
9343 if (univ < 0 || !univ)
9344 return univ;
9345 test = isl_basic_map_universe(isl_basic_map_get_space(bmap));
9346 univ = isl_basic_map_is_subset(test, bmap);
9347 isl_basic_map_free(test);
9348 return univ;
9351 /* Is "bset" equal to the universe with the same space?
9353 isl_bool isl_basic_set_is_universe(__isl_keep isl_basic_set *bset)
9355 return isl_basic_map_is_universe(bset);
9358 isl_bool isl_map_plain_is_universe(__isl_keep isl_map *map)
9360 int i;
9362 if (!map)
9363 return isl_bool_error;
9365 for (i = 0; i < map->n; ++i) {
9366 isl_bool r = isl_basic_map_plain_is_universe(map->p[i]);
9367 if (r < 0 || r)
9368 return r;
9371 return isl_bool_false;
9374 isl_bool isl_set_plain_is_universe(__isl_keep isl_set *set)
9376 return isl_map_plain_is_universe(set_to_map(set));
9379 isl_bool isl_basic_map_is_empty(__isl_keep isl_basic_map *bmap)
9381 struct isl_basic_set *bset = NULL;
9382 struct isl_vec *sample = NULL;
9383 isl_bool empty, non_empty;
9385 if (!bmap)
9386 return isl_bool_error;
9388 if (ISL_F_ISSET(bmap, ISL_BASIC_MAP_EMPTY))
9389 return isl_bool_true;
9391 if (isl_basic_map_plain_is_universe(bmap))
9392 return isl_bool_false;
9394 if (ISL_F_ISSET(bmap, ISL_BASIC_MAP_RATIONAL)) {
9395 struct isl_basic_map *copy = isl_basic_map_copy(bmap);
9396 copy = isl_basic_map_remove_redundancies(copy);
9397 empty = isl_basic_map_plain_is_empty(copy);
9398 isl_basic_map_free(copy);
9399 return empty;
9402 non_empty = isl_basic_map_plain_is_non_empty(bmap);
9403 if (non_empty < 0)
9404 return isl_bool_error;
9405 if (non_empty)
9406 return isl_bool_false;
9407 isl_vec_free(bmap->sample);
9408 bmap->sample = NULL;
9409 bset = isl_basic_map_underlying_set(isl_basic_map_copy(bmap));
9410 if (!bset)
9411 return isl_bool_error;
9412 sample = isl_basic_set_sample_vec(bset);
9413 if (!sample)
9414 return isl_bool_error;
9415 empty = sample->size == 0;
9416 isl_vec_free(bmap->sample);
9417 bmap->sample = sample;
9418 if (empty)
9419 ISL_F_SET(bmap, ISL_BASIC_MAP_EMPTY);
9421 return empty;
9424 isl_bool isl_basic_map_plain_is_empty(__isl_keep isl_basic_map *bmap)
9426 if (!bmap)
9427 return isl_bool_error;
9428 return ISL_F_ISSET(bmap, ISL_BASIC_MAP_EMPTY);
9431 isl_bool isl_basic_set_plain_is_empty(__isl_keep isl_basic_set *bset)
9433 if (!bset)
9434 return isl_bool_error;
9435 return ISL_F_ISSET(bset, ISL_BASIC_SET_EMPTY);
9438 /* Is "bmap" known to be non-empty?
9440 * That is, is the cached sample still valid?
9442 isl_bool isl_basic_map_plain_is_non_empty(__isl_keep isl_basic_map *bmap)
9444 isl_size total;
9446 if (!bmap)
9447 return isl_bool_error;
9448 if (!bmap->sample)
9449 return isl_bool_false;
9450 total = isl_basic_map_dim(bmap, isl_dim_all);
9451 if (total < 0)
9452 return isl_bool_error;
9453 if (bmap->sample->size != 1 + total)
9454 return isl_bool_false;
9455 return isl_basic_map_contains(bmap, bmap->sample);
9458 isl_bool isl_basic_set_is_empty(__isl_keep isl_basic_set *bset)
9460 return isl_basic_map_is_empty(bset_to_bmap(bset));
9463 __isl_give isl_map *isl_basic_map_union(__isl_take isl_basic_map *bmap1,
9464 __isl_take isl_basic_map *bmap2)
9466 struct isl_map *map;
9468 if (isl_basic_map_check_equal_space(bmap1, bmap2) < 0)
9469 goto error;
9471 map = isl_map_alloc_space(isl_space_copy(bmap1->dim), 2, 0);
9472 if (!map)
9473 goto error;
9474 map = isl_map_add_basic_map(map, bmap1);
9475 map = isl_map_add_basic_map(map, bmap2);
9476 return map;
9477 error:
9478 isl_basic_map_free(bmap1);
9479 isl_basic_map_free(bmap2);
9480 return NULL;
9483 __isl_give isl_set *isl_basic_set_union(__isl_take isl_basic_set *bset1,
9484 __isl_take isl_basic_set *bset2)
9486 return set_from_map(isl_basic_map_union(bset_to_bmap(bset1),
9487 bset_to_bmap(bset2)));
9490 /* Order divs such that any div only depends on previous divs */
9491 __isl_give isl_basic_map *isl_basic_map_order_divs(
9492 __isl_take isl_basic_map *bmap)
9494 int i;
9495 isl_size off;
9497 off = isl_basic_map_var_offset(bmap, isl_dim_div);
9498 if (off < 0)
9499 return isl_basic_map_free(bmap);
9501 for (i = 0; i < bmap->n_div; ++i) {
9502 int pos;
9503 if (isl_int_is_zero(bmap->div[i][0]))
9504 continue;
9505 pos = isl_seq_first_non_zero(bmap->div[i]+1+1+off+i,
9506 bmap->n_div-i);
9507 if (pos == -1)
9508 continue;
9509 if (pos == 0)
9510 isl_die(isl_basic_map_get_ctx(bmap), isl_error_internal,
9511 "integer division depends on itself",
9512 return isl_basic_map_free(bmap));
9513 bmap = isl_basic_map_swap_div(bmap, i, i + pos);
9514 if (!bmap)
9515 return NULL;
9516 --i;
9518 return bmap;
9521 __isl_give isl_map *isl_map_order_divs(__isl_take isl_map *map)
9523 int i;
9525 if (!map)
9526 return 0;
9528 for (i = 0; i < map->n; ++i) {
9529 map->p[i] = isl_basic_map_order_divs(map->p[i]);
9530 if (!map->p[i])
9531 goto error;
9534 return map;
9535 error:
9536 isl_map_free(map);
9537 return NULL;
9540 /* Sort the local variables of "bset".
9542 __isl_give isl_basic_set *isl_basic_set_sort_divs(
9543 __isl_take isl_basic_set *bset)
9545 return bset_from_bmap(isl_basic_map_sort_divs(bset_to_bmap(bset)));
9548 /* Apply the expansion computed by isl_merge_divs.
9549 * The expansion itself is given by "exp" while the resulting
9550 * list of divs is given by "div".
9552 * Move the integer divisions of "bmap" into the right position
9553 * according to "exp" and then introduce the additional integer
9554 * divisions, adding div constraints.
9555 * The moving should be done first to avoid moving coefficients
9556 * in the definitions of the extra integer divisions.
9558 __isl_give isl_basic_map *isl_basic_map_expand_divs(
9559 __isl_take isl_basic_map *bmap, __isl_take isl_mat *div, int *exp)
9561 int i, j;
9562 int n_div;
9564 bmap = isl_basic_map_cow(bmap);
9565 if (!bmap || !div)
9566 goto error;
9568 if (div->n_row < bmap->n_div)
9569 isl_die(isl_mat_get_ctx(div), isl_error_invalid,
9570 "not an expansion", goto error);
9572 n_div = bmap->n_div;
9573 bmap = isl_basic_map_extend(bmap, div->n_row - n_div, 0,
9574 2 * (div->n_row - n_div));
9576 for (i = n_div; i < div->n_row; ++i)
9577 if (isl_basic_map_alloc_div(bmap) < 0)
9578 goto error;
9580 for (j = n_div - 1; j >= 0; --j) {
9581 if (exp[j] == j)
9582 break;
9583 bmap = isl_basic_map_swap_div(bmap, j, exp[j]);
9584 if (!bmap)
9585 goto error;
9587 j = 0;
9588 for (i = 0; i < div->n_row; ++i) {
9589 if (j < n_div && exp[j] == i) {
9590 j++;
9591 } else {
9592 isl_seq_cpy(bmap->div[i], div->row[i], div->n_col);
9593 if (isl_basic_map_div_is_marked_unknown(bmap, i))
9594 continue;
9595 bmap = isl_basic_map_add_div_constraints(bmap, i);
9596 if (!bmap)
9597 goto error;
9601 isl_mat_free(div);
9602 return bmap;
9603 error:
9604 isl_basic_map_free(bmap);
9605 isl_mat_free(div);
9606 return NULL;
9609 /* Apply the expansion computed by isl_merge_divs.
9610 * The expansion itself is given by "exp" while the resulting
9611 * list of divs is given by "div".
9613 __isl_give isl_basic_set *isl_basic_set_expand_divs(
9614 __isl_take isl_basic_set *bset, __isl_take isl_mat *div, int *exp)
9616 return isl_basic_map_expand_divs(bset, div, exp);
9619 /* Look for a div in dst that corresponds to the div "div" in src.
9620 * The divs before "div" in src and dst are assumed to be the same.
9622 * Return the position of the corresponding div in dst
9623 * if there is one. Otherwise, return a position beyond the integer divisions.
9624 * Return -1 on error.
9626 static int find_div(__isl_keep isl_basic_map *dst,
9627 __isl_keep isl_basic_map *src, unsigned div)
9629 int i;
9630 isl_size n_div;
9631 isl_size v_div;
9633 v_div = isl_basic_map_var_offset(src, isl_dim_div);
9634 n_div = isl_basic_map_dim(dst, isl_dim_div);
9635 if (n_div < 0 || v_div < 0)
9636 return -1;
9637 isl_assert(dst->ctx, div <= n_div, return -1);
9638 for (i = div; i < n_div; ++i)
9639 if (isl_seq_eq(dst->div[i], src->div[div], 1+1+v_div+div) &&
9640 isl_seq_first_non_zero(dst->div[i] + 1 + 1 + v_div + div,
9641 n_div - div) == -1)
9642 return i;
9643 return n_div;
9646 /* Align the divs of "dst" to those of "src", adding divs from "src"
9647 * if needed. That is, make sure that the first src->n_div divs
9648 * of the result are equal to those of src.
9649 * The integer division of "src" are assumed to be ordered.
9651 * The integer divisions are swapped into the right position
9652 * (possibly after adding them first). This may result
9653 * in the remaining integer divisions appearing in the wrong order,
9654 * i.e., with some integer division appearing before
9655 * some other integer division on which it depends.
9656 * The integer divisions therefore need to be ordered.
9657 * This will not affect the integer divisions aligned to those of "src",
9658 * since "src" is assumed to have ordered integer divisions.
9660 * The result is not finalized as by design it will have redundant
9661 * divs if any divs from "src" were copied.
9663 __isl_give isl_basic_map *isl_basic_map_align_divs(
9664 __isl_take isl_basic_map *dst, __isl_keep isl_basic_map *src)
9666 int i;
9667 isl_bool known;
9668 int extended;
9669 isl_size v_div;
9670 isl_size dst_n_div;
9672 if (!dst || !src)
9673 return isl_basic_map_free(dst);
9675 if (src->n_div == 0)
9676 return dst;
9678 known = isl_basic_map_divs_known(src);
9679 if (known < 0)
9680 return isl_basic_map_free(dst);
9681 if (!known)
9682 isl_die(isl_basic_map_get_ctx(src), isl_error_invalid,
9683 "some src divs are unknown",
9684 return isl_basic_map_free(dst));
9686 v_div = isl_basic_map_var_offset(src, isl_dim_div);
9687 if (v_div < 0)
9688 return isl_basic_map_free(dst);
9690 extended = 0;
9691 dst_n_div = isl_basic_map_dim(dst, isl_dim_div);
9692 if (dst_n_div < 0)
9693 dst = isl_basic_map_free(dst);
9694 for (i = 0; i < src->n_div; ++i) {
9695 int j = find_div(dst, src, i);
9696 if (j < 0)
9697 dst = isl_basic_map_free(dst);
9698 if (j == dst_n_div) {
9699 if (!extended) {
9700 int extra = src->n_div - i;
9701 dst = isl_basic_map_cow(dst);
9702 if (!dst)
9703 return isl_basic_map_free(dst);
9704 dst = isl_basic_map_extend(dst,
9705 extra, 0, 2 * extra);
9706 extended = 1;
9708 j = isl_basic_map_alloc_div(dst);
9709 if (j < 0)
9710 return isl_basic_map_free(dst);
9711 isl_seq_cpy(dst->div[j], src->div[i], 1+1+v_div+i);
9712 isl_seq_clr(dst->div[j]+1+1+v_div+i, dst->n_div - i);
9713 dst_n_div++;
9714 dst = isl_basic_map_add_div_constraints(dst, j);
9715 if (!dst)
9716 return isl_basic_map_free(dst);
9718 if (j != i)
9719 dst = isl_basic_map_swap_div(dst, i, j);
9720 if (!dst)
9721 return isl_basic_map_free(dst);
9723 return isl_basic_map_order_divs(dst);
9726 __isl_give isl_map *isl_map_align_divs_internal(__isl_take isl_map *map)
9728 int i;
9730 if (!map)
9731 return NULL;
9732 if (map->n == 0)
9733 return map;
9734 map = isl_map_compute_divs(map);
9735 map = isl_map_order_divs(map);
9736 map = isl_map_cow(map);
9737 if (!map)
9738 return NULL;
9740 for (i = 1; i < map->n; ++i)
9741 map->p[0] = isl_basic_map_align_divs(map->p[0], map->p[i]);
9742 for (i = 1; i < map->n; ++i) {
9743 map->p[i] = isl_basic_map_align_divs(map->p[i], map->p[0]);
9744 if (!map->p[i])
9745 return isl_map_free(map);
9748 map = isl_map_unmark_normalized(map);
9749 return map;
9752 __isl_give isl_map *isl_map_align_divs(__isl_take isl_map *map)
9754 return isl_map_align_divs_internal(map);
9757 __isl_give isl_set *isl_set_align_divs(__isl_take isl_set *set)
9759 return set_from_map(isl_map_align_divs_internal(set_to_map(set)));
9762 /* Align the divs of the basic maps in "map" to those
9763 * of the basic maps in "list", as well as to the other basic maps in "map".
9764 * The elements in "list" are assumed to have known divs.
9766 __isl_give isl_map *isl_map_align_divs_to_basic_map_list(
9767 __isl_take isl_map *map, __isl_keep isl_basic_map_list *list)
9769 int i;
9770 isl_size n;
9772 n = isl_basic_map_list_n_basic_map(list);
9773 map = isl_map_compute_divs(map);
9774 map = isl_map_cow(map);
9775 if (!map || n < 0)
9776 return isl_map_free(map);
9777 if (map->n == 0)
9778 return map;
9780 for (i = 0; i < n; ++i) {
9781 isl_basic_map *bmap;
9783 bmap = isl_basic_map_list_get_basic_map(list, i);
9784 bmap = isl_basic_map_order_divs(bmap);
9785 map->p[0] = isl_basic_map_align_divs(map->p[0], bmap);
9786 isl_basic_map_free(bmap);
9788 if (!map->p[0])
9789 return isl_map_free(map);
9791 return isl_map_align_divs_internal(map);
9794 /* Align the divs of each element of "list" to those of "bmap".
9795 * Both "bmap" and the elements of "list" are assumed to have known divs.
9797 __isl_give isl_basic_map_list *isl_basic_map_list_align_divs_to_basic_map(
9798 __isl_take isl_basic_map_list *list, __isl_keep isl_basic_map *bmap)
9800 int i;
9801 isl_size n;
9803 n = isl_basic_map_list_n_basic_map(list);
9804 if (n < 0 || !bmap)
9805 return isl_basic_map_list_free(list);
9807 for (i = 0; i < n; ++i) {
9808 isl_basic_map *bmap_i;
9810 bmap_i = isl_basic_map_list_get_basic_map(list, i);
9811 bmap_i = isl_basic_map_align_divs(bmap_i, bmap);
9812 list = isl_basic_map_list_set_basic_map(list, i, bmap_i);
9815 return list;
9818 __isl_give isl_set *isl_set_apply( __isl_take isl_set *set,
9819 __isl_take isl_map *map)
9821 isl_bool ok;
9823 isl_map_align_params_set(&map, &set);
9824 ok = isl_map_compatible_domain(map, set);
9825 if (ok < 0)
9826 goto error;
9827 if (!ok)
9828 isl_die(isl_set_get_ctx(set), isl_error_invalid,
9829 "incompatible spaces", goto error);
9830 map = isl_map_intersect_domain(map, set);
9831 set = isl_map_range(map);
9832 return set;
9833 error:
9834 isl_set_free(set);
9835 isl_map_free(map);
9836 return NULL;
9839 /* There is no need to cow as removing empty parts doesn't change
9840 * the meaning of the set.
9842 __isl_give isl_map *isl_map_remove_empty_parts(__isl_take isl_map *map)
9844 int i;
9846 if (!map)
9847 return NULL;
9849 for (i = map->n - 1; i >= 0; --i)
9850 map = remove_if_empty(map, i);
9852 return map;
9855 __isl_give isl_set *isl_set_remove_empty_parts(__isl_take isl_set *set)
9857 return set_from_map(isl_map_remove_empty_parts(set_to_map(set)));
9860 /* Create a binary relation that maps the shared initial "pos" dimensions
9861 * of "bset1" and "bset2" to the remaining dimensions of "bset1" and "bset2".
9863 static __isl_give isl_basic_map *join_initial(__isl_keep isl_basic_set *bset1,
9864 __isl_keep isl_basic_set *bset2, int pos)
9866 isl_basic_map *bmap1;
9867 isl_basic_map *bmap2;
9869 bmap1 = isl_basic_map_from_range(isl_basic_set_copy(bset1));
9870 bmap2 = isl_basic_map_from_range(isl_basic_set_copy(bset2));
9871 bmap1 = isl_basic_map_move_dims(bmap1, isl_dim_in, 0,
9872 isl_dim_out, 0, pos);
9873 bmap2 = isl_basic_map_move_dims(bmap2, isl_dim_in, 0,
9874 isl_dim_out, 0, pos);
9875 return isl_basic_map_range_product(bmap1, bmap2);
9878 /* Given two basic sets bset1 and bset2, compute the maximal difference
9879 * between the values of dimension pos in bset1 and those in bset2
9880 * for any common value of the parameters and dimensions preceding pos.
9882 static enum isl_lp_result basic_set_maximal_difference_at(
9883 __isl_keep isl_basic_set *bset1, __isl_keep isl_basic_set *bset2,
9884 int pos, isl_int *opt)
9886 isl_basic_map *bmap1;
9887 struct isl_ctx *ctx;
9888 struct isl_vec *obj;
9889 isl_size total;
9890 isl_size nparam;
9891 isl_size dim1;
9892 enum isl_lp_result res;
9894 nparam = isl_basic_set_dim(bset1, isl_dim_param);
9895 dim1 = isl_basic_set_dim(bset1, isl_dim_set);
9896 if (nparam < 0 || dim1 < 0 || !bset2)
9897 return isl_lp_error;
9899 bmap1 = join_initial(bset1, bset2, pos);
9900 total = isl_basic_map_dim(bmap1, isl_dim_all);
9901 if (total < 0)
9902 return isl_lp_error;
9904 ctx = bmap1->ctx;
9905 obj = isl_vec_alloc(ctx, 1 + total);
9906 if (!obj)
9907 goto error;
9908 isl_seq_clr(obj->block.data, 1 + total);
9909 isl_int_set_si(obj->block.data[1+nparam+pos], 1);
9910 isl_int_set_si(obj->block.data[1+nparam+pos+(dim1-pos)], -1);
9911 res = isl_basic_map_solve_lp(bmap1, 1, obj->block.data, ctx->one,
9912 opt, NULL, NULL);
9913 isl_basic_map_free(bmap1);
9914 isl_vec_free(obj);
9915 return res;
9916 error:
9917 isl_basic_map_free(bmap1);
9918 return isl_lp_error;
9921 /* Given two _disjoint_ basic sets bset1 and bset2, check whether
9922 * for any common value of the parameters and dimensions preceding pos
9923 * in both basic sets, the values of dimension pos in bset1 are
9924 * smaller or larger than those in bset2.
9926 * Returns
9927 * 1 if bset1 follows bset2
9928 * -1 if bset1 precedes bset2
9929 * 0 if bset1 and bset2 are incomparable
9930 * -2 if some error occurred.
9932 int isl_basic_set_compare_at(__isl_keep isl_basic_set *bset1,
9933 __isl_keep isl_basic_set *bset2, int pos)
9935 isl_int opt;
9936 enum isl_lp_result res;
9937 int cmp;
9939 isl_int_init(opt);
9941 res = basic_set_maximal_difference_at(bset1, bset2, pos, &opt);
9943 if (res == isl_lp_empty)
9944 cmp = 0;
9945 else if ((res == isl_lp_ok && isl_int_is_pos(opt)) ||
9946 res == isl_lp_unbounded)
9947 cmp = 1;
9948 else if (res == isl_lp_ok && isl_int_is_neg(opt))
9949 cmp = -1;
9950 else
9951 cmp = -2;
9953 isl_int_clear(opt);
9954 return cmp;
9957 /* Given two basic sets bset1 and bset2, check whether
9958 * for any common value of the parameters and dimensions preceding pos
9959 * there is a value of dimension pos in bset1 that is larger
9960 * than a value of the same dimension in bset2.
9962 * Return
9963 * 1 if there exists such a pair
9964 * 0 if there is no such pair, but there is a pair of equal values
9965 * -1 otherwise
9966 * -2 if some error occurred.
9968 int isl_basic_set_follows_at(__isl_keep isl_basic_set *bset1,
9969 __isl_keep isl_basic_set *bset2, int pos)
9971 isl_bool empty;
9972 isl_basic_map *bmap;
9973 isl_size dim1;
9975 dim1 = isl_basic_set_dim(bset1, isl_dim_set);
9976 if (dim1 < 0)
9977 return -2;
9978 bmap = join_initial(bset1, bset2, pos);
9979 bmap = isl_basic_map_order_ge(bmap, isl_dim_out, 0,
9980 isl_dim_out, dim1 - pos);
9981 empty = isl_basic_map_is_empty(bmap);
9982 if (empty < 0)
9983 goto error;
9984 if (empty) {
9985 isl_basic_map_free(bmap);
9986 return -1;
9988 bmap = isl_basic_map_order_gt(bmap, isl_dim_out, 0,
9989 isl_dim_out, dim1 - pos);
9990 empty = isl_basic_map_is_empty(bmap);
9991 if (empty < 0)
9992 goto error;
9993 isl_basic_map_free(bmap);
9994 if (empty)
9995 return 0;
9996 return 1;
9997 error:
9998 isl_basic_map_free(bmap);
9999 return -2;
10002 /* Given two sets set1 and set2, check whether
10003 * for any common value of the parameters and dimensions preceding pos
10004 * there is a value of dimension pos in set1 that is larger
10005 * than a value of the same dimension in set2.
