isl_ast_node_dup: preserve annotation
[isl.git] / isl_test.c
blob017fa3d143844853312b0578700e22bfdfc9bf0a
1 /*
2 * Copyright 2008-2009 Katholieke Universiteit Leuven
3 * Copyright 2010 INRIA Saclay
4 * Copyright 2012-2013 Ecole Normale Superieure
5 * Copyright 2014 INRIA Rocquencourt
7 * Use of this software is governed by the MIT license
9 * Written by Sven Verdoolaege, K.U.Leuven, Departement
10 * Computerwetenschappen, Celestijnenlaan 200A, B-3001 Leuven, Belgium
11 * and INRIA Saclay - Ile-de-France, Parc Club Orsay Universite,
12 * ZAC des vignes, 4 rue Jacques Monod, 91893 Orsay, France
13 * and Ecole Normale Superieure, 45 rue d’Ulm, 75230 Paris, France
14 * and Inria Paris - Rocquencourt, Domaine de Voluceau - Rocquencourt,
15 * B.P. 105 - 78153 Le Chesnay, France
18 #include <assert.h>
19 #include <stdio.h>
20 #include <limits.h>
21 #include <isl_ctx_private.h>
22 #include <isl_map_private.h>
23 #include <isl_aff_private.h>
24 #include <isl_space_private.h>
25 #include <isl/id.h>
26 #include <isl/set.h>
27 #include <isl/flow.h>
28 #include <isl_constraint_private.h>
29 #include <isl/polynomial.h>
30 #include <isl/union_set.h>
31 #include <isl/union_map.h>
32 #include <isl_factorization.h>
33 #include <isl/schedule.h>
34 #include <isl/schedule_node.h>
35 #include <isl_options_private.h>
36 #include <isl_vertices_private.h>
37 #include <isl/ast_build.h>
38 #include <isl/val.h>
39 #include <isl/ilp.h>
40 #include <isl_ast_build_expr.h>
41 #include <isl/options.h>
43 #include "isl_srcdir.c"
45 #define ARRAY_SIZE(array) (sizeof(array)/sizeof(*array))
47 static char *get_filename(isl_ctx *ctx, const char *name, const char *suffix) {
48 char *filename;
49 int length;
50 char *pattern = "%s/test_inputs/%s.%s";
52 length = strlen(pattern) - 6 + strlen(srcdir) + strlen(name)
53 + strlen(suffix) + 1;
54 filename = isl_alloc_array(ctx, char, length);
56 if (!filename)
57 return NULL;
59 sprintf(filename, pattern, srcdir, name, suffix);
61 return filename;
64 void test_parse_map(isl_ctx *ctx, const char *str)
66 isl_map *map;
68 map = isl_map_read_from_str(ctx, str);
69 assert(map);
70 isl_map_free(map);
73 int test_parse_map_equal(isl_ctx *ctx, const char *str, const char *str2)
75 isl_map *map, *map2;
76 int equal;
78 map = isl_map_read_from_str(ctx, str);
79 map2 = isl_map_read_from_str(ctx, str2);
80 equal = isl_map_is_equal(map, map2);
81 isl_map_free(map);
82 isl_map_free(map2);
84 if (equal < 0)
85 return -1;
86 if (!equal)
87 isl_die(ctx, isl_error_unknown, "maps not equal",
88 return -1);
90 return 0;
93 void test_parse_pwqp(isl_ctx *ctx, const char *str)
95 isl_pw_qpolynomial *pwqp;
97 pwqp = isl_pw_qpolynomial_read_from_str(ctx, str);
98 assert(pwqp);
99 isl_pw_qpolynomial_free(pwqp);
102 static void test_parse_pwaff(isl_ctx *ctx, const char *str)
104 isl_pw_aff *pwaff;
106 pwaff = isl_pw_aff_read_from_str(ctx, str);
107 assert(pwaff);
108 isl_pw_aff_free(pwaff);
111 /* Check that we can read an isl_multi_val from "str" without errors.
113 static int test_parse_multi_val(isl_ctx *ctx, const char *str)
115 isl_multi_val *mv;
117 mv = isl_multi_val_read_from_str(ctx, str);
118 isl_multi_val_free(mv);
120 return mv ? 0 : -1;
123 /* String descriptions of multi piecewise affine expressions
124 * that are used for testing printing and parsing.
126 static const char *reparse_multi_pw_aff_tests[] = {
127 "{ A[x, y] -> [] : x + y >= 0 }",
128 "{ A[x, y] -> B[] : x + y >= 0 }",
129 "{ A[x, y] -> [x] : x + y >= 0 }",
130 "[N] -> { A[x, y] -> [x] : x + y <= N }",
131 "{ A[x, y] -> [x, y] : x + y >= 0 }",
132 "{ A[x, y] -> [(x : x >= 0), (y : y >= 0)] : x + y >= 0 }",
133 "[N] -> { [] : N >= 0 }",
134 "[N] -> { [] : N >= 0 }",
135 "[N] -> { [N] : N >= 0 }",
136 "[N] -> { [N, N + 1] : N >= 0 }",
137 "[N, M] -> { [(N : N >= 0), (M : M >= 0)] : N + M >= 0 }",
138 "{ [a] -> [b = a] }",
139 "{ [a] -> [b = a] : a >= 0 }",
142 #undef BASE
143 #define BASE multi_pw_aff
145 #include "check_reparse_templ.c"
146 #include "check_reparse_test_templ.c"
148 /* String descriptions that cannot be parsed
149 * as multi piecewise affine expressions.
151 static const char *parse_multi_pw_aff_fail_tests[] = {
152 "{ [a] -> [b] : b = a }",
153 "{ [a] -> [b = a] : b >= 0 }",
156 #include "check_parse_fail_test_templ.c"
158 /* String descriptions of piecewise multi affine expressions
159 * that are used for testing printing and parsing.
161 static const char *reparse_pw_multi_aff_tests[] = {
162 "{ [x] -> [x] }",
163 "{ [x] -> [x % 4] }",
164 "{ [x] -> [x % 4] : x mod 3 = 1 }",
165 "{ [x, x] -> [x % 4] }",
166 "{ [x, x + 1] -> [x % 4] : x mod 3 = 1 }",
167 "{ [x, x mod 2] -> [x % 4] }",
170 #undef BASE
171 #define BASE pw_multi_aff
173 #include "check_reparse_templ.c"
174 #include "check_reparse_test_templ.c"
176 /* Test parsing of piecewise multi affine expressions by printing
177 * the expressions and checking that parsing the output results
178 * in the same expression.
179 * Do this for an expression converted from a map with an output
180 * dimension name that is equal to an automatically generated name, and
181 * a set of expressions parsed from strings.
183 static isl_stat test_parse_pma(isl_ctx *ctx)
185 isl_map *map;
186 isl_pw_multi_aff *pma;
188 map = isl_map_read_from_str(ctx, "{ [a, a] -> [i1 = a + 1] }");
189 pma = isl_pw_multi_aff_from_map(map);
190 if (check_reparse_pw_multi_aff(ctx, pma) < 0)
191 return isl_stat_error;
193 if (check_reparse_pw_multi_aff_tests(ctx) < 0)
194 return isl_stat_error;
196 return isl_stat_ok;
199 /* String descriptions that cannot be parsed
200 * as union piecewise multi affine expressions.
202 static const char *parse_union_pw_multi_aff_fail_tests[] = {
203 "{ [a] -> [b] : b = a }",
204 "{ [a] -> [b = a] : b >= 0 }",
207 #undef BASE
208 #define BASE union_pw_multi_aff
210 #include "check_parse_fail_test_templ.c"
212 /* Test parsing of union piecewise multi affine expressions.
214 * In particular, check some cases where parsing is supposed to fail.
216 static isl_stat test_parse_upma(isl_ctx *ctx)
218 if (check_parse_union_pw_multi_aff_fail_tests(ctx) < 0)
219 return isl_stat_error;
221 return isl_stat_ok;
224 /* Test parsing of multi piecewise affine expressions by printing
225 * the expressions and checking that parsing the output results
226 * in the same expression.
227 * Do this for a couple of manually constructed expressions,
228 * an expression converted from a map with an output dimension name
229 * that is equal to an automatically generated name, and
230 * a set of expressions parsed from strings.
232 * Additionally, check some cases where parsing is supposed to fail.
234 static int test_parse_mpa(isl_ctx *ctx)
236 isl_space *space;
237 isl_set *dom;
238 isl_map *map;
239 isl_pw_multi_aff *pma;
240 isl_multi_pw_aff *mpa;
241 isl_stat r;
243 space = isl_space_set_alloc(ctx, 0, 0);
244 space = isl_space_set_tuple_name(space, isl_dim_set, "A");
245 mpa = isl_multi_pw_aff_zero(space);
246 r = check_reparse_multi_pw_aff(ctx, mpa);
247 if (r < 0)
248 return -1;
250 space = isl_space_set_alloc(ctx, 1, 0);
251 space = isl_space_set_dim_name(space, isl_dim_param, 0, "N");
252 space = isl_space_set_tuple_name(space, isl_dim_set, "A");
253 dom = isl_set_universe(isl_space_params(isl_space_copy(space)));
254 dom = isl_set_lower_bound_si(dom, isl_dim_param, 0, 5);
255 mpa = isl_multi_pw_aff_zero(space);
256 mpa = isl_multi_pw_aff_intersect_domain(mpa, dom);
257 r = check_reparse_multi_pw_aff(ctx, mpa);
258 if (r < 0)
259 return -1;
261 map = isl_map_read_from_str(ctx, "{ [a, a] -> [i1 = a + 1] }");
262 pma = isl_pw_multi_aff_from_map(map);
263 mpa = isl_multi_pw_aff_from_pw_multi_aff(pma);
264 if (check_reparse_multi_pw_aff(ctx, mpa) < 0)
265 return -1;
267 if (check_reparse_multi_pw_aff_tests(ctx) < 0)
268 return -1;
269 if (check_parse_multi_pw_aff_fail_tests(ctx) < 0)
270 return -1;
272 return 0;
275 /* String descriptions of multi union piecewise affine expressions
276 * that are used for testing printing and parsing.
278 static const char *reparse_multi_union_pw_aff_tests[] = {
279 "[]",
280 "A[]",
281 "A[B[] -> C[]]",
282 "(A[] : { S[x] : x > 0; T[y] : y >= 0 })",
283 "(A[] : { })",
284 "[N] -> (A[] : { })",
285 "[N] -> (A[] : { : N >= 0 })",
286 "[N] -> (A[] : { S[x] : x > N; T[y] : y >= 0 })",
287 "(A[] : [N] -> { S[x] : x > N; T[y] : y >= 0 })",
288 "A[{ S[x] -> [x + 1]; T[x] -> [x] }]",
289 "(A[{ S[x] -> [x + 1]; T[x] -> [x] }] : "
290 "{ S[x] : x > 0; T[y] : y >= 0 })",
293 #undef BASE
294 #define BASE multi_union_pw_aff
296 #include "check_reparse_templ.c"
297 #include "check_reparse_test_templ.c"
299 /* Test parsing of multi union piecewise affine expressions by printing
300 * the expressions and checking that parsing the output results
301 * in the same expression.
302 * Do this for a couple of manually constructed expressions and
303 * a set of expressions parsed from strings.
305 static int test_parse_mupa(isl_ctx *ctx)
307 isl_space *space;
308 isl_multi_union_pw_aff *mupa;
309 isl_set *dom;
310 isl_union_set *uset;
311 isl_stat r;
313 space = isl_space_set_alloc(ctx, 0, 0);
314 space = isl_space_set_tuple_name(space, isl_dim_set, "A");
315 mupa = isl_multi_union_pw_aff_zero(space);
316 r = check_reparse_multi_union_pw_aff(ctx, mupa);
317 if (r < 0)
318 return -1;
320 space = isl_space_set_alloc(ctx, 1, 0);
321 space = isl_space_set_dim_name(space, isl_dim_param, 0, "N");
322 space = isl_space_set_tuple_name(space, isl_dim_set, "A");
323 dom = isl_set_universe(space);
324 dom = isl_set_lower_bound_si(dom, isl_dim_param, 0, 5);
325 uset = isl_union_set_from_set(dom);
326 space = isl_space_set_alloc(ctx, 1, 0);
327 space = isl_space_set_dim_name(space, isl_dim_param, 0, "N");
328 space = isl_space_set_tuple_name(space, isl_dim_set, "B");
329 mupa = isl_multi_union_pw_aff_zero(space);
330 mupa = isl_multi_union_pw_aff_intersect_domain(mupa, uset);
331 r = check_reparse_multi_union_pw_aff(ctx, mupa);
332 if (r < 0)
333 return -1;
335 if (check_reparse_multi_union_pw_aff_tests(ctx) < 0)
336 return -1;
338 return 0;
341 /* Test parsing of multi expressions.
343 static int test_parse_multi(isl_ctx *ctx)
345 if (test_parse_mpa(ctx) < 0)
346 return -1;
347 if (test_parse_mupa(ctx) < 0)
348 return -1;
350 return 0;
353 /* Pairs of binary relation representations that should represent
354 * the same binary relations.
356 struct {
357 const char *map1;
358 const char *map2;
359 } parse_map_equal_tests[] = {
360 { "{ [x,y] : [([x/2]+y)/3] >= 1 }",
361 "{ [x, y] : 2y >= 6 - x }" },
362 { "{ [x,y] : x <= min(y, 2*y+3) }",
363 "{ [x,y] : x <= y, 2*y + 3 }" },
364 { "{ [x,y] : x >= min(y, 2*y+3) }",
365 "{ [x, y] : (y <= x and y >= -3) or (2y <= -3 + x and y <= -4) }" },
366 { "[n] -> { [c1] : c1>=0 and c1<=floord(n-4,3) }",
367 "[n] -> { [c1] : c1 >= 0 and 3c1 <= -4 + n }" },
368 { "{ [i,j] -> [i] : i < j; [i,j] -> [j] : j <= i }",
369 "{ [i,j] -> [min(i,j)] }" },
370 { "{ [i,j] : i != j }",
371 "{ [i,j] : i < j or i > j }" },
372 { "{ [i,j] : (i+1)*2 >= j }",
373 "{ [i, j] : j <= 2 + 2i }" },
374 { "{ [i] -> [i > 0 ? 4 : 5] }",
375 "{ [i] -> [5] : i <= 0; [i] -> [4] : i >= 1 }" },
376 { "[N=2,M] -> { [i=[(M+N)/4]] }",
377 "[N, M] -> { [i] : N = 2 and 4i <= 2 + M and 4i >= -1 + M }" },
378 { "{ [x] : x >= 0 }",
379 "{ [x] : x-0 >= 0 }" },
380 { "{ [i] : ((i > 10)) }",
381 "{ [i] : i >= 11 }" },
382 { "{ [i] -> [0] }",
383 "{ [i] -> [0 * i] }" },
384 { "{ [a] -> [b] : (not false) }",
385 "{ [a] -> [b] : true }" },
386 { "{ [i] : i/2 <= 5 }",
387 "{ [i] : i <= 10 }" },
388 { "{Sym=[n] [i] : i <= n }",
389 "[n] -> { [i] : i <= n }" },
390 { "{ [*] }",
391 "{ [a] }" },
392 { "{ [i] : 2*floor(i/2) = i }",
393 "{ [i] : exists a : i = 2 a }" },
394 { "{ [a] -> [b] : a = 5 implies b = 5 }",
395 "{ [a] -> [b] : a != 5 or b = 5 }" },
396 { "{ [a] -> [a - 1 : a > 0] }",
397 "{ [a] -> [a - 1] : a > 0 }" },
398 { "{ [a] -> [a - 1 : a > 0; a : a <= 0] }",
399 "{ [a] -> [a - 1] : a > 0; [a] -> [a] : a <= 0 }" },
400 { "{ [a] -> [(a) * 2 : a >= 0; 0 : a < 0] }",
401 "{ [a] -> [2a] : a >= 0; [a] -> [0] : a < 0 }" },
402 { "{ [a] -> [(a * 2) : a >= 0; 0 : a < 0] }",
403 "{ [a] -> [2a] : a >= 0; [a] -> [0] : a < 0 }" },
404 { "{ [a] -> [(a * 2 : a >= 0); 0 : a < 0] }",
405 "{ [a] -> [2a] : a >= 0; [a] -> [0] : a < 0 }" },
406 { "{ [a] -> [(a * 2 : a >= 0; 0 : a < 0)] }",
407 "{ [a] -> [2a] : a >= 0; [a] -> [0] : a < 0 }" },
408 { "{ [a,b] -> [i,j] : a,b << i,j }",
409 "{ [a,b] -> [i,j] : a < i or (a = i and b < j) }" },
410 { "{ [a,b] -> [i,j] : a,b <<= i,j }",
411 "{ [a,b] -> [i,j] : a < i or (a = i and b <= j) }" },
412 { "{ [a,b] -> [i,j] : a,b >> i,j }",
413 "{ [a,b] -> [i,j] : a > i or (a = i and b > j) }" },
414 { "{ [a,b] -> [i,j] : a,b >>= i,j }",
415 "{ [a,b] -> [i,j] : a > i or (a = i and b >= j) }" },
416 { "{ [n] -> [i] : exists (a, b, c: 8b <= i - 32a and "
417 "8b >= -7 + i - 32 a and b >= 0 and b <= 3 and "
418 "8c < n - 32a and i < n and c >= 0 and "
419 "c <= 3 and c >= -4a) }",
420 "{ [n] -> [i] : 0 <= i < n }" },
421 { "{ [x] -> [] : exists (a, b: 0 <= a <= 1 and 0 <= b <= 3 and "
422 "2b <= x - 8a and 2b >= -1 + x - 8a) }",
423 "{ [x] -> [] : 0 <= x <= 15 }" },
424 { "{ [x] -> [x] : }",
425 "{ [x] -> [x] }" },
426 { "{ [x=4:5] -> [x + 1] }",
427 "{ [x] -> [x + 1] : 4 <= x <= 5 }" },
428 { "{ [x=4:5] -> [x + 1 : x + 1] }",
429 "{ [x=4:5] -> [x + 1] }" },
430 { "{ [x] -> [x - 1 : x + 1] }",
431 "{ [x] -> [y] : x - 1 <= y <= x + 1 }" },
432 { "{ [x=4:] -> [x + 1] }",
433 "{ [x] -> [x + 1] : 4 <= x }" },
434 { "{ [x=:5] -> [x + 1] }",
435 "{ [x] -> [x + 1] : x <= 5 }" },
436 { "{ [x=:] -> [x + 1] }",
437 "{ [x] -> [x + 1] }" },
438 { "{ [:] -> [:] }",
439 "{ [x] -> [y] }" },
440 { "{ [x, x//4] }",
441 "{ [x, floor(x/4)] }" },
442 { "{ [10//4] }",
443 "{ [2] }" },
446 int test_parse(struct isl_ctx *ctx)
448 int i;
449 isl_map *map, *map2;
450 const char *str, *str2;
452 if (test_parse_multi_val(ctx, "{ A[B[2] -> C[5, 7]] }") < 0)
453 return -1;
454 if (test_parse_multi_val(ctx, "[n] -> { [2] }") < 0)
455 return -1;
456 if (test_parse_multi_val(ctx, "{ A[4, infty, NaN, -1/2, 2/3] }") < 0)
457 return -1;
458 if (test_parse_multi(ctx) < 0)
459 return -1;
460 if (test_parse_pma(ctx) < 0)
461 return -1;
462 if (test_parse_upma(ctx) < 0)
463 return -1;
465 str = "{ [i] -> [-i] }";
466 map = isl_map_read_from_str(ctx, str);
467 assert(map);
468 isl_map_free(map);
470 str = "{ A[i] -> L[([i/3])] }";
471 map = isl_map_read_from_str(ctx, str);
472 assert(map);
473 isl_map_free(map);
475 test_parse_map(ctx, "{[[s] -> A[i]] -> [[s+1] -> A[i]]}");
476 test_parse_map(ctx, "{ [p1, y1, y2] -> [2, y1, y2] : "
477 "p1 = 1 && (y1 <= y2 || y2 = 0) }");
479 for (i = 0; i < ARRAY_SIZE(parse_map_equal_tests); ++i) {
480 str = parse_map_equal_tests[i].map1;
481 str2 = parse_map_equal_tests[i].map2;
482 if (test_parse_map_equal(ctx, str, str2) < 0)
483 return -1;
486 str = "{[new,old] -> [new+1-2*[(new+1)/2],old+1-2*[(old+1)/2]]}";
487 map = isl_map_read_from_str(ctx, str);
488 str = "{ [new, old] -> [o0, o1] : "
489 "exists (e0 = [(-1 - new + o0)/2], e1 = [(-1 - old + o1)/2]: "
490 "2e0 = -1 - new + o0 and 2e1 = -1 - old + o1 and o0 >= 0 and "
491 "o0 <= 1 and o1 >= 0 and o1 <= 1) }";
492 map2 = isl_map_read_from_str(ctx, str);
493 assert(isl_map_is_equal(map, map2));
494 isl_map_free(map);
495 isl_map_free(map2);
497 str = "{[new,old] -> [new+1-2*[(new+1)/2],old+1-2*[(old+1)/2]]}";
498 map = isl_map_read_from_str(ctx, str);
499 str = "{[new,old] -> [(new+1)%2,(old+1)%2]}";
500 map2 = isl_map_read_from_str(ctx, str);
501 assert(isl_map_is_equal(map, map2));
502 isl_map_free(map);
503 isl_map_free(map2);
505 test_parse_pwqp(ctx, "{ [i] -> i + [ (i + [i/3])/2 ] }");
506 test_parse_map(ctx, "{ S1[i] -> [([i/10]),i%10] : 0 <= i <= 45 }");
507 test_parse_pwaff(ctx, "{ [i] -> [i + 1] : i > 0; [a] -> [a] : a < 0 }");
508 test_parse_pwqp(ctx, "{ [x] -> ([(x)/2] * [(x)/3]) }");
509 test_parse_pwaff(ctx, "{ [] -> [(100)] }");
511 return 0;
514 static int test_read(isl_ctx *ctx)
516 char *filename;
517 FILE *input;
518 isl_basic_set *bset1, *bset2;
519 const char *str = "{[y]: Exists ( alpha : 2alpha = y)}";
520 int equal;
522 filename = get_filename(ctx, "set", "omega");
523 assert(filename);
524 input = fopen(filename, "r");
525 assert(input);
527 bset1 = isl_basic_set_read_from_file(ctx, input);
528 bset2 = isl_basic_set_read_from_str(ctx, str);
530 equal = isl_basic_set_is_equal(bset1, bset2);
532 isl_basic_set_free(bset1);
533 isl_basic_set_free(bset2);
534 free(filename);
536 fclose(input);
538 if (equal < 0)
539 return -1;
540 if (!equal)
541 isl_die(ctx, isl_error_unknown,
542 "read sets not equal", return -1);
544 return 0;
547 static int test_bounded(isl_ctx *ctx)
549 isl_set *set;
550 isl_bool bounded;
552 set = isl_set_read_from_str(ctx, "[n] -> {[i] : 0 <= i <= n }");
553 bounded = isl_set_is_bounded(set);
554 isl_set_free(set);
556 if (bounded < 0)
557 return -1;
558 if (!bounded)
559 isl_die(ctx, isl_error_unknown,
560 "set not considered bounded", return -1);
562 set = isl_set_read_from_str(ctx, "{[n, i] : 0 <= i <= n }");
563 bounded = isl_set_is_bounded(set);
564 assert(!bounded);
565 isl_set_free(set);
567 if (bounded < 0)
568 return -1;
569 if (bounded)
570 isl_die(ctx, isl_error_unknown,
571 "set considered bounded", return -1);
573 set = isl_set_read_from_str(ctx, "[n] -> {[i] : i <= n }");
574 bounded = isl_set_is_bounded(set);
575 isl_set_free(set);
577 if (bounded < 0)
578 return -1;
579 if (bounded)
580 isl_die(ctx, isl_error_unknown,
581 "set considered bounded", return -1);
583 return 0;
586 /* Construct the basic set { [i] : 5 <= i <= N } */
587 static int test_construction_1(isl_ctx *ctx)
589 isl_space *space;
590 isl_local_space *ls;
591 isl_basic_set *bset;
592 isl_constraint *c;
594 space = isl_space_set_alloc(ctx, 1, 1);
595 bset = isl_basic_set_universe(isl_space_copy(space));
596 ls = isl_local_space_from_space(space);
598 c = isl_constraint_alloc_inequality(isl_local_space_copy(ls));
599 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, -1);
600 c = isl_constraint_set_coefficient_si(c, isl_dim_param, 0, 1);
601 bset = isl_basic_set_add_constraint(bset, c);
603 c = isl_constraint_alloc_inequality(isl_local_space_copy(ls));
604 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, 1);
605 c = isl_constraint_set_constant_si(c, -5);
606 bset = isl_basic_set_add_constraint(bset, c);
608 isl_local_space_free(ls);
609 isl_basic_set_free(bset);
611 return 0;
614 /* Construct the basic set { [x] : -100 <= x <= 100 }
615 * using isl_basic_set_{lower,upper}_bound_val and
616 * check that it is equal the same basic set parsed from a string.
618 static int test_construction_2(isl_ctx *ctx)
620 isl_bool equal;
621 isl_val *v;
622 isl_space *space;
623 isl_basic_set *bset1, *bset2;
625 v = isl_val_int_from_si(ctx, 100);
626 space = isl_space_set_alloc(ctx, 0, 1);
627 bset1 = isl_basic_set_universe(space);
628 bset1 = isl_basic_set_upper_bound_val(bset1, isl_dim_set, 0,
629 isl_val_copy(v));
630 bset1 = isl_basic_set_lower_bound_val(bset1, isl_dim_set, 0,
631 isl_val_neg(v));
632 bset2 = isl_basic_set_read_from_str(ctx, "{ [x] : -100 <= x <= 100 }");
633 equal = isl_basic_set_is_equal(bset1, bset2);
634 isl_basic_set_free(bset1);
635 isl_basic_set_free(bset2);
637 if (equal < 0)
638 return -1;
639 if (!equal)
640 isl_die(ctx, isl_error_unknown,
641 "failed construction", return -1);
643 return 0;
646 /* Basic tests for constructing basic sets.
648 static int test_construction(isl_ctx *ctx)
650 if (test_construction_1(ctx) < 0)
651 return -1;
652 if (test_construction_2(ctx) < 0)
653 return -1;
654 return 0;
657 static int test_dim(isl_ctx *ctx)
659 const char *str;
660 isl_map *map1, *map2;
661 int equal;
663 map1 = isl_map_read_from_str(ctx,
664 "[n] -> { [i] -> [j] : exists (a = [i/10] : i - 10a <= n ) }");
665 map1 = isl_map_add_dims(map1, isl_dim_in, 1);
666 map2 = isl_map_read_from_str(ctx,
667 "[n] -> { [i,k] -> [j] : exists (a = [i/10] : i - 10a <= n ) }");
668 equal = isl_map_is_equal(map1, map2);
669 isl_map_free(map2);
671 map1 = isl_map_project_out(map1, isl_dim_in, 0, 1);
672 map2 = isl_map_read_from_str(ctx, "[n] -> { [i] -> [j] : n >= 0 }");
673 if (equal >= 0 && equal)
674 equal = isl_map_is_equal(map1, map2);
676 isl_map_free(map1);
677 isl_map_free(map2);
679 if (equal < 0)
680 return -1;
681 if (!equal)
682 isl_die(ctx, isl_error_unknown,
683 "unexpected result", return -1);
685 str = "[n] -> { [i] -> [] : exists a : 0 <= i <= n and i = 2 a }";
686 map1 = isl_map_read_from_str(ctx, str);
687 str = "{ [i] -> [j] : exists a : 0 <= i <= j and i = 2 a }";
688 map2 = isl_map_read_from_str(ctx, str);
689 map1 = isl_map_move_dims(map1, isl_dim_out, 0, isl_dim_param, 0, 1);
690 equal = isl_map_is_equal(map1, map2);
691 isl_map_free(map1);
692 isl_map_free(map2);
694 if (equal < 0)
695 return -1;
696 if (!equal)
697 isl_die(ctx, isl_error_unknown,
698 "unexpected result", return -1);
700 return 0;
703 #undef BASE
704 #define BASE multi_val
705 #include "isl_test_plain_equal_templ.c"
707 #undef BASE
708 #define BASE multi_aff
709 #include "isl_test_plain_equal_templ.c"
711 /* Check that "val" is equal to the value described by "str".
712 * If "str" is "NaN", then check for a NaN value explicitly.
714 static isl_stat val_check_equal(__isl_keep isl_val *val, const char *str)
716 isl_bool ok, is_nan;
717 isl_ctx *ctx;
718 isl_val *res;
720 if (!val)
721 return isl_stat_error;
723 ctx = isl_val_get_ctx(val);
724 res = isl_val_read_from_str(ctx, str);
725 is_nan = isl_val_is_nan(res);
726 if (is_nan < 0)
727 ok = isl_bool_error;
728 else if (is_nan)
729 ok = isl_val_is_nan(val);
730 else
731 ok = isl_val_eq(val, res);
732 isl_val_free(res);
733 if (ok < 0)
734 return isl_stat_error;
735 if (!ok)
736 isl_die(ctx, isl_error_unknown,
737 "unexpected result", return isl_stat_error);
738 return isl_stat_ok;
741 struct {
742 __isl_give isl_val *(*op)(__isl_take isl_val *v);
743 const char *arg;
744 const char *res;
745 } val_un_tests[] = {
746 { &isl_val_neg, "0", "0" },
747 { &isl_val_abs, "0", "0" },
748 { &isl_val_pow2, "0", "1" },
749 { &isl_val_floor, "0", "0" },
750 { &isl_val_ceil, "0", "0" },
751 { &isl_val_neg, "1", "-1" },
752 { &isl_val_neg, "-1", "1" },
753 { &isl_val_neg, "1/2", "-1/2" },
754 { &isl_val_neg, "-1/2", "1/2" },
755 { &isl_val_neg, "infty", "-infty" },
756 { &isl_val_neg, "-infty", "infty" },
757 { &isl_val_neg, "NaN", "NaN" },
758 { &isl_val_abs, "1", "1" },
759 { &isl_val_abs, "-1", "1" },
760 { &isl_val_abs, "1/2", "1/2" },
761 { &isl_val_abs, "-1/2", "1/2" },
762 { &isl_val_abs, "infty", "infty" },
763 { &isl_val_abs, "-infty", "infty" },
764 { &isl_val_abs, "NaN", "NaN" },
765 { &isl_val_floor, "1", "1" },
766 { &isl_val_floor, "-1", "-1" },
767 { &isl_val_floor, "1/2", "0" },
768 { &isl_val_floor, "-1/2", "-1" },
769 { &isl_val_floor, "infty", "infty" },
770 { &isl_val_floor, "-infty", "-infty" },
771 { &isl_val_floor, "NaN", "NaN" },
772 { &isl_val_ceil, "1", "1" },
773 { &isl_val_ceil, "-1", "-1" },
774 { &isl_val_ceil, "1/2", "1" },
775 { &isl_val_ceil, "-1/2", "0" },
776 { &isl_val_ceil, "infty", "infty" },
777 { &isl_val_ceil, "-infty", "-infty" },
778 { &isl_val_ceil, "NaN", "NaN" },
779 { &isl_val_pow2, "-3", "1/8" },
780 { &isl_val_pow2, "-1", "1/2" },
781 { &isl_val_pow2, "1", "2" },
782 { &isl_val_pow2, "2", "4" },
783 { &isl_val_pow2, "3", "8" },
784 { &isl_val_inv, "1", "1" },
785 { &isl_val_inv, "2", "1/2" },
786 { &isl_val_inv, "1/2", "2" },
787 { &isl_val_inv, "-2", "-1/2" },
788 { &isl_val_inv, "-1/2", "-2" },
789 { &isl_val_inv, "0", "NaN" },
790 { &isl_val_inv, "NaN", "NaN" },
791 { &isl_val_inv, "infty", "0" },
792 { &isl_val_inv, "-infty", "0" },
795 /* Perform some basic tests of unary operations on isl_val objects.
797 static int test_un_val(isl_ctx *ctx)
799 int i;
800 isl_val *v;
801 __isl_give isl_val *(*fn)(__isl_take isl_val *v);
803 for (i = 0; i < ARRAY_SIZE(val_un_tests); ++i) {
804 isl_stat r;
806 v = isl_val_read_from_str(ctx, val_un_tests[i].arg);
807 fn = val_un_tests[i].op;
808 v = fn(v);
809 r = val_check_equal(v, val_un_tests[i].res);
810 isl_val_free(v);
811 if (r < 0)
812 return -1;
815 return 0;
818 struct {
819 __isl_give isl_val *(*fn)(__isl_take isl_val *v1,
820 __isl_take isl_val *v2);
821 } val_bin_op[] = {
822 ['+'] = { &isl_val_add },
823 ['-'] = { &isl_val_sub },
824 ['*'] = { &isl_val_mul },
825 ['/'] = { &isl_val_div },
826 ['g'] = { &isl_val_gcd },
827 ['m'] = { &isl_val_min },
828 ['M'] = { &isl_val_max },
831 struct {
832 const char *arg1;
833 unsigned char op;
834 const char *arg2;
835 const char *res;
836 } val_bin_tests[] = {
837 { "0", '+', "0", "0" },
838 { "1", '+', "0", "1" },
839 { "1", '+', "1", "2" },
840 { "1", '-', "1", "0" },
841 { "1", '*', "1", "1" },
842 { "1", '/', "1", "1" },
843 { "2", '*', "3", "6" },
844 { "2", '*', "1/2", "1" },
845 { "2", '*', "1/3", "2/3" },
846 { "2/3", '*', "3/5", "2/5" },
847 { "2/3", '*', "7/5", "14/15" },
848 { "2", '/', "1/2", "4" },
849 { "-2", '/', "-1/2", "4" },
850 { "-2", '/', "1/2", "-4" },
851 { "2", '/', "-1/2", "-4" },
852 { "2", '/', "2", "1" },
853 { "2", '/', "3", "2/3" },
854 { "2/3", '/', "5/3", "2/5" },
855 { "2/3", '/', "5/7", "14/15" },
856 { "0", '/', "0", "NaN" },
857 { "42", '/', "0", "NaN" },
858 { "-42", '/', "0", "NaN" },
859 { "infty", '/', "0", "NaN" },
860 { "-infty", '/', "0", "NaN" },
861 { "NaN", '/', "0", "NaN" },
862 { "0", '/', "NaN", "NaN" },
863 { "42", '/', "NaN", "NaN" },
864 { "-42", '/', "NaN", "NaN" },
865 { "infty", '/', "NaN", "NaN" },
866 { "-infty", '/', "NaN", "NaN" },
867 { "NaN", '/', "NaN", "NaN" },
868 { "0", '/', "infty", "0" },
869 { "42", '/', "infty", "0" },
870 { "-42", '/', "infty", "0" },
871 { "infty", '/', "infty", "NaN" },
872 { "-infty", '/', "infty", "NaN" },
873 { "NaN", '/', "infty", "NaN" },
874 { "0", '/', "-infty", "0" },
875 { "42", '/', "-infty", "0" },
876 { "-42", '/', "-infty", "0" },
877 { "infty", '/', "-infty", "NaN" },
878 { "-infty", '/', "-infty", "NaN" },
879 { "NaN", '/', "-infty", "NaN" },
880 { "1", '-', "1/3", "2/3" },
881 { "1/3", '+', "1/2", "5/6" },
882 { "1/2", '+', "1/2", "1" },
883 { "3/4", '-', "1/4", "1/2" },
884 { "1/2", '-', "1/3", "1/6" },
885 { "infty", '+', "42", "infty" },
886 { "infty", '+', "infty", "infty" },
887 { "42", '+', "infty", "infty" },
888 { "infty", '-', "infty", "NaN" },
889 { "infty", '*', "infty", "infty" },
890 { "infty", '*', "-infty", "-infty" },
891 { "-infty", '*', "infty", "-infty" },
892 { "-infty", '*', "-infty", "infty" },
893 { "0", '*', "infty", "NaN" },
894 { "1", '*', "infty", "infty" },
895 { "infty", '*', "0", "NaN" },
896 { "infty", '*', "42", "infty" },
897 { "42", '-', "infty", "-infty" },
898 { "infty", '+', "-infty", "NaN" },
899 { "4", 'g', "6", "2" },
900 { "5", 'g', "6", "1" },
901 { "42", 'm', "3", "3" },
902 { "42", 'M', "3", "42" },
903 { "3", 'm', "42", "3" },
904 { "3", 'M', "42", "42" },
905 { "42", 'm', "infty", "42" },
906 { "42", 'M', "infty", "infty" },
907 { "42", 'm', "-infty", "-infty" },
908 { "42", 'M', "-infty", "42" },
909 { "42", 'm', "NaN", "NaN" },
910 { "42", 'M', "NaN", "NaN" },
911 { "infty", 'm', "-infty", "-infty" },
912 { "infty", 'M', "-infty", "infty" },
915 /* Perform some basic tests of binary operations on isl_val objects.
917 static int test_bin_val(isl_ctx *ctx)
919 int i;
920 isl_val *v1, *v2, *res;
921 __isl_give isl_val *(*fn)(__isl_take isl_val *v1,
922 __isl_take isl_val *v2);
923 int ok;
925 for (i = 0; i < ARRAY_SIZE(val_bin_tests); ++i) {
926 v1 = isl_val_read_from_str(ctx, val_bin_tests[i].arg1);
927 v2 = isl_val_read_from_str(ctx, val_bin_tests[i].arg2);
928 res = isl_val_read_from_str(ctx, val_bin_tests[i].res);
929 fn = val_bin_op[val_bin_tests[i].op].fn;
930 v1 = fn(v1, v2);
931 if (isl_val_is_nan(res))
932 ok = isl_val_is_nan(v1);
933 else
934 ok = isl_val_eq(v1, res);
935 isl_val_free(v1);
936 isl_val_free(res);
937 if (ok < 0)
938 return -1;
939 if (!ok)
940 isl_die(ctx, isl_error_unknown,
941 "unexpected result", return -1);
944 return 0;
947 /* Perform some basic tests on isl_val objects.
949 static int test_val(isl_ctx *ctx)
951 if (test_un_val(ctx) < 0)
952 return -1;
953 if (test_bin_val(ctx) < 0)
954 return -1;
955 return 0;
958 /* Sets described using existentially quantified variables that
959 * can also be described without.
961 static const char *elimination_tests[] = {
962 "{ [i,j] : 2 * [i/2] + 3 * [j/4] <= 10 and 2 i = j }",
963 "{ [m, w] : exists a : w - 2m - 5 <= 3a <= m - 2w }",
964 "{ [m, w] : exists a : w >= 0 and a < m and -1 + w <= a <= 2m - w }",
967 /* Check that redundant existentially quantified variables are
968 * getting removed.
