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,
11 #include <isl_aff_private.h>
12 #include <isl_local_space_private.h>
13 #include <isl_mat_private.h>
16 __isl_give isl_aff
*isl_aff_alloc_vec(__isl_take isl_local_space
*ls
,
17 __isl_take isl_vec
*v
)
24 aff
= isl_calloc_type(v
->ctx
, struct isl_aff
);
34 isl_local_space_free(ls
);
39 __isl_give isl_aff
*isl_aff_alloc(__isl_take isl_local_space
*ls
)
48 ctx
= isl_local_space_get_ctx(ls
);
49 if (!isl_local_space_divs_known(ls
))
50 isl_die(ctx
, isl_error_invalid
, "local space has unknown divs",
53 total
= isl_local_space_dim(ls
, isl_dim_all
);
54 v
= isl_vec_alloc(ctx
, 1 + 1 + total
);
55 return isl_aff_alloc_vec(ls
, v
);
57 isl_local_space_free(ls
);
61 __isl_give isl_aff
*isl_aff_zero(__isl_take isl_local_space
*ls
)
65 aff
= isl_aff_alloc(ls
);
69 isl_int_set_si(aff
->v
->el
[0], 1);
70 isl_seq_clr(aff
->v
->el
+ 1, aff
->v
->size
- 1);
75 __isl_give isl_aff
*isl_aff_copy(__isl_keep isl_aff
*aff
)
84 __isl_give isl_aff
*isl_aff_dup(__isl_keep isl_aff
*aff
)
89 return isl_aff_alloc_vec(isl_local_space_copy(aff
->ls
),
90 isl_vec_copy(aff
->v
));
93 __isl_give isl_aff
*isl_aff_cow(__isl_take isl_aff
*aff
)
101 return isl_aff_dup(aff
);
104 void *isl_aff_free(__isl_take isl_aff
*aff
)
112 isl_local_space_free(aff
->ls
);
113 isl_vec_free(aff
->v
);
120 isl_ctx
*isl_aff_get_ctx(__isl_keep isl_aff
*aff
)
122 return aff
? isl_local_space_get_ctx(aff
->ls
) : NULL
;
125 int isl_aff_dim(__isl_keep isl_aff
*aff
, enum isl_dim_type type
)
127 return aff
? isl_local_space_dim(aff
->ls
, type
) : 0;
130 __isl_give isl_dim
*isl_aff_get_dim(__isl_keep isl_aff
*aff
)
132 return aff
? isl_local_space_get_dim(aff
->ls
) : NULL
;
135 __isl_give isl_local_space
*isl_aff_get_local_space(__isl_keep isl_aff
*aff
)
137 return aff
? isl_local_space_copy(aff
->ls
) : NULL
;
140 const char *isl_aff_get_dim_name(__isl_keep isl_aff
*aff
,
141 enum isl_dim_type type
, unsigned pos
)
143 return aff
? isl_local_space_get_dim_name(aff
->ls
, type
, pos
) : 0;
146 int isl_aff_get_denominator(__isl_keep isl_aff
*aff
, isl_int
*v
)
150 isl_int_set(*v
, aff
->v
->el
[0]);
154 int isl_aff_get_constant(__isl_keep isl_aff
*aff
, isl_int
*v
)
158 isl_int_set(*v
, aff
->v
->el
[1]);
162 int isl_aff_get_coefficient(__isl_keep isl_aff
*aff
,
163 enum isl_dim_type type
, int pos
, isl_int
*v
)
168 if (pos
>= isl_local_space_dim(aff
->ls
, type
))
169 isl_die(aff
->v
->ctx
, isl_error_invalid
,
170 "position out of bounds", return -1);
172 pos
+= isl_local_space_offset(aff
->ls
, type
);
173 isl_int_set(*v
, aff
->v
->el
[1 + pos
]);
178 __isl_give isl_aff
*isl_aff_set_denominator(__isl_take isl_aff
*aff
, isl_int v
)
180 aff
= isl_aff_cow(aff
);
184 aff
->v
= isl_vec_cow(aff
->v
);
186 return isl_aff_free(aff
);
188 isl_int_set(aff
->v
->el
[0], v
);
193 __isl_give isl_aff
*isl_aff_set_constant(__isl_take isl_aff
*aff
, isl_int v
)
195 aff
= isl_aff_cow(aff
);
199 aff
->v
= isl_vec_cow(aff
->v
);
201 return isl_aff_free(aff
);
203 isl_int_set(aff
->v
->el
[1], v
);
208 __isl_give isl_aff
*isl_aff_add_constant(__isl_take isl_aff
*aff
, isl_int v
)
210 if (isl_int_is_zero(v
))
213 aff
= isl_aff_cow(aff
);
217 aff
->v