10007 * Return
10008 * 1 if there exists such a pair
10009 * 0 if there is no such pair, but there is a pair of equal values
10010 * -1 otherwise
10011 * -2 if some error occurred.
10013 int isl_set_follows_at(__isl_keep isl_set *set1,
10014 __isl_keep isl_set *set2, int pos)
10016 int i, j;
10017 int follows = -1;
10019 if (!set1 || !set2)
10020 return -2;
10022 for (i = 0; i < set1->n; ++i)
10023 for (j = 0; j < set2->n; ++j) {
10024 int f;
10025 f = isl_basic_set_follows_at(set1->p[i], set2->p[j], pos);
10026 if (f == 1 || f == -2)
10027 return f;
10028 if (f > follows)
10029 follows = f;
10032 return follows;
10035 static isl_bool isl_basic_map_plain_has_fixed_var(
10036 __isl_keep isl_basic_map *bmap, unsigned pos, isl_int *val)
10038 int i;
10039 int d;
10040 isl_size total;
10042 total = isl_basic_map_dim(bmap, isl_dim_all);
10043 if (total < 0)
10044 return isl_bool_error;
10045 for (i = 0, d = total-1; i < bmap->n_eq && d+1 > pos; ++i) {
10046 for (; d+1 > pos; --d)
10047 if (!isl_int_is_zero(bmap->eq[i][1+d]))
10048 break;
10049 if (d != pos)
10050 continue;
10051 if (isl_seq_first_non_zero(bmap->eq[i]+1, d) != -1)
10052 return isl_bool_false;
10053 if (isl_seq_first_non_zero(bmap->eq[i]+1+d+1, total-d-1) != -1)
10054 return isl_bool_false;
10055 if (!isl_int_is_one(bmap->eq[i][1+d]))
10056 return isl_bool_false;
10057 if (val)
10058 isl_int_neg(*val, bmap->eq[i][0]);
10059 return isl_bool_true;
10061 return isl_bool_false;
10064 static isl_bool isl_map_plain_has_fixed_var(__isl_keep isl_map *map,
10065 unsigned pos, isl_int *val)
10067 int i;
10068 isl_int v;
10069 isl_int tmp;
10070 isl_bool fixed;
10072 if (!map)
10073 return isl_bool_error;
10074 if (map->n == 0)
10075 return isl_bool_false;
10076 if (map->n == 1)
10077 return isl_basic_map_plain_has_fixed_var(map->p[0], pos, val);
10078 isl_int_init(v);
10079 isl_int_init(tmp);
10080 fixed = isl_basic_map_plain_has_fixed_var(map->p[0], pos, &v);
10081 for (i = 1; fixed == isl_bool_true && i < map->n; ++i) {
10082 fixed = isl_basic_map_plain_has_fixed_var(map->p[i], pos, &tmp);
10083 if (fixed == isl_bool_true && isl_int_ne(tmp, v))
10084 fixed = isl_bool_false;
10086 if (val)
10087 isl_int_set(*val, v);
10088 isl_int_clear(tmp);
10089 isl_int_clear(v);
10090 return fixed;
10093 static isl_bool isl_basic_set_plain_has_fixed_var(
10094 __isl_keep isl_basic_set *bset, unsigned pos, isl_int *val)
10096 return isl_basic_map_plain_has_fixed_var(bset_to_bmap(bset),
10097 pos, val);
10100 isl_bool isl_basic_map_plain_is_fixed(__isl_keep isl_basic_map *bmap,
10101 enum isl_dim_type type, unsigned pos, isl_int *val)
10103 if (isl_basic_map_check_range(bmap, type, pos, 1) < 0)
10104 return isl_bool_error;
10105 return isl_basic_map_plain_has_fixed_var(bmap,
10106 isl_basic_map_offset(bmap, type) - 1 + pos, val);
10109 /* If "bmap" obviously lies on a hyperplane where the given dimension
10110 * has a fixed value, then return that value.
10111 * Otherwise return NaN.
10113 __isl_give isl_val *isl_basic_map_plain_get_val_if_fixed(
10114 __isl_keep isl_basic_map *bmap,
10115 enum isl_dim_type type, unsigned pos)
10117 isl_ctx *ctx;
10118 isl_val *v;
10119 isl_bool fixed;
10121 if (!bmap)
10122 return NULL;
10123 ctx = isl_basic_map_get_ctx(bmap);
10124 v = isl_val_alloc(ctx);
10125 if (!v)
10126 return NULL;
10127 fixed = isl_basic_map_plain_is_fixed(bmap, type, pos, &v->n);
10128 if (fixed < 0)
10129 return isl_val_free(v);
10130 if (fixed) {
10131 isl_int_set_si(v->d, 1);
10132 return v;
10134 isl_val_free(v);
10135 return isl_val_nan(ctx);
10138 isl_bool isl_map_plain_is_fixed(__isl_keep isl_map *map,
10139 enum isl_dim_type type, unsigned pos, isl_int *val)
10141 if (isl_map_check_range(map, type, pos, 1) < 0)
10142 return isl_bool_error;
10143 return isl_map_plain_has_fixed_var(map,
10144 map_offset(map, type) - 1 + pos, val);
10147 /* If "map" obviously lies on a hyperplane where the given dimension
10148 * has a fixed value, then return that value.
10149 * Otherwise return NaN.
10151 __isl_give isl_val *isl_map_plain_get_val_if_fixed(__isl_keep isl_map *map,
10152 enum isl_dim_type type, unsigned pos)
10154 isl_ctx *ctx;
10155 isl_val *v;
10156 isl_bool fixed;
10158 if (!map)
10159 return NULL;
10160 ctx = isl_map_get_ctx(map);
10161 v = isl_val_alloc(ctx);
10162 if (!v)
10163 return NULL;
10164 fixed = isl_map_plain_is_fixed(map, type, pos, &v->n);
10165 if (fixed < 0)
10166 return isl_val_free(v);
10167 if (fixed) {
10168 isl_int_set_si(v->d, 1);
10169 return v;
10171 isl_val_free(v);
10172 return isl_val_nan(ctx);
10175 /* If "set" obviously lies on a hyperplane where the given dimension
10176 * has a fixed value, then return that value.
10177 * Otherwise return NaN.
10179 __isl_give isl_val *isl_set_plain_get_val_if_fixed(__isl_keep isl_set *set,
10180 enum isl_dim_type type, unsigned pos)
10182 return isl_map_plain_get_val_if_fixed(set, type, pos);
10185 /* Return a sequence of values in the same space as "set"
10186 * that are equal to the corresponding set dimensions of "set"
10187 * for those set dimensions that obviously lie on a hyperplane
10188 * where the dimension has a fixed value.
10189 * The other elements are set to NaN.
10191 __isl_give isl_multi_val *isl_set_get_plain_multi_val_if_fixed(
10192 __isl_keep isl_set *set)
10194 int i;
10195 isl_size n;
10196 isl_space *space;
10197 isl_multi_val *mv;
10199 space = isl_space_drop_all_params(isl_set_get_space(set));
10200 mv = isl_multi_val_alloc(space);
10201 n = isl_multi_val_size(mv);
10202 if (n < 0)
10203 return isl_multi_val_free(mv);
10205 for (i = 0; i < n; ++i) {
10206 isl_val *v;
10208 v = isl_set_plain_get_val_if_fixed(set, isl_dim_set, i);
10209 mv = isl_multi_val_set_val(mv, i, v);
10212 return mv;
10215 /* Check if dimension dim has fixed value and if so and if val is not NULL,
10216 * then return this fixed value in *val.
10218 isl_bool isl_basic_set_plain_dim_is_fixed(__isl_keep isl_basic_set *bset,
10219 unsigned dim, isl_int *val)
10221 isl_size nparam;
10223 nparam = isl_basic_set_dim(bset, isl_dim_param);
10224 if (nparam < 0)
10225 return isl_bool_error;
10226 return isl_basic_set_plain_has_fixed_var(bset, nparam + dim, val);
10229 /* Return -1 if the constraint "c1" should be sorted before "c2"
10230 * and 1 if it should be sorted after "c2".
10231 * Return 0 if the two constraints are the same (up to the constant term).
10233 * In particular, if a constraint involves later variables than another
10234 * then it is sorted after this other constraint.
10235 * uset_gist depends on constraints without existentially quantified
10236 * variables sorting first.
10238 * For constraints that have the same latest variable, those
10239 * with the same coefficient for this latest variable (first in absolute value
10240 * and then in actual value) are grouped together.
10241 * This is useful for detecting pairs of constraints that can
10242 * be chained in their printed representation.
10244 * Finally, within a group, constraints are sorted according to
10245 * their coefficients (excluding the constant term).
10247 static int sort_constraint_cmp(const void *p1, const void *p2, void *arg)
10249 isl_int **c1 = (isl_int **) p1;
10250 isl_int **c2 = (isl_int **) p2;
10251 int l1, l2;
10252 unsigned size = *(unsigned *) arg;
10253 int cmp;
10255 l1 = isl_seq_last_non_zero(*c1 + 1, size);
10256 l2 = isl_seq_last_non_zero(*c2 + 1, size);
10258 if (l1 != l2)
10259 return l1 - l2;
10261 cmp = isl_int_abs_cmp((*c1)[1 + l1], (*c2)[1 + l1]);
10262 if (cmp != 0)
10263 return cmp;
10264 cmp = isl_int_cmp((*c1)[1 + l1], (*c2)[1 + l1]);
10265 if (cmp != 0)
10266 return -cmp;
10268 return isl_seq_cmp(*c1 + 1, *c2 + 1, size);
10271 /* Return -1 if the constraint "c1" of "bmap" is sorted before "c2"
10272 * by isl_basic_map_sort_constraints, 1 if it is sorted after "c2"
10273 * and 0 if the two constraints are the same (up to the constant term).
10275 int isl_basic_map_constraint_cmp(__isl_keep isl_basic_map *bmap,
10276 isl_int *c1, isl_int *c2)
10278 isl_size total;
10279 unsigned size;
10281 total = isl_basic_map_dim(bmap, isl_dim_all);
10282 if (total < 0)
10283 return -2;
10284 size = total;
10285 return sort_constraint_cmp(&c1, &c2, &size);
10288 __isl_give isl_basic_map *isl_basic_map_sort_constraints(
10289 __isl_take isl_basic_map *bmap)
10291 isl_size total;
10292 unsigned size;
10294 if (!bmap)
10295 return NULL;
10296 if (bmap->n_ineq == 0)
10297 return bmap;
10298 if (ISL_F_ISSET(bmap, ISL_BASIC_MAP_SORTED))
10299 return bmap;
10300 total = isl_basic_map_dim(bmap, isl_dim_all);
10301 if (total < 0)
10302 return isl_basic_map_free(bmap);
10303 size = total;
10304 if (isl_sort(bmap->ineq, bmap->n_ineq, sizeof(isl_int *),
10305 &sort_constraint_cmp, &size) < 0)
10306 return isl_basic_map_free(bmap);
10307 ISL_F_SET(bmap, ISL_BASIC_MAP_SORTED);
10308 return bmap;
10311 __isl_give isl_basic_set *isl_basic_set_sort_constraints(
10312 __isl_take isl_basic_set *bset)
10314 isl_basic_map *bmap = bset_to_bmap(bset);
10315 return bset_from_bmap(isl_basic_map_sort_constraints(bmap));
10318 __isl_give isl_basic_map *isl_basic_map_normalize(
10319 __isl_take isl_basic_map *bmap)
10321 bmap = isl_basic_map_remove_redundancies(bmap);
10322 bmap = isl_basic_map_sort_constraints(bmap);
10323 return bmap;
10325 int isl_basic_map_plain_cmp(__isl_keep isl_basic_map *bmap1,
10326 __isl_keep isl_basic_map *bmap2)
10328 int i, cmp;
10329 isl_size total;
10330 isl_space *space1, *space2;
10332 if (!bmap1 || !bmap2)
10333 return -1;
10335 if (bmap1 == bmap2)
10336 return 0;
10337 space1 = isl_basic_map_peek_space(bmap1);
10338 space2 = isl_basic_map_peek_space(bmap2);
10339 cmp = isl_space_cmp(space1, space2);
10340 if (cmp)
10341 return cmp;
10342 if (ISL_F_ISSET(bmap1, ISL_BASIC_MAP_RATIONAL) !=
10343 ISL_F_ISSET(bmap2, ISL_BASIC_MAP_RATIONAL))
10344 return ISL_F_ISSET(bmap1, ISL_BASIC_MAP_RATIONAL) ? -1 : 1;
10345 if (ISL_F_ISSET(bmap1, ISL_BASIC_MAP_EMPTY) &&
10346 ISL_F_ISSET(bmap2, ISL_BASIC_MAP_EMPTY))
10347 return 0;
10348 if (ISL_F_ISSET(bmap1, ISL_BASIC_MAP_EMPTY))
10349 return 1;
10350 if (ISL_F_ISSET(bmap2, ISL_BASIC_MAP_EMPTY))
10351 return -1;
10352 if (bmap1->n_eq != bmap2->n_eq)
10353 return bmap1->n_eq - bmap2->n_eq;
10354 if (bmap1->n_ineq != bmap2->n_ineq)
10355 return bmap1->n_ineq - bmap2->n_ineq;
10356 if (bmap1->n_div != bmap2->n_div)
10357 return bmap1->n_div - bmap2->n_div;
10358 total = isl_basic_map_dim(bmap1, isl_dim_all);
10359 if (total < 0)
10360 return -1;
10361 for (i = 0; i < bmap1->n_eq; ++i) {
10362 cmp = isl_seq_cmp(bmap1->eq[i], bmap2->eq[i], 1+total);
10363 if (cmp)
10364 return cmp;
10366 for (i = 0; i < bmap1->n_ineq; ++i) {
10367 cmp = isl_seq_cmp(bmap1->ineq[i], bmap2->ineq[i], 1+total);
10368 if (cmp)
10369 return cmp;
10371 for (i = 0; i < bmap1->n_div; ++i) {
10372 isl_bool unknown1, unknown2;
10374 unknown1 = isl_basic_map_div_is_marked_unknown(bmap1, i);
10375 unknown2 = isl_basic_map_div_is_marked_unknown(bmap2, i);
10376 if (unknown1 < 0 || unknown2 < 0)
10377 return -1;
10378 if (unknown1 && unknown2)
10379 continue;
10380 if (unknown1)
10381 return 1;
10382 if (unknown2)
10383 return -1;
10384 cmp = isl_seq_cmp(bmap1->div[i], bmap2->div[i], 1+1+total);
10385 if (cmp)
10386 return cmp;
10388 return 0;
10391 int isl_basic_set_plain_cmp(__isl_keep isl_basic_set *bset1,
10392 __isl_keep isl_basic_set *bset2)
10394 return isl_basic_map_plain_cmp(bset1, bset2);
10397 int isl_set_plain_cmp(__isl_keep isl_set *set1, __isl_keep isl_set *set2)
10399 int i, cmp;
10401 if (set1 == set2)
10402 return 0;
10403 if (set1->n != set2->n)
10404 return set1->n - set2->n;
10406 for (i = 0; i < set1->n; ++i) {
10407 cmp = isl_basic_set_plain_cmp(set1->p[i], set2->p[i]);
10408 if (cmp)
10409 return cmp;
10412 return 0;
10415 isl_bool isl_basic_map_plain_is_equal(__isl_keep isl_basic_map *bmap1,
10416 __isl_keep isl_basic_map *bmap2)
10418 if (!bmap1 || !bmap2)
10419 return isl_bool_error;
10420 return isl_basic_map_plain_cmp(bmap1, bmap2) == 0;
10423 isl_bool isl_basic_set_plain_is_equal(__isl_keep isl_basic_set *bset1,
10424 __isl_keep isl_basic_set *bset2)
10426 return isl_basic_map_plain_is_equal(bset_to_bmap(bset1),
10427 bset_to_bmap(bset2));
10430 static int qsort_bmap_cmp(const void *p1, const void *p2)
10432 isl_basic_map *bmap1 = *(isl_basic_map **) p1;
10433 isl_basic_map *bmap2 = *(isl_basic_map **) p2;
10435 return isl_basic_map_plain_cmp(bmap1, bmap2);
10438 /* Sort the basic maps of "map" and remove duplicate basic maps.
10440 * While removing basic maps, we make sure that the basic maps remain
10441 * sorted because isl_map_normalize expects the basic maps of the result
10442 * to be sorted.
10444 static __isl_give isl_map *sort_and_remove_duplicates(__isl_take isl_map *map)
10446 int i, j;
10448 map = isl_map_remove_empty_parts(map);
10449 if (!map)
10450 return NULL;
10451 qsort(map->p, map->n, sizeof(struct isl_basic_map *), qsort_bmap_cmp);
10452 for (i = map->n - 1; i >= 1; --i) {
10453 if (!isl_basic_map_plain_is_equal(map->p[i - 1], map->p[i]))
10454 continue;
10455 isl_basic_map_free(map->p[i-1]);
10456 for (j = i; j < map->n; ++j)
10457 map->p[j - 1] = map->p[j];
10458 map->n--;
10461 return map;
10464 /* Remove obvious duplicates among the basic maps of "map".
10466 * Unlike isl_map_normalize, this function does not remove redundant
10467 * constraints and only removes duplicates that have exactly the same
10468 * constraints in the input. It does sort the constraints and
10469 * the basic maps to ease the detection of duplicates.
10471 * If "map" has already been normalized or if the basic maps are
10472 * disjoint, then there can be no duplicates.
10474 __isl_give isl_map *isl_map_remove_obvious_duplicates(__isl_take isl_map *map)
10476 int i;
10477 isl_basic_map *bmap;
10479 if (!map)
10480 return NULL;
10481 if (map->n <= 1)
10482 return map;
10483 if (ISL_F_ISSET(map, ISL_MAP_NORMALIZED | ISL_MAP_DISJOINT))
10484 return map;
10485 for (i = 0; i < map->n; ++i) {
10486 bmap = isl_basic_map_copy(map->p[i]);
10487 bmap = isl_basic_map_sort_constraints(bmap);
10488 if (!bmap)
10489 return isl_map_free(map);
10490 isl_basic_map_free(map->p[i]);
10491 map->p[i] = bmap;
10494 map = sort_and_remove_duplicates(map);
10495 return map;
10498 /* We normalize in place, but if anything goes wrong we need
10499 * to return NULL, so we need to make sure we don't change the
10500 * meaning of any possible other copies of map.
10502 __isl_give isl_map *isl_map_normalize(__isl_take isl_map *map)
10504 int i;
10505 struct isl_basic_map *bmap;
10507 if (!map)
10508 return NULL;
10509 if (ISL_F_ISSET(map, ISL_MAP_NORMALIZED))
10510 return map;
10511 for (i = 0; i < map->n; ++i) {
10512 bmap = isl_basic_map_normalize(isl_basic_map_copy(map->p[i]));
10513 if (!bmap)
10514 goto error;
10515 isl_basic_map_free(map->p[i]);
10516 map->p[i] = bmap;
10519 map = sort_and_remove_duplicates(map);
10520 if (map)
10521 ISL_F_SET(map, ISL_MAP_NORMALIZED);
10522 return map;
10523 error:
10524 isl_map_free(map);
10525 return NULL;
10528 __isl_give isl_set *isl_set_normalize(__isl_take isl_set *set)
10530 return set_from_map(isl_map_normalize(set_to_map(set)));
10533 isl_bool isl_map_plain_is_equal(__isl_keep isl_map *map1,
10534 __isl_keep isl_map *map2)
10536 int i;
10537 isl_bool equal;
10539 if (!map1 || !map2)
10540 return isl_bool_error;
10542 if (map1 == map2)
10543 return isl_bool_true;
10544 equal = isl_map_has_equal_space(map1, map2);
10545 if (equal < 0 || !equal)
10546 return equal;
10548 map1 = isl_map_copy(map1);
10549 map2 = isl_map_copy(map2);
10550 map1 = isl_map_normalize(map1);
10551 map2 = isl_map_normalize(map2);
10552 if (!map1 || !map2)
10553 goto error;
10554 equal = map1->n == map2->n;
10555 for (i = 0; equal && i < map1->n; ++i) {
10556 equal = isl_basic_map_plain_is_equal(map1->p[i], map2->p[i]);
10557 if (equal < 0)
10558 goto error;
10560 isl_map_free(map1);
10561 isl_map_free(map2);
10562 return equal;
10563 error:
10564 isl_map_free(map1);
10565 isl_map_free(map2);
10566 return isl_bool_error;
10569 isl_bool isl_set_plain_is_equal(__isl_keep isl_set *set1,
10570 __isl_keep isl_set *set2)
10572 return isl_map_plain_is_equal(set_to_map(set1), set_to_map(set2));
10575 /* Return the basic maps in "map" as a list.
10577 __isl_give isl_basic_map_list *isl_map_get_basic_map_list(
10578 __isl_keep isl_map *map)
10580 int i;
10581 isl_ctx *ctx;
10582 isl_basic_map_list *list;
10584 if (!map)
10585 return NULL;
10586 ctx = isl_map_get_ctx(map);
10587 list = isl_basic_map_list_alloc(ctx, map->n);
10589 for (i = 0; i < map->n; ++i) {
10590 isl_basic_map *bmap;
10592 bmap = isl_basic_map_copy(map->p[i]);
10593 list = isl_basic_map_list_add(list, bmap);
10596 return list;
10599 /* Return the intersection of the elements in the non-empty list "list".
10600 * All elements are assumed to live in the same space.
10602 __isl_give isl_basic_map *isl_basic_map_list_intersect(
10603 __isl_take isl_basic_map_list *list)
10605 int i;
10606 isl_size n;
10607 isl_basic_map *bmap;
10609 n = isl_basic_map_list_n_basic_map(list);
10610 if (n < 0)
10611 goto error;
10612 if (n < 1)
10613 isl_die(isl_basic_map_list_get_ctx(list), isl_error_invalid,
10614 "expecting non-empty list", goto error);
10616 bmap = isl_basic_map_list_get_basic_map(list, 0);
10617 for (i = 1; i < n; ++i) {
10618 isl_basic_map *bmap_i;
10620 bmap_i = isl_basic_map_list_get_basic_map(list, i);
10621 bmap = isl_basic_map_intersect(bmap, bmap_i);
10624 isl_basic_map_list_free(list);
10625 return bmap;
10626 error:
10627 isl_basic_map_list_free(list);
10628 return NULL;
10631 /* Return the intersection of the elements in the non-empty list "list".