970 static int test_elimination(isl_ctx *ctx)
972 int i;
973 isl_size n;
974 isl_basic_set *bset;
976 for (i = 0; i < ARRAY_SIZE(elimination_tests); ++i) {
977 bset = isl_basic_set_read_from_str(ctx, elimination_tests[i]);
978 n = isl_basic_set_dim(bset, isl_dim_div);
979 isl_basic_set_free(bset);
980 if (n < 0)
981 return -1;
982 if (n != 0)
983 isl_die(ctx, isl_error_unknown,
984 "expecting no existentials", return -1);
987 return 0;
990 static int test_div(isl_ctx *ctx)
992 const char *str;
993 int empty;
994 isl_space *space;
995 isl_set *set;
996 isl_local_space *ls;
997 struct isl_basic_set *bset;
998 struct isl_constraint *c;
1000 /* test 1 */
1001 space = isl_space_set_alloc(ctx, 0, 3);
1002 bset = isl_basic_set_universe(isl_space_copy(space));
1003 ls = isl_local_space_from_space(space);
1005 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1006 c = isl_constraint_set_constant_si(c, -1);
1007 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, 1);
1008 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 1, 3);
1009 bset = isl_basic_set_add_constraint(bset, c);
1011 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1012 c = isl_constraint_set_constant_si(c, 1);
1013 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, -1);
1014 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 2, 3);
1015 bset = isl_basic_set_add_constraint(bset, c);
1017 bset = isl_basic_set_project_out(bset, isl_dim_set, 1, 2);
1019 assert(bset && bset->n_div == 1);
1020 isl_local_space_free(ls);
1021 isl_basic_set_free(bset);
1023 /* test 2 */
1024 space = isl_space_set_alloc(ctx, 0, 3);
1025 bset = isl_basic_set_universe(isl_space_copy(space));
1026 ls = isl_local_space_from_space(space);
1028 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1029 c = isl_constraint_set_constant_si(c, 1);
1030 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, -1);
1031 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 1, 3);
1032 bset = isl_basic_set_add_constraint(bset, c);
1034 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1035 c = isl_constraint_set_constant_si(c, -1);
1036 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, 1);
1037 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 2, 3);
1038 bset = isl_basic_set_add_constraint(bset, c);
1040 bset = isl_basic_set_project_out(bset, isl_dim_set, 1, 2);
1042 assert(bset && bset->n_div == 1);
1043 isl_local_space_free(ls);
1044 isl_basic_set_free(bset);
1046 /* test 3 */
1047 space = isl_space_set_alloc(ctx, 0, 3);
1048 bset = isl_basic_set_universe(isl_space_copy(space));
1049 ls = isl_local_space_from_space(space);
1051 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1052 c = isl_constraint_set_constant_si(c, 1);
1053 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, -1);
1054 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 1, 3);
1055 bset = isl_basic_set_add_constraint(bset, c);
1057 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1058 c = isl_constraint_set_constant_si(c, -3);
1059 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, 1);
1060 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 2, 4);
1061 bset = isl_basic_set_add_constraint(bset, c);
1063 bset = isl_basic_set_project_out(bset, isl_dim_set, 1, 2);
1065 assert(bset && bset->n_div == 1);
1066 isl_local_space_free(ls);
1067 isl_basic_set_free(bset);
1069 /* test 4 */
1070 space = isl_space_set_alloc(ctx, 0, 3);
1071 bset = isl_basic_set_universe(isl_space_copy(space));
1072 ls = isl_local_space_from_space(space);
1074 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1075 c = isl_constraint_set_constant_si(c, 2);
1076 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, -1);
1077 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 1, 3);
1078 bset = isl_basic_set_add_constraint(bset, c);
1080 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1081 c = isl_constraint_set_constant_si(c, -1);
1082 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, 1);
1083 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 2, 6);
1084 bset = isl_basic_set_add_constraint(bset, c);
1086 bset = isl_basic_set_project_out(bset, isl_dim_set, 1, 2);
1088 assert(isl_basic_set_is_empty(bset));
1089 isl_local_space_free(ls);
1090 isl_basic_set_free(bset);
1092 /* test 5 */
1093 space = isl_space_set_alloc(ctx, 0, 3);
1094 bset = isl_basic_set_universe(isl_space_copy(space));
1095 ls = isl_local_space_from_space(space);
1097 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1098 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, -1);
1099 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 2, 3);
1100 bset = isl_basic_set_add_constraint(bset, c);
1102 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1103 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, 1);
1104 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 1, -3);
1105 bset = isl_basic_set_add_constraint(bset, c);
1107 bset = isl_basic_set_project_out(bset, isl_dim_set, 2, 1);
1109 assert(bset && bset->n_div == 0);
1110 isl_basic_set_free(bset);
1111 isl_local_space_free(ls);
1113 /* test 6 */
1114 space = isl_space_set_alloc(ctx, 0, 3);
1115 bset = isl_basic_set_universe(isl_space_copy(space));
1116 ls = isl_local_space_from_space(space);
1118 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1119 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, -1);
1120 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 2, 6);
1121 bset = isl_basic_set_add_constraint(bset, c);
1123 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1124 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, 1);
1125 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 1, -3);
1126 bset = isl_basic_set_add_constraint(bset, c);
1128 bset = isl_basic_set_project_out(bset, isl_dim_set, 2, 1);
1130 assert(bset && bset->n_div == 1);
1131 isl_basic_set_free(bset);
1132 isl_local_space_free(ls);
1134 /* test 7 */
1135 /* This test is a bit tricky. We set up an equality
1136 * a + 3b + 3c = 6 e0
1137 * Normalization of divs creates _two_ divs
1138 * a = 3 e0
1139 * c - b - e0 = 2 e1
1140 * Afterwards e0 is removed again because it has coefficient -1
1141 * and we end up with the original equality and div again.
1142 * Perhaps we can avoid the introduction of this temporary div.
1144 space = isl_space_set_alloc(ctx, 0, 4);
1145 bset = isl_basic_set_universe(isl_space_copy(space));
1146 ls = isl_local_space_from_space(space);
1148 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1149 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, -1);
1150 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 1, -3);
1151 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 2, -3);
1152 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 3, 6);
1153 bset = isl_basic_set_add_constraint(bset, c);
1155 bset = isl_basic_set_project_out(bset, isl_dim_set, 3, 1);
1157 /* Test disabled for now */
1159 assert(bset && bset->n_div == 1);
1161 isl_local_space_free(ls);
1162 isl_basic_set_free(bset);
1164 /* test 8 */
1165 space = isl_space_set_alloc(ctx, 0, 5);
1166 bset = isl_basic_set_universe(isl_space_copy(space));
1167 ls = isl_local_space_from_space(space);
1169 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1170 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, -1);
1171 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 1, -3);
1172 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 3, -3);
1173 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 4, 6);
1174 bset = isl_basic_set_add_constraint(bset, c);
1176 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1177 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, -1);
1178 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 2, 1);
1179 c = isl_constraint_set_constant_si(c, 1);
1180 bset = isl_basic_set_add_constraint(bset, c);
1182 bset = isl_basic_set_project_out(bset, isl_dim_set, 4, 1);
1184 /* Test disabled for now */
1186 assert(bset && bset->n_div == 1);
1188 isl_local_space_free(ls);
1189 isl_basic_set_free(bset);
1191 /* test 9 */
1192 space = isl_space_set_alloc(ctx, 0, 4);
1193 bset = isl_basic_set_universe(isl_space_copy(space));
1194 ls = isl_local_space_from_space(space);
1196 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1197 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, 1);
1198 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 1, -1);
1199 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 2, -2);
1200 bset = isl_basic_set_add_constraint(bset, c);
1202 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1203 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, -1);
1204 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 3, 3);
1205 c = isl_constraint_set_constant_si(c, 2);
1206 bset = isl_basic_set_add_constraint(bset, c);
1208 bset = isl_basic_set_project_out(bset, isl_dim_set, 2, 2);
1210 bset = isl_basic_set_fix_si(bset, isl_dim_set, 0, 2);
1212 assert(!isl_basic_set_is_empty(bset));
1214 isl_local_space_free(ls);
1215 isl_basic_set_free(bset);
1217 /* test 10 */
1218 space = isl_space_set_alloc(ctx, 0, 3);
1219 bset = isl_basic_set_universe(isl_space_copy(space));
1220 ls = isl_local_space_from_space(space);
1222 c = isl_constraint_alloc_equality(isl_local_space_copy(ls));
1223 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 0, 1);
1224 c = isl_constraint_set_coefficient_si(c, isl_dim_set, 2, -2);
1225 bset = isl_basic_set_add_constraint(bset, c);
1227 bset = isl_basic_set_project_out(bset, isl_dim_set, 2, 1);
1229 bset = isl_basic_set_fix_si(bset, isl_dim_set, 0, 2);
1231 isl_local_space_free(ls);
1232 isl_basic_set_free(bset);
1234 str = "{ [i] : exists (e0, e1: 3e1 >= 1 + 2e0 and "
1235 "8e1 <= -1 + 5i - 5e0 and 2e1 >= 1 + 2i - 5e0) }";
1236 set = isl_set_read_from_str(ctx, str);
1237 set = isl_set_compute_divs(set);
1238 isl_set_free(set);
1239 if (!set)
1240 return -1;
1242 if (test_elimination(ctx) < 0)
1243 return -1;
1245 str = "{ [i,j,k] : 3 + i + 2j >= 0 and 2 * [(i+2j)/4] <= k }";
1246 set = isl_set_read_from_str(ctx, str);
1247 set = isl_set_remove_divs_involving_dims(set, isl_dim_set, 0, 2);
1248 set = isl_set_fix_si(set, isl_dim_set, 2, -3);
1249 empty = isl_set_is_empty(set);
1250 isl_set_free(set);
1251 if (empty < 0)
1252 return -1;
1253 if (!empty)
1254 isl_die(ctx, isl_error_unknown,
1255 "result not as accurate as expected", return -1);
1257 return 0;
1260 void test_application_case(struct isl_ctx *ctx, const char *name)
1262 char *filename;
1263 FILE *input;
1264 struct isl_basic_set *bset1, *bset2;
1265 struct isl_basic_map *bmap;
1267 filename = get_filename(ctx, name, "omega");
1268 assert(filename);
1269 input = fopen(filename, "r");
1270 assert(input);
1272 bset1 = isl_basic_set_read_from_file(ctx, input);
1273 bmap = isl_basic_map_read_from_file(ctx, input);
1275 bset1 = isl_basic_set_apply(bset1, bmap);
1277 bset2 = isl_basic_set_read_from_file(ctx, input);
1279 assert(isl_basic_set_is_equal(bset1, bset2) == 1);
1281 isl_basic_set_free(bset1);
1282 isl_basic_set_free(bset2);
1283 free(filename);
1285 fclose(input);
1288 static int test_application(isl_ctx *ctx)
1290 test_application_case(ctx, "application");
1291 test_application_case(ctx, "application2");
1293 return 0;
1296 void test_affine_hull_case(struct isl_ctx *ctx, const char *name)
1298 char *filename;
1299 FILE *input;
1300 struct isl_basic_set *bset1, *bset2;
1302 filename = get_filename(ctx, name, "polylib");
1303 assert(filename);
1304 input = fopen(filename, "r");
1305 assert(input);
1307 bset1 = isl_basic_set_read_from_file(ctx, input);
1308 bset2 = isl_basic_set_read_from_file(ctx, input);
1310 bset1 = isl_basic_set_affine_hull(bset1);
1312 assert(isl_basic_set_is_equal(bset1, bset2) == 1);
1314 isl_basic_set_free(bset1);
1315 isl_basic_set_free(bset2);
1316 free(filename);
1318 fclose(input);
1321 /* Pairs of sets and the corresponding expected results of
1322 * isl_basic_set_recession_cone.
1324 struct {
1325 const char *set;
1326 const char *cone;
1327 } recession_cone_tests[] = {
1328 { "{ [i] : 0 <= i <= 10 }", "{ [0] }" },
1329 { "{ [i] : 0 <= i }", "{ [i] : 0 <= i }" },
1330 { "{ [i] : i <= 10 }", "{ [i] : i <= 0 }" },
1331 { "{ [i] : false }", "{ [i] : false }" },
1334 /* Perform some basic isl_basic_set_recession_cone tests.
1336 static int test_recession_cone(struct isl_ctx *ctx)
1338 int i;
1340 for (i = 0; i < ARRAY_SIZE(recession_cone_tests); ++i) {
1341 const char *str;
1342 isl_basic_set *bset;
1343 isl_basic_set *cone, *expected;
1344 isl_bool equal;
1346 str = recession_cone_tests[i].set;
1347 bset = isl_basic_set_read_from_str(ctx, str);
1348 str = recession_cone_tests[i].cone;
1349 expected = isl_basic_set_read_from_str(ctx, str);
1350 cone = isl_basic_set_recession_cone(bset);
1351 equal = isl_basic_set_is_equal(cone, expected);
1352 isl_basic_set_free(cone);
1353 isl_basic_set_free(expected);
1354 if (equal < 0)
1355 return -1;
1356 if (!equal)
1357 isl_die(ctx, isl_error_unknown, "unexpected cone",
1358 return -1);
1361 return 0;
1364 int test_affine_hull(struct isl_ctx *ctx)
1366 const char *str;
1367 isl_set *set;
1368 isl_basic_set *bset, *bset2;
1369 isl_size n;
1370 isl_bool subset;
1372 test_affine_hull_case(ctx, "affine2");
1373 test_affine_hull_case(ctx, "affine");
1374 test_affine_hull_case(ctx, "affine3");
1376 str = "[m] -> { [i0] : exists (e0, e1: e1 <= 1 + i0 and "
1377 "m >= 3 and 4i0 <= 2 + m and e1 >= i0 and "
1378 "e1 >= 0 and e1 <= 2 and e1 >= 1 + 2e0 and "
1379 "2e1 <= 1 + m + 4e0 and 2e1 >= 2 - m + 4i0 - 4e0) }";
1380 set = isl_set_read_from_str(ctx, str);
1381 bset = isl_set_affine_hull(set);
1382 n = isl_basic_set_dim(bset, isl_dim_div);
1383 isl_basic_set_free(bset);
1384 if (n < 0)
1385 return -1;
1386 if (n != 0)
1387 isl_die(ctx, isl_error_unknown, "not expecting any divs",
1388 return -1);
1390 /* Check that isl_map_affine_hull is not confused by
1391 * the reordering of divs in isl_map_align_divs.
1393 str = "{ [a, b, c, 0] : exists (e0 = [(b)/32], e1 = [(c)/32]: "
1394 "32e0 = b and 32e1 = c); "
1395 "[a, 0, c, 0] : exists (e0 = [(c)/32]: 32e0 = c) }";
1396 set = isl_set_read_from_str(ctx, str);
1397 bset = isl_set_affine_hull(set);
1398 isl_basic_set_free(bset);
1399 if (!bset)
1400 return -1;
1402 str = "{ [a] : exists e0, e1, e2: 32e1 = 31 + 31a + 31e0 and "
1403 "32e2 = 31 + 31e0 }";
1404 set = isl_set_read_from_str(ctx, str);
1405 bset = isl_set_affine_hull(set);
1406 str = "{ [a] : exists e : a = 32 e }";
1407 bset2 = isl_basic_set_read_from_str(ctx, str);
1408 subset = isl_basic_set_is_subset(bset, bset2);
1409 isl_basic_set_free(bset);
1410 isl_basic_set_free(bset2);
1411 if (subset < 0)
1412 return -1;
1413 if (!subset)
1414 isl_die(ctx, isl_error_unknown, "not as accurate as expected",
1415 return -1);
1417 return 0;
1420 /* Test a special case of isl_set_plain_unshifted_simple_hull
1421 * where older versions of isl would include a redundant constraint
1422 * in the result.
1423 * Check that the result does not have any constraints.
1425 static isl_stat test_plain_unshifted_simple_hull_special(isl_ctx *ctx)
1427 const char *str;
1428 isl_bool is_universe;
1429 isl_set *set;
1430 isl_basic_set *bset;
1432 str = "{[x, y] : x = 0 or 2*((x+y)//2) <= y + 2 }";
1433 set = isl_set_read_from_str(ctx, str);
1434 bset = isl_set_plain_unshifted_simple_hull(set);
1435 is_universe = isl_basic_set_plain_is_universe(bset);
1436 isl_basic_set_free(bset);
1438 if (is_universe < 0)
1439 return isl_stat_error;
1440 if (!is_universe)
1441 isl_die(ctx, isl_error_unknown,
1442 "hull should not have any constraints",
1443 return isl_stat_error);
1445 return isl_stat_ok;
1448 /* Inputs for simple hull tests, consisting of
1449 * the specific simple hull function, the input set and the expected result.
1451 struct {
1452 __isl_give isl_basic_set *(*fn)(__isl_take isl_set *set);
1453 const char *set;
1454 const char *hull;
1455 } simple_hull_tests[] = {
1456 { &isl_set_plain_unshifted_simple_hull,
1457 "{ [i,j] : i >= 1 and j >= 1 or i >= 2 and j <= 10 }",
1458 "{ [i,j] : i >= 1 }" },
1459 { &isl_set_plain_unshifted_simple_hull,
1460 "{ [n,i,j,k] : (i mod 3 = 2 and j mod 4 = 2) or "
1461 "(j mod 4 = 2 and k mod 6 = n) }",
1462 "{ [n,i,j,k] : j mod 4 = 2 }" },
1463 { &isl_set_unshifted_simple_hull,
1464 "{ [0,x,y] : x <= -1; [1,x,y] : x <= y <= -x; [2,x,y] : x <= 1 }",
1465 "{ [t,x,y] : 0 <= t <= 2 and x <= 1 }" },
1466 { &isl_set_simple_hull,
1467 "{ [a, b] : b <= 0 and "
1468 "2*floor((-2*floor((b)/2))/5) >= a - floor((b)/2); "
1469 "[a, b] : a mod 2 = 0 }",
1470 "{ [a, b] }" },
1473 /* Basic tests for various simple hull functions.
1475 static int test_various_simple_hull(isl_ctx *ctx)
1477 int i;
1478 isl_set *set;
1479 isl_basic_set *hull, *expected;
1480 isl_bool equal;
1482 for (i = 0; i < ARRAY_SIZE(simple_hull_tests); ++i) {
1483 const char *str;
1484 str = simple_hull_tests[i].set;
1485 set = isl_set_read_from_str(ctx, str);
1486 str = simple_hull_tests[i].hull;
1487 expected = isl_basic_set_read_from_str(ctx, str);
1488 hull = simple_hull_tests[i].fn(set);
1489 equal = isl_basic_set_is_equal(hull, expected);
1490 isl_basic_set_free(hull);
1491 isl_basic_set_free(expected);
1492 if (equal < 0)
1493 return -1;
1494 if (!equal)
1495 isl_die(ctx, isl_error_unknown, "unexpected hull",
1496 return -1);
1499 return 0;
1502 static int test_simple_hull(struct isl_ctx *ctx)
1504 const char *str;
1505 isl_set *set;
1506 isl_basic_set *bset;
1507 isl_bool is_empty;
1509 str = "{ [x, y] : 3y <= 2x and y >= -2 + 2x and 2y >= 2 - x;"
1510 "[y, x] : 3y <= 2x and y >= -2 + 2x and 2y >= 2 - x }";
1511 set = isl_set_read_from_str(ctx, str);
1512 bset = isl_set_simple_hull(set);
1513 is_empty = isl_basic_set_is_empty(bset);
1514 isl_basic_set_free(bset);
1516 if (is_empty == isl_bool_error)
1517 return -1;
1519 if (is_empty == isl_bool_false)
1520 isl_die(ctx, isl_error_unknown, "Empty set should be detected",
1521 return -1);
1523 if (test_plain_unshifted_simple_hull_special(ctx) < 0)
1524 return -1;
1525 if (test_various_simple_hull(ctx) < 0)
1526 return -1;
1528 return 0;
1531 /* Inputs for isl_set_get_simple_fixed_box_hull tests.
1532 * "set" is the input set.
1533 * "offset" is the expected box offset.
1534 * "size" is the expected box size.
1536 static struct {
1537 const char *set;
1538 const char *offset;
1539 const char *size;
1540 } box_hull_tests[] = {
1541 { "{ S[x, y] : 0 <= x, y < 10 }", "{ S[0, 0] }", "{ S[10, 10] }" },
1542 { "[N] -> { S[x, y] : N <= x, y < N + 10 }",
1543 "[N] -> { S[N, N] }", "{ S[10, 10] }" },
1544 { "{ S[x, y] : 0 <= x + y, x - y < 10 }",
1545 "{ S[0, -4] }", "{ S[10, 9] }" },
1546 { "{ [i=0:10] : exists (e0, e1: 3e1 >= 1 + 2e0 and "
1547 "8e1 <= -1 + 5i - 5e0 and 2e1 >= 1 + 2i - 5e0) }",
1548 "{ [3] }", "{ [8] }" },
1549 { "[N] -> { [w = 0:17] : exists (e0: w < 2N and "
1550 "-1 + w <= e0 <= w and 2e0 >= N + w and w <= 2e0 <= 15 + w) }",
1551 "[N] -> { [N] }", "{ [9] }" },
1554 /* Perform basic isl_set_get_simple_fixed_box_hull tests.
1556 static int test_box_hull(struct isl_ctx *ctx)
1558 int i;
1560 for (i = 0; i < ARRAY_SIZE(box_hull_tests); ++i) {
1561 const char *str;
1562 isl_stat r;
1563 isl_set *set;
1564 isl_multi_aff *offset;
1565 isl_multi_val *size;
1566 isl_fixed_box *box;
1568 set = isl_set_read_from_str(ctx, box_hull_tests[i].set);
1569 box = isl_set_get_simple_fixed_box_hull(set);
1570 offset = isl_fixed_box_get_offset(box);
1571 size = isl_fixed_box_get_size(box);
1572 str = box_hull_tests[i].offset;
1573 r = multi_aff_check_plain_equal(offset, str);
1574 str = box_hull_tests[i].size;
1575 if (r >= 0)
1576 r = multi_val_check_plain_equal(size, str);
1577 isl_multi_aff_free(offset);
1578 isl_multi_val_free(size);
1579 isl_fixed_box_free(box);
1580 isl_set_free(set);
1581 if (r < 0)
1582 return -1;
1585 return 0;
1588 void test_convex_hull_case(struct isl_ctx *ctx, const char *name)
1590 char *filename;
1591 FILE *input;
1592 struct isl_basic_set *bset1, *bset2;
1593 struct isl_set *set;
1595 filename = get_filename(ctx, name, "polylib");
1596 assert(filename);
1597 input = fopen(filename, "r");
1598 assert(input);
1600 bset1 = isl_basic_set_read_from_file(ctx, input);
1601 bset2 = isl_basic_set_read_from_file(ctx, input);
1603 set = isl_basic_set_union(bset1, bset2);
1604 bset1 = isl_set_convex_hull(set);
1606 bset2 = isl_basic_set_read_from_file(ctx, input);
1608 assert(isl_basic_set_is_equal(bset1, bset2) == 1);
1610 isl_basic_set_free(bset1);
1611 isl_basic_set_free(bset2);
1612 free(filename);
1614 fclose(input);
1617 struct {
1618 const char *set;
1619 const char *hull;
1620 } convex_hull_tests[] = {
1621 { "{ [i0, i1, i2] : (i2 = 1 and i0 = 0 and i1 >= 0) or "
1622 "(i0 = 1 and i1 = 0 and i2 = 1) or "
1623 "(i0 = 0 and i1 = 0 and i2 = 0) }",
1624 "{ [i0, i1, i2] : i0 >= 0 and i2 >= i0 and i2 <= 1 and i1 >= 0 }" },
1625 { "[n] -> { [i0, i1, i0] : i0 <= -4 + n; "
1626 "[i0, i0, i2] : n = 6 and i0 >= 0 and i2 <= 7 - i0 and "
1627 "i2 <= 5 and i2 >= 4; "
1628 "[3, i1, 3] : n = 5 and i1 <= 2 and i1 >= 0 }",
1629 "[n] -> { [i0, i1, i2] : i2 <= -1 + n and 2i2 <= -6 + 3n - i0 and "
1630 "i2 <= 5 + i0 and i2 >= i0 }" },
1631 { "{ [x, y] : 3y <= 2x and y >= -2 + 2x and 2y >= 2 - x }",
1632 "{ [x, y] : 1 = 0 }" },
1633 { "{ [x, y, z] : 0 <= x, y, z <= 10; [x, y, 0] : x >= 0 and y > 0; "
1634 "[x, y, 0] : x >= 0 and y < 0 }",
1635 "{ [x, y, z] : x >= 0 and 0 <= z <= 10 }" },
1636 { "{ [a, b, c] : a <= 1 and -a < b <= 1 and 0 <= c <= 2 - a - b and "
1637 "c <= a; "
1638 "[0, 2, 0]; [3, 1, 0] }",
1639 "{ [a, b, c] : b > -a and 2b >= -1 + a and 0 <= c <= a and "
1640 "5c <= 6 - a - 3b }" },
1643 static int test_convex_hull_algo(isl_ctx *ctx, int convex)
1645 int i;
1646 int orig_convex = ctx->opt->convex;
1647 ctx->opt->convex = convex;
1649 test_convex_hull_case(ctx, "convex0");
1650 test_convex_hull_case(ctx, "convex1");
1651 test_convex_hull_case(ctx, "convex2");
1652 test_convex_hull_case(ctx, "convex3");
1653 test_convex_hull_case(ctx, "convex4");
1654 test_convex_hull_case(ctx, "convex5");
1655 test_convex_hull_case(ctx, "convex6");
1656 test_convex_hull_case(ctx, "convex7");
1657 test_convex_hull_case(ctx, "convex8");
1658 test_convex_hull_case(ctx, "convex9");
1659 test_convex_hull_case(ctx, "convex10");
1660 test_convex_hull_case(ctx, "convex11");
1661 test_convex_hull_case(ctx, "convex12");
1662 test_convex_hull_case(ctx, "convex13");
1663 test_convex_hull_case(ctx, "convex14");
1664 test_convex_hull_case(ctx, "convex15");
1666 for (i = 0; i < ARRAY_SIZE(convex_hull_tests); ++i) {
1667 isl_set *set1, *set2;
1668 int equal;
1670 set1 = isl_set_read_from_str(ctx, convex_hull_tests[i].set);
1671 set2 = isl_set_read_from_str(ctx, convex_hull_tests[i].hull);
1672 set1 = isl_set_from_basic_set(isl_set_convex_hull(set1));
1673 equal = isl_set_is_equal(set1, set2);
1674 isl_set_free(set1);
1675 isl_set_free(set2);
1677 if (equal < 0)
1678 return -1;
1679 if (!equal)
1680 isl_die(ctx, isl_error_unknown,
1681 "unexpected convex hull", return -1);
1684 ctx->opt->convex = orig_convex;
1686 return 0;
1689 static int test_convex_hull(isl_ctx *ctx)
1691 if (test_convex_hull_algo(ctx, ISL_CONVEX_HULL_FM) < 0)
1692 return -1;
1693 if (test_convex_hull_algo(ctx, ISL_CONVEX_HULL_WRAP) < 0)
1694 return -1;
1695 return 0;
1698 /* Check that computing the gist of "map" with respect to "context"
1699 * does not make any copy of "map" get marked empty.
1700 * Earlier versions of isl would end up doing that.
1702 static isl_stat test_gist_empty_pair(isl_ctx *ctx, const char *map,
1703 const char *context)
1705 isl_map *m1, *m2, *m3;
1706 isl_bool empty_before, empty_after;
1708 m1 = isl_map_read_from_str(ctx, map);
1709 m2 = isl_map_read_from_str(ctx, context);
1710 m3 = isl_map_copy(m1);
1711 empty_before = isl_map_is_empty(m3);
1712 m1 = isl_map_gist(m1, m2);
1713 empty_after = isl_map_is_empty(m3);
1714 isl_map_free(m1);
1715 isl_map_free(m3);
1717 if (empty_before < 0 || empty_after < 0)
1718 return isl_stat_error;
1719 if (empty_before)
1720 isl_die(ctx, isl_error_unknown, "map should not be empty",
1721 return isl_stat_error);
1722 if (empty_after)
1723 isl_die(ctx, isl_error_unknown, "map should still not be empty",
1724 return isl_stat_error);
1726 return isl_stat_ok;
1729 /* Check that computing a gist does not make any copy of the input
1730 * get marked empty.
1731 * Earlier versions of isl would end up doing that on some pairs of inputs.
1733 static isl_stat test_gist_empty(isl_ctx *ctx)
1735 const char *map, *context;
1737 map = "{ [] -> [a, b, c] : 2b = 1 + a }";
1738 context = "{ [] -> [a, b, c] : 2c = 2 + a }";
1739 if (test_gist_empty_pair(ctx, map, context) < 0)
1740 return isl_stat_error;
1741 map = "{ [] -> [0, 0] }";
1742 context = "{ [] -> [a, b] : a > b }";
1743 if (test_gist_empty_pair(ctx, map, context) < 0)
1744 return isl_stat_error;
1746 return isl_stat_ok;
1749 /* Inputs to isl_map_plain_gist_basic_map, along with the expected output.
1751 struct {
1752 const char *map;
1753 const char *context;
1754 const char *gist;
1755 } plain_gist_tests[] = {
1756 { "{ [i] -> [j] : i >= 1 and j >= 1 or i >= 2 and j <= 10 }",
1757 "{ [i] -> [j] : i >= 1 }",
1758 "{ [i] -> [j] : j >= 1 or i >= 2 and j <= 10 }" },
1759 { "{ [n] -> [i,j,k] : (i mod 3 = 2 and j mod 4 = 2) or "
1760 "(j mod 4 = 2 and k mod 6 = n) }",
1761 "{ [n] -> [i,j,k] : j mod 4 = 2 }",
1762 "{ [n] -> [i,j,k] : (i mod 3 = 2) or (k mod 6 = n) }" },
1763 { "{ [i] -> [j] : i > j and (exists a,b : i <= 2a + 5b <= 2) }",
1764 "{ [i] -> [j] : i > j }",
1765 "{ [i] -> [j] : exists a,b : i <= 2a + 5b <= 2 }" },
1768 /* Basic tests for isl_map_plain_gist_basic_map.
1770 static int test_plain_gist(isl_ctx *ctx)
1772 int i;
1774 for (i = 0; i < ARRAY_SIZE(plain_gist_tests); ++i) {
1775 const char *str;
1776 int equal;
1777 isl_map *map, *gist;
1778 isl_basic_map *context;
1780 map = isl_map_read_from_str(ctx, plain_gist_tests[i].map);
1781 str = plain_gist_tests[i].context;
1782 context = isl_basic_map_read_from_str(ctx, str);
1783 map = isl_map_plain_gist_basic_map(map, context);
1784 gist = isl_map_read_from_str(ctx, plain_gist_tests[i].gist);
1785 equal = isl_map_is_equal(map, gist);
1786 isl_map_free(map);
1787 isl_map_free(gist);
1788 if (equal < 0)
1789 return -1;
1790 if (!equal)
1791 isl_die(ctx, isl_error_unknown,
1792 "incorrect gist result", return -1);
1795 return 0;
1798 /* Inputs for isl_basic_set_gist tests that are expected to fail.
1800 struct {
1801 const char *set;
1802 const char *context;
1803 } gist_fail_tests[] = {
1804 { "{ [i] : exists (e0, e1: 3e1 >= 1 + 2e0 and "
1805 "8e1 <= -1 + 5i - 5e0 and 2e1 >= 1 + 2i - 5e0) }",
1806 "{ [i] : i >= 0 }" },
1809 /* Check that isl_basic_set_gist fails (gracefully) when expected.
1810 * In particular, the user should be able to recover from the failure.
1812 static isl_stat test_gist_fail(struct isl_ctx *ctx)
1814 int i, n;
1815 int on_error;
1817 on_error = isl_options_get_on_error(ctx);
1818 isl_options_set_on_error(ctx, ISL_ON_ERROR_CONTINUE);
1819 n = ARRAY_SIZE(gist_fail_tests);
1820 for (i = 0; i < n; ++i) {
1821 const char *str;
1822 isl_basic_set *bset, *context;
1824 bset = isl_basic_set_read_from_str(ctx, gist_fail_tests[i].set);
1825 str = gist_fail_tests[i].context;
1826 context = isl_basic_set_read_from_str(ctx, str);
1827 bset = isl_basic_set_gist(bset, context);
1828 isl_basic_set_free(bset);
1829 if (bset)
1830 break;
1832 isl_options_set_on_error(ctx, on_error);
1833 if (i < n)
1834 isl_die(ctx, isl_error_unknown,
1835 "operation not expected to succeed",
1836 return isl_stat_error);
1838 return isl_stat_ok;
1841 struct {
1842 const char *set;
1843 const char *context;
1844 const char *gist;
1845 } gist_tests[] = {
1846 { "{ [1, -1, 3] }",
1847 "{ [1, b, 2 - b] : -1 <= b <= 2 }",
1848 "{ [a, -1, c] }" },
1849 { "{ [a, b, c] : a <= 15 and a >= 1 }",
1850 "{ [a, b, c] : exists (e0 = floor((-1 + a)/16): a >= 1 and "
1851 "c <= 30 and 32e0 >= -62 + 2a + 2b - c and b >= 0) }",
1852 "{ [a, b, c] : a <= 15 }" },
1853 { "{ : }", "{ : 1 = 0 }", "{ : }" },
1854 { "{ : 1 = 0 }", "{ : 1 = 0 }", "{ : }" },
1855 { "[M] -> { [x] : exists (e0 = floor((-2 + x)/3): 3e0 = -2 + x) }",
1856 "[M] -> { [3M] }" , "[M] -> { [x] : 1 = 0 }" },
1857 { "{ [m, n, a, b] : a <= 2147 + n }",
1858 "{ [m, n, a, b] : (m >= 1 and n >= 1 and a <= 2148 - m and "
1859 "b <= 2148 - n and b >= 0 and b >= 2149 - n - a) or "
1860 "(n >= 1 and a >= 0 and b <= 2148 - n - a and "
1861 "b >= 0) }",
1862 "{ [m, n, ku, kl] }" },
1863 { "{ [a, a, b] : a >= 10 }",
1864 "{ [a, b, c] : c >= a and c <= b and c >= 2 }",
1865 "{ [a, a, b] : a >= 10 }" },
1866 { "{ [i, j] : i >= 0 and i + j >= 0 }", "{ [i, j] : i <= 0 }",
1867 "{ [0, j] : j >= 0 }" },
1868 /* Check that no constraints on i6 are introduced in the gist */
1869 { "[t1] -> { [i4, i6] : exists (e0 = floor((1530 - 4t1 - 5i4)/20): "
1870 "20e0 <= 1530 - 4t1 - 5i4 and 20e0 >= 1511 - 4t1 - 5i4 and "
1871 "5e0 <= 381 - t1 and i4 <= 1) }",
1872 "[t1] -> { [i4, i6] : exists (e0 = floor((-t1 + i6)/5): "
1873 "5e0 = -t1 + i6 and i6 <= 6 and i6 >= 3) }",
1874 "[t1] -> { [i4, i6] : exists (e0 = floor((1530 - 4t1 - 5i4)/20): "
1875 "i4 <= 1 and 5e0 <= 381 - t1 and 20e0 <= 1530 - 4t1 - 5i4 and "
1876 "20e0 >= 1511 - 4t1 - 5i4) }" },
1877 /* Check that no constraints on i6 are introduced in the gist */
1878 { "[t1, t2] -> { [i4, i5, i6] : exists (e0 = floor((1 + i4)/2), "
1879 "e1 = floor((1530 - 4t1 - 5i4)/20), "
1880 "e2 = floor((-4t1 - 5i4 + 10*floor((1 + i4)/2))/20), "
1881 "e3 = floor((-1 + i4)/2): t2 = 0 and 2e3 = -1 + i4 and "
1882 "20e2 >= -19 - 4t1 - 5i4 + 10e0 and 5e2 <= 1 - t1 and "
1883 "2e0 <= 1 + i4 and 2e0 >= i4 and "
1884 "20e1 <= 1530 - 4t1 - 5i4 and "
1885 "20e1 >= 1511 - 4t1 - 5i4 and i4 <= 1 and "
1886 "5e1 <= 381 - t1 and 20e2 <= -4t1 - 5i4 + 10e0) }",
1887 "[t1, t2] -> { [i4, i5, i6] : exists (e0 = floor((-17 + i4)/2), "
1888 "e1 = floor((-t1 + i6)/5): 5e1 = -t1 + i6 and "
1889 "2e0 <= -17 + i4 and 2e0 >= -18 + i4 and "
1890 "10e0 <= -91 + 5i4 + 4i6 and "
1891 "10e0 >= -105 + 5i4 + 4i6) }",
1892 "[t1, t2] -> { [i4, i5, i6] : exists (e0 = floor((381 - t1)/5), "
1893 "e1 = floor((-1 + i4)/2): t2 = 0 and 2e1 = -1 + i4 and "
1894 "i4 <= 1 and 5e0 <= 381 - t1 and 20e0 >= 1511 - 4t1 - 5i4) }" },
1895 { "{ [0, 0, q, p] : -5 <= q <= 5 and p >= 0 }",
1896 "{ [a, b, q, p] : b >= 1 + a }",
1897 "{ [a, b, q, p] : false }" },
1898 { "[n] -> { [x] : x = n && x mod 32 = 0 }",
1899 "[n] -> { [x] : x mod 32 = 0 }",
1900 "[n] -> { [x = n] }" },
1901 { "{ [x] : x mod 6 = 0 }", "{ [x] : x mod 3 = 0 }",
1902 "{ [x] : x mod 2 = 0 }" },
1903 { "{ [x] : x mod 3200 = 0 }", "{ [x] : x mod 10000 = 0 }",
1904 "{ [x] : x mod 128 = 0 }" },
1905 { "{ [x] : x mod 3200 = 0 }", "{ [x] : x mod 10 = 0 }",
1906 "{ [x] : x mod 3200 = 0 }" },
1907 { "{ [a, b, c] : a mod 2 = 0 and a = c }",
1908 "{ [a, b, c] : b mod 2 = 0 and b = c }",
1909 "{ [a, b, c = a] }" },
1910 { "{ [a, b, c] : a mod 6 = 0 and a = c }",
1911 "{ [a, b, c] : b mod 2 = 0 and b = c }",
1912 "{ [a, b, c = a] : a mod 3 = 0 }" },
1913 { "{ [x] : 0 <= x <= 4 or 6 <= x <= 9 }",
1914 "{ [x] : 1 <= x <= 3 or 7 <= x <= 8 }",
1915 "{ [x] }" },
1916 { "{ [x,y] : x < 0 and 0 <= y <= 4 or x >= -2 and -x <= y <= 10 + x }",
1917 "{ [x,y] : 1 <= y <= 3 }",
1918 "{ [x,y] }" },
1921 /* Check that isl_set_gist behaves as expected.
1923 * For the test cases in gist_tests, besides checking that the result
1924 * is as expected, also check that applying the gist operation does
1925 * not modify the input set (an earlier version of isl would do that) and
1926 * that the test case is consistent, i.e., that the gist has the same
1927 * intersection with the context as the input set.
