add isl_mat_diag
[isl.git] / isl_local_space.c
blob17ac9ea37501ad692b3cf2630321aeb76eedcb79
1 /*
2 * Copyright 2011 INRIA Saclay
4 * Use of this software is governed by the GNU LGPLv2.1 license
6 * Written by Sven Verdoolaege, INRIA Saclay - Ile-de-France,
7 * Parc Club Orsay Universite, ZAC des vignes, 4 rue Jacques Monod,
8 * 91893 Orsay, France
9 */
11 #include <isl_ctx_private.h>
12 #include <isl_map_private.h>
13 #include <isl_local_space_private.h>
14 #include <isl_dim_private.h>
15 #include <isl_mat_private.h>
16 #include <isl/seq.h>
18 isl_ctx *isl_local_space_get_ctx(__isl_keep isl_local_space *ls)
20 return ls ? ls->dim->ctx : NULL;
23 __isl_give isl_local_space *isl_local_space_alloc_div(__isl_take isl_dim *dim,
24 __isl_take isl_mat *div)
26 isl_ctx *ctx;
27 isl_local_space *ls = NULL;
29 if (!dim)
30 goto error;
32 ctx = isl_dim_get_ctx(dim);
33 ls = isl_calloc_type(ctx, struct isl_local_space);
34 if (!ls)
35 goto error;
37 ls->ref = 1;
38 ls->dim = dim;
39 ls->div = div;
41 return ls;
42 error:
43 isl_dim_free(dim);
44 isl_local_space_free(ls);
45 return NULL;
48 __isl_give isl_local_space *isl_local_space_alloc(__isl_take isl_dim *dim,
49 unsigned n_div)
51 isl_ctx *ctx;
52 isl_mat *div;
53 unsigned total;
55 if (!dim)
56 return NULL;
58 total = isl_dim_total(dim);
60 ctx = isl_dim_get_ctx(dim);
61 div = isl_mat_alloc(ctx, n_div, 1 + 1 + total + n_div);
62 return isl_local_space_alloc_div(dim, div);
65 __isl_give isl_local_space *isl_local_space_from_dim(__isl_take isl_dim *dim)
67 return isl_local_space_alloc(dim, 0);
70 __isl_give isl_local_space *isl_local_space_copy(__isl_keep isl_local_space *ls)
72 if (!ls)
73 return NULL;
75 ls->ref++;
76 return ls;
79 __isl_give isl_local_space *isl_local_space_dup(__isl_keep isl_local_space *ls)
81 if (!ls)
82 return NULL;
84 return isl_local_space_alloc_div(isl_dim_copy(ls->dim),
85 isl_mat_copy(ls->div));
89 __isl_give isl_local_space *isl_local_space_cow(__isl_take isl_local_space *ls)
91 if (!ls)
92 return NULL;
94 if (ls->ref == 1)
95 return ls;
96 ls->ref--;
97 return isl_local_space_dup(ls);
100 void *isl_local_space_free(__isl_take isl_local_space *ls)
102 if (!ls)
103 return NULL;
105 if (--ls->ref > 0)
106 return NULL;
108 isl_dim_free(ls->dim);
109 isl_mat_free(ls->div);
111 free(ls);
113 return NULL;
116 /* Return true if the two local spaces are identical, with identical
117 * expressions for the integer divisions.