10632 * All elements are assumed to live in the same space.
10634 __isl_give isl_basic_set *isl_basic_set_list_intersect(
10635 __isl_take isl_basic_set_list *list)
10637 return isl_basic_map_list_intersect(list);
10640 /* Return the union of the elements of "list".
10641 * The list is required to have at least one element.
10643 __isl_give isl_set *isl_basic_set_list_union(
10644 __isl_take isl_basic_set_list *list)
10646 int i;
10647 isl_size n;
10648 isl_space *space;
10649 isl_basic_set *bset;
10650 isl_set *set;
10652 n = isl_basic_set_list_n_basic_set(list);
10653 if (n < 0)
10654 goto error;
10655 if (n < 1)
10656 isl_die(isl_basic_set_list_get_ctx(list), isl_error_invalid,
10657 "expecting non-empty list", goto error);
10659 bset = isl_basic_set_list_get_basic_set(list, 0);
10660 space = isl_basic_set_get_space(bset);
10661 isl_basic_set_free(bset);
10663 set = isl_set_alloc_space(space, n, 0);
10664 for (i = 0; i < n; ++i) {
10665 bset = isl_basic_set_list_get_basic_set(list, i);
10666 set = isl_set_add_basic_set(set, bset);
10669 isl_basic_set_list_free(list);
10670 return set;
10671 error:
10672 isl_basic_set_list_free(list);
10673 return NULL;
10676 /* Return the union of the elements in the non-empty list "list".
10677 * All elements are assumed to live in the same space.
10679 __isl_give isl_set *isl_set_list_union(__isl_take isl_set_list *list)
10681 int i;
10682 isl_size n;
10683 isl_set *set;
10685 n = isl_set_list_n_set(list);
10686 if (n < 0)
10687 goto error;
10688 if (n < 1)
10689 isl_die(isl_set_list_get_ctx(list), isl_error_invalid,
10690 "expecting non-empty list", goto error);
10692 set = isl_set_list_get_set(list, 0);
10693 for (i = 1; i < n; ++i) {
10694 isl_set *set_i;
10696 set_i = isl_set_list_get_set(list, i);
10697 set = isl_set_union(set, set_i);
10700 isl_set_list_free(list);
10701 return set;
10702 error:
10703 isl_set_list_free(list);
10704 return NULL;
10707 __isl_give isl_basic_map *isl_basic_map_product(
10708 __isl_take isl_basic_map *bmap1, __isl_take isl_basic_map *bmap2)
10710 isl_space *space_result = NULL;
10711 struct isl_basic_map *bmap;
10712 unsigned in1, in2, out1, out2, nparam, total, pos;
10713 struct isl_dim_map *dim_map1, *dim_map2;
10715 if (isl_basic_map_check_equal_params(bmap1, bmap2) < 0)
10716 goto error;
10717 space_result = isl_space_product(isl_space_copy(bmap1->dim),
10718 isl_space_copy(bmap2->dim));
10720 in1 = isl_basic_map_dim(bmap1, isl_dim_in);
10721 in2 = isl_basic_map_dim(bmap2, isl_dim_in);
10722 out1 = isl_basic_map_dim(bmap1, isl_dim_out);
10723 out2 = isl_basic_map_dim(bmap2, isl_dim_out);
10724 nparam = isl_basic_map_dim(bmap1, isl_dim_param);
10726 total = nparam + in1 + in2 + out1 + out2 + bmap1->n_div + bmap2->n_div;
10727 dim_map1 = isl_dim_map_alloc(bmap1->ctx, total);
10728 dim_map2 = isl_dim_map_alloc(bmap1->ctx, total);
10729 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_param, pos = 0);
10730 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_param, pos = 0);
10731 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_in, pos += nparam);
10732 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_in, pos += in1);
10733 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_out, pos += in2);
10734 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_out, pos += out1);
10735 isl_dim_map_div(dim_map1, bmap1, pos += out2);
10736 isl_dim_map_div(dim_map2, bmap2, pos += bmap1->n_div);
10738 bmap = isl_basic_map_alloc_space(space_result,
10739 bmap1->n_div + bmap2->n_div,
10740 bmap1->n_eq + bmap2->n_eq,
10741 bmap1->n_ineq + bmap2->n_ineq);
10742 bmap = isl_basic_map_add_constraints_dim_map(bmap, bmap1, dim_map1);
10743 bmap = isl_basic_map_add_constraints_dim_map(bmap, bmap2, dim_map2);
10744 bmap = isl_basic_map_simplify(bmap);
10745 return isl_basic_map_finalize(bmap);
10746 error:
10747 isl_basic_map_free(bmap1);
10748 isl_basic_map_free(bmap2);
10749 return NULL;
10752 __isl_give isl_basic_map *isl_basic_map_flat_product(
10753 __isl_take isl_basic_map *bmap1, __isl_take isl_basic_map *bmap2)
10755 isl_basic_map *prod;
10757 prod = isl_basic_map_product(bmap1, bmap2);
10758 prod = isl_basic_map_flatten(prod);
10759 return prod;
10762 __isl_give isl_basic_set *isl_basic_set_flat_product(
10763 __isl_take isl_basic_set *bset1, __isl_take isl_basic_set *bset2)
10765 return isl_basic_map_flat_range_product(bset1, bset2);
10768 __isl_give isl_basic_map *isl_basic_map_domain_product(
10769 __isl_take isl_basic_map *bmap1, __isl_take isl_basic_map *bmap2)
10771 isl_space *space1, *space2;
10772 isl_space *space_result = NULL;
10773 isl_basic_map *bmap;
10774 isl_size in1, in2, out, nparam;
10775 unsigned total, pos;
10776 struct isl_dim_map *dim_map1, *dim_map2;
10778 in1 = isl_basic_map_dim(bmap1, isl_dim_in);
10779 in2 = isl_basic_map_dim(bmap2, isl_dim_in);
10780 out = isl_basic_map_dim(bmap1, isl_dim_out);
10781 nparam = isl_basic_map_dim(bmap1, isl_dim_param);
10782 if (in1 < 0 || in2 < 0 || out < 0 || nparam < 0)
10783 goto error;
10785 space1 = isl_basic_map_get_space(bmap1);
10786 space2 = isl_basic_map_get_space(bmap2);
10787 space_result = isl_space_domain_product(space1, space2);
10789 total = nparam + in1 + in2 + out + bmap1->n_div + bmap2->n_div;
10790 dim_map1 = isl_dim_map_alloc(bmap1->ctx, total);
10791 dim_map2 = isl_dim_map_alloc(bmap1->ctx, total);
10792 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_param, pos = 0);
10793 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_param, pos = 0);
10794 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_in, pos += nparam);
10795 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_in, pos += in1);
10796 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_out, pos += in2);
10797 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_out, pos);
10798 isl_dim_map_div(dim_map1, bmap1, pos += out);
10799 isl_dim_map_div(dim_map2, bmap2, pos += bmap1->n_div);
10801 bmap = isl_basic_map_alloc_space(space_result,
10802 bmap1->n_div + bmap2->n_div,
10803 bmap1->n_eq + bmap2->n_eq,
10804 bmap1->n_ineq + bmap2->n_ineq);
10805 bmap = isl_basic_map_add_constraints_dim_map(bmap, bmap1, dim_map1);
10806 bmap = isl_basic_map_add_constraints_dim_map(bmap, bmap2, dim_map2);
10807 bmap = isl_basic_map_simplify(bmap);
10808 return isl_basic_map_finalize(bmap);
10809 error:
10810 isl_basic_map_free(bmap1);
10811 isl_basic_map_free(bmap2);
10812 return NULL;
10815 __isl_give isl_basic_map *isl_basic_map_range_product(
10816 __isl_take isl_basic_map *bmap1, __isl_take isl_basic_map *bmap2)
10818 isl_bool rational;
10819 isl_space *space_result = NULL;
10820 isl_basic_map *bmap;
10821 isl_size in, out1, out2, nparam;
10822 unsigned total, pos;
10823 struct isl_dim_map *dim_map1, *dim_map2;
10825 rational = isl_basic_map_is_rational(bmap1);
10826 if (rational >= 0 && rational)
10827 rational = isl_basic_map_is_rational(bmap2);
10828 in = isl_basic_map_dim(bmap1, isl_dim_in);
10829 out1 = isl_basic_map_dim(bmap1, isl_dim_out);
10830 out2 = isl_basic_map_dim(bmap2, isl_dim_out);
10831 nparam = isl_basic_map_dim(bmap1, isl_dim_param);
10832 if (in < 0 || out1 < 0 || out2 < 0 || nparam < 0 || rational < 0)
10833 goto error;
10835 if (isl_basic_map_check_equal_params(bmap1, bmap2) < 0)
10836 goto error;
10838 space_result = isl_space_range_product(isl_space_copy(bmap1->dim),
10839 isl_space_copy(bmap2->dim));
10841 total = nparam + in + out1 + out2 + bmap1->n_div + bmap2->n_div;
10842 dim_map1 = isl_dim_map_alloc(bmap1->ctx, total);
10843 dim_map2 = isl_dim_map_alloc(bmap1->ctx, total);
10844 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_param, pos = 0);
10845 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_param, pos = 0);
10846 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_in, pos += nparam);
10847 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_in, pos);
10848 isl_dim_map_dim(dim_map1, bmap1->dim, isl_dim_out, pos += in);
10849 isl_dim_map_dim(dim_map2, bmap2->dim, isl_dim_out, pos += out1);
10850 isl_dim_map_div(dim_map1, bmap1, pos += out2);
10851 isl_dim_map_div(dim_map2, bmap2, pos += bmap1->n_div);
10853 bmap = isl_basic_map_alloc_space(space_result,
10854 bmap1->n_div + bmap2->n_div,
10855 bmap1->n_eq + bmap2->n_eq,
10856 bmap1->n_ineq + bmap2->n_ineq);
10857 bmap = isl_basic_map_add_constraints_dim_map(bmap, bmap1, dim_map1);
10858 bmap = isl_basic_map_add_constraints_dim_map(bmap, bmap2, dim_map2);
10859 if (rational)
10860 bmap = isl_basic_map_set_rational(bmap);
10861 bmap = isl_basic_map_simplify(bmap);
10862 return isl_basic_map_finalize(bmap);
10863 error:
10864 isl_basic_map_free(bmap1);
10865 isl_basic_map_free(bmap2);
10866 return NULL;
10869 __isl_give isl_basic_map *isl_basic_map_flat_range_product(
10870 __isl_take isl_basic_map *bmap1, __isl_take isl_basic_map *bmap2)
10872 isl_basic_map *prod;
10874 prod = isl_basic_map_range_product(bmap1, bmap2);
10875 prod = isl_basic_map_flatten_range(prod);
10876 return prod;
10879 /* Apply "basic_map_product" to each pair of basic maps in "map1" and "map2"
10880 * and collect the results.
10881 * The result live in the space obtained by calling "space_product"
10882 * on the spaces of "map1" and "map2".
10883 * If "remove_duplicates" is set then the result may contain duplicates
10884 * (even if the inputs do not) and so we try and remove the obvious
10885 * duplicates.
10887 static __isl_give isl_map *map_product(__isl_take isl_map *map1,
10888 __isl_take isl_map *map2,
10889 __isl_give isl_space *(*space_product)(__isl_take isl_space *left,
10890 __isl_take isl_space *right),
10891 __isl_give isl_basic_map *(*basic_map_product)(
10892 __isl_take isl_basic_map *left,
10893 __isl_take isl_basic_map *right),
10894 int remove_duplicates)
10896 unsigned flags = 0;
10897 struct isl_map *result;
10898 int i, j;
10899 isl_bool m;
10901 m = isl_map_has_equal_params(map1, map2);
10902 if (m < 0)
10903 goto error;
10904 if (!m)
10905 isl_die(isl_map_get_ctx(map1), isl_error_invalid,
10906 "parameters don't match", goto error);
10908 if (ISL_F_ISSET(map1, ISL_MAP_DISJOINT) &&
10909 ISL_F_ISSET(map2, ISL_MAP_DISJOINT))
10910 ISL_FL_SET(flags, ISL_MAP_DISJOINT);
10912 result = isl_map_alloc_space(space_product(isl_space_copy(map1->dim),
10913 isl_space_copy(map2->dim)),
10914 map1->n * map2->n, flags);
10915 if (!result)
10916 goto error;
10917 for (i = 0; i < map1->n; ++i)
10918 for (j = 0; j < map2->n; ++j) {
10919 struct isl_basic_map *part;
10920 part = basic_map_product(isl_basic_map_copy(map1->p[i]),
10921 isl_basic_map_copy(map2->p[j]));
10922 if (isl_basic_map_is_empty(part))
10923 isl_basic_map_free(part);
10924 else
10925 result = isl_map_add_basic_map(result, part);
10926 if (!result)
10927 goto error;
10929 if (remove_duplicates)
10930 result = isl_map_remove_obvious_duplicates(result);
10931 isl_map_free(map1);
10932 isl_map_free(map2);
10933 return result;
10934 error:
10935 isl_map_free(map1);
10936 isl_map_free(map2);
10937 return NULL;
10940 /* Given two maps A -> B and C -> D, construct a map [A -> C] -> [B -> D]
10942 __isl_give isl_map *isl_map_product(__isl_take isl_map *map1,
10943 __isl_take isl_map *map2)
10945 isl_map_align_params_bin(&map1, &map2);
10946 return map_product(map1, map2, &isl_space_product,
10947 &isl_basic_map_product, 0);
10950 /* Given two maps A -> B and C -> D, construct a map (A, C) -> (B, D)
10952 __isl_give isl_map *isl_map_flat_product(__isl_take isl_map *map1,
10953 __isl_take isl_map *map2)
10955 isl_map *prod;
10957 prod = isl_map_product(map1, map2);
10958 prod = isl_map_flatten(prod);
10959 return prod;
10962 /* Given two set A and B, construct its Cartesian product A x B.
10964 __isl_give isl_set *isl_set_product(__isl_take isl_set *set1,
10965 __isl_take isl_set *set2)
10967 return isl_map_range_product(set1, set2);
10970 __isl_give isl_set *isl_set_flat_product(__isl_take isl_set *set1,
10971 __isl_take isl_set *set2)
10973 return isl_map_flat_range_product(set1, set2);
10976 /* Given two maps A -> B and C -> D, construct a map [A -> C] -> (B * D)
10978 __isl_give isl_map *isl_map_domain_product(__isl_take isl_map *map1,
10979 __isl_take isl_map *map2)
10981 isl_map_align_params_bin(&map1, &map2);
10982 return map_product(map1, map2, &isl_space_domain_product,
10983 &isl_basic_map_domain_product, 1);
10986 /* Given two maps A -> B and C -> D, construct a map (A * C) -> [B -> D]
10988 __isl_give isl_map *isl_map_range_product(__isl_take isl_map *map1,
10989 __isl_take isl_map *map2)
10991 isl_map_align_params_bin(&map1, &map2);
10992 return map_product(map1, map2, &isl_space_range_product,
10993 &isl_basic_map_range_product, 1);
10996 /* Given a map of the form [A -> B] -> [C -> D], return the map A -> C.
10998 __isl_give isl_map *isl_map_factor_domain(__isl_take isl_map *map)
11000 isl_space *space;
11001 isl_size total1, keep1, total2, keep2;
11003 total1 = isl_map_dim(map, isl_dim_in);
11004 total2 = isl_map_dim(map, isl_dim_out);
11005 if (total1 < 0 || total2 < 0)
11006 return isl_map_free(map);
11007 if (!isl_space_domain_is_wrapping(map->dim) ||
11008 !isl_space_range_is_wrapping(map->dim))
11009 isl_die(isl_map_get_ctx(map), isl_error_invalid,
11010 "not a product", return isl_map_free(map));
11012 space = isl_map_get_space(map);
11013 space = isl_space_factor_domain(space);
11014 keep1 = isl_space_dim(space, isl_dim_in);
11015 keep2 = isl_space_dim(space, isl_dim_out);
11016 if (keep1 < 0 || keep2 < 0)
11017 map = isl_map_free(map);
11018 map = isl_map_project_out(map, isl_dim_in, keep1, total1 - keep1);
11019 map = isl_map_project_out(map, isl_dim_out, keep2, total2 - keep2);
11020 map = isl_map_reset_space(map, space);
11022 return map;
11025 /* Given a map of the form [A -> B] -> [C -> D], return the map B -> D.
11027 __isl_give isl_map *isl_map_factor_range(__isl_take isl_map *map)
11029 isl_space *space;
11030 isl_size total1, keep1, total2, keep2;
11032 total1 = isl_map_dim(map, isl_dim_in);
11033 total2 = isl_map_dim(map, isl_dim_out);
11034 if (total1 < 0 || total2 < 0)
11035 return isl_map_free(map);
11036 if (!isl_space_domain_is_wrapping(map->dim) ||
11037 !isl_space_range_is_wrapping(map->dim))
11038 isl_die(isl_map_get_ctx(map), isl_error_invalid,
11039 "not a product", return isl_map_free(map));
11041 space = isl_map_get_space(map);
11042 space = isl_space_factor_range(space);
11043 keep1 = isl_space_dim(space, isl_dim_in);
11044 keep2 = isl_space_dim(space, isl_dim_out);
11045 if (keep1 < 0 || keep2 < 0)
11046 map = isl_map_free(map);
11047 map = isl_map_project_out(map, isl_dim_in, 0, total1 - keep1);
11048 map = isl_map_project_out(map, isl_dim_out, 0, total2 - keep2);
11049 map = isl_map_reset_space(map, space);
11051 return map;
11054 /* Given a map of the form [A -> B] -> C, return the map A -> C.
11056 __isl_give isl_map *isl_map_domain_factor_domain(__isl_take isl_map *map)
11058 isl_space *space;
11059 isl_size total, keep;
11061 total = isl_map_dim(map, isl_dim_in);
11062 if (total < 0)
11063 return isl_map_free(map);
11064 if (!isl_space_domain_is_wrapping(map->dim))
11065 isl_die(isl_map_get_ctx(map), isl_error_invalid,
11066 "domain is not a product", return isl_map_free(map));
11068 space = isl_map_get_space(map);
11069 space = isl_space_domain_factor_domain(space);
11070 keep = isl_space_dim(space, isl_dim_in);
11071 if (keep < 0)
11072 map = isl_map_free(map);
11073 map = isl_map_project_out(map, isl_dim_in, keep, total - keep);
11074 map = isl_map_reset_space(map, space);
11076 return map;
11079 /* Given a map of the form [A -> B] -> C, return the map B -> C.
11081 __isl_give isl_map *isl_map_domain_factor_range(__isl_take isl_map *map)
11083 isl_space *space;
11084 isl_size total, keep;
11086 total = isl_map_dim(map, isl_dim_in);
11087 if (total < 0)
11088 return isl_map_free(map);
11089 if (!isl_space_domain_is_wrapping(map->dim))
11090 isl_die(isl_map_get_ctx(map), isl_error_invalid,
11091 "domain is not a product", return isl_map_free(map));
11093 space = isl_map_get_space(map);
11094 space = isl_space_domain_factor_range(space);
11095 keep = isl_space_dim(space, isl_dim_in);
11096 if (keep < 0)
11097 map = isl_map_free(map);
11098 map = isl_map_project_out(map, isl_dim_in, 0, total - keep);
11099 map = isl_map_reset_space(map, space);
11101 return map;
11104 /* Given a map A -> [B -> C], extract the map A -> B.
11106 __isl_give isl_map *isl_map_range_factor_domain(__isl_take isl_map *map)
11108 isl_space *space;
11109 isl_size total, keep;
11111 total = isl_map_dim(map, isl_dim_out);
11112 if (total < 0)
11113 return isl_map_free(map);
11114 if (!isl_space_range_is_wrapping(map->dim))
11115 isl_die(isl_map_get_ctx(map), isl_error_invalid,
11116 "range is not a product", return isl_map_free(map));
11118 space = isl_map_get_space(map);
11119 space = isl_space_range_factor_domain(space);
11120 keep = isl_space_dim(space, isl_dim_out);
11121 if (keep < 0)
11122 map = isl_map_free(map);
11123 map = isl_map_project_out(map, isl_dim_out, keep, total - keep);
11124 map = isl_map_reset_space(map, space);
11126 return map;
11129 /* Given a map A -> [B -> C], extract the map A -> C.
11131 __isl_give isl_map *isl_map_range_factor_range(__isl_take isl_map *map)
11133 isl_space *space;
11134 isl_size total, keep;
11136 total = isl_map_dim(map, isl_dim_out);
11137 if (total < 0)
11138 return isl_map_free(map);
11139 if (!isl_space_range_is_wrapping(map->dim))
11140 isl_die(isl_map_get_ctx(map), isl_error_invalid,
11141 "range is not a product", return isl_map_free(map));
11143 space = isl_map_get_space(map);
11144 space = isl_space_range_factor_range(space);
11145 keep = isl_space_dim(space, isl_dim_out);
11146 if (keep < 0)
11147 map = isl_map_free(map);
11148 map = isl_map_project_out(map, isl_dim_out, 0, total - keep);
11149 map = isl_map_reset_space(map, space);
11151 return map;
11154 /* Given two maps A -> B and C -> D, construct a map (A, C) -> (B * D)
11156 __isl_give isl_map *isl_map_flat_domain_product(__isl_take isl_map *map1,
11157 __isl_take isl_map *map2)
11159 isl_map *prod;
11161 prod = isl_map_domain_product(map1, map2);
11162 prod = isl_map_flatten_domain(prod);
11163 return prod;
11166 /* Given two maps A -> B and C -> D, construct a map (A * C) -> (B, D)
11168 __isl_give isl_map *isl_map_flat_range_product(__isl_take isl_map *map1,
11169 __isl_take isl_map *map2)
11171 isl_map *prod;
11173 prod = isl_map_range_product(map1, map2);
11174 prod = isl_map_flatten_range(prod);
11175 return prod;
11178 uint32_t isl_basic_map_get_hash(__isl_keep isl_basic_map *bmap)
11180 int i;
11181 uint32_t hash = isl_hash_init();
11182 isl_size total;
11184 if (!bmap)
11185 return 0;
11186 bmap = isl_basic_map_copy(bmap);
11187 bmap = isl_basic_map_normalize(bmap);
11188 total = isl_basic_map_dim(bmap, isl_dim_all);
11189 if (total < 0)
11190 return 0;
11191 isl_hash_byte(hash, bmap->n_eq & 0xFF);
11192 for (i = 0; i < bmap->n_eq; ++i) {
11193 uint32_t c_hash;
11194 c_hash = isl_seq_get_hash(bmap->eq[i], 1 + total);
11195 isl_hash_hash(hash, c_hash);
11197 isl_hash_byte(hash, bmap->n_ineq & 0xFF);
11198 for (i = 0; i < bmap->n_ineq; ++i) {
11199 uint32_t c_hash;
11200 c_hash = isl_seq_get_hash(bmap->ineq[i], 1 + total);
11201 isl_hash_hash(hash, c_hash);
11203 isl_hash_byte(hash, bmap->n_div & 0xFF);
11204 for (i = 0; i < bmap->n_div; ++i) {
11205 uint32_t c_hash;
11206 if (isl_int_is_zero(bmap->div[i][0]))
11207 continue;
11208 isl_hash_byte(hash, i & 0xFF);
11209 c_hash = isl_seq_get_hash(bmap->div[i], 1 + 1 + total);
11210 isl_hash_hash(hash, c_hash);
11212 isl_basic_map_free(bmap);
11213 return hash;
11216 uint32_t isl_basic_set_get_hash(__isl_keep isl_basic_set *bset)
11218 return isl_basic_map_get_hash(bset_to_bmap(bset));
11221 uint32_t isl_map_get_hash(__isl_keep isl_map *map)
11223 int i;
11224 uint32_t hash;
11226 if (!map)
11227 return 0;
11228 map = isl_map_copy(map);
11229 map = isl_map_normalize(map);
11230 if (!map)
11231 return 0;
11233 hash = isl_hash_init();
11234 for (i = 0; i < map->n; ++i) {
11235 uint32_t bmap_hash;
11236 bmap_hash = isl_basic_map_get_hash(map->p[i]);
11237 isl_hash_hash(hash, bmap_hash);
11240 isl_map_free(map);
11242 return hash;
11245 uint32_t isl_set_get_hash(__isl_keep isl_set *set)
11247 return isl_map_get_hash(set_to_map(set));
11250 /* Return the number of basic maps in the (current) representation of "map".