1929 static int test_gist(struct isl_ctx *ctx)
1931 int i;
1932 const char *str;
1933 isl_basic_set *bset1, *bset2;
1934 isl_map *map1, *map2;
1935 isl_bool equal;
1936 isl_size n_div;
1938 for (i = 0; i < ARRAY_SIZE(gist_tests); ++i) {
1939 isl_bool equal_input, equal_intersection;
1940 isl_set *set1, *set2, *copy, *context;
1942 set1 = isl_set_read_from_str(ctx, gist_tests[i].set);
1943 context = isl_set_read_from_str(ctx, gist_tests[i].context);
1944 copy = isl_set_copy(set1);
1945 set1 = isl_set_gist(set1, isl_set_copy(context));
1946 set2 = isl_set_read_from_str(ctx, gist_tests[i].gist);
1947 equal = isl_set_is_equal(set1, set2);
1948 isl_set_free(set1);
1949 set1 = isl_set_read_from_str(ctx, gist_tests[i].set);
1950 equal_input = isl_set_is_equal(set1, copy);
1951 isl_set_free(copy);
1952 set1 = isl_set_intersect(set1, isl_set_copy(context));
1953 set2 = isl_set_intersect(set2, context);
1954 equal_intersection = isl_set_is_equal(set1, set2);
1955 isl_set_free(set2);
1956 isl_set_free(set1);
1957 if (equal < 0 || equal_input < 0 || equal_intersection < 0)
1958 return -1;
1959 if (!equal)
1960 isl_die(ctx, isl_error_unknown,
1961 "incorrect gist result", return -1);
1962 if (!equal_input)
1963 isl_die(ctx, isl_error_unknown,
1964 "gist modified input", return -1);
1965 if (!equal_input)
1966 isl_die(ctx, isl_error_unknown,
1967 "inconsistent gist test case", return -1);
1970 if (test_gist_fail(ctx) < 0)
1971 return -1;
1973 str = "[p0, p2, p3, p5, p6, p10] -> { [] : "
1974 "exists (e0 = [(15 + p0 + 15p6 + 15p10)/16], e1 = [(p5)/8], "
1975 "e2 = [(p6)/128], e3 = [(8p2 - p5)/128], "
1976 "e4 = [(128p3 - p6)/4096]: 8e1 = p5 and 128e2 = p6 and "
1977 "128e3 = 8p2 - p5 and 4096e4 = 128p3 - p6 and p2 >= 0 and "
1978 "16e0 >= 16 + 16p6 + 15p10 and p2 <= 15 and p3 >= 0 and "
1979 "p3 <= 31 and p6 >= 128p3 and p5 >= 8p2 and p10 >= 0 and "
1980 "16e0 <= 15 + p0 + 15p6 + 15p10 and 16e0 >= p0 + 15p6 + 15p10 and "
1981 "p10 <= 15 and p10 <= -1 + p0 - p6) }";
1982 bset1 = isl_basic_set_read_from_str(ctx, str);
1983 str = "[p0, p2, p3, p5, p6, p10] -> { [] : exists (e0 = [(p5)/8], "
1984 "e1 = [(p6)/128], e2 = [(8p2 - p5)/128], "
1985 "e3 = [(128p3 - p6)/4096]: 8e0 = p5 and 128e1 = p6 and "
1986 "128e2 = 8p2 - p5 and 4096e3 = 128p3 - p6 and p5 >= -7 and "
1987 "p2 >= 0 and 8p2 <= -1 + p0 and p2 <= 15 and p3 >= 0 and "
1988 "p3 <= 31 and 128p3 <= -1 + p0 and p6 >= -127 and "
1989 "p5 <= -1 + p0 and p6 <= -1 + p0 and p6 >= 128p3 and "
1990 "p0 >= 1 and p5 >= 8p2 and p10 >= 0 and p10 <= 15 ) }";
1991 bset2 = isl_basic_set_read_from_str(ctx, str);
1992 bset1 = isl_basic_set_gist(bset1, bset2);
1993 assert(bset1 && bset1->n_div == 0);
1994 isl_basic_set_free(bset1);
1996 /* Check that the integer divisions of the second disjunct
1997 * do not spread to the first disjunct.
1999 str = "[t1] -> { S_0[] -> A[o0] : (exists (e0 = [(-t1 + o0)/16]: "
2000 "16e0 = -t1 + o0 and o0 >= 0 and o0 <= 15 and t1 >= 0)) or "
2001 "(exists (e0 = [(-1 + t1)/16], "
2002 "e1 = [(-16 + t1 - 16e0)/4294967296]: "
2003 "4294967296e1 = -16 + t1 - o0 - 16e0 and "
2004 "16e0 <= -1 + t1 and 16e0 >= -16 + t1 and o0 >= 0 and "
2005 "o0 <= 4294967295 and t1 <= -1)) }";
2006 map1 = isl_map_read_from_str(ctx, str);
2007 str = "[t1] -> { S_0[] -> A[o0] : t1 >= 0 and t1 <= 4294967295 }";
2008 map2 = isl_map_read_from_str(ctx, str);
2009 map1 = isl_map_gist(map1, map2);
2010 if (!map1)
2011 return -1;
2012 if (map1->n != 1)
2013 isl_die(ctx, isl_error_unknown, "expecting single disjunct",
2014 isl_map_free(map1); return -1);
2015 n_div = isl_basic_map_dim(map1->p[0], isl_dim_div);
2016 isl_map_free(map1);
2017 if (n_div < 0)
2018 return -1;
2019 if (n_div != 1)
2020 isl_die(ctx, isl_error_unknown, "expecting single div",
2021 return -1);
2023 if (test_gist_empty(ctx) < 0)
2024 return -1;
2025 if (test_plain_gist(ctx) < 0)
2026 return -1;
2028 return 0;
2031 int test_coalesce_set(isl_ctx *ctx, const char *str, int check_one)
2033 isl_set *set, *set2;
2034 int equal;
2035 int one;
2037 set = isl_set_read_from_str(ctx, str);
2038 set = isl_set_coalesce(set);
2039 set2 = isl_set_read_from_str(ctx, str);
2040 equal = isl_set_is_equal(set, set2);
2041 one = set && set->n == 1;
2042 isl_set_free(set);
2043 isl_set_free(set2);
2045 if (equal < 0)
2046 return -1;
2047 if (!equal)
2048 isl_die(ctx, isl_error_unknown,
2049 "coalesced set not equal to input", return -1);
2050 if (check_one && !one)
2051 isl_die(ctx, isl_error_unknown,
2052 "coalesced set should not be a union", return -1);
2054 return 0;
2057 /* Inputs for coalescing tests with unbounded wrapping.
2058 * "str" is a string representation of the input set.
2059 * "single_disjunct" is set if we expect the result to consist of
2060 * a single disjunct.
2062 struct {
2063 int single_disjunct;
2064 const char *str;
2065 } coalesce_unbounded_tests[] = {
2066 { 1, "{ [x,y,z] : y + 2 >= 0 and x - y + 1 >= 0 and "
2067 "-x - y + 1 >= 0 and -3 <= z <= 3;"
2068 "[x,y,z] : -x+z + 20 >= 0 and -x-z + 20 >= 0 and "
2069 "x-z + 20 >= 0 and x+z + 20 >= 0 and "
2070 "-10 <= y <= 0}" },
2071 { 1, "{ [x,y] : 0 <= x,y <= 10; [5,y]: 4 <= y <= 11 }" },
2072 { 1, "{ [x,0,0] : -5 <= x <= 5; [0,y,1] : -5 <= y <= 5 }" },
2073 { 1, "{ [x,y] : 0 <= x <= 10 and 0 >= y >= -1 and x+y >= 0; [0,1] }" },
2074 { 1, "{ [x,y] : (0 <= x,y <= 4) or (2 <= x,y <= 5 and x + y <= 9) }" },
2075 { 0, "{ [x, y, z] : 0 <= x,y,z <= 100 and 0 < z <= 2 + 2x + 2y; "
2076 "[x, y, 0] : x,y <= 100 and y <= 9 + 11x and x <= 9 + 11y }" },
2077 { 1, "{ [0:1, 0:1]; [0, 2:3] }" },
2078 { 1, "{ [0:1, 0:1]; [0, 2:3]; [1, -2:-1] }" },
2079 { 1, "{ [0:3, 0:1]; [1:2, 2:5] }" },
2080 { 1, "{ [0:3, 0:1]; [0:2, 2:5] }" },
2081 { 1, "{ [0:3, 0:1]; [1:3, 2:5] }" },
2082 { 0, "{ [0:3, 0:1]; [1:4, 2:5] }" },
2083 { 0, "{ [0:3, 0:1]; [1:5, 2:5] }" },
2086 /* Test the functionality of isl_set_coalesce with the bounded wrapping
2087 * option turned off.
2089 int test_coalesce_unbounded_wrapping(isl_ctx *ctx)
2091 int i;
2092 int r = 0;
2093 int bounded;
2095 bounded = isl_options_get_coalesce_bounded_wrapping(ctx);
2096 isl_options_set_coalesce_bounded_wrapping(ctx, 0);
2098 for (i = 0; i < ARRAY_SIZE(coalesce_unbounded_tests); ++i) {
2099 const char *str = coalesce_unbounded_tests[i].str;
2100 int check_one = coalesce_unbounded_tests[i].single_disjunct;
2101 if (test_coalesce_set(ctx, str, check_one) >= 0)
2102 continue;
2103 r = -1;
2104 break;
2107 isl_options_set_coalesce_bounded_wrapping(ctx, bounded);
2109 return r;
2112 /* Inputs for coalescing tests.
2113 * "str" is a string representation of the input set.
2114 * "single_disjunct" is set if we expect the result to consist of
2115 * a single disjunct.
2117 struct {
2118 int single_disjunct;
2119 const char *str;
2120 } coalesce_tests[] = {
2121 { 1, "{[x,y]: x >= 0 & x <= 10 & y >= 0 & y <= 10 or "
2122 "y >= x & x >= 2 & 5 >= y }" },
2123 { 1, "{[x,y]: y >= 0 & 2x + y <= 30 & y <= 10 & x >= 0 or "
2124 "x + y >= 10 & y <= x & x + y <= 20 & y >= 0}" },
2125 { 0, "{[x,y]: y >= 0 & 2x + y <= 30 & y <= 10 & x >= 0 or "
2126 "x + y >= 10 & y <= x & x + y <= 19 & y >= 0}" },
2127 { 1, "{[x,y]: y >= 0 & x <= 5 & y <= x or "
2128 "y >= 0 & x >= 6 & x <= 10 & y <= x}" },
2129 { 0, "{[x,y]: y >= 0 & x <= 5 & y <= x or "
2130 "y >= 0 & x >= 7 & x <= 10 & y <= x}" },
2131 { 0, "{[x,y]: y >= 0 & x <= 5 & y <= x or "
2132 "y >= 0 & x >= 6 & x <= 10 & y + 1 <= x}" },
2133 { 1, "{[x,y]: y >= 0 & x <= 5 & y <= x or y >= 0 & x = 6 & y <= 6}" },
2134 { 0, "{[x,y]: y >= 0 & x <= 5 & y <= x or y >= 0 & x = 7 & y <= 6}" },
2135 { 1, "{[x,y]: y >= 0 & x <= 5 & y <= x or y >= 0 & x = 6 & y <= 5}" },
2136 { 0, "{[x,y]: y >= 0 & x <= 5 & y <= x or y >= 0 & x = 6 & y <= 7}" },
2137 { 1, "[n] -> { [i] : i = 1 and n >= 2 or 2 <= i and i <= n }" },
2138 { 0, "{[x,y] : x >= 0 and y >= 0 or 0 <= y and y <= 5 and x = -1}" },
2139 { 1, "[n] -> { [i] : 1 <= i and i <= n - 1 or 2 <= i and i <= n }" },
2140 { 0, "[n] -> { [[i0] -> [o0]] : exists (e0 = [(i0)/4], e1 = [(o0)/4], "
2141 "e2 = [(n)/2], e3 = [(-2 + i0)/4], e4 = [(-2 + o0)/4], "
2142 "e5 = [(-2n + i0)/4]: 2e2 = n and 4e3 = -2 + i0 and "
2143 "4e4 = -2 + o0 and i0 >= 8 + 2n and o0 >= 2 + i0 and "
2144 "o0 <= 56 + 2n and o0 <= -12 + 4n and i0 <= 57 + 2n and "
2145 "i0 <= -11 + 4n and o0 >= 6 + 2n and 4e0 <= i0 and "
2146 "4e0 >= -3 + i0 and 4e1 <= o0 and 4e1 >= -3 + o0 and "
2147 "4e5 <= -2n + i0 and 4e5 >= -3 - 2n + i0);"
2148 "[[i0] -> [o0]] : exists (e0 = [(i0)/4], e1 = [(o0)/4], "
2149 "e2 = [(n)/2], e3 = [(-2 + i0)/4], e4 = [(-2 + o0)/4], "
2150 "e5 = [(-2n + i0)/4]: 2e2 = n and 4e3 = -2 + i0 and "
2151 "4e4 = -2 + o0 and 2e0 >= 3 + n and e0 <= -4 + n and "
2152 "2e0 <= 27 + n and e1 <= -4 + n and 2e1 <= 27 + n and "
2153 "2e1 >= 2 + n and e1 >= 1 + e0 and i0 >= 7 + 2n and "
2154 "i0 <= -11 + 4n and i0 <= 57 + 2n and 4e0 <= -2 + i0 and "
2155 "4e0 >= -3 + i0 and o0 >= 6 + 2n and o0 <= -11 + 4n and "
2156 "o0 <= 57 + 2n and 4e1 <= -2 + o0 and 4e1 >= -3 + o0 and "
2157 "4e5 <= -2n + i0 and 4e5 >= -3 - 2n + i0 ) }" },
2158 { 0, "[n, m] -> { [o0, o2, o3] : (o3 = 1 and o0 >= 1 + m and "
2159 "o0 <= n + m and o2 <= m and o0 >= 2 + n and o2 >= 3) or "
2160 "(o0 >= 2 + n and o0 >= 1 + m and o0 <= n + m and n >= 1 and "
2161 "o3 <= -1 + o2 and o3 >= 1 - m + o2 and o3 >= 2 and o3 <= n) }" },
2162 { 0, "[M, N] -> { [[i0, i1, i2, i3, i4, i5, i6] -> "
2163 "[o0, o1, o2, o3, o4, o5, o6]] : "
2164 "(o6 <= -4 + 2M - 2N + i0 + i1 - i2 + i6 - o0 - o1 + o2 and "
2165 "o3 <= -2 + i3 and o6 >= 2 + i0 + i3 + i6 - o0 - o3 and "
2166 "o6 >= 2 - M + N + i3 + i4 + i6 - o3 - o4 and o0 <= -1 + i0 and "
2167 "o4 >= 4 - 3M + 3N - i0 - i1 + i2 + 2i3 + i4 + o0 + o1 - o2 - 2o3 "
2168 "and o6 <= -3 + 2M - 2N + i3 + i4 - i5 + i6 - o3 - o4 + o5 and "
2169 "2o6 <= -5 + 5M - 5N + 2i0 + i1 - i2 - i5 + 2i6 - 2o0 - o1 + o2 + o5 "
2170 "and o6 >= 2i0 + i1 + i6 - 2o0 - o1 and "
2171 "3o6 <= -5 + 4M - 4N + 2i0 + i1 - i2 + 2i3 + i4 - i5 + 3i6 "
2172 "- 2o0 - o1 + o2 - 2o3 - o4 + o5) or "
2173 "(N >= 2 and o3 <= -1 + i3 and o0 <= -1 + i0 and "
2174 "o6 >= i3 + i6 - o3 and M >= 0 and "
2175 "2o6 >= 1 + i0 + i3 + 2i6 - o0 - o3 and "
2176 "o6 >= 1 - M + i0 + i6 - o0 and N >= 2M and o6 >= i0 + i6 - o0) }" },
2177 { 0, "[M, N] -> { [o0] : (o0 = 0 and M >= 1 and N >= 2) or "
2178 "(o0 = 0 and M >= 1 and N >= 2M and N >= 2 + M) or "
2179 "(o0 = 0 and M >= 2 and N >= 3) or "
2180 "(M = 0 and o0 = 0 and N >= 3) }" },
2181 { 0, "{ [i0, i1, i2, i3] : (i1 = 10i0 and i0 >= 1 and 10i0 <= 100 and "
2182 "i3 <= 9 + 10 i2 and i3 >= 1 + 10i2 and i3 >= 0) or "
2183 "(i1 <= 9 + 10i0 and i1 >= 1 + 10i0 and i2 >= 0 and "
2184 "i0 >= 0 and i1 <= 100 and i3 <= 9 + 10i2 and i3 >= 1 + 10i2) }" },
2185 { 0, "[M] -> { [i1] : (i1 >= 2 and i1 <= M) or (i1 = M and M >= 1) }" },
2186 { 0, "{[x,y] : x,y >= 0; [x,y] : 10 <= x <= 20 and y >= -1 }" },
2187 { 1, "{ [x, y] : (x >= 1 and y >= 1 and x <= 2 and y <= 2) or "
2188 "(y = 3 and x = 1) }" },
2189 { 1, "[M] -> { [i0, i1, i2, i3, i4] : (i1 >= 3 and i4 >= 2 + i2 and "
2190 "i2 >= 2 and i0 >= 2 and i3 >= 1 + i2 and i0 <= M and "
2191 "i1 <= M and i3 <= M and i4 <= M) or "
2192 "(i1 >= 2 and i4 >= 1 + i2 and i2 >= 2 and i0 >= 2 and "
2193 "i3 >= 1 + i2 and i0 <= M and i1 <= -1 + M and i3 <= M and "
2194 "i4 <= -1 + M) }" },
2195 { 1, "{ [x, y] : (x >= 0 and y >= 0 and x <= 10 and y <= 10) or "
2196 "(x >= 1 and y >= 1 and x <= 11 and y <= 11) }" },
2197 { 0, "{[x,0] : x >= 0; [x,1] : x <= 20}" },
2198 { 1, "{ [x, 1 - x] : 0 <= x <= 1; [0,0] }" },
2199 { 1, "{ [0,0]; [i,i] : 1 <= i <= 10 }" },
2200 { 0, "{ [0,0]; [i,j] : 1 <= i,j <= 10 }" },
2201 { 1, "{ [0,0]; [i,2i] : 1 <= i <= 10 }" },
2202 { 0, "{ [0,0]; [i,2i] : 2 <= i <= 10 }" },
2203 { 0, "{ [1,0]; [i,2i] : 1 <= i <= 10 }" },
2204 { 0, "{ [0,1]; [i,2i] : 1 <= i <= 10 }" },
2205 { 0, "{ [a, b] : exists e : 2e = a and "
2206 "a >= 0 and (a <= 3 or (b <= 0 and b >= -4 + a)) }" },
2207 { 0, "{ [i, j, i', j'] : i <= 2 and j <= 2 and "
2208 "j' >= -1 + 2i + j - 2i' and i' <= -1 + i and "
2209 "j >= 1 and j' <= i + j - i' and i >= 1; "
2210 "[1, 1, 1, 1] }" },
2211 { 1, "{ [i,j] : exists a,b : i = 2a and j = 3b; "
2212 "[i,j] : exists a : j = 3a }" },
2213 { 1, "{ [a, b, c] : (c <= 7 - b and b <= 1 and b >= 0 and "
2214 "c >= 3 + b and b <= 3 + 8a and b >= -26 + 8a and "
2215 "a >= 3) or "
2216 "(b <= 1 and c <= 7 and b >= 0 and c >= 4 + b and "
2217 "b <= 3 + 8a and b >= -26 + 8a and a >= 3) }" },
2218 { 1, "{ [a, 0, c] : c >= 1 and c <= 29 and c >= -1 + 8a and "
2219 "c <= 6 + 8a and a >= 3; "
2220 "[a, -1, c] : c >= 1 and c <= 30 and c >= 8a and "
2221 "c <= 7 + 8a and a >= 3 and a <= 4 }" },
2222 { 1, "{ [x,y] : 0 <= x <= 2 and y >= 0 and x + 2y <= 4; "
2223 "[x,0] : 3 <= x <= 4 }" },
2224 { 1, "{ [x,y] : 0 <= x <= 3 and y >= 0 and x + 3y <= 6; "
2225 "[x,0] : 4 <= x <= 5 }" },
2226 { 0, "{ [x,y] : 0 <= x <= 2 and y >= 0 and x + 2y <= 4; "
2227 "[x,0] : 3 <= x <= 5 }" },
2228 { 0, "{ [x,y] : 0 <= x <= 2 and y >= 0 and x + y <= 4; "
2229 "[x,0] : 3 <= x <= 4 }" },
2230 { 1, "{ [i0, i1] : i0 <= 122 and i0 >= 1 and 128i1 >= -249 + i0 and "
2231 "i1 <= 0; "
2232 "[i0, 0] : i0 >= 123 and i0 <= 124 }" },
2233 { 1, "{ [0,0]; [1,1] }" },
2234 { 1, "[n] -> { [k] : 16k <= -1 + n and k >= 1; [0] : n >= 2 }" },
2235 { 1, "{ [k, ii, k - ii] : ii >= -6 + k and ii <= 6 and ii >= 1 and "
2236 "ii <= k;"
2237 "[k, 0, k] : k <= 6 and k >= 1 }" },
2238 { 1, "{ [i,j] : i = 4 j and 0 <= i <= 100;"
2239 "[i,j] : 1 <= i <= 100 and i >= 4j + 1 and i <= 4j + 2 }" },
2240 { 1, "{ [x,y] : x % 2 = 0 and y % 2 = 0; [x,x] : x % 2 = 0 }" },
2241 { 1, "[n] -> { [1] : n >= 0;"
2242 "[x] : exists (e0 = floor((x)/2): x >= 2 and "
2243 "2e0 >= -1 + x and 2e0 <= x and 2e0 <= n) }" },
2244 { 1, "[n] -> { [x, y] : exists (e0 = floor((x)/2), e1 = floor((y)/3): "
2245 "3e1 = y and x >= 2 and 2e0 >= -1 + x and "
2246 "2e0 <= x and 2e0 <= n);"
2247 "[1, y] : exists (e0 = floor((y)/3): 3e0 = y and "
2248 "n >= 0) }" },
2249 { 1, "[t1] -> { [i0] : (exists (e0 = floor((63t1)/64): "
2250 "128e0 >= -134 + 127t1 and t1 >= 2 and "
2251 "64e0 <= 63t1 and 64e0 >= -63 + 63t1)) or "
2252 "t1 = 1 }" },
2253 { 1, "{ [i, i] : exists (e0 = floor((1 + 2i)/3): 3e0 <= 2i and "
2254 "3e0 >= -1 + 2i and i <= 9 and i >= 1);"
2255 "[0, 0] }" },
2256 { 1, "{ [t1] : exists (e0 = floor((-11 + t1)/2): 2e0 = -11 + t1 and "
2257 "t1 >= 13 and t1 <= 16);"
2258 "[t1] : t1 <= 15 and t1 >= 12 }" },
2259 { 1, "{ [x,y] : x = 3y and 0 <= y <= 2; [-3,-1] }" },
2260 { 1, "{ [x,y] : 2x = 3y and 0 <= y <= 4; [-3,-2] }" },
2261 { 0, "{ [x,y] : 2x = 3y and 0 <= y <= 4; [-2,-2] }" },
2262 { 0, "{ [x,y] : 2x = 3y and 0 <= y <= 4; [-3,-1] }" },
2263 { 1, "{ [i] : exists j : i = 4 j and 0 <= i <= 100;"
2264 "[i] : exists j : 1 <= i <= 100 and i >= 4j + 1 and "
2265 "i <= 4j + 2 }" },
2266 { 1, "{ [c0] : (exists (e0 : c0 - 1 <= 3e0 <= c0)) or "
2267 "(exists (e0 : 3e0 = -2 + c0)) }" },
2268 { 0, "[n, b0, t0] -> "
2269 "{ [i0, i1, i2, i3, i4, i5, i6, i7, i8, i9, i10, i11, i12] : "
2270 "(exists (e0 = floor((-32b0 + i4)/1048576), "
2271 "e1 = floor((i8)/32): 1048576e0 = -32b0 + i4 and 32e1 = i8 and "
2272 "n <= 2147483647 and b0 <= 32767 and b0 >= 0 and "
2273 "32b0 <= -2 + n and t0 <= 31 and t0 >= 0 and i0 >= 8 + n and "
2274 "3i4 <= -96 + 3t0 + i0 and 3i4 >= -95 - n + 3t0 + i0 and "
2275 "i8 >= -157 + i0 - 4i4 and i8 >= 0 and "
2276 "i8 <= -33 + i0 - 4i4 and 3i8 <= -91 + 4n - i0)) or "
2277 "(exists (e0 = floor((-32b0 + i4)/1048576), "
2278 "e1 = floor((i8)/32): 1048576e0 = -32b0 + i4 and 32e1 = i8 and "
2279 "n <= 2147483647 and b0 <= 32767 and b0 >= 0 and "
2280 "32b0 <= -2 + n and t0 <= 31 and t0 >= 0 and i0 <= 7 + n and "
2281 "4i4 <= -3 + i0 and 3i4 <= -96 + 3t0 + i0 and "
2282 "3i4 >= -95 - n + 3t0 + i0 and i8 >= -157 + i0 - 4i4 and "
2283 "i8 >= 0 and i8 <= -4 + i0 - 3i4 and i8 <= -41 + i0));"
2284 "[i0, i1, i2, i3, 0, i5, i6, i7, i8, i9, i10, i11, i12] : "
2285 "(exists (e0 = floor((i8)/32): b0 = 0 and 32e0 = i8 and "
2286 "n <= 2147483647 and t0 <= 31 and t0 >= 0 and i0 >= 11 and "
2287 "i0 >= 96 - 3t0 and i0 <= 95 + n - 3t0 and i0 <= 7 + n and "
2288 "i8 >= -40 + i0 and i8 <= -10 + i0)) }" },
2289 { 0, "{ [i0, i1, i2] : "
2290 "(exists (e0, e1 = floor((i0)/32), e2 = floor((i1)/32): "
2291 "32e1 = i0 and 32e2 = i1 and i1 >= -31 + i0 and "
2292 "i1 <= 31 + i0 and i2 >= -30 + i0 and i2 >= -30 + i1 and "
2293 "32e0 >= -30 + i0 and 32e0 >= -30 + i1 and "
2294 "32e0 >= -31 + i2 and 32e0 <= 30 + i2 and 32e0 <= 31 + i1 and "
2295 "32e0 <= 31 + i0)) or "
2296 "i0 >= 0 }" },
2297 { 1, "{ [a, b, c] : 2b = 1 + a and 2c = 2 + a; [0, 0, 0] }" },
2298 { 1, "{ [a, a, b, c] : 32*floor((a)/32) = a and 2*floor((b)/2) = b and "
2299 "2*floor((c)/2) = c and 0 <= a <= 192;"
2300 "[224, 224, b, c] : 2*floor((b)/2) = b and 2*floor((c)/2) = c }"
2302 { 1, "[n] -> { [a,b] : (exists e : 1 <= a <= 7e and 9e <= b <= n) or "
2303 "(0 <= a <= b <= n) }" },
2304 { 1, "{ [a, b] : 0 <= a <= 2 and b >= 0 and "
2305 "((0 < b <= 13) or (2*floor((a + b)/2) >= -5 + a + 2b)) }" },
2306 { 1, "{ [a] : (2 <= a <= 5) or (a mod 2 = 1 and 1 <= a <= 5) }" },
2307 { 1, "{ [a, b, c] : (b = -1 + a and 0 < a <= 3 and "
2308 "9*floor((-4a + 2c)/9) <= -3 - 4a + 2c) or "
2309 "(exists (e0 = floor((-16 + 2c)/9): a = 4 and "
2310 "b = 3 and 9e0 <= -19 + 2c)) }" },
2311 { 1, "{ [a, b, c] : (b = -1 + a and 0 < a <= 3 and "
2312 "9*floor((-4a + 2c)/9) <= -3 - 4a + 2c) or "
2313 "(a = 4 and b = 3 and "
2314 "9*floor((-16 + 2c)/9) <= -19 + 2c) }" },
2315 { 0, "{ [a, b, c] : (b <= 2 and b <= -2 + a) or "
2316 "(b = -1 + a and 0 < a <= 3 and "
2317 "9*floor((-4a + 2c)/9) <= -3 - 4a + 2c) or "
2318 "(exists (e0 = floor((-16 + 2c)/9): a = 4 and "
2319 "b = 3 and 9e0 <= -19 + 2c)) }" },
2320 { 1, "{ [y, x] : (x - y) mod 3 = 2 and 2 <= y <= 200 and 0 <= x <= 2;"
2321 "[1, 0] }" },
2322 { 1, "{ [x, y] : (x - y) mod 3 = 2 and 2 <= y <= 200 and 0 <= x <= 2;"
2323 "[0, 1] }" },
2324 { 1, "{ [1, y] : -1 <= y <= 1; [x, -x] : 0 <= x <= 1 }" },
2325 { 1, "{ [1, y] : 0 <= y <= 1; [x, -x] : 0 <= x <= 1 }" },
2326 { 1, "{ [x, y] : 0 <= x <= 10 and x - 4*floor(x/4) <= 1 and y <= 0; "
2327 "[x, y] : 0 <= x <= 10 and x - 4*floor(x/4) > 1 and y <= 0; "
2328 "[x, y] : 0 <= x <= 10 and x - 5*floor(x/5) <= 1 and 0 < y; "
2329 "[x, y] : 0 <= x <= 10 and x - 5*floor(x/5) > 1 and 0 < y }" },
2330 { 1, "{ [x, 0] : 0 <= x <= 10 and x mod 2 = 0; "
2331 "[x, 0] : 0 <= x <= 10 and x mod 2 = 1; "
2332 "[x, y] : 0 <= x <= 10 and 1 <= y <= 10 }" },
2333 { 1, "{ [a] : a <= 8 and "
2334 "(a mod 10 = 7 or a mod 10 = 8 or a mod 10 = 9) }" },
2335 { 1, "{ [x, y] : 2y = -x and x <= 0 or "
2336 "x <= -1 and 2y <= -x - 1 and 2y >= x - 1 }" },
2337 { 0, "{ [x, y] : 2y = -x and x <= 0 or "
2338 "x <= -2 and 2y <= -x - 1 and 2y >= x - 1 }" },
2339 { 1, "{ [a] : (a <= 0 and 3*floor((a)/3) = a) or "
2340 "(a < 0 and 3*floor((a)/3) < a) }" },
2341 { 1, "{ [a] : (a <= 0 and 3*floor((a)/3) = a) or "
2342 "(a < -1 and 3*floor((a)/3) < a) }" },
2343 { 1, "{ [a, b] : a <= 1024 and b >= 0 and "
2344 "((-31 - a + b <= 32*floor((-1 - a)/32) <= -33 + b and "
2345 "32*floor((-1 - a)/32) <= -16 + b + 16*floor((-1 - a)/16))"
2346 "or (2 <= a <= 15 and b < a)) }" },
2347 { 1, "{ [a] : a > 0 and ((16*floor((a)/16) < a and "
2348 "32*floor((a)/32) < a) or a <= 15) }" },
2349 { 1, "{ [a, b, c, d] : (-a + d) mod 64 = 0 and a <= 8 and b <= 1 and "
2350 "10 - a <= c <= 3 and d >= 5 and 9 - 64b <= d <= 70;"
2351 "[a, b = 1, c, d] : (-a + d) mod 64 = 0 and a <= 8 and c >= 4 and "
2352 "10 - a <= c <= 5 and 5 <= d <= 73 - c }" },
2353 { 1, "[n, m] -> { S_0[i] : (-n + i) mod 3 = 0 and m >= 3 + n and "
2354 "i >= n and 3*floor((2 + n + 2m)/3) <= n + 3m - i; "
2355 "S_0[n] : n <= m <= 2 + n }" },
2356 { 1, "{ [a, b] : exists (e0: 0 <= a <= 1 and b >= 0 and "
2357 "2e0 >= -5 + a + 2b and 2e0 >= -1 + a + b and "
2358 "2e0 <= a + b); "
2359 "[a, b] : exists (e0: 0 <= a <= 1 and 2e0 >= -5 + a + 2b and "
2360 "2e0 >= -1 - a + b and 2e0 <= -a + b and "
2361 "2e0 < -a + 2b) }" },
2362 { 1, "{ [i, j, i - 8j] : 8 <= i <= 63 and -7 + i <= 8j <= i; "
2363 "[i, 0, i] : 0 <= i <= 7 }" },
2364 { 1, "{ [a, b] : a >= 0 and 0 <= b <= 1 - a; [1, 1] }" },
2365 { 0, "{ [a, b] : a >= 0 and 0 <= b <= 1 - a; [0, 2] }" },
2366 { 0, "{ [a, b] : a >= 0 and 0 <= b <= 1 - a; [-1, 3] }" },
2367 { 1, "{ [a, b] : a, b >= 0 and a + 2b <= 2; [1, 1] }" },
2368 { 0, "{ [a, b] : a, b >= 0 and a + 2b <= 2; [2, 1] }" },
2369 { 0, "{ [a, c] : (2 + a) mod 4 = 0 or "
2370 "(c = 4 + a and 4 * floor((a)/4) = a and a >= 0 and a <= 4) or "
2371 "(c = 3 + a and 4 * floor((-1 + a)/4) = -1 + a and "
2372 "a > 0 and a <= 5) }" },
2373 { 1, "{ [1, 0, 0]; [a, b, c] : -1 <= -a < b <= 0 and 2c > b }" },
2374 { 0, "{ [j, a, l] : a mod 2 = 0 and j <= 29 and a >= 2 and "
2375 "2a <= -5 + j and 32j + 2a + 2 <= 4l < 33j; "
2376 "[j, 0, l] : 4 <= j <= 29 and -3 + 33j <= 4l <= 33j }" },
2377 { 0, "{ [0:1, 0:1]; [0, 2:3] }" },
2378 { 1, "{ [a] : (a = 0 or ((1 + a) mod 2 = 0 and 0 < a <= 15) or "
2379 "((a) mod 2 = 0 and 0 < a <= 15)) }" },
2380 { 1, "{ rat: [0:2]; rat: [1:3] }" },
2383 /* A specialized coalescing test case that would result
2384 * in a segmentation fault or a failed assertion in earlier versions of isl.
2386 static int test_coalesce_special(struct isl_ctx *ctx)
2388 const char *str;
2389 isl_map *map1, *map2;
2391 str = "[y] -> { [S_L220_OUT[] -> T7[]] -> "
2392 "[[S_L309_IN[] -> T11[]] -> ce_imag2[1, o1]] : "
2393 "(y = 201 and o1 <= 239 and o1 >= 212) or "
2394 "(exists (e0 = [(y)/3]: 3e0 = y and y <= 198 and y >= 3 and "
2395 "o1 <= 239 and o1 >= 212)) or "
2396 "(exists (e0 = [(y)/3]: 3e0 = y and y <= 201 and y >= 3 and "
2397 "o1 <= 241 and o1 >= 240));"
2398 "[S_L220_OUT[] -> T7[]] -> "
2399 "[[S_L309_IN[] -> T11[]] -> ce_imag2[0, o1]] : "
2400 "(y = 2 and o1 <= 241 and o1 >= 212) or "
2401 "(exists (e0 = [(-2 + y)/3]: 3e0 = -2 + y and y <= 200 and "
2402 "y >= 5 and o1 <= 241 and o1 >= 212)) }";
2403 map1 = isl_map_read_from_str(ctx, str);
2404 map1 = isl_map_align_divs_internal(map1);
2405 map1 = isl_map_coalesce(map1);
2406 str = "[y] -> { [S_L220_OUT[] -> T7[]] -> "
2407 "[[S_L309_IN[] -> T11[]] -> ce_imag2[o0, o1]] : "
2408 "exists (e0 = [(-1 - y + o0)/3]: 3e0 = -1 - y + o0 and "
2409 "y <= 201 and o0 <= 2 and o1 >= 212 and o1 <= 241 and "
2410 "o0 >= 3 - y and o0 <= -2 + y and o0 >= 0) }";
2411 map2 = isl_map_read_from_str(ctx, str);
2412 map2 = isl_map_union(map2, map1);
2413 map2 = isl_map_align_divs_internal(map2);
2414 map2 = isl_map_coalesce(map2);
2415 isl_map_free(map2);
2416 if (!map2)
2417 return -1;
2419 return 0;
2422 /* Check that the union of the basic sets described by "str1" and "str2"
2423 * can be coalesced and that the result is equal to the union.
2424 * The explicit call to isl_basic_set_union prevents the implicit
2425 * equality constraints in the basic maps from being detected prior
2426 * to the call to isl_set_coalesce, at least at the point
2427 * where this function was introduced.
2429 static isl_stat test_coalesce_union(isl_ctx *ctx, const char *str1,
2430 const char *str2)
2432 isl_basic_set *bset1, *bset2;
2433 isl_set *set, *set2;
2434 isl_bool equal;
2436 bset1 = isl_basic_set_read_from_str(ctx, str1);
2437 bset2 = isl_basic_set_read_from_str(ctx, str2);
2438 set = isl_basic_set_union(bset1, bset2);
2439 set = isl_set_coalesce(set);
2441 bset1 = isl_basic_set_read_from_str(ctx, str1);
2442 bset2 = isl_basic_set_read_from_str(ctx, str2);
2443 set2 = isl_basic_set_union(bset1, bset2);
2445 equal = isl_set_is_equal(set, set2);
2446 isl_set_free(set);
2447 isl_set_free(set2);
2449 if (equal < 0)
2450 return isl_stat_error;
2451 if (!equal)
2452 isl_die(ctx, isl_error_unknown,
2453 "coalesced set not equal to input",
2454 return isl_stat_error);
2456 return isl_stat_non_null(set);
2459 /* A specialized coalescing test case that would result in an assertion
2460 * in an earlier version of isl. Use test_coalesce_union with
2461 * an explicit call to isl_basic_set_union to prevent the implicit
2462 * equality constraints in the first basic map from being detected prior
2463 * to the call to isl_set_coalesce, at least at the point
2464 * where this test case was introduced.
2466 static isl_stat test_coalesce_special2(struct isl_ctx *ctx)
2468 const char *str1;
2469 const char *str2;
2471 str1 = "{ [x, y] : x, y >= 0 and x + 2y <= 1 and 2x + y <= 1 }";
2472 str2 = "{ [x,0] : -1 <= x <= 1 and x mod 2 = 1 }";
2473 return test_coalesce_union(ctx, str1, str2);
2476 /* Check that calling isl_set_coalesce does not leave other sets
2477 * that may share some information with the input to isl_set_coalesce
2478 * in an inconsistent state.
2479 * In particular, older versions of isl would modify all copies
2480 * of the basic sets in the isl_set_coalesce input in a way
2481 * that could leave them in an inconsistent state.
2482 * The result of printing any other set containing one of these
2483 * basic sets would then result in an invalid set description.
2485 static int test_coalesce_special3(isl_ctx *ctx)
2487 const char *str;
2488 char *s;
2489 isl_set *set1, *set2;
2490 isl_printer *p;
2492 set1 = isl_set_read_from_str(ctx, "{ [0, 0, 0] }");
2493 str = "{ [a, b, a + b] : a >= 0 and b >= 0 and 0 < a + b }";
2494 set2 = isl_set_read_from_str(ctx, str);
2495 set1 = isl_set_union(set1, isl_set_copy(set2));
2496 set1 = isl_set_coalesce(set1);
2497 isl_set_free(set1);
2499 p = isl_printer_to_str(ctx);
2500 p = isl_printer_print_set(p, set2);
2501 isl_set_free(set2);
2502 s = isl_printer_get_str(p);
2503 isl_printer_free(p);
2504 set1 = isl_set_read_from_str(ctx, s);
2505 free(s);
2506 isl_set_free(set1);
2508 if (!set1)
2509 return -1;
2511 return 0;
2514 /* Check that calling isl_set_coalesce on the intersection of
2515 * the sets described by "s1" and "s2" does not leave other sets
2516 * that may share some information with the input to isl_set_coalesce
2517 * in an inconsistent state.