119 int isl_local_space_is_equal(__isl_keep isl_local_space *ls1,
120 __isl_keep isl_local_space *ls2)
122 int equal;
124 if (!ls1 || !ls2)
125 return -1;
127 equal = isl_dim_equal(ls1->dim, ls2->dim);
128 if (equal < 0 || !equal)
129 return equal;
131 if (!isl_local_space_divs_known(ls1))
132 return 0;
133 if (!isl_local_space_divs_known(ls2))
134 return 0;
136 return isl_mat_is_equal(ls1->div, ls2->div);
139 int isl_local_space_dim(__isl_keep isl_local_space *ls,
140 enum isl_dim_type type)
142 if (!ls)
143 return 0;
144 if (type == isl_dim_div)
145 return ls->div->n_row;
146 if (type == isl_dim_all)
147 return isl_dim_size(ls->dim, isl_dim_all) + ls->div->n_row;
148 return isl_dim_size(ls->dim, type);
151 unsigned isl_local_space_offset(__isl_keep isl_local_space *ls,
152 enum isl_dim_type type)
154 isl_dim *dim;
156 if (!ls)
157 return 0;
159 dim = ls->dim;
160 switch (type) {
161 case isl_dim_cst: return 0;
162 case isl_dim_param: return 1;
163 case isl_dim_in: return 1 + dim->nparam;
164 case isl_dim_out: return 1 + dim->nparam + dim->n_in;
165 case isl_dim_div: return 1 + dim->nparam + dim->n_in + dim->n_out;
166 default: return 0;
170 const char *isl_local_space_get_dim_name(__isl_keep isl_local_space *ls,
171 enum isl_dim_type type, unsigned pos)
173 return ls ? isl_dim_get_name(ls->dim, type, pos) : NULL;
176 __isl_give isl_div *isl_local_space_get_div(__isl_keep isl_local_space *ls,
177 int pos)
179 isl_basic_map *bmap;
181 if (!ls)
182 return NULL;
184 if (pos < 0 || pos >= ls->div->n_row)
185 isl_die(isl_local_space_get_ctx(ls), isl_error_invalid,
186 "index out of bounds", return NULL);
188 if (isl_int_is_zero(ls->div->row[pos][0]))
189 isl_die(isl_local_space_get_ctx(ls), isl_error_invalid,
190 "expression of div unknown", return NULL);
192 bmap = isl_basic_map_from_local_space(isl_local_space_copy(ls));
193 return isl_basic_map_div(bmap, pos);
196 __isl_give isl_dim *isl_local_space_get_dim(__isl_keep isl_local_space *ls)
198 if (!ls)
199 return NULL;
201 return isl_dim_copy(ls->dim);
204 __isl_give isl_local_space *isl_local_space_set_dim_name(
205 __isl_take isl_local_space *ls,
206 enum isl_dim_type type, unsigned pos, const char *s)
208 ls = isl_local_space_cow(ls);
209 if (!ls)
210 return NULL;
211 ls->dim = isl_dim_set_name(ls->dim, type, pos, s);
212 if (!ls->dim)
213 return isl_local_space_free(ls);
215 return ls;
218 __isl_give isl_local_space *isl_local_space_reset_dim(
219 __isl_take isl_local_space *ls, __isl_take isl_dim *dim)
221 ls = isl_local_space_cow(ls);
222 if (!ls || !dim)
223 goto error;
225 isl_dim_free(ls->dim);
226 ls->dim = dim;
228 return ls;
229 error:
230 isl_local_space_free(ls);
231 isl_dim_free(dim);
232 return NULL;
235 /* Reorder the columns of the given div definitions according to the
236 * given reordering.
237 * The order of the divs themselves is assumed not to change.
239 static __isl_give isl_mat *reorder_divs(__isl_take isl_mat *div,
240 __isl_take isl_reordering *r)
242 int i, j;
243 isl_mat *mat;
244 int extra;
246 if (!div || !r)
247 goto error;
249 extra = isl_dim_total(r->dim) + div->n_row - r->len;
250 mat = isl_mat_alloc(div->ctx, div->n_row, div->n_col + extra);
251 if (!mat)
252 goto error;
254 for (i = 0; i < div->n_row; ++i) {
255 isl_seq_cpy(mat->row[i], div->row[i], 2);
256 isl_seq_clr(mat->row[i] + 2, mat->n_col - 2);
257 for (j = 0; j < r->len; ++j)
258 isl_int_set(mat->row[i][2 + r->pos[j]],
259 div->row[i][2 + j]);
262 isl_reordering_free(r);
263 isl_mat_free(div);
264 return mat;
265 error:
266 isl_reordering_free(r);
267 isl_mat_free(div);
268 return NULL;
271 /* Reorder the dimensions of "ls" according to the given reordering.