11252 isl_size isl_map_n_basic_map(__isl_keep isl_map *map)
11254 return map ? map->n : isl_size_error;
11257 isl_size isl_set_n_basic_set(__isl_keep isl_set *set)
11259 return set ? set->n : isl_size_error;
11262 isl_stat isl_map_foreach_basic_map(__isl_keep isl_map *map,
11263 isl_stat (*fn)(__isl_take isl_basic_map *bmap, void *user), void *user)
11265 int i;
11267 if (!map)
11268 return isl_stat_error;
11270 for (i = 0; i < map->n; ++i)
11271 if (fn(isl_basic_map_copy(map->p[i]), user) < 0)
11272 return isl_stat_error;
11274 return isl_stat_ok;
11277 isl_stat isl_set_foreach_basic_set(__isl_keep isl_set *set,
11278 isl_stat (*fn)(__isl_take isl_basic_set *bset, void *user), void *user)
11280 int i;
11282 if (!set)
11283 return isl_stat_error;
11285 for (i = 0; i < set->n; ++i)
11286 if (fn(isl_basic_set_copy(set->p[i]), user) < 0)
11287 return isl_stat_error;
11289 return isl_stat_ok;
11292 /* Does "test" succeed on every basic set in "set"?
11294 isl_bool isl_set_every_basic_set(__isl_keep isl_set *set,
11295 isl_bool (*test)(__isl_keep isl_basic_set *bset, void *user),
11296 void *user)
11298 int i;
11300 if (!set)
11301 return isl_bool_error;
11303 for (i = 0; i < set->n; ++i) {
11304 isl_bool r;
11306 r = test(set->p[i], user);
11307 if (r < 0 || !r)
11308 return r;
11311 return isl_bool_true;
11314 /* Return a list of basic sets, the union of which is equal to "set".
11316 __isl_give isl_basic_set_list *isl_set_get_basic_set_list(
11317 __isl_keep isl_set *set)
11319 int i;
11320 isl_basic_set_list *list;
11322 if (!set)
11323 return NULL;
11325 list = isl_basic_set_list_alloc(isl_set_get_ctx(set), set->n);
11326 for (i = 0; i < set->n; ++i) {
11327 isl_basic_set *bset;
11329 bset = isl_basic_set_copy(set->p[i]);
11330 list = isl_basic_set_list_add(list, bset);
11333 return list;
11336 __isl_give isl_basic_set *isl_basic_set_lift(__isl_take isl_basic_set *bset)
11338 isl_space *space;
11340 if (!bset)
11341 return NULL;
11343 bset = isl_basic_set_cow(bset);
11344 if (!bset)
11345 return NULL;
11347 space = isl_basic_set_get_space(bset);
11348 space = isl_space_lift(space, bset->n_div);
11349 if (!space)
11350 goto error;
11351 isl_space_free(bset->dim);
11352 bset->dim = space;
11353 bset->extra -= bset->n_div;
11354 bset->n_div = 0;
11356 bset = isl_basic_set_finalize(bset);
11358 return bset;
11359 error:
11360 isl_basic_set_free(bset);
11361 return NULL;
11364 __isl_give isl_set *isl_set_lift(__isl_take isl_set *set)
11366 int i;
11367 isl_space *space;
11368 unsigned n_div;
11370 set = set_from_map(isl_map_align_divs_internal(set_to_map(set)));
11372 if (!set)
11373 return NULL;
11375 set = isl_set_cow(set);
11376 if (!set)
11377 return NULL;
11379 n_div = set->p[0]->n_div;
11380 space = isl_set_get_space(set);
11381 space = isl_space_lift(space, n_div);
11382 if (!space)
11383 goto error;
11384 isl_space_free(set->dim);
11385 set->dim = space;
11387 for (i = 0; i < set->n; ++i) {
11388 set->p[i] = isl_basic_set_lift(set->p[i]);
11389 if (!set->p[i])
11390 goto error;
11393 return set;
11394 error:
11395 isl_set_free(set);
11396 return NULL;
11399 int isl_basic_set_size(__isl_keep isl_basic_set *bset)
11401 isl_size dim;
11402 int size = 0;
11404 dim = isl_basic_set_dim(bset, isl_dim_all);
11405 if (dim < 0)
11406 return -1;
11407 size += bset->n_eq * (1 + dim);
11408 size += bset->n_ineq * (1 + dim);
11409 size += bset->n_div * (2 + dim);
11411 return size;
11414 int isl_set_size(__isl_keep isl_set *set)
11416 int i;
11417 int size = 0;
11419 if (!set)
11420 return -1;
11422 for (i = 0; i < set->n; ++i)
11423 size += isl_basic_set_size(set->p[i]);
11425 return size;
11428 /* Check if there is any lower bound (if lower == 0) and/or upper
11429 * bound (if upper == 0) on the specified dim.
11431 static isl_bool basic_map_dim_is_bounded(__isl_keep isl_basic_map *bmap,
11432 enum isl_dim_type type, unsigned pos, int lower, int upper)
11434 int i;
11436 if (isl_basic_map_check_range(bmap, type, pos, 1) < 0)
11437 return isl_bool_error;
11439 pos += isl_basic_map_offset(bmap, type);
11441 for (i = 0; i < bmap->n_div; ++i) {
11442 if (isl_int_is_zero(bmap->div[i][0]))
11443 continue;
11444 if (!isl_int_is_zero(bmap->div[i][1 + pos]))
11445 return isl_bool_true;
11448 for (i = 0; i < bmap->n_eq; ++i)
11449 if (!isl_int_is_zero(bmap->eq[i][pos]))
11450 return isl_bool_true;
11452 for (i = 0; i < bmap->n_ineq; ++i) {
11453 int sgn = isl_int_sgn(bmap->ineq[i][pos]);
11454 if (sgn > 0)
11455 lower = 1;
11456 if (sgn < 0)
11457 upper = 1;
11460 return lower && upper;
11463 isl_bool isl_basic_map_dim_is_bounded(__isl_keep isl_basic_map *bmap,
11464 enum isl_dim_type type, unsigned pos)
11466 return basic_map_dim_is_bounded(bmap, type, pos, 0, 0);
11469 isl_bool isl_basic_map_dim_has_lower_bound(__isl_keep isl_basic_map *bmap,
11470 enum isl_dim_type type, unsigned pos)
11472 return basic_map_dim_is_bounded(bmap, type, pos, 0, 1);
11475 isl_bool isl_basic_map_dim_has_upper_bound(__isl_keep isl_basic_map *bmap,
11476 enum isl_dim_type type, unsigned pos)
11478 return basic_map_dim_is_bounded(bmap, type, pos, 1, 0);
11481 isl_bool isl_map_dim_is_bounded(__isl_keep isl_map *map,
11482 enum isl_dim_type type, unsigned pos)
11484 int i;
11486 if (!map)
11487 return isl_bool_error;
11489 for (i = 0; i < map->n; ++i) {
11490 isl_bool bounded;
11491 bounded = isl_basic_map_dim_is_bounded(map->p[i], type, pos);
11492 if (bounded < 0 || !bounded)
11493 return bounded;
11496 return isl_bool_true;
11499 /* Return true if the specified dim is involved in both an upper bound
11500 * and a lower bound.
11502 isl_bool isl_set_dim_is_bounded(__isl_keep isl_set *set,
11503 enum isl_dim_type type, unsigned pos)
11505 return isl_map_dim_is_bounded(set_to_map(set), type, pos);
11508 /* Does "map" have a bound (according to "fn") for any of its basic maps?
11510 static isl_bool has_any_bound(__isl_keep isl_map *map,
11511 enum isl_dim_type type, unsigned pos,
11512 isl_bool (*fn)(__isl_keep isl_basic_map *bmap,
11513 enum isl_dim_type type, unsigned pos))
11515 int i;
11517 if (!map)
11518 return isl_bool_error;
11520 for (i = 0; i < map->n; ++i) {
11521 isl_bool bounded;
11522 bounded = fn(map->p[i], type, pos);
11523 if (bounded < 0 || bounded)
11524 return bounded;
11527 return isl_bool_false;
11530 /* Return 1 if the specified dim is involved in any lower bound.
11532 isl_bool isl_set_dim_has_any_lower_bound(__isl_keep isl_set *set,
11533 enum isl_dim_type type, unsigned pos)
11535 return has_any_bound(set, type, pos,
11536 &isl_basic_map_dim_has_lower_bound);
11539 /* Return 1 if the specified dim is involved in any upper bound.
11541 isl_bool isl_set_dim_has_any_upper_bound(__isl_keep isl_set *set,
11542 enum isl_dim_type type, unsigned pos)
11544 return has_any_bound(set, type, pos,
11545 &isl_basic_map_dim_has_upper_bound);
11548 /* Does "map" have a bound (according to "fn") for all of its basic maps?
11550 static isl_bool has_bound(__isl_keep isl_map *map,
11551 enum isl_dim_type type, unsigned pos,
11552 isl_bool (*fn)(__isl_keep isl_basic_map *bmap,
11553 enum isl_dim_type type, unsigned pos))
11555 int i;
11557 if (!map)
11558 return isl_bool_error;
11560 for (i = 0; i < map->n; ++i) {
11561 isl_bool bounded;
11562 bounded = fn(map->p[i], type, pos);
11563 if (bounded < 0 || !bounded)
11564 return bounded;
11567 return isl_bool_true;
11570 /* Return 1 if the specified dim has a lower bound (in each of its basic sets).
11572 isl_bool isl_set_dim_has_lower_bound(__isl_keep isl_set *set,
11573 enum isl_dim_type type, unsigned pos)
11575 return has_bound(set, type, pos, &isl_basic_map_dim_has_lower_bound);
11578 /* Return 1 if the specified dim has an upper bound (in each of its basic sets).
11580 isl_bool isl_set_dim_has_upper_bound(__isl_keep isl_set *set,
11581 enum isl_dim_type type, unsigned pos)
11583 return has_bound(set, type, pos, &isl_basic_map_dim_has_upper_bound);
11586 /* For each of the "n" variables starting at "first", determine
11587 * the sign of the variable and put the results in the first "n"
11588 * elements of the array "signs".
11589 * Sign
11590 * 1 means that the variable is non-negative
11591 * -1 means that the variable is non-positive
11592 * 0 means the variable attains both positive and negative values.
11594 isl_stat isl_basic_set_vars_get_sign(__isl_keep isl_basic_set *bset,
11595 unsigned first, unsigned n, int *signs)
11597 isl_vec *bound = NULL;
11598 struct isl_tab *tab = NULL;
11599 struct isl_tab_undo *snap;
11600 int i;
11601 isl_size total;
11603 total = isl_basic_set_dim(bset, isl_dim_all);
11604 if (total < 0 || !signs)
11605 return isl_stat_error;
11607 bound = isl_vec_alloc(bset->ctx, 1 + total);
11608 tab = isl_tab_from_basic_set(bset, 0);
11609 if (!bound || !tab)
11610 goto error;
11612 isl_seq_clr(bound->el, bound->size);
11613 isl_int_set_si(bound->el[0], -1);
11615 snap = isl_tab_snap(tab);
11616 for (i = 0; i < n; ++i) {
11617 int empty;
11619 isl_int_set_si(bound->el[1 + first + i], -1);
11620 if (isl_tab_add_ineq(tab, bound->el) < 0)
11621 goto error;
11622 empty = tab->empty;
11623 isl_int_set_si(bound->el[1 + first + i], 0);
11624 if (isl_tab_rollback(tab, snap) < 0)
11625 goto error;
11627 if (empty) {
11628 signs[i] = 1;
11629 continue;
11632 isl_int_set_si(bound->el[1 + first + i], 1);
11633 if (isl_tab_add_ineq(tab, bound->el) < 0)
11634 goto error;
11635 empty = tab->empty;
11636 isl_int_set_si(bound->el[1 + first + i], 0);
11637 if (isl_tab_rollback(tab, snap) < 0)
11638 goto error;
11640 signs[i] = empty ? -1 : 0;
11643 isl_tab_free(tab);
11644 isl_vec_free(bound);
11645 return isl_stat_ok;
11646 error:
11647 isl_tab_free(tab);
11648 isl_vec_free(bound);
11649 return isl_stat_error;
11652 isl_stat isl_basic_set_dims_get_sign(__isl_keep isl_basic_set *bset,
11653 enum isl_dim_type type, unsigned first, unsigned n, int *signs)
11655 if (!bset || !signs)
11656 return isl_stat_error;
11657 if (isl_basic_set_check_range(bset, type, first, n) < 0)
11658 return isl_stat_error;
11660 first += pos(bset->dim, type) - 1;
11661 return isl_basic_set_vars_get_sign(bset, first, n, signs);
11664 /* Is it possible for the integer division "div" to depend (possibly
11665 * indirectly) on any output dimensions?
11667 * If the div is undefined, then we conservatively assume that it
11668 * may depend on them.
11669 * Otherwise, we check if it actually depends on them or on any integer
11670 * divisions that may depend on them.
11672 static isl_bool div_may_involve_output(__isl_keep isl_basic_map *bmap, int div)
11674 int i;
11675 isl_size n_out, n_div;
11676 unsigned o_out, o_div;
11678 if (isl_int_is_zero(bmap->div[div][0]))
11679 return isl_bool_true;
11681 n_out = isl_basic_map_dim(bmap, isl_dim_out);
11682 if (n_out < 0)
11683 return isl_bool_error;
11684 o_out = isl_basic_map_offset(bmap, isl_dim_out);
11686 if (isl_seq_first_non_zero(bmap->div[div] + 1 + o_out, n_out) != -1)
11687 return isl_bool_true;
11689 n_div = isl_basic_map_dim(bmap, isl_dim_div);
11690 if (n_div < 0)
11691 return isl_bool_error;
11692 o_div = isl_basic_map_offset(bmap, isl_dim_div);
11694 for (i = 0; i < n_div; ++i) {
11695 isl_bool may_involve;
11697 if (isl_int_is_zero(bmap->div[div][1 + o_div + i]))
11698 continue;
11699 may_involve = div_may_involve_output(bmap, i);
11700 if (may_involve < 0 || may_involve)
11701 return may_involve;
11704 return isl_bool_false;
11707 /* Return the first integer division of "bmap" in the range
11708 * [first, first + n[ that may depend on any output dimensions and
11709 * that has a non-zero coefficient in "c" (where the first coefficient
11710 * in "c" corresponds to integer division "first").
11712 static int first_div_may_involve_output(__isl_keep isl_basic_map *bmap,
11713 isl_int *c, int first, int n)
11715 int k;
11717 if (!bmap)
11718 return -1;
11720 for (k = first; k < first + n; ++k) {
11721 isl_bool may_involve;
11723 if (isl_int_is_zero(c[k]))
11724 continue;
11725 may_involve = div_may_involve_output(bmap, k);
11726 if (may_involve < 0)
11727 return -1;
11728 if (may_involve)
11729 return k;
11732 return first + n;
11735 /* Look for a pair of inequality constraints in "bmap" of the form
11737 * -l + i >= 0 or i >= l
11738 * and
11739 * n + l - i >= 0 or i <= l + n
11741 * with n < "m" and i the output dimension at position "pos".
11742 * (Note that n >= 0 as otherwise the two constraints would conflict.)
11743 * Furthermore, "l" is only allowed to involve parameters, input dimensions
11744 * and earlier output dimensions, as well as integer divisions that do
11745 * not involve any of the output dimensions.
11747 * Return the index of the first inequality constraint or bmap->n_ineq
11748 * if no such pair can be found.
11750 static int find_modulo_constraint_pair(__isl_keep isl_basic_map *bmap,
11751 int pos, isl_int m)
11753 int i, j;
11754 isl_ctx *ctx;
11755 isl_size total;
11756 isl_size n_div, n_out;
11757 unsigned o_div, o_out;
11758 int less;
11760 total = isl_basic_map_dim(bmap, isl_dim_all);
11761 n_out = isl_basic_map_dim(bmap, isl_dim_out);
11762 n_div = isl_basic_map_dim(bmap, isl_dim_div);
11763 if (total < 0 || n_out < 0 || n_div < 0)
11764 return -1;
11766 ctx = isl_basic_map_get_ctx(bmap);
11767 o_out = isl_basic_map_offset(bmap, isl_dim_out);
11768 o_div = isl_basic_map_offset(bmap, isl_dim_div);
11769 for (i = 0; i < bmap->n_ineq; ++i) {
11770 if (!isl_int_abs_eq(bmap->ineq[i][o_out + pos], ctx->one))
11771 continue;
11772 if (isl_seq_first_non_zero(bmap->ineq[i] + o_out + pos + 1,
11773 n_out - (pos + 1)) != -1)
11774 continue;
11775 if (first_div_may_involve_output(bmap, bmap->ineq[i] + o_div,
11776 0, n_div) < n_div)
11777 continue;
11778 for (j = i + 1; j < bmap->n_ineq; ++j) {
11779 if (!isl_int_abs_eq(bmap->ineq[j][o_out + pos],
11780 ctx->one))
11781 continue;
11782 if (!isl_seq_is_neg(bmap->ineq[i] + 1,
11783 bmap->ineq[j] + 1, total))
11784 continue;
11785 break;
11787 if (j >= bmap->n_ineq)
11788 continue;
11789 isl_int_add(bmap->ineq[i][0],
11790 bmap->ineq[i][0], bmap->ineq[j][0]);
11791 less = isl_int_abs_lt(bmap->ineq[i][0], m);
11792 isl_int_sub(bmap->ineq[i][0],
11793 bmap->ineq[i][0], bmap->ineq[j][0]);
11794 if (!less)
11795 continue;
11796 if (isl_int_is_one(bmap->ineq[i][o_out + pos]))
11797 return i;
11798 else
11799 return j;
11802 return bmap->n_ineq;
11805 /* Return the index of the equality of "bmap" that defines
11806 * the output dimension "pos" in terms of earlier dimensions.
11807 * The equality may also involve integer divisions, as long
11808 * as those integer divisions are defined in terms of
11809 * parameters or input dimensions.
11810 * In this case, *div is set to the number of integer divisions and
11811 * *ineq is set to the number of inequality constraints (provided
11812 * div and ineq are not NULL).
11814 * The equality may also involve a single integer division involving
11815 * the output dimensions (typically only output dimension "pos") as
11816 * long as the coefficient of output dimension "pos" is 1 or -1 and
11817 * there is a pair of constraints i >= l and i <= l + n, with i referring
11818 * to output dimension "pos", l an expression involving only earlier
11819 * dimensions and n smaller than the coefficient of the integer division
11820 * in the equality. In this case, the output dimension can be defined
11821 * in terms of a modulo expression that does not involve the integer division.
11822 * *div is then set to this single integer division and
11823 * *ineq is set to the index of constraint i >= l.
11825 * Return bmap->n_eq if there is no such equality.
11826 * Return -1 on error.
11828 int isl_basic_map_output_defining_equality(__isl_keep isl_basic_map *bmap,
11829 int pos, int *div, int *ineq)
11831 int j, k, l;
11832 isl_size n_div, n_out;
11833 unsigned o_div, o_out;
11835 n_out = isl_basic_map_dim(bmap, isl_dim_out);
11836 n_div = isl_basic_map_dim(bmap, isl_dim_div);
11837 if (n_out < 0 || n_div < 0)
11838 return -1;
11840 o_out = isl_basic_map_offset(bmap, isl_dim_out);
11841 o_div = isl_basic_map_offset(bmap, isl_dim_div);
11843 if (ineq)
11844 *ineq = bmap->n_ineq;
11845 if (div)
11846 *div = n_div;
11847 for (j = 0; j < bmap->n_eq; ++j) {
11848 if (isl_int_is_zero(bmap->eq[j][o_out + pos]))
11849 continue;
11850 if (isl_seq_first_non_zero(bmap->eq[j] + o_out + pos + 1,
11851 n_out - (pos + 1)) != -1)
11852 continue;
11853 k = first_div_may_involve_output(bmap, bmap->eq[j] + o_div,
11854 0, n_div);
11855 if (k >= n_div)
11856 return j;
11857 if (!isl_int_is_one(bmap->eq[j][o_out + pos]) &&
11858 !isl_int_is_negone(bmap->eq[j][o_out + pos]))
11859 continue;
11860 if (first_div_may_involve_output(bmap, bmap->eq[j] + o_div,
11861 k + 1, n_div - (k+1)) < n_div)
11862 continue;
11863 l = find_modulo_constraint_pair(bmap, pos,
11864 bmap->eq[j][o_div + k]);
11865 if (l < 0)
11866 return -1;
11867 if (l >= bmap->n_ineq)
11868 continue;
11869 if (div)
11870 *div = k;
11871 if (ineq)
11872 *ineq = l;
11873 return j;
11876 return bmap->n_eq;
11879 /* Check if the given basic map is obviously single-valued.
11880 * In particular, for each output dimension, check that there is
11881 * an equality that defines the output dimension in terms of
11882 * earlier dimensions.