2518 * In particular, when isl_set_coalesce detects equality constraints,
2519 * it does not immediately perform Gaussian elimination on them,
2520 * but then it needs to ensure that it is performed at some point.
2521 * The input set has implicit equality constraints in the first disjunct.
2522 * It is constructed as an intersection, because otherwise
2523 * those equality constraints would already be detected during parsing.
2525 static isl_stat test_coalesce_intersection(isl_ctx *ctx,
2526 const char *s1, const char *s2)
2528 isl_set *set1, *set2;
2530 set1 = isl_set_read_from_str(ctx, s1);
2531 set2 = isl_set_read_from_str(ctx, s2);
2532 set1 = isl_set_intersect(set1, set2);
2533 isl_set_free(isl_set_coalesce(isl_set_copy(set1)));
2534 set1 = isl_set_coalesce(set1);
2535 isl_set_free(set1);
2537 if (!set1)
2538 return isl_stat_error;
2540 return isl_stat_ok;
2543 /* Check that calling isl_set_coalesce does not leave other sets
2544 * that may share some information with the input to isl_set_coalesce
2545 * in an inconsistent state, for the case where one disjunct
2546 * is a subset of the other.
2548 static isl_stat test_coalesce_special4(isl_ctx *ctx)
2550 const char *s1, *s2;
2552 s1 = "{ [a, b] : b <= 0 or a <= 1 }";
2553 s2 = "{ [a, b] : -1 <= -a < b }";
2554 return test_coalesce_intersection(ctx, s1, s2);
2557 /* Check that calling isl_set_coalesce does not leave other sets
2558 * that may share some information with the input to isl_set_coalesce
2559 * in an inconsistent state, for the case where two disjuncts
2560 * can be fused.
2562 static isl_stat test_coalesce_special5(isl_ctx *ctx)
2564 const char *s1, *s2;
2566 s1 = "{ [a, b, c] : b <= 0 }";
2567 s2 = "{ [a, b, c] : -1 <= -a < b and (c >= 0 or c < 0) }";
2568 return test_coalesce_intersection(ctx, s1, s2);
2571 /* Check that calling isl_set_coalesce does not leave other sets
2572 * that may share some information with the input to isl_set_coalesce
2573 * in an inconsistent state, for the case where two disjuncts
2574 * can be fused and where both disjuncts have implicit equality constraints.
2576 static isl_stat test_coalesce_special6(isl_ctx *ctx)
2578 const char *s1, *s2;
2580 s1 = "{ [a, b, c] : c <= 0 }";
2581 s2 = "{ [a, b, c] : 0 <= a <= b <= c or (0 <= b <= c and a > 0) }";
2582 return test_coalesce_intersection(ctx, s1, s2);
2585 /* A specialized coalescing test case that would result in an assertion failure
2586 * in an earlier version of isl. Use test_coalesce_union with
2587 * an explicit call to isl_basic_set_union to prevent the implicit
2588 * equality constraints in the basic maps from being detected prior
2589 * to the call to isl_set_coalesce, at least at the point
2590 * where this test case was introduced.
2592 static isl_stat test_coalesce_special7(isl_ctx *ctx)
2594 const char *str1;
2595 const char *str2;
2597 str1 = "{ [a, b, c=0:17] : a <= 7 and 2b <= 11 - a and "
2598 "c <= -7 + 2a and 2c >= - 3 + 3a - 2b }";
2599 str2 = "{ [a, b, c] : c > -15a and c >= -7 + 2a and c < 0 and "
2600 "3c <= -5 + 5a - 3b and 2b >= 11 - a }";
2601 return test_coalesce_union(ctx, str1, str2);
2604 /* A specialized coalescing test case that would result in a disjunct
2605 * getting dropped in an earlier version of isl. Use test_coalesce_union with
2606 * an explicit call to isl_basic_set_union to prevent the implicit
2607 * equality constraints in the basic maps from being detected prior
2608 * to the call to isl_set_coalesce, at least at the point
2609 * where this test case was introduced.
2611 static isl_stat test_coalesce_special8(isl_ctx *ctx)
2613 const char *str1;
2614 const char *str2;
2616 str1 = "{ [a, b, c] : 2c <= -a and b >= -a and b <= 5 and "
2617 "6c > -7a and 11c >= -5a - b and a <= 3 }";
2618 str2 = "{ [a, b, c] : 6c > -7a and b >= -a and b <= 5 and "
2619 "11c >= -5a - b and a >= 4 and 2b <= a and 2c <= -a }";
2620 return test_coalesce_union(ctx, str1, str2);
2623 /* Test the functionality of isl_set_coalesce.
2624 * That is, check that the output is always equal to the input
2625 * and in some cases that the result consists of a single disjunct.
2627 static int test_coalesce(struct isl_ctx *ctx)
2629 int i;
2631 for (i = 0; i < ARRAY_SIZE(coalesce_tests); ++i) {
2632 const char *str = coalesce_tests[i].str;
2633 int check_one = coalesce_tests[i].single_disjunct;
2634 if (test_coalesce_set(ctx, str, check_one) < 0)
2635 return -1;
2638 if (test_coalesce_unbounded_wrapping(ctx) < 0)
2639 return -1;
2640 if (test_coalesce_special(ctx) < 0)
2641 return -1;
2642 if (test_coalesce_special2(ctx) < 0)
2643 return -1;
2644 if (test_coalesce_special3(ctx) < 0)
2645 return -1;
2646 if (test_coalesce_special4(ctx) < 0)
2647 return -1;
2648 if (test_coalesce_special5(ctx) < 0)
2649 return -1;
2650 if (test_coalesce_special6(ctx) < 0)
2651 return -1;
2652 if (test_coalesce_special7(ctx) < 0)
2653 return -1;
2654 if (test_coalesce_special8(ctx) < 0)
2655 return -1;
2657 return 0;
2660 /* Construct a representation of the graph on the right of Figure 1
2661 * in "Computing the Transitive Closure of a Union of
2662 * Affine Integer Tuple Relations".
2664 static __isl_give isl_map *cocoa_fig_1_right_graph(isl_ctx *ctx)
2666 isl_set *dom;
2667 isl_map *up, *right;
2669 dom = isl_set_read_from_str(ctx,
2670 "{ [x,y] : x >= 0 and -2 x + 3 y >= 0 and x <= 3 and "
2671 "2 x - 3 y + 3 >= 0 }");
2672 right = isl_map_read_from_str(ctx,
2673 "{ [x,y] -> [x2,y2] : x2 = x + 1 and y2 = y }");
2674 up = isl_map_read_from_str(ctx,
2675 "{ [x,y] -> [x2,y2] : x2 = x and y2 = y + 1 }");
2676 right = isl_map_intersect_domain(right, isl_set_copy(dom));
2677 right = isl_map_intersect_range(right, isl_set_copy(dom));
2678 up = isl_map_intersect_domain(up, isl_set_copy(dom));
2679 up = isl_map_intersect_range(up, dom);
2680 return isl_map_union(up, right);
2683 /* Construct a representation of the power of the graph
2684 * on the right of Figure 1 in "Computing the Transitive Closure of
2685 * a Union of Affine Integer Tuple Relations".
2687 static __isl_give isl_map *cocoa_fig_1_right_power(isl_ctx *ctx)
2689 return isl_map_read_from_str(ctx,
2690 "{ [1] -> [[0,0] -> [0,1]]; [2] -> [[0,0] -> [1,1]]; "
2691 " [1] -> [[0,1] -> [1,1]]; [1] -> [[2,2] -> [3,2]]; "
2692 " [2] -> [[2,2] -> [3,3]]; [1] -> [[3,2] -> [3,3]] }");
2695 /* Construct a representation of the transitive closure of the graph
2696 * on the right of Figure 1 in "Computing the Transitive Closure of
2697 * a Union of Affine Integer Tuple Relations".
2699 static __isl_give isl_map *cocoa_fig_1_right_tc(isl_ctx *ctx)
2701 return isl_set_unwrap(isl_map_range(cocoa_fig_1_right_power(ctx)));
2704 static int test_closure(isl_ctx *ctx)
2706 const char *str;
2707 isl_map *map, *map2;
2708 isl_bool exact, equal;
2710 /* COCOA example 1 */
2711 map = isl_map_read_from_str(ctx,
2712 "[n] -> { [i,j] -> [i2,j2] : i2 = i + 1 and j2 = j + 1 and "
2713 "1 <= i and i < n and 1 <= j and j < n or "
2714 "i2 = i + 1 and j2 = j - 1 and "
2715 "1 <= i and i < n and 2 <= j and j <= n }");
2716 map = isl_map_power(map, &exact);
2717 assert(exact);
2718 isl_map_free(map);
2720 /* COCOA example 1 */
2721 map = isl_map_read_from_str(ctx,
2722 "[n] -> { [i,j] -> [i2,j2] : i2 = i + 1 and j2 = j + 1 and "
2723 "1 <= i and i < n and 1 <= j and j < n or "
2724 "i2 = i + 1 and j2 = j - 1 and "
2725 "1 <= i and i < n and 2 <= j and j <= n }");
2726 map = isl_map_transitive_closure(map, &exact);
2727 assert(exact);
2728 map2 = isl_map_read_from_str(ctx,
2729 "[n] -> { [i,j] -> [i2,j2] : exists (k1,k2,k : "
2730 "1 <= i and i < n and 1 <= j and j <= n and "
2731 "2 <= i2 and i2 <= n and 1 <= j2 and j2 <= n and "
2732 "i2 = i + k1 + k2 and j2 = j + k1 - k2 and "
2733 "k1 >= 0 and k2 >= 0 and k1 + k2 = k and k >= 1 )}");
2734 assert(isl_map_is_equal(map, map2));
2735 isl_map_free(map2);
2736 isl_map_free(map);
2738 map = isl_map_read_from_str(ctx,
2739 "[n] -> { [x] -> [y] : y = x + 1 and 0 <= x and x <= n and "
2740 " 0 <= y and y <= n }");
2741 map = isl_map_transitive_closure(map, &exact);
2742 map2 = isl_map_read_from_str(ctx,
2743 "[n] -> { [x] -> [y] : y > x and 0 <= x and x <= n and "
2744 " 0 <= y and y <= n }");
2745 assert(isl_map_is_equal(map, map2));
2746 isl_map_free(map2);
2747 isl_map_free(map);
2749 /* COCOA example 2 */
2750 map = isl_map_read_from_str(ctx,
2751 "[n] -> { [i,j] -> [i2,j2] : i2 = i + 2 and j2 = j + 2 and "
2752 "1 <= i and i < n - 1 and 1 <= j and j < n - 1 or "
2753 "i2 = i + 2 and j2 = j - 2 and "
2754 "1 <= i and i < n - 1 and 3 <= j and j <= n }");
2755 map = isl_map_transitive_closure(map, &exact);
2756 assert(exact);
2757 map2 = isl_map_read_from_str(ctx,
2758 "[n] -> { [i,j] -> [i2,j2] : exists (k1,k2,k : "
2759 "1 <= i and i < n - 1 and 1 <= j and j <= n and "
2760 "3 <= i2 and i2 <= n and 1 <= j2 and j2 <= n and "
2761 "i2 = i + 2 k1 + 2 k2 and j2 = j + 2 k1 - 2 k2 and "
2762 "k1 >= 0 and k2 >= 0 and k1 + k2 = k and k >= 1) }");
2763 assert(isl_map_is_equal(map, map2));
2764 isl_map_free(map);
2765 isl_map_free(map2);
2767 /* COCOA Fig.2 left */
2768 map = isl_map_read_from_str(ctx,
2769 "[n] -> { [i,j] -> [i2,j2] : i2 = i + 2 and j2 = j and "
2770 "i <= 2 j - 3 and i <= n - 2 and j <= 2 i - 1 and "
2771 "j <= n or "
2772 "i2 = i and j2 = j + 2 and i <= 2 j - 1 and i <= n and "
2773 "j <= 2 i - 3 and j <= n - 2 or "
2774 "i2 = i + 1 and j2 = j + 1 and i <= 2 j - 1 and "
2775 "i <= n - 1 and j <= 2 i - 1 and j <= n - 1 }");
2776 map = isl_map_transitive_closure(map, &exact);
2777 assert(exact);
2778 isl_map_free(map);
2780 /* COCOA Fig.2 right */
2781 map = isl_map_read_from_str(ctx,
2782 "[n] -> { [i,j] -> [i2,j2] : i2 = i + 3 and j2 = j and "
2783 "i <= 2 j - 4 and i <= n - 3 and j <= 2 i - 1 and "
2784 "j <= n or "
2785 "i2 = i and j2 = j + 3 and i <= 2 j - 1 and i <= n and "
2786 "j <= 2 i - 4 and j <= n - 3 or "
2787 "i2 = i + 1 and j2 = j + 1 and i <= 2 j - 1 and "
2788 "i <= n - 1 and j <= 2 i - 1 and j <= n - 1 }");
2789 map = isl_map_power(map, &exact);
2790 assert(exact);
2791 isl_map_free(map);
2793 /* COCOA Fig.2 right */
2794 map = isl_map_read_from_str(ctx,
2795 "[n] -> { [i,j] -> [i2,j2] : i2 = i + 3 and j2 = j and "
2796 "i <= 2 j - 4 and i <= n - 3 and j <= 2 i - 1 and "
2797 "j <= n or "
2798 "i2 = i and j2 = j + 3 and i <= 2 j - 1 and i <= n and "
2799 "j <= 2 i - 4 and j <= n - 3 or "
2800 "i2 = i + 1 and j2 = j + 1 and i <= 2 j - 1 and "
2801 "i <= n - 1 and j <= 2 i - 1 and j <= n - 1 }");
2802 map = isl_map_transitive_closure(map, &exact);
2803 assert(exact);
2804 map2 = isl_map_read_from_str(ctx,
2805 "[n] -> { [i,j] -> [i2,j2] : exists (k1,k2,k3,k : "
2806 "i <= 2 j - 1 and i <= n and j <= 2 i - 1 and "
2807 "j <= n and 3 + i + 2 j <= 3 n and "
2808 "3 + 2 i + j <= 3n and i2 <= 2 j2 -1 and i2 <= n and "
2809 "i2 <= 3 j2 - 4 and j2 <= 2 i2 -1 and j2 <= n and "
2810 "13 + 4 j2 <= 11 i2 and i2 = i + 3 k1 + k3 and "
2811 "j2 = j + 3 k2 + k3 and k1 >= 0 and k2 >= 0 and "
2812 "k3 >= 0 and k1 + k2 + k3 = k and k > 0) }");
2813 assert(isl_map_is_equal(map, map2));
2814 isl_map_free(map2);
2815 isl_map_free(map);
2817 map = cocoa_fig_1_right_graph(ctx);
2818 map = isl_map_transitive_closure(map, &exact);
2819 assert(exact);
2820 map2 = cocoa_fig_1_right_tc(ctx);
2821 assert(isl_map_is_equal(map, map2));
2822 isl_map_free(map2);
2823 isl_map_free(map);
2825 map = cocoa_fig_1_right_graph(ctx);
2826 map = isl_map_power(map, &exact);
2827 map2 = cocoa_fig_1_right_power(ctx);
2828 equal = isl_map_is_equal(map, map2);
2829 isl_map_free(map2);
2830 isl_map_free(map);
2831 if (equal < 0)
2832 return -1;
2833 if (!exact)
2834 isl_die(ctx, isl_error_unknown, "power not exact", return -1);
2835 if (!equal)
2836 isl_die(ctx, isl_error_unknown, "unexpected power", return -1);
2838 /* COCOA Theorem 1 counter example */
2839 map = isl_map_read_from_str(ctx,
2840 "{ [i,j] -> [i2,j2] : i = 0 and 0 <= j and j <= 1 and "
2841 "i2 = 1 and j2 = j or "
2842 "i = 0 and j = 0 and i2 = 0 and j2 = 1 }");
2843 map = isl_map_transitive_closure(map, &exact);
2844 assert(exact);
2845 isl_map_free(map);
2847 map = isl_map_read_from_str(ctx,
2848 "[m,n] -> { [i,j] -> [i2,j2] : i2 = i and j2 = j + 2 and "
2849 "1 <= i,i2 <= n and 1 <= j,j2 <= m or "
2850 "i2 = i + 1 and 3 <= j2 - j <= 4 and "
2851 "1 <= i,i2 <= n and 1 <= j,j2 <= m }");
2852 map = isl_map_transitive_closure(map, &exact);
2853 assert(exact);
2854 isl_map_free(map);
2856 /* Kelly et al 1996, fig 12 */
2857 map = isl_map_read_from_str(ctx,
2858 "[n] -> { [i,j] -> [i2,j2] : i2 = i and j2 = j + 1 and "
2859 "1 <= i,j,j+1 <= n or "
2860 "j = n and j2 = 1 and i2 = i + 1 and "
2861 "1 <= i,i+1 <= n }");
2862 map = isl_map_transitive_closure(map, &exact);
2863 assert(exact);
2864 map2 = isl_map_read_from_str(ctx,
2865 "[n] -> { [i,j] -> [i2,j2] : 1 <= j < j2 <= n and "
2866 "1 <= i <= n and i = i2 or "
2867 "1 <= i < i2 <= n and 1 <= j <= n and "
2868 "1 <= j2 <= n }");
2869 assert(isl_map_is_equal(map, map2));
2870 isl_map_free(map2);
2871 isl_map_free(map);
2873 /* Omega's closure4 */
2874 map = isl_map_read_from_str(ctx,
2875 "[m,n] -> { [x,y] -> [x2,y2] : x2 = x and y2 = y + 1 and "
2876 "1 <= x,y <= 10 or "
2877 "x2 = x + 1 and y2 = y and "
2878 "1 <= x <= 20 && 5 <= y <= 15 }");
2879 map = isl_map_transitive_closure(map, &exact);
2880 assert(exact);
2881 isl_map_free(map);
2883 map = isl_map_read_from_str(ctx,
2884 "[n] -> { [x] -> [y]: 1 <= n <= y - x <= 10 }");
2885 map = isl_map_transitive_closure(map, &exact);
2886 assert(!exact);
2887 map2 = isl_map_read_from_str(ctx,
2888 "[n] -> { [x] -> [y] : 1 <= n <= 10 and y >= n + x }");
2889 assert(isl_map_is_equal(map, map2));
2890 isl_map_free(map);
2891 isl_map_free(map2);
2893 str = "[n, m] -> { [i0, i1, i2, i3] -> [o0, o1, o2, o3] : "
2894 "i3 = 1 and o0 = i0 and o1 = -1 + i1 and o2 = -1 + i2 and "
2895 "o3 = -2 + i2 and i1 <= -1 + i0 and i1 >= 1 - m + i0 and "
2896 "i1 >= 2 and i1 <= n and i2 >= 3 and i2 <= 1 + n and i2 <= m }";
2897 map = isl_map_read_from_str(ctx, str);
2898 map = isl_map_transitive_closure(map, &exact);
2899 assert(exact);
2900 map2 = isl_map_read_from_str(ctx, str);
2901 assert(isl_map_is_equal(map, map2));
2902 isl_map_free(map);
2903 isl_map_free(map2);
2905 str = "{[0] -> [1]; [2] -> [3]}";
2906 map = isl_map_read_from_str(ctx, str);
2907 map = isl_map_transitive_closure(map, &exact);
2908 assert(exact);
2909 map2 = isl_map_read_from_str(ctx, str);
2910 assert(isl_map_is_equal(map, map2));
2911 isl_map_free(map);
2912 isl_map_free(map2);
2914 str = "[n] -> { [[i0, i1, 1, 0, i0] -> [i5, 1]] -> "
2915 "[[i0, -1 + i1, 2, 0, i0] -> [-1 + i5, 2]] : "
2916 "exists (e0 = [(3 - n)/3]: i5 >= 2 and i1 >= 2 and "
2917 "3i0 <= -1 + n and i1 <= -1 + n and i5 <= -1 + n and "
2918 "3e0 >= 1 - n and 3e0 <= 2 - n and 3i0 >= -2 + n); "
2919 "[[i0, i1, 2, 0, i0] -> [i5, 1]] -> "
2920 "[[i0, i1, 1, 0, i0] -> [-1 + i5, 2]] : "
2921 "exists (e0 = [(3 - n)/3]: i5 >= 2 and i1 >= 1 and "
2922 "3i0 <= -1 + n and i1 <= -1 + n and i5 <= -1 + n and "
2923 "3e0 >= 1 - n and 3e0 <= 2 - n and 3i0 >= -2 + n); "
2924 "[[i0, i1, 1, 0, i0] -> [i5, 2]] -> "
2925 "[[i0, -1 + i1, 2, 0, i0] -> [i5, 1]] : "
2926 "exists (e0 = [(3 - n)/3]: i1 >= 2 and i5 >= 1 and "
2927 "3i0 <= -1 + n and i1 <= -1 + n and i5 <= -1 + n and "
2928 "3e0 >= 1 - n and 3e0 <= 2 - n and 3i0 >= -2 + n); "
2929 "[[i0, i1, 2, 0, i0] -> [i5, 2]] -> "
2930 "[[i0, i1, 1, 0, i0] -> [i5, 1]] : "
2931 "exists (e0 = [(3 - n)/3]: i5 >= 1 and i1 >= 1 and "
2932 "3i0 <= -1 + n and i1 <= -1 + n and i5 <= -1 + n and "
2933 "3e0 >= 1 - n and 3e0 <= 2 - n and 3i0 >= -2 + n) }";
2934 map = isl_map_read_from_str(ctx, str);
2935 map = isl_map_transitive_closure(map, NULL);
2936 assert(map);
2937 isl_map_free(map);
2939 return 0;
2942 /* Check that the actual result of a boolean operation is equal
2943 * to the expected result.
2945 static isl_stat check_bool(isl_ctx *ctx, isl_bool actual, isl_bool expected)
2947 if (actual != expected)
2948 isl_die(ctx, isl_error_unknown,
2949 "incorrect boolean operation", return isl_stat_error);
2950 return isl_stat_ok;
2953 /* Test operations on isl_bool values.
2955 * This tests:
2957 * isl_bool_not
2958 * isl_bool_ok
2960 static int test_isl_bool(isl_ctx *ctx)
2962 if (check_bool(ctx, isl_bool_not(isl_bool_true), isl_bool_false) < 0)
2963 return -1;
2964 if (check_bool(ctx, isl_bool_not(isl_bool_false), isl_bool_true) < 0)
2965 return -1;
2966 if (check_bool(ctx, isl_bool_not(isl_bool_error), isl_bool_error) < 0)
2967 return -1;
2968 if (check_bool(ctx, isl_bool_ok(0), isl_bool_false) < 0)
2969 return -1;
2970 if (check_bool(ctx, isl_bool_ok(1), isl_bool_true) < 0)
2971 return -1;
2972 if (check_bool(ctx, isl_bool_ok(-1), isl_bool_true) < 0)
2973 return -1;
2974 if (check_bool(ctx, isl_bool_ok(2), isl_bool_true) < 0)
2975 return -1;
2976 if (check_bool(ctx, isl_bool_ok(-2), isl_bool_true) < 0)
2977 return -1;
2979 return 0;
2982 static int test_lex(struct isl_ctx *ctx)
2984 isl_space *space;
2985 isl_map *map;
2986 int empty;
2988 space = isl_space_set_alloc(ctx, 0, 0);
2989 map = isl_map_lex_le(space);
2990 empty = isl_map_is_empty(map);
2991 isl_map_free(map);
2993 if (empty < 0)
2994 return -1;
2995 if (empty)
2996 isl_die(ctx, isl_error_unknown,
2997 "expecting non-empty result", return -1);
2999 return 0;
3002 /* Inputs for isl_map_lexmin tests.
3003 * "map" is the input and "lexmin" is the expected result.
3005 struct {
3006 const char *map;
3007 const char *lexmin;
3008 } lexmin_tests [] = {
3009 { "{ [x] -> [y] : x <= y <= 10; [x] -> [5] : -8 <= x <= 8 }",
3010 "{ [x] -> [5] : 6 <= x <= 8; "
3011 "[x] -> [x] : x <= 5 or (9 <= x <= 10) }" },
3012 { "{ [x] -> [y] : 4y = x or 4y = -1 + x or 4y = -2 + x }",
3013 "{ [x] -> [y] : 4y = x or 4y = -1 + x or 4y = -2 + x }" },
3014 { "{ [x] -> [y] : x = 4y; [x] -> [y] : x = 2y }",
3015 "{ [x] -> [y] : (4y = x and x >= 0) or "
3016 "(exists (e0 = [(x)/4], e1 = [(-2 + x)/4]: 2y = x and "
3017 "4e1 = -2 + x and 4e0 <= -1 + x and 4e0 >= -3 + x)) or "
3018 "(exists (e0 = [(x)/4]: 2y = x and 4e0 = x and x <= -4)) }" },
3019 { "{ T[a] -> S[b, c] : a = 4b-2c and c >= b }",
3020 "{ T[a] -> S[b, c] : 2b = a and 2c = a }" },
3021 /* Check that empty pieces are properly combined. */
3022 { "[K, N] -> { [x, y] -> [a, b] : K+2<=N<=K+4 and x>=4 and "
3023 "2N-6<=x<K+N and N-1<=a<=K+N-1 and N+b-6<=a<=2N-4 and "
3024 "b<=2N-3K+a and 3b<=4N-K+1 and b>=N and a>=x+1 }",
3025 "[K, N] -> { [x, y] -> [1 + x, N] : x >= -6 + 2N and "
3026 "x <= -5 + 2N and x >= -1 + 3K - N and x <= -2 + K + N and "
3027 "x >= 4 }" },
3028 { "{ [i, k, j] -> [a, b, c, d] : 8*floor((b)/8) = b and k <= 255 and "
3029 "a <= 255 and c <= 255 and d <= 255 - j and "
3030 "255 - j <= 7d <= 7 - i and 240d <= 239 + a and "
3031 "247d <= 247 + k - j and 247d <= 247 + k - b and "
3032 "247d <= 247 + i and 248 - b <= 248d <= c and "
3033 "254d >= i - a + b and 254d >= -a + b and "
3034 "255d >= -i + a - b and 1792d >= -63736 + 257b }",
3035 "{ [i, k, j] -> "
3036 "[-127762 + i + 502j, -62992 + 248j, 63240 - 248j, 255 - j] : "
3037 "k <= 255 and 7j >= 1778 + i and 246j >= 62738 - k and "
3038 "247j >= 62738 - i and 509j <= 129795 + i and "
3039 "742j >= 188724 - i; "
3040 "[0, k, j] -> [1, 0, 248, 1] : k <= 255 and 248 <= j <= 254, k }" },
3041 { "{ [a] -> [b] : 0 <= b <= 255 and -509 + a <= 512b < a and "
3042 "16*floor((8 + b)/16) <= 7 + b; "
3043 "[a] -> [1] }",
3044 "{ [a] -> [b = 1] : a >= 510 or a <= 0; "
3045 "[a] -> [b = 0] : 0 < a <= 509 }" },
3046 { "{ rat: [i] : 1 <= 2i <= 9 }", "{ rat: [i] : 2i = 1 }" },
3047 { "{ rat: [i] : 1 <= 2i <= 9 or i >= 10 }", "{ rat: [i] : 2i = 1 }" },
3048 { "{ rat: [i] : 21 <= 2i <= 29 or i = 5 }", "{ rat: [5] }" },
3051 static int test_lexmin(struct isl_ctx *ctx)
3053 int i;
3054 int equal;
3055 const char *str;
3056 isl_basic_map *bmap;
3057 isl_map *map, *map2;
3058 isl_set *set;
3059 isl_set *set2;
3060 isl_pw_multi_aff *pma;
3062 str = "[p0, p1] -> { [] -> [] : "
3063 "exists (e0 = [(2p1)/3], e1, e2, e3 = [(3 - p1 + 3e0)/3], "
3064 "e4 = [(p1)/3], e5 = [(p1 + 3e4)/3]: "
3065 "3e0 >= -2 + 2p1 and 3e0 >= p1 and 3e3 >= 1 - p1 + 3e0 and "
3066 "3e0 <= 2p1 and 3e3 >= -2 + p1 and 3e3 <= -1 + p1 and p1 >= 3 and "
3067 "3e5 >= -2 + 2p1 and 3e5 >= p1 and 3e5 <= -1 + p1 + 3e4 and "
3068 "3e4 <= p1 and 3e4 >= -2 + p1 and e3 <= -1 + e0 and "
3069 "3e4 >= 6 - p1 + 3e1 and 3e1 >= p1 and 3e5 >= -2 + p1 + 3e4 and "
3070 "2e4 >= 3 - p1 + 2e1 and e4 <= e1 and 3e3 <= 2 - p1 + 3e0 and "
3071 "e5 >= 1 + e1 and 3e4 >= 6 - 2p1 + 3e1 and "
3072 "p0 >= 2 and p1 >= p0 and 3e2 >= p1 and 3e4 >= 6 - p1 + 3e2 and "
3073 "e2 <= e1 and e3 >= 1 and e4 <= e2) }";
3074 map = isl_map_read_from_str(ctx, str);
3075 map = isl_map_lexmin(map);
3076 isl_map_free(map);
3077 if (!map)
3078 return -1;
3080 str = "[C] -> { [obj,a,b,c] : obj <= 38 a + 7 b + 10 c and "
3081 "a + b <= 1 and c <= 10 b and c <= C and a,b,c,C >= 0 }";
3082 set = isl_set_read_from_str(ctx, str);
3083 set = isl_set_lexmax(set);
3084 str = "[C] -> { [obj,a,b,c] : C = 8 }";
3085 set2 = isl_set_read_from_str(ctx, str);
3086 set = isl_set_intersect(set, set2);
3087 assert(!isl_set_is_empty(set));
3088 isl_set_free(set);
3090 for (i = 0; i < ARRAY_SIZE(lexmin_tests); ++i) {
3091 map = isl_map_read_from_str(ctx, lexmin_tests[i].map);
3092 map = isl_map_lexmin(map);
3093 map2 = isl_map_read_from_str(ctx, lexmin_tests[i].lexmin);
3094 equal = isl_map_is_equal(map, map2);
3095 isl_map_free(map);
3096 isl_map_free(map2);
3098 if (equal < 0)
3099 return -1;
3100 if (!equal)
3101 isl_die(ctx, isl_error_unknown,
3102 "unexpected result", return -1);
3105 str = "{ [i] -> [i', j] : j = i - 8i' and i' >= 0 and i' <= 7 and "
3106 " 8i' <= i and 8i' >= -7 + i }";
3107 bmap = isl_basic_map_read_from_str(ctx, str);
3108 pma = isl_basic_map_lexmin_pw_multi_aff(isl_basic_map_copy(bmap));
3109 map2 = isl_map_from_pw_multi_aff(pma);
3110 map = isl_map_from_basic_map(bmap);
3111 assert(isl_map_is_equal(map, map2));
3112 isl_map_free(map);
3113 isl_map_free(map2);
3115 str = "[i] -> { [i', j] : j = i - 8i' and i' >= 0 and i' <= 7 and "
3116 " 8i' <= i and 8i' >= -7 + i }";
3117 set = isl_set_read_from_str(ctx, str);
3118 pma = isl_set_lexmin_pw_multi_aff(isl_set_copy(set));
3119 set2 = isl_set_from_pw_multi_aff(pma);
3120 equal = isl_set_is_equal(set, set2);
3121 isl_set_free(set);
3122 isl_set_free(set2);
3123 if (equal < 0)
3124 return -1;
3125 if (!equal)
3126 isl_die(ctx, isl_error_unknown,
3127 "unexpected difference between set and "
3128 "piecewise affine expression", return -1);
3130 return 0;
3133 /* Inputs for isl_pw_multi_aff_max_multi_val tests.
3134 * "pma" is the input.
3135 * "res" is the expected result.
3137 static struct {
3138 const char *pma;
3139 const char *res;
3140 } opt_pw_tests[] = {
3141 { "{ [-1] -> [-1]; [1] -> [1] }", "{ [1] }" },
3142 { "{ [a, b] -> [floor((b - 2*floor((-a)/4))/5)] : "
3143 "0 <= a, b <= 100 and b mod 2 = 0}", "{ [30] }" },
3144 { "[N] -> { [i,j] -> A[i, -i, i + j] : 0 <= i,j <= N <= 10 }",
3145 "{ A[10, 0, 20] }" },
3146 { "[N] -> {A[N, -N, 2N] : 0 <= N }", "{ A[infty, 0, infty] }" },
3149 /* Perform basic isl_pw_multi_aff_max_multi_val tests.
3151 static isl_stat test_pw_max(struct isl_ctx *ctx)
3153 int i;
3154 isl_pw_multi_aff *pma;
3155 isl_multi_val *mv;
3156 isl_stat r;
3158 for (i = 0; i < ARRAY_SIZE(opt_pw_tests); ++i) {
3159 pma = isl_pw_multi_aff_read_from_str(ctx, opt_pw_tests[i].pma);
3160 mv = isl_pw_multi_aff_max_multi_val(pma);
3161 r = multi_val_check_plain_equal(mv, opt_pw_tests[i].res);
3162 isl_multi_val_free(mv);
3164 if (r < 0)
3165 return isl_stat_error;
3168 return isl_stat_ok;
3171 /* A specialized isl_set_min_val test case that would return the wrong result
3172 * in earlier versions of isl.
3173 * The explicit call to isl_basic_set_union prevents the second basic set
3174 * from being determined to be empty prior to the call to isl_set_min_val,
3175 * at least at the point where this test case was introduced.
3177 static int test_min_special(isl_ctx *ctx)
3179 const char *str;
3180 isl_basic_set *bset1, *bset2;
3181 isl_set *set;
3182 isl_aff *obj;
3183 isl_val *res;
3184 int ok;
3186 str = "{ [a, b] : a >= 2 and b >= 0 and 14 - a <= b <= 9 }";
3187 bset1 = isl_basic_set_read_from_str(ctx, str);
3188 str = "{ [a, b] : 1 <= a, b and a + b <= 1 }";
3189 bset2 = isl_basic_set_read_from_str(ctx, str);
3190 set = isl_basic_set_union(bset1, bset2);
3191 obj = isl_aff_read_from_str(ctx, "{ [a, b] -> [a] }");
3193 res = isl_set_min_val(set, obj);
3194 ok = isl_val_cmp_si(res, 5) == 0;
3196 isl_aff_free(obj);
3197 isl_set_free(set);
3198 isl_val_free(res);
3200 if (!res)
3201 return -1;
3202 if (!ok)
3203 isl_die(ctx, isl_error_unknown, "unexpected minimum",
3204 return -1);
3206 return 0;
3209 /* A specialized isl_set_min_val test case that would return an error
3210 * in earlier versions of isl.
3212 static int test_min_special2(isl_ctx *ctx)
3214 const char *str;
3215 isl_basic_set *bset;
3216 isl_aff *obj;
3217 isl_val *res;
3219 str = "{ [i, j, k] : 2j = i and 2k = i + 1 and i >= 2 }";
3220 bset = isl_basic_set_read_from_str(ctx, str);
3222 obj = isl_aff_read_from_str(ctx, "{ [i, j, k] -> [i] }");
3224 res = isl_basic_set_max_val(bset, obj);
3226 isl_basic_set_free(bset);
3227 isl_aff_free(obj);
3228 isl_val_free(res);
3230 if (!res)
3231 return -1;
3233 return 0;
3236 /* Check that the result of isl_set_min_multi_pw_aff
3237 * on the union of the sets with string descriptions "s1" and "s2"
3238 * consists of a single expression (on a single cell).
3240 static isl_stat check_single_expr_min(isl_ctx *ctx, const char *s1,
3241 const char *s2)
3243 isl_size n;
3244 isl_set *set1, *set2;
3245 isl_multi_pw_aff *mpa;
3246 isl_pw_multi_aff *pma;
3248 set1 = isl_set_read_from_str(ctx, s1);
3249 set2 = isl_set_read_from_str(ctx, s2);
3250 set1 = isl_set_union(set1, set2);
3251 mpa = isl_set_min_multi_pw_aff(set1);
3252 pma = isl_pw_multi_aff_from_multi_pw_aff(mpa);
3253 n = isl_pw_multi_aff_n_piece(pma);
3254 isl_pw_multi_aff_free(pma);
3256 if (n < 0)
3257 return isl_stat_error;
3258 if (n != 1)
3259 isl_die(ctx, isl_error_unknown, "expecting single expression",
3260 return isl_stat_error);
3261 return isl_stat_ok;
3264 /* A specialized isl_set_min_multi_pw_aff test that checks
3265 * that the minimum of 2N and 3N for N >= 0 is represented
3266 * by a single expression, without splitting off the special case N = 0.
3267 * Do this for both orderings.
3269 static int test_min_mpa(isl_ctx *ctx)
3271 const char *s1, *s2;
3273 s1 = "[N=0:] -> { [1, 3N:] }";
3274 s2 = "[N=0:] -> { [10, 2N:] }";
3275 if (check_single_expr_min(ctx, s1, s2) < 0)
3276 return -1;
3277 if (check_single_expr_min(ctx, s2, s1) < 0)
3278 return -1;
3280 return 0;
3283 struct {
3284 const char *set;
3285 const char *obj;
3286 __isl_give isl_val *(*fn)(__isl_keep isl_set *set,
3287 __isl_keep isl_aff *obj);
3288 const char *res;
3289 } opt_tests[] = {
3290 { "{ [-1]; [1] }", "{ [x] -> [x] }", &isl_set_min_val, "-1" },
3291 { "{ [-1]; [1] }", "{ [x] -> [x] }", &isl_set_max_val, "1" },
3292 { "{ [a, b] : 0 <= a, b <= 100 and b mod 2 = 0}",
3293 "{ [a, b] -> [floor((b - 2*floor((-a)/4))/5)] }",
3294 &isl_set_max_val, "30" },
3298 /* Perform basic isl_set_min_val and isl_set_max_val tests.
3299 * In particular, check the results on non-convex inputs.