272 * The reordering r is assumed to have been extended with the local
273 * variables, leaving them in the same order.
275 __isl_give isl_local_space *isl_local_space_realign(
276 __isl_take isl_local_space *ls, __isl_take isl_reordering *r)
278 ls = isl_local_space_cow(ls);
279 if (!ls || !r)
280 goto error;
282 ls->div = reorder_divs(ls->div, isl_reordering_copy(r));
283 if (!ls->div)
284 goto error;
286 ls = isl_local_space_reset_dim(ls, isl_dim_copy(r->dim));
288 isl_reordering_free(r);
289 return ls;
290 error:
291 isl_local_space_free(ls);
292 isl_reordering_free(r);
293 return NULL;
296 __isl_give isl_local_space *isl_local_space_add_div(
297 __isl_take isl_local_space *ls, __isl_take isl_vec *div)
299 ls = isl_local_space_cow(ls);
300 if (!ls || !div)
301 goto error;
303 if (ls->div->n_col != div->size)
304 isl_die(isl_local_space_get_ctx(ls), isl_error_invalid,
305 "incompatible dimensions", goto error);
307 ls->div = isl_mat_add_zero_cols(ls->div, 1);
308 ls->div = isl_mat_add_rows(ls->div, 1);
309 if (!ls->div)
310 goto error;
312 isl_seq_cpy(ls->div->row[ls->div->n_row - 1], div->el, div->size);
313 isl_int_set_si(ls->div->row[ls->div->n_row - 1][div->size], 0);
315 isl_vec_free(div);
316 return ls;
317 error:
318 isl_local_space_free(ls);
319 isl_vec_free(div);
320 return NULL;
323 __isl_give isl_local_space *isl_local_space_replace_divs(
324 __isl_take isl_local_space *ls, __isl_take isl_mat *div)
326 ls = isl_local_space_cow(ls);
328 if (!ls || !div)
329 goto error;
331 isl_mat_free(ls->div);
332 ls->div = div;
333 return ls;
334 error:
335 isl_mat_free(div);
336 isl_local_space_free(ls);
337 return NULL;
340 /* Copy row "s" of "src" to row "d" of "dst", applying the expansion
341 * defined by "exp".
343 static void expand_row(__isl_keep isl_mat *dst, int d,
344 __isl_keep isl_mat *src, int s, int *exp)
346 int i;
347 unsigned c = src->n_col - src->n_row;
349 isl_seq_cpy(dst->row[d], src->row[s], c);
350 isl_seq_clr(dst->row[d] + c, dst->n_col - c);
352 for (i = 0; i < s; ++i)
353 isl_int_set(dst->row[d][c + exp[i]], src->row[s][c + i]);
356 /* Compare (known) divs.
357 * Return non-zero if at least one of the two divs is unknown.
359 static int cmp_row(__isl_keep isl_mat *div, int i, int j)
361 int li, lj;
363 if (isl_int_is_zero(div->row[j][0]))
364 return -1;
365 if (isl_int_is_zero(div->row[i][0]))
366 return 1;
368 li = isl_seq_last_non_zero(div->row[i], div->n_col);
369 lj = isl_seq_last_non_zero(div->row[j], div->n_col);
371 if (li != lj)
372 return li - lj;
374 return isl_seq_cmp(div->row[i], div->row[j], div->n_col);
377 /* Combine the two lists of divs into a single list.
378 * For each row i in div1, exp1[i] is set to the position of the corresponding
379 * row in the result. Similarly for div2 and exp2.