11884 isl_bool isl_basic_map_plain_is_single_valued(__isl_keep isl_basic_map *bmap)
11886 int i;
11887 isl_size n_out;
11889 n_out = isl_basic_map_dim(bmap, isl_dim_out);
11890 if (n_out < 0)
11891 return isl_bool_error;
11893 for (i = 0; i < n_out; ++i) {
11894 int eq;
11896 eq = isl_basic_map_output_defining_equality(bmap, i,
11897 NULL, NULL);
11898 if (eq < 0)
11899 return isl_bool_error;
11900 if (eq >= bmap->n_eq)
11901 return isl_bool_false;
11904 return isl_bool_true;
11907 /* Check if the given basic map is single-valued.
11908 * We simply compute
11910 * M \circ M^-1
11912 * and check if the result is a subset of the identity mapping.
11914 isl_bool isl_basic_map_is_single_valued(__isl_keep isl_basic_map *bmap)
11916 isl_space *space;
11917 isl_basic_map *test;
11918 isl_basic_map *id;
11919 isl_bool sv;
11921 sv = isl_basic_map_plain_is_single_valued(bmap);
11922 if (sv < 0 || sv)
11923 return sv;
11925 test = isl_basic_map_reverse(isl_basic_map_copy(bmap));
11926 test = isl_basic_map_apply_range(test, isl_basic_map_copy(bmap));
11928 space = isl_basic_map_get_space(bmap);
11929 space = isl_space_map_from_set(isl_space_range(space));
11930 id = isl_basic_map_identity(space);
11932 sv = isl_basic_map_is_subset(test, id);
11934 isl_basic_map_free(test);
11935 isl_basic_map_free(id);
11937 return sv;
11940 /* Check if the given map is obviously single-valued.
11942 isl_bool isl_map_plain_is_single_valued(__isl_keep isl_map *map)
11944 if (!map)
11945 return isl_bool_error;
11946 if (map->n == 0)
11947 return isl_bool_true;
11948 if (map->n >= 2)
11949 return isl_bool_false;
11951 return isl_basic_map_plain_is_single_valued(map->p[0]);
11954 /* Check if the given map is single-valued.
11955 * We simply compute
11957 * M \circ M^-1
11959 * and check if the result is a subset of the identity mapping.
11961 isl_bool isl_map_is_single_valued(__isl_keep isl_map *map)
11963 isl_space *space;
11964 isl_map *test;
11965 isl_map *id;
11966 isl_bool sv;
11968 sv = isl_map_plain_is_single_valued(map);
11969 if (sv < 0 || sv)
11970 return sv;
11972 test = isl_map_reverse(isl_map_copy(map));
11973 test = isl_map_apply_range(test, isl_map_copy(map));
11975 space = isl_space_map_from_set(isl_space_range(isl_map_get_space(map)));
11976 id = isl_map_identity(space);
11978 sv = isl_map_is_subset(test, id);
11980 isl_map_free(test);
11981 isl_map_free(id);
11983 return sv;
11986 isl_bool isl_map_is_injective(__isl_keep isl_map *map)
11988 isl_bool in;
11990 map = isl_map_copy(map);
11991 map = isl_map_reverse(map);
11992 in = isl_map_is_single_valued(map);
11993 isl_map_free(map);
11995 return in;
11998 /* Check if the given map is obviously injective.
12000 isl_bool isl_map_plain_is_injective(__isl_keep isl_map *map)
12002 isl_bool in;
12004 map = isl_map_copy(map);
12005 map = isl_map_reverse(map);
12006 in = isl_map_plain_is_single_valued(map);
12007 isl_map_free(map);
12009 return in;
12012 isl_bool isl_map_is_bijective(__isl_keep isl_map *map)
12014 isl_bool sv;
12016 sv = isl_map_is_single_valued(map);
12017 if (sv < 0 || !sv)
12018 return sv;
12020 return isl_map_is_injective(map);
12023 isl_bool isl_set_is_singleton(__isl_keep isl_set *set)
12025 return isl_map_is_single_valued(set_to_map(set));
12028 /* Does "map" only map elements to themselves?
12030 * If the domain and range spaces are different, then "map"
12031 * is considered not to be an identity relation, even if it is empty.
12032 * Otherwise, construct the maximal identity relation and
12033 * check whether "map" is a subset of this relation.
12035 isl_bool isl_map_is_identity(__isl_keep isl_map *map)
12037 isl_map *id;
12038 isl_bool equal, is_identity;
12040 equal = isl_map_tuple_is_equal(map, isl_dim_in, map, isl_dim_out);
12041 if (equal < 0 || !equal)
12042 return equal;
12044 id = isl_map_identity(isl_map_get_space(map));
12045 is_identity = isl_map_is_subset(map, id);
12046 isl_map_free(id);
12048 return is_identity;
12051 int isl_map_is_translation(__isl_keep isl_map *map)
12053 int ok;
12054 isl_set *delta;
12056 delta = isl_map_deltas(isl_map_copy(map));
12057 ok = isl_set_is_singleton(delta);
12058 isl_set_free(delta);
12060 return ok;
12063 static int unique(isl_int *p, unsigned pos, unsigned len)
12065 if (isl_seq_first_non_zero(p, pos) != -1)
12066 return 0;
12067 if (isl_seq_first_non_zero(p + pos + 1, len - pos - 1) != -1)
12068 return 0;
12069 return 1;
12072 isl_bool isl_basic_set_is_box(__isl_keep isl_basic_set *bset)
12074 int i, j;
12075 isl_size nvar, n_div;
12076 unsigned ovar;
12078 n_div = isl_basic_set_dim(bset, isl_dim_div);
12079 if (n_div < 0)
12080 return isl_bool_error;
12081 if (n_div != 0)
12082 return isl_bool_false;
12084 nvar = isl_basic_set_dim(bset, isl_dim_set);
12085 if (nvar < 0)
12086 return isl_bool_error;
12087 ovar = isl_space_offset(bset->dim, isl_dim_set);
12088 for (j = 0; j < nvar; ++j) {
12089 int lower = 0, upper = 0;
12090 for (i = 0; i < bset->n_eq; ++i) {
12091 if (isl_int_is_zero(bset->eq[i][1 + ovar + j]))
12092 continue;
12093 if (!unique(bset->eq[i] + 1 + ovar, j, nvar))
12094 return isl_bool_false;
12095 break;
12097 if (i < bset->n_eq)
12098 continue;
12099 for (i = 0; i < bset->n_ineq; ++i) {
12100 if (isl_int_is_zero(bset->ineq[i][1 + ovar + j]))
12101 continue;
12102 if (!unique(bset->ineq[i] + 1 + ovar, j, nvar))
12103 return isl_bool_false;
12104 if (isl_int_is_pos(bset->ineq[i][1 + ovar + j]))
12105 lower = 1;
12106 else
12107 upper = 1;
12109 if (!lower || !upper)
12110 return isl_bool_false;
12113 return isl_bool_true;
12116 isl_bool isl_set_is_box(__isl_keep isl_set *set)
12118 if (!set)
12119 return isl_bool_error;
12120 if (set->n != 1)
12121 return isl_bool_false;
12123 return isl_basic_set_is_box(set->p[0]);
12126 isl_bool isl_basic_set_is_wrapping(__isl_keep isl_basic_set *bset)
12128 if (!bset)
12129 return isl_bool_error;
12131 return isl_space_is_wrapping(bset->dim);
12134 isl_bool isl_set_is_wrapping(__isl_keep isl_set *set)
12136 if (!set)
12137 return isl_bool_error;
12139 return isl_space_is_wrapping(set->dim);
12142 /* Modify the space of "map" through a call to "change".
12143 * If "can_change" is set (not NULL), then first call it to check
12144 * if the modification is allowed, printing the error message "cannot_change"
12145 * if it is not.
12147 static __isl_give isl_map *isl_map_change_space(__isl_take isl_map *map,
12148 isl_bool (*can_change)(__isl_keep isl_map *map),
12149 const char *cannot_change,
12150 __isl_give isl_space *(*change)(__isl_take isl_space *space))
12152 isl_bool ok;
12153 isl_space *space;
12155 if (!map)
12156 return NULL;
12158 ok = can_change ? can_change(map) : isl_bool_true;
12159 if (ok < 0)
12160 return isl_map_free(map);
12161 if (!ok)
12162 isl_die(isl_map_get_ctx(map), isl_error_invalid, cannot_change,
12163 return isl_map_free(map));
12165 space = change(isl_map_get_space(map));
12166 map = isl_map_reset_space(map, space);
12168 return map;
12171 /* Is the domain of "map" a wrapped relation?
12173 isl_bool isl_map_domain_is_wrapping(__isl_keep isl_map *map)
12175 if (!map)
12176 return isl_bool_error;
12178 return isl_space_domain_is_wrapping(map->dim);
12181 /* Does "map" have a wrapped relation in both domain and range?
12183 isl_bool isl_map_is_product(__isl_keep isl_map *map)
12185 return isl_space_is_product(isl_map_peek_space(map));
12188 /* Is the range of "map" a wrapped relation?
12190 isl_bool isl_map_range_is_wrapping(__isl_keep isl_map *map)
12192 if (!map)
12193 return isl_bool_error;
12195 return isl_space_range_is_wrapping(map->dim);
12198 __isl_give isl_basic_set *isl_basic_map_wrap(__isl_take isl_basic_map *bmap)
12200 isl_space *space;
12202 space = isl_basic_map_take_space(bmap);
12203 space = isl_space_wrap(space);
12204 bmap = isl_basic_map_restore_space(bmap, space);
12206 bmap = isl_basic_map_finalize(bmap);
12208 return bset_from_bmap(bmap);
12211 /* Given a map A -> B, return the set (A -> B).
12213 __isl_give isl_set *isl_map_wrap(__isl_take isl_map *map)
12215 return isl_map_change_space(map, NULL, NULL, &isl_space_wrap);
12218 __isl_give isl_basic_map *isl_basic_set_unwrap(__isl_take isl_basic_set *bset)
12220 bset = isl_basic_set_cow(bset);
12221 if (!bset)
12222 return NULL;
12224 bset->dim = isl_space_unwrap(bset->dim);
12225 if (!bset->dim)
12226 goto error;
12228 bset = isl_basic_set_finalize(bset);
12230 return bset_to_bmap(bset);
12231 error:
12232 isl_basic_set_free(bset);
12233 return NULL;
12236 /* Given a set (A -> B), return the map A -> B.
12237 * Error out if "set" is not of the form (A -> B).
12239 __isl_give isl_map *isl_set_unwrap(__isl_take isl_set *set)
12241 return isl_map_change_space(set, &isl_set_is_wrapping,
12242 "not a wrapping set", &isl_space_unwrap);
12245 __isl_give isl_basic_map *isl_basic_map_reset(__isl_take isl_basic_map *bmap,
12246 enum isl_dim_type type)
12248 isl_space *space;
12250 space = isl_basic_map_take_space(bmap);
12251 space = isl_space_reset(space, type);
12252 bmap = isl_basic_map_restore_space(bmap, space);
12254 bmap = isl_basic_map_mark_final(bmap);
12256 return bmap;
12259 __isl_give isl_map *isl_map_reset(__isl_take isl_map *map,
12260 enum isl_dim_type type)
12262 int i;
12263 isl_space *space;
12265 if (!map)
12266 return NULL;
12268 if (!isl_space_is_named_or_nested(map->dim, type))
12269 return map;
12271 map = isl_map_cow(map);
12272 if (!map)
12273 return NULL;
12275 for (i = 0; i < map->n; ++i) {
12276 map->p[i] = isl_basic_map_reset(map->p[i], type);
12277 if (!map->p[i])
12278 goto error;
12281 space = isl_map_take_space(map);
12282 space = isl_space_reset(space, type);
12283 map = isl_map_restore_space(map, space);
12285 return map;
12286 error:
12287 isl_map_free(map);
12288 return NULL;
12291 __isl_give isl_basic_map *isl_basic_map_flatten(__isl_take isl_basic_map *bmap)
12293 isl_space *space;
12295 space = isl_basic_map_take_space(bmap);
12296 space = isl_space_flatten(space);
12297 bmap = isl_basic_map_restore_space(bmap, space);
12299 bmap = isl_basic_map_mark_final(bmap);
12301 return bmap;
12304 __isl_give isl_basic_set *isl_basic_set_flatten(__isl_take isl_basic_set *bset)
12306 return bset_from_bmap(isl_basic_map_flatten(bset_to_bmap(bset)));
12309 __isl_give isl_basic_map *isl_basic_map_flatten_domain(
12310 __isl_take isl_basic_map *bmap)
12312 isl_space *space;
12314 space = isl_basic_map_take_space(bmap);
12315 space = isl_space_flatten_domain(space);
12316 bmap = isl_basic_map_restore_space(bmap, space);
12318 bmap = isl_basic_map_mark_final(bmap);
12320 return bmap;
12323 __isl_give isl_basic_map *isl_basic_map_flatten_range(
12324 __isl_take isl_basic_map *bmap)
12326 isl_space *space;
12328 space = isl_basic_map_take_space(bmap);
12329 space = isl_space_flatten_range(space);
12330 bmap = isl_basic_map_restore_space(bmap, space);
12332 bmap = isl_basic_map_mark_final(bmap);
12334 return bmap;
12337 /* Remove any internal structure from the spaces of domain and range of "map".
12339 __isl_give isl_map *isl_map_flatten(__isl_take isl_map *map)
12341 if (!map)
12342 return NULL;
12344 if (!map->dim->nested[0] && !map->dim->nested[1])
12345 return map;
12347 return isl_map_change_space(map, NULL, NULL, &isl_space_flatten);
12350 __isl_give isl_set *isl_set_flatten(__isl_take isl_set *set)
12352 return set_from_map(isl_map_flatten(set_to_map(set)));
12355 __isl_give isl_map *isl_set_flatten_map(__isl_take isl_set *set)
12357 isl_space *space, *flat_space;
12358 isl_map *map;
12360 space = isl_set_get_space(set);
12361 flat_space = isl_space_flatten(isl_space_copy(space));
12362 map = isl_map_identity(isl_space_join(isl_space_reverse(space),
12363 flat_space));
12364 map = isl_map_intersect_domain(map, set);
12366 return map;
12369 /* Remove any internal structure from the space of the domain of "map".
12371 __isl_give isl_map *isl_map_flatten_domain(__isl_take isl_map *map)
12373 if (!map)
12374 return NULL;
12376 if (!map->dim->nested[0])
12377 return map;
12379 return isl_map_change_space(map, NULL, NULL, &isl_space_flatten_domain);
12382 /* Remove any internal structure from the space of the range of "map".
12384 __isl_give isl_map *isl_map_flatten_range(__isl_take isl_map *map)
12386 if (!map)
12387 return NULL;
12389 if (!map->dim->nested[1])
12390 return map;
12392 return isl_map_change_space(map, NULL, NULL, &isl_space_flatten_range);
12395 /* Reorder the dimensions of "bmap" according to the given dim_map
12396 * and set the dimension specification to "space" and
12397 * perform Gaussian elimination on the result.
12399 __isl_give isl_basic_map *isl_basic_map_realign(__isl_take isl_basic_map *bmap,
12400 __isl_take isl_space *space, __isl_take struct isl_dim_map *dim_map)
12402 isl_basic_map *res;
12403 unsigned flags;
12404 isl_size n_div;
12406 n_div = isl_basic_map_dim(bmap, isl_dim_div);
12407 if (n_div < 0 || !space || !dim_map)
12408 goto error;
12410 flags = bmap->flags;
12411 ISL_FL_CLR(flags, ISL_BASIC_MAP_FINAL);
12412 ISL_FL_CLR(flags, ISL_BASIC_MAP_SORTED);
12413 ISL_FL_CLR(flags, ISL_BASIC_MAP_NORMALIZED_DIVS);
12414 res = isl_basic_map_alloc_space(space, n_div, bmap->n_eq, bmap->n_ineq);
12415 res = isl_basic_map_add_constraints_dim_map(res, bmap, dim_map);
12416 if (res)
12417 res->flags = flags;
12418 res = isl_basic_map_gauss(res, NULL);
12419 res = isl_basic_map_finalize(res);
12420 return res;
12421 error:
12422 isl_dim_map_free(dim_map);
12423 isl_basic_map_free(bmap);
12424 isl_space_free(space);
12425 return NULL;
12428 /* Reorder the dimensions of "map" according to given reordering.
12430 __isl_give isl_map *isl_map_realign(__isl_take isl_map *map,
12431 __isl_take isl_reordering *r)
12433 int i;
12434 struct isl_dim_map *dim_map;
12436 map = isl_map_cow(map);
12437 dim_map = isl_dim_map_from_reordering(r);
12438 if (!map || !r || !dim_map)
12439 goto error;
12441 for (i = 0; i < map->n; ++i) {
12442 struct isl_dim_map *dim_map_i;
12443 isl_space *space;
12445 dim_map_i = isl_dim_map_extend(dim_map, map->p[i]);
12447 space = isl_reordering_get_space(r);
12448 map->p[i] = isl_basic_map_realign(map->p[i], space, dim_map_i);
12450 if (!map->p[i])
12451 goto error;
12454 map = isl_map_reset_space(map, isl_reordering_get_space(r));
12455 map = isl_map_unmark_normalized(map);
12457 isl_reordering_free(r);
12458 isl_dim_map_free(dim_map);
12459 return map;
12460 error:
12461 isl_dim_map_free(dim_map);
12462 isl_map_free(map);
12463 isl_reordering_free(r);
12464 return NULL;
12467 __isl_give isl_set *isl_set_realign(__isl_take isl_set *set,
12468 __isl_take isl_reordering *r)
12470 return set_from_map(isl_map_realign(set_to_map(set), r));
12473 __isl_give isl_map *isl_map_align_params(__isl_take isl_map *map,
12474 __isl_take isl_space *model)
12476 isl_ctx *ctx;
12477 isl_bool aligned;
12479 if (!map || !model)
12480 goto error;
12482 ctx = isl_space_get_ctx(model);
12483 if (!isl_space_has_named_params(model))
12484 isl_die(ctx, isl_error_invalid,
12485 "model has unnamed parameters", goto error);
12486 if (isl_map_check_named_params(map) < 0)
12487 goto error;
12488 aligned = isl_map_space_has_equal_params(map, model);
12489 if (aligned < 0)
12490 goto error;
12491 if (!aligned) {
12492 isl_space *space;
12493 isl_reordering *exp;
12495 space = isl_map_peek_space(map);
12496 exp = isl_parameter_alignment_reordering(space, model);
12497 map = isl_map_realign(map, exp);
12500 isl_space_free(model);
12501 return map;
12502 error:
12503 isl_space_free(model);
12504 isl_map_free(map);
12505 return NULL;
12508 __isl_give isl_set *isl_set_align_params(__isl_take isl_set *set,
12509 __isl_take isl_space *model)
12511 return isl_map_align_params(set, model);
12514 /* Align the parameters of "bmap" to those of "model", introducing
12515 * additional parameters if needed.
12517 __isl_give isl_basic_map *isl_basic_map_align_params(
12518 __isl_take isl_basic_map *bmap, __isl_take isl_space *model)
12520 isl_ctx *ctx;
12521 isl_bool equal_params;
12522 isl_space *bmap_space;
12524 if (!bmap || !model)
12525 goto error;
12527 ctx = isl_space_get_ctx(model);
12528 if (!isl_space_has_named_params(model))
12529 isl_die(ctx, isl_error_invalid,
12530 "model has unnamed parameters", goto error);
12531 if (isl_basic_map_check_named_params(bmap) < 0)
12532 goto error;
12533 bmap_space = isl_basic_map_peek_space(bmap);
12534 equal_params = isl_space_has_equal_params(bmap_space, model);
12535 if (equal_params < 0)
12536 goto error;
12537 if (!equal_params) {
12538 isl_reordering *exp;
12539 struct isl_dim_map *dim_map;
12541 exp = isl_parameter_alignment_reordering(bmap_space, model);
12542 dim_map = isl_dim_map_from_reordering(exp);
12543 bmap = isl_basic_map_realign(bmap,
12544 isl_reordering_get_space(exp),
12545 isl_dim_map_extend(dim_map, bmap));
12546 isl_reordering_free(exp);
12547 isl_dim_map_free(dim_map);
12550 isl_space_free(model);
12551 return bmap;
12552 error:
12553 isl_space_free(model);
12554 isl_basic_map_free(bmap);
12555 return NULL;
12558 /* Do "bset" and "space" have the same parameters?
12560 isl_bool isl_basic_set_space_has_equal_params(__isl_keep isl_basic_set *bset,
12561 __isl_keep isl_space *space)
12563 isl_space *bset_space;
12565 bset_space = isl_basic_set_peek_space(bset);
12566 return isl_space_has_equal_params(bset_space, space);
12569 /* Do "map" and "space" have the same parameters?
12571 isl_bool isl_map_space_has_equal_params(__isl_keep isl_map *map,
12572 __isl_keep isl_space *space)
12574 isl_space *map_space;
12576 map_space = isl_map_peek_space(map);
12577 return isl_space_has_equal_params(map_space, space);
12580 /* Do "set" and "space" have the same parameters?
12582 isl_bool isl_set_space_has_equal_params(__isl_keep isl_set *set,
12583 __isl_keep isl_space *space)
12585 return isl_map_space_has_equal_params(set_to_map(set), space);
12588 /* Align the parameters of "bset" to those of "model", introducing
12589 * additional parameters if needed.
12591 __isl_give isl_basic_set *isl_basic_set_align_params(
12592 __isl_take isl_basic_set *bset, __isl_take isl_space *model)
12594 return isl_basic_map_align_params(bset, model);
12597 #undef TYPE
12598 #define TYPE isl_map
12599 #define isl_map_drop_dims isl_map_drop
12600 #include "isl_drop_unused_params_templ.c"
12602 /* Drop all parameters not referenced by "set".
12604 __isl_give isl_set *isl_set_drop_unused_params(
12605 __isl_take isl_set *set)
12607 return set_from_map(isl_map_drop_unused_params(set_to_map(set)));
12610 #undef TYPE
12611 #define TYPE isl_basic_map
12612 #define isl_basic_map_drop_dims isl_basic_map_drop
12613 #include "isl_drop_unused_params_templ.c"
12615 /* Drop all parameters not referenced by "bset".
12617 __isl_give isl_basic_set *isl_basic_set_drop_unused_params(
12618 __isl_take isl_basic_set *bset)
12620 return bset_from_bmap(isl_basic_map_drop_unused_params(
12621 bset_to_bmap(bset)));
12624 /* Given a tuple of identifiers "tuple" in a space that corresponds
12625 * to that of "set", if any of those identifiers appear as parameters
12626 * in "set", then equate those parameters with the corresponding
12627 * set dimensions and project out the parameters.