3301 static int test_min(struct isl_ctx *ctx)
3303 int i;
3304 isl_set *set;
3305 isl_aff *obj;
3306 isl_val *val, *res;
3307 isl_bool ok;
3309 for (i = 0; i < ARRAY_SIZE(opt_tests); ++i) {
3310 set = isl_set_read_from_str(ctx, opt_tests[i].set);
3311 obj = isl_aff_read_from_str(ctx, opt_tests[i].obj);
3312 res = isl_val_read_from_str(ctx, opt_tests[i].res);
3313 val = opt_tests[i].fn(set, obj);
3314 ok = isl_val_eq(res, val);
3315 isl_val_free(res);
3316 isl_val_free(val);
3317 isl_aff_free(obj);
3318 isl_set_free(set);
3320 if (ok < 0)
3321 return -1;
3322 if (!ok)
3323 isl_die(ctx, isl_error_unknown,
3324 "unexpected optimum", return -1);
3327 if (test_pw_max(ctx) < 0)
3328 return -1;
3329 if (test_min_special(ctx) < 0)
3330 return -1;
3331 if (test_min_special2(ctx) < 0)
3332 return -1;
3334 return 0;
3337 struct must_may {
3338 isl_map *must;
3339 isl_map *may;
3342 static isl_stat collect_must_may(__isl_take isl_map *dep, int must,
3343 void *dep_user, void *user)
3345 struct must_may *mm = (struct must_may *)user;
3347 if (must)
3348 mm->must = isl_map_union(mm->must, dep);
3349 else
3350 mm->may = isl_map_union(mm->may, dep);
3352 return isl_stat_ok;
3355 static int common_space(void *first, void *second)
3357 int depth = *(int *)first;
3358 return 2 * depth;
3361 static int map_is_equal(__isl_keep isl_map *map, const char *str)
3363 isl_map *map2;
3364 int equal;
3366 if (!map)
3367 return -1;
3369 map2 = isl_map_read_from_str(map->ctx, str);
3370 equal = isl_map_is_equal(map, map2);
3371 isl_map_free(map2);
3373 return equal;
3376 static int map_check_equal(__isl_keep isl_map *map, const char *str)
3378 int equal;
3380 equal = map_is_equal(map, str);
3381 if (equal < 0)
3382 return -1;
3383 if (!equal)
3384 isl_die(isl_map_get_ctx(map), isl_error_unknown,
3385 "result not as expected", return -1);
3386 return 0;
3389 /* Is "set" equal to the set described by "str"?
3391 static isl_bool set_is_equal(__isl_keep isl_set *set, const char *str)
3393 isl_set *set2;
3394 isl_bool equal;
3396 if (!set)
3397 return isl_bool_error;
3399 set2 = isl_set_read_from_str(isl_set_get_ctx(set), str);
3400 equal = isl_set_is_equal(set, set2);
3401 isl_set_free(set2);
3403 return equal;
3406 /* Check that "set" is equal to the set described by "str".
3408 static isl_stat set_check_equal(__isl_keep isl_set *set, const char *str)
3410 isl_bool equal;
3412 equal = set_is_equal(set, str);
3413 if (equal < 0)
3414 return isl_stat_error;
3415 if (!equal)
3416 isl_die(isl_set_get_ctx(set), isl_error_unknown,
3417 "result not as expected", return isl_stat_error);
3418 return isl_stat_ok;
3421 /* Is "uset" equal to the union set described by "str"?
3423 static isl_bool uset_is_equal(__isl_keep isl_union_set *uset, const char *str)
3425 isl_union_set *uset2;
3426 isl_bool equal;
3428 if (!uset)
3429 return isl_bool_error;
3431 uset2 = isl_union_set_read_from_str(isl_union_set_get_ctx(uset), str);
3432 equal = isl_union_set_is_equal(uset, uset2);
3433 isl_union_set_free(uset2);
3435 return equal;
3438 /* Check that "uset" is equal to the union set described by "str".
3440 static isl_stat uset_check_equal(__isl_keep isl_union_set *uset,
3441 const char *str)
3443 isl_bool equal;
3445 equal = uset_is_equal(uset, str);
3446 if (equal < 0)
3447 return isl_stat_error;
3448 if (!equal)
3449 isl_die(isl_union_set_get_ctx(uset), isl_error_unknown,
3450 "result not as expected", return isl_stat_error);
3451 return isl_stat_ok;
3454 static int test_dep(struct isl_ctx *ctx)
3456 const char *str;
3457 isl_space *space;
3458 isl_map *map;
3459 isl_access_info *ai;
3460 isl_flow *flow;
3461 int depth;
3462 struct must_may mm;
3464 depth = 3;
3466 str = "{ [2,i,0] -> [i] : 0 <= i <= 10 }";
3467 map = isl_map_read_from_str(ctx, str);
3468 ai = isl_access_info_alloc(map, &depth, &common_space, 2);
3470 str = "{ [0,i,0] -> [i] : 0 <= i <= 10 }";
3471 map = isl_map_read_from_str(ctx, str);
3472 ai = isl_access_info_add_source(ai, map, 1, &depth);
3474 str = "{ [1,i,0] -> [5] : 0 <= i <= 10 }";
3475 map = isl_map_read_from_str(ctx, str);
3476 ai = isl_access_info_add_source(ai, map, 1, &depth);
3478 flow = isl_access_info_compute_flow(ai);
3479 space = isl_space_alloc(ctx, 0, 3, 3);
3480 mm.must = isl_map_empty(isl_space_copy(space));
3481 mm.may = isl_map_empty(space);
3483 isl_flow_foreach(flow, collect_must_may, &mm);
3485 str = "{ [0,i,0] -> [2,i,0] : (0 <= i <= 4) or (6 <= i <= 10); "
3486 " [1,10,0] -> [2,5,0] }";
3487 assert(map_is_equal(mm.must, str));
3488 str = "{ [i,j,k] -> [l,m,n] : 1 = 0 }";
3489 assert(map_is_equal(mm.may, str));
3491 isl_map_free(mm.must);
3492 isl_map_free(mm.may);
3493 isl_flow_free(flow);
3496 str = "{ [2,i,0] -> [i] : 0 <= i <= 10 }";
3497 map = isl_map_read_from_str(ctx, str);
3498 ai = isl_access_info_alloc(map, &depth, &common_space, 2);
3500 str = "{ [0,i,0] -> [i] : 0 <= i <= 10 }";
3501 map = isl_map_read_from_str(ctx, str);
3502 ai = isl_access_info_add_source(ai, map, 1, &depth);
3504 str = "{ [1,i,0] -> [5] : 0 <= i <= 10 }";
3505 map = isl_map_read_from_str(ctx, str);
3506 ai = isl_access_info_add_source(ai, map, 0, &depth);
3508 flow = isl_access_info_compute_flow(ai);
3509 space = isl_space_alloc(ctx, 0, 3, 3);
3510 mm.must = isl_map_empty(isl_space_copy(space));
3511 mm.may = isl_map_empty(space);
3513 isl_flow_foreach(flow, collect_must_may, &mm);
3515 str = "{ [0,i,0] -> [2,i,0] : (0 <= i <= 4) or (6 <= i <= 10) }";
3516 assert(map_is_equal(mm.must, str));
3517 str = "{ [0,5,0] -> [2,5,0]; [1,i,0] -> [2,5,0] : 0 <= i <= 10 }";
3518 assert(map_is_equal(mm.may, str));
3520 isl_map_free(mm.must);
3521 isl_map_free(mm.may);
3522 isl_flow_free(flow);
3525 str = "{ [2,i,0] -> [i] : 0 <= i <= 10 }";
3526 map = isl_map_read_from_str(ctx, str);
3527 ai = isl_access_info_alloc(map, &depth, &common_space, 2);
3529 str = "{ [0,i,0] -> [i] : 0 <= i <= 10 }";
3530 map = isl_map_read_from_str(ctx, str);
3531 ai = isl_access_info_add_source(ai, map, 0, &depth);
3533 str = "{ [1,i,0] -> [5] : 0 <= i <= 10 }";
3534 map = isl_map_read_from_str(ctx, str);
3535 ai = isl_access_info_add_source(ai, map, 0, &depth);
3537 flow = isl_access_info_compute_flow(ai);
3538 space = isl_space_alloc(ctx, 0, 3, 3);
3539 mm.must = isl_map_empty(isl_space_copy(space));
3540 mm.may = isl_map_empty(space);
3542 isl_flow_foreach(flow, collect_must_may, &mm);
3544 str = "{ [0,i,0] -> [2,i,0] : 0 <= i <= 10; "
3545 " [1,i,0] -> [2,5,0] : 0 <= i <= 10 }";
3546 assert(map_is_equal(mm.may, str));
3547 str = "{ [i,j,k] -> [l,m,n] : 1 = 0 }";
3548 assert(map_is_equal(mm.must, str));
3550 isl_map_free(mm.must);
3551 isl_map_free(mm.may);
3552 isl_flow_free(flow);
3555 str = "{ [0,i,2] -> [i] : 0 <= i <= 10 }";
3556 map = isl_map_read_from_str(ctx, str);
3557 ai = isl_access_info_alloc(map, &depth, &common_space, 2);
3559 str = "{ [0,i,0] -> [i] : 0 <= i <= 10 }";
3560 map = isl_map_read_from_str(ctx, str);
3561 ai = isl_access_info_add_source(ai, map, 0, &depth);
3563 str = "{ [0,i,1] -> [5] : 0 <= i <= 10 }";
3564 map = isl_map_read_from_str(ctx, str);
3565 ai = isl_access_info_add_source(ai, map, 0, &depth);
3567 flow = isl_access_info_compute_flow(ai);
3568 space = isl_space_alloc(ctx, 0, 3, 3);
3569 mm.must = isl_map_empty(isl_space_copy(space));
3570 mm.may = isl_map_empty(space);
3572 isl_flow_foreach(flow, collect_must_may, &mm);
3574 str = "{ [0,i,0] -> [0,i,2] : 0 <= i <= 10; "
3575 " [0,i,1] -> [0,5,2] : 0 <= i <= 5 }";
3576 assert(map_is_equal(mm.may, str));
3577 str = "{ [i,j,k] -> [l,m,n] : 1 = 0 }";
3578 assert(map_is_equal(mm.must, str));
3580 isl_map_free(mm.must);
3581 isl_map_free(mm.may);
3582 isl_flow_free(flow);
3585 str = "{ [0,i,1] -> [i] : 0 <= i <= 10 }";
3586 map = isl_map_read_from_str(ctx, str);
3587 ai = isl_access_info_alloc(map, &depth, &common_space, 2);
3589 str = "{ [0,i,0] -> [i] : 0 <= i <= 10 }";
3590 map = isl_map_read_from_str(ctx, str);
3591 ai = isl_access_info_add_source(ai, map, 0, &depth);
3593 str = "{ [0,i,2] -> [5] : 0 <= i <= 10 }";
3594 map = isl_map_read_from_str(ctx, str);
3595 ai = isl_access_info_add_source(ai, map, 0, &depth);
3597 flow = isl_access_info_compute_flow(ai);
3598 space = isl_space_alloc(ctx, 0, 3, 3);
3599 mm.must = isl_map_empty(isl_space_copy(space));
3600 mm.may = isl_map_empty(space);
3602 isl_flow_foreach(flow, collect_must_may, &mm);
3604 str = "{ [0,i,0] -> [0,i,1] : 0 <= i <= 10; "
3605 " [0,i,2] -> [0,5,1] : 0 <= i <= 4 }";
3606 assert(map_is_equal(mm.may, str));
3607 str = "{ [i,j,k] -> [l,m,n] : 1 = 0 }";
3608 assert(map_is_equal(mm.must, str));
3610 isl_map_free(mm.must);
3611 isl_map_free(mm.may);
3612 isl_flow_free(flow);
3615 depth = 5;
3617 str = "{ [1,i,0,0,0] -> [i,j] : 0 <= i <= 10 and 0 <= j <= 10 }";
3618 map = isl_map_read_from_str(ctx, str);
3619 ai = isl_access_info_alloc(map, &depth, &common_space, 1);
3621 str = "{ [0,i,0,j,0] -> [i,j] : 0 <= i <= 10 and 0 <= j <= 10 }";
3622 map = isl_map_read_from_str(ctx, str);
3623 ai = isl_access_info_add_source(ai, map, 1, &depth);
3625 flow = isl_access_info_compute_flow(ai);
3626 space = isl_space_alloc(ctx, 0, 5, 5);
3627 mm.must = isl_map_empty(isl_space_copy(space));
3628 mm.may = isl_map_empty(space);
3630 isl_flow_foreach(flow, collect_must_may, &mm);
3632 str = "{ [0,i,0,j,0] -> [1,i,0,0,0] : 0 <= i,j <= 10 }";
3633 assert(map_is_equal(mm.must, str));
3634 str = "{ [0,0,0,0,0] -> [0,0,0,0,0] : 1 = 0 }";
3635 assert(map_is_equal(mm.may, str));
3637 isl_map_free(mm.must);
3638 isl_map_free(mm.may);
3639 isl_flow_free(flow);
3641 return 0;
3644 /* Check that the dependence analysis proceeds without errors.
3645 * Earlier versions of isl would break down during the analysis
3646 * due to the use of the wrong spaces.
3648 static int test_flow(isl_ctx *ctx)
3650 const char *str;
3651 isl_union_map *access, *schedule;
3652 isl_union_map *must_dep, *may_dep;
3653 int r;
3655 str = "{ S0[j] -> i[]; S1[j,i] -> i[]; S2[] -> i[]; S3[] -> i[] }";
3656 access = isl_union_map_read_from_str(ctx, str);
3657 str = "{ S0[j] -> [0,j,0,0] : 0 <= j < 10; "
3658 "S1[j,i] -> [0,j,1,i] : 0 <= j < i < 10; "
3659 "S2[] -> [1,0,0,0]; "
3660 "S3[] -> [-1,0,0,0] }";
3661 schedule = isl_union_map_read_from_str(ctx, str);
3662 r = isl_union_map_compute_flow(access, isl_union_map_copy(access),
3663 isl_union_map_copy(access), schedule,
3664 &must_dep, &may_dep, NULL, NULL);
3665 isl_union_map_free(may_dep);
3666 isl_union_map_free(must_dep);
3668 return r;
3671 struct {
3672 const char *map;
3673 int sv;
3674 } sv_tests[] = {
3675 { "[N] -> { [i] -> [f] : 0 <= i <= N and 0 <= i - 10 f <= 9 }", 1 },
3676 { "[N] -> { [i] -> [f] : 0 <= i <= N and 0 <= i - 10 f <= 10 }", 0 },
3677 { "{ [i] -> [3*floor(i/2) + 5*floor(i/3)] }", 1 },
3678 { "{ S1[i] -> [i] : 0 <= i <= 9; S2[i] -> [i] : 0 <= i <= 9 }", 1 },
3679 { "{ [i] -> S1[i] : 0 <= i <= 9; [i] -> S2[i] : 0 <= i <= 9 }", 0 },
3680 { "{ A[i] -> [i]; B[i] -> [i]; B[i] -> [i + 1] }", 0 },
3681 { "{ A[i] -> [i]; B[i] -> [i] : i < 0; B[i] -> [i + 1] : i > 0 }", 1 },
3682 { "{ A[i] -> [i]; B[i] -> A[i] : i < 0; B[i] -> [i + 1] : i > 0 }", 1 },
3683 { "{ A[i] -> [i]; B[i] -> [j] : i - 1 <= j <= i }", 0 },
3686 int test_sv(isl_ctx *ctx)
3688 isl_union_map *umap;
3689 int i;
3690 int sv;
3692 for (i = 0; i < ARRAY_SIZE(sv_tests); ++i) {
3693 umap = isl_union_map_read_from_str(ctx, sv_tests[i].map);
3694 sv = isl_union_map_is_single_valued(umap);
3695 isl_union_map_free(umap);
3696 if (sv < 0)
3697 return -1;
3698 if (sv_tests[i].sv && !sv)
3699 isl_die(ctx, isl_error_internal,
3700 "map not detected as single valued", return -1);
3701 if (!sv_tests[i].sv && sv)
3702 isl_die(ctx, isl_error_internal,
3703 "map detected as single valued", return -1);
3706 return 0;
3709 struct {
3710 const char *str;
3711 int bijective;
3712 } bijective_tests[] = {
3713 { "[N,M]->{[i,j] -> [i]}", 0 },
3714 { "[N,M]->{[i,j] -> [i] : j=i}", 1 },
3715 { "[N,M]->{[i,j] -> [i] : j=0}", 1 },
3716 { "[N,M]->{[i,j] -> [i] : j=N}", 1 },
3717 { "[N,M]->{[i,j] -> [j,i]}", 1 },
3718 { "[N,M]->{[i,j] -> [i+j]}", 0 },
3719 { "[N,M]->{[i,j] -> []}", 0 },
3720 { "[N,M]->{[i,j] -> [i,j,N]}", 1 },
3721 { "[N,M]->{[i,j] -> [2i]}", 0 },
3722 { "[N,M]->{[i,j] -> [i,i]}", 0 },
3723 { "[N,M]->{[i,j] -> [2i,i]}", 0 },
3724 { "[N,M]->{[i,j] -> [2i,j]}", 1 },
3725 { "[N,M]->{[i,j] -> [x,y] : 2x=i & y =j}", 1 },
3728 static int test_bijective(struct isl_ctx *ctx)
3730 isl_map *map;
3731 int i;
3732 int bijective;
3734 for (i = 0; i < ARRAY_SIZE(bijective_tests); ++i) {
3735 map = isl_map_read_from_str(ctx, bijective_tests[i].str);
3736 bijective = isl_map_is_bijective(map);
3737 isl_map_free(map);
3738 if (bijective < 0)
3739 return -1;
3740 if (bijective_tests[i].bijective && !bijective)
3741 isl_die(ctx, isl_error_internal,
3742 "map not detected as bijective", return -1);
3743 if (!bijective_tests[i].bijective && bijective)
3744 isl_die(ctx, isl_error_internal,
3745 "map detected as bijective", return -1);
3748 return 0;
3751 /* Inputs for isl_pw_qpolynomial_gist tests.
3752 * "pwqp" is the input, "set" is the context and "gist" is the expected result.
3754 struct {
3755 const char *pwqp;
3756 const char *set;
3757 const char *gist;
3758 } pwqp_gist_tests[] = {
3759 { "{ [i] -> i }", "{ [k] : exists a : k = 2a }", "{ [i] -> i }" },
3760 { "{ [i] -> i + [ (i + [i/3])/2 ] }", "{ [10] }", "{ [i] -> 16 }" },
3761 { "{ [i] -> ([(i)/2]) }", "{ [k] : exists a : k = 2a+1 }",
3762 "{ [i] -> -1/2 + 1/2 * i }" },
3763 { "{ [i] -> i^2 : i != 0 }", "{ [i] : i != 0 }", "{ [i] -> i^2 }" },
3764 { "{ [i] -> i^2 : i > 0; [i] -> i^2 : i < 0 }", "{ [i] : i != 0 }",
3765 "{ [i] -> i^2 }" },
3768 /* Perform some basic isl_pw_qpolynomial_gist tests.
3770 static isl_stat test_pwqp_gist(isl_ctx *ctx)
3772 int i;
3773 const char *str;
3774 isl_set *set;
3775 isl_pw_qpolynomial *pwqp1, *pwqp2;
3776 isl_bool equal;
3778 for (i = 0; i < ARRAY_SIZE(pwqp_gist_tests); ++i) {
3779 str = pwqp_gist_tests[i].pwqp;
3780 pwqp1 = isl_pw_qpolynomial_read_from_str(ctx, str);
3781 str = pwqp_gist_tests[i].set;
3782 set = isl_set_read_from_str(ctx, str);
3783 pwqp1 = isl_pw_qpolynomial_gist(pwqp1, set);
3784 str = pwqp_gist_tests[i].gist;
3785 pwqp2 = isl_pw_qpolynomial_read_from_str(ctx, str);
3786 pwqp1 = isl_pw_qpolynomial_sub(pwqp1, pwqp2);
3787 equal = isl_pw_qpolynomial_is_zero(pwqp1);
3788 isl_pw_qpolynomial_free(pwqp1);
3790 if (equal < 0)
3791 return isl_stat_error;
3792 if (!equal)
3793 isl_die(ctx, isl_error_unknown,
3794 "unexpected result", return isl_stat_error);
3797 return isl_stat_ok;
3800 /* Perform a basic isl_pw_qpolynomial_max test.
3802 static isl_stat test_pwqp_max(isl_ctx *ctx)
3804 const char *str;
3805 isl_pw_qpolynomial *pwqp;
3806 isl_val *v;
3807 int ok;
3809 str = "{ [x=2:9, y] -> floor((x + 1)/4)^3 - floor((2x)/3)^2 }";
3810 pwqp = isl_pw_qpolynomial_read_from_str(ctx, str);
3811 v = isl_pw_qpolynomial_max(pwqp);
3812 ok = isl_val_cmp_si(v, -1) == 0;
3813 isl_val_free(v);
3815 if (!v)
3816 return isl_stat_error;
3817 if (!ok)
3818 isl_die(ctx, isl_error_unknown, "unexpected maximum",
3819 return isl_stat_error);
3821 return isl_stat_ok;
3824 static int test_pwqp(struct isl_ctx *ctx)
3826 const char *str;
3827 isl_set *set;
3828 isl_pw_qpolynomial *pwqp1, *pwqp2;
3829 int equal;
3831 str = "{ [i,j,k] -> 1 + 9 * [i/5] + 7 * [j/11] + 4 * [k/13] }";
3832 pwqp1 = isl_pw_qpolynomial_read_from_str(ctx, str);
3834 pwqp1 = isl_pw_qpolynomial_move_dims(pwqp1, isl_dim_param, 0,
3835 isl_dim_in, 1, 1);
3837 str = "[j] -> { [i,k] -> 1 + 9 * [i/5] + 7 * [j/11] + 4 * [k/13] }";
3838 pwqp2 = isl_pw_qpolynomial_read_from_str(ctx, str);
3840 pwqp1 = isl_pw_qpolynomial_sub(pwqp1, pwqp2);
3842 assert(isl_pw_qpolynomial_is_zero(pwqp1));
3844 isl_pw_qpolynomial_free(pwqp1);
3846 if (test_pwqp_gist(ctx) < 0)
3847 return -1;
3849 str = "{ [i] -> ([([i/2] + [i/2])/5]) }";
3850 pwqp1 = isl_pw_qpolynomial_read_from_str(ctx, str);
3851 str = "{ [i] -> ([(2 * [i/2])/5]) }";
3852 pwqp2 = isl_pw_qpolynomial_read_from_str(ctx, str);
3854 pwqp1 = isl_pw_qpolynomial_sub(pwqp1, pwqp2);
3856 assert(isl_pw_qpolynomial_is_zero(pwqp1));
3858 isl_pw_qpolynomial_free(pwqp1);
3860 str = "{ [x] -> ([x/2] + [(x+1)/2]) }";
3861 pwqp1 = isl_pw_qpolynomial_read_from_str(ctx, str);
3862 str = "{ [x] -> x }";
3863 pwqp2 = isl_pw_qpolynomial_read_from_str(ctx, str);
3865 pwqp1 = isl_pw_qpolynomial_sub(pwqp1, pwqp2);
3867 assert(isl_pw_qpolynomial_is_zero(pwqp1));
3869 isl_pw_qpolynomial_free(pwqp1);
3871 str = "{ [i] -> ([i/2]) : i >= 0; [i] -> ([i/3]) : i < 0 }";
3872 pwqp1 = isl_pw_qpolynomial_read_from_str(ctx, str);
3873 pwqp2 = isl_pw_qpolynomial_read_from_str(ctx, str);
3874 pwqp1 = isl_pw_qpolynomial_coalesce(pwqp1);
3875 pwqp1 = isl_pw_qpolynomial_sub(pwqp1, pwqp2);
3876 assert(isl_pw_qpolynomial_is_zero(pwqp1));
3877 isl_pw_qpolynomial_free(pwqp1);
3879 str = "{ [a,b,a] -> (([(2*[a/3]+b)/5]) * ([(2*[a/3]+b)/5])) }";
3880 pwqp2 = isl_pw_qpolynomial_read_from_str(ctx, str);
3881 str = "{ [a,b,c] -> (([(2*[a/3]+b)/5]) * ([(2*[c/3]+b)/5])) }";
3882 pwqp1 = isl_pw_qpolynomial_read_from_str(ctx, str);
3883 set = isl_set_read_from_str(ctx, "{ [a,b,a] }");
3884 pwqp1 = isl_pw_qpolynomial_intersect_domain(pwqp1, set);
3885 equal = isl_pw_qpolynomial_plain_is_equal(pwqp1, pwqp2);
3886 isl_pw_qpolynomial_free(pwqp1);
3887 isl_pw_qpolynomial_free(pwqp2);
3888 if (equal < 0)
3889 return -1;
3890 if (!equal)
3891 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
3893 str = "{ [a,b,c] -> (([(2*[a/3]+1)/5]) * ([(2*[c/3]+1)/5])) : b = 1 }";
3894 pwqp2 = isl_pw_qpolynomial_read_from_str(ctx, str);
3895 str = "{ [a,b,c] -> (([(2*[a/3]+b)/5]) * ([(2*[c/3]+b)/5])) }";
3896 pwqp1 = isl_pw_qpolynomial_read_from_str(ctx, str);
3897 pwqp1 = isl_pw_qpolynomial_fix_val(pwqp1, isl_dim_set, 1,
3898 isl_val_one(ctx));
3899 equal = isl_pw_qpolynomial_plain_is_equal(pwqp1, pwqp2);
3900 isl_pw_qpolynomial_free(pwqp1);
3901 isl_pw_qpolynomial_free(pwqp2);
3902 if (equal < 0)
3903 return -1;
3904 if (!equal)
3905 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
3907 if (test_pwqp_max(ctx) < 0)
3908 return -1;
3910 return 0;
3913 static int test_split_periods(isl_ctx *ctx)
3915 const char *str;
3916 isl_pw_qpolynomial *pwqp;
3918 str = "{ [U,V] -> 1/3 * U + 2/3 * V - [(U + 2V)/3] + [U/2] : "
3919 "U + 2V + 3 >= 0 and - U -2V >= 0 and - U + 10 >= 0 and "
3920 "U >= 0; [U,V] -> U^2 : U >= 100 }";
3921 pwqp = isl_pw_qpolynomial_read_from_str(ctx, str);
3923 pwqp = isl_pw_qpolynomial_split_periods(pwqp, 2);
3925 isl_pw_qpolynomial_free(pwqp);
3927 if (!pwqp)
3928 return -1;
3930 return 0;
3933 static int test_union(isl_ctx *ctx)
3935 const char *str;
3936 isl_union_set *uset1, *uset2;
3937 isl_union_map *umap1, *umap2;
3938 int equal;
3940 str = "{ [i] : 0 <= i <= 1 }";
3941 uset1 = isl_union_set_read_from_str(ctx, str);
3942 str = "{ [1] -> [0] }";
3943 umap1 = isl_union_map_read_from_str(ctx, str);
3945 umap2 = isl_union_set_lex_gt_union_set(isl_union_set_copy(uset1), uset1);
3946 equal = isl_union_map_is_equal(umap1, umap2);
3948 isl_union_map_free(umap1);
3949 isl_union_map_free(umap2);
3951 if (equal < 0)
3952 return -1;
3953 if (!equal)
3954 isl_die(ctx, isl_error_unknown, "union maps not equal",
3955 return -1);
3957 str = "{ A[i] -> B[i]; B[i] -> C[i]; A[0] -> C[1] }";
3958 umap1 = isl_union_map_read_from_str(ctx, str);
3959 str = "{ A[i]; B[i] }";
3960 uset1 = isl_union_set_read_from_str(ctx, str);
3962 uset2 = isl_union_map_domain(umap1);
3964 equal = isl_union_set_is_equal(uset1, uset2);
3966 isl_union_set_free(uset1);
3967 isl_union_set_free(uset2);
3969 if (equal < 0)
3970 return -1;
3971 if (!equal)
3972 isl_die(ctx, isl_error_unknown, "union sets not equal",
3973 return -1);
3975 return 0;
3978 /* Inputs for basic isl_pw_qpolynomial_bound tests.
3979 * "type" is the type of bound that should be computed.
3980 * "poly" is a string representation of the input.
3981 * "bound" is a string representation of the expected result.
3982 * "tight" is set if the result is expected to be tight.
3984 static struct {
3985 int tight;
3986 enum isl_fold type;
3987 const char *poly;
3988 const char *bound;
3989 } bound_tests[] = {
3990 /* Check that computing a bound of a non-zero polynomial
3991 * over an unbounded domain does not produce a rational value.
3992 * In particular, check that the upper bound is infinity.
3994 { 0, isl_fold_max, "{ [m, n] -> -m * n }", "{ max(infty) }" },
3995 { 1, isl_fold_max, "{ [[a, b, c, d] -> [e]] -> 0 }",
3996 "{ [a, b, c, d] -> max(0) }" },
3997 { 1, isl_fold_max, "{ [[x] -> [x]] -> 1 : exists a : x = 2 a }",
3998 "{ [x] -> max(1) : x mod 2 = 0 }" },
3999 { 1, isl_fold_min, "{ [x=5:10] -> (x + 2)^2 }", "{ min(49) }" },
4000 { 1, isl_fold_max, "{ [0:10] -> 1 }", "{ max(1) }" },
4001 { 1, isl_fold_max, "{ [[m] -> [0:m]] -> m^2 }",
4002 "{ [m] -> max(m^2) : m >= 0 }" },
4005 /* Check that the bound computation can handle differences
4006 * in domain dimension names of the input polynomial and its domain.
4008 static isl_stat test_bound_space(isl_ctx *ctx)
4010 const char *str;
4011 isl_set *set;
4012 isl_pw_qpolynomial *pwqp;
4013 isl_pw_qpolynomial_fold *pwf;
4015 str = "{ [[c] -> [c]] }";
4016 set = isl_set_read_from_str(ctx, str);
4017 str = "{ [[a] -> [b]] -> 1 }";
4018 pwqp = isl_pw_qpolynomial_read_from_str(ctx, str);
4019 pwqp = isl_pw_qpolynomial_intersect_domain(pwqp, set);
4020 pwf = isl_pw_qpolynomial_bound(pwqp, isl_fold_max, NULL);
4021 isl_pw_qpolynomial_fold_free(pwf);
4023 return isl_stat_non_null(pwf);
4026 /* Perform basic isl_pw_qpolynomial_bound tests.
4028 static int test_bound(isl_ctx *ctx)
4030 int i;
4032 if (test_bound_space(ctx) < 0)
4033 return -1;
4035 for (i = 0; i < ARRAY_SIZE(bound_tests); ++i) {
4036 const char *str;
4037 enum isl_fold type;
4038 isl_bool equal, tight;
4039 isl_pw_qpolynomial *pwqp;
4040 isl_pw_qpolynomial_fold *pwf1, *pwf2;
4042 str = bound_tests[i].poly;
4043 pwqp = isl_pw_qpolynomial_read_from_str(ctx, str);
4044 type = bound_tests[i].type;
4045 pwf1 = isl_pw_qpolynomial_bound(pwqp, type, &tight);
4046 str = bound_tests[i].bound;
4047 pwf2 = isl_pw_qpolynomial_fold_read_from_str(ctx, str);
4048 equal = isl_pw_qpolynomial_fold_plain_is_equal(pwf1, pwf2);
4049 isl_pw_qpolynomial_fold_free(pwf2);
4050 isl_pw_qpolynomial_fold_free(pwf1);
4051 if (equal < 0)
4052 return -1;
4053 if (!equal)
4054 isl_die(ctx, isl_error_unknown,
4055 "incorrect bound result", return -1);
4056 if (bound_tests[i].tight && !tight)
4057 isl_die(ctx, isl_error_unknown,
4058 "bound unexpectedly not tight", return -1);
4061 return 0;
4064 /* isl_set is defined to isl_map internally, so the corresponding elements
4065 * are isl_basic_map objects.
4067 #undef EL_BASE
4068 #undef SET_BASE
4069 #define EL_BASE basic_map
4070 #define SET_BASE set
4071 #include "isl_test_list_templ.c"
4073 #undef EL_BASE
4074 #undef SET_BASE
4075 #define EL_BASE basic_set
4076 #define SET_BASE union_set
4077 #include "isl_test_list_templ.c"
4079 #undef EL_BASE
4080 #undef SET_BASE
4081 #define EL_BASE set
4082 #define SET_BASE union_set
4083 #include "isl_test_list_templ.c"
4085 #undef EL_BASE
4086 #undef SET_BASE
4087 #define EL_BASE basic_map
4088 #define SET_BASE map
4089 #include "isl_test_list_templ.c"
4091 #undef EL_BASE
4092 #undef SET_BASE
4093 #define EL_BASE map
4094 #define SET_BASE union_map
4095 #include "isl_test_list_templ.c"
4097 /* Check that the conversion from isl objects to lists works as expected.
4099 static int test_get_list(isl_ctx *ctx)
4101 if (test_get_list_basic_map_from_set(ctx, "{ [0]; [2]; [3] }"))
4102 return -1;
4103 if (test_get_list_basic_set_from_union_set(ctx, "{ A[0]; B[2]; B[3] }"))
4104 return -1;
4105 if (test_get_list_set_from_union_set(ctx, "{ A[0]; A[2]; B[3] }"))
4106 return -1;
4107 if (test_get_list_basic_map_from_map(ctx,
4108 "{ [0] -> [0]; [2] -> [0]; [3] -> [0] }"))
4109 return -1;
4110 if (test_get_list_map_from_union_map(ctx,
4111 "{ A[0] -> [0]; A[2] -> [0]; B[3] -> [0] }"))
4112 return -1;
4114 return 0;
4117 static int test_lift(isl_ctx *ctx)
4119 const char *str;
4120 isl_basic_map *bmap;
4121 isl_basic_set *bset;
4123 str = "{ [i0] : exists e0 : i0 = 4e0 }";
4124 bset = isl_basic_set_read_from_str(ctx, str);
4125 bset = isl_basic_set_lift(bset);
4126 bmap = isl_basic_map_from_range(bset);
4127 bset = isl_basic_map_domain(bmap);
4128 isl_basic_set_free(bset);
4130 return 0;
4133 /* Check that isl_set_is_subset is not confused by identical
4134 * integer divisions.
4135 * The call to isl_set_normalize ensures that the equality constraints
4136 * a = b = 0 are discovered, turning e0 and e1 into identical
4137 * integer divisions. Any further simplification would remove
4138 * the duplicate integer divisions.
4140 static isl_stat test_subset_duplicate_integer_divisions(isl_ctx *ctx)
4142 const char *str;
4143 isl_bool is_subset;
4144 isl_set *set1, *set2;
4146 str = "{ [a, b, c, d] : "
4147 "exists (e0 = floor((a + d)/4), e1 = floor((d)/4), "
4148 "e2 = floor((-a - d + 4 *floor((a + d)/4))/10), "
4149 "e3 = floor((-d + 4*floor((d)/4))/10): "
4150 "10e2 = -a - 2c - d + 4e0 and 10e3 = -2c - d + 4e1 and "
4151 "b >= 0 and a <= 0 and b <= a) }";
4152 set1 = isl_set_read_from_str(ctx, str);
4153 set2 = isl_set_read_from_str(ctx, str);
4154 set2 = isl_set_normalize(set2);
4156 is_subset = isl_set_is_subset(set1, set2);
4158 isl_set_free(set1);
4159 isl_set_free(set2);
4161 if (is_subset < 0)
4162 return isl_stat_error;
4163 if (!is_subset)
4164 isl_die(ctx, isl_error_unknown,
4165 "set is not considered to be a subset of itself",
4166 return isl_stat_error);
4168 return isl_stat_ok;
4171 struct {
4172 const char *set1;
4173 const char *set2;
4174 int subset;
4175 } subset_tests[] = {
4176 { "{ [112, 0] }",
4177 "{ [i0, i1] : exists (e0 = [(i0 - i1)/16], e1: "
4178 "16e0 <= i0 - i1 and 16e0 >= -15 + i0 - i1 and "
4179 "16e1 <= i1 and 16e0 >= -i1 and 16e1 >= -i0 + i1) }", 1 },
4180 { "{ [65] }",
4181 "{ [i] : exists (e0 = [(255i)/256], e1 = [(127i + 65e0)/191], "
4182 "e2 = [(3i + 61e1)/65], e3 = [(52i + 12e2)/61], "
4183 "e4 = [(2i + e3)/3], e5 = [(4i + e3)/4], e6 = [(8i + e3)/12]: "
4184 "3e4 = 2i + e3 and 4e5 = 4i + e3 and 12e6 = 8i + e3 and "
4185 "i <= 255 and 64e3 >= -45 + 67i and i >= 0 and "
4186 "256e0 <= 255i and 256e0 >= -255 + 255i and "
4187 "191e1 <= 127i + 65e0 and 191e1 >= -190 + 127i + 65e0 and "
4188 "65e2 <= 3i + 61e1 and 65e2 >= -64 + 3i + 61e1 and "
4189 "61e3 <= 52i + 12e2 and 61e3 >= -60 + 52i + 12e2) }", 1 },
4190 { "{ [i] : 0 <= i <= 10 }", "{ rat: [i] : 0 <= i <= 10 }", 1 },
4191 { "{ rat: [i] : 0 <= i <= 10 }", "{ [i] : 0 <= i <= 10 }", 0 },
4192 { "{ rat: [0] }", "{ [i] : 0 <= i <= 10 }", 1 },
4193 { "{ rat: [(1)/2] }", "{ [i] : 0 <= i <= 10 }", 0 },
4194 { "{ [t, i] : (exists (e0 = [(2 + t)/4]: 4e0 <= 2 + t and "
4195 "4e0 >= -1 + t and i >= 57 and i <= 62 and "
4196 "4e0 <= 62 + t - i and 4e0 >= -61 + t + i and "
4197 "t >= 0 and t <= 511 and 4e0 <= -57 + t + i and "
4198 "4e0 >= 58 + t - i and i >= 58 + t and i >= 62 - t)) }",
4199 "{ [i0, i1] : (exists (e0 = [(4 + i0)/4]: 4e0 <= 62 + i0 - i1 and "
4200 "4e0 >= 1 + i0 and i0 >= 0 and i0 <= 511 and "
4201 "4e0 <= -57 + i0 + i1)) or "
4202 "(exists (e0 = [(2 + i0)/4]: 4e0 <= i0 and "
4203 "4e0 >= 58 + i0 - i1 and i0 >= 2 and i0 <= 511 and "
4204 "4e0 >= -61 + i0 + i1)) or "
4205 "(i1 <= 66 - i0 and i0 >= 2 and i1 >= 59 + i0) }", 1 },
4206 { "[a, b] -> { : a = 0 and b = -1 }", "[b, a] -> { : b >= -10 }", 1 },
4209 static int test_subset(isl_ctx *ctx)
4211 int i;
4212 isl_set *set1, *set2;
4213 int subset;
4215 if (test_subset_duplicate_integer_divisions(ctx) < 0)
4216 return -1;
4218 for (i = 0; i < ARRAY_SIZE(subset_tests); ++i) {
4219 set1 = isl_set_read_from_str(ctx, subset_tests[i].set1);
4220 set2 = isl_set_read_from_str(ctx, subset_tests[i].set2);
4221 subset = isl_set_is_subset(set1, set2);
4222 isl_set_free(set1);
4223 isl_set_free(set2);
4224 if (subset < 0)
4225 return -1;
4226 if (subset != subset_tests[i].subset)
4227 isl_die(ctx, isl_error_unknown,
4228 "incorrect subset result", return -1);
4231 return 0;
4234 /* Perform a set subtraction with a set that has a non-obviously empty disjunct.
4235 * Older versions of isl would fail on such cases.