= isl_vec_cow(aff
->v
);
219 return isl_aff_free(aff
);
221 isl_int_addmul(aff
->v
->el
[1], aff
->v
->el
[0], v
);
226 __isl_give isl_aff
*isl_aff_set_constant_si(__isl_take isl_aff
*aff
, int v
)
228 aff
= isl_aff_cow(aff
);
232 aff
->v
= isl_vec_cow(aff
->v
);
234 return isl_aff_free(aff
);
236 isl_int_set_si(aff
->v
->el
[1], v
);
241 __isl_give isl_aff
*isl_aff_set_coefficient(__isl_take isl_aff
*aff
,
242 enum isl_dim_type type
, int pos
, isl_int v
)
247 if (pos
>= isl_local_space_dim(aff
->ls
, type
))
248 isl_die(aff
->v
->ctx
, isl_error_invalid
,
249 "position out of bounds", return isl_aff_free(aff
));
251 aff
= isl_aff_cow(aff
);
255 aff
->v
= isl_vec_cow(aff
->v
);
257 return isl_aff_free(aff
);
259 pos
+= isl_local_space_offset(aff
->ls
, type
);
260 isl_int_set(aff
->v
->el
[1 + pos
], v
);
265 __isl_give isl_aff
*isl_aff_set_coefficient_si(__isl_take isl_aff
*aff
,
266 enum isl_dim_type type
, int pos
, int v
)
271 if (pos
>= isl_local_space_dim(aff
->ls
, type
))
272 isl_die(aff
->v
->ctx
, isl_error_invalid
,
273 "position out of bounds", return isl_aff_free(aff
));
275 aff
= isl_aff_cow(aff
);
279 aff
->v
= isl_vec_cow(aff
->v
);
281 return isl_aff_free(aff
);
283 pos
+= isl_local_space_offset(aff
->ls
, type
);
284 isl_int_set_si(aff
->v
->el
[1 + pos
], v
);
289 __isl_give isl_aff
*isl_aff_add_coefficient(__isl_take isl_aff
*aff
,
290 enum isl_dim_type type
, int pos
, isl_int v
)
295 if (pos
>= isl_local_space_dim(aff
->ls
, type
))
296 isl_die(aff
->v
->ctx
, isl_error_invalid
,
297 "position out of bounds", return isl_aff_free(aff
));
299 aff
= isl_aff_cow(aff
);
303 aff
->v
= isl_vec_cow(aff
->v
);
305 return isl_aff_free(aff
);
307 pos
+= isl_local_space_offset(aff
->ls
, type
);
308 isl_int_addmul(aff
->v
->el
[1 + pos
], aff
->v
->el
[0], v
);
313 __isl_give isl_aff
*isl_aff_add_coefficient_si(__isl_take isl_aff
*aff
,
314 enum isl_dim_type type
, int pos
, int v
)
319 isl_int_set_si(t
, v
);
320 aff
= isl_aff_add_coefficient(aff
, type
, pos
, t
);
326 __isl_give isl_div
*isl_aff_get_div(__isl_keep isl_aff
*aff
, int pos
)
331 return isl_local_space_get_div(aff
->ls
, pos
);
334 __isl_give isl_aff
*isl_aff_neg(__isl_take isl_aff
*aff
)
336 aff
= isl_aff_cow(aff
);
339 aff
->v
= isl_vec_cow(aff
->v
);
341 return isl_aff_free(aff
);
343 isl_seq_neg(aff
->v
->el
+ 1, aff
->v
->el
+ 1, aff
->v
->size
- 1);
348 /* Given f, return ceil(f).
349 * If f is an integer expression, then just return f.
350 * Otherwise, create a new div d = [-f] and return the expression -d.
352 __isl_give isl_aff
*isl_aff_ceil(__isl_take isl_aff
*aff
)
360 if (isl_int_is_one(aff
->v
->el
[0]))
363 aff
= isl_aff_cow(aff
);
367 isl_seq_neg(aff
->v
->el
+ 1, aff
->v
->el
+ 1, aff
->v
->size
- 1);
368 aff
->ls
= isl_local_space_add_div(aff
->ls
, isl_vec_copy(aff
->v
));
372 ctx
= isl_aff_get_ctx(aff
);
374 isl_vec_free(aff
->v
);
375 aff
->v
= isl_vec_alloc(ctx
, size
+ 1);
376 aff
->v
= isl_vec_clr(aff
->v
);
379 isl_int_set_si(aff
->v
->el
[0], 1);
380 isl_int_set_si(aff
->v
->el
[size
], -1);
388 /* Apply the expansion computed by isl_merge_divs.
389 * The expansion itself is given by "exp" while the resulting
390 * list of divs is given by "div".