12628 * The result therefore has no such parameters.
12630 static __isl_give isl_set *equate_params(__isl_take isl_set *set,
12631 __isl_keep isl_multi_id *tuple)
12633 int i;
12634 isl_size n;
12635 isl_space *set_space, *tuple_space;
12637 set_space = isl_set_peek_space(set);
12638 tuple_space = isl_multi_id_peek_space(tuple);
12639 if (isl_space_check_equal_tuples(tuple_space, set_space) < 0)
12640 return isl_set_free(set);
12641 n = isl_multi_id_size(tuple);
12642 if (n < 0)
12643 return isl_set_free(set);
12644 for (i = 0; i < n; ++i) {
12645 isl_id *id;
12646 int pos;
12648 id = isl_multi_id_get_at(tuple, i);
12649 if (!id)
12650 return isl_set_free(set);
12651 pos = isl_set_find_dim_by_id(set, isl_dim_param, id);
12652 isl_id_free(id);
12653 if (pos < 0)
12654 continue;
12655 set = isl_set_equate(set, isl_dim_param, pos, isl_dim_set, i);
12656 set = isl_set_project_out(set, isl_dim_param, pos, 1);
12658 return set;
12661 /* Bind the set dimensions of "set" to parameters with identifiers
12662 * specified by "tuple", living in the same space as "set".
12664 * If no parameters with these identifiers appear in "set" already,
12665 * then the set dimensions are simply reinterpreted as parameters.
12666 * Otherwise, the parameters are first equated to the corresponding
12667 * set dimensions.
12669 __isl_give isl_set *isl_set_bind(__isl_take isl_set *set,
12670 __isl_take isl_multi_id *tuple)
12672 isl_space *space;
12674 set = equate_params(set, tuple);
12675 space = isl_set_get_space(set);
12676 space = isl_space_bind_set(space, tuple);
12677 isl_multi_id_free(tuple);
12678 set = isl_set_reset_space(set, space);
12680 return set;
12683 /* Given a tuple of identifiers "tuple" in a space that corresponds
12684 * to the domain of "map", if any of those identifiers appear as parameters
12685 * in "map", then equate those parameters with the corresponding
12686 * input dimensions and project out the parameters.
12687 * The result therefore has no such parameters.
12689 static __isl_give isl_map *map_equate_params(__isl_take isl_map *map,
12690 __isl_keep isl_multi_id *tuple)
12692 int i;
12693 isl_size n;
12694 isl_space *map_space, *tuple_space;
12696 map_space = isl_map_peek_space(map);
12697 tuple_space = isl_multi_id_peek_space(tuple);
12698 if (isl_space_check_domain_tuples(tuple_space, map_space) < 0)
12699 return isl_map_free(map);
12700 n = isl_multi_id_size(tuple);
12701 if (n < 0)
12702 return isl_map_free(map);
12703 for (i = 0; i < n; ++i) {
12704 isl_id *id;
12705 int pos;
12707 id = isl_multi_id_get_at(tuple, i);
12708 if (!id)
12709 return isl_map_free(map);
12710 pos = isl_map_find_dim_by_id(map, isl_dim_param, id);
12711 isl_id_free(id);
12712 if (pos < 0)
12713 continue;
12714 map = isl_map_equate(map, isl_dim_param, pos, isl_dim_in, i);
12715 map = isl_map_project_out(map, isl_dim_param, pos, 1);
12717 return map;
12720 /* Bind the input dimensions of "map" to parameters with identifiers
12721 * specified by "tuple", living in the domain space of "map".
12723 * If no parameters with these identifiers appear in "map" already,
12724 * then the input dimensions are simply reinterpreted as parameters.
12725 * Otherwise, the parameters are first equated to the corresponding
12726 * input dimensions.
12728 __isl_give isl_set *isl_map_bind_domain(__isl_take isl_map *map,
12729 __isl_take isl_multi_id *tuple)
12731 isl_space *space;
12732 isl_set *set;
12734 map = map_equate_params(map, tuple);
12735 space = isl_map_get_space(map);
12736 space = isl_space_bind_map_domain(space, tuple);
12737 isl_multi_id_free(tuple);
12738 set = set_from_map(isl_map_reset_space(map, space));
12740 return set;
12743 /* Bind the output dimensions of "map" to parameters with identifiers
12744 * specified by "tuple", living in the range space of "map".
12746 * Since binding is more easily implemented on the domain,
12747 * bind the input dimensions of the inverse of "map".
12749 __isl_give isl_set *isl_map_bind_range(__isl_take isl_map *map,
12750 __isl_take isl_multi_id *tuple)
12752 return isl_map_bind_domain(isl_map_reverse(map), tuple);
12755 /* Insert a domain corresponding to "tuple"
12756 * into the nullary or unary relation "set".
12757 * The result has an extra initial tuple and is therefore
12758 * either a unary or binary relation.
12759 * Any parameters with identifiers in "tuple" are reinterpreted
12760 * as the corresponding domain dimensions.
12762 static __isl_give isl_map *unbind_params_insert_domain(
12763 __isl_take isl_set *set, __isl_take isl_multi_id *tuple)
12765 isl_space *space;
12766 isl_reordering *r;
12768 space = isl_set_peek_space(set);
12769 r = isl_reordering_unbind_params_insert_domain(space, tuple);
12770 isl_multi_id_free(tuple);
12772 return isl_map_realign(set_to_map(set), r);
12775 /* Construct a set with "tuple" as domain from the parameter domain "set".
12776 * Any parameters with identifiers in "tuple" are reinterpreted
12777 * as the corresponding set dimensions.
12779 __isl_give isl_set *isl_set_unbind_params(__isl_take isl_set *set,
12780 __isl_take isl_multi_id *tuple)
12782 isl_bool is_params;
12784 is_params = isl_set_is_params(set);
12785 if (is_params < 0)
12786 set = isl_set_free(set);
12787 else if (!is_params)
12788 isl_die(isl_set_get_ctx(set), isl_error_invalid,
12789 "expecting parameter domain", set = isl_set_free(set));
12790 return set_from_map(unbind_params_insert_domain(set, tuple));
12793 /* Check that "set" is a proper set, i.e., that it is not a parameter domain.
12795 static isl_stat isl_set_check_is_set(__isl_keep isl_set *set)
12797 isl_bool is_params;
12799 is_params = isl_set_is_params(set);
12800 if (is_params < 0)
12801 return isl_stat_error;
12802 else if (is_params)
12803 isl_die(isl_set_get_ctx(set), isl_error_invalid,
12804 "expecting proper set", return isl_stat_error);
12806 return isl_stat_ok;
12809 /* Construct a map with "domain" as domain and "set" as range.
12810 * Any parameters with identifiers in "domain" are reinterpreted
12811 * as the corresponding domain dimensions.
12813 __isl_give isl_map *isl_set_unbind_params_insert_domain(
12814 __isl_take isl_set *set, __isl_take isl_multi_id *domain)
12816 if (isl_set_check_is_set(set) < 0)
12817 set = isl_set_free(set);
12818 return unbind_params_insert_domain(set, domain);
12821 /* Construct a map with "domain" as domain and "set" as range.
12823 __isl_give isl_map *isl_set_insert_domain(__isl_take isl_set *set,
12824 __isl_take isl_space *domain)
12826 isl_size dim;
12827 isl_space *space;
12828 isl_map *map;
12830 if (isl_set_check_is_set(set) < 0 || isl_space_check_is_set(domain) < 0)
12831 domain = isl_space_free(domain);
12832 dim = isl_space_dim(domain, isl_dim_set);
12833 if (dim < 0)
12834 domain = isl_space_free(domain);
12835 space = isl_set_get_space(set);
12836 domain = isl_space_replace_params(domain, space);
12837 space = isl_space_map_from_domain_and_range(domain, space);
12839 map = isl_map_from_range(set);
12840 map = isl_map_add_dims(map, isl_dim_in, dim);
12841 map = isl_map_reset_space(map, space);
12843 return map;
12846 __isl_give isl_mat *isl_basic_map_equalities_matrix(
12847 __isl_keep isl_basic_map *bmap, enum isl_dim_type c1,
12848 enum isl_dim_type c2, enum isl_dim_type c3,
12849 enum isl_dim_type c4, enum isl_dim_type c5)
12851 enum isl_dim_type c[5] = { c1, c2, c3, c4, c5 };
12852 struct isl_mat *mat;
12853 int i, j, k;
12854 int pos;
12855 isl_size total;
12857 total = isl_basic_map_dim(bmap, isl_dim_all);
12858 if (total < 0)
12859 return NULL;
12860 mat = isl_mat_alloc(bmap->ctx, bmap->n_eq, total + 1);
12861 if (!mat)
12862 return NULL;
12863 for (i = 0; i < bmap->n_eq; ++i)
12864 for (j = 0, pos = 0; j < 5; ++j) {
12865 int off = isl_basic_map_offset(bmap, c[j]);
12866 isl_size dim = isl_basic_map_dim(bmap, c[j]);
12867 if (dim < 0)
12868 return isl_mat_free(mat);
12869 for (k = 0; k < dim; ++k) {
12870 isl_int_set(mat->row[i][pos],
12871 bmap->eq[i][off + k]);
12872 ++pos;
12876 return mat;
12879 __isl_give isl_mat *isl_basic_map_inequalities_matrix(
12880 __isl_keep isl_basic_map *bmap, enum isl_dim_type c1,
12881 enum isl_dim_type c2, enum isl_dim_type c3,
12882 enum isl_dim_type c4, enum isl_dim_type c5)
12884 enum isl_dim_type c[5] = { c1, c2, c3, c4, c5 };
12885 struct isl_mat *mat;
12886 int i, j, k;
12887 int pos;
12888 isl_size total;
12890 total = isl_basic_map_dim(bmap, isl_dim_all);
12891 if (total < 0)
12892 return NULL;
12893 mat = isl_mat_alloc(bmap->ctx, bmap->n_ineq, total + 1);
12894 if (!mat)
12895 return NULL;
12896 for (i = 0; i < bmap->n_ineq; ++i)
12897 for (j = 0, pos = 0; j < 5; ++j) {
12898 int off = isl_basic_map_offset(bmap, c[j]);
12899 isl_size dim = isl_basic_map_dim(bmap, c[j]);
12900 if (dim < 0)
12901 return isl_mat_free(mat);
12902 for (k = 0; k < dim; ++k) {
12903 isl_int_set(mat->row[i][pos],
12904 bmap->ineq[i][off + k]);
12905 ++pos;
12909 return mat;
12912 __isl_give isl_basic_map *isl_basic_map_from_constraint_matrices(
12913 __isl_take isl_space *space,
12914 __isl_take isl_mat *eq, __isl_take isl_mat *ineq, enum isl_dim_type c1,
12915 enum isl_dim_type c2, enum isl_dim_type c3,
12916 enum isl_dim_type c4, enum isl_dim_type c5)
12918 enum isl_dim_type c[5] = { c1, c2, c3, c4, c5 };
12919 isl_basic_map *bmap = NULL;
12920 isl_size dim;
12921 unsigned total;
12922 unsigned extra;
12923 int i, j, k, l;
12924 int pos;
12926 dim = isl_space_dim(space, isl_dim_all);
12927 if (dim < 0 || !eq || !ineq)
12928 goto error;
12930 if (eq->n_col != ineq->n_col)
12931 isl_die(space->ctx, isl_error_invalid,
12932 "equalities and inequalities matrices should have "
12933 "same number of columns", goto error);
12935 total = 1 + dim;
12937 if (eq->n_col < total)
12938 isl_die(space->ctx, isl_error_invalid,
12939 "number of columns too small", goto error);
12941 extra = eq->n_col - total;
12943 bmap = isl_basic_map_alloc_space(isl_space_copy(space), extra,
12944 eq->n_row, ineq->n_row);
12945 if (!bmap)
12946 goto error;
12947 for (i = 0; i < extra; ++i) {
12948 k = isl_basic_map_alloc_div(bmap);
12949 if (k < 0)
12950 goto error;
12951 isl_int_set_si(bmap->div[k][0], 0);
12953 for (i = 0; i < eq->n_row; ++i) {
12954 l = isl_basic_map_alloc_equality(bmap);
12955 if (l < 0)
12956 goto error;
12957 for (j = 0, pos = 0; j < 5; ++j) {
12958 int off = isl_basic_map_offset(bmap, c[j]);
12959 isl_size dim = isl_basic_map_dim(bmap, c[j]);
12960 if (dim < 0)
12961 goto error;
12962 for (k = 0; k < dim; ++k) {
12963 isl_int_set(bmap->eq[l][off + k],
12964 eq->row[i][pos]);
12965 ++pos;
12969 for (i = 0; i < ineq->n_row; ++i) {
12970 l = isl_basic_map_alloc_inequality(bmap);
12971 if (l < 0)
12972 goto error;
12973 for (j = 0, pos = 0; j < 5; ++j) {
12974 int off = isl_basic_map_offset(bmap, c[j]);
12975 isl_size dim = isl_basic_map_dim(bmap, c[j]);
12976 if (dim < 0)
12977 goto error;
12978 for (k = 0; k < dim; ++k) {
12979 isl_int_set(bmap->ineq[l][off + k],
12980 ineq->row[i][pos]);
12981 ++pos;
12986 isl_space_free(space);
12987 isl_mat_free(eq);
12988 isl_mat_free(ineq);
12990 bmap = isl_basic_map_simplify(bmap);
12991 return isl_basic_map_finalize(bmap);
12992 error:
12993 isl_space_free(space);
12994 isl_mat_free(eq);
12995 isl_mat_free(ineq);
12996 isl_basic_map_free(bmap);
12997 return NULL;
13000 __isl_give isl_mat *isl_basic_set_equalities_matrix(
13001 __isl_keep isl_basic_set *bset, enum isl_dim_type c1,
13002 enum isl_dim_type c2, enum isl_dim_type c3, enum isl_dim_type c4)
13004 return isl_basic_map_equalities_matrix(bset_to_bmap(bset),
13005 c1, c2, c3, c4, isl_dim_in);
13008 __isl_give isl_mat *isl_basic_set_inequalities_matrix(
13009 __isl_keep isl_basic_set *bset, enum isl_dim_type c1,
13010 enum isl_dim_type c2, enum isl_dim_type c3, enum isl_dim_type c4)
13012 return isl_basic_map_inequalities_matrix(bset_to_bmap(bset),
13013 c1, c2, c3, c4, isl_dim_in);
13016 __isl_give isl_basic_set *isl_basic_set_from_constraint_matrices(
13017 __isl_take isl_space *space,
13018 __isl_take isl_mat *eq, __isl_take isl_mat *ineq, enum isl_dim_type c1,
13019 enum isl_dim_type c2, enum isl_dim_type c3, enum isl_dim_type c4)
13021 isl_basic_map *bmap;
13022 bmap = isl_basic_map_from_constraint_matrices(space, eq, ineq,
13023 c1, c2, c3, c4, isl_dim_in);
13024 return bset_from_bmap(bmap);
13027 isl_bool isl_basic_map_can_zip(__isl_keep isl_basic_map *bmap)
13029 if (!bmap)
13030 return isl_bool_error;
13032 return isl_space_can_zip(bmap->dim);
13035 isl_bool isl_map_can_zip(__isl_keep isl_map *map)
13037 if (!map)
13038 return isl_bool_error;
13040 return isl_space_can_zip(map->dim);
13043 /* Given a basic map (A -> B) -> (C -> D), return the corresponding basic map
13044 * (A -> C) -> (B -> D).
13046 __isl_give isl_basic_map *isl_basic_map_zip(__isl_take isl_basic_map *bmap)
13048 unsigned pos;
13049 isl_size n_in;
13050 isl_size n1;
13051 isl_size n2;
13053 if (!bmap)
13054 return NULL;
13056 if (!isl_basic_map_can_zip(bmap))
13057 isl_die(bmap->ctx, isl_error_invalid,
13058 "basic map cannot be zipped", goto error);
13059 n_in = isl_space_dim(bmap->dim->nested[0], isl_dim_in);
13060 n1 = isl_space_dim(bmap->dim->nested[0], isl_dim_out);
13061 n2 = isl_space_dim(bmap->dim->nested[1], isl_dim_in);
13062 if (n_in < 0 || n1 < 0 || n2 < 0)
13063 return isl_basic_map_free(bmap);
13064 pos = isl_basic_map_offset(bmap, isl_dim_in) + n_in;
13065 bmap = isl_basic_map_cow(bmap);
13066 bmap = isl_basic_map_swap_vars(bmap, pos, n1, n2);
13067 if (!bmap)
13068 return NULL;
13069 bmap->dim = isl_space_zip(bmap->dim);
13070 if (!bmap->dim)
13071 goto error;
13072 bmap = isl_basic_map_mark_final(bmap);
13073 return bmap;
13074 error:
13075 isl_basic_map_free(bmap);
13076 return NULL;
13079 /* Given a map (A -> B) -> (C -> D), return the corresponding map
13080 * (A -> C) -> (B -> D).
13082 __isl_give isl_map *isl_map_zip(__isl_take isl_map *map)
13084 if (!map)
13085 return NULL;
13087 if (!isl_map_can_zip(map))
13088 isl_die(map->ctx, isl_error_invalid, "map cannot be zipped",
13089 goto error);
13091 return isl_map_transform(map, &isl_space_zip, &isl_basic_map_zip);
13092 error:
13093 isl_map_free(map);
13094 return NULL;
13097 /* Can we apply isl_basic_map_curry to "bmap"?
13098 * That is, does it have a nested relation in its domain?
13100 isl_bool isl_basic_map_can_curry(__isl_keep isl_basic_map *bmap)
13102 if (!bmap)
13103 return isl_bool_error;
13105 return isl_space_can_curry(bmap->dim);
13108 /* Can we apply isl_map_curry to "map"?
13109 * That is, does it have a nested relation in its domain?
13111 isl_bool isl_map_can_curry(__isl_keep isl_map *map)
13113 if (!map)
13114 return isl_bool_error;
13116 return isl_space_can_curry(map->dim);
13119 /* Given a basic map (A -> B) -> C, return the corresponding basic map
13120 * A -> (B -> C).
13122 __isl_give isl_basic_map *isl_basic_map_curry(__isl_take isl_basic_map *bmap)
13125 if (!bmap)
13126 return NULL;
13128 if (!isl_basic_map_can_curry(bmap))
13129 isl_die(bmap->ctx, isl_error_invalid,
13130 "basic map cannot be curried", goto error);
13131 bmap = isl_basic_map_cow(bmap);
13132 if (!bmap)
13133 return NULL;
13134 bmap->dim = isl_space_curry(bmap->dim);
13135 if (!bmap->dim)
13136 goto error;
13137 bmap = isl_basic_map_mark_final(bmap);
13138 return bmap;
13139 error:
13140 isl_basic_map_free(bmap);
13141 return NULL;
13144 /* Given a map (A -> B) -> C, return the corresponding map
13145 * A -> (B -> C).
13147 __isl_give isl_map *isl_map_curry(__isl_take isl_map *map)
13149 return isl_map_change_space(map, &isl_map_can_curry,
13150 "map cannot be curried", &isl_space_curry);
13153 /* Can isl_map_range_curry be applied to "map"?
13154 * That is, does it have a nested relation in its range,
13155 * the domain of which is itself a nested relation?
13157 isl_bool isl_map_can_range_curry(__isl_keep isl_map *map)
13159 if (!map)
13160 return isl_bool_error;
13162 return isl_space_can_range_curry(map->dim);
13165 /* Given a map A -> ((B -> C) -> D), return the corresponding map
13166 * A -> (B -> (C -> D)).
13168 __isl_give isl_map *isl_map_range_curry(__isl_take isl_map *map)
13170 return isl_map_change_space(map, &isl_map_can_range_curry,
13171 "map range cannot be curried",
13172 &isl_space_range_curry);
13175 /* Can we apply isl_basic_map_uncurry to "bmap"?
13176 * That is, does it have a nested relation in its domain?
13178 isl_bool isl_basic_map_can_uncurry(__isl_keep isl_basic_map *bmap)
13180 if (!bmap)
13181 return isl_bool_error;
13183 return isl_space_can_uncurry(bmap->dim);
13186 /* Can we apply isl_map_uncurry to "map"?
13187 * That is, does it have a nested relation in its domain?
13189 isl_bool isl_map_can_uncurry(__isl_keep isl_map *map)
13191 if (!map)
13192 return isl_bool_error;
13194 return isl_space_can_uncurry(map->dim);
13197 /* Given a basic map A -> (B -> C), return the corresponding basic map
13198 * (A -> B) -> C.
13200 __isl_give isl_basic_map *isl_basic_map_uncurry(__isl_take isl_basic_map *bmap)
13203 if (!bmap)
13204 return NULL;
13206 if (!isl_basic_map_can_uncurry(bmap))
13207 isl_die(bmap->ctx, isl_error_invalid,
13208 "basic map cannot be uncurried",
13209 return isl_basic_map_free(bmap));
13210 bmap = isl_basic_map_cow(bmap);
13211 if (!bmap)
13212 return NULL;
13213 bmap->dim = isl_space_uncurry(bmap->dim);
13214 if (!bmap->dim)
13215 return isl_basic_map_free(bmap);
13216 bmap = isl_basic_map_mark_final(bmap);
13217 return bmap;
13220 /* Given a map A -> (B -> C), return the corresponding map
13221 * (A -> B) -> C.
13223 __isl_give isl_map *isl_map_uncurry(__isl_take isl_map *map)
13225 return isl_map_change_space(map, &isl_map_can_uncurry,
13226 "map cannot be uncurried", &isl_space_uncurry);
13229 __isl_give isl_set *isl_set_equate(__isl_take isl_set *set,
13230 enum isl_dim_type type1, int pos1, enum isl_dim_type type2, int pos2)
13232 return isl_map_equate(set, type1, pos1, type2, pos2);
13235 /* Construct a basic map where the given dimensions are equal to each other.
13237 static __isl_give isl_basic_map *equator(__isl_take isl_space *space,
13238 enum isl_dim_type type1, int pos1, enum isl_dim_type type2, int pos2)
13240 isl_basic_map *bmap = NULL;
13241 int i;
13242 isl_size total;
13244 total = isl_space_dim(space, isl_dim_all);
13245 if (total < 0 ||
13246 isl_space_check_range(space, type1, pos1, 1) < 0 ||
13247 isl_space_check_range(space, type2, pos2, 1) < 0)
13248 goto error;
13250 if (type1 == type2 && pos1 == pos2)
13251 return isl_basic_map_universe(space);
13253 bmap = isl_basic_map_alloc_space(isl_space_copy(space), 0, 1, 0);
13254 i = isl_basic_map_alloc_equality(bmap);
13255 if (i < 0)
13256 goto error;
13257 isl_seq_clr(bmap->eq[i], 1 + total);
13258 pos1 += isl_basic_map_offset(bmap, type1);
13259 pos2 += isl_basic_map_offset(bmap, type2);
13260 isl_int_set_si(bmap->eq[i][pos1], -1);
13261 isl_int_set_si(bmap->eq[i][pos2], 1);
13262 bmap = isl_basic_map_finalize(bmap);
13263 isl_space_free(space);
13264 return bmap;
13265 error:
13266 isl_space_free(space);
13267 isl_basic_map_free(bmap);
13268 return NULL;
13271 /* Add a constraint imposing that the given two dimensions are equal.