4237 static isl_stat test_subtract_empty(isl_ctx *ctx)
4239 const char *str;
4240 isl_set *s1, *s2;
4242 s1 = isl_set_read_from_str(ctx, "{ [0] }");
4243 str = "{ [a] : (exists (e0, e1, e2: 1056e1 <= 32 + a - 33e0 and "
4244 "1089e1 >= a - 33e0 and 1089e1 <= 1 + a - 33e0 and "
4245 "33e2 >= -a + 33e0 + 1056e1 and "
4246 "33e2 < -2a + 66e0 + 2112e1)) or a = 0 }";
4247 s2 = isl_set_read_from_str(ctx, str);
4248 s1 = isl_set_subtract(s1, s2);
4249 isl_set_free(s1);
4251 return isl_stat_non_null(s1);
4254 struct {
4255 const char *minuend;
4256 const char *subtrahend;
4257 const char *difference;
4258 } subtract_domain_tests[] = {
4259 { "{ A[i] -> B[i] }", "{ A[i] }", "{ }" },
4260 { "{ A[i] -> B[i] }", "{ B[i] }", "{ A[i] -> B[i] }" },
4261 { "{ A[i] -> B[i] }", "{ A[i] : i > 0 }", "{ A[i] -> B[i] : i <= 0 }" },
4264 static int test_subtract(isl_ctx *ctx)
4266 int i;
4267 isl_union_map *umap1, *umap2;
4268 isl_union_pw_multi_aff *upma1, *upma2;
4269 isl_union_set *uset;
4270 int equal;
4272 if (test_subtract_empty(ctx) < 0)
4273 return -1;
4275 for (i = 0; i < ARRAY_SIZE(subtract_domain_tests); ++i) {
4276 umap1 = isl_union_map_read_from_str(ctx,
4277 subtract_domain_tests[i].minuend);
4278 uset = isl_union_set_read_from_str(ctx,
4279 subtract_domain_tests[i].subtrahend);
4280 umap2 = isl_union_map_read_from_str(ctx,
4281 subtract_domain_tests[i].difference);
4282 umap1 = isl_union_map_subtract_domain(umap1, uset);
4283 equal = isl_union_map_is_equal(umap1, umap2);
4284 isl_union_map_free(umap1);
4285 isl_union_map_free(umap2);
4286 if (equal < 0)
4287 return -1;
4288 if (!equal)
4289 isl_die(ctx, isl_error_unknown,
4290 "incorrect subtract domain result", return -1);
4293 for (i = 0; i < ARRAY_SIZE(subtract_domain_tests); ++i) {
4294 upma1 = isl_union_pw_multi_aff_read_from_str(ctx,
4295 subtract_domain_tests[i].minuend);
4296 uset = isl_union_set_read_from_str(ctx,
4297 subtract_domain_tests[i].subtrahend);
4298 upma2 = isl_union_pw_multi_aff_read_from_str(ctx,
4299 subtract_domain_tests[i].difference);
4300 upma1 = isl_union_pw_multi_aff_subtract_domain(upma1, uset);
4301 equal = isl_union_pw_multi_aff_plain_is_equal(upma1, upma2);
4302 isl_union_pw_multi_aff_free(upma1);
4303 isl_union_pw_multi_aff_free(upma2);
4304 if (equal < 0)
4305 return -1;
4306 if (!equal)
4307 isl_die(ctx, isl_error_unknown,
4308 "incorrect subtract domain result", return -1);
4311 return 0;
4314 /* Check that intersecting the empty basic set with another basic set
4315 * does not increase the number of constraints. In particular,
4316 * the empty basic set should maintain its canonical representation.
4318 static int test_intersect_1(isl_ctx *ctx)
4320 isl_size n1, n2;
4321 isl_basic_set *bset1, *bset2;
4323 bset1 = isl_basic_set_read_from_str(ctx, "{ [a,b,c] : 1 = 0 }");
4324 bset2 = isl_basic_set_read_from_str(ctx, "{ [1,2,3] }");
4325 n1 = isl_basic_set_n_constraint(bset1);
4326 bset1 = isl_basic_set_intersect(bset1, bset2);
4327 n2 = isl_basic_set_n_constraint(bset1);
4328 isl_basic_set_free(bset1);
4329 if (n1 < 0 || n2 < 0)
4330 return -1;
4331 if (n1 != n2)
4332 isl_die(ctx, isl_error_unknown,
4333 "number of constraints of empty set changed",
4334 return -1);
4336 return 0;
4339 /* Check that intersecting a set with itself does not cause
4340 * an explosion in the number of disjuncts.
4342 static isl_stat test_intersect_2(isl_ctx *ctx)
4344 int i;
4345 isl_set *set;
4347 set = isl_set_read_from_str(ctx, "{ [x,y] : x >= 0 or y >= 0 }");
4348 for (i = 0; i < 100; ++i)
4349 set = isl_set_intersect(set, isl_set_copy(set));
4350 isl_set_free(set);
4351 if (!set)
4352 return isl_stat_error;
4353 return isl_stat_ok;
4356 /* Perform some intersection tests.
4358 static int test_intersect(isl_ctx *ctx)
4360 if (test_intersect_1(ctx) < 0)
4361 return -1;
4362 if (test_intersect_2(ctx) < 0)
4363 return -1;
4365 return 0;
4368 int test_factorize(isl_ctx *ctx)
4370 const char *str;
4371 isl_basic_set *bset;
4372 isl_factorizer *f;
4374 str = "{ [i0, i1, i2, i3, i4, i5, i6, i7] : 3i5 <= 2 - 2i0 and "
4375 "i0 >= -2 and i6 >= 1 + i3 and i7 >= 0 and 3i5 >= -2i0 and "
4376 "2i4 <= i2 and i6 >= 1 + 2i0 + 3i1 and i4 <= -1 and "
4377 "i6 >= 1 + 2i0 + 3i5 and i6 <= 2 + 2i0 + 3i5 and "
4378 "3i5 <= 2 - 2i0 - i2 + 3i4 and i6 <= 2 + 2i0 + 3i1 and "
4379 "i0 <= -1 and i7 <= i2 + i3 - 3i4 - i6 and "
4380 "3i5 >= -2i0 - i2 + 3i4 }";
4381 bset = isl_basic_set_read_from_str(ctx, str);
4382 f = isl_basic_set_factorizer(bset);
4383 isl_basic_set_free(bset);
4384 isl_factorizer_free(f);
4385 if (!f)
4386 isl_die(ctx, isl_error_unknown,
4387 "failed to construct factorizer", return -1);
4389 str = "{ [i0, i1, i2, i3, i4, i5, i6, i7, i8, i9, i10, i11, i12] : "
4390 "i12 <= 2 + i0 - i11 and 2i8 >= -i4 and i11 >= i1 and "
4391 "3i5 <= -i2 and 2i11 >= -i4 - 2i7 and i11 <= 3 + i0 + 3i9 and "
4392 "i11 <= -i4 - 2i7 and i12 >= -i10 and i2 >= -2 and "
4393 "i11 >= i1 + 3i10 and i11 >= 1 + i0 + 3i9 and "
4394 "i11 <= 1 - i4 - 2i8 and 6i6 <= 6 - i2 and 3i6 >= 1 - i2 and "
4395 "i11 <= 2 + i1 and i12 <= i4 + i11 and i12 >= i0 - i11 and "
4396 "3i5 >= -2 - i2 and i12 >= -1 + i4 + i11 and 3i3 <= 3 - i2 and "
4397 "9i6 <= 11 - i2 + 6i5 and 3i3 >= 1 - i2 and "
4398 "9i6 <= 5 - i2 + 6i3 and i12 <= -1 and i2 <= 0 }";
4399 bset = isl_basic_set_read_from_str(ctx, str);
4400 f = isl_basic_set_factorizer(bset);
4401 isl_basic_set_free(bset);
4402 isl_factorizer_free(f);
4403 if (!f)
4404 isl_die(ctx, isl_error_unknown,
4405 "failed to construct factorizer", return -1);
4407 return 0;
4410 static isl_stat check_injective(__isl_take isl_map *map, void *user)
4412 int *injective = user;
4414 *injective = isl_map_is_injective(map);
4415 isl_map_free(map);
4417 if (*injective < 0 || !*injective)
4418 return isl_stat_error;
4420 return isl_stat_ok;
4423 int test_one_schedule(isl_ctx *ctx, const char *d, const char *w,
4424 const char *r, const char *s, int tilable, int parallel)
4426 int i;
4427 isl_union_set *D;
4428 isl_union_map *W, *R, *S;
4429 isl_union_map *empty;
4430 isl_union_map *dep_raw, *dep_war, *dep_waw, *dep;
4431 isl_union_map *validity, *proximity, *coincidence;
4432 isl_union_map *schedule;
4433 isl_union_map *test;
4434 isl_union_set *delta;
4435 isl_union_set *domain;
4436 isl_set *delta_set;
4437 isl_set *slice;
4438 isl_set *origin;
4439 isl_schedule_constraints *sc;
4440 isl_schedule *sched;
4441 int is_nonneg, is_parallel, is_tilable, is_injection, is_complete;
4442 isl_size n;
4444 D = isl_union_set_read_from_str(ctx, d);
4445 W = isl_union_map_read_from_str(ctx, w);
4446 R = isl_union_map_read_from_str(ctx, r);
4447 S = isl_union_map_read_from_str(ctx, s);
4449 W = isl_union_map_intersect_domain(W, isl_union_set_copy(D));
4450 R = isl_union_map_intersect_domain(R, isl_union_set_copy(D));
4452 empty = isl_union_map_empty(isl_union_map_get_space(S));
4453 isl_union_map_compute_flow(isl_union_map_copy(R),
4454 isl_union_map_copy(W), empty,
4455 isl_union_map_copy(S),
4456 &dep_raw, NULL, NULL, NULL);
4457 isl_union_map_compute_flow(isl_union_map_copy(W),
4458 isl_union_map_copy(W),
4459 isl_union_map_copy(R),
4460 isl_union_map_copy(S),
4461 &dep_waw, &dep_war, NULL, NULL);
4463 dep = isl_union_map_union(dep_waw, dep_war);
4464 dep = isl_union_map_union(dep, dep_raw);
4465 validity = isl_union_map_copy(dep);
4466 coincidence = isl_union_map_copy(dep);
4467 proximity = isl_union_map_copy(dep);
4469 sc = isl_schedule_constraints_on_domain(isl_union_set_copy(D));
4470 sc = isl_schedule_constraints_set_validity(sc, validity);
4471 sc = isl_schedule_constraints_set_coincidence(sc, coincidence);
4472 sc = isl_schedule_constraints_set_proximity(sc, proximity);
4473 sched = isl_schedule_constraints_compute_schedule(sc);
4474 schedule = isl_schedule_get_map(sched);
4475 isl_schedule_free(sched);
4476 isl_union_map_free(W);
4477 isl_union_map_free(R);
4478 isl_union_map_free(S);
4480 is_injection = 1;
4481 isl_union_map_foreach_map(schedule, &check_injective, &is_injection);
4483 domain = isl_union_map_domain(isl_union_map_copy(schedule));
4484 is_complete = isl_union_set_is_subset(D, domain);
4485 isl_union_set_free(D);
4486 isl_union_set_free(domain);
4488 test = isl_union_map_reverse(isl_union_map_copy(schedule));
4489 test = isl_union_map_apply_range(test, dep);
4490 test = isl_union_map_apply_range(test, schedule);
4492 delta = isl_union_map_deltas(test);
4493 n = isl_union_set_n_set(delta);
4494 if (n < 0) {
4495 isl_union_set_free(delta);
4496 return -1;
4498 if (n == 0) {
4499 is_tilable = 1;
4500 is_parallel = 1;
4501 is_nonneg = 1;
4502 isl_union_set_free(delta);
4503 } else {
4504 isl_size dim;
4506 delta_set = isl_set_from_union_set(delta);
4508 slice = isl_set_universe(isl_set_get_space(delta_set));
4509 for (i = 0; i < tilable; ++i)
4510 slice = isl_set_lower_bound_si(slice, isl_dim_set, i, 0);
4511 is_tilable = isl_set_is_subset(delta_set, slice);
4512 isl_set_free(slice);
4514 slice = isl_set_universe(isl_set_get_space(delta_set));
4515 for (i = 0; i < parallel; ++i)
4516 slice = isl_set_fix_si(slice, isl_dim_set, i, 0);
4517 is_parallel = isl_set_is_subset(delta_set, slice);
4518 isl_set_free(slice);
4520 origin = isl_set_universe(isl_set_get_space(delta_set));
4521 dim = isl_set_dim(origin, isl_dim_set);
4522 if (dim < 0)
4523 origin = isl_set_free(origin);
4524 for (i = 0; i < dim; ++i)
4525 origin = isl_set_fix_si(origin, isl_dim_set, i, 0);
4527 delta_set = isl_set_union(delta_set, isl_set_copy(origin));
4528 delta_set = isl_set_lexmin(delta_set);
4530 is_nonneg = isl_set_is_equal(delta_set, origin);
4532 isl_set_free(origin);
4533 isl_set_free(delta_set);
4536 if (is_nonneg < 0 || is_parallel < 0 || is_tilable < 0 ||
4537 is_injection < 0 || is_complete < 0)
4538 return -1;
4539 if (!is_complete)
4540 isl_die(ctx, isl_error_unknown,
4541 "generated schedule incomplete", return -1);
4542 if (!is_injection)
4543 isl_die(ctx, isl_error_unknown,
4544 "generated schedule not injective on each statement",
4545 return -1);
4546 if (!is_nonneg)
4547 isl_die(ctx, isl_error_unknown,
4548 "negative dependences in generated schedule",
4549 return -1);
4550 if (!is_tilable)
4551 isl_die(ctx, isl_error_unknown,
4552 "generated schedule not as tilable as expected",
4553 return -1);
4554 if (!is_parallel)
4555 isl_die(ctx, isl_error_unknown,
4556 "generated schedule not as parallel as expected",
4557 return -1);
4559 return 0;
4562 /* Compute a schedule for the given instance set, validity constraints,
4563 * proximity constraints and context and return a corresponding union map
4564 * representation.
4566 static __isl_give isl_union_map *compute_schedule_with_context(isl_ctx *ctx,
4567 const char *domain, const char *validity, const char *proximity,
4568 const char *context)
4570 isl_set *con;
4571 isl_union_set *dom;
4572 isl_union_map *dep;
4573 isl_union_map *prox;
4574 isl_schedule_constraints *sc;
4575 isl_schedule *schedule;
4576 isl_union_map *sched;
4578 con = isl_set_read_from_str(ctx, context);
4579 dom = isl_union_set_read_from_str(ctx, domain);
4580 dep = isl_union_map_read_from_str(ctx, validity);
4581 prox = isl_union_map_read_from_str(ctx, proximity);
4582 sc = isl_schedule_constraints_on_domain(dom);
4583 sc = isl_schedule_constraints_set_context(sc, con);
4584 sc = isl_schedule_constraints_set_validity(sc, dep);
4585 sc = isl_schedule_constraints_set_proximity(sc, prox);
4586 schedule = isl_schedule_constraints_compute_schedule(sc);
4587 sched = isl_schedule_get_map(schedule);
4588 isl_schedule_free(schedule);
4590 return sched;
4593 /* Compute a schedule for the given instance set, validity constraints and
4594 * proximity constraints and return a corresponding union map representation.
4596 static __isl_give isl_union_map *compute_schedule(isl_ctx *ctx,
4597 const char *domain, const char *validity, const char *proximity)
4599 return compute_schedule_with_context(ctx, domain, validity, proximity,
4600 "{ : }");
4603 /* Check that a schedule can be constructed on the given domain
4604 * with the given validity and proximity constraints.
4606 static int test_has_schedule(isl_ctx *ctx, const char *domain,
4607 const char *validity, const char *proximity)
4609 isl_union_map *sched;
4611 sched = compute_schedule(ctx, domain, validity, proximity);
4612 if (!sched)
4613 return -1;
4615 isl_union_map_free(sched);
4616 return 0;
4619 int test_special_schedule(isl_ctx *ctx, const char *domain,
4620 const char *validity, const char *proximity, const char *expected_sched)
4622 isl_union_map *sched1, *sched2;
4623 int equal;
4625 sched1 = compute_schedule(ctx, domain, validity, proximity);
4626 sched2 = isl_union_map_read_from_str(ctx, expected_sched);
4628 equal = isl_union_map_is_equal(sched1, sched2);
4629 isl_union_map_free(sched1);
4630 isl_union_map_free(sched2);
4632 if (equal < 0)
4633 return -1;
4634 if (!equal)
4635 isl_die(ctx, isl_error_unknown, "unexpected schedule",
4636 return -1);
4638 return 0;
4641 /* Check that the schedule map is properly padded, i.e., that the range
4642 * lives in a single space.
4644 static int test_padded_schedule(isl_ctx *ctx)
4646 const char *str;
4647 isl_union_set *D;
4648 isl_union_map *validity, *proximity;
4649 isl_schedule_constraints *sc;
4650 isl_schedule *sched;
4651 isl_union_map *umap;
4652 isl_union_set *range;
4653 isl_set *set;
4655 str = "[N] -> { S0[i] : 0 <= i <= N; S1[i, j] : 0 <= i, j <= N }";
4656 D = isl_union_set_read_from_str(ctx, str);
4657 validity = isl_union_map_empty(isl_union_set_get_space(D));
4658 proximity = isl_union_map_copy(validity);
4659 sc = isl_schedule_constraints_on_domain(D);
4660 sc = isl_schedule_constraints_set_validity(sc, validity);
4661 sc = isl_schedule_constraints_set_proximity(sc, proximity);
4662 sched = isl_schedule_constraints_compute_schedule(sc);
4663 umap = isl_schedule_get_map(sched);
4664 isl_schedule_free(sched);
4665 range = isl_union_map_range(umap);
4666 set = isl_set_from_union_set(range);
4667 isl_set_free(set);
4669 if (!set)
4670 return -1;
4672 return 0;
4675 /* Check that conditional validity constraints are also taken into
4676 * account across bands.
4677 * In particular, try to make sure that live ranges D[1,0]->C[2,1] and
4678 * D[2,0]->C[3,0] are not local in the outer band of the generated schedule
4679 * and then check that the adjacent order constraint C[2,1]->D[2,0]
4680 * is enforced by the rest of the schedule.
4682 static int test_special_conditional_schedule_constraints(isl_ctx *ctx)
4684 const char *str;
4685 isl_union_set *domain;
4686 isl_union_map *validity, *proximity, *condition;
4687 isl_union_map *sink, *source, *dep;
4688 isl_schedule_constraints *sc;
4689 isl_schedule *schedule;
4690 isl_union_access_info *access;
4691 isl_union_flow *flow;
4692 int empty;
4694 str = "[n] -> { C[k, i] : k <= -1 + n and i >= 0 and i <= -1 + k; "
4695 "A[k] : k >= 1 and k <= -1 + n; "
4696 "B[k, i] : k <= -1 + n and i >= 0 and i <= -1 + k; "
4697 "D[k, i] : k <= -1 + n and i >= 0 and i <= -1 + k }";
4698 domain = isl_union_set_read_from_str(ctx, str);
4699 sc = isl_schedule_constraints_on_domain(domain);
4700 str = "[n] -> { D[k, i] -> C[1 + k, k - i] : "
4701 "k <= -2 + n and i >= 1 and i <= -1 + k; "
4702 "D[k, i] -> C[1 + k, i] : "
4703 "k <= -2 + n and i >= 1 and i <= -1 + k; "
4704 "D[k, 0] -> C[1 + k, k] : k >= 1 and k <= -2 + n; "
4705 "D[k, 0] -> C[1 + k, 0] : k >= 1 and k <= -2 + n }";
4706 validity = isl_union_map_read_from_str(ctx, str);
4707 sc = isl_schedule_constraints_set_validity(sc, validity);
4708 str = "[n] -> { C[k, i] -> D[k, i] : "
4709 "0 <= i <= -1 + k and k <= -1 + n }";
4710 proximity = isl_union_map_read_from_str(ctx, str);
4711 sc = isl_schedule_constraints_set_proximity(sc, proximity);
4712 str = "[n] -> { [D[k, i] -> a[]] -> [C[1 + k, k - i] -> b[]] : "
4713 "i <= -1 + k and i >= 1 and k <= -2 + n; "
4714 "[B[k, i] -> c[]] -> [B[k, 1 + i] -> c[]] : "
4715 "k <= -1 + n and i >= 0 and i <= -2 + k }";
4716 condition = isl_union_map_read_from_str(ctx, str);
4717 str = "[n] -> { [B[k, i] -> e[]] -> [D[k, i] -> a[]] : "
4718 "i >= 0 and i <= -1 + k and k <= -1 + n; "
4719 "[C[k, i] -> b[]] -> [D[k', -1 + k - i] -> a[]] : "
4720 "i >= 0 and i <= -1 + k and k <= -1 + n and "
4721 "k' <= -1 + n and k' >= k - i and k' >= 1 + k; "
4722 "[C[k, i] -> b[]] -> [D[k, -1 + k - i] -> a[]] : "
4723 "i >= 0 and i <= -1 + k and k <= -1 + n; "
4724 "[B[k, i] -> c[]] -> [A[k'] -> d[]] : "
4725 "k <= -1 + n and i >= 0 and i <= -1 + k and "
4726 "k' >= 1 and k' <= -1 + n and k' >= 1 + k }";
4727 validity = isl_union_map_read_from_str(ctx, str);
4728 sc = isl_schedule_constraints_set_conditional_validity(sc, condition,
4729 validity);
4730 schedule = isl_schedule_constraints_compute_schedule(sc);
4731 str = "{ D[2,0] -> [] }";
4732 sink = isl_union_map_read_from_str(ctx, str);
4733 access = isl_union_access_info_from_sink(sink);
4734 str = "{ C[2,1] -> [] }";
4735 source = isl_union_map_read_from_str(ctx, str);
4736 access = isl_union_access_info_set_must_source(access, source);
4737 access = isl_union_access_info_set_schedule(access, schedule);
4738 flow = isl_union_access_info_compute_flow(access);
4739 dep = isl_union_flow_get_must_dependence(flow);
4740 isl_union_flow_free(flow);
4741 empty = isl_union_map_is_empty(dep);
4742 isl_union_map_free(dep);
4744 if (empty < 0)
4745 return -1;
4746 if (empty)
4747 isl_die(ctx, isl_error_unknown,
4748 "conditional validity not respected", return -1);
4750 return 0;
4753 /* Check that the test for violated conditional validity constraints
4754 * is not confused by domain compression.
4755 * In particular, earlier versions of isl would apply
4756 * a schedule on the compressed domains to the original domains,
4757 * resulting in a failure to detect that the default schedule
4758 * violates the conditional validity constraints.
4760 static int test_special_conditional_schedule_constraints_2(isl_ctx *ctx)
4762 const char *str;
4763 isl_bool empty;
4764 isl_union_set *domain;
4765 isl_union_map *validity, *condition;
4766 isl_schedule_constraints *sc;
4767 isl_schedule *schedule;
4768 isl_union_map *umap;
4769 isl_map *map, *ge;
4771 str = "{ A[0, i] : 0 <= i <= 10; B[1, i] : 0 <= i <= 10 }";
4772 domain = isl_union_set_read_from_str(ctx, str);
4773 sc = isl_schedule_constraints_on_domain(domain);
4774 str = "{ B[1, i] -> A[0, i + 1] }";
4775 condition = isl_union_map_read_from_str(ctx, str);
4776 str = "{ A[0, i] -> B[1, i - 1] }";
4777 validity = isl_union_map_read_from_str(ctx, str);
4778 sc = isl_schedule_constraints_set_conditional_validity(sc, condition,
4779 isl_union_map_copy(validity));
4780 schedule = isl_schedule_constraints_compute_schedule(sc);
4781 umap = isl_schedule_get_map(schedule);
4782 isl_schedule_free(schedule);
4783 validity = isl_union_map_apply_domain(validity,
4784 isl_union_map_copy(umap));
4785 validity = isl_union_map_apply_range(validity, umap);
4786 map = isl_map_from_union_map(validity);
4787 ge = isl_map_lex_ge(isl_space_domain(isl_map_get_space(map)));
4788 map = isl_map_intersect(map, ge);
4789 empty = isl_map_is_empty(map);
4790 isl_map_free(map);
4792 if (empty < 0)
4793 return -1;
4794 if (!empty)
4795 isl_die(ctx, isl_error_unknown,
4796 "conditional validity constraints not satisfied",
4797 return -1);
4799 return 0;
4802 /* Input for testing of schedule construction based on
4803 * conditional constraints.
4805 * domain is the iteration domain
4806 * flow are the flow dependences, which determine the validity and
4807 * proximity constraints
4808 * condition are the conditions on the conditional validity constraints
4809 * conditional_validity are the conditional validity constraints
4810 * outer_band_n is the expected number of members in the outer band
4812 struct {
4813 const char *domain;
4814 const char *flow;
4815 const char *condition;
4816 const char *conditional_validity;
4817 int outer_band_n;
4818 } live_range_tests[] = {
4819 /* Contrived example that illustrates that we need to keep
4820 * track of tagged condition dependences and
4821 * tagged conditional validity dependences
4822 * in isl_sched_edge separately.
4823 * In particular, the conditional validity constraints on A
4824 * cannot be satisfied,
4825 * but they can be ignored because there are no corresponding
4826 * condition constraints. However, we do have an additional
4827 * conditional validity constraint that maps to the same
4828 * dependence relation
4829 * as the condition constraint on B. If we did not make a distinction
4830 * between tagged condition and tagged conditional validity
4831 * dependences, then we
4832 * could end up treating this shared dependence as an condition
4833 * constraint on A, forcing a localization of the conditions,
4834 * which is impossible.
4836 { "{ S[i] : 0 <= 1 < 100; T[i] : 0 <= 1 < 100 }",
4837 "{ S[i] -> S[i+1] : 0 <= i < 99 }",
4838 "{ [S[i] -> B[]] -> [S[i+1] -> B[]] : 0 <= i < 99 }",
4839 "{ [S[i] -> A[]] -> [T[i'] -> A[]] : 0 <= i', i < 100 and i != i';"
4840 "[T[i] -> A[]] -> [S[i'] -> A[]] : 0 <= i', i < 100 and i != i';"
4841 "[S[i] -> A[]] -> [S[i+1] -> A[]] : 0 <= i < 99 }",
4844 /* TACO 2013 Fig. 7 */
4845 { "[n] -> { S1[i,j] : 0 <= i,j < n; S2[i,j] : 0 <= i,j < n }",
4846 "[n] -> { S1[i,j] -> S2[i,j] : 0 <= i,j < n;"
4847 "S2[i,j] -> S2[i,j+1] : 0 <= i < n and 0 <= j < n - 1 }",
4848 "[n] -> { [S1[i,j] -> t[]] -> [S2[i,j] -> t[]] : 0 <= i,j < n;"
4849 "[S2[i,j] -> x1[]] -> [S2[i,j+1] -> x1[]] : "
4850 "0 <= i < n and 0 <= j < n - 1 }",
4851 "[n] -> { [S2[i,j] -> t[]] -> [S1[i,j'] -> t[]] : "
4852 "0 <= i < n and 0 <= j < j' < n;"
4853 "[S2[i,j] -> t[]] -> [S1[i',j'] -> t[]] : "
4854 "0 <= i < i' < n and 0 <= j,j' < n;"
4855 "[S2[i,j] -> x1[]] -> [S2[i,j'] -> x1[]] : "
4856 "0 <= i,j,j' < n and j < j' }",
4859 /* TACO 2013 Fig. 7, without tags */
4860 { "[n] -> { S1[i,j] : 0 <= i,j < n; S2[i,j] : 0 <= i,j < n }",
4861 "[n] -> { S1[i,j] -> S2[i,j] : 0 <= i,j < n;"
4862 "S2[i,j] -> S2[i,j+1] : 0 <= i < n and 0 <= j < n - 1 }",
4863 "[n] -> { S1[i,j] -> S2[i,j] : 0 <= i,j < n;"
4864 "S2[i,j] -> S2[i,j+1] : 0 <= i < n and 0 <= j < n - 1 }",
4865 "[n] -> { S2[i,j] -> S1[i,j'] : 0 <= i < n and 0 <= j < j' < n;"
4866 "S2[i,j] -> S1[i',j'] : 0 <= i < i' < n and 0 <= j,j' < n;"
4867 "S2[i,j] -> S2[i,j'] : 0 <= i,j,j' < n and j < j' }",
4870 /* TACO 2013 Fig. 12 */
4871 { "{ S1[i,0] : 0 <= i <= 1; S2[i,j] : 0 <= i <= 1 and 1 <= j <= 2;"
4872 "S3[i,3] : 0 <= i <= 1 }",
4873 "{ S1[i,0] -> S2[i,1] : 0 <= i <= 1;"
4874 "S2[i,1] -> S2[i,2] : 0 <= i <= 1;"
4875 "S2[i,2] -> S3[i,3] : 0 <= i <= 1 }",
4876 "{ [S1[i,0]->t[]] -> [S2[i,1]->t[]] : 0 <= i <= 1;"
4877 "[S2[i,1]->t[]] -> [S2[i,2]->t[]] : 0 <= i <= 1;"
4878 "[S2[i,2]->t[]] -> [S3[i,3]->t[]] : 0 <= i <= 1 }",
4879 "{ [S2[i,1]->t[]] -> [S2[i,2]->t[]] : 0 <= i <= 1;"
4880 "[S2[0,j]->t[]] -> [S2[1,j']->t[]] : 1 <= j,j' <= 2;"
4881 "[S2[0,j]->t[]] -> [S1[1,0]->t[]] : 1 <= j <= 2;"
4882 "[S3[0,3]->t[]] -> [S2[1,j]->t[]] : 1 <= j <= 2;"
4883 "[S3[0,3]->t[]] -> [S1[1,0]->t[]] }",
4888 /* Test schedule construction based on conditional constraints.
4889 * In particular, check the number of members in the outer band node
4890 * as an indication of whether tiling is possible or not.
4892 static int test_conditional_schedule_constraints(isl_ctx *ctx)
4894 int i;
4895 isl_union_set *domain;
4896 isl_union_map *condition;
4897 isl_union_map *flow;
4898 isl_union_map *validity;
4899 isl_schedule_constraints *sc;
4900 isl_schedule *schedule;
4901 isl_schedule_node *node;
4902 isl_size n_member;
4904 if (test_special_conditional_schedule_constraints(ctx) < 0)
4905 return -1;
4906 if (test_special_conditional_schedule_constraints_2(ctx) < 0)
4907 return -1;
4909 for (i = 0; i < ARRAY_SIZE(live_range_tests); ++i) {
4910 domain = isl_union_set_read_from_str(ctx,
4911 live_range_tests[i].domain);
4912 flow = isl_union_map_read_from_str(ctx,
4913 live_range_tests[i].flow);
4914 condition = isl_union_map_read_from_str(ctx,
4915 live_range_tests[i].condition);
4916 validity = isl_union_map_read_from_str(ctx,
4917 live_range_tests[i].conditional_validity);
4918 sc = isl_schedule_constraints_on_domain(domain);
4919 sc = isl_schedule_constraints_set_validity(sc,
4920 isl_union_map_copy(flow));
4921 sc = isl_schedule_constraints_set_proximity(sc, flow);
4922 sc = isl_schedule_constraints_set_conditional_validity(sc,
4923 condition, validity);
4924 schedule = isl_schedule_constraints_compute_schedule(sc);
4925 node = isl_schedule_get_root(schedule);
4926 while (node &&
4927 isl_schedule_node_get_type(node) != isl_schedule_node_band)
4928 node = isl_schedule_node_first_child(node);
4929 n_member = isl_schedule_node_band_n_member(node);
4930 isl_schedule_node_free(node);
4931 isl_schedule_free(schedule);
4933 if (!schedule || n_member < 0)
4934 return -1;
4935 if (n_member != live_range_tests[i].outer_band_n)
4936 isl_die(ctx, isl_error_unknown,
4937 "unexpected number of members in outer band",
4938 return -1);
4940 return 0;
4943 /* Check that the schedule computed for the given instance set and
4944 * dependence relation strongly satisfies the dependences.
4945 * In particular, check that no instance is scheduled before
4946 * or together with an instance on which it depends.
4947 * Earlier versions of isl would produce a schedule that
4948 * only weakly satisfies the dependences.
4950 static int test_strongly_satisfying_schedule(isl_ctx *ctx)
4952 const char *domain, *dep;
4953 isl_union_map *D, *schedule;
4954 isl_map *map, *ge;
4955 int empty;
4957 domain = "{ B[i0, i1] : 0 <= i0 <= 1 and 0 <= i1 <= 11; "
4958 "A[i0] : 0 <= i0 <= 1 }";
4959 dep = "{ B[i0, i1] -> B[i0, 1 + i1] : 0 <= i0 <= 1 and 0 <= i1 <= 10; "
4960 "B[0, 11] -> A[1]; A[i0] -> B[i0, 0] : 0 <= i0 <= 1 }";
4961 schedule = compute_schedule(ctx, domain, dep, dep);
4962 D = isl_union_map_read_from_str(ctx, dep);
4963 D = isl_union_map_apply_domain(D, isl_union_map_copy(schedule));
4964 D = isl_union_map_apply_range(D, schedule);
4965 map = isl_map_from_union_map(D);
4966 ge = isl_map_lex_ge(isl_space_domain(isl_map_get_space(map)));
4967 map = isl_map_intersect(map, ge);
4968 empty = isl_map_is_empty(map);
4969 isl_map_free(map);
4971 if (empty < 0)
4972 return -1;
4973 if (!empty)
4974 isl_die(ctx, isl_error_unknown,
4975 "dependences not strongly satisfied", return -1);
4977 return 0;
4980 /* Compute a schedule for input where the instance set constraints
4981 * conflict with the context constraints.
4982 * Earlier versions of isl did not properly handle this situation.
4984 static int test_conflicting_context_schedule(isl_ctx *ctx)
4986 isl_union_map *schedule;
4987 const char *domain, *context;
4989 domain = "[n] -> { A[] : n >= 0 }";
4990 context = "[n] -> { : n < 0 }";
4991 schedule = compute_schedule_with_context(ctx,
4992 domain, "{}", "{}", context);
4993 isl_union_map_free(schedule);
4995 if (!schedule)
4996 return -1;
4998 return 0;
5001 /* Check that a set of schedule constraints that only allow for
5002 * a coalescing schedule still produces a schedule even if the user
5003 * request a non-coalescing schedule. Earlier versions of isl
5004 * would not handle this case correctly.
5006 static int test_coalescing_schedule(isl_ctx *ctx)
5008 const char *domain, *dep;
5009 isl_union_set *I;
5010 isl_union_map *D;
5011 isl_schedule_constraints *sc;
5012 isl_schedule *schedule;
5013 int treat_coalescing;
5015 domain = "{ S[a, b] : 0 <= a <= 1 and 0 <= b <= 1 }";
5016 dep = "{ S[a, b] -> S[a + b, 1 - b] }";
5017 I = isl_union_set_read_from_str(ctx, domain);
5018 D = isl_union_map_read_from_str(ctx, dep);
5019 sc = isl_schedule_constraints_on_domain(I);
5020 sc = isl_schedule_constraints_set_validity(sc, D);
5021 treat_coalescing = isl_options_get_schedule_treat_coalescing(ctx);
5022 isl_options_set_schedule_treat_coalescing(ctx, 1);
5023 schedule = isl_schedule_constraints_compute_schedule(sc);
5024 isl_options_set_schedule_treat_coalescing(ctx, treat_coalescing);
5025 isl_schedule_free(schedule);
5026 if (!schedule)
5027 return -1;
5028 return 0;
5031 /* Check that the scheduler does not perform any needless
5032 * compound skewing. Earlier versions of isl would compute
5033 * schedules in terms of transformed schedule coefficients and
5034 * would not accurately keep track of the sum of the original
5035 * schedule coefficients. It could then produce the schedule
5036 * S[t,i,j,k] -> [t, 2t + i, 2t + i + j, 2t + i + j + k]
5037 * for the input below instead of the schedule below.
