2 * Copyright 2008-2009 Katholieke Universiteit Leuven
3 * Copyright 2010 INRIA Saclay
4 * Copyright 2012-2013 Ecole Normale Superieure
6 * Use of this software is governed by the MIT license
8 * Written by Sven Verdoolaege, K.U.Leuven, Departement
9 * Computerwetenschappen, Celestijnenlaan 200A, B-3001 Leuven, Belgium
10 * and INRIA Saclay - Ile-de-France, Parc Club Orsay Universite,
11 * ZAC des vignes, 4 rue Jacques Monod, 91893 Orsay, France
12 * and Ecole Normale Superieure, 45 rue d’Ulm, 75230 Paris, France
17 #include <isl_ctx_private.h>
18 #include <isl_map_private.h>
21 #include <isl_polynomial_private.h>
22 #include <isl_printer_private.h>
23 #include <isl_space_private.h>
24 #include <isl_mat_private.h>
25 #include <isl_vec_private.h>
26 #include <isl/union_map.h>
27 #include <isl/constraint.h>
28 #include <isl_local_space_private.h>
29 #include <isl_aff_private.h>
30 #include <isl_val_private.h>
31 #include <isl_constraint_private.h>
32 #include <isl/ast_build.h>
34 #include <isl_output_private.h>
36 #include <bset_to_bmap.c>
37 #include <set_to_map.c>
39 static const char *s_to
[2] = { " -> ", " \\to " };
40 static const char *s_and
[2] = { " and ", " \\wedge " };
41 static const char *s_or
[2] = { " or ", " \\vee " };
42 static const char *s_le
[2] = { "<=", "\\le" };
43 static const char *s_ge
[2] = { ">=", "\\ge" };
44 static const char *s_open_set
[2] = { "{ ", "\\{\\, " };
45 static const char *s_close_set
[2] = { " }", " \\,\\}" };
46 static const char *s_open_list
[2] = { "[", "(" };
47 static const char *s_close_list
[2] = { "]", ")" };
48 static const char *s_such_that
[2] = { " : ", " \\mid " };
49 static const char *s_open_exists
[2] = { "exists (", "\\exists \\, " };
50 static const char *s_close_exists
[2] = { ")", "" };
51 static const char *s_div_prefix
[2] = { "e", "\\alpha_" };
52 static const char *s_param_prefix
[2] = { "p", "p_" };
53 static const char *s_input_prefix
[2] = { "i", "i_" };
54 static const char *s_output_prefix
[2] = { "o", "o_" };
56 static __isl_give isl_printer
*print_constraint_polylib(
57 struct isl_basic_map
*bmap
, int ineq
, int n
, __isl_take isl_printer
*p
)
60 unsigned n_in
= isl_basic_map_dim(bmap
, isl_dim_in
);
61 unsigned n_out
= isl_basic_map_dim(bmap
, isl_dim_out
);
62 unsigned nparam
= isl_basic_map_dim(bmap
, isl_dim_param
);
63 isl_int
*c
= ineq
? bmap
->ineq
[n
] : bmap
->eq
[n
];
65 p
= isl_printer_start_line(p
);
66 p
= isl_printer_print_int(p
, ineq
);
67 for (i
= 0; i
< n_out
; ++i
) {
68 p
= isl_printer_print_str(p
, " ");
69 p
= isl_printer_print_isl_int(p
, c
[1+nparam
+n_in
+i
]);
71 for (i
= 0; i
< n_in
; ++i
) {
72 p
= isl_printer_print_str(p
, " ");
73 p
= isl_printer_print_isl_int(p
, c
[1+nparam
+i
]);
75 for (i
= 0; i
< bmap
->n_div
; ++i
) {
76 p
= isl_printer_print_str(p
, " ");
77 p
= isl_printer_print_isl_int(p
, c
[1+nparam
+n_in
+n_out
+i
]);
79 for (i
= 0; i
< nparam
; ++i
) {
80 p
= isl_printer_print_str(p
, " ");
81 p
= isl_printer_print_isl_int(p
, c
[1+i
]);
83 p
= isl_printer_print_str(p
, " ");
84 p
= isl_printer_print_isl_int(p
, c
[0]);
85 p
= isl_printer_end_line(p
);
89 static __isl_give isl_printer
*print_constraints_polylib(
90 struct isl_basic_map
*bmap
, __isl_take isl_printer
*p
)
94 p
= isl_printer_set_isl_int_width(p
, 5);
96 for (i
= 0; i
< bmap
->n_eq
; ++i
)
97 p
= print_constraint_polylib(bmap
, 0, i
, p
);
98 for (i
= 0; i
< bmap
->n_ineq
; ++i
)
99 p
= print_constraint_polylib(bmap
, 1, i
, p
);
104 static __isl_give isl_printer
*bset_print_constraints_polylib(
105 struct isl_basic_set
*bset
, __isl_take isl_printer
*p
)
107 return print_constraints_polylib(bset_to_bmap(bset
), p
);
110 static __isl_give isl_printer
*isl_basic_map_print_polylib(
111 __isl_keep isl_basic_map
*bmap
, __isl_take isl_printer
*p
, int ext
)
113 unsigned total
= isl_basic_map_total_dim(bmap
);
114 p
= isl_printer_start_line(p
);
115 p
= isl_printer_print_int(p
, bmap
->n_eq
+ bmap
->n_ineq
);
116 p
= isl_printer_print_str(p
, " ");
117 p
= isl_printer_print_int(p
, 1 + total
+ 1);
119 p
= isl_printer_print_str(p
, " ");
120 p
= isl_printer_print_int(p
,
121 isl_basic_map_dim(bmap
, isl_dim_out
));
122 p
= isl_printer_print_str(p
, " ");
123 p
= isl_printer_print_int(p
,
124 isl_basic_map_dim(bmap
, isl_dim_in
));
125 p
= isl_printer_print_str(p
, " ");
126 p
= isl_printer_print_int(p
,
127 isl_basic_map_dim(bmap
, isl_dim_div
));
128 p
= isl_printer_print_str(p
, " ");
129 p
= isl_printer_print_int(p
,
130 isl_basic_map_dim(bmap
, isl_dim_param
));
132 p
= isl_printer_end_line(p
);
133 return print_constraints_polylib(bmap
, p
);
136 static __isl_give isl_printer
*isl_basic_set_print_polylib(
137 __isl_keep isl_basic_set
*bset
, __isl_take isl_printer
*p
, int ext
)
139 return isl_basic_map_print_polylib(bset_to_bmap(bset
), p
, ext
);
142 static __isl_give isl_printer
*isl_map_print_polylib(__isl_keep isl_map
*map
,
143 __isl_take isl_printer
*p
, int ext
)
147 p
= isl_printer_start_line(p
);
148 p
= isl_printer_print_int(p
, map
->n
);
149 p
= isl_printer_end_line(p
);
150 for (i
= 0; i
< map
->n
; ++i
) {
151 p
= isl_printer_start_line(p
);
152 p
= isl_printer_end_line(p
);
153 p
= isl_basic_map_print_polylib(map
->p
[i
], p
, ext
);
158 static __isl_give isl_printer
*isl_set_print_polylib(__isl_keep isl_set
*set
,
159 __isl_take isl_printer
*p
, int ext
)
161 return isl_map_print_polylib(set_to_map(set
), p
, ext
);
164 static int count_same_name(__isl_keep isl_space
*dim
,
165 enum isl_dim_type type
, unsigned pos
, const char *name
)
171 for (t
= isl_dim_param
; t
<= type
&& t
<= isl_dim_out
; ++t
) {
172 s
= t
== type
? pos
: isl_space_dim(dim
, t
);
173 for (p
= 0; p
< s
; ++p
) {
174 const char *n
= isl_space_get_dim_name(dim
, t
, p
);
175 if (n
&& !strcmp(n
, name
))
182 /* Print the name of the variable of type "type" and position "pos"
185 static __isl_give isl_printer
*print_name(__isl_keep isl_space
*space
,
186 __isl_take isl_printer
*p
, enum isl_dim_type type
, unsigned pos
,
193 name
= type
== isl_dim_div
? NULL
194 : isl_space_get_dim_name(space
, type
, pos
);
198 if (type
== isl_dim_param
)
199 prefix
= s_param_prefix
[latex
];
200 else if (type
== isl_dim_div
)
201 prefix
= s_div_prefix
[latex
];
202 else if (isl_space_is_set(space
) || type
== isl_dim_in
)
203 prefix
= s_input_prefix
[latex
];
205 prefix
= s_output_prefix
[latex
];
206 snprintf(buffer
, sizeof(buffer
), "%s%d", prefix
, pos
);
209 primes
= count_same_name(space
, name
== buffer
? isl_dim_div
: type
,
211 p
= isl_printer_print_str(p
, name
);
213 p
= isl_printer_print_str(p
, "'");
217 static enum isl_dim_type
pos2type(__isl_keep isl_space
*dim
, unsigned *pos
)
219 enum isl_dim_type type
;
220 unsigned n_in
= isl_space_dim(dim
, isl_dim_in
);
221 unsigned n_out
= isl_space_dim(dim
, isl_dim_out
);
222 unsigned nparam
= isl_space_dim(dim
, isl_dim_param
);
224 if (*pos
< 1 + nparam
) {
225 type
= isl_dim_param
;
227 } else if (*pos
< 1 + nparam
+ n_in
) {
230 } else if (*pos
< 1 + nparam
+ n_in
+ n_out
) {
232 *pos
-= 1 + nparam
+ n_in
;
235 *pos
-= 1 + nparam
+ n_in
+ n_out
;
241 /* Can the div expression of the integer division at position "row" of "div"
243 * In particular, are the div expressions available and does the selected
244 * variable have a known explicit representation?
245 * Furthermore, the Omega format does not allow any div expressions
248 static isl_bool
can_print_div_expr(__isl_keep isl_printer
*p
,
249 __isl_keep isl_mat
*div
, int pos
)
251 if (p
->output_format
== ISL_FORMAT_OMEGA
)
252 return isl_bool_false
;
254 return isl_bool_false
;
255 return !isl_int_is_zero(div
->row
[pos
][0]);
258 static __isl_give isl_printer
*print_div(__isl_keep isl_space
*dim
,
259 __isl_keep isl_mat
*div
, int pos
, __isl_take isl_printer
*p
);
261 static __isl_give isl_printer
*print_term(__isl_keep isl_space
*space
,
262 __isl_keep isl_mat
*div
,
263 isl_int c
, unsigned pos
, __isl_take isl_printer
*p
, int latex
)
265 enum isl_dim_type type
;
269 return isl_printer_print_isl_int(p
, c
);
271 type
= pos2type(space
, &pos
);
272 print_div_def
= type
== isl_dim_div
&& can_print_div_expr(p
, div
, pos
);
274 if (isl_int_is_one(c
))
276 else if (isl_int_is_negone(c
))
277 p
= isl_printer_print_str(p
, "-");
279 p
= isl_printer_print_isl_int(p
, c
);
280 if (p
->output_format
== ISL_FORMAT_C
|| print_div_def
)
281 p
= isl_printer_print_str(p
, "*");
284 p
= print_div(space
, div
, pos
, p
);
286 p
= print_name(space
, p
, type
, pos
, latex
);
290 static __isl_give isl_printer
*print_affine_of_len(__isl_keep isl_space
*dim
,
291 __isl_keep isl_mat
*div
,
292 __isl_take isl_printer
*p
, isl_int
*c
, int len
)
297 for (i
= 0, first
= 1; i
< len
; ++i
) {
299 if (isl_int_is_zero(c
[i
]))
302 if (isl_int_is_neg(c
[i
])) {
304 isl_int_neg(c
[i
], c
[i
]);
305 p
= isl_printer_print_str(p
, " - ");
307 p
= isl_printer_print_str(p
, " + ");
310 p
= print_term(dim
, div
, c
[i
], i
, p
, 0);
312 isl_int_neg(c
[i
], c
[i
]);
315 p
= isl_printer_print_str(p
, "0");
319 /* Print an affine expression "c" corresponding to a constraint in "bmap"
320 * to "p", with the variable names taken from "space" and
321 * the integer division definitions taken from "div".
323 static __isl_give isl_printer
*print_affine(__isl_keep isl_basic_map
*bmap
,
324 __isl_keep isl_space
*space
, __isl_keep isl_mat
*div
,
325 __isl_take isl_printer
*p
, isl_int
*c
)
327 unsigned len
= 1 + isl_basic_map_total_dim(bmap
);
328 return print_affine_of_len(space
, div
, p
, c
, len
);
331 /* offset is the offset of local_dim inside data->type of data->space.