13273 __isl_give isl_basic_map *isl_basic_map_equate(__isl_take isl_basic_map *bmap,
13274 enum isl_dim_type type1, int pos1, enum isl_dim_type type2, int pos2)
13276 isl_basic_map *eq;
13278 eq = equator(isl_basic_map_get_space(bmap), type1, pos1, type2, pos2);
13280 bmap = isl_basic_map_intersect(bmap, eq);
13282 return bmap;
13285 /* Add a constraint imposing that the given two dimensions are equal.
13287 __isl_give isl_map *isl_map_equate(__isl_take isl_map *map,
13288 enum isl_dim_type type1, int pos1, enum isl_dim_type type2, int pos2)
13290 isl_basic_map *bmap;
13292 bmap = equator(isl_map_get_space(map), type1, pos1, type2, pos2);
13294 map = isl_map_intersect(map, isl_map_from_basic_map(bmap));
13296 return map;
13299 /* Add a constraint imposing that the given two dimensions have opposite values.
13301 __isl_give isl_map *isl_map_oppose(__isl_take isl_map *map,
13302 enum isl_dim_type type1, int pos1, enum isl_dim_type type2, int pos2)
13304 isl_basic_map *bmap = NULL;
13305 int i;
13306 isl_size total;
13308 if (isl_map_check_range(map, type1, pos1, 1) < 0)
13309 return isl_map_free(map);
13310 if (isl_map_check_range(map, type2, pos2, 1) < 0)
13311 return isl_map_free(map);
13313 total = isl_map_dim(map, isl_dim_all);
13314 if (total < 0)
13315 return isl_map_free(map);
13316 bmap = isl_basic_map_alloc_space(isl_map_get_space(map), 0, 1, 0);
13317 i = isl_basic_map_alloc_equality(bmap);
13318 if (i < 0)
13319 goto error;
13320 isl_seq_clr(bmap->eq[i], 1 + total);
13321 pos1 += isl_basic_map_offset(bmap, type1);
13322 pos2 += isl_basic_map_offset(bmap, type2);
13323 isl_int_set_si(bmap->eq[i][pos1], 1);
13324 isl_int_set_si(bmap->eq[i][pos2], 1);
13325 bmap = isl_basic_map_finalize(bmap);
13327 map = isl_map_intersect(map, isl_map_from_basic_map(bmap));
13329 return map;
13330 error:
13331 isl_basic_map_free(bmap);
13332 isl_map_free(map);
13333 return NULL;
13336 /* Construct a constraint imposing that the value of the first dimension is
13337 * greater than or equal to that of the second.
13339 static __isl_give isl_constraint *constraint_order_ge(
13340 __isl_take isl_space *space, enum isl_dim_type type1, int pos1,
13341 enum isl_dim_type type2, int pos2)
13343 isl_constraint *c;
13345 if (isl_space_check_range(space, type1, pos1, 1) < 0 ||
13346 isl_space_check_range(space, type2, pos2, 1) < 0)
13347 space = isl_space_free(space);
13348 if (!space)
13349 return NULL;
13351 c = isl_constraint_alloc_inequality(isl_local_space_from_space(space));
13353 if (type1 == type2 && pos1 == pos2)
13354 return c;
13356 c = isl_constraint_set_coefficient_si(c, type1, pos1, 1);
13357 c = isl_constraint_set_coefficient_si(c, type2, pos2, -1);
13359 return c;
13362 /* Add a constraint imposing that the value of the first dimension is
13363 * greater than or equal to that of the second.
13365 __isl_give isl_basic_map *isl_basic_map_order_ge(__isl_take isl_basic_map *bmap,
13366 enum isl_dim_type type1, int pos1, enum isl_dim_type type2, int pos2)
13368 isl_constraint *c;
13369 isl_space *space;
13371 if (type1 == type2 && pos1 == pos2)
13372 return bmap;
13373 space = isl_basic_map_get_space(bmap);
13374 c = constraint_order_ge(space, type1, pos1, type2, pos2);
13375 bmap = isl_basic_map_add_constraint(bmap, c);
13377 return bmap;
13380 /* Add a constraint imposing that the value of the first dimension is
13381 * greater than or equal to that of the second.
13383 __isl_give isl_map *isl_map_order_ge(__isl_take isl_map *map,
13384 enum isl_dim_type type1, int pos1, enum isl_dim_type type2, int pos2)
13386 isl_constraint *c;
13387 isl_space *space;
13389 if (type1 == type2 && pos1 == pos2)
13390 return map;
13391 space = isl_map_get_space(map);
13392 c = constraint_order_ge(space, type1, pos1, type2, pos2);
13393 map = isl_map_add_constraint(map, c);
13395 return map;
13398 /* Add a constraint imposing that the value of the first dimension is
13399 * less than or equal to that of the second.
13401 __isl_give isl_map *isl_map_order_le(__isl_take isl_map *map,
13402 enum isl_dim_type type1, int pos1, enum isl_dim_type type2, int pos2)
13404 return isl_map_order_ge(map, type2, pos2, type1, pos1);
13407 /* Construct a basic map where the value of the first dimension is
13408 * greater than that of the second.
13410 static __isl_give isl_basic_map *greator(__isl_take isl_space *space,
13411 enum isl_dim_type type1, int pos1, enum isl_dim_type type2, int pos2)
13413 isl_basic_map *bmap = NULL;
13414 int i;
13415 isl_size total;
13417 if (isl_space_check_range(space, type1, pos1, 1) < 0 ||
13418 isl_space_check_range(space, type2, pos2, 1) < 0)
13419 goto error;
13421 if (type1 == type2 && pos1 == pos2)
13422 return isl_basic_map_empty(space);
13424 bmap = isl_basic_map_alloc_space(space, 0, 0, 1);
13425 total = isl_basic_map_dim(bmap, isl_dim_all);
13426 i = isl_basic_map_alloc_inequality(bmap);
13427 if (total < 0 || i < 0)
13428 return isl_basic_map_free(bmap);
13429 isl_seq_clr(bmap->ineq[i], 1 + total);
13430 pos1 += isl_basic_map_offset(bmap, type1);
13431 pos2 += isl_basic_map_offset(bmap, type2);
13432 isl_int_set_si(bmap->ineq[i][pos1], 1);
13433 isl_int_set_si(bmap->ineq[i][pos2], -1);
13434 isl_int_set_si(bmap->ineq[i][0], -1);
13435 bmap = isl_basic_map_finalize(bmap);
13437 return bmap;
13438 error:
13439 isl_space_free(space);
13440 isl_basic_map_free(bmap);
13441 return NULL;
13444 /* Add a constraint imposing that the value of the first dimension is
13445 * greater than that of the second.
13447 __isl_give isl_basic_map *isl_basic_map_order_gt(__isl_take isl_basic_map *bmap,
13448 enum isl_dim_type type1, int pos1, enum isl_dim_type type2, int pos2)
13450 isl_basic_map *gt;
13452 gt = greator(isl_basic_map_get_space(bmap), type1, pos1, type2, pos2);
13454 bmap = isl_basic_map_intersect(bmap, gt);
13456 return bmap;
13459 /* Add a constraint imposing that the value of the first dimension is
13460 * greater than that of the second.
13462 __isl_give isl_map *isl_map_order_gt(__isl_take isl_map *map,
13463 enum isl_dim_type type1, int pos1, enum isl_dim_type type2, int pos2)
13465 isl_basic_map *bmap;
13467 bmap = greator(isl_map_get_space(map), type1, pos1, type2, pos2);
13469 map = isl_map_intersect(map, isl_map_from_basic_map(bmap));
13471 return map;
13474 /* Add a constraint imposing that the value of the first dimension is
13475 * smaller than that of the second.
13477 __isl_give isl_map *isl_map_order_lt(__isl_take isl_map *map,
13478 enum isl_dim_type type1, int pos1, enum isl_dim_type type2, int pos2)
13480 return isl_map_order_gt(map, type2, pos2, type1, pos1);
13483 __isl_give isl_aff *isl_basic_map_get_div(__isl_keep isl_basic_map *bmap,
13484 int pos)
13486 isl_aff *div;
13487 isl_local_space *ls;
13489 if (!bmap)
13490 return NULL;
13492 if (!isl_basic_map_divs_known(bmap))
13493 isl_die(isl_basic_map_get_ctx(bmap), isl_error_invalid,
13494 "some divs are unknown", return NULL);
13496 ls = isl_basic_map_get_local_space(bmap);
13497 div = isl_local_space_get_div(ls, pos);
13498 isl_local_space_free(ls);
13500 return div;
13503 __isl_give isl_aff *isl_basic_set_get_div(__isl_keep isl_basic_set *bset,
13504 int pos)
13506 return isl_basic_map_get_div(bset, pos);
13509 /* Plug in "subs" for set dimension "pos" of "set".
13511 __isl_give isl_set *isl_set_substitute(__isl_take isl_set *set,
13512 unsigned pos, __isl_keep isl_aff *subs)
13514 isl_multi_aff *ma;
13516 if (set && isl_set_plain_is_empty(set))
13517 return set;
13519 ma = isl_multi_aff_identity_on_domain_space(isl_set_get_space(set));
13520 ma = isl_multi_aff_set_aff(ma, pos, isl_aff_copy(subs));
13521 return isl_set_preimage_multi_aff(set, ma);
13524 /* Check if the range of "ma" is compatible with the domain or range
13525 * (depending on "type") of "bmap".
13527 static isl_stat check_basic_map_compatible_range_multi_aff(
13528 __isl_keep isl_basic_map *bmap, enum isl_dim_type type,
13529 __isl_keep isl_multi_aff *ma)
13531 isl_bool m;
13532 isl_space *ma_space;
13534 ma_space = isl_multi_aff_get_space(ma);
13536 m = isl_space_has_equal_params(bmap->dim, ma_space);
13537 if (m < 0)
13538 goto error;
13539 if (!m)
13540 isl_die(isl_basic_map_get_ctx(bmap), isl_error_invalid,
13541 "parameters don't match", goto error);
13542 m = isl_space_tuple_is_equal(bmap->dim, type, ma_space, isl_dim_out);
13543 if (m < 0)
13544 goto error;
13545 if (!m)
13546 isl_die(isl_basic_map_get_ctx(bmap), isl_error_invalid,
13547 "spaces don't match", goto error);
13549 isl_space_free(ma_space);
13550 return isl_stat_ok;
13551 error:
13552 isl_space_free(ma_space);
13553 return isl_stat_error;
13556 /* Copy the divs from "ma" to "bmap", adding zeros for the "n_before"
13557 * coefficients before the transformed range of dimensions,
13558 * the "n_after" coefficients after the transformed range of dimensions
13559 * and the coefficients of the other divs in "bmap".
13561 static __isl_give isl_basic_map *set_ma_divs(__isl_take isl_basic_map *bmap,
13562 __isl_keep isl_multi_aff *ma, int n_before, int n_after, int n_div)
13564 int i;
13565 isl_size n_param;
13566 isl_size n_set;
13567 isl_local_space *ls;
13569 if (n_div == 0)
13570 return bmap;
13572 ls = isl_aff_get_domain_local_space(ma->u.p[0]);
13573 n_param = isl_local_space_dim(ls, isl_dim_param);
13574 n_set = isl_local_space_dim(ls, isl_dim_set);
13575 if (n_param < 0 || n_set < 0)
13576 return isl_basic_map_free(bmap);
13578 for (i = 0; i < n_div; ++i) {
13579 int o_bmap = 0, o_ls = 0;
13581 isl_seq_cpy(bmap->div[i], ls->div->row[i], 1 + 1 + n_param);
13582 o_bmap += 1 + 1 + n_param;
13583 o_ls += 1 + 1 + n_param;
13584 isl_seq_clr(bmap->div[i] + o_bmap, n_before);
13585 o_bmap += n_before;
13586 isl_seq_cpy(bmap->div[i] + o_bmap,
13587 ls->div->row[i] + o_ls, n_set);
13588 o_bmap += n_set;
13589 o_ls += n_set;
13590 isl_seq_clr(bmap->div[i] + o_bmap, n_after);
13591 o_bmap += n_after;
13592 isl_seq_cpy(bmap->div[i] + o_bmap,
13593 ls->div->row[i] + o_ls, n_div);
13594 o_bmap += n_div;
13595 o_ls += n_div;
13596 isl_seq_clr(bmap->div[i] + o_bmap, bmap->n_div - n_div);
13597 bmap = isl_basic_map_add_div_constraints(bmap, i);
13598 if (!bmap)
13599 goto error;
13602 isl_local_space_free(ls);
13603 return bmap;
13604 error:
13605 isl_local_space_free(ls);
13606 return isl_basic_map_free(bmap);
13609 /* How many stride constraints does "ma" enforce?
13610 * That is, how many of the affine expressions have a denominator
13611 * different from one?
13613 static int multi_aff_strides(__isl_keep isl_multi_aff *ma)
13615 int i;
13616 int strides = 0;
13618 for (i = 0; i < ma->n; ++i)
13619 if (!isl_int_is_one(ma->u.p[i]->v->el[0]))
13620 strides++;
13622 return strides;
13625 /* For each affine expression in ma of the form
13627 * x_i = (f_i y + h_i)/m_i
13629 * with m_i different from one, add a constraint to "bmap"
13630 * of the form
13632 * f_i y + h_i = m_i alpha_i
13634 * with alpha_i an additional existentially quantified variable.
13636 * The input variables of "ma" correspond to a subset of the variables
13637 * of "bmap". There are "n_before" variables in "bmap" before this
13638 * subset and "n_after" variables after this subset.
13639 * The integer divisions of the affine expressions in "ma" are assumed
13640 * to have been aligned. There are "n_div_ma" of them and
13641 * they appear first in "bmap", straight after the "n_after" variables.
13643 static __isl_give isl_basic_map *add_ma_strides(
13644 __isl_take isl_basic_map *bmap, __isl_keep isl_multi_aff *ma,
13645 int n_before, int n_after, int n_div_ma)
13647 int i, k;
13648 int div;
13649 isl_size total;
13650 isl_size n_param;
13651 isl_size n_in;
13653 total = isl_basic_map_dim(bmap, isl_dim_all);
13654 n_param = isl_multi_aff_dim(ma, isl_dim_param);
13655 n_in = isl_multi_aff_dim(ma, isl_dim_in);
13656 if (total < 0 || n_param < 0 || n_in < 0)
13657 return isl_basic_map_free(bmap);
13658 for (i = 0; i < ma->n; ++i) {
13659 int o_bmap = 0, o_ma = 1;
13661 if (isl_int_is_one(ma->u.p[i]->v->el[0]))
13662 continue;
13663 div = isl_basic_map_alloc_div(bmap);
13664 k = isl_basic_map_alloc_equality(bmap);
13665 if (div < 0 || k < 0)
13666 goto error;
13667 isl_int_set_si(bmap->div[div][0], 0);
13668 isl_seq_cpy(bmap->eq[k] + o_bmap,
13669 ma->u.p[i]->v->el + o_ma, 1 + n_param);
13670 o_bmap += 1 + n_param;
13671 o_ma += 1 + n_param;
13672 isl_seq_clr(bmap->eq[k] + o_bmap, n_before);
13673 o_bmap += n_before;
13674 isl_seq_cpy(bmap->eq[k] + o_bmap,
13675 ma->u.p[i]->v->el + o_ma, n_in);
13676 o_bmap += n_in;
13677 o_ma += n_in;
13678 isl_seq_clr(bmap->eq[k] + o_bmap, n_after);
13679 o_bmap += n_after;
13680 isl_seq_cpy(bmap->eq[k] + o_bmap,
13681 ma->u.p[i]->v->el + o_ma, n_div_ma);
13682 o_bmap += n_div_ma;
13683 o_ma += n_div_ma;
13684 isl_seq_clr(bmap->eq[k] + o_bmap, 1 + total - o_bmap);
13685 isl_int_neg(bmap->eq[k][1 + total], ma->u.p[i]->v->el[0]);
13686 total++;
13689 return bmap;
13690 error:
13691 isl_basic_map_free(bmap);
13692 return NULL;
13695 /* Replace the domain or range space (depending on "type) of "space" by "set".
13697 static __isl_give isl_space *isl_space_set(__isl_take isl_space *space,
13698 enum isl_dim_type type, __isl_take isl_space *set)
13700 if (type == isl_dim_in) {
13701 space = isl_space_range(space);
13702 space = isl_space_map_from_domain_and_range(set, space);
13703 } else {
13704 space = isl_space_domain(space);
13705 space = isl_space_map_from_domain_and_range(space, set);
13708 return space;
13711 /* Compute the preimage of the domain or range (depending on "type")
13712 * of "bmap" under the function represented by "ma".
13713 * In other words, plug in "ma" in the domain or range of "bmap".
13714 * The result is a basic map that lives in the same space as "bmap"
13715 * except that the domain or range has been replaced by
13716 * the domain space of "ma".
13718 * If bmap is represented by
13720 * A(p) + S u + B x + T v + C(divs) >= 0,
13722 * where u and x are input and output dimensions if type == isl_dim_out
13723 * while x and v are input and output dimensions if type == isl_dim_in,
13724 * and ma is represented by
13726 * x = D(p) + F(y) + G(divs')
13728 * then the result is
13730 * A(p) + B D(p) + S u + B F(y) + T v + B G(divs') + C(divs) >= 0
13732 * The divs in the input set are similarly adjusted.
13733 * In particular
13735 * floor((a_i(p) + s u + b_i x + t v + c_i(divs))/n_i)
13737 * becomes
13739 * floor((a_i(p) + b_i D(p) + s u + b_i F(y) + t v +
13740 * B_i G(divs') + c_i(divs))/n_i)
13742 * If bmap is not a rational map and if F(y) involves any denominators
13744 * x_i = (f_i y + h_i)/m_i
13746 * then additional constraints are added to ensure that we only
13747 * map back integer points. That is we enforce
13749 * f_i y + h_i = m_i alpha_i
13751 * with alpha_i an additional existentially quantified variable.
13753 * We first copy over the divs from "ma".
13754 * Then we add the modified constraints and divs from "bmap".
13755 * Finally, we add the stride constraints, if needed.
13757 __isl_give isl_basic_map *isl_basic_map_preimage_multi_aff(
13758 __isl_take isl_basic_map *bmap, enum isl_dim_type type,
13759 __isl_take isl_multi_aff *ma)
13761 int i, k;
13762 isl_space *space;
13763 isl_basic_map *res = NULL;
13764 isl_size n_before, n_after, n_div_bmap, n_div_ma;
13765 isl_int f, c1, c2, g;
13766 isl_bool rational;
13767 int strides;
13769 isl_int_init(f);
13770 isl_int_init(c1);
13771 isl_int_init(c2);
13772 isl_int_init(g);
13774 ma = isl_multi_aff_align_divs(ma);
13775 if (!bmap || !ma)
13776 goto error;
13777 if (check_basic_map_compatible_range_multi_aff(bmap, type, ma) < 0)
13778 goto error;
13780 if (type == isl_dim_in) {
13781 n_before = 0;
13782 n_after = isl_basic_map_dim(bmap, isl_dim_out);
13783 } else {
13784 n_before = isl_basic_map_dim(bmap, isl_dim_in);
13785 n_after = 0;
13787 n_div_bmap = isl_basic_map_dim(bmap, isl_dim_div);
13788 n_div_ma = ma->n ? isl_aff_dim(ma->u.p[0], isl_dim_div) : 0;
13789 if (n_before < 0 || n_after < 0 || n_div_bmap < 0 || n_div_ma < 0)
13790 goto error;
13792 space = isl_multi_aff_get_domain_space(ma);
13793 space = isl_space_set(isl_basic_map_get_space(bmap), type, space);
13794 rational = isl_basic_map_is_rational(bmap);
13795 strides = rational ? 0 : multi_aff_strides(ma);
13796 res = isl_basic_map_alloc_space(space, n_div_ma + n_div_bmap + strides,
13797 bmap->n_eq + strides, bmap->n_ineq + 2 * n_div_ma);
13798 if (rational)
13799 res = isl_basic_map_set_rational(res);
13801 for (i = 0; i < n_div_ma + n_div_bmap; ++i)
13802 if (isl_basic_map_alloc_div(res) < 0)
13803 goto error;
13805 res = set_ma_divs(res, ma, n_before, n_after, n_div_ma);
13806 if (!res)
13807 goto error;
13809 for (i = 0; i < bmap->n_eq; ++i) {
13810 k = isl_basic_map_alloc_equality(res);
13811 if (k < 0)
13812 goto error;
13813 if (isl_seq_preimage(res->eq[k], bmap->eq[i], ma, n_before,
13814 n_after, n_div_ma, n_div_bmap,
13815 f, c1, c2, g, 0) < 0)
13816 goto error;
13819 for (i = 0; i < bmap->n_ineq; ++i) {
13820 k = isl_basic_map_alloc_inequality(res);
13821 if (k < 0)
13822 goto error;
13823 if (isl_seq_preimage(res->ineq[k], bmap->ineq[i], ma, n_before,
13824 n_after, n_div_ma, n_div_bmap,
13825 f, c1, c2, g, 0) < 0)
13826 goto error;
13829 for (i = 0; i < bmap->n_div; ++i) {
13830 if (isl_int_is_zero(bmap->div[i][0])) {
13831 isl_int_set_si(res->div[n_div_ma + i][0], 0);
13832 continue;
13834 if (isl_seq_preimage(res->div[n_div_ma + i], bmap->div[i], ma,
13835 n_before, n_after, n_div_ma, n_div_bmap,
13836 f, c1, c2, g, 1) < 0)
13837 goto error;
13840 if (strides)
13841 res = add_ma_strides(res, ma, n_before, n_after, n_div_ma);
13843 isl_int_clear(f);
13844 isl_int_clear(c1);
13845 isl_int_clear(c2);
13846 isl_int_clear(g);
13847 isl_basic_map_free(bmap);
13848 isl_multi_aff_free(ma);
13849 res = isl_basic_map_simplify(res);
13850 return isl_basic_map_finalize(res);
13851 error:
13852 isl_int_clear(f);
13853 isl_int_clear(c1);
13854 isl_int_clear(c2);
13855 isl_int_clear(g);
13856 isl_basic_map_free(bmap);
13857 isl_multi_aff_free(ma);
13858 isl_basic_map_free(res);
13859 return NULL;
13862 /* Compute the preimage of "bset" under the function represented by "ma".