5039 static int test_skewing_schedule(isl_ctx *ctx)
5041 const char *D, *V, *P, *S;
5043 D = "[n] -> { S[t,i,j,k] : 0 <= t,i,j,k < n }";
5044 V = "[n] -> { S[t,i,j,k] -> S[t+1,a,b,c] : 0 <= t,i,j,k,a,b,c < n and "
5045 "-2 <= a-i <= 2 and -1 <= a-i + b-j <= 1 and "
5046 "-1 <= a-i + b-j + c-k <= 1 }";
5047 P = "{ }";
5048 S = "{ S[t,i,j,k] -> [t, 2t + i, t + i + j, 2t + k] }";
5050 return test_special_schedule(ctx, D, V, P, S);
5053 int test_schedule(isl_ctx *ctx)
5055 const char *D, *W, *R, *V, *P, *S;
5056 int max_coincidence;
5057 int treat_coalescing;
5059 /* Handle resulting schedule with zero bands. */
5060 if (test_one_schedule(ctx, "{[]}", "{}", "{}", "{[] -> []}", 0, 0) < 0)
5061 return -1;
5063 /* Jacobi */
5064 D = "[T,N] -> { S1[t,i] : 1 <= t <= T and 2 <= i <= N - 1 }";
5065 W = "{ S1[t,i] -> a[t,i] }";
5066 R = "{ S1[t,i] -> a[t-1,i]; S1[t,i] -> a[t-1,i-1]; "
5067 "S1[t,i] -> a[t-1,i+1] }";
5068 S = "{ S1[t,i] -> [t,i] }";
5069 if (test_one_schedule(ctx, D, W, R, S, 2, 0) < 0)
5070 return -1;
5072 /* Fig. 5 of CC2008 */
5073 D = "[N] -> { S_0[i, j] : i >= 0 and i <= -1 + N and j >= 2 and "
5074 "j <= -1 + N }";
5075 W = "[N] -> { S_0[i, j] -> a[i, j] : i >= 0 and i <= -1 + N and "
5076 "j >= 2 and j <= -1 + N }";
5077 R = "[N] -> { S_0[i, j] -> a[j, i] : i >= 0 and i <= -1 + N and "
5078 "j >= 2 and j <= -1 + N; "
5079 "S_0[i, j] -> a[i, -1 + j] : i >= 0 and i <= -1 + N and "
5080 "j >= 2 and j <= -1 + N }";
5081 S = "[N] -> { S_0[i, j] -> [0, i, 0, j, 0] }";
5082 if (test_one_schedule(ctx, D, W, R, S, 2, 0) < 0)
5083 return -1;
5085 D = "{ S1[i] : 0 <= i <= 10; S2[i] : 0 <= i <= 9 }";
5086 W = "{ S1[i] -> a[i] }";
5087 R = "{ S2[i] -> a[i+1] }";
5088 S = "{ S1[i] -> [0,i]; S2[i] -> [1,i] }";
5089 if (test_one_schedule(ctx, D, W, R, S, 1, 1) < 0)
5090 return -1;
5092 D = "{ S1[i] : 0 <= i < 10; S2[i] : 0 <= i < 10 }";
5093 W = "{ S1[i] -> a[i] }";
5094 R = "{ S2[i] -> a[9-i] }";
5095 S = "{ S1[i] -> [0,i]; S2[i] -> [1,i] }";
5096 if (test_one_schedule(ctx, D, W, R, S, 1, 1) < 0)
5097 return -1;
5099 D = "[N] -> { S1[i] : 0 <= i < N; S2[i] : 0 <= i < N }";
5100 W = "{ S1[i] -> a[i] }";
5101 R = "[N] -> { S2[i] -> a[N-1-i] }";
5102 S = "{ S1[i] -> [0,i]; S2[i] -> [1,i] }";
5103 if (test_one_schedule(ctx, D, W, R, S, 1, 1) < 0)
5104 return -1;
5106 D = "{ S1[i] : 0 < i < 10; S2[i] : 0 <= i < 10 }";
5107 W = "{ S1[i] -> a[i]; S2[i] -> b[i] }";
5108 R = "{ S2[i] -> a[i]; S1[i] -> b[i-1] }";
5109 S = "{ S1[i] -> [i,0]; S2[i] -> [i,1] }";
5110 if (test_one_schedule(ctx, D, W, R, S, 0, 0) < 0)
5111 return -1;
5113 D = "[N] -> { S1[i] : 1 <= i <= N; S2[i,j] : 1 <= i,j <= N }";
5114 W = "{ S1[i] -> a[0,i]; S2[i,j] -> a[i,j] }";
5115 R = "{ S2[i,j] -> a[i-1,j] }";
5116 S = "{ S1[i] -> [0,i,0]; S2[i,j] -> [1,i,j] }";
5117 if (test_one_schedule(ctx, D, W, R, S, 2, 1) < 0)
5118 return -1;
5120 D = "[N] -> { S1[i] : 1 <= i <= N; S2[i,j] : 1 <= i,j <= N }";
5121 W = "{ S1[i] -> a[i,0]; S2[i,j] -> a[i,j] }";
5122 R = "{ S2[i,j] -> a[i,j-1] }";
5123 S = "{ S1[i] -> [0,i,0]; S2[i,j] -> [1,i,j] }";
5124 if (test_one_schedule(ctx, D, W, R, S, 2, 1) < 0)
5125 return -1;
5127 D = "[N] -> { S_0[]; S_1[i] : i >= 0 and i <= -1 + N; S_2[] }";
5128 W = "[N] -> { S_0[] -> a[0]; S_2[] -> b[0]; "
5129 "S_1[i] -> a[1 + i] : i >= 0 and i <= -1 + N }";
5130 R = "[N] -> { S_2[] -> a[N]; S_1[i] -> a[i] : i >= 0 and i <= -1 + N }";
5131 S = "[N] -> { S_1[i] -> [1, i, 0]; S_2[] -> [2, 0, 1]; "
5132 "S_0[] -> [0, 0, 0] }";
5133 if (test_one_schedule(ctx, D, W, R, S, 1, 0) < 0)
5134 return -1;
5135 ctx->opt->schedule_parametric = 0;
5136 if (test_one_schedule(ctx, D, W, R, S, 0, 0) < 0)
5137 return -1;
5138 ctx->opt->schedule_parametric = 1;
5140 D = "[N] -> { S1[i] : 1 <= i <= N; S2[i] : 1 <= i <= N; "
5141 "S3[i,j] : 1 <= i,j <= N; S4[i] : 1 <= i <= N }";
5142 W = "{ S1[i] -> a[i,0]; S2[i] -> a[0,i]; S3[i,j] -> a[i,j] }";
5143 R = "[N] -> { S3[i,j] -> a[i-1,j]; S3[i,j] -> a[i,j-1]; "
5144 "S4[i] -> a[i,N] }";
5145 S = "{ S1[i] -> [0,i,0]; S2[i] -> [1,i,0]; S3[i,j] -> [2,i,j]; "
5146 "S4[i] -> [4,i,0] }";
5147 max_coincidence = isl_options_get_schedule_maximize_coincidence(ctx);
5148 isl_options_set_schedule_maximize_coincidence(ctx, 0);
5149 if (test_one_schedule(ctx, D, W, R, S, 2, 0) < 0)
5150 return -1;
5151 isl_options_set_schedule_maximize_coincidence(ctx, max_coincidence);
5153 D = "[N] -> { S_0[i, j] : i >= 1 and i <= N and j >= 1 and j <= N }";
5154 W = "[N] -> { S_0[i, j] -> s[0] : i >= 1 and i <= N and j >= 1 and "
5155 "j <= N }";
5156 R = "[N] -> { S_0[i, j] -> s[0] : i >= 1 and i <= N and j >= 1 and "
5157 "j <= N; "
5158 "S_0[i, j] -> a[i, j] : i >= 1 and i <= N and j >= 1 and "
5159 "j <= N }";
5160 S = "[N] -> { S_0[i, j] -> [0, i, 0, j, 0] }";
5161 if (test_one_schedule(ctx, D, W, R, S, 0, 0) < 0)
5162 return -1;
5164 D = "[N] -> { S_0[t] : t >= 0 and t <= -1 + N; "
5165 " S_2[t] : t >= 0 and t <= -1 + N; "
5166 " S_1[t, i] : t >= 0 and t <= -1 + N and i >= 0 and "
5167 "i <= -1 + N }";
5168 W = "[N] -> { S_0[t] -> a[t, 0] : t >= 0 and t <= -1 + N; "
5169 " S_2[t] -> b[t] : t >= 0 and t <= -1 + N; "
5170 " S_1[t, i] -> a[t, 1 + i] : t >= 0 and t <= -1 + N and "
5171 "i >= 0 and i <= -1 + N }";
5172 R = "[N] -> { S_1[t, i] -> a[t, i] : t >= 0 and t <= -1 + N and "
5173 "i >= 0 and i <= -1 + N; "
5174 " S_2[t] -> a[t, N] : t >= 0 and t <= -1 + N }";
5175 S = "[N] -> { S_2[t] -> [0, t, 2]; S_1[t, i] -> [0, t, 1, i, 0]; "
5176 " S_0[t] -> [0, t, 0] }";
5178 if (test_one_schedule(ctx, D, W, R, S, 2, 1) < 0)
5179 return -1;
5180 ctx->opt->schedule_parametric = 0;
5181 if (test_one_schedule(ctx, D, W, R, S, 0, 0) < 0)
5182 return -1;
5183 ctx->opt->schedule_parametric = 1;
5185 D = "[N] -> { S1[i,j] : 0 <= i,j < N; S2[i,j] : 0 <= i,j < N }";
5186 S = "{ S1[i,j] -> [0,i,j]; S2[i,j] -> [1,i,j] }";
5187 if (test_one_schedule(ctx, D, "{}", "{}", S, 2, 2) < 0)
5188 return -1;
5190 D = "[M, N] -> { S_1[i] : i >= 0 and i <= -1 + M; "
5191 "S_0[i, j] : i >= 0 and i <= -1 + M and j >= 0 and j <= -1 + N }";
5192 W = "[M, N] -> { S_0[i, j] -> a[j] : i >= 0 and i <= -1 + M and "
5193 "j >= 0 and j <= -1 + N; "
5194 "S_1[i] -> b[0] : i >= 0 and i <= -1 + M }";
5195 R = "[M, N] -> { S_0[i, j] -> a[0] : i >= 0 and i <= -1 + M and "
5196 "j >= 0 and j <= -1 + N; "
5197 "S_1[i] -> b[0] : i >= 0 and i <= -1 + M }";
5198 S = "[M, N] -> { S_1[i] -> [1, i, 0]; S_0[i, j] -> [0, i, 0, j, 0] }";
5199 if (test_one_schedule(ctx, D, W, R, S, 0, 0) < 0)
5200 return -1;
5202 D = "{ S_0[i] : i >= 0 }";
5203 W = "{ S_0[i] -> a[i] : i >= 0 }";
5204 R = "{ S_0[i] -> a[0] : i >= 0 }";
5205 S = "{ S_0[i] -> [0, i, 0] }";
5206 if (test_one_schedule(ctx, D, W, R, S, 0, 0) < 0)
5207 return -1;
5209 D = "{ S_0[i] : i >= 0; S_1[i] : i >= 0 }";
5210 W = "{ S_0[i] -> a[i] : i >= 0; S_1[i] -> b[i] : i >= 0 }";
5211 R = "{ S_0[i] -> b[0] : i >= 0; S_1[i] -> a[i] : i >= 0 }";
5212 S = "{ S_1[i] -> [0, i, 1]; S_0[i] -> [0, i, 0] }";
5213 if (test_one_schedule(ctx, D, W, R, S, 0, 0) < 0)
5214 return -1;
5216 D = "[n] -> { S_0[j, k] : j <= -1 + n and j >= 0 and "
5217 "k <= -1 + n and k >= 0 }";
5218 W = "[n] -> { S_0[j, k] -> B[j] : j <= -1 + n and j >= 0 and " "k <= -1 + n and k >= 0 }";
5219 R = "[n] -> { S_0[j, k] -> B[j] : j <= -1 + n and j >= 0 and "
5220 "k <= -1 + n and k >= 0; "
5221 "S_0[j, k] -> B[k] : j <= -1 + n and j >= 0 and "
5222 "k <= -1 + n and k >= 0; "
5223 "S_0[j, k] -> A[k] : j <= -1 + n and j >= 0 and "
5224 "k <= -1 + n and k >= 0 }";
5225 S = "[n] -> { S_0[j, k] -> [2, j, k] }";
5226 ctx->opt->schedule_outer_coincidence = 1;
5227 if (test_one_schedule(ctx, D, W, R, S, 0, 0) < 0)
5228 return -1;
5229 ctx->opt->schedule_outer_coincidence = 0;
5231 D = "{Stmt_for_body24[i0, i1, i2, i3]:"
5232 "i0 >= 0 and i0 <= 1 and i1 >= 0 and i1 <= 6 and i2 >= 2 and "
5233 "i2 <= 6 - i1 and i3 >= 0 and i3 <= -1 + i2;"
5234 "Stmt_for_body24[i0, i1, 1, 0]:"
5235 "i0 >= 0 and i0 <= 1 and i1 >= 0 and i1 <= 5;"
5236 "Stmt_for_body7[i0, i1, i2]:"
5237 "i0 >= 0 and i0 <= 1 and i1 >= 0 and i1 <= 7 and i2 >= 0 and "
5238 "i2 <= 7 }";
5240 V = "{Stmt_for_body24[0, i1, i2, i3] -> "
5241 "Stmt_for_body24[1, i1, i2, i3]:"
5242 "i3 >= 0 and i3 <= -1 + i2 and i1 >= 0 and i2 <= 6 - i1 and "
5243 "i2 >= 1;"
5244 "Stmt_for_body24[0, i1, i2, i3] -> "
5245 "Stmt_for_body7[1, 1 + i1 + i3, 1 + i1 + i2]:"
5246 "i3 <= -1 + i2 and i2 <= 6 - i1 and i2 >= 1 and i1 >= 0 and "
5247 "i3 >= 0;"
5248 "Stmt_for_body24[0, i1, i2, i3] ->"
5249 "Stmt_for_body7[1, i1, 1 + i1 + i3]:"
5250 "i3 >= 0 and i2 <= 6 - i1 and i1 >= 0 and i3 <= -1 + i2;"
5251 "Stmt_for_body7[0, i1, i2] -> Stmt_for_body7[1, i1, i2]:"
5252 "(i2 >= 1 + i1 and i2 <= 6 and i1 >= 0 and i1 <= 4) or "
5253 "(i2 >= 3 and i2 <= 7 and i1 >= 1 and i2 >= 1 + i1) or "
5254 "(i2 >= 0 and i2 <= i1 and i2 >= -7 + i1 and i1 <= 7);"
5255 "Stmt_for_body7[0, i1, 1 + i1] -> Stmt_for_body7[1, i1, 1 + i1]:"
5256 "i1 <= 6 and i1 >= 0;"
5257 "Stmt_for_body7[0, 0, 7] -> Stmt_for_body7[1, 0, 7];"
5258 "Stmt_for_body7[i0, i1, i2] -> "
5259 "Stmt_for_body24[i0, o1, -1 + i2 - o1, -1 + i1 - o1]:"
5260 "i0 >= 0 and i0 <= 1 and o1 >= 0 and i2 >= 1 + i1 and "
5261 "o1 <= -2 + i2 and i2 <= 7 and o1 <= -1 + i1;"
5262 "Stmt_for_body7[i0, i1, i2] -> "
5263 "Stmt_for_body24[i0, i1, o2, -1 - i1 + i2]:"
5264 "i0 >= 0 and i0 <= 1 and i1 >= 0 and o2 >= -i1 + i2 and "
5265 "o2 >= 1 and o2 <= 6 - i1 and i2 >= 1 + i1 }";
5266 P = V;
5268 treat_coalescing = isl_options_get_schedule_treat_coalescing(ctx);
5269 isl_options_set_schedule_treat_coalescing(ctx, 0);
5270 if (test_has_schedule(ctx, D, V, P) < 0)
5271 return -1;
5272 isl_options_set_schedule_treat_coalescing(ctx, treat_coalescing);
5274 D = "{ S_0[i, j] : i >= 1 and i <= 10 and j >= 1 and j <= 8 }";
5275 V = "{ S_0[i, j] -> S_0[i, 1 + j] : i >= 1 and i <= 10 and "
5276 "j >= 1 and j <= 7;"
5277 "S_0[i, j] -> S_0[1 + i, j] : i >= 1 and i <= 9 and "
5278 "j >= 1 and j <= 8 }";
5279 P = "{ }";
5280 S = "{ S_0[i, j] -> [i + j, i] }";
5281 ctx->opt->schedule_algorithm = ISL_SCHEDULE_ALGORITHM_FEAUTRIER;
5282 if (test_special_schedule(ctx, D, V, P, S) < 0)
5283 return -1;
5284 ctx->opt->schedule_algorithm = ISL_SCHEDULE_ALGORITHM_ISL;
5286 /* Fig. 1 from Feautrier's "Some Efficient Solutions..." pt. 2, 1992 */
5287 D = "[N] -> { S_0[i, j] : i >= 0 and i <= -1 + N and "
5288 "j >= 0 and j <= -1 + i }";
5289 V = "[N] -> { S_0[i, j] -> S_0[i, 1 + j] : j <= -2 + i and "
5290 "i <= -1 + N and j >= 0;"
5291 "S_0[i, -1 + i] -> S_0[1 + i, 0] : i >= 1 and "
5292 "i <= -2 + N }";
5293 P = "{ }";
5294 S = "{ S_0[i, j] -> [i, j] }";
5295 ctx->opt->schedule_algorithm = ISL_SCHEDULE_ALGORITHM_FEAUTRIER;
5296 if (test_special_schedule(ctx, D, V, P, S) < 0)
5297 return -1;
5298 ctx->opt->schedule_algorithm = ISL_SCHEDULE_ALGORITHM_ISL;
5300 /* Test both algorithms on a case with only proximity dependences. */
5301 D = "{ S[i,j] : 0 <= i <= 10 }";
5302 V = "{ }";
5303 P = "{ S[i,j] -> S[i+1,j] : 0 <= i,j <= 10 }";
5304 S = "{ S[i, j] -> [j, i] }";
5305 ctx->opt->schedule_algorithm = ISL_SCHEDULE_ALGORITHM_FEAUTRIER;
5306 if (test_special_schedule(ctx, D, V, P, S) < 0)
5307 return -1;
5308 ctx->opt->schedule_algorithm = ISL_SCHEDULE_ALGORITHM_ISL;
5309 if (test_special_schedule(ctx, D, V, P, S) < 0)
5310 return -1;
5312 D = "{ A[a]; B[] }";
5313 V = "{}";
5314 P = "{ A[a] -> B[] }";
5315 if (test_has_schedule(ctx, D, V, P) < 0)
5316 return -1;
5318 if (test_padded_schedule(ctx) < 0)
5319 return -1;
5321 /* Check that check for progress is not confused by rational
5322 * solution.
5324 D = "[N] -> { S0[i, j] : i >= 0 and i <= N and j >= 0 and j <= N }";
5325 V = "[N] -> { S0[i0, -1 + N] -> S0[2 + i0, 0] : i0 >= 0 and "
5326 "i0 <= -2 + N; "
5327 "S0[i0, i1] -> S0[i0, 1 + i1] : i0 >= 0 and "
5328 "i0 <= N and i1 >= 0 and i1 <= -1 + N }";
5329 P = "{}";
5330 ctx->opt->schedule_algorithm = ISL_SCHEDULE_ALGORITHM_FEAUTRIER;
5331 if (test_has_schedule(ctx, D, V, P) < 0)
5332 return -1;
5333 ctx->opt->schedule_algorithm = ISL_SCHEDULE_ALGORITHM_ISL;
5335 /* Check that we allow schedule rows that are only non-trivial
5336 * on some full-dimensional domains.
5338 D = "{ S1[j] : 0 <= j <= 1; S0[]; S2[k] : 0 <= k <= 1 }";
5339 V = "{ S0[] -> S1[j] : 0 <= j <= 1; S2[0] -> S0[];"
5340 "S1[j] -> S2[1] : 0 <= j <= 1 }";
5341 P = "{}";
5342 ctx->opt->schedule_algorithm = ISL_SCHEDULE_ALGORITHM_FEAUTRIER;
5343 if (test_has_schedule(ctx, D, V, P) < 0)
5344 return -1;
5345 ctx->opt->schedule_algorithm = ISL_SCHEDULE_ALGORITHM_ISL;
5347 if (test_conditional_schedule_constraints(ctx) < 0)
5348 return -1;
5350 if (test_strongly_satisfying_schedule(ctx) < 0)
5351 return -1;
5353 if (test_conflicting_context_schedule(ctx) < 0)
5354 return -1;
5356 if (test_coalescing_schedule(ctx) < 0)
5357 return -1;
5358 if (test_skewing_schedule(ctx) < 0)
5359 return -1;
5361 return 0;
5364 /* Perform scheduling tests using the whole component scheduler.
5366 static int test_schedule_whole(isl_ctx *ctx)
5368 int whole;
5369 int r;
5371 whole = isl_options_get_schedule_whole_component(ctx);
5372 isl_options_set_schedule_whole_component(ctx, 1);
5373 r = test_schedule(ctx);
5374 isl_options_set_schedule_whole_component(ctx, whole);
5376 return r;
5379 /* Perform scheduling tests using the incremental scheduler.
5381 static int test_schedule_incremental(isl_ctx *ctx)
5383 int whole;
5384 int r;
5386 whole = isl_options_get_schedule_whole_component(ctx);
5387 isl_options_set_schedule_whole_component(ctx, 0);
5388 r = test_schedule(ctx);
5389 isl_options_set_schedule_whole_component(ctx, whole);
5391 return r;
5394 int test_plain_injective(isl_ctx *ctx, const char *str, int injective)
5396 isl_union_map *umap;
5397 int test;
5399 umap = isl_union_map_read_from_str(ctx, str);
5400 test = isl_union_map_plain_is_injective(umap);
5401 isl_union_map_free(umap);
5402 if (test < 0)
5403 return -1;
5404 if (test == injective)
5405 return 0;
5406 if (injective)
5407 isl_die(ctx, isl_error_unknown,
5408 "map not detected as injective", return -1);
5409 else
5410 isl_die(ctx, isl_error_unknown,
5411 "map detected as injective", return -1);
5414 int test_injective(isl_ctx *ctx)
5416 const char *str;
5418 if (test_plain_injective(ctx, "{S[i,j] -> A[0]; T[i,j] -> B[1]}", 0))
5419 return -1;
5420 if (test_plain_injective(ctx, "{S[] -> A[0]; T[] -> B[0]}", 1))
5421 return -1;
5422 if (test_plain_injective(ctx, "{S[] -> A[0]; T[] -> A[1]}", 1))
5423 return -1;
5424 if (test_plain_injective(ctx, "{S[] -> A[0]; T[] -> A[0]}", 0))
5425 return -1;
5426 if (test_plain_injective(ctx, "{S[i] -> A[i,0]; T[i] -> A[i,1]}", 1))
5427 return -1;
5428 if (test_plain_injective(ctx, "{S[i] -> A[i]; T[i] -> A[i]}", 0))
5429 return -1;
5430 if (test_plain_injective(ctx, "{S[] -> A[0,0]; T[] -> A[0,1]}", 1))
5431 return -1;
5432 if (test_plain_injective(ctx, "{S[] -> A[0,0]; T[] -> A[1,0]}", 1))
5433 return -1;
5435 str = "{S[] -> A[0,0]; T[] -> A[0,1]; U[] -> A[1,0]}";
5436 if (test_plain_injective(ctx, str, 1))
5437 return -1;
5438 str = "{S[] -> A[0,0]; T[] -> A[0,1]; U[] -> A[0,0]}";
5439 if (test_plain_injective(ctx, str, 0))
5440 return -1;
5442 return 0;
5445 #undef BASE
5446 #define BASE aff
5447 #include "isl_test_plain_equal_templ.c"
5449 #undef BASE
5450 #define BASE pw_multi_aff
5451 #include "isl_test_plain_equal_templ.c"
5453 #undef BASE
5454 #define BASE union_pw_aff
5455 #include "isl_test_plain_equal_templ.c"
5457 /* Basic tests on isl_union_pw_aff.
5459 * In particular, check that isl_union_pw_aff_aff_on_domain
5460 * aligns the parameters of the input objects and
5461 * that isl_union_pw_aff_param_on_domain_id properly
5462 * introduces the parameter.
5464 static int test_upa(isl_ctx *ctx)
5466 const char *str;
5467 isl_id *id;
5468 isl_aff *aff;
5469 isl_union_set *domain;
5470 isl_union_pw_aff *upa;
5471 isl_stat ok;
5473 aff = isl_aff_read_from_str(ctx, "[N] -> { [N] }");
5474 str = "[M] -> { A[i] : 0 <= i < M; B[] }";
5475 domain = isl_union_set_read_from_str(ctx, str);
5476 upa = isl_union_pw_aff_aff_on_domain(domain, aff);
5477 str = "[N, M] -> { A[i] -> [N] : 0 <= i < M; B[] -> [N] }";
5478 ok = union_pw_aff_check_plain_equal(upa, str);
5479 isl_union_pw_aff_free(upa);
5480 if (ok < 0)
5481 return -1;
5483 id = isl_id_alloc(ctx, "N", NULL);
5484 str = "[M] -> { A[i] : 0 <= i < M; B[] }";
5485 domain = isl_union_set_read_from_str(ctx, str);
5486 upa = isl_union_pw_aff_param_on_domain_id(domain, id);
5487 str = "[N, M] -> { A[i] -> [N] : 0 <= i < M; B[] -> [N] }";
5488 ok = union_pw_aff_check_plain_equal(upa, str);
5489 isl_union_pw_aff_free(upa);
5490 if (ok < 0)
5491 return -1;
5493 return 0;
5496 struct {
5497 __isl_give isl_aff *(*fn)(__isl_take isl_aff *aff1,
5498 __isl_take isl_aff *aff2);
5499 } aff_bin_op[] = {
5500 ['+'] = { &isl_aff_add },
5501 ['-'] = { &isl_aff_sub },
5502 ['*'] = { &isl_aff_mul },
5503 ['/'] = { &isl_aff_div },
5506 struct {
5507 const char *arg1;
5508 unsigned char op;
5509 const char *arg2;
5510 const char *res;
5511 } aff_bin_tests[] = {
5512 { "{ [i] -> [i] }", '+', "{ [i] -> [i] }",
5513 "{ [i] -> [2i] }" },
5514 { "{ [i] -> [i] }", '-', "{ [i] -> [i] }",
5515 "{ [i] -> [0] }" },
5516 { "{ [i] -> [i] }", '*', "{ [i] -> [2] }",
5517 "{ [i] -> [2i] }" },
5518 { "{ [i] -> [2] }", '*', "{ [i] -> [i] }",
5519 "{ [i] -> [2i] }" },
5520 { "{ [i] -> [i] }", '/', "{ [i] -> [2] }",
5521 "{ [i] -> [i/2] }" },
5522 { "{ [i] -> [2i] }", '/', "{ [i] -> [2] }",
5523 "{ [i] -> [i] }" },
5524 { "{ [i] -> [i] }", '+', "{ [i] -> [NaN] }",
5525 "{ [i] -> [NaN] }" },
5526 { "{ [i] -> [i] }", '-', "{ [i] -> [NaN] }",
5527 "{ [i] -> [NaN] }" },
5528 { "{ [i] -> [i] }", '*', "{ [i] -> [NaN] }",
5529 "{ [i] -> [NaN] }" },
5530 { "{ [i] -> [2] }", '*', "{ [i] -> [NaN] }",
5531 "{ [i] -> [NaN] }" },
5532 { "{ [i] -> [i] }", '/', "{ [i] -> [NaN] }",
5533 "{ [i] -> [NaN] }" },
5534 { "{ [i] -> [2] }", '/', "{ [i] -> [NaN] }",
5535 "{ [i] -> [NaN] }" },
5536 { "{ [i] -> [NaN] }", '+', "{ [i] -> [i] }",
5537 "{ [i] -> [NaN] }" },
5538 { "{ [i] -> [NaN] }", '-', "{ [i] -> [i] }",
5539 "{ [i] -> [NaN] }" },
5540 { "{ [i] -> [NaN] }", '*', "{ [i] -> [2] }",
5541 "{ [i] -> [NaN] }" },
5542 { "{ [i] -> [NaN] }", '*', "{ [i] -> [i] }",
5543 "{ [i] -> [NaN] }" },
5544 { "{ [i] -> [NaN] }", '/', "{ [i] -> [2] }",
5545 "{ [i] -> [NaN] }" },
5546 { "{ [i] -> [NaN] }", '/', "{ [i] -> [i] }",
5547 "{ [i] -> [NaN] }" },
5548 { "{ [i] -> [i] }", '/', "{ [i] -> [0] }",
5549 "{ [i] -> [NaN] }" },
5552 /* Perform some basic tests of binary operations on isl_aff objects.
5554 static int test_bin_aff(isl_ctx *ctx)
5556 int i;
5557 isl_aff *aff1, *aff2, *res;
5558 __isl_give isl_aff *(*fn)(__isl_take isl_aff *aff1,
5559 __isl_take isl_aff *aff2);
5560 int ok;
5562 for (i = 0; i < ARRAY_SIZE(aff_bin_tests); ++i) {
5563 aff1 = isl_aff_read_from_str(ctx, aff_bin_tests[i].arg1);
5564 aff2 = isl_aff_read_from_str(ctx, aff_bin_tests[i].arg2);
5565 res = isl_aff_read_from_str(ctx, aff_bin_tests[i].res);
5566 fn = aff_bin_op[aff_bin_tests[i].op].fn;
5567 aff1 = fn(aff1, aff2);
5568 if (isl_aff_is_nan(res))
5569 ok = isl_aff_is_nan(aff1);
5570 else
5571 ok = isl_aff_plain_is_equal(aff1, res);
5572 isl_aff_free(aff1);
5573 isl_aff_free(res);
5574 if (ok < 0)
5575 return -1;
5576 if (!ok)
5577 isl_die(ctx, isl_error_unknown,
5578 "unexpected result", return -1);
5581 return 0;
5584 struct {
5585 __isl_give isl_pw_aff *(*fn)(__isl_take isl_pw_aff *pa1,
5586 __isl_take isl_pw_aff *pa2);
5587 } pw_aff_bin_op[] = {
5588 ['m'] = { &isl_pw_aff_min },
5589 ['M'] = { &isl_pw_aff_max },
5592 /* Inputs for binary isl_pw_aff operation tests.
5593 * "arg1" and "arg2" are the two arguments, "op" identifies the operation
5594 * defined by pw_aff_bin_op, and "res" is the expected result.
5596 struct {
5597 const char *arg1;
5598 unsigned char op;
5599 const char *arg2;
5600 const char *res;
5601 } pw_aff_bin_tests[] = {
5602 { "{ [i] -> [i] }", 'm', "{ [i] -> [i] }",
5603 "{ [i] -> [i] }" },
5604 { "{ [i] -> [i] }", 'M', "{ [i] -> [i] }",
5605 "{ [i] -> [i] }" },
5606 { "{ [i] -> [i] }", 'm', "{ [i] -> [0] }",
5607 "{ [i] -> [i] : i <= 0; [i] -> [0] : i > 0 }" },
5608 { "{ [i] -> [i] }", 'M', "{ [i] -> [0] }",
5609 "{ [i] -> [i] : i >= 0; [i] -> [0] : i < 0 }" },
5610 { "{ [i] -> [i] }", 'm', "{ [i] -> [NaN] }",
5611 "{ [i] -> [NaN] }" },
5612 { "{ [i] -> [NaN] }", 'm', "{ [i] -> [i] }",
5613 "{ [i] -> [NaN] }" },
5616 /* Perform some basic tests of binary operations on isl_pw_aff objects.
5618 static int test_bin_pw_aff(isl_ctx *ctx)
5620 int i;
5621 isl_bool ok;
5622 isl_pw_aff *pa1, *pa2, *res;
5624 for (i = 0; i < ARRAY_SIZE(pw_aff_bin_tests); ++i) {
5625 pa1 = isl_pw_aff_read_from_str(ctx, pw_aff_bin_tests[i].arg1);
5626 pa2 = isl_pw_aff_read_from_str(ctx, pw_aff_bin_tests[i].arg2);
5627 res = isl_pw_aff_read_from_str(ctx, pw_aff_bin_tests[i].res);
5628 pa1 = pw_aff_bin_op[pw_aff_bin_tests[i].op].fn(pa1, pa2);
5629 if (isl_pw_aff_involves_nan(res))
5630 ok = isl_pw_aff_involves_nan(pa1);
5631 else
5632 ok = isl_pw_aff_plain_is_equal(pa1, res);
5633 isl_pw_aff_free(pa1);
5634 isl_pw_aff_free(res);
5635 if (ok < 0)
5636 return -1;
5637 if (!ok)
5638 isl_die(ctx, isl_error_unknown,
5639 "unexpected result", return -1);
5642 return 0;
5645 /* Inputs for basic tests of test operations on
5646 * isl_union_pw_multi_aff objects.
5647 * "fn" is the function that is being tested.
5648 * "arg" is a string description of the input.
5649 * "res" is the expected result.
5651 static struct {
5652 isl_bool (*fn)(__isl_keep isl_union_pw_multi_aff *upma1);
5653 const char *arg;
5654 isl_bool res;
5655 } upma_test_tests[] = {
5656 { &isl_union_pw_multi_aff_involves_nan, "{ A[] -> [0]; B[0] -> [1] }",
5657 isl_bool_false },
5658 { &isl_union_pw_multi_aff_involves_nan, "{ A[] -> [NaN]; B[0] -> [1] }",
5659 isl_bool_true },
5660 { &isl_union_pw_multi_aff_involves_nan, "{ A[] -> [0]; B[0] -> [NaN] }",
5661 isl_bool_true },
5662 { &isl_union_pw_multi_aff_involves_nan,
5663 "{ A[] -> [0]; B[0] -> [1, NaN, 5] }",
5664 isl_bool_true },
5665 { &isl_union_pw_multi_aff_involves_locals,
5666 "{ A[] -> [0]; B[0] -> [1] }",
5667 isl_bool_false },
5668 { &isl_union_pw_multi_aff_involves_locals,
5669 "{ A[] -> [0]; B[x] -> [1] : x mod 2 = 0 }",
5670 isl_bool_true },
5671 { &isl_union_pw_multi_aff_involves_locals,
5672 "{ A[] -> [0]; B[x] -> [x // 2] }",
5673 isl_bool_true },
5674 { &isl_union_pw_multi_aff_involves_locals,
5675 "{ A[i] -> [i // 2]; B[0] -> [1] }",
5676 isl_bool_true },
5679 /* Perform some basic tests of test operations on
5680 * isl_union_pw_multi_aff objects.
5682 static isl_stat test_upma_test(isl_ctx *ctx)
5684 int i;
5685 isl_union_pw_multi_aff *upma;
5686 isl_bool res;
5688 for (i = 0; i < ARRAY_SIZE(upma_test_tests); ++i) {
5689 const char *str;
5691 str = upma_test_tests[i].arg;
5692 upma = isl_union_pw_multi_aff_read_from_str(ctx, str);
5693 res = upma_test_tests[i].fn(upma);
5694 isl_union_pw_multi_aff_free(upma);
5695 if (res < 0)
5696 return isl_stat_error;
5697 if (res != upma_test_tests[i].res)
5698 isl_die(ctx, isl_error_unknown,
5699 "unexpected result", return isl_stat_error);
5702 return isl_stat_ok;
5705 struct {
5706 __isl_give isl_union_pw_multi_aff *(*fn)(
5707 __isl_take isl_union_pw_multi_aff *upma1,
5708 __isl_take isl_union_pw_multi_aff *upma2);
5709 const char *arg1;
5710 const char *arg2;
5711 const char *res;
5712 } upma_bin_tests[] = {
5713 { &isl_union_pw_multi_aff_add, "{ A[] -> [0]; B[0] -> [1] }",
5714 "{ B[x] -> [2] : x >= 0 }", "{ B[0] -> [3] }" },
5715 { &isl_union_pw_multi_aff_union_add, "{ A[] -> [0]; B[0] -> [1] }",
5716 "{ B[x] -> [2] : x >= 0 }",
5717 "{ A[] -> [0]; B[0] -> [3]; B[x] -> [2] : x >= 1 }" },
5718 { &isl_union_pw_multi_aff_pullback_union_pw_multi_aff,
5719 "{ A[] -> B[0]; C[x] -> B[1] : x < 10; C[y] -> B[2] : y >= 10 }",
5720 "{ D[i] -> A[] : i < 0; D[i] -> C[i + 5] : i >= 0 }",
5721 "{ D[i] -> B[0] : i < 0; D[i] -> B[1] : 0 <= i < 5; "
5722 "D[i] -> B[2] : i >= 5 }" },
5723 { &isl_union_pw_multi_aff_union_add, "{ B[x] -> A[1] : x <= 0 }",
5724 "{ B[x] -> C[2] : x > 0 }",
5725 "{ B[x] -> A[1] : x <= 0; B[x] -> C[2] : x > 0 }" },
5726 { &isl_union_pw_multi_aff_union_add, "{ B[x] -> A[1] : x <= 0 }",
5727 "{ B[x] -> A[2] : x >= 0 }",
5728 "{ B[x] -> A[1] : x < 0; B[x] -> A[2] : x > 0; B[0] -> A[3] }" },
5730 &isl_union_pw_multi_aff_preimage_domain_wrapped_domain_union_pw_multi_aff,
5731 "{ B[x] -> C[x + 2] }",
5732 "{ D[y] -> B[2y] }",
5733 "{ }" },
5735 &isl_union_pw_multi_aff_preimage_domain_wrapped_domain_union_pw_multi_aff,
5736 "{ [A[x] -> B[x + 1]] -> C[x + 2] }",
5737 "{ D[y] -> B[2y] }",
5738 "{ }" },
5740 &isl_union_pw_multi_aff_preimage_domain_wrapped_domain_union_pw_multi_aff,
5741 "{ [A[x] -> B[x + 1]] -> C[x + 2]; B[x] -> C[x + 2] }",
5742 "{ D[y] -> A[2y] }",
5743 "{ [D[y] -> B[2y + 1]] -> C[2y + 2] }" },
5745 &isl_union_pw_multi_aff_preimage_domain_wrapped_domain_union_pw_multi_aff,
5746 "{ T[A[x] -> B[x + 1]] -> C[x + 2]; B[x] -> C[x + 2] }",
5747 "{ D[y] -> A[2y] }",
5748 "{ T[D[y] -> B[2y + 1]] -> C[2y + 2] }" },
5751 /* Perform some basic tests of binary operations on
5752 * isl_union_pw_multi_aff objects.
5754 static int test_bin_upma(isl_ctx *ctx)
5756 int i;
5757 isl_union_pw_multi_aff *upma1, *upma2, *res;
5758 int ok;
5760 for (i = 0; i < ARRAY_SIZE(upma_bin_tests); ++i) {
5761 upma1 = isl_union_pw_multi_aff_read_from_str(ctx,
5762 upma_bin_tests[i].arg1);
5763 upma2 = isl_union_pw_multi_aff_read_from_str(ctx,
5764 upma_bin_tests[i].arg2);
5765 res = isl_union_pw_multi_aff_read_from_str(ctx,
5766 upma_bin_tests[i].res);
5767 upma1 = upma_bin_tests[i].fn(upma1, upma2);
5768 ok = isl_union_pw_multi_aff_plain_is_equal(upma1, res);
5769 isl_union_pw_multi_aff_free(upma1);
5770 isl_union_pw_multi_aff_free(res);
5771 if (ok < 0)
5772 return -1;
5773 if (!ok)
5774 isl_die(ctx, isl_error_unknown,
5775 "unexpected result", return -1);
5778 return 0;
5781 struct {
5782 __isl_give isl_union_pw_multi_aff *(*fn)(
5783 __isl_take isl_union_pw_multi_aff *upma1,
5784 __isl_take isl_union_pw_multi_aff *upma2);
5785 const char *arg1;
5786 const char *arg2;
5787 } upma_bin_fail_tests[] = {
5788 { &isl_union_pw_multi_aff_union_add, "{ B[x] -> A[1] : x <= 0 }",
5789 "{ B[x] -> C[2] : x >= 0 }" },
5792 /* Perform some basic tests of binary operations on
5793 * isl_union_pw_multi_aff objects that are expected to fail.
5795 static int test_bin_upma_fail(isl_ctx *ctx)
5797 int i, n;
5798 isl_union_pw_multi_aff *upma1, *upma2;
5799 int on_error;
5801 on_error = isl_options_get_on_error(ctx);
5802 isl_options_set_on_error(ctx, ISL_ON_ERROR_CONTINUE);
5803 n = ARRAY_SIZE(upma_bin_fail_tests);
5804 for (i = 0; i < n; ++i) {
5805 upma1 = isl_union_pw_multi_aff_read_from_str(ctx,
5806 upma_bin_fail_tests[i].arg1);
5807 upma2 = isl_union_pw_multi_aff_read_from_str(ctx,
5808 upma_bin_fail_tests[i].arg2);
5809 upma1 = upma_bin_fail_tests[i].fn(upma1, upma2);
5810 isl_union_pw_multi_aff_free(upma1);
5811 if (upma1)
5812 break;
5814 isl_options_set_on_error(ctx, on_error);
5815 if (i < n)
5816 isl_die(ctx, isl_error_unknown,
5817 "operation not expected to succeed", return -1);
5819 return 0;
5822 /* Inputs for basic tests of binary operations on
5823 * pairs of isl_union_pw_multi_aff and isl_union_set objects.
5824 * "fn" is the function that is being tested.
5825 * "arg1" and "arg2" are string descriptions of the inputs.
5826 * "res" is a string description of the expected result.
5828 struct {
5829 __isl_give isl_union_pw_multi_aff *(*fn)(
5830 __isl_take isl_union_pw_multi_aff *upma,
5831 __isl_take isl_union_set *uset);
5832 const char *arg1;
5833 const char *arg2;
5834 const char *res;
5835 } upma_uset_tests[] = {
5836 { &isl_union_pw_multi_aff_intersect_domain_wrapped_range,
5837 "{ A[i] -> B[i] }", "{ B[0] }",
5838 "{ }" },
5839 { &isl_union_pw_multi_aff_intersect_domain_wrapped_domain,
5840 "{ [A[i] -> B[i]] -> C[i + 1] }", "{ A[1]; B[0] }",
5841 "{ [A[1] -> B[1]] -> C[2] }" },
5842 { &isl_union_pw_multi_aff_intersect_domain_wrapped_range,
5843 "{ [A[i] -> B[i]] -> C[i + 1] }", "{ A[1]; B[0] }",
5844 "{ [A[0] -> B[0]] -> C[1] }" },
5845 { &isl_union_pw_multi_aff_intersect_domain_wrapped_range,
5846 "{ [A[i] -> B[i]] -> C[i + 1] }", "[N] -> { B[N] }",
5847 "[N] -> { [A[N] -> B[N]] -> C[N + 1] }" },
5848 { &isl_union_pw_multi_aff_intersect_domain_wrapped_range,
5849 "[M] -> { [A[M] -> B[M]] -> C[M + 1] }", "[N] -> { B[N] }",
5850 "[N, M] -> { [A[N] -> B[N]] -> C[N + 1] : N = M }" },
5851 { &isl_union_pw_multi_aff_intersect_domain_wrapped_range,
5852 "{ [A[] -> B[]] -> C[]; N[A[] -> B[]] -> D[]; [B[] -> A[]] -> E[] }",
5853 "{ B[] }",
5854 "{ [A[] -> B[]] -> C[]; N[A[] -> B[]] -> D[] }" },
5857 /* Perform some basic tests of binary operations on
5858 * pairs of isl_union_pw_multi_aff and isl_union_set objects.