380 * This function guarantees
381 * exp1[i] >= i
382 * exp1[i+1] > exp1[i]
383 * For optimal merging, the two input list should have been sorted.
385 __isl_give isl_mat *isl_merge_divs(__isl_keep isl_mat *div1,
386 __isl_keep isl_mat *div2, int *exp1, int *exp2)
388 int i, j, k;
389 isl_mat *div = NULL;
390 unsigned d = div1->n_col - div1->n_row;
392 div = isl_mat_alloc(div1->ctx, 1 + div1->n_row + div2->n_row,
393 d + div1->n_row + div2->n_row);
394 if (!div)
395 return NULL;
397 for (i = 0, j = 0, k = 0; i < div1->n_row && j < div2->n_row; ++k) {
398 int cmp;
400 expand_row(div, k, div1, i, exp1);
401 expand_row(div, k + 1, div2, j, exp2);
403 cmp = cmp_row(div, k, k + 1);
404 if (cmp == 0) {
405 exp1[i++] = k;
406 exp2[j++] = k;
407 } else if (cmp < 0) {
408 exp1[i++] = k;
409 } else {
410 exp2[j++] = k;
411 isl_seq_cpy(div->row[k], div->row[k + 1], div->n_col);
414 for (; i < div1->n_row; ++i, ++k) {
415 expand_row(div, k, div1, i, exp1);
416 exp1[i] = k;
418 for (; j < div2->n_row; ++j, ++k) {
419 expand_row(div, k, div2, j, exp2);
420 exp2[j] = k;
423 div->n_row = k;
424 div->n_col = d + k;
426 return div;
429 int isl_local_space_divs_known(__isl_keep isl_local_space *ls)
431 int i;
433 if (!ls)
434 return -1;
436 for (i = 0; i < ls->div->n_row; ++i)
437 if (isl_int_is_zero(ls->div->row[i][0]))
438 return 0;
440 return 1;
443 /* Construct a local space for a map that has the given local
444 * space as domain and that has a zero-dimensional range.
446 __isl_give isl_local_space *isl_local_space_from_domain(
447 __isl_take isl_local_space *ls)
449 ls = isl_local_space_cow(ls);
450 if (!ls)
451 return NULL;
452 ls->dim = isl_dim_from_domain(ls->dim);
453 if (!ls->dim)
454 return isl_local_space_free(ls);
455 return ls;
458 __isl_give isl_local_space *isl_local_space_add_dims(
459 __isl_take isl_local_space *ls, enum isl_dim_type type, unsigned n)
461 int pos;
463 if (!ls)
464 return NULL;
465 pos = isl_local_space_dim(ls, type);
466 return isl_local_space_insert_dims(ls, type, pos, n);
469 /* Remove common factor of non-constant terms and denominator.
471 static void normalize_div(__isl_keep isl_local_space *ls, int div)
473 isl_ctx *ctx = ls->div->ctx;
474 unsigned total = ls->div->n_col - 2;
476 isl_seq_gcd(ls->div->row[div] + 2, total, &ctx->normalize_gcd);
477 isl_int_gcd(ctx->normalize_gcd,
478 ctx->normalize_gcd, ls->div->row[div][0]);
479 if (isl_int_is_one(ctx->normalize_gcd))
480 return;
482 isl_seq_scale_down(ls->div->row[div] + 2, ls->div->row[div] + 2,
483 ctx->normalize_gcd, total);
484 isl_int_divexact(ls->div->row[div][0], ls->div->row[div][0],
485 ctx->normalize_gcd);
486 isl_int_fdiv_q(ls->div->row[div][1], ls->div->row[div][1],
487 ctx->normalize_gcd);
490 /* Exploit the equalities in "eq" to simplify the expressions of
491 * the integer divisions in "ls".
492 * The integer divisions in "ls" are assumed to appear as regular
493 * dimensions in "eq".