333 static __isl_give isl_printer
*print_nested_var_list(__isl_take isl_printer
*p
,
334 __isl_keep isl_space
*local_dim
, enum isl_dim_type local_type
,
335 struct isl_print_space_data
*data
, int offset
)
339 if (data
->space
!= local_dim
&& local_type
== isl_dim_out
)
340 offset
+= local_dim
->n_in
;
342 for (i
= 0; i
< isl_space_dim(local_dim
, local_type
); ++i
) {
344 p
= isl_printer_print_str(p
, ", ");
346 p
= data
->print_dim(p
, data
, offset
+ i
);
348 p
= print_name(data
->space
, p
, data
->type
, offset
+ i
,
354 static __isl_give isl_printer
*print_var_list(__isl_take isl_printer
*p
,
355 __isl_keep isl_space
*space
, enum isl_dim_type type
)
357 struct isl_print_space_data data
= { .space
= space
, .type
= type
};
359 return print_nested_var_list(p
, space
, type
, &data
, 0);
362 static __isl_give isl_printer
*print_nested_map_dim(__isl_take isl_printer
*p
,
363 __isl_keep isl_space
*local_dim
,
364 struct isl_print_space_data
*data
, int offset
);
366 static __isl_give isl_printer
*print_nested_tuple(__isl_take isl_printer
*p
,
367 __isl_keep isl_space
*local_dim
, enum isl_dim_type local_type
,
368 struct isl_print_space_data
*data
, int offset
)
370 const char *name
= NULL
;
371 unsigned n
= isl_space_dim(local_dim
, local_type
);
372 if ((local_type
== isl_dim_in
|| local_type
== isl_dim_out
)) {
373 name
= isl_space_get_tuple_name(local_dim
, local_type
);
376 p
= isl_printer_print_str(p
, "\\mathrm{");
377 p
= isl_printer_print_str(p
, name
);
379 p
= isl_printer_print_str(p
, "}");
382 if (!data
->latex
|| n
!= 1 || name
)
383 p
= isl_printer_print_str(p
, s_open_list
[data
->latex
]);
384 if ((local_type
== isl_dim_in
|| local_type
== isl_dim_out
) &&
385 local_dim
->nested
[local_type
- isl_dim_in
]) {
386 if (data
->space
!= local_dim
&& local_type
== isl_dim_out
)
387 offset
+= local_dim
->n_in
;
388 p
= print_nested_map_dim(p
,
389 local_dim
->nested
[local_type
- isl_dim_in
],
392 p
= print_nested_var_list(p
, local_dim
, local_type
, data
,
394 if (!data
->latex
|| n
!= 1 || name
)
395 p
= isl_printer_print_str(p
, s_close_list
[data
->latex
]);
399 static __isl_give isl_printer
*print_tuple(__isl_keep isl_space
*dim
,
400 __isl_take isl_printer
*p
, enum isl_dim_type type
,
401 struct isl_print_space_data
*data
)
405 return print_nested_tuple(p
, dim
, type
, data
, 0);
408 static __isl_give isl_printer
*print_nested_map_dim(__isl_take isl_printer
*p
,
409 __isl_keep isl_space
*local_dim
,
410 struct isl_print_space_data
*data
, int offset
)
412 p
= print_nested_tuple(p
, local_dim
, isl_dim_in
, data
, offset
);
413 p
= isl_printer_print_str(p
, s_to
[data
->latex
]);
414 p
= print_nested_tuple(p
, local_dim
, isl_dim_out
, data
, offset
);
419 __isl_give isl_printer
*isl_print_space(__isl_keep isl_space
*space
,
420 __isl_take isl_printer
*p
, int rational
,
421 struct isl_print_space_data
*data
)
423 if (rational
&& !data
->latex
)
424 p
= isl_printer_print_str(p
, "rat: ");
425 if (isl_space_is_params(space
))
427 else if (isl_space_is_set(space
))
428 p
= print_tuple(space
, p
, isl_dim_set
, data
);
430 p
= print_tuple(space
, p
, isl_dim_in
, data
);
431 p
= isl_printer_print_str(p
, s_to
[data
->latex
]);
432 p
= print_tuple(space
, p
, isl_dim_out
, data
);
438 static __isl_give isl_printer
*print_omega_parameters(__isl_keep isl_space
*dim
,
439 __isl_take isl_printer
*p
)
441 if (isl_space_dim(dim
, isl_dim_param
) == 0)
444 p
= isl_printer_start_line(p
);
445 p
= isl_printer_print_str(p
, "symbolic ");
446 p
= print_var_list(p
, dim
, isl_dim_param
);
447 p
= isl_printer_print_str(p
, ";");
448 p
= isl_printer_end_line(p
);
452 /* Does the inequality constraint following "i" in "bmap"
453 * have an opposite value for the same last coefficient?
454 * "last" is the position of the last coefficient of inequality "i".
455 * If the next constraint is a div constraint, then it is ignored
456 * since div constraints are not printed.
458 static int next_is_opposite(__isl_keep isl_basic_map
*bmap
, int i
, int last
)
460 unsigned total
= isl_basic_map_total_dim(bmap
);
461 unsigned o_div
= isl_basic_map_offset(bmap
, isl_dim_div
);
463 if (i
+ 1 >= bmap
->n_ineq
)
465 if (isl_seq_last_non_zero(bmap
->ineq
[i
+ 1], 1 + total
) != last
)
469 is_div
= isl_basic_map_is_div_constraint(bmap
,
470 bmap
->ineq
[i
+ 1], last
- o_div
);
476 return isl_int_abs_eq(bmap
->ineq
[i
][last
], bmap
->ineq
[i
+ 1][last
]) &&
477 !isl_int_eq(bmap
->ineq
[i
][last
], bmap
->ineq
[i
+ 1][last
]);
480 /* Return a string representation of the operator used when
481 * printing a constraint where the LHS is greater than or equal to the LHS
482 * (sign > 0) or smaller than or equal to the LHS (sign < 0).
483 * If "strict" is set, then return the strict version of the comparison
486 static const char *constraint_op(int sign
, int strict
, int latex
)
489 return sign
< 0 ? "<" : ">";
496 /* Print one side of a constraint "c" from "bmap" to "p", with
497 * the variable names taken from "space" and the integer division definitions
499 * "last" is the position of the last non-zero coefficient.
500 * Let c' be the result of zeroing out this coefficient, then
501 * the partial constraint
506 * "first_constraint" is set if this is the first constraint
507 * in the conjunction.
509 static __isl_give isl_printer
*print_half_constraint(struct isl_basic_map
*bmap
,
510 __isl_keep isl_space
*space
, __isl_keep isl_mat
*div
,
511 __isl_take isl_printer
*p
, isl_int
*c
, int last
, const char *op
,
512 int first_constraint
, int latex
)
514 if (!first_constraint
)
515 p
= isl_printer_print_str(p
, s_and
[latex
]);
517 isl_int_set_si(c
[last
], 0);
518 p
= print_affine(bmap
, space
, div
, p
, c
);
520 p
= isl_printer_print_str(p
, " ");
521 p
= isl_printer_print_str(p
, op
);
522 p
= isl_printer_print_str(p
, " ");
527 /* Print a constraint "c" from "bmap" to "p", with the variable names
528 * taken from "space" and the integer division definitions taken from "div".
529 * "last" is the position of the last non-zero coefficient, which is
530 * moreover assumed to be negative.
531 * Let c' be the result of zeroing out this coefficient, then
532 * the constraint is printed in the form
536 * "first_constraint" is set if this is the first constraint
537 * in the conjunction.
539 static __isl_give isl_printer
*print_constraint(struct isl_basic_map
*bmap
,
540 __isl_keep isl_space
*space
, __isl_keep isl_mat
*div
,
541 __isl_take isl_printer
*p
,
542 isl_int
*c
, int last
, const char *op
, int first_constraint
, int latex
)
544 if (!first_constraint
)
545 p
= isl_printer_print_str(p
, s_and
[latex
]);
547 isl_int_abs(c
[last
], c
[last
]);
549 p
= print_term(space
, div
, c
[last
], last
, p
, latex
);
551 p
= isl_printer_print_str(p
, " ");
552 p
= isl_printer_print_str(p
, op
);
553 p
= isl_printer_print_str(p
, " ");
555 isl_int_set_si(c
[last
], 0);
556 p
= print_affine(bmap
, space
, div
, p
, c
);
561 /* Print the constraints of "bmap" to "p".
562 * The names of the variables are taken from "space" and
563 * the integer division definitions are taken from "div".
564 * Div constraints are only printed in "dump" mode.
565 * The constraints are sorted prior to printing (except in "dump" mode).
567 * If x is the last variable with a non-zero coefficient,
576 * while an upper bound
584 * If the next constraint has an opposite sign for the same last coefficient,
585 * then it is printed as
593 * instead. In fact, the "a x" part is not printed explicitly, but
594 * reused from the next constraint, which is therefore treated as
595 * a first constraint in the conjunction.
597 * If the constant term of "f" is -1, then "f" is replaced by "f + 1" and
598 * the comparison operator is replaced by the strict variant.
599 * Essentially, ">= 1" is replaced by "> 0".
601 static __isl_give isl_printer
*print_constraints(__isl_keep isl_basic_map
*bmap
,
602 __isl_keep isl_space
*space
, __isl_keep isl_mat
*div
,
603 __isl_take isl_printer
*p
, int latex
)
607 int rational
= ISL_F_ISSET(bmap
, ISL_BASIC_MAP_RATIONAL
);
608 unsigned total
= isl_basic_map_total_dim(bmap
);
609 unsigned o_div
= isl_basic_map_offset(bmap
, isl_dim_div
);
615 bmap
= isl_basic_map_copy(bmap
);
618 bmap
= isl_basic_map_sort_constraints(bmap
);
622 c
= isl_vec_alloc(bmap
->ctx
, 1 + total
);
626 for (i
= bmap
->n_eq
- 1; i
>= 0; --i
) {
627 int l
= isl_seq_last_non_zero(bmap
->eq
[i
], 1 + total
);
629 if (i
!= bmap
->n_eq
- 1)
630 p
= isl_printer_print_str(p
, s_and
[latex
]);
631 p
= isl_printer_print_str(p
, "0 = 0");
634 if (isl_int_is_neg(bmap
->eq
[i
][l
]))
635 isl_seq_cpy(c
->el
, bmap
->eq
[i
], 1 + total
);
637 isl_seq_neg(c
->el
, bmap
->eq
[i
], 1 + total
);
638 p
= print_constraint(bmap
, space
, div
, p
, c
->el
, l
,
642 for (i
= 0; i
< bmap
->n_ineq
; ++i
) {
643 int l
= isl_seq_last_non_zero(bmap
->ineq
[i
], 1 + total
);
649 if (!dump
&& l
>= o_div
&&
650 can_print_div_expr(p
, div
, l
- o_div
)) {
652 is_div
= isl_basic_map_is_div_constraint(bmap
,
653 bmap
->ineq
[i
], l
- o_div
);
659 s
= isl_int_sgn(bmap
->ineq
[i
][l
]);
660 strict
= !rational
&& isl_int_is_negone(bmap
->ineq
[i
][0]);
662 isl_seq_cpy(c
->el
, bmap
->ineq
[i
], 1 + total
);
664 isl_seq_neg(c
->el
, bmap
->ineq
[i
], 1 + total
);
666 isl_int_set_si(c
->el
[0], 0);
667 if (!dump
&& next_is_opposite(bmap
, i
, l
)) {
668 op
= constraint_op(-s
, strict
, latex
);
669 p
= print_half_constraint(bmap
, space
, div
, p
, c
->el
, l
,
673 op
= constraint_op(s
, strict
, latex
);
674 p
= print_constraint(bmap
, space
, div
, p
, c
->el
, l
,
680 isl_basic_map_free(bmap
);
685 isl_basic_map_free(bmap
);
691 static __isl_give isl_printer
*print_div(__isl_keep isl_space
*dim
,
692 __isl_keep isl_mat
*div
, int pos
, __isl_take isl_printer
*p
)
697 return isl_printer_free(p
);
699 c
= p
->output_format
== ISL_FORMAT_C
;
700 p
= isl_printer_print_str(p
, c
? "floord(" : "floor((");
701 p
= print_affine_of_len(dim
, div
, p
,
702 div
->row
[pos
] + 1, div
->n_col
- 1);
703 p
= isl_printer_print_str(p
, c
? ", " : ")/");
704 p
= isl_printer_print_isl_int(p
, div
->row
[pos
][0]);
705 p
= isl_printer_print_str(p
, ")");
709 /* Print a comma separated list of div names, except those that have
710 * a definition that can be printed.
711 * If "print_defined_divs" is set, then those div names are printed
712 * as well, along with their definitions.
714 static __isl_give isl_printer
*print_div_list(__isl_take isl_printer
*p
,
715 __isl_keep isl_space
*space
, __isl_keep isl_mat
*div
, int latex
,
716 int print_defined_divs
)
722 if (!p
|| !space
|| !div
)
723 return isl_printer_free(p
);
725 n_div
= isl_mat_rows(div
);
727 for (i
= 0; i
< n_div
; ++i
) {
728 if (!print_defined_divs
&& can_print_div_expr(p
, div
, i
))
731 p
= isl_printer_print_str(p
, ", ");
732 p
= print_name(space
, p
, isl_dim_div
, i
, latex
);
734 if (!can_print_div_expr(p
, div
, i
))
736 p
= isl_printer_print_str(p
, " = ");
737 p
= print_div(space
, div
, i
, p
);
743 /* Does printing an object with local variables described by "div"
744 * require an "exists" clause?
745 * That is, are there any local variables without an explicit representation?
746 * An exists clause is also needed in "dump" mode because
747 * explicit div representations are not printed inline in that case.
749 static isl_bool
need_exists(__isl_keep isl_printer
*p
, __isl_keep isl_mat
*div
)
754 return isl_bool_error
;
755 n
= isl_mat_rows(div
);
757 return isl_bool_false
;
759 return isl_bool_true
;
760 for (i
= 0; i
< n
; ++i
)
761 if (!can_print_div_expr(p
, div
, i
))
762 return isl_bool_true
;
763 return isl_bool_false
;
766 /* Print the start of an exists clause, i.e.,
770 * In dump mode, local variables with an explicit definition are printed
771 * as well because they will not be printed inline.