392 __isl_give isl_aff
*isl_aff_expand_divs( __isl_take isl_aff
*aff
,
393 __isl_take isl_mat
*div
, int *exp
)
400 aff
= isl_aff_cow(aff
);
404 old_n_div
= isl_local_space_dim(aff
->ls
, isl_dim_div
);
405 new_n_div
= isl_mat_rows(div
);
406 if (new_n_div
< old_n_div
)
407 isl_die(isl_mat_get_ctx(div
), isl_error_invalid
,
408 "not an expansion", goto error
);
410 aff
->v
= isl_vec_extend(aff
->v
, aff
->v
->size
+ new_n_div
- old_n_div
);
414 offset
= 1 + isl_local_space_offset(aff
->ls
, isl_dim_div
);
416 for (i
= new_n_div
- 1; i
>= 0; --i
) {
417 if (j
>= 0 && exp
[j
] == i
) {
419 isl_int_swap(aff
->v
->el
[offset
+ i
],
420 aff
->v
->el
[offset
+ j
]);
423 isl_int_set_si(aff
->v
->el
[offset
+ i
], 0);
426 aff
->ls
= isl_local_space_replace_divs(aff
->ls
, isl_mat_copy(div
));
437 /* Add two affine expressions that live in the same local space.
439 static __isl_give isl_aff
*add_expanded(__isl_take isl_aff
*aff1
,
440 __isl_take isl_aff
*aff2
)
444 aff1
= isl_aff_cow(aff1
);
448 aff1
->v
= isl_vec_cow(aff1
->v
);
454 isl_int_gcd(gcd
, aff1
->v
->el
[0], aff2
->v
->el
[0]);
455 isl_int_divexact(f
, aff2
->v
->el
[0], gcd
);
456 isl_seq_scale(aff1
->v
->el
+ 1, aff1
->v
->el
+ 1, f
, aff1
->v
->size
- 1);
457 isl_int_divexact(f
, aff1
->v
->el
[0], gcd
);
458 isl_seq_addmul(aff1
->v
->el
+ 1, f
, aff2
->v
->el
+ 1, aff1
->v
->size
- 1);
459 isl_int_divexact(f
, aff2
->v
->el
[0], gcd
);
460 isl_int_mul(aff1
->v
->el
[0], aff1
->v
->el
[0], f
);
472 __isl_give isl_aff
*isl_aff_add(__isl_take isl_aff
*aff1
,
473 __isl_take isl_aff
*aff2
)
483 ctx
= isl_aff_get_ctx(aff1
);
484 if (!isl_dim_equal(aff1
->ls
->dim
, aff2
->ls
->dim
))
485 isl_die(ctx
, isl_error_invalid
,
486 "spaces don't match", goto error
);
488 if (aff1
->ls
->div
->n_row
== 0 && aff2
->ls
->div
->n_row
== 0)
489 return add_expanded(aff1
, aff2
);
491 exp1
= isl_alloc_array(ctx
, int, aff1
->ls
->div
->n_row
);
492 exp2
= isl_alloc_array(ctx
, int, aff2
->ls
->div
->n_row
);
496 div
= isl_merge_divs(aff1
->ls
->div
, aff2
->ls
->div
, exp1
, exp2
);
497 aff1
= isl_aff_expand_divs(aff1
, isl_mat_copy(div
), exp1
);
498 aff2
= isl_aff_expand_divs(aff2
, div
, exp2
);
502 return add_expanded(aff1
, aff2
);
511 __isl_give isl_aff
*isl_aff_sub(__isl_take isl_aff
*aff1
,
512 __isl_take isl_aff
*aff2
)
514 return isl_aff_add(aff1
, isl_aff_neg(aff2
));
517 __isl_give isl_aff
*isl_aff_scale(__isl_take isl_aff
*aff
, isl_int f
)
521 if (isl_int_is_one(f
))
524 aff
= isl_aff_cow(aff
);
527 aff
->v
= isl_vec_cow(aff
->v
);
529 return isl_aff_free(aff
);
532 isl_int_gcd(gcd
, aff
->v
->el
[0], f
);
533 isl_int_divexact(aff
->v
->el
[0], aff
->v
->el
[0], gcd
);
534 isl_int_divexact(gcd
, f
, gcd
);
535 isl_seq_scale(aff
->v
->el
+ 1, aff
->v
->el
+ 1, gcd
, aff
->v
->size
- 1);
541 __isl_give isl_aff
*isl_aff_scale_down(__isl_take isl_aff
*aff
, isl_int f
)
545 if (isl_int_is_one(f
))
548 aff
= isl_aff_cow(aff
);
551 aff
->v
= isl_vec_cow(aff
->v
);
553 return isl_aff_free(aff
);
556 isl_seq_gcd(aff
->v
->el
+ 1, aff
->v
->size
- 1, &gcd
);
557 isl_int_gcd(gcd
, gcd
, f
);
558 isl_seq_scale_down(aff
->v
->el
+ 1, aff
->v
->el
+ 1, gcd
, aff
->v
->size
- 1);
559 isl_int_divexact(gcd
, f
, gcd
);
560 isl_int_mul(aff
->v
->el
[0], aff
->v
->el
[0], gcd
);