495 __isl_give isl_local_space *isl_local_space_substitute_equalities(
496 __isl_take isl_local_space *ls, __isl_take isl_basic_set *eq)
498 int i, j, k;
499 unsigned total;
500 unsigned n_div;
502 ls = isl_local_space_cow(ls);
503 if (!ls || !eq)
504 goto error;
506 total = isl_dim_total(eq->dim);
507 if (isl_local_space_dim(ls, isl_dim_all) != total)
508 isl_die(isl_local_space_get_ctx(ls), isl_error_invalid,
509 "dimensions don't match", goto error);
510 total++;
511 n_div = eq->n_div;
512 for (i = 0; i < eq->n_eq; ++i) {
513 j = isl_seq_last_non_zero(eq->eq[i], total + n_div);
514 if (j < 0 || j == 0 || j >= total)
515 continue;
517 for (k = 0; k < ls->div->n_row; ++k) {
518 if (isl_int_is_zero(ls->div->row[k][1 + j]))
519 continue;
520 isl_seq_elim(ls->div->row[k] + 1, eq->eq[i], j, total,
521 &ls->div->row[k][0]);
522 normalize_div(ls, k);
526 isl_basic_set_free(eq);
527 return ls;
528 error:
529 isl_basic_set_free(eq);
530 isl_local_space_free(ls);
531 return NULL;
534 int isl_local_space_is_named_or_nested(__isl_keep isl_local_space *ls,
535 enum isl_dim_type type)
537 if (!ls)
538 return -1;
539 return isl_dim_is_named_or_nested(ls->dim, type);
542 __isl_give isl_local_space *isl_local_space_drop_dims(
543 __isl_take isl_local_space *ls,
544 enum isl_dim_type type, unsigned first, unsigned n)
546 isl_ctx *ctx;
548 if (!ls)
549 return NULL;
550 if (n == 0 && !isl_local_space_is_named_or_nested(ls, type))
551 return ls;
553 ctx = isl_local_space_get_ctx(ls);
554 if (first + n > isl_local_space_dim(ls, type))
555 isl_die(ctx, isl_error_invalid, "range out of bounds",
556 return isl_local_space_free(ls));
558 ls = isl_local_space_cow(ls);
559 if (!ls)
560 return NULL;
562 if (type == isl_dim_div) {
563 ls->div = isl_mat_drop_rows(ls->div, first, n);
564 } else {
565 ls->dim = isl_dim_drop(ls->dim, type, first, n);
566 if (!ls->dim)
567 return isl_local_space_free(ls);
570 first += 1 + isl_local_space_offset(ls, type);
571 ls->div = isl_mat_drop_cols(ls->div, first, n);
572 if (!ls->div)
573 return isl_local_space_free(ls);
575 return ls;
578 __isl_give isl_local_space *isl_local_space_insert_dims(
579 __isl_take isl_local_space *ls,
580 enum isl_dim_type type, unsigned first, unsigned n)
582 isl_ctx *ctx;
584 if (!ls)
585 return NULL;
586 if (n == 0 && !isl_local_space_is_named_or_nested(ls, type))
587 return ls;
589 ctx = isl_local_space_get_ctx(ls);
590 if (first > isl_local_space_dim(ls, type))
591 isl_die(ctx, isl_error_invalid, "position out of bounds",
592 return isl_local_space_free(ls));
594 ls = isl_local_space_cow(ls);
595 if (!ls)
596 return NULL;
598 if (type == isl_dim_div) {
599 ls->div = isl_mat_insert_zero_rows(ls->div, first, n);
600 } else {
601 ls->dim = isl_dim_insert(ls->dim, type, first, n);
602 if (!ls->dim)
603 return isl_local_space_free(ls);
606 first += 1 + isl_local_space_offset(ls, type);
607 ls->div = isl_mat_insert_zero_cols(ls->div, first, n);
608 if (!ls->div)
609 return isl_local_space_free(ls);
611 return ls;