773 static __isl_give isl_printer
*open_exists(__isl_take isl_printer
*p
,
774 __isl_keep isl_space
*space
, __isl_keep isl_mat
*div
, int latex
)
782 p
= isl_printer_print_str(p
, s_open_exists
[latex
]);
783 p
= print_div_list(p
, space
, div
, latex
, dump
);
784 p
= isl_printer_print_str(p
, ": ");
789 /* Print the constraints of "bmap" to "p".
790 * The names of the variables are taken from "space".
791 * "latex" is set if the constraints should be printed in LaTeX format.
792 * Do not print inline explicit div representations in "dump" mode.
794 static __isl_give isl_printer
*print_disjunct(__isl_keep isl_basic_map
*bmap
,
795 __isl_keep isl_space
*space
, __isl_take isl_printer
*p
, int latex
)
804 div
= isl_basic_map_get_divs(bmap
);
805 exists
= need_exists(p
, div
);
806 if (exists
>= 0 && exists
)
807 p
= open_exists(p
, space
, div
, latex
);
810 div
= isl_mat_free(div
);
811 p
= print_constraints(bmap
, space
, div
, p
, latex
);
814 if (exists
>= 0 && exists
)
815 p
= isl_printer_print_str(p
, s_close_exists
[latex
]);
819 /* Print a colon followed by the constraints of "bmap"
820 * to "p", provided there are any constraints.
821 * The names of the variables are taken from "space".
822 * "latex" is set if the constraints should be printed in LaTeX format.
824 static __isl_give isl_printer
*print_optional_disjunct(
825 __isl_keep isl_basic_map
*bmap
, __isl_keep isl_space
*space
,
826 __isl_take isl_printer
*p
, int latex
)
828 if (isl_basic_map_plain_is_universe(bmap
))
831 p
= isl_printer_print_str(p
, ": ");
832 p
= print_disjunct(bmap
, space
, p
, latex
);
837 static __isl_give isl_printer
*basic_map_print_omega(
838 __isl_keep isl_basic_map
*bmap
, __isl_take isl_printer
*p
)
840 p
= isl_printer_print_str(p
, "{ [");
841 p
= print_var_list(p
, bmap
->dim
, isl_dim_in
);
842 p
= isl_printer_print_str(p
, "] -> [");
843 p
= print_var_list(p
, bmap
->dim
, isl_dim_out
);
844 p
= isl_printer_print_str(p
, "] ");
845 p
= print_optional_disjunct(bmap
, bmap
->dim
, p
, 0);
846 p
= isl_printer_print_str(p
, " }");
850 static __isl_give isl_printer
*basic_set_print_omega(
851 __isl_keep isl_basic_set
*bset
, __isl_take isl_printer
*p
)
853 p
= isl_printer_print_str(p
, "{ [");
854 p
= print_var_list(p
, bset
->dim
, isl_dim_set
);
855 p
= isl_printer_print_str(p
, "] ");
856 p
= print_optional_disjunct(bset
, bset
->dim
, p
, 0);
857 p
= isl_printer_print_str(p
, " }");
861 static __isl_give isl_printer
*isl_map_print_omega(__isl_keep isl_map
*map
,
862 __isl_take isl_printer
*p
)
866 for (i
= 0; i
< map
->n
; ++i
) {
868 p
= isl_printer_print_str(p
, " union ");
869 p
= basic_map_print_omega(map
->p
[i
], p
);
874 static __isl_give isl_printer
*isl_set_print_omega(__isl_keep isl_set
*set
,
875 __isl_take isl_printer
*p
)
879 for (i
= 0; i
< set
->n
; ++i
) {
881 p
= isl_printer_print_str(p
, " union ");
882 p
= basic_set_print_omega(set
->p
[i
], p
);
887 /* Print the list of parameters in "space", followed by an arrow, to "p",
888 * if there are any parameters.
890 static __isl_give isl_printer
*print_param_tuple(__isl_take isl_printer
*p
,
891 __isl_keep isl_space
*space
, struct isl_print_space_data
*data
)
894 return isl_printer_free(p
);
895 if (isl_space_dim(space
, isl_dim_param
) == 0)
898 p
= print_tuple(space
, p
, isl_dim_param
, data
);
899 p
= isl_printer_print_str(p
, s_to
[data
->latex
]);
904 static __isl_give isl_printer
*isl_basic_map_print_isl(
905 __isl_keep isl_basic_map
*bmap
, __isl_take isl_printer
*p
,
908 struct isl_print_space_data data
= { .latex
= latex
};
909 int rational
= ISL_F_ISSET(bmap
, ISL_BASIC_MAP_RATIONAL
);
911 p
= print_param_tuple(p
, bmap
->dim
, &data
);
912 p
= isl_printer_print_str(p
, "{ ");
913 p
= isl_print_space(bmap
->dim
, p
, rational
, &data
);
914 p
= isl_printer_print_str(p
, " : ");
915 p
= print_disjunct(bmap
, bmap
->dim
, p
, latex
);
916 p
= isl_printer_print_str(p
, " }");
920 /* Print the disjuncts of a map (or set) "map" to "p".
921 * The names of the variables are taken from "space".
922 * "latex" is set if the constraints should be printed in LaTeX format.
924 static __isl_give isl_printer
*print_disjuncts_core(__isl_keep isl_map
*map
,
925 __isl_keep isl_space
*space
, __isl_take isl_printer
*p
, int latex
)
930 p
= isl_printer_print_str(p
, "1 = 0");
931 for (i
= 0; i
< map
->n
; ++i
) {
933 p
= isl_printer_print_str(p
, s_or
[latex
]);
934 if (map
->n
> 1 && map
->p
[i
]->n_eq
+ map
->p
[i
]->n_ineq
> 1)
935 p
= isl_printer_print_str(p
, "(");
936 p
= print_disjunct(map
->p
[i
], space
, p
, latex
);
937 if (map
->n
> 1 && map
->p
[i
]->n_eq
+ map
->p
[i
]->n_ineq
> 1)
938 p
= isl_printer_print_str(p
, ")");
943 /* Print the disjuncts of a map (or set) "map" to "p".
944 * The names of the variables are taken from "space".
945 * "hull" describes constraints shared by all disjuncts of "map".
946 * "latex" is set if the constraints should be printed in LaTeX format.
948 * Print the disjuncts as a conjunction of "hull" and
949 * the result of removing the constraints of "hull" from "map".
950 * If this result turns out to be the universe, then simply print "hull".
952 static __isl_give isl_printer
*print_disjuncts_in_hull(__isl_keep isl_map
*map
,
953 __isl_keep isl_space
*space
, __isl_take isl_basic_map
*hull
,
954 __isl_take isl_printer
*p
, int latex
)
956 isl_bool is_universe
;
958 p
= print_disjunct(hull
, space
, p
, latex
);
959 map
= isl_map_plain_gist_basic_map(isl_map_copy(map
), hull
);
960 is_universe
= isl_map_plain_is_universe(map
);
964 p
= isl_printer_print_str(p
, s_and
[latex
]);
965 p
= isl_printer_print_str(p
, "(");
966 p
= print_disjuncts_core(map
, space
, p
, latex
);
967 p
= isl_printer_print_str(p
, ")");
978 /* Print the disjuncts of a map (or set) "map" to "p".
979 * The names of the variables are taken from "space".
980 * "latex" is set if the constraints should be printed in LaTeX format.
982 * If there are at least two disjuncts and "dump" mode is not turned out,
983 * check for any shared constraints among all disjuncts.
984 * If there are any, then print them separately in print_disjuncts_in_hull.
986 static __isl_give isl_printer
*print_disjuncts(__isl_keep isl_map
*map
,
987 __isl_keep isl_space
*space
, __isl_take isl_printer
*p
, int latex
)
989 if (isl_map_plain_is_universe(map
))
992 p
= isl_printer_print_str(p
, s_such_that
[latex
]);
996 if (!p
->dump
&& map
->n
>= 2) {
998 isl_bool is_universe
;
1000 hull
= isl_map_plain_unshifted_simple_hull(isl_map_copy(map
));
1001 is_universe
= isl_basic_map_plain_is_universe(hull
);
1002 if (is_universe
< 0)
1003 p
= isl_printer_free(p
);
1004 else if (!is_universe
)
1005 return print_disjuncts_in_hull(map
, space
, hull
,
1007 isl_basic_map_free(hull
);
1010 return print_disjuncts_core(map
, space
, p
, latex
);
1013 /* Print the disjuncts of a map (or set).
1014 * The names of the variables are taken from "space".
1015 * "latex" is set if the constraints should be printed in LaTeX format.
1017 * If the map turns out to be a universal parameter domain, then
1018 * we need to print the colon. Otherwise, the output looks identical
1021 static __isl_give isl_printer
*print_disjuncts_map(__isl_keep isl_map
*map
,
1022 __isl_keep isl_space
*space
, __isl_take isl_printer
*p
, int latex
)
1024 if (isl_map_plain_is_universe(map
) && isl_space_is_params(map
->dim
))
1025 return isl_printer_print_str(p
, s_such_that
[latex
]);
1027 return print_disjuncts(map
, space
, p
, latex
);
1030 struct isl_aff_split
{
1035 static void free_split(__isl_take
struct isl_aff_split
*split
, int n
)
1042 for (i
= 0; i
< n
; ++i
) {
1043 isl_basic_map_free(split
[i
].aff
);
1044 isl_map_free(split
[i
].map
);
1050 static __isl_give isl_basic_map
*get_aff(__isl_take isl_basic_map
*bmap
)
1053 unsigned nparam
, n_in
, n_out
, total
;
1055 bmap
= isl_basic_map_cow(bmap
);
1058 if (isl_basic_map_free_inequality(bmap
, bmap
->n_ineq
) < 0)
1061 nparam
= isl_basic_map_dim(bmap
, isl_dim_param
);
1062 n_in
= isl_basic_map_dim(bmap
, isl_dim_in
);
1063 n_out
= isl_basic_map_dim(bmap
, isl_dim_out
);
1064 total
= isl_basic_map_dim(bmap
, isl_dim_all
);
1065 for (i
= bmap
->n_eq
- 1; i
>= 0; --i
) {
1066 j
= isl_seq_last_non_zero(bmap
->eq
[i
] + 1, total
);
1067 if (j
>= nparam
&& j
< nparam
+ n_in
+ n_out
&&
1068 (isl_int_is_one(bmap
->eq
[i
][1 + j
]) ||
1069 isl_int_is_negone(bmap
->eq
[i
][1 + j
])))
1071 if (isl_basic_map_drop_equality(bmap
, i
) < 0)
1075 bmap
= isl_basic_map_finalize(bmap
);
1079 isl_basic_map_free(bmap
);
1083 static int aff_split_cmp(const void *p1
, const void *p2
, void *user
)
1085 const struct isl_aff_split
*s1
, *s2
;
1086 s1
= (const struct isl_aff_split
*) p1
;
1087 s2
= (const struct isl_aff_split
*) p2
;
1089 return isl_basic_map_plain_cmp(s1
->aff
, s2
->aff
);
1092 static __isl_give isl_basic_map
*drop_aff(__isl_take isl_basic_map
*bmap
,
1093 __isl_keep isl_basic_map
*aff
)
1101 total
= isl_space_dim(bmap
->dim
, isl_dim_all
);
1103 for (i
= bmap
->n_eq
- 1; i
>= 0; --i
) {
1104 if (isl_seq_first_non_zero(bmap
->eq
[i
] + 1 + total
,
1107 for (j
= 0; j
< aff
->n_eq
; ++j
) {
1108 if (!isl_seq_eq(bmap
->eq
[i
], aff
->eq
[j
], 1 + total
) &&
1109 !isl_seq_is_neg(bmap
->eq
[i
], aff
->eq
[j
], 1 + total
))
1111 if (isl_basic_map_drop_equality(bmap
, i
) < 0)
1119 isl_basic_map_free(bmap
);
1123 static __isl_give
struct isl_aff_split
*split_aff(__isl_keep isl_map
*map
)
1126 struct isl_aff_split
*split
;
1129 ctx
= isl_map_get_ctx(map
);
1130 split
= isl_calloc_array(ctx
, struct isl_aff_split
, map
->n
);
1134 for (i
= 0; i
< map
->n
; ++i
) {
1135 isl_basic_map
*bmap
;
1136 split
[i
].aff
= get_aff(isl_basic_map_copy(map
->p
[i
]));
1137 bmap
= isl_basic_map_copy(map
->p
[i
]);
1138 bmap
= isl_basic_map_cow(bmap
);
1139 bmap
= drop_aff(bmap
, split
[i
].aff
);
1140 split
[i
].map
= isl_map_from_basic_map(bmap
);
1141 if (!split
[i
].aff
|| !split
[i
].map
)
1145 if (isl_sort(split
, map
->n
, sizeof(struct isl_aff_split
),
1146 &aff_split_cmp
, NULL
) < 0)
1150 for (i
= n
- 1; i
>= 1; --i
) {
1151 if (!isl_basic_map_plain_is_equal(split
[i
- 1].aff
,
1154 isl_basic_map_free(split
[i
].aff
);
1155 split
[i
- 1].map
= isl_map_union(split
[i
- 1].map
,
1158 split
[i
] = split
[n
- 1];
1159 split
[n
- 1].aff
= NULL
;
1160 split
[n
- 1].map
= NULL
;
1166 free_split(split
, map
->n
);
1170 static int defining_equality(__isl_keep isl_basic_map
*eq
,
1171 __isl_keep isl_space
*dim
, enum isl_dim_type type
, int pos
)
1179 pos
+= isl_space_offset(dim
, type
);
1180 total
= isl_basic_map_total_dim(eq
);
1182 for (i
= 0; i
< eq
->n_eq
; ++i
) {
1183 if (isl_seq_last_non_zero(eq
->eq
[i
] + 1, total
) != pos
)
1185 if (isl_int_is_one(eq
->eq
[i
][1 + pos
]))
1186 isl_seq_neg(eq
->eq
[i
], eq
->eq
[i
], 1 + total
);
1193 /* Print dimension "pos" of data->space to "p".