13863 * In other words, plug in "ma" in "bset". The result is a basic set
13864 * that lives in the domain space of "ma".
13866 __isl_give isl_basic_set *isl_basic_set_preimage_multi_aff(
13867 __isl_take isl_basic_set *bset, __isl_take isl_multi_aff *ma)
13869 return isl_basic_map_preimage_multi_aff(bset, isl_dim_set, ma);
13872 /* Compute the preimage of the domain of "bmap" under the function
13873 * represented by "ma".
13874 * In other words, plug in "ma" in the domain of "bmap".
13875 * The result is a basic map that lives in the same space as "bmap"
13876 * except that the domain has been replaced by the domain space of "ma".
13878 __isl_give isl_basic_map *isl_basic_map_preimage_domain_multi_aff(
13879 __isl_take isl_basic_map *bmap, __isl_take isl_multi_aff *ma)
13881 return isl_basic_map_preimage_multi_aff(bmap, isl_dim_in, ma);
13884 /* Compute the preimage of the range of "bmap" under the function
13885 * represented by "ma".
13886 * In other words, plug in "ma" in the range of "bmap".
13887 * The result is a basic map that lives in the same space as "bmap"
13888 * except that the range has been replaced by the domain space of "ma".
13890 __isl_give isl_basic_map *isl_basic_map_preimage_range_multi_aff(
13891 __isl_take isl_basic_map *bmap, __isl_take isl_multi_aff *ma)
13893 return isl_basic_map_preimage_multi_aff(bmap, isl_dim_out, ma);
13896 /* Check if the range of "ma" is compatible with the domain or range
13897 * (depending on "type") of "map".
13898 * Return isl_stat_error if anything is wrong.
13900 static isl_stat check_map_compatible_range_multi_aff(
13901 __isl_keep isl_map *map, enum isl_dim_type type,
13902 __isl_keep isl_multi_aff *ma)
13904 isl_bool m;
13905 isl_space *ma_space;
13907 ma_space = isl_multi_aff_get_space(ma);
13908 m = isl_map_space_tuple_is_equal(map, type, ma_space, isl_dim_out);
13909 isl_space_free(ma_space);
13910 if (m < 0)
13911 return isl_stat_error;
13912 if (!m)
13913 isl_die(isl_map_get_ctx(map), isl_error_invalid,
13914 "spaces don't match", return isl_stat_error);
13915 return isl_stat_ok;
13918 /* Compute the preimage of the domain or range (depending on "type")
13919 * of "map" under the function represented by "ma".
13920 * In other words, plug in "ma" in the domain or range of "map".
13921 * The result is a map that lives in the same space as "map"
13922 * except that the domain or range has been replaced by
13923 * the domain space of "ma".
13925 * The parameters are assumed to have been aligned.
13927 static __isl_give isl_map *map_preimage_multi_aff(__isl_take isl_map *map,
13928 enum isl_dim_type type, __isl_take isl_multi_aff *ma)
13930 int i;
13931 isl_space *space;
13933 map = isl_map_cow(map);
13934 ma = isl_multi_aff_align_divs(ma);
13935 if (!map || !ma)
13936 goto error;
13937 if (check_map_compatible_range_multi_aff(map, type, ma) < 0)
13938 goto error;
13940 for (i = 0; i < map->n; ++i) {
13941 map->p[i] = isl_basic_map_preimage_multi_aff(map->p[i], type,
13942 isl_multi_aff_copy(ma));
13943 if (!map->p[i])
13944 goto error;
13947 space = isl_multi_aff_get_domain_space(ma);
13948 space = isl_space_set(isl_map_get_space(map), type, space);
13950 isl_space_free(isl_map_take_space(map));
13951 map = isl_map_restore_space(map, space);
13952 if (!map)
13953 goto error;
13955 isl_multi_aff_free(ma);
13956 if (map->n > 1)
13957 ISL_F_CLR(map, ISL_MAP_DISJOINT);
13958 ISL_F_CLR(map, ISL_SET_NORMALIZED);
13959 return map;
13960 error:
13961 isl_multi_aff_free(ma);
13962 isl_map_free(map);
13963 return NULL;
13966 /* Compute the preimage of the domain or range (depending on "type")
13967 * of "map" under the function represented by "ma".
13968 * In other words, plug in "ma" in the domain or range of "map".
13969 * The result is a map that lives in the same space as "map"
13970 * except that the domain or range has been replaced by
13971 * the domain space of "ma".
13973 __isl_give isl_map *isl_map_preimage_multi_aff(__isl_take isl_map *map,
13974 enum isl_dim_type type, __isl_take isl_multi_aff *ma)
13976 isl_bool aligned;
13978 if (!map || !ma)
13979 goto error;
13981 aligned = isl_map_space_has_equal_params(map, ma->space);
13982 if (aligned < 0)
13983 goto error;
13984 if (aligned)
13985 return map_preimage_multi_aff(map, type, ma);
13987 if (isl_map_check_named_params(map) < 0)
13988 goto error;
13989 if (!isl_space_has_named_params(ma->space))
13990 isl_die(map->ctx, isl_error_invalid,
13991 "unaligned unnamed parameters", goto error);
13992 map = isl_map_align_params(map, isl_multi_aff_get_space(ma));
13993 ma = isl_multi_aff_align_params(ma, isl_map_get_space(map));
13995 return map_preimage_multi_aff(map, type, ma);
13996 error:
13997 isl_multi_aff_free(ma);
13998 return isl_map_free(map);
14001 /* Compute the preimage of "set" under the function represented by "ma".
14002 * In other words, plug in "ma" in "set". The result is a set
14003 * that lives in the domain space of "ma".
14005 __isl_give isl_set *isl_set_preimage_multi_aff(__isl_take isl_set *set,
14006 __isl_take isl_multi_aff *ma)
14008 return isl_map_preimage_multi_aff(set, isl_dim_set, ma);
14011 /* Compute the preimage of the domain of "map" under the function
14012 * represented by "ma".
14013 * In other words, plug in "ma" in the domain of "map".
14014 * The result is a map that lives in the same space as "map"
14015 * except that the domain has been replaced by the domain space of "ma".
14017 __isl_give isl_map *isl_map_preimage_domain_multi_aff(__isl_take isl_map *map,
14018 __isl_take isl_multi_aff *ma)
14020 return isl_map_preimage_multi_aff(map, isl_dim_in, ma);
14023 /* Compute the preimage of the range of "map" under the function
14024 * represented by "ma".
14025 * In other words, plug in "ma" in the range of "map".
14026 * The result is a map that lives in the same space as "map"
14027 * except that the range has been replaced by the domain space of "ma".
14029 __isl_give isl_map *isl_map_preimage_range_multi_aff(__isl_take isl_map *map,
14030 __isl_take isl_multi_aff *ma)
14032 return isl_map_preimage_multi_aff(map, isl_dim_out, ma);
14035 /* Compute the preimage of "map" under the function represented by "pma".
14036 * In other words, plug in "pma" in the domain or range of "map".
14037 * The result is a map that lives in the same space as "map",
14038 * except that the space of type "type" has been replaced by
14039 * the domain space of "pma".
14041 * The parameters of "map" and "pma" are assumed to have been aligned.
14043 static __isl_give isl_map *isl_map_preimage_pw_multi_aff_aligned(
14044 __isl_take isl_map *map, enum isl_dim_type type,
14045 __isl_take isl_pw_multi_aff *pma)
14047 int i;
14048 isl_map *res;
14050 if (!pma)
14051 goto error;
14053 if (pma->n == 0) {
14054 isl_pw_multi_aff_free(pma);
14055 res = isl_map_empty(isl_map_get_space(map));
14056 isl_map_free(map);
14057 return res;
14060 res = isl_map_preimage_multi_aff(isl_map_copy(map), type,
14061 isl_multi_aff_copy(pma->p[0].maff));
14062 if (type == isl_dim_in)
14063 res = isl_map_intersect_domain(res,
14064 isl_map_copy(pma->p[0].set));
14065 else
14066 res = isl_map_intersect_range(res,
14067 isl_map_copy(pma->p[0].set));
14069 for (i = 1; i < pma->n; ++i) {
14070 isl_map *res_i;
14072 res_i = isl_map_preimage_multi_aff(isl_map_copy(map), type,
14073 isl_multi_aff_copy(pma->p[i].maff));
14074 if (type == isl_dim_in)
14075 res_i = isl_map_intersect_domain(res_i,
14076 isl_map_copy(pma->p[i].set));
14077 else
14078 res_i = isl_map_intersect_range(res_i,
14079 isl_map_copy(pma->p[i].set));
14080 res = isl_map_union(res, res_i);
14083 isl_pw_multi_aff_free(pma);
14084 isl_map_free(map);
14085 return res;
14086 error:
14087 isl_pw_multi_aff_free(pma);
14088 isl_map_free(map);
14089 return NULL;
14092 /* Compute the preimage of "map" under the function represented by "pma".
14093 * In other words, plug in "pma" in the domain or range of "map".
14094 * The result is a map that lives in the same space as "map",
14095 * except that the space of type "type" has been replaced by
14096 * the domain space of "pma".
14098 __isl_give isl_map *isl_map_preimage_pw_multi_aff(__isl_take isl_map *map,
14099 enum isl_dim_type type, __isl_take isl_pw_multi_aff *pma)
14101 isl_bool aligned;
14103 if (!map || !pma)
14104 goto error;
14106 aligned = isl_map_space_has_equal_params(map, pma->dim);
14107 if (aligned < 0)
14108 goto error;
14109 if (aligned)
14110 return isl_map_preimage_pw_multi_aff_aligned(map, type, pma);
14112 if (isl_map_check_named_params(map) < 0)
14113 goto error;
14114 if (isl_pw_multi_aff_check_named_params(pma) < 0)
14115 goto error;
14116 map = isl_map_align_params(map, isl_pw_multi_aff_get_space(pma));
14117 pma = isl_pw_multi_aff_align_params(pma, isl_map_get_space(map));
14119 return isl_map_preimage_pw_multi_aff_aligned(map, type, pma);
14120 error:
14121 isl_pw_multi_aff_free(pma);
14122 return isl_map_free(map);
14125 /* Compute the preimage of "set" under the function represented by "pma".
14126 * In other words, plug in "pma" in "set". The result is a set
14127 * that lives in the domain space of "pma".
14129 __isl_give isl_set *isl_set_preimage_pw_multi_aff(__isl_take isl_set *set,
14130 __isl_take isl_pw_multi_aff *pma)
14132 return isl_map_preimage_pw_multi_aff(set, isl_dim_set, pma);
14135 /* Compute the preimage of the domain of "map" under the function
14136 * represented by "pma".
14137 * In other words, plug in "pma" in the domain of "map".
14138 * The result is a map that lives in the same space as "map",
14139 * except that domain space has been replaced by the domain space of "pma".
14141 __isl_give isl_map *isl_map_preimage_domain_pw_multi_aff(
14142 __isl_take isl_map *map, __isl_take isl_pw_multi_aff *pma)
14144 return isl_map_preimage_pw_multi_aff(map, isl_dim_in, pma);
14147 /* Compute the preimage of the range of "map" under the function
14148 * represented by "pma".
14149 * In other words, plug in "pma" in the range of "map".
14150 * The result is a map that lives in the same space as "map",
14151 * except that range space has been replaced by the domain space of "pma".
14153 __isl_give isl_map *isl_map_preimage_range_pw_multi_aff(
14154 __isl_take isl_map *map, __isl_take isl_pw_multi_aff *pma)
14156 return isl_map_preimage_pw_multi_aff(map, isl_dim_out, pma);
14159 /* Compute the preimage of "map" under the function represented by "mpa".
14160 * In other words, plug in "mpa" in the domain or range of "map".
14161 * The result is a map that lives in the same space as "map",
14162 * except that the space of type "type" has been replaced by
14163 * the domain space of "mpa".
14165 * If the map does not involve any constraints that refer to the
14166 * dimensions of the substituted space, then the only possible
14167 * effect of "mpa" on the map is to map the space to a different space.
14168 * We create a separate isl_multi_aff to effectuate this change
14169 * in order to avoid spurious splitting of the map along the pieces
14170 * of "mpa".
14171 * If "mpa" has a non-trivial explicit domain, however,
14172 * then the full substitution should be performed.
14174 __isl_give isl_map *isl_map_preimage_multi_pw_aff(__isl_take isl_map *map,
14175 enum isl_dim_type type, __isl_take isl_multi_pw_aff *mpa)
14177 isl_size n;
14178 isl_bool full;
14179 isl_pw_multi_aff *pma;
14181 n = isl_map_dim(map, type);
14182 if (n < 0 || !mpa)
14183 goto error;
14185 full = isl_map_involves_dims(map, type, 0, n);
14186 if (full >= 0 && !full)
14187 full = isl_multi_pw_aff_has_non_trivial_domain(mpa);
14188 if (full < 0)
14189 goto error;
14190 if (!full) {
14191 isl_space *space;
14192 isl_multi_aff *ma;
14194 space = isl_multi_pw_aff_get_space(mpa);
14195 isl_multi_pw_aff_free(mpa);
14196 ma = isl_multi_aff_zero(space);
14197 return isl_map_preimage_multi_aff(map, type, ma);
14200 pma = isl_pw_multi_aff_from_multi_pw_aff(mpa);
14201 return isl_map_preimage_pw_multi_aff(map, type, pma);
14202 error:
14203 isl_map_free(map);
14204 isl_multi_pw_aff_free(mpa);
14205 return NULL;
14208 /* Compute the preimage of "map" under the function represented by "mpa".
14209 * In other words, plug in "mpa" in the domain "map".
14210 * The result is a map that lives in the same space as "map",
14211 * except that domain space has been replaced by the domain space of "mpa".
14213 __isl_give isl_map *isl_map_preimage_domain_multi_pw_aff(
14214 __isl_take isl_map *map, __isl_take isl_multi_pw_aff *mpa)
14216 return isl_map_preimage_multi_pw_aff(map, isl_dim_in, mpa);
14219 /* Compute the preimage of "set" by the function represented by "mpa".
14220 * In other words, plug in "mpa" in "set".
14222 __isl_give isl_set *isl_set_preimage_multi_pw_aff(__isl_take isl_set *set,
14223 __isl_take isl_multi_pw_aff *mpa)
14225 return isl_map_preimage_multi_pw_aff(set, isl_dim_set, mpa);
14228 /* Return a copy of the equality constraints of "bset" as a matrix.
14230 __isl_give isl_mat *isl_basic_set_extract_equalities(
14231 __isl_keep isl_basic_set *bset)
14233 isl_ctx *ctx;
14234 isl_size total;
14236 total = isl_basic_set_dim(bset, isl_dim_all);
14237 if (total < 0)
14238 return NULL;
14240 ctx = isl_basic_set_get_ctx(bset);
14241 return isl_mat_sub_alloc6(ctx, bset->eq, 0, bset->n_eq, 0, 1 + total);
14244 /* Are the "n" "coefficients" starting at "first" of the integer division
14245 * expressions at position "pos1" in "bmap1" and "pos2" in "bmap2" equal
14246 * to each other?
14247 * The "coefficient" at position 0 is the denominator.
14248 * The "coefficient" at position 1 is the constant term.
14250 isl_bool isl_basic_map_equal_div_expr_part(__isl_keep isl_basic_map *bmap1,
14251 int pos1, __isl_keep isl_basic_map *bmap2, int pos2,
14252 unsigned first, unsigned n)
14254 if (isl_basic_map_check_range(bmap1, isl_dim_div, pos1, 1) < 0)
14255 return isl_bool_error;
14256 if (isl_basic_map_check_range(bmap2, isl_dim_div, pos2, 1) < 0)
14257 return isl_bool_error;
14258 return isl_seq_eq(bmap1->div[pos1] + first,
14259 bmap2->div[pos2] + first, n);
14262 /* Are the integer division expressions at position "pos1" in "bmap1" and
14263 * "pos2" in "bmap2" equal to each other, except that the constant terms
14264 * are different?
14266 isl_bool isl_basic_map_equal_div_expr_except_constant(
14267 __isl_keep isl_basic_map *bmap1, int pos1,
14268 __isl_keep isl_basic_map *bmap2, int pos2)
14270 isl_bool equal;
14271 isl_size total, total2;
14273 total = isl_basic_map_dim(bmap1, isl_dim_all);
14274 total2 = isl_basic_map_dim(bmap2, isl_dim_all);
14275 if (total < 0 || total2 < 0)
14276 return isl_bool_error;
14277 if (total != total2)
14278 isl_die(isl_basic_map_get_ctx(bmap1), isl_error_invalid,
14279 "incomparable div expressions", return isl_bool_error);
14280 equal = isl_basic_map_equal_div_expr_part(bmap1, pos1, bmap2, pos2,
14281 0, 1);
14282 if (equal < 0 || !equal)
14283 return equal;
14284 equal = isl_basic_map_equal_div_expr_part(bmap1, pos1, bmap2, pos2,
14285 1, 1);
14286 if (equal < 0 || equal)
14287 return isl_bool_not(equal);
14288 return isl_basic_map_equal_div_expr_part(bmap1, pos1, bmap2, pos2,
14289 2, total);
14292 /* Replace the numerator of the constant term of the integer division
14293 * expression at position "div" in "bmap" by "value".
14294 * The caller guarantees that this does not change the meaning
14295 * of the input.
14297 __isl_give isl_basic_map *isl_basic_map_set_div_expr_constant_num_si_inplace(
14298 __isl_take isl_basic_map *bmap, int div, int value)
14300 if (isl_basic_map_check_range(bmap, isl_dim_div, div, 1) < 0)
14301 return isl_basic_map_free(bmap);
14303 isl_int_set_si(bmap->div[div][1], value);
14305 return bmap;
14308 /* Is the point "inner" internal to inequality constraint "ineq"
14309 * of "bset"?
14310 * The point is considered to be internal to the inequality constraint,
14311 * if it strictly lies on the positive side of the inequality constraint,
14312 * or if it lies on the constraint and the constraint is lexico-positive.
14314 static isl_bool is_internal(__isl_keep isl_vec *inner,
14315 __isl_keep isl_basic_set *bset, int ineq)
14317 isl_ctx *ctx;
14318 int pos;
14319 isl_size total;
14321 if (!inner || !bset)
14322 return isl_bool_error;
14324 ctx = isl_basic_set_get_ctx(bset);
14325 isl_seq_inner_product(inner->el, bset->ineq[ineq], inner->size,
14326 &ctx->normalize_gcd);
14327 if (!isl_int_is_zero(ctx->normalize_gcd))
14328 return isl_int_is_nonneg(ctx->normalize_gcd);
14330 total = isl_basic_set_dim(bset, isl_dim_all);
14331 if (total < 0)
14332 return isl_bool_error;
14333 pos = isl_seq_first_non_zero(bset->ineq[ineq] + 1, total);
14334 return isl_int_is_pos(bset->ineq[ineq][1 + pos]);
14337 /* Tighten the inequality constraints of "bset" that are outward with respect
14338 * to the point "vec".
14339 * That is, tighten the constraints that are not satisfied by "vec".
14341 * "vec" is a point internal to some superset S of "bset" that is used
14342 * to make the subsets of S disjoint, by tightening one half of the constraints
14343 * that separate two subsets. In particular, the constraints of S
14344 * are all satisfied by "vec" and should not be tightened.
14345 * Of the internal constraints, those that have "vec" on the outside
14346 * are tightened. The shared facet is included in the adjacent subset
14347 * with the opposite constraint.
14348 * For constraints that saturate "vec", this criterion cannot be used
14349 * to determine which of the two sides should be tightened.
14350 * Instead, the sign of the first non-zero coefficient is used
14351 * to make this choice. Note that this second criterion is never used
14352 * on the constraints of S since "vec" is interior to "S".
14354 __isl_give isl_basic_set *isl_basic_set_tighten_outward(
14355 __isl_take isl_basic_set *bset, __isl_keep isl_vec *vec)
14357 int j;
14359 bset = isl_basic_set_cow(bset);
14360 if (!bset)
14361 return NULL;
14362 for (j = 0; j < bset->n_ineq; ++j) {
14363 isl_bool internal;
14365 internal = is_internal(vec, bset, j);
14366 if (internal < 0)
14367 return isl_basic_set_free(bset);
14368 if (internal)
14369 continue;
14370 isl_int_sub_ui(bset->ineq[j][0], bset->ineq[j][0], 1);
14373 return bset;
14376 /* Replace the variables x of type "type" starting at "first" in "bmap"
14377 * by x' with x = M x' with M the matrix trans.
14378 * That is, replace the corresponding coefficients c by c M.
14380 * The transformation matrix should be a square matrix.
14382 __isl_give isl_basic_map *isl_basic_map_transform_dims(
14383 __isl_take isl_basic_map *bmap, enum isl_dim_type type, unsigned first,
14384 __isl_take isl_mat *trans)
14386 unsigned pos;
14388 bmap = isl_basic_map_cow(bmap);
14389 if (!bmap || !trans)
14390 goto error;
14392 if (trans->n_row != trans->n_col)
14393 isl_die(trans->ctx, isl_error_invalid,
14394 "expecting square transformation matrix", goto error);
14395 if (isl_basic_map_check_range(bmap, type, first, trans->n_row) < 0)
14396 goto error;
14398 pos = isl_basic_map_offset(bmap, type) + first;
14400 if (isl_mat_sub_transform(bmap->eq, bmap->n_eq, pos,
14401 isl_mat_copy(trans)) < 0)
14402 goto error;
14403 if (isl_mat_sub_transform(bmap->ineq, bmap->n_ineq, pos,
14404 isl_mat_copy(trans)) < 0)
14405 goto error;
14406 if (isl_mat_sub_transform(bmap->div, bmap->n_div, 1 + pos,
14407 isl_mat_copy(trans)) < 0)
14408 goto error;
14410 ISL_F_CLR(bmap, ISL_BASIC_MAP_SORTED);
14411 ISL_F_CLR(bmap, ISL_BASIC_MAP_NORMALIZED_DIVS);
14413 isl_mat_free(trans);
14414 return bmap;
14415 error:
14416 isl_mat_free(trans);
14417 isl_basic_map_free(bmap);
14418 return NULL;
14421 /* Replace the variables x of type "type" starting at "first" in "bset"
14422 * by x' with x = M x' with M the matrix trans.
14423 * That is, replace the corresponding coefficients c by c M.
14425 * The transformation matrix should be a square matrix.
14427 __isl_give isl_basic_set *isl_basic_set_transform_dims(
14428 __isl_take isl_basic_set *bset, enum isl_dim_type type, unsigned first,
14429 __isl_take isl_mat *trans)
14431 return isl_basic_map_transform_dims(bset, type, first, trans);