1195 * data->user is assumed to be an isl_basic_map keeping track of equalities.
1197 * If the current dimension is defined by these equalities, then print
1198 * the corresponding expression, assigned to the name of the dimension
1199 * if there is any. Otherwise, print the name of the dimension.
1201 static __isl_give isl_printer
*print_dim_eq(__isl_take isl_printer
*p
,
1202 struct isl_print_space_data
*data
, unsigned pos
)
1204 isl_basic_map
*eq
= data
->user
;
1207 j
= defining_equality(eq
, data
->space
, data
->type
, pos
);
1209 if (isl_space_has_dim_name(data
->space
, data
->type
, pos
)) {
1210 p
= print_name(data
->space
, p
, data
->type
, pos
,
1212 p
= isl_printer_print_str(p
, " = ");
1214 pos
+= 1 + isl_space_offset(data
->space
, data
->type
);
1215 p
= print_affine_of_len(data
->space
, NULL
, p
, eq
->eq
[j
], pos
);
1217 p
= print_name(data
->space
, p
, data
->type
, pos
, data
->latex
);
1223 static __isl_give isl_printer
*print_split_map(__isl_take isl_printer
*p
,
1224 struct isl_aff_split
*split
, int n
, __isl_keep isl_space
*space
)
1226 struct isl_print_space_data data
= { 0 };
1230 data
.print_dim
= &print_dim_eq
;
1231 for (i
= 0; i
< n
; ++i
) {
1234 rational
= split
[i
].map
->n
> 0 &&
1235 ISL_F_ISSET(split
[i
].map
->p
[0], ISL_BASIC_MAP_RATIONAL
);
1237 p
= isl_printer_print_str(p
, "; ");
1238 data
.user
= split
[i
].aff
;
1239 p
= isl_print_space(space
, p
, rational
, &data
);
1240 p
= print_disjuncts_map(split
[i
].map
, space
, p
, 0);
1246 static __isl_give isl_printer
*isl_map_print_isl_body(__isl_keep isl_map
*map
,
1247 __isl_take isl_printer
*p
)
1249 struct isl_print_space_data data
= { 0 };
1250 struct isl_aff_split
*split
= NULL
;
1254 return isl_printer_free(p
);
1255 if (!p
->dump
&& map
->n
> 0)
1256 split
= split_aff(map
);
1258 p
= print_split_map(p
, split
, map
->n
, map
->dim
);
1260 rational
= map
->n
> 0 &&
1261 ISL_F_ISSET(map
->p
[0], ISL_BASIC_MAP_RATIONAL
);
1262 p
= isl_print_space(map
->dim
, p
, rational
, &data
);
1263 p
= print_disjuncts_map(map
, map
->dim
, p
, 0);
1265 free_split(split
, map
->n
);
1269 static __isl_give isl_printer
*isl_map_print_isl(__isl_keep isl_map
*map
,
1270 __isl_take isl_printer
*p
)
1272 struct isl_print_space_data data
= { 0 };
1274 p
= print_param_tuple(p
, map
->dim
, &data
);
1275 p
= isl_printer_print_str(p
, s_open_set
[0]);
1276 p
= isl_map_print_isl_body(map
, p
);
1277 p
= isl_printer_print_str(p
, s_close_set
[0]);
1281 static __isl_give isl_printer
*print_latex_map(__isl_keep isl_map
*map
,
1282 __isl_take isl_printer
*p
, __isl_keep isl_basic_map
*aff
)
1284 struct isl_print_space_data data
= { 0 };
1287 p
= print_param_tuple(p
, map
->dim
, &data
);
1288 p
= isl_printer_print_str(p
, s_open_set
[1]);
1289 data
.print_dim
= &print_dim_eq
;
1291 p
= isl_print_space(map
->dim
, p
, 0, &data
);
1292 p
= print_disjuncts_map(map
, map
->dim
, p
, 1);
1293 p
= isl_printer_print_str(p
, s_close_set
[1]);
1298 static __isl_give isl_printer
*isl_map_print_latex(__isl_keep isl_map
*map
,
1299 __isl_take isl_printer
*p
)
1302 struct isl_aff_split
*split
= NULL
;
1305 split
= split_aff(map
);
1308 return print_latex_map(map
, p
, NULL
);
1310 for (i
= 0; i
< map
->n
; ++i
) {
1314 p
= isl_printer_print_str(p
, " \\cup ");
1315 p
= print_latex_map(split
[i
].map
, p
, split
[i
].aff
);
1318 free_split(split
, map
->n
);
1322 __isl_give isl_printer
*isl_printer_print_basic_map(__isl_take isl_printer
*p
,
1323 __isl_keep isl_basic_map
*bmap
)
1327 if (p
->output_format
== ISL_FORMAT_ISL
)
1328 return isl_basic_map_print_isl(bmap
, p
, 0);
1329 else if (p
->output_format
== ISL_FORMAT_OMEGA
)
1330 return basic_map_print_omega(bmap
, p
);
1331 isl_assert(bmap
->ctx
, 0, goto error
);
1333 isl_printer_free(p
);
1337 __isl_give isl_printer
*isl_printer_print_basic_set(__isl_take isl_printer
*p
,
1338 __isl_keep isl_basic_set
*bset
)
1343 if (p
->output_format
== ISL_FORMAT_ISL
)
1344 return isl_basic_map_print_isl(bset
, p
, 0);
1345 else if (p
->output_format
== ISL_FORMAT_POLYLIB
)
1346 return isl_basic_set_print_polylib(bset
, p
, 0);
1347 else if (p
->output_format
== ISL_FORMAT_EXT_POLYLIB
)
1348 return isl_basic_set_print_polylib(bset
, p
, 1);
1349 else if (p
->output_format
== ISL_FORMAT_POLYLIB_CONSTRAINTS
)
1350 return bset_print_constraints_polylib(bset
, p
);
1351 else if (p
->output_format
== ISL_FORMAT_OMEGA
)
1352 return basic_set_print_omega(bset
, p
);
1353 isl_assert(p
->ctx
, 0, goto error
);
1355 isl_printer_free(p
);
1359 __isl_give isl_printer
*isl_printer_print_set(__isl_take isl_printer
*p
,
1360 __isl_keep isl_set
*set
)
1364 if (p
->output_format
== ISL_FORMAT_ISL
)
1365 return isl_map_print_isl(set_to_map(set
), p
);
1366 else if (p
->output_format
== ISL_FORMAT_POLYLIB
)
1367 return isl_set_print_polylib(set
, p
, 0);
1368 else if (p
->output_format
== ISL_FORMAT_EXT_POLYLIB
)
1369 return isl_set_print_polylib(set
, p
, 1);
1370 else if (p
->output_format
== ISL_FORMAT_OMEGA
)
1371 return isl_set_print_omega(set
, p
);
1372 else if (p
->output_format
== ISL_FORMAT_LATEX
)
1373 return isl_map_print_latex(set_to_map(set
), p
);
1374 isl_assert(set
->ctx
, 0, goto error
);
1376 isl_printer_free(p
);
1380 __isl_give isl_printer
*isl_printer_print_map(__isl_take isl_printer
*p
,
1381 __isl_keep isl_map
*map
)
1386 if (p
->output_format
== ISL_FORMAT_ISL
)
1387 return isl_map_print_isl(map
, p
);
1388 else if (p
->output_format
== ISL_FORMAT_POLYLIB
)
1389 return isl_map_print_polylib(map
, p
, 0);
1390 else if (p
->output_format
== ISL_FORMAT_EXT_POLYLIB
)
1391 return isl_map_print_polylib(map
, p
, 1);
1392 else if (p
->output_format
== ISL_FORMAT_OMEGA
)
1393 return isl_map_print_omega(map
, p
);
1394 else if (p
->output_format
== ISL_FORMAT_LATEX
)
1395 return isl_map_print_latex(map
, p
);
1396 isl_assert(map
->ctx
, 0, goto error
);
1398 isl_printer_free(p
);
1402 struct isl_union_print_data
{
1407 static isl_stat
print_map_body(__isl_take isl_map
*map
, void *user
)
1409 struct isl_union_print_data
*data
;
1410 data
= (struct isl_union_print_data
*)user
;
1413 data
->p
= isl_printer_print_str(data
->p
, "; ");
1416 data
->p
= isl_map_print_isl_body(map
, data
->p
);
1422 static __isl_give isl_printer
*isl_union_map_print_isl(
1423 __isl_keep isl_union_map
*umap
, __isl_take isl_printer
*p
)
1425 struct isl_union_print_data data
;
1426 struct isl_print_space_data space_data
= { 0 };
1429 space
= isl_union_map_get_space(umap
);
1430 p
= print_param_tuple(p
, space
, &space_data
);
1431 isl_space_free(space
);
1432 p
= isl_printer_print_str(p
, s_open_set
[0]);
1435 isl_union_map_foreach_map(umap
, &print_map_body
, &data
);
1437 p
= isl_printer_print_str(p
, s_close_set
[0]);
1441 static isl_stat
print_latex_map_body(__isl_take isl_map
*map
, void *user
)
1443 struct isl_union_print_data
*data
;
1444 data
= (struct isl_union_print_data
*)user
;
1447 data
->p
= isl_printer_print_str(data
->p
, " \\cup ");
1450 data
->p
= isl_map_print_latex(map
, data
->p
);
1456 static __isl_give isl_printer
*isl_union_map_print_latex(
1457 __isl_keep isl_union_map
*umap
, __isl_take isl_printer
*p
)
1459 struct isl_union_print_data data
= { p
, 1 };
1460 isl_union_map_foreach_map(umap
, &print_latex_map_body
, &data
);
1465 __isl_give isl_printer
*isl_printer_print_union_map(__isl_take isl_printer
*p
,
1466 __isl_keep isl_union_map
*umap
)
1471 if (p
->output_format
== ISL_FORMAT_ISL
)
1472 return isl_union_map_print_isl(umap
, p
);
1473 if (p
->output_format
== ISL_FORMAT_LATEX
)
1474 return isl_union_map_print_latex(umap
, p
);
1476 isl_die(p
->ctx
, isl_error_invalid
,
1477 "invalid output format for isl_union_map", goto error
);
1479 isl_printer_free(p
);
1483 __isl_give isl_printer
*isl_printer_print_union_set(__isl_take isl_printer
*p
,
1484 __isl_keep isl_union_set
*uset
)
1489 if (p
->output_format
== ISL_FORMAT_ISL
)
1490 return isl_union_map_print_isl((isl_union_map
*)uset
, p
);
1491 if (p
->output_format
== ISL_FORMAT_LATEX
)
1492 return isl_union_map_print_latex((isl_union_map
*)uset
, p
);
1494 isl_die(p
->ctx
, isl_error_invalid
,
1495 "invalid output format for isl_union_set", goto error
);
1497 isl_printer_free(p
);
1501 static int upoly_rec_n_non_zero(__isl_keep
struct isl_upoly_rec
*rec
)
1506 for (i
= 0, n
= 0; i
< rec
->n
; ++i
)
1507 if (!isl_upoly_is_zero(rec
->p
[i
]))
1513 static __isl_give isl_printer
*upoly_print_cst(__isl_keep
struct isl_upoly
*up
,
1514 __isl_take isl_printer
*p
, int first
)
1516 struct isl_upoly_cst
*cst
;
1519 cst
= isl_upoly_as_cst(up
);
1522 neg
= !first
&& isl_int_is_neg(cst
->n
);
1524 p
= isl_printer_print_str(p
, neg
? " - " : " + ");
1526 isl_int_neg(cst
->n
, cst
->n
);
1527 if (isl_int_is_zero(cst
->d
)) {
1528 int sgn
= isl_int_sgn(cst
->n
);
1529 p
= isl_printer_print_str(p
, sgn
< 0 ? "-infty" :
1530 sgn
== 0 ? "NaN" : "infty");
1532 p
= isl_printer_print_isl_int(p
, cst
->n
);
1534 isl_int_neg(cst
->n
, cst
->n
);
1535 if (!isl_int_is_zero(cst
->d
) && !isl_int_is_one(cst
->d
)) {
1536 p
= isl_printer_print_str(p
, "/");
1537 p
= isl_printer_print_isl_int(p
, cst
->d
);
1541 isl_printer_free(p
);
1545 static __isl_give isl_printer
*print_base(__isl_take isl_printer
*p
,
1546 __isl_keep isl_space
*dim
, __isl_keep isl_mat
*div
, int var
)
1550 total
= isl_space_dim(dim
, isl_dim_all
);
1552 p
= print_term(dim
, NULL
, dim
->ctx
->one
, 1 + var
, p
, 0);
1554 p
= print_div(dim
, div
, var
- total
, p
);
1558 static __isl_give isl_printer
*print_pow(__isl_take isl_printer
*p
,
1559 __isl_keep isl_space
*dim
, __isl_keep isl_mat
*div
, int var
, int exp
)
1561 p
= print_base(p
, dim
, div
, var
);
1564 if (p
->output_format
== ISL_FORMAT_C
) {
1566 for (i
= 1; i
< exp
; ++i
) {
1567 p
= isl_printer_print_str(p
, "*");
1568 p
= print_base(p
, dim
, div
, var
);
1571 p
= isl_printer_print_str(p
, "^");
1572 p
= isl_printer_print_int(p
, exp
);
1577 /* Print the polynomial "up" defined over the domain space "space" and
1578 * local variables defined by "div" to "p".
1580 static __isl_give isl_printer
*upoly_print(__isl_keep
struct isl_upoly
*up
,
1581 __isl_keep isl_space
*space
, __isl_keep isl_mat
*div
,
1582 __isl_take isl_printer
*p
)
1584 int i
, n
, first
, print_parens
;
1585 struct isl_upoly_rec
*rec
;
1587 if (!p
|| !up
|| !space
|| !div
)
1590 if (isl_upoly_is_cst(up
))
1591 return upoly_print_cst(up
, p
, 1);
1593 rec
= isl_upoly_as_rec(up
);
1596 n
= upoly_rec_n_non_zero(rec
);
1597 print_parens
= n
> 1;
1599 p
= isl_printer_print_str(p
, "(");
1600 for (i
= 0, first
= 1; i
< rec
->n
; ++i
) {
1601 if (isl_upoly_is_zero(rec
->p
[i
]))
1603 if (isl_upoly_is_negone(rec
->p
[i
])) {
1605 p
= isl_printer_print_str(p
, "-1");
1607 p
= isl_printer_print_str(p
, "-");
1609 p
= isl_printer_print_str(p
, " - ");
1610 } else if (isl_upoly_is_cst(rec
->p
[i
]) &&
1611 !isl_upoly_is_one(rec
->p
[i
]))
1612 p
= upoly_print_cst(rec
->p
[i
], p
, first
);
1615 p
= isl_printer_print_str(p
, " + ");
1616 if (i
== 0 || !isl_upoly_is_one(rec
->p
[i
]))
1617 p
= upoly_print(rec
->p
[i
], space
, div
, p
);
1622 if (!isl_upoly_is_one(rec
->p
[i
]) &&
1623 !isl_upoly_is_negone(rec
->p
[i
]))
1624 p
= isl_printer_print_str(p
, " * ");
1625 p
= print_pow(p
, space
, div
, rec
->up
.var
, i
);
1628 p
= isl_printer_print_str(p
, ")");
1631 isl_printer_free(p
);
1635 static __isl_give isl_printer
*print_qpolynomial(__isl_take isl_printer
*p
,
1636 __isl_keep isl_qpolynomial
*qp
)
1640 p
= upoly_print(qp
->upoly
, qp
->dim
, qp
->div
, p
);
1643 isl_printer_free(p
);
1647 static __isl_give isl_printer
*print_qpolynomial_isl(__isl_take isl_printer
*p
,
1648 __isl_keep isl_qpolynomial
*qp
)
1650 struct isl_print_space_data data
= { 0 };
1655 p
= print_param_tuple(p
, qp
->dim
, &data
);
1656 p
= isl_printer_print_str(p
, "{ ");
1657 if (!isl_space_is_params(qp
->dim
)) {
1658 p
= isl_print_space(qp
->dim
, p
, 0, &data
);
1659 p
= isl_printer_print_str(p
, " -> ");
1661 p
= print_qpolynomial(p
, qp
);
1662 p
= isl_printer_print_str(p
, " }");
1665 isl_printer_free(p
);
1669 /* Print the quasi-polynomial "qp" to "p" in C format, with the variable names
1670 * taken from the domain space "space".
1672 static __isl_give isl_printer
*print_qpolynomial_c(__isl_take isl_printer
*p
,
1673 __isl_keep isl_space
*space
, __isl_keep isl_qpolynomial
*qp
)
1678 isl_qpolynomial_get_den(qp
, &den
);
1679 if (!isl_int_is_one(den
)) {
1681 p
= isl_printer_print_str(p
, "(");
1682 qp
= isl_qpolynomial_copy(qp
);
1683 f
= isl_qpolynomial_rat_cst_on_domain(isl_space_copy(qp
->dim
),
1684 den
, qp
->dim
->ctx
->one
);
1685 qp
= isl_qpolynomial_mul(qp
, f
);
1688 p
= upoly_print(qp
->upoly
, space
, qp
->div
, p
);
1690 p
= isl_printer_free(p
);
1691 if (!isl_int_is_one(den
)) {
1692 p
= isl_printer_print_str(p
, ")/");
1693 p
= isl_printer_print_isl_int(p
, den
);
1694 isl_qpolynomial_free(qp
);
1700 __isl_give isl_printer
*isl_printer_print_qpolynomial(
1701 __isl_take isl_printer
*p
, __isl_keep isl_qpolynomial
*qp
)
1706 if (p
->output_format
== ISL_FORMAT_ISL
)
1707 return print_qpolynomial_isl(p
, qp
);
1708 else if (p
->output_format
== ISL_FORMAT_C
)
1709 return print_qpolynomial_c(p
, qp
->dim
, qp
);
1711 isl_die(qp
->dim
->ctx
, isl_error_unsupported
,
1712 "output format not supported for isl_qpolynomials",
1715 isl_printer_free(p
);
1719 void isl_qpolynomial_print(__isl_keep isl_qpolynomial
*qp
, FILE *out
,
1720 unsigned output_format
)
1727 isl_assert(qp
->dim
->ctx
, output_format
== ISL_FORMAT_ISL
, return);
1728 p
= isl_printer_to_file(qp
->dim
->ctx
, out
);
1729 p
= isl_printer_print_qpolynomial(p
, qp
);
1730 isl_printer_free(p
);
1733 static __isl_give isl_printer
*qpolynomial_fold_print(
1734 __isl_keep isl_qpolynomial_fold
*fold
, __isl_take isl_printer
*p
)
1738 if (fold
->type
== isl_fold_min
)
1739 p
= isl_printer_print_str(p
, "min");
1740 else if (fold
->type
== isl_fold_max
)
1741 p
= isl_printer_print_str(p
, "max");
1742 p
= isl_printer_print_str(p
, "(");
1743 for (i
= 0; i
< fold
->n
; ++i
) {
1745 p
= isl_printer_print_str(p
, ", ");
1746 p
= print_qpolynomial(p
, fold
->qp
[i
]);
1748 p
= isl_printer_print_str(p
, ")");
1752 void isl_qpolynomial_fold_print(__isl_keep isl_qpolynomial_fold
*fold
,
1753 FILE *out
, unsigned output_format
)
1760 isl_assert(fold
->dim
->ctx
, output_format
== ISL_FORMAT_ISL
, return);
1762 p
= isl_printer_to_file(fold
->dim
->ctx
, out
);
1763 p
= isl_printer_print_qpolynomial_fold(p
, fold
);
1765 isl_printer_free(p
);
1768 static __isl_give isl_printer
*isl_pwqp_print_isl_body(
1769 __isl_take isl_printer
*p
, __isl_keep isl_pw_qpolynomial
*pwqp
)
1771 struct isl_print_space_data data
= { 0 };
1774 for (i
= 0; i
< pwqp
->n
; ++i
) {
1778 p
= isl_printer_print_str(p
, "; ");
1779 space
= isl_qpolynomial_get_domain_space(pwqp
->p
[i
].qp
);
1780 if (!isl_space_is_params(space
)) {
1781 p
= isl_print_space(space
, p
, 0, &data
);
1782 p
= isl_printer_print_str(p
, " -> ");
1784 p
= print_qpolynomial(p
, pwqp
->p
[i
].qp
);
1785 p
= print_disjuncts(set_to_map(pwqp
->p
[i
].set
), space
, p
, 0);
1786 isl_space_free(space
);
1792 static __isl_give isl_printer
*print_pw_qpolynomial_isl(
1793 __isl_take isl_printer
*p
, __isl_keep isl_pw_qpolynomial
*pwqp
)
1795 struct isl_print_space_data data
= { 0 };
1800 p
= print_param_tuple(p
, pwqp
->dim
, &data
);
1801 p
= isl_printer_print_str(p
, "{ ");
1803 if (!isl_space_is_set(pwqp
->dim
)) {
1804 p
= print_tuple(pwqp
->dim
, p
, isl_dim_in
, &data
);
1805 p
= isl_printer_print_str(p
, " -> ");
1807 p
= isl_printer_print_str(p
, "0");
1809 p
= isl_pwqp_print_isl_body(p
, pwqp
);
1810 p
= isl_printer_print_str(p
, " }");
1813 isl_printer_free(p
);
1817 void isl_pw_qpolynomial_print(__isl_keep isl_pw_qpolynomial
*pwqp
, FILE *out
,
1818 unsigned output_format
)
1825 p
= isl_printer_to_file(pwqp
->dim
->ctx
, out
);
1826 p
= isl_printer_set_output_format(p
, output_format
);
1827 p
= isl_printer_print_pw_qpolynomial(p
, pwqp
);
1829 isl_printer_free(p
);
1832 static __isl_give isl_printer
*isl_pwf_print_isl_body(
1833 __isl_take isl_printer
*p
, __isl_keep isl_pw_qpolynomial_fold
*pwf
)
1835 struct isl_print_space_data data
= { 0 };
1838 for (i
= 0; i
< pwf
->n
; ++i
) {
1842 p
= isl_printer_print_str(p
, "; ");
1843 space
= isl_qpolynomial_fold_get_domain_space(pwf
->p
[i
].fold
);
1844 if (!isl_space_is_params(space
)) {
1845 p
= isl_print_space(space
, p
, 0, &data
);
1846 p
= isl_printer_print_str(p
, " -> ");
1848 p
= qpolynomial_fold_print(pwf
->p
[i
].fold
, p
);
1849 p
= print_disjuncts(set_to_map(pwf
->p
[i
].set
), space
, p
, 0);
1850 isl_space_free(space
);
1856 static __isl_give isl_printer
*print_pw_qpolynomial_fold_isl(
1857 __isl_take isl_printer
*p
, __isl_keep isl_pw_qpolynomial_fold
*pwf
)
1859 struct isl_print_space_data data
= { 0 };
1861 p
= print_param_tuple(p
, pwf
->dim
, &data
);
1862 p
= isl_printer_print_str(p
, "{ ");
1864 if (!isl_space_is_set(pwf
->dim
)) {
1865 p
= print_tuple(pwf
->dim
, p
, isl_dim_in
, &data
);
1866 p
= isl_printer_print_str(p
, " -> ");
1868 p
= isl_printer_print_str(p
, "0");
1870 p
= isl_pwf_print_isl_body(p
, pwf
);
1871 p
= isl_printer_print_str(p
, " }");
1875 static __isl_give isl_printer
*print_affine_c(__isl_take isl_printer
*p
,
1876 __isl_keep isl_space
*dim
, __isl_keep isl_basic_set
*bset
, isl_int
*c
);
1878 static __isl_give isl_printer
*print_name_c(__isl_take isl_printer
*p
,
1879 __isl_keep isl_space
*dim
,
1880 __isl_keep isl_basic_set
*bset
, enum isl_dim_type type
, unsigned pos
)
1882 if (type
== isl_dim_div
) {
1883 p
= isl_printer_print_str(p
, "floord(");
1884 p
= print_affine_c(p
, dim
, bset
, bset
->div
[pos
] + 1);
1885 p
= isl_printer_print_str(p
, ", ");
1886 p
= isl_printer_print_isl_int(p
, bset
->div
[pos
][0]);
1887 p
= isl_printer_print_str(p
, ")");
1891 name
= isl_space_get_dim_name(dim
, type
, pos
);
1894 p
= isl_printer_print_str(p
, name
);
1899 static __isl_give isl_printer
*print_term_c(__isl_take isl_printer
*p
,
1900 __isl_keep isl_space
*dim
,
1901 __isl_keep isl_basic_set
*bset
, isl_int c
, unsigned pos
)
1903 enum isl_dim_type type
;
1906 return isl_printer_print_isl_int(p
, c
);
1908 if (isl_int_is_one(c
))
1910 else if (isl_int_is_negone(c
))
1911 p
= isl_printer_print_str(p
, "-");
1913 p
= isl_printer_print_isl_int(p
, c
);
1914 p
= isl_printer_print_str(p
, "*");
1916 type
= pos2type(dim
, &pos
);
1917 p
= print_name_c(p
, dim
, bset
, type
, pos
);
1921 static __isl_give isl_printer
*print_partial_affine_c(__isl_take isl_printer
*p
,
1922 __isl_keep isl_space
*dim
,
1923 __isl_keep isl_basic_set
*bset
, isl_int
*c
, unsigned len
)
1928 for (i
= 0, first
= 1; i
< len
; ++i
) {
1930 if (isl_int_is_zero(c
[i
]))
1933 if (isl_int_is_neg(c
[i
])) {
1935 isl_int_neg(c
[i
], c
[i
]);
1936 p
= isl_printer_print_str(p
, " - ");
1938 p
= isl_printer_print_str(p
, " + ");
1941 p
= print_term_c(p
, dim
, bset
, c
[i
], i
);
1943 isl_int_neg(c
[i
], c
[i
]);
1946 p
= isl_printer_print_str(p
, "0");
1950 static __isl_give isl_printer
*print_affine_c(__isl_take isl_printer
*p
,
1951 __isl_keep isl_space
*dim
, __isl_keep isl_basic_set
*bset
, isl_int
*c
)
1953 unsigned len
= 1 + isl_basic_set_total_dim(bset
);
1954 return print_partial_affine_c(p
, dim
, bset
, c
, len
);
1957 /* We skip the constraint if it is implied by the div expression.
1959 * *first indicates whether this is the first constraint in the conjunction and
1960 * is updated if the constraint is actually printed.
1962 static __isl_give isl_printer
*print_constraint_c(__isl_take isl_printer
*p
,
1963 __isl_keep isl_space
*dim
,
1964 __isl_keep isl_basic_set
*bset
, isl_int
*c
, const char *op
, int *first
)
1970 o_div
= isl_basic_set_offset(bset
, isl_dim_div
);
1971 n_div
= isl_basic_set_dim(bset
, isl_dim_div
);
1972 div
= isl_seq_last_non_zero(c
+ o_div
, n_div
);
1974 isl_bool is_div
= isl_basic_set_is_div_constraint(bset
, c
, div
);
1976 return isl_printer_free(p
);
1982 p
= isl_printer_print_str(p
, " && ");
1984 p
= print_affine_c(p
, dim
, bset
, c
);
1985 p
= isl_printer_print_str(p
, " ");
1986 p
= isl_printer_print_str(p
, op
);
1987 p
= isl_printer_print_str(p
, " 0");
1994 static __isl_give isl_printer
*print_basic_set_c(__isl_take isl_printer
*p
,
1995 __isl_keep isl_space
*dim
, __isl_keep isl_basic_set
*bset
)
1999 unsigned n_div
= isl_basic_set_dim(bset
, isl_dim_div
);
2000 unsigned total
= isl_basic_set_total_dim(bset
) - n_div
;
2002 for (i
= 0; i
< bset
->n_eq
; ++i
) {
2003 j
= isl_seq_last_non_zero(bset
->eq
[i
] + 1 + total
, n_div
);
2005 p
= print_constraint_c(p
, dim
, bset
,
2006 bset
->eq
[i
], "==", &first
);
2009 p
= isl_printer_print_str(p
, " && ");
2010 p
= isl_printer_print_str(p
, "(");
2011 p
= print_partial_affine_c(p
, dim
, bset
, bset
->eq
[i
],
2013 p
= isl_printer_print_str(p
, ") % ");
2014 p
= isl_printer_print_isl_int(p
,
2015 bset
->eq
[i
][1 + total
+ j
]);
2016 p
= isl_printer_print_str(p
, " == 0");
2020 for (i
= 0; i
< bset
->n_ineq
; ++i
)
2021 p
= print_constraint_c(p
, dim
, bset
, bset
->ineq
[i
], ">=",
2026 static __isl_give isl_printer
*print_set_c(__isl_take isl_printer
*p
,
2027 __isl_keep isl_space
*dim
, __isl_keep isl_set
*set
)
2032 return isl_printer_free(p
);
2035 p
= isl_printer_print_str(p
, "0");
2037 for (i
= 0; i
< set
->n
; ++i
) {
2039 p
= isl_printer_print_str(p
, " || ");
2041 p
= isl_printer_print_str(p
, "(");
2042 p
= print_basic_set_c(p
, dim
, set
->p
[i
]);
2044 p
= isl_printer_print_str(p
, ")");
2049 /* Print the piecewise quasi-polynomial "pwqp" to "p" in C format.
2051 static __isl_give isl_printer
*print_pw_qpolynomial_c(
2052 __isl_take isl_printer
*p
, __isl_keep isl_pw_qpolynomial
*pwqp
)
2057 space
= isl_pw_qpolynomial_get_domain_space(pwqp
);
2058 if (pwqp
->n
== 1 && isl_set_plain_is_universe(pwqp
->p
[0].set
)) {
2059 p
= print_qpolynomial_c(p
, space
, pwqp
->p
[0].qp
);
2060 isl_space_free(space
);
2064 for (i
= 0; i
< pwqp
->n
; ++i
) {
2065 p
= isl_printer_print_str(p
, "(");
2066 p
= print_set_c(p
, space
, pwqp
->p
[i
].set
);
2067 p
= isl_printer_print_str(p
, ") ? (");
2068 p
= print_qpolynomial_c(p
, space
, pwqp
->p
[i
].qp
);
2069 p
= isl_printer_print_str(p
, ") : ");
2072 isl_space_free(space
);
2073 p
= isl_printer_print_str(p
, "0");
2077 __isl_give isl_printer
*isl_printer_print_pw_qpolynomial(
2078 __isl_take isl_printer
*p
, __isl_keep isl_pw_qpolynomial
*pwqp
)
2083 if (p
->output_format
== ISL_FORMAT_ISL
)
2084 return print_pw_qpolynomial_isl(p
, pwqp
);
2085 else if (p
->output_format
== ISL_FORMAT_C
)
2086 return print_pw_qpolynomial_c(p
, pwqp
);
2087 isl_assert(p
->ctx
, 0, goto error
);
2089 isl_printer_free(p
);
2093 static isl_stat
print_pwqp_body(__isl_take isl_pw_qpolynomial
*pwqp
, void *user
)
2095 struct isl_union_print_data
*data
;
2096 data
= (struct isl_union_print_data
*)user
;
2099 data
->p
= isl_printer_print_str(data
->p
, "; ");
2102 data
->p
= isl_pwqp_print_isl_body(data
->p
, pwqp
);
2103 isl_pw_qpolynomial_free(pwqp
);
2108 static __isl_give isl_printer
*print_union_pw_qpolynomial_isl(
2109 __isl_take isl_printer
*p
, __isl_keep isl_union_pw_qpolynomial
*upwqp
)
2111 struct isl_union_print_data data
;
2112 struct isl_print_space_data space_data
= { 0 };
2115 space
= isl_union_pw_qpolynomial_get_space(upwqp
);
2116 p
= print_param_tuple(p
, space
, &space_data
);
2117 isl_space_free(space
);
2118 p
= isl_printer_print_str(p
, "{ ");
2121 isl_union_pw_qpolynomial_foreach_pw_qpolynomial(upwqp
, &print_pwqp_body
,
2124 p
= isl_printer_print_str(p
, " }");
2128 __isl_give isl_printer
*isl_printer_print_union_pw_qpolynomial(
2129 __isl_take isl_printer
*p
, __isl_keep isl_union_pw_qpolynomial
*upwqp
)
2134 if (p
->output_format
== ISL_FORMAT_ISL
)
2135 return print_union_pw_qpolynomial_isl(p
, upwqp
);
2136 isl_die(p
->ctx
, isl_error_invalid
,
2137 "invalid output format for isl_union_pw_qpolynomial",
2140 isl_printer_free(p
);
2144 /* Print the quasi-polynomial reduction "fold" to "p" in C format,
2145 * with the variable names taken from the domain space "space".
2147 static __isl_give isl_printer
*print_qpolynomial_fold_c(
2148 __isl_take isl_printer
*p
, __isl_keep isl_space
*space
,
2149 __isl_keep isl_qpolynomial_fold
*fold
)
2153 for (i
= 0; i
< fold
->n
- 1; ++i
)
2154 if (fold
->type
== isl_fold_min
)
2155 p
= isl_printer_print_str(p
, "min(");
2156 else if (fold
->type
== isl_fold_max
)
2157 p
= isl_printer_print_str(p
, "max(");
2159 for (i
= 0; i
< fold
->n
; ++i
) {
2161 p
= isl_printer_print_str(p
, ", ");
2162 p
= print_qpolynomial_c(p
, space
, fold
->qp
[i
]);
2164 p
= isl_printer_print_str(p
, ")");
2169 __isl_give isl_printer
*isl_printer_print_qpolynomial_fold(
2170 __isl_take isl_printer
*p
, __isl_keep isl_qpolynomial_fold
*fold
)
2174 if (p
->output_format
== ISL_FORMAT_ISL
)
2175 return qpolynomial_fold_print(fold
, p
);
2176 else if (p
->output_format
== ISL_FORMAT_C
)
2177 return print_qpolynomial_fold_c(p
, fold
->dim
, fold
);
2178 isl_die(p
->ctx
, isl_error_unsupported
, "unsupported output format",
2181 isl_printer_free(p
);
2185 /* Print the piecewise quasi-polynomial reduction "pwf" to "p" in C format.
2187 static __isl_give isl_printer
*print_pw_qpolynomial_fold_c(
2188 __isl_take isl_printer
*p
, __isl_keep isl_pw_qpolynomial_fold
*pwf
)
2193 space
= isl_pw_qpolynomial_fold_get_domain_space(pwf
);
2194 if (pwf
->n
== 1 && isl_set_plain_is_universe(pwf
->p
[0].set
)) {
2195 p
= print_qpolynomial_fold_c(p
, space
, pwf
->p
[0].fold
);
2196 isl_space_free(space
);
2200 for (i
= 0; i
< pwf
->n
; ++i
) {
2201 p
= isl_printer_print_str(p
, "(");
2202 p
= print_set_c(p
, space
, pwf
->p
[i
].set
);
2203 p
= isl_printer_print_str(p
, ") ? (");
2204 p
= print_qpolynomial_fold_c(p
, space
, pwf
->p
[i
].fold
);
2205 p
= isl_printer_print_str(p
, ") : ");
2208 isl_space_free(space
);
2209 p
= isl_printer_print_str(p
, "0");
2213 __isl_give isl_printer
*isl_printer_print_pw_qpolynomial_fold(
2214 __isl_take isl_printer
*p
, __isl_keep isl_pw_qpolynomial_fold
*pwf
)
2219 if (p
->output_format
== ISL_FORMAT_ISL
)
2220 return print_pw_qpolynomial_fold_isl(p
, pwf
);
2221 else if (p
->output_format
== ISL_FORMAT_C
)
2222 return print_pw_qpolynomial_fold_c(p
, pwf
);
2223 isl_assert(p
->ctx
, 0, goto error
);
2225 isl_printer_free(p
);
2229 void isl_pw_qpolynomial_fold_print(__isl_keep isl_pw_qpolynomial_fold
*pwf
,
2230 FILE *out
, unsigned output_format
)
2237 p
= isl_printer_to_file(pwf
->dim
->ctx
, out
);
2238 p
= isl_printer_set_output_format(p
, output_format
);
2239 p
= isl_printer_print_pw_qpolynomial_fold(p
, pwf
);
2241 isl_printer_free(p
);
2244 static isl_stat
print_pwf_body(__isl_take isl_pw_qpolynomial_fold
*pwf
,
2247 struct isl_union_print_data
*data
;
2248 data
= (struct isl_union_print_data
*)user
;
2251 data
->p
= isl_printer_print_str(data
->p
, "; ");
2254 data
->p
= isl_pwf_print_isl_body(data
->p
, pwf
);
2255 isl_pw_qpolynomial_fold_free(pwf
);
2260 static __isl_give isl_printer
*print_union_pw_qpolynomial_fold_isl(
2261 __isl_take isl_printer
*p
,
2262 __isl_keep isl_union_pw_qpolynomial_fold
*upwf
)
2264 struct isl_union_print_data data
;
2265 struct isl_print_space_data space_data
= { 0 };
2268 space
= isl_union_pw_qpolynomial_fold_get_space(upwf
);
2269 p
= print_param_tuple(p
, space
, &space_data
);
2270 isl_space_free(space
);
2271 p
= isl_printer_print_str(p
, "{ ");
2274 isl_union_pw_qpolynomial_fold_foreach_pw_qpolynomial_fold(upwf
,
2275 &print_pwf_body
, &data
);
2277 p
= isl_printer_print_str(p
, " }");
2281 __isl_give isl_printer
*isl_printer_print_union_pw_qpolynomial_fold(
2282 __isl_take isl_printer
*p
,
2283 __isl_keep isl_union_pw_qpolynomial_fold
*upwf
)
2288 if (p
->output_format
== ISL_FORMAT_ISL
)
2289 return print_union_pw_qpolynomial_fold_isl(p
, upwf
);
2290 isl_die(p
->ctx
, isl_error_invalid
,
2291 "invalid output format for isl_union_pw_qpolynomial_fold",
2294 isl_printer_free(p
);
2298 /* Print the isl_constraint "c" to "p".
2300 __isl_give isl_printer
*isl_printer_print_constraint(__isl_take isl_printer
*p
,
2301 __isl_keep isl_constraint
*c
)
2303 struct isl_print_space_data data
= { 0 };
2304 isl_local_space
*ls
;
2311 ls
= isl_constraint_get_local_space(c
);
2313 return isl_printer_free(p
);
2314 space
= isl_local_space_get_space(ls
);
2315 p
= print_param_tuple(p
, space
, &data
);
2316 p
= isl_printer_print_str(p
, "{ ");
2317 p
= isl_print_space(space
, p
, 0, &data
);
2318 p
= isl_printer_print_str(p
, " : ");
2319 exists
= need_exists(p
, ls
->div
);
2321 p
= isl_printer_free(p
);
2322 if (exists
>= 0 && exists
)
2323 p
= open_exists(p
, space
, ls
->div
, 0);
2324 p
= print_affine_of_len(space
, ls
->div
, p
, c
->v
->el
, c
->v
->size
);
2325 if (isl_constraint_is_equality(c
))
2326 p
= isl_printer_print_str(p
, " = 0");
2328 p
= isl_printer_print_str(p
, " >= 0");
2329 if (exists
>= 0 && exists
)
2330 p
= isl_printer_print_str(p
, s_close_exists
[0]);
2331 p
= isl_printer_print_str(p
, " }");
2332 isl_space_free(space
);
2333 isl_local_space_free(ls
);
2337 isl_printer_free(p
);
2341 static __isl_give isl_printer
*isl_printer_print_space_isl(
2342 __isl_take isl_printer
*p
, __isl_keep isl_space
*space
)
2344 struct isl_print_space_data data
= { 0 };
2349 p
= print_param_tuple(p
, space
, &data
);
2351 p
= isl_printer_print_str(p
, "{ ");
2352 if (isl_space_is_params(space
))
2353 p
= isl_printer_print_str(p
, s_such_that
[0]);
2355 p
= isl_print_space(space
, p
, 0, &data
);
2356 p
= isl_printer_print_str(p
, " }");
2360 isl_printer_free(p
);
2364 __isl_give isl_printer
*isl_printer_print_space(__isl_take isl_printer
*p
,
2365 __isl_keep isl_space
*space
)
2368 return isl_printer_free(p
);
2369 if (p
->output_format
== ISL_FORMAT_ISL
)
2370 return isl_printer_print_space_isl(p
, space
);
2371 else if (p
->output_format
== ISL_FORMAT_OMEGA
)
2372 return print_omega_parameters(space
, p
);
2374 isl_die(isl_space_get_ctx(space
), isl_error_unsupported
,
2375 "output format not supported for space",
2376 return isl_printer_free(p
));
2379 __isl_give isl_printer
*isl_printer_print_local_space(__isl_take isl_printer
*p
,
2380 __isl_keep isl_local_space
*ls
)
2382 struct isl_print_space_data data
= { 0 };
2388 p
= print_param_tuple(p
, ls
->dim
, &data
);
2389 p
= isl_printer_print_str(p
, "{ ");
2390 p
= isl_print_space(ls
->dim
, p
, 0, &data
);
2391 n_div
= isl_local_space_dim(ls
, isl_dim_div
);
2393 p
= isl_printer_print_str(p
, " : ");
2394 p
= isl_printer_print_str(p
, s_open_exists
[0]);
2395 p
= print_div_list(p
, ls
->dim
, ls
->div
, 0, 1);
2396 p
= isl_printer_print_str(p
, s_close_exists
[0]);
2397 } else if (isl_space_is_params(ls
->dim
))
2398 p
= isl_printer_print_str(p
, s_such_that
[0]);
2399 p
= isl_printer_print_str(p
, " }");
2402 isl_printer_free(p
);
2406 static __isl_give isl_printer
*print_aff_body(__isl_take isl_printer
*p
,
2407 __isl_keep isl_aff
*aff
)
2411 if (isl_aff_is_nan(aff
))
2412 return isl_printer_print_str(p
, "NaN");
2414 total
= isl_local_space_dim(aff
->ls
, isl_dim_all
);
2415 p
= isl_printer_print_str(p
, "(");
2416 p
= print_affine_of_len(aff
->ls
->dim
, aff
->ls
->div
, p
,
2417 aff
->v
->el
+ 1, 1 + total
);
2418 if (isl_int_is_one(aff
->v
->el
[0]))
2419 p
= isl_printer_print_str(p
, ")");
2421 p
= isl_printer_print_str(p
, ")/");
2422 p
= isl_printer_print_isl_int(p
, aff
->v
->el
[0]);
2428 static __isl_give isl_printer
*print_aff(__isl_take isl_printer
*p
,
2429 __isl_keep isl_aff
*aff
)
2431 struct isl_print_space_data data
= { 0 };
2433 if (isl_space_is_params(aff
->ls
->dim
))
2436 p
= print_tuple(aff
->ls
->dim
, p
, isl_dim_set
, &data
);
2437 p
= isl_printer_print_str(p
, " -> ");
2439 p
= isl_printer_print_str(p
, "[");
2440 p
= print_aff_body(p
, aff
);
2441 p
= isl_printer_print_str(p
, "]");
2446 static __isl_give isl_printer
*print_aff_isl(__isl_take isl_printer
*p
,
2447 __isl_keep isl_aff
*aff
)
2449 struct isl_print_space_data data
= { 0 };
2454 p
= print_param_tuple(p
, aff
->ls
->dim
, &data
);
2455 p
= isl_printer_print_str(p
, "{ ");
2456 p
= print_aff(p
, aff
);
2457 p
= isl_printer_print_str(p
, " }");
2460 isl_printer_free(p
);
2464 /* Print the body of an isl_pw_aff, i.e., a semicolon delimited
2465 * sequence of affine expressions, each followed by constraints.
2467 static __isl_give isl_printer
*print_pw_aff_body(
2468 __isl_take isl_printer
*p
, __isl_keep isl_pw_aff
*pa
)
2473 return isl_printer_free(p
);
2475 for (i
= 0; i
< pa
->n
; ++i
) {
2479 p
= isl_printer_print_str(p
, "; ");
2480 p
= print_aff(p
, pa
->p
[i
].aff
);
2481 space
= isl_aff_get_domain_space(pa
->p
[i
].aff
);
2482 p
= print_disjuncts(set_to_map(pa
->p
[i
].set
), space
, p
, 0);
2483 isl_space_free(space
);
2489 static __isl_give isl_printer
*print_pw_aff_isl(__isl_take isl_printer
*p
,
2490 __isl_keep isl_pw_aff
*pwaff
)
2492 struct isl_print_space_data data
= { 0 };
2497 p
= print_param_tuple(p
, pwaff
->dim
, &data
);
2498 p
= isl_printer_print_str(p
, "{ ");
2499 p
= print_pw_aff_body(p
, pwaff
);
2500 p
= isl_printer_print_str(p
, " }");
2503 isl_printer_free(p
);
2507 static __isl_give isl_printer
*print_ls_affine_c(__isl_take isl_printer
*p
,
2508 __isl_keep isl_local_space
*ls
, isl_int
*c
);
2510 static __isl_give isl_printer
*print_ls_name_c(__isl_take isl_printer
*p
,
2511 __isl_keep isl_local_space
*ls
, enum isl_dim_type type
, unsigned pos
)
2513 if (type
== isl_dim_div
) {
2514 p
= isl_printer_print_str(p
, "floord(");
2515 p
= print_ls_affine_c(p
, ls
, ls
->div
->row
[pos
] + 1);
2516 p
= isl_printer_print_str(p
, ", ");
2517 p
= isl_printer_print_isl_int(p
, ls
->div
->row
[pos
][0]);
2518 p
= isl_printer_print_str(p
, ")");
2522 name
= isl_space_get_dim_name(ls
->dim
, type
, pos
);
2525 p
= isl_printer_print_str(p
, name
);
2530 static __isl_give isl_printer
*print_ls_term_c(__isl_take isl_printer
*p
,
2531 __isl_keep isl_local_space
*ls
, isl_int c
, unsigned pos
)
2533 enum isl_dim_type type
;
2536 return isl_printer_print_isl_int(p
, c
);
2538 if (isl_int_is_one(c
))
2540 else if (isl_int_is_negone(c
))
2541 p
= isl_printer_print_str(p
, "-");
2543 p
= isl_printer_print_isl_int(p
, c
);
2544 p
= isl_printer_print_str(p
, "*");
2546 type
= pos2type(ls
->dim
, &pos
);
2547 p
= print_ls_name_c(p
, ls
, type
, pos
);
2551 static __isl_give isl_printer
*print_ls_partial_affine_c(
2552 __isl_take isl_printer
*p
, __isl_keep isl_local_space
*ls
,
2553 isl_int
*c
, unsigned len
)
2558 for (i
= 0, first
= 1; i
< len
; ++i
) {
2560 if (isl_int_is_zero(c
[i
]))
2563 if (isl_int_is_neg(c
[i
])) {
2565 isl_int_neg(c
[i
], c
[i
]);
2566 p
= isl_printer_print_str(p
, " - ");
2568 p
= isl_printer_print_str(p
, " + ");
2571 p
= print_ls_term_c(p
, ls
, c
[i
], i
);
2573 isl_int_neg(c
[i
], c
[i
]);
2576 p
= isl_printer_print_str(p
, "0");
2580 static __isl_give isl_printer
*print_ls_affine_c(__isl_take isl_printer
*p
,
2581 __isl_keep isl_local_space
*ls
, isl_int
*c
)
2583 unsigned len
= 1 + isl_local_space_dim(ls
, isl_dim_all
);
2584 return print_ls_partial_affine_c(p
, ls
, c
, len
);
2587 static __isl_give isl_printer
*print_aff_c(__isl_take isl_printer
*p
,
2588 __isl_keep isl_aff
*aff
)
2592 total
= isl_local_space_dim(aff
->ls
, isl_dim_all
);
2593 if (!isl_int_is_one(aff
->v
->el
[0]))
2594 p
= isl_printer_print_str(p
, "(");
2595 p
= print_ls_partial_affine_c(p
, aff
->ls
, aff
->v
->el
+ 1, 1 + total
);
2596 if (!isl_int_is_one(aff
->v
->el
[0])) {
2597 p
= isl_printer_print_str(p
, ")/");
2598 p
= isl_printer_print_isl_int(p
, aff
->v
->el
[0]);
2603 /* In the C format, we cannot express that "pwaff" may be undefined
2604 * on parts of the domain space. We therefore assume that the expression
2605 * will only be evaluated on its definition domain and compute the gist
2606 * of each cell with respect to this domain.
2608 static __isl_give isl_printer
*print_pw_aff_c(__isl_take isl_printer
*p
,
2609 __isl_keep isl_pw_aff
*pwaff
)
2612 isl_ast_build
*build
;
2616 isl_die(p
->ctx
, isl_error_unsupported
,
2617 "cannot print empty isl_pw_aff in C format",
2618 return isl_printer_free(p
));
2620 domain
= isl_pw_aff_domain(isl_pw_aff_copy(pwaff
));
2621 build
= isl_ast_build_from_context(domain
);
2622 expr
= isl_ast_build_expr_from_pw_aff(build
, isl_pw_aff_copy(pwaff
));
2623 p
= isl_printer_print_ast_expr(p
, expr
);
2624 isl_ast_expr_free(expr
);
2625 isl_ast_build_free(build
);
2630 __isl_give isl_printer
*isl_printer_print_aff(__isl_take isl_printer
*p
,
2631 __isl_keep isl_aff
*aff
)
2636 if (p
->output_format
== ISL_FORMAT_ISL
)
2637 return print_aff_isl(p
, aff
);
2638 else if (p
->output_format
== ISL_FORMAT_C
)
2639 return print_aff_c(p
, aff
);
2640 isl_die(p
->ctx
, isl_error_unsupported
, "unsupported output format",
2643 isl_printer_free(p
);
2647 __isl_give isl_printer
*isl_printer_print_pw_aff(__isl_take isl_printer
*p
,
2648 __isl_keep isl_pw_aff
*pwaff
)
2653 if (p
->output_format
== ISL_FORMAT_ISL
)
2654 return print_pw_aff_isl(p
, pwaff
);
2655 else if (p
->output_format
== ISL_FORMAT_C
)
2656 return print_pw_aff_c(p
, pwaff
);
2657 isl_die(p
->ctx
, isl_error_unsupported
, "unsupported output format",
2660 isl_printer_free(p
);
2664 /* Print "pa" in a sequence of isl_pw_affs delimited by semicolons.
2665 * Each isl_pw_aff itself is also printed as semicolon delimited
2666 * sequence of pieces.
2667 * If data->first = 1, then this is the first in the sequence.
2668 * Update data->first to tell the next element that it is not the first.
2670 static isl_stat
print_pw_aff_body_wrap(__isl_take isl_pw_aff
*pa
,
2673 struct isl_union_print_data
*data
;
2674 data
= (struct isl_union_print_data
*) user
;
2677 data
->p
= isl_printer_print_str(data
->p
, "; ");
2680 data
->p
= print_pw_aff_body(data
->p
, pa
);
2681 isl_pw_aff_free(pa
);
2683 return data
->p
? isl_stat_ok
: isl_stat_error
;
2686 /* Print the body of an isl_union_pw_aff, i.e., a semicolon delimited
2687 * sequence of affine expressions, each followed by constraints,
2688 * with the sequence enclosed in braces.
2690 static __isl_give isl_printer
*print_union_pw_aff_body(
2691 __isl_take isl_printer
*p
, __isl_keep isl_union_pw_aff
*upa
)
2693 struct isl_union_print_data data
= { p
, 1 };
2695 p
= isl_printer_print_str(p
, s_open_set
[0]);
2697 if (isl_union_pw_aff_foreach_pw_aff(upa
,
2698 &print_pw_aff_body_wrap
, &data
) < 0)
2699 data
.p
= isl_printer_free(p
);
2701 p
= isl_printer_print_str(p
, s_close_set
[0]);
2706 /* Print the isl_union_pw_aff "upa" to "p" in isl format.
2708 * The individual isl_pw_affs are delimited by a semicolon.
2710 static __isl_give isl_printer
*print_union_pw_aff_isl(
2711 __isl_take isl_printer
*p
, __isl_keep isl_union_pw_aff
*upa
)
2713 struct isl_print_space_data data
= { 0 };
2716 space
= isl_union_pw_aff_get_space(upa
);
2717 p
= print_param_tuple(p
, space
, &data
);
2718 isl_space_free(space
);
2719 p
= print_union_pw_aff_body(p
, upa
);
2723 /* Print the isl_union_pw_aff "upa" to "p".
2725 * We currently only support an isl format.
2727 __isl_give isl_printer
*isl_printer_print_union_pw_aff(
2728 __isl_take isl_printer
*p
, __isl_keep isl_union_pw_aff
*upa
)
2731 return isl_printer_free(p
);
2733 if (p
->output_format
== ISL_FORMAT_ISL
)
2734 return print_union_pw_aff_isl(p
, upa
);
2735 isl_die(isl_printer_get_ctx(p
), isl_error_unsupported
,
2736 "unsupported output format", return isl_printer_free(p
));
2739 /* Print dimension "pos" of data->space to "p".
2741 * data->user is assumed to be an isl_multi_aff.
2743 * If the current dimension is an output dimension, then print
2744 * the corresponding expression. Otherwise, print the name of the dimension.
2746 static __isl_give isl_printer
*print_dim_ma(__isl_take isl_printer
*p
,
2747 struct isl_print_space_data
*data
, unsigned pos
)
2749 isl_multi_aff
*ma
= data
->user
;
2751 if (data
->type
== isl_dim_out
)
2752 p
= print_aff_body(p
, ma
->p
[pos
]);
2754 p
= print_name(data
->space
, p
, data
->type
, pos
, data
->latex
);
2759 static __isl_give isl_printer
*print_multi_aff(__isl_take isl_printer
*p
,
2760 __isl_keep isl_multi_aff
*maff
)
2762 struct isl_print_space_data data
= { 0 };
2764 data
.print_dim
= &print_dim_ma
;
2766 return isl_print_space(maff
->space
, p
, 0, &data
);
2769 static __isl_give isl_printer
*print_multi_aff_isl(__isl_take isl_printer
*p
,
2770 __isl_keep isl_multi_aff
*maff
)
2772 struct isl_print_space_data data
= { 0 };
2777 p
= print_param_tuple(p
, maff
->space
, &data
);
2778 p
= isl_printer_print_str(p
, "{ ");
2779 p
= print_multi_aff(p
, maff
);
2780 p
= isl_printer_print_str(p
, " }");
2783 isl_printer_free(p
);
2787 __isl_give isl_printer
*isl_printer_print_multi_aff(__isl_take isl_printer
*p
,
2788 __isl_keep isl_multi_aff
*maff
)
2793 if (p
->output_format
== ISL_FORMAT_ISL
)
2794 return print_multi_aff_isl(p
, maff
);
2795 isl_die(p
->ctx
, isl_error_unsupported
, "unsupported output format",
2798 isl_printer_free(p
);
2802 static __isl_give isl_printer
*print_pw_multi_aff_body(
2803 __isl_take isl_printer
*p
, __isl_keep isl_pw_multi_aff
*pma
)
2810 for (i
= 0; i
< pma
->n
; ++i
) {
2814 p
= isl_printer_print_str(p
, "; ");
2815 p
= print_multi_aff(p
, pma
->p
[i
].maff
);
2816 space
= isl_multi_aff_get_domain_space(pma
->p
[i
].maff
);
2817 p
= print_disjuncts(set_to_map(pma
->p
[i
].set
), space
, p
, 0);
2818 isl_space_free(space
);
2822 isl_printer_free(p
);
2826 static __isl_give isl_printer
*print_pw_multi_aff_isl(__isl_take isl_printer
*p
,
2827 __isl_keep isl_pw_multi_aff
*pma
)
2829 struct isl_print_space_data data
= { 0 };
2834 p
= print_param_tuple(p
, pma
->dim
, &data
);
2835 p
= isl_printer_print_str(p
, "{ ");
2836 p
= print_pw_multi_aff_body(p
, pma
);
2837 p
= isl_printer_print_str(p
, " }");
2840 isl_printer_free(p
);
2844 /* Print the unnamed, single-dimensional piecewise multi affine expression "pma"
2847 static __isl_give isl_printer
*print_unnamed_pw_multi_aff_c(
2848 __isl_take isl_printer
*p
, __isl_keep isl_pw_multi_aff
*pma
)
2853 space
= isl_pw_multi_aff_get_domain_space(pma
);
2854 for (i
= 0; i
< pma
->n
- 1; ++i
) {
2855 p
= isl_printer_print_str(p
, "(");
2856 p
= print_set_c(p
, space
, pma
->p
[i
].set
);
2857 p
= isl_printer_print_str(p
, ") ? (");
2858 p
= print_aff_c(p
, pma
->p
[i
].maff
->p
[0]);
2859 p
= isl_printer_print_str(p
, ") : ");
2861 isl_space_free(space
);
2863 return print_aff_c(p
, pma
->p
[pma
->n
- 1].maff
->p
[0]);
2866 static __isl_give isl_printer
*print_pw_multi_aff_c(__isl_take isl_printer
*p
,
2867 __isl_keep isl_pw_multi_aff
*pma
)
2875 isl_die(p
->ctx
, isl_error_unsupported
,
2876 "cannot print empty isl_pw_multi_aff in C format",
2878 name
= isl_pw_multi_aff_get_tuple_name(pma
, isl_dim_out
);
2879 if (!name
&& isl_pw_multi_aff_dim(pma
, isl_dim_out
) == 1)
2880 return print_unnamed_pw_multi_aff_c(p
, pma
);
2882 isl_die(p
->ctx
, isl_error_unsupported
,
2883 "cannot print unnamed isl_pw_multi_aff in C format",
2886 p
= isl_printer_print_str(p
, name
);
2887 n
= isl_pw_multi_aff_dim(pma
, isl_dim_out
);
2889 isl_die(p
->ctx
, isl_error_unsupported
,
2890 "not supported yet", goto error
);
2894 isl_printer_free(p
);
2898 __isl_give isl_printer
*isl_printer_print_pw_multi_aff(
2899 __isl_take isl_printer
*p
, __isl_keep isl_pw_multi_aff
*pma
)
2904 if (p
->output_format
== ISL_FORMAT_ISL
)
2905 return print_pw_multi_aff_isl(p
, pma
);
2906 if (p
->output_format
== ISL_FORMAT_C
)
2907 return print_pw_multi_aff_c(p
, pma
);
2908 isl_die(p
->ctx
, isl_error_unsupported
, "unsupported output format",
2911 isl_printer_free(p
);
2915 static isl_stat
print_pw_multi_aff_body_wrap(__isl_take isl_pw_multi_aff
*pma
,
2918 struct isl_union_print_data
*data
;
2919 data
= (struct isl_union_print_data
*) user
;
2922 data
->p
= isl_printer_print_str(data
->p
, "; ");
2925 data
->p
= print_pw_multi_aff_body(data
->p
, pma
);
2926 isl_pw_multi_aff_free(pma
);
2931 static __isl_give isl_printer
*print_union_pw_multi_aff_isl(
2932 __isl_take isl_printer
*p
, __isl_keep isl_union_pw_multi_aff
*upma
)
2934 struct isl_union_print_data data
;
2935 struct isl_print_space_data space_data
= { 0 };
2938 space
= isl_union_pw_multi_aff_get_space(upma
);
2939 p
= print_param_tuple(p
, space
, &space_data
);
2940 isl_space_free(space
);
2941 p
= isl_printer_print_str(p
, s_open_set
[0]);
2944 isl_union_pw_multi_aff_foreach_pw_multi_aff(upma
,
2945 &print_pw_multi_aff_body_wrap
, &data
);
2947 p
= isl_printer_print_str(p
, s_close_set
[0]);
2951 __isl_give isl_printer
*isl_printer_print_union_pw_multi_aff(
2952 __isl_take isl_printer
*p
, __isl_keep isl_union_pw_multi_aff
*upma
)
2957 if (p
->output_format
== ISL_FORMAT_ISL
)
2958 return print_union_pw_multi_aff_isl(p
, upma
);
2959 isl_die(p
->ctx
, isl_error_unsupported
, "unsupported output format",
2962 isl_printer_free(p
);
2966 /* Print dimension "pos" of data->space to "p".
2968 * data->user is assumed to be an isl_multi_pw_aff.
2970 * If the current dimension is an output dimension, then print
2971 * the corresponding piecewise affine expression.
2972 * Otherwise, print the name of the dimension.
2974 static __isl_give isl_printer
*print_dim_mpa(__isl_take isl_printer
*p
,
2975 struct isl_print_space_data
*data
, unsigned pos
)
2979 isl_multi_pw_aff
*mpa
= data
->user
;
2982 if (data
->type
!= isl_dim_out
)
2983 return print_name(data
->space
, p
, data
->type
, pos
, data
->latex
);
2987 return isl_printer_print_str(p
, "(0 : 1 = 0)");
2989 need_parens
= pa
->n
!= 1 || !isl_set_plain_is_universe(pa
->p
[0].set
);
2991 p
= isl_printer_print_str(p
, "(");
2992 for (i
= 0; i
< pa
->n
; ++i
) {
2996 p
= isl_printer_print_str(p
, "; ");
2997 p
= print_aff_body(p
, pa
->p
[i
].aff
);
2998 space
= isl_aff_get_domain_space(pa
->p
[i
].aff
);
2999 p
= print_disjuncts(pa
->p
[i
].set
, space
, p
, 0);
3000 isl_space_free(space
);
3003 p
= isl_printer_print_str(p
, ")");
3008 /* Print "mpa" to "p" in isl format.
3010 static __isl_give isl_printer
*print_multi_pw_aff_isl(__isl_take isl_printer
*p
,
3011 __isl_keep isl_multi_pw_aff
*mpa
)
3013 struct isl_print_space_data data
= { 0 };
3016 return isl_printer_free(p
);
3018 p
= print_param_tuple(p
, mpa
->space
, &data
);
3019 p
= isl_printer_print_str(p
, "{ ");
3020 data
.print_dim
= &print_dim_mpa
;
3022 p
= isl_print_space(mpa
->space
, p
, 0, &data
);
3023 p
= isl_printer_print_str(p
, " }");
3027 __isl_give isl_printer
*isl_printer_print_multi_pw_aff(
3028 __isl_take isl_printer
*p
, __isl_keep isl_multi_pw_aff
*mpa
)
3031 return isl_printer_free(p
);
3033 if (p
->output_format
== ISL_FORMAT_ISL
)
3034 return print_multi_pw_aff_isl(p
, mpa
);
3035 isl_die(p
->ctx
, isl_error_unsupported
, "unsupported output format",
3036 return isl_printer_free(p
));
3039 /* Print dimension "pos" of data->space to "p".
3041 * data->user is assumed to be an isl_multi_val.
3043 * If the current dimension is an output dimension, then print
3044 * the corresponding value. Otherwise, print the name of the dimension.
3046 static __isl_give isl_printer
*print_dim_mv(__isl_take isl_printer
*p
,
3047 struct isl_print_space_data
*data
, unsigned pos
)
3049 isl_multi_val
*mv
= data
->user
;
3051 if (data
->type
== isl_dim_out
)
3052 return isl_printer_print_val(p
, mv
->p
[pos
]);
3054 return print_name(data
->space
, p
, data
->type
, pos
, data
->latex
);
3057 /* Print the isl_multi_val "mv" to "p" in isl format.
3059 static __isl_give isl_printer
*print_multi_val_isl(__isl_take isl_printer
*p
,
3060 __isl_keep isl_multi_val
*mv
)
3062 struct isl_print_space_data data
= { 0 };
3065 return isl_printer_free(p
);
3067 p
= print_param_tuple(p
, mv
->space
, &data
);
3068 p
= isl_printer_print_str(p
, "{ ");
3069 data
.print_dim
= &print_dim_mv
;
3071 p
= isl_print_space(mv
->space
, p
, 0, &data
);
3072 p
= isl_printer_print_str(p
, " }");
3076 /* Print the isl_multi_val "mv" to "p".
3078 * Currently only supported in isl format.
3080 __isl_give isl_printer
*isl_printer_print_multi_val(
3081 __isl_take isl_printer
*p
, __isl_keep isl_multi_val
*mv
)
3084 return isl_printer_free(p
);
3086 if (p
->output_format
== ISL_FORMAT_ISL
)
3087 return print_multi_val_isl(p
, mv
);
3088 isl_die(p
->ctx
, isl_error_unsupported
, "unsupported output format",
3089 return isl_printer_free(p
));
3092 /* Print dimension "pos" of data->space to "p".
3094 * data->user is assumed to be an isl_multi_union_pw_aff.
3096 * The current dimension is necessarily a set dimension, so
3097 * we print the corresponding isl_union_pw_aff, including
3100 static __isl_give isl_printer
*print_union_pw_aff_dim(__isl_take isl_printer
*p
,
3101 struct isl_print_space_data
*data
, unsigned pos
)
3103 isl_multi_union_pw_aff
*mupa
= data
->user
;
3104 isl_union_pw_aff
*upa
;
3106 upa
= isl_multi_union_pw_aff_get_union_pw_aff(mupa
, pos
);
3107 p
= print_union_pw_aff_body(p
, upa
);
3108 isl_union_pw_aff_free(upa
);
3113 /* Print the isl_multi_union_pw_aff "mupa" to "p" in isl format.
3115 static __isl_give isl_printer
*print_multi_union_pw_aff_isl(
3116 __isl_take isl_printer
*p
, __isl_keep isl_multi_union_pw_aff
*mupa
)
3118 struct isl_print_space_data data
= { 0 };
3121 space
= isl_multi_union_pw_aff_get_space(mupa
);
3122 p
= print_param_tuple(p
, space
, &data
);
3124 data
.print_dim
= &print_union_pw_aff_dim
;
3127 p
= isl_print_space(space
, p
, 0, &data
);
3128 isl_space_free(space
);
3133 /* Print the isl_multi_union_pw_aff "mupa" to "p" in isl format.
3135 * We currently only support an isl format.
3137 __isl_give isl_printer
*isl_printer_print_multi_union_pw_aff(
3138 __isl_take isl_printer
*p
, __isl_keep isl_multi_union_pw_aff
*mupa
)
3141 return isl_printer_free(p
);
3143 if (p
->output_format
== ISL_FORMAT_ISL
)
3144 return print_multi_union_pw_aff_isl(p
, mupa
);
3145 isl_die(isl_printer_get_ctx(p
), isl_error_unsupported
,
3146 "unsupported output format", return isl_printer_free(p
));