5860 static isl_stat test_upma_uset(isl_ctx *ctx)
5862 int i;
5863 isl_bool ok;
5864 isl_union_pw_multi_aff *upma, *res;
5865 isl_union_set *uset;
5867 for (i = 0; i < ARRAY_SIZE(upma_uset_tests); ++i) {
5868 upma = isl_union_pw_multi_aff_read_from_str(ctx,
5869 upma_uset_tests[i].arg1);
5870 uset = isl_union_set_read_from_str(ctx,
5871 upma_uset_tests[i].arg2);
5872 res = isl_union_pw_multi_aff_read_from_str(ctx,
5873 upma_uset_tests[i].res);
5874 upma = upma_uset_tests[i].fn(upma, uset);
5875 ok = isl_union_pw_multi_aff_plain_is_equal(upma, res);
5876 isl_union_pw_multi_aff_free(upma);
5877 isl_union_pw_multi_aff_free(res);
5878 if (ok < 0)
5879 return isl_stat_error;
5880 if (!ok)
5881 isl_die(ctx, isl_error_unknown,
5882 "unexpected result", return isl_stat_error);
5885 return isl_stat_ok;
5888 /* Inputs for basic tests of unary operations on isl_multi_pw_aff objects.
5889 * "fn" is the function that is tested.
5890 * "arg" is a string description of the input.
5891 * "res" is a string description of the expected result.
5893 struct {
5894 __isl_give isl_multi_pw_aff *(*fn)(__isl_take isl_multi_pw_aff *mpa);
5895 const char *arg;
5896 const char *res;
5897 } mpa_un_tests[] = {
5898 { &isl_multi_pw_aff_range_factor_domain,
5899 "{ A[x] -> [B[(1 : x >= 5)] -> C[(2 : x <= 10)]] }",
5900 "{ A[x] -> B[(1 : x >= 5)] }" },
5901 { &isl_multi_pw_aff_range_factor_range,
5902 "{ A[x] -> [B[(1 : x >= 5)] -> C[(2 : x <= 10)]] }",
5903 "{ A[y] -> C[(2 : y <= 10)] }" },
5904 { &isl_multi_pw_aff_range_factor_domain,
5905 "{ A[x] -> [B[(1 : x >= 5)] -> C[]] }",
5906 "{ A[x] -> B[(1 : x >= 5)] }" },
5907 { &isl_multi_pw_aff_range_factor_range,
5908 "{ A[x] -> [B[(1 : x >= 5)] -> C[]] }",
5909 "{ A[y] -> C[] }" },
5910 { &isl_multi_pw_aff_range_factor_domain,
5911 "{ A[x] -> [B[] -> C[(2 : x <= 10)]] }",
5912 "{ A[x] -> B[] }" },
5913 { &isl_multi_pw_aff_range_factor_range,
5914 "{ A[x] -> [B[] -> C[(2 : x <= 10)]] }",
5915 "{ A[y] -> C[(2 : y <= 10)] }" },
5916 { &isl_multi_pw_aff_range_factor_domain,
5917 "{ A[x] -> [B[] -> C[]] }",
5918 "{ A[x] -> B[] }" },
5919 { &isl_multi_pw_aff_range_factor_range,
5920 "{ A[x] -> [B[] -> C[]] }",
5921 "{ A[y] -> C[] }" },
5922 { &isl_multi_pw_aff_factor_range,
5923 "{ [B[] -> C[]] }",
5924 "{ C[] }" },
5925 { &isl_multi_pw_aff_range_factor_domain,
5926 "{ A[x] -> [B[] -> C[]] : x >= 0 }",
5927 "{ A[x] -> B[] : x >= 0 }" },
5928 { &isl_multi_pw_aff_range_factor_range,
5929 "{ A[x] -> [B[] -> C[]] : x >= 0 }",
5930 "{ A[y] -> C[] : y >= 0 }" },
5931 { &isl_multi_pw_aff_factor_range,
5932 "[N] -> { [B[] -> C[]] : N >= 0 }",
5933 "[N] -> { C[] : N >= 0 }" },
5936 /* Perform some basic tests of unary operations on isl_multi_pw_aff objects.
5938 static int test_un_mpa(isl_ctx *ctx)
5940 int i;
5941 isl_bool ok;
5942 isl_multi_pw_aff *mpa, *res;
5944 for (i = 0; i < ARRAY_SIZE(mpa_un_tests); ++i) {
5945 mpa = isl_multi_pw_aff_read_from_str(ctx, mpa_un_tests[i].arg);
5946 res = isl_multi_pw_aff_read_from_str(ctx, mpa_un_tests[i].res);
5947 mpa = mpa_un_tests[i].fn(mpa);
5948 ok = isl_multi_pw_aff_plain_is_equal(mpa, res);
5949 isl_multi_pw_aff_free(mpa);
5950 isl_multi_pw_aff_free(res);
5951 if (ok < 0)
5952 return -1;
5953 if (!ok)
5954 isl_die(ctx, isl_error_unknown,
5955 "unexpected result", return -1);
5958 return 0;
5961 /* Inputs for basic tests of binary operations on isl_multi_pw_aff objects.
5962 * "fn" is the function that is tested.
5963 * "arg1" and "arg2" are string descriptions of the inputs.
5964 * "res" is a string description of the expected result.
5966 struct {
5967 __isl_give isl_multi_pw_aff *(*fn)(
5968 __isl_take isl_multi_pw_aff *mpa1,
5969 __isl_take isl_multi_pw_aff *mpa2);
5970 const char *arg1;
5971 const char *arg2;
5972 const char *res;
5973 } mpa_bin_tests[] = {
5974 { &isl_multi_pw_aff_add, "{ A[] -> [1] }", "{ A[] -> [2] }",
5975 "{ A[] -> [3] }" },
5976 { &isl_multi_pw_aff_add, "{ A[x] -> [(1 : x >= 5)] }",
5977 "{ A[x] -> [(x : x <= 10)] }",
5978 "{ A[x] -> [(1 + x : 5 <= x <= 10)] }" },
5979 { &isl_multi_pw_aff_add, "{ A[x] -> [] : x >= 5 }",
5980 "{ A[x] -> [] : x <= 10 }",
5981 "{ A[x] -> [] : 5 <= x <= 10 }" },
5982 { &isl_multi_pw_aff_add, "{ A[x] -> [] : x >= 5 }",
5983 "[N] -> { A[x] -> [] : x <= N }",
5984 "[N] -> { A[x] -> [] : 5 <= x <= N }" },
5985 { &isl_multi_pw_aff_add,
5986 "[N] -> { A[x] -> [] : x <= N }",
5987 "{ A[x] -> [] : x >= 5 }",
5988 "[N] -> { A[x] -> [] : 5 <= x <= N }" },
5989 { &isl_multi_pw_aff_range_product, "{ A[x] -> B[(1 : x >= 5)] }",
5990 "{ A[y] -> C[(2 : y <= 10)] }",
5991 "{ A[x] -> [B[(1 : x >= 5)] -> C[(2 : x <= 10)]] }" },
5992 { &isl_multi_pw_aff_range_product, "{ A[x] -> B[1] : x >= 5 }",
5993 "{ A[y] -> C[2] : y <= 10 }",
5994 "{ A[x] -> [B[(1 : x >= 5)] -> C[(2 : x <= 10)]] }" },
5995 { &isl_multi_pw_aff_range_product, "{ A[x] -> B[1] : x >= 5 }",
5996 "[N] -> { A[y] -> C[2] : y <= N }",
5997 "[N] -> { A[x] -> [B[(1 : x >= 5)] -> C[(2 : x <= N)]] }" },
5998 { &isl_multi_pw_aff_range_product, "[N] -> { A[x] -> B[1] : x >= N }",
5999 "{ A[y] -> C[2] : y <= 10 }",
6000 "[N] -> { A[x] -> [B[(1 : x >= N)] -> C[(2 : x <= 10)]] }" },
6001 { &isl_multi_pw_aff_range_product, "{ A[] -> B[1] }", "{ A[] -> C[2] }",
6002 "{ A[] -> [B[1] -> C[2]] }" },
6003 { &isl_multi_pw_aff_range_product, "{ A[] -> B[] }", "{ A[] -> C[] }",
6004 "{ A[] -> [B[] -> C[]] }" },
6005 { &isl_multi_pw_aff_range_product, "{ A[x] -> B[(1 : x >= 5)] }",
6006 "{ A[y] -> C[] : y <= 10 }",
6007 "{ A[x] -> [B[(1 : x >= 5)] -> C[]] : x <= 10 }" },
6008 { &isl_multi_pw_aff_range_product, "{ A[y] -> C[] : y <= 10 }",
6009 "{ A[x] -> B[(1 : x >= 5)] }",
6010 "{ A[x] -> [C[] -> B[(1 : x >= 5)]] : x <= 10 }" },
6011 { &isl_multi_pw_aff_product, "{ A[x] -> B[(1 : x >= 5)] }",
6012 "{ A[y] -> C[(2 : y <= 10)] }",
6013 "{ [A[x] -> A[y]] -> [B[(1 : x >= 5)] -> C[(2 : y <= 10)]] }" },
6014 { &isl_multi_pw_aff_product, "{ A[x] -> B[(1 : x >= 5)] }",
6015 "{ A[y] -> C[] : y <= 10 }",
6016 "{ [A[x] -> A[y]] -> [B[(1 : x >= 5)] -> C[]] : y <= 10 }" },
6017 { &isl_multi_pw_aff_product, "{ A[y] -> C[] : y <= 10 }",
6018 "{ A[x] -> B[(1 : x >= 5)] }",
6019 "{ [A[y] -> A[x]] -> [C[] -> B[(1 : x >= 5)]] : y <= 10 }" },
6020 { &isl_multi_pw_aff_product, "{ A[x] -> B[(1 : x >= 5)] }",
6021 "[N] -> { A[y] -> C[] : y <= N }",
6022 "[N] -> { [A[x] -> A[y]] -> [B[(1 : x >= 5)] -> C[]] : y <= N }" },
6023 { &isl_multi_pw_aff_product, "[N] -> { A[y] -> C[] : y <= N }",
6024 "{ A[x] -> B[(1 : x >= 5)] }",
6025 "[N] -> { [A[y] -> A[x]] -> [C[] -> B[(1 : x >= 5)]] : y <= N }" },
6026 { &isl_multi_pw_aff_product, "{ A[x] -> B[] : x >= 5 }",
6027 "{ A[y] -> C[] : y <= 10 }",
6028 "{ [A[x] -> A[y]] -> [B[] -> C[]] : x >= 5 and y <= 10 }" },
6029 { &isl_multi_pw_aff_product, "{ A[] -> B[1] }", "{ A[] -> C[2] }",
6030 "{ [A[] -> A[]] -> [B[1] -> C[2]] }" },
6031 { &isl_multi_pw_aff_product, "{ A[] -> B[] }", "{ A[] -> C[] }",
6032 "{ [A[] -> A[]] -> [B[] -> C[]] }" },
6033 { &isl_multi_pw_aff_pullback_multi_pw_aff,
6034 "{ B[i,j] -> C[i + 2j] }", "{ A[a,b] -> B[b,a] }",
6035 "{ A[a,b] -> C[b + 2a] }" },
6036 { &isl_multi_pw_aff_pullback_multi_pw_aff,
6037 "{ B[i,j] -> C[i + 2j] }",
6038 "{ A[a,b] -> B[(b : b > a),(a : b > a)] }",
6039 "{ A[a,b] -> C[(b + 2a : b > a)] }" },
6040 { &isl_multi_pw_aff_pullback_multi_pw_aff,
6041 "{ B[i,j] -> C[(i + 2j : j > 4)] }",
6042 "{ A[a,b] -> B[(b : b > a),(a : b > a)] }",
6043 "{ A[a,b] -> C[(b + 2a : b > a > 4)] }" },
6044 { &isl_multi_pw_aff_pullback_multi_pw_aff,
6045 "{ B[i,j] -> C[] }",
6046 "{ A[a,b] -> B[(b : b > a),(a : b > a)] }",
6047 "{ A[a,b] -> C[] }" },
6048 { &isl_multi_pw_aff_pullback_multi_pw_aff,
6049 "{ B[i,j] -> C[] : i > j }",
6050 "{ A[a,b] -> B[b,a] }",
6051 "{ A[a,b] -> C[] : b > a }" },
6052 { &isl_multi_pw_aff_pullback_multi_pw_aff,
6053 "{ B[i,j] -> C[] : j > 5 }",
6054 "{ A[a,b] -> B[(b : b > a),(a : b > a)] }",
6055 "{ A[a,b] -> C[] : b > a > 5 }" },
6056 { &isl_multi_pw_aff_pullback_multi_pw_aff,
6057 "[N] -> { B[i,j] -> C[] : j > N }",
6058 "{ A[a,b] -> B[(b : b > a),(a : b > a)] }",
6059 "[N] -> { A[a,b] -> C[] : b > a > N }" },
6060 { &isl_multi_pw_aff_pullback_multi_pw_aff,
6061 "[M,N] -> { B[] -> C[] : N > 5 }",
6062 "[M,N] -> { A[] -> B[] : M > N }",
6063 "[M,N] -> { A[] -> C[] : M > N > 5 }" },
6066 /* Perform some basic tests of binary operations on isl_multi_pw_aff objects.
6068 static int test_bin_mpa(isl_ctx *ctx)
6070 int i;
6071 isl_bool ok;
6072 isl_multi_pw_aff *mpa1, *mpa2, *res;
6074 for (i = 0; i < ARRAY_SIZE(mpa_bin_tests); ++i) {
6075 mpa1 = isl_multi_pw_aff_read_from_str(ctx,
6076 mpa_bin_tests[i].arg1);
6077 mpa2 = isl_multi_pw_aff_read_from_str(ctx,
6078 mpa_bin_tests[i].arg2);
6079 res = isl_multi_pw_aff_read_from_str(ctx,
6080 mpa_bin_tests[i].res);
6081 mpa1 = mpa_bin_tests[i].fn(mpa1, mpa2);
6082 ok = isl_multi_pw_aff_plain_is_equal(mpa1, res);
6083 isl_multi_pw_aff_free(mpa1);
6084 isl_multi_pw_aff_free(res);
6085 if (ok < 0)
6086 return -1;
6087 if (!ok)
6088 isl_die(ctx, isl_error_unknown,
6089 "unexpected result", return -1);
6092 return 0;
6095 /* Inputs for basic tests of unary operations on
6096 * isl_multi_union_pw_aff objects.
6097 * "fn" is the function that is tested.
6098 * "arg" is a string description of the input.
6099 * "res" is a string description of the expected result.
6101 struct {
6102 __isl_give isl_multi_union_pw_aff *(*fn)(
6103 __isl_take isl_multi_union_pw_aff *mupa);
6104 const char *arg;
6105 const char *res;
6106 } mupa_un_tests[] = {
6107 { &isl_multi_union_pw_aff_factor_range,
6108 "[B[{ A[] -> [1] }] -> C[{ A[] -> [2] }]]",
6109 "C[{ A[] -> [2] }]" },
6110 { &isl_multi_union_pw_aff_factor_range,
6111 "[B[] -> C[{ A[] -> [2] }]]",
6112 "C[{ A[] -> [2] }]" },
6113 { &isl_multi_union_pw_aff_factor_range,
6114 "[B[{ A[] -> [1] }] -> C[]]",
6115 "C[]" },
6116 { &isl_multi_union_pw_aff_factor_range,
6117 "[B[] -> C[]]",
6118 "C[]" },
6119 { &isl_multi_union_pw_aff_factor_range,
6120 "([B[] -> C[]] : { A[x] : x >= 0 })",
6121 "(C[] : { A[x] : x >= 0 })" },
6122 { &isl_multi_union_pw_aff_factor_range,
6123 "[N] -> ([B[] -> C[]] : { A[x] : x <= N })",
6124 "[N] -> (C[] : { A[x] : x <= N })" },
6125 { &isl_multi_union_pw_aff_factor_range,
6126 "[N] -> ([B[] -> C[]] : { : N >= 0 })",
6127 "[N] -> (C[] : { : N >= 0 })" },
6130 /* Perform some basic tests of unary operations on
6131 * isl_multi_union_pw_aff objects.
6133 static int test_un_mupa(isl_ctx *ctx)
6135 int i;
6136 isl_bool ok;
6137 isl_multi_union_pw_aff *mupa, *res;
6139 for (i = 0; i < ARRAY_SIZE(mupa_un_tests); ++i) {
6140 mupa = isl_multi_union_pw_aff_read_from_str(ctx,
6141 mupa_un_tests[i].arg);
6142 res = isl_multi_union_pw_aff_read_from_str(ctx,
6143 mupa_un_tests[i].res);
6144 mupa = mupa_un_tests[i].fn(mupa);
6145 ok = isl_multi_union_pw_aff_plain_is_equal(mupa, res);
6146 isl_multi_union_pw_aff_free(mupa);
6147 isl_multi_union_pw_aff_free(res);
6148 if (ok < 0)
6149 return -1;
6150 if (!ok)
6151 isl_die(ctx, isl_error_unknown,
6152 "unexpected result", return -1);
6155 return 0;
6158 /* Inputs for basic tests of binary operations on
6159 * isl_multi_union_pw_aff objects.
6160 * "fn" is the function that is tested.
6161 * "arg1" and "arg2" are string descriptions of the inputs.
6162 * "res" is a string description of the expected result.
6164 struct {
6165 __isl_give isl_multi_union_pw_aff *(*fn)(
6166 __isl_take isl_multi_union_pw_aff *mupa1,
6167 __isl_take isl_multi_union_pw_aff *mupa2);
6168 const char *arg1;
6169 const char *arg2;
6170 const char *res;
6171 } mupa_bin_tests[] = {
6172 { &isl_multi_union_pw_aff_add, "[{ A[] -> [1] }]", "[{ A[] -> [2] }]",
6173 "[{ A[] -> [3] }]" },
6174 { &isl_multi_union_pw_aff_sub, "[{ A[] -> [1] }]", "[{ A[] -> [2] }]",
6175 "[{ A[] -> [-1] }]" },
6176 { &isl_multi_union_pw_aff_add,
6177 "[{ A[] -> [1]; B[] -> [4] }]",
6178 "[{ A[] -> [2]; C[] -> [5] }]",
6179 "[{ A[] -> [3] }]" },
6180 { &isl_multi_union_pw_aff_union_add,
6181 "[{ A[] -> [1]; B[] -> [4] }]",
6182 "[{ A[] -> [2]; C[] -> [5] }]",
6183 "[{ A[] -> [3]; B[] -> [4]; C[] -> [5] }]" },
6184 { &isl_multi_union_pw_aff_add, "[{ A[x] -> [(1)] : x >= 5 }]",
6185 "[{ A[x] -> [(x)] : x <= 10 }]",
6186 "[{ A[x] -> [(1 + x)] : 5 <= x <= 10 }]" },
6187 { &isl_multi_union_pw_aff_add, "([] : { A[x] : x >= 5 })",
6188 "([] : { A[x] : x <= 10 })",
6189 "([] : { A[x] : 5 <= x <= 10 })" },
6190 { &isl_multi_union_pw_aff_add, "([] : { A[x] : x >= 5 })",
6191 "[N] -> ([] : { A[x] : x <= N })",
6192 "[N] -> ([] : { A[x] : 5 <= x <= N })" },
6193 { &isl_multi_union_pw_aff_add, "[N] -> ([] : { A[x] : x >= N })",
6194 "([] : { A[x] : x <= 10 })",
6195 "[N] -> ([] : { A[x] : N <= x <= 10 })" },
6196 { &isl_multi_union_pw_aff_union_add, "[{ A[x] -> [(1)] : x >= 5 }]",
6197 "[{ A[x] -> [(x)] : x <= 10 }]",
6198 "[{ A[x] -> [(1 + x)] : 5 <= x <= 10; "
6199 "A[x] -> [(1)] : x > 10; A[x] -> [(x)] : x < 5 }]" },
6200 { &isl_multi_union_pw_aff_union_add, "([] : { A[x] : x >= 5 })",
6201 "([] : { A[x] : x <= 10 })",
6202 "([] : { A[x] })" },
6203 { &isl_multi_union_pw_aff_union_add, "([] : { A[x] : x >= 0 })",
6204 "[N] -> ([] : { A[x] : x >= N })",
6205 "[N] -> ([] : { A[x] : x >= 0 or x >= N })" },
6206 { &isl_multi_union_pw_aff_union_add,
6207 "[N] -> ([] : { A[] : N >= 0})",
6208 "[N] -> ([] : { A[] : N <= 0})",
6209 "[N] -> ([] : { A[] })" },
6210 { &isl_multi_union_pw_aff_union_add,
6211 "[N] -> ([] : { A[] })",
6212 "[N] -> ([] : { : })",
6213 "[N] -> ([] : { : })" },
6214 { &isl_multi_union_pw_aff_union_add,
6215 "[N] -> ([] : { : })",
6216 "[N] -> ([] : { A[] })",
6217 "[N] -> ([] : { : })" },
6218 { &isl_multi_union_pw_aff_union_add,
6219 "[N] -> ([] : { : N >= 0})",
6220 "[N] -> ([] : { : N <= 0})",
6221 "[N] -> ([] : { : })" },
6222 { &isl_multi_union_pw_aff_range_product,
6223 "B[{ A[] -> [1] }]",
6224 "C[{ A[] -> [2] }]",
6225 "[B[{ A[] -> [1] }] -> C[{ A[] -> [2] }]]" },
6226 { &isl_multi_union_pw_aff_range_product,
6227 "(B[] : { A[x] : x >= 5 })",
6228 "(C[] : { A[x] : x <= 10 })",
6229 "([B[] -> C[]] : { A[x] : 5 <= x <= 10 })" },
6230 { &isl_multi_union_pw_aff_range_product,
6231 "B[{ A[x] -> [x + 1] : x >= 5 }]",
6232 "(C[] : { A[x] : x <= 10 })",
6233 "[B[{ A[x] -> [x + 1] : 5 <= x <= 10 }] -> C[]]" },
6234 { &isl_multi_union_pw_aff_range_product,
6235 "(C[] : { A[x] : x <= 10 })",
6236 "B[{ A[x] -> [x + 1] : x >= 5 }]",
6237 "[C[] -> B[{ A[x] -> [x + 1] : 5 <= x <= 10 }]]" },
6238 { &isl_multi_union_pw_aff_range_product,
6239 "B[{ A[x] -> [x + 1] : x >= 5 }]",
6240 "[N] -> (C[] : { A[x] : x <= N })",
6241 "[N] -> [B[{ A[x] -> [x + 1] : 5 <= x <= N }] -> C[]]" },
6242 { &isl_multi_union_pw_aff_range_product,
6243 "[N] -> (C[] : { A[x] : x <= N })",
6244 "B[{ A[x] -> [x + 1] : x >= 5 }]",
6245 "[N] -> [C[] -> B[{ A[x] -> [x + 1] : 5 <= x <= N }]]" },
6246 { &isl_multi_union_pw_aff_range_product,
6247 "B[{ A[] -> [1]; D[] -> [3] }]",
6248 "C[{ A[] -> [2] }]",
6249 "[B[{ A[] -> [1]; D[] -> [3] }] -> C[{ A[] -> [2] }]]" },
6250 { &isl_multi_union_pw_aff_range_product,
6251 "B[] }]",
6252 "(C[] : { A[x] })",
6253 "([B[] -> C[]] : { A[x] })" },
6254 { &isl_multi_union_pw_aff_range_product,
6255 "(B[] : { A[x] })",
6256 "C[] }]",
6257 "([B[] -> C[]] : { A[x] })" },
6260 /* Perform some basic tests of binary operations on
6261 * isl_multi_union_pw_aff objects.
6263 static int test_bin_mupa(isl_ctx *ctx)
6265 int i;
6266 isl_bool ok;
6267 isl_multi_union_pw_aff *mupa1, *mupa2, *res;
6269 for (i = 0; i < ARRAY_SIZE(mupa_bin_tests); ++i) {
6270 mupa1 = isl_multi_union_pw_aff_read_from_str(ctx,
6271 mupa_bin_tests[i].arg1);
6272 mupa2 = isl_multi_union_pw_aff_read_from_str(ctx,
6273 mupa_bin_tests[i].arg2);
6274 res = isl_multi_union_pw_aff_read_from_str(ctx,
6275 mupa_bin_tests[i].res);
6276 mupa1 = mupa_bin_tests[i].fn(mupa1, mupa2);
6277 ok = isl_multi_union_pw_aff_plain_is_equal(mupa1, res);
6278 isl_multi_union_pw_aff_free(mupa1);
6279 isl_multi_union_pw_aff_free(res);
6280 if (ok < 0)
6281 return -1;
6282 if (!ok)
6283 isl_die(ctx, isl_error_unknown,
6284 "unexpected result", return -1);
6287 return 0;
6290 /* Inputs for basic tests of binary operations on
6291 * pairs of isl_multi_union_pw_aff and isl_set objects.
6292 * "fn" is the function that is tested.
6293 * "arg1" and "arg2" are string descriptions of the inputs.
6294 * "res" is a string description of the expected result.
6296 struct {
6297 __isl_give isl_multi_union_pw_aff *(*fn)(
6298 __isl_take isl_multi_union_pw_aff *mupa,
6299 __isl_take isl_set *set);
6300 const char *arg1;
6301 const char *arg2;
6302 const char *res;
6303 } mupa_set_tests[] = {
6304 { &isl_multi_union_pw_aff_intersect_range,
6305 "C[{ B[i,j] -> [i + 2j] }]", "{ C[1] }",
6306 "C[{ B[i,j] -> [i + 2j] : i + 2j = 1 }]" },
6307 { &isl_multi_union_pw_aff_intersect_range,
6308 "C[{ B[i,j] -> [i + 2j] }]", "[N] -> { C[N] }",
6309 "[N] -> C[{ B[i,j] -> [i + 2j] : i + 2j = N }]" },
6310 { &isl_multi_union_pw_aff_intersect_range,
6311 "[N] -> C[{ B[i,j] -> [i + 2j + N] }]", "{ C[1] }",
6312 "[N] -> C[{ B[i,j] -> [i + 2j + N] : i + 2j + N = 1 }]" },
6313 { &isl_multi_union_pw_aff_intersect_range,
6314 "C[{ B[i,j] -> [i + 2j] }]", "[N] -> { C[x] : N >= 0 }",
6315 "[N] -> C[{ B[i,j] -> [i + 2j] : N >= 0 }]" },
6316 { &isl_multi_union_pw_aff_intersect_range,
6317 "C[]", "{ C[] }", "C[]" },
6318 { &isl_multi_union_pw_aff_intersect_range,
6319 "[N] -> (C[] : { : N >= 0 })",
6320 "{ C[] }",
6321 "[N] -> (C[] : { : N >= 0 })" },
6322 { &isl_multi_union_pw_aff_intersect_range,
6323 "(C[] : { A[a,b] })",
6324 "{ C[] }",
6325 "(C[] : { A[a,b] })" },
6326 { &isl_multi_union_pw_aff_intersect_range,
6327 "[N] -> (C[] : { A[a,b] : a,b <= N })",
6328 "{ C[] }",
6329 "[N] -> (C[] : { A[a,b] : a,b <= N })" },
6330 { &isl_multi_union_pw_aff_intersect_range,
6331 "C[]",
6332 "[N] -> { C[] : N >= 0 }",
6333 "[N] -> (C[] : { : N >= 0 })" },
6334 { &isl_multi_union_pw_aff_intersect_range,
6335 "(C[] : { A[a,b] })",
6336 "[N] -> { C[] : N >= 0 }",
6337 "[N] -> (C[] : { A[a,b] : N >= 0 })" },
6338 { &isl_multi_union_pw_aff_intersect_range,
6339 "[N] -> (C[] : { : N >= 0 })",
6340 "[N] -> { C[] : N < 1024 }",
6341 "[N] -> (C[] : { : 0 <= N < 1024 })" },
6342 { &isl_multi_union_pw_aff_intersect_params,
6343 "C[{ B[i,j] -> [i + 2j] }]", "[N] -> { : N >= 0 }",
6344 "[N] -> C[{ B[i,j] -> [i + 2j] : N >= 0}]" },
6345 { &isl_multi_union_pw_aff_intersect_params,
6346 "[N] -> C[{ B[i,j] -> [i + 2j] : N <= 256 }]", "[N] -> { : N >= 0 }",
6347 "[N] -> C[{ B[i,j] -> [i + 2j] : 0 <= N <= 256 }]" },
6348 { &isl_multi_union_pw_aff_intersect_params,
6349 "[N] -> C[{ B[i,j] -> [i + 2j] : N <= 256 }]", "{ : }",
6350 "[N] -> C[{ B[i,j] -> [i + 2j] : N <= 256 }]" },
6351 { &isl_multi_union_pw_aff_intersect_params,
6352 "C[]", "[N] -> { : N >= 0 }",
6353 "[N] -> (C[] : { : N >= 0 })" },
6354 { &isl_multi_union_pw_aff_intersect_params,
6355 "(C[] : { A[a,b] })", "[N] -> { : N >= 0 }",
6356 "[N] -> (C[] : { A[a,b] : N >= 0 })" },
6357 { &isl_multi_union_pw_aff_intersect_params,
6358 "[N] -> (C[] : { A[a,N] })", "{ : }",
6359 "[N] -> (C[] : { A[a,N] })" },
6360 { &isl_multi_union_pw_aff_intersect_params,
6361 "[N] -> (C[] : { A[a,b] : N <= 256 })", "[N] -> { : N >= 0 }",
6362 "[N] -> (C[] : { A[a,b] : 0 <= N <= 256 })" },
6365 /* Perform some basic tests of binary operations on
6366 * pairs of isl_multi_union_pw_aff and isl_set objects.
6368 static int test_mupa_set(isl_ctx *ctx)
6370 int i;
6371 isl_bool ok;
6372 isl_multi_union_pw_aff *mupa, *res;
6373 isl_set *set;
6375 for (i = 0; i < ARRAY_SIZE(mupa_set_tests); ++i) {
6376 mupa = isl_multi_union_pw_aff_read_from_str(ctx,
6377 mupa_set_tests[i].arg1);
6378 set = isl_set_read_from_str(ctx, mupa_set_tests[i].arg2);
6379 res = isl_multi_union_pw_aff_read_from_str(ctx,
6380 mupa_set_tests[i].res);
6381 mupa = mupa_set_tests[i].fn(mupa, set);
6382 ok = isl_multi_union_pw_aff_plain_is_equal(mupa, res);
6383 isl_multi_union_pw_aff_free(mupa);
6384 isl_multi_union_pw_aff_free(res);
6385 if (ok < 0)
6386 return -1;
6387 if (!ok)
6388 isl_die(ctx, isl_error_unknown,
6389 "unexpected result", return -1);
6392 return 0;
6395 /* Inputs for basic tests of binary operations on
6396 * pairs of isl_multi_union_pw_aff and isl_union_set objects.
6397 * "fn" is the function that is tested.
6398 * "arg1" and "arg2" are string descriptions of the inputs.
6399 * "res" is a string description of the expected result.
6401 struct {
6402 __isl_give isl_multi_union_pw_aff *(*fn)(
6403 __isl_take isl_multi_union_pw_aff *mupa,
6404 __isl_take isl_union_set *uset);
6405 const char *arg1;
6406 const char *arg2;
6407 const char *res;
6408 } mupa_uset_tests[] = {
6409 { &isl_multi_union_pw_aff_intersect_domain,
6410 "C[{ B[i,j] -> [i + 2j] }]", "{ B[i,i] }",
6411 "C[{ B[i,i] -> [3i] }]" },
6412 { &isl_multi_union_pw_aff_intersect_domain,
6413 "(C[] : { B[i,j] })", "{ B[i,i] }",
6414 "(C[] : { B[i,i] })" },
6415 { &isl_multi_union_pw_aff_intersect_domain,
6416 "(C[] : { B[i,j] })", "[N] -> { B[N,N] }",
6417 "[N] -> (C[] : { B[N,N] })" },
6418 { &isl_multi_union_pw_aff_intersect_domain,
6419 "C[]", "{ B[i,i] }",
6420 "(C[] : { B[i,i] })" },
6421 { &isl_multi_union_pw_aff_intersect_domain,
6422 "[N] -> (C[] : { : N >= 0 })", "{ B[i,i] }",
6423 "[N] -> (C[] : { B[i,i] : N >= 0 })" },
6426 /* Perform some basic tests of binary operations on
6427 * pairs of isl_multi_union_pw_aff and isl_union_set objects.
6429 static int test_mupa_uset(isl_ctx *ctx)
6431 int i;
6432 isl_bool ok;
6433 isl_multi_union_pw_aff *mupa, *res;
6434 isl_union_set *uset;
6436 for (i = 0; i < ARRAY_SIZE(mupa_uset_tests); ++i) {
6437 mupa = isl_multi_union_pw_aff_read_from_str(ctx,
6438 mupa_uset_tests[i].arg1);
6439 uset = isl_union_set_read_from_str(ctx,
6440 mupa_uset_tests[i].arg2);
6441 res = isl_multi_union_pw_aff_read_from_str(ctx,
6442 mupa_uset_tests[i].res);
6443 mupa = mupa_uset_tests[i].fn(mupa, uset);
6444 ok = isl_multi_union_pw_aff_plain_is_equal(mupa, res);
6445 isl_multi_union_pw_aff_free(mupa);
6446 isl_multi_union_pw_aff_free(res);
6447 if (ok < 0)
6448 return -1;
6449 if (!ok)
6450 isl_die(ctx, isl_error_unknown,
6451 "unexpected result", return -1);
6454 return 0;
6457 /* Inputs for basic tests of binary operations on
6458 * pairs of isl_multi_union_pw_aff and isl_multi_aff objects.
6459 * "fn" is the function that is tested.
6460 * "arg1" and "arg2" are string descriptions of the inputs.
6461 * "res" is a string description of the expected result.
6463 struct {
6464 __isl_give isl_multi_union_pw_aff *(*fn)(
6465 __isl_take isl_multi_union_pw_aff *mupa,
6466 __isl_take isl_multi_aff *ma);
6467 const char *arg1;
6468 const char *arg2;
6469 const char *res;
6470 } mupa_ma_tests[] = {
6471 { &isl_multi_union_pw_aff_apply_multi_aff,
6472 "C[{ A[i,j] -> [i]; B[i,j] -> [j] }, "
6473 "{ A[i,j] -> [j]; B[i,j] -> [i] }]",
6474 "{ C[a,b] -> D[b,a] }",
6475 "D[{ A[i,j] -> [j]; B[i,j] -> [i] }, "
6476 "{ A[i,j] -> [i]; B[i,j] -> [j] }]" },
6477 { &isl_multi_union_pw_aff_apply_multi_aff,
6478 "C[{ A[i,j] -> [i] : i >= 0; B[i,j] -> [j] }, "
6479 "{ A[i,j] -> [j]; B[i,j] -> [i] }]",
6480 "{ C[a,b] -> D[b,a] }",
6481 "D[{ A[i,j] -> [j] : i >= 0; B[i,j] -> [i] }, "
6482 "{ A[i,j] -> [i] : i >= 0; B[i,j] -> [j] }]" },
6483 { &isl_multi_union_pw_aff_apply_multi_aff,
6484 "C[{ A[i,j] -> [i]; B[i,j] -> [j] }]",
6485 "[N] -> { C[a] -> D[a + N] }",
6486 "[N] -> D[{ A[i,j] -> [i + N]; B[i,j] -> [j + N] }] " },
6487 { &isl_multi_union_pw_aff_apply_multi_aff,
6488 "C[]",
6489 "{ C[] -> D[] }",
6490 "D[]" },
6491 { &isl_multi_union_pw_aff_apply_multi_aff,
6492 "[N] -> (C[] : { : N >= 0 })",
6493 "{ C[] -> D[] }",
6494 "[N] -> (D[] : { : N >= 0 })" },
6495 { &isl_multi_union_pw_aff_apply_multi_aff,
6496 "C[]",
6497 "[N] -> { C[] -> D[N] }",
6498 "[N] -> D[{ [N] }]" },
6499 { &isl_multi_union_pw_aff_apply_multi_aff,
6500 "(C[] : { A[i,j] : i >= j })",
6501 "{ C[] -> D[] }",
6502 "(D[] : { A[i,j] : i >= j })" },
6503 { &isl_multi_union_pw_aff_apply_multi_aff,
6504 "[N] -> (C[] : { A[i,j] : N >= 0 })",
6505 "{ C[] -> D[] }",
6506 "[N] -> (D[] : { A[i,j] : N >= 0 })" },
6507 { &isl_multi_union_pw_aff_apply_multi_aff,
6508 "(C[] : { A[i,j] : i >= j })",
6509 "[N] -> { C[] -> D[N] }",
6510 "[N] -> (D[{ A[i,j] -> [N] : i >= j }])" },
6513 /* Perform some basic tests of binary operations on
6514 * pairs of isl_multi_union_pw_aff and isl_multi_aff objects.
6516 static int test_mupa_ma(isl_ctx *ctx)
6518 int i;
6519 isl_bool ok;
6520 isl_multi_union_pw_aff *mupa, *res;
6521 isl_multi_aff *ma;
6523 for (i = 0; i < ARRAY_SIZE(mupa_ma_tests); ++i) {
6524 mupa = isl_multi_union_pw_aff_read_from_str(ctx,
6525 mupa_ma_tests[i].arg1);
6526 ma = isl_multi_aff_read_from_str(ctx, mupa_ma_tests[i].arg2);
6527 res = isl_multi_union_pw_aff_read_from_str(ctx,
6528 mupa_ma_tests[i].res);
6529 mupa = mupa_ma_tests[i].fn(mupa, ma);
6530 ok = isl_multi_union_pw_aff_plain_is_equal(mupa, res);
6531 isl_multi_union_pw_aff_free(mupa);
6532 isl_multi_union_pw_aff_free(res);
6533 if (ok < 0)
6534 return -1;
6535 if (!ok)
6536 isl_die(ctx, isl_error_unknown,
6537 "unexpected result", return -1);
6540 return 0;
6543 /* Inputs for basic tests of binary operations on
6544 * pairs of isl_multi_union_pw_aff and isl_pw_aff objects.
6545 * "fn" is the function that is tested.
6546 * "arg1" and "arg2" are string descriptions of the inputs.
6547 * "res" is a string description of the expected result.
6549 struct {
6550 __isl_give isl_union_pw_aff *(*fn)(
6551 __isl_take isl_multi_union_pw_aff *mupa,
6552 __isl_take isl_pw_aff *pa);
6553 const char *arg1;
6554 const char *arg2;
6555 const char *res;
6556 } mupa_pa_tests[] = {
6557 { &isl_multi_union_pw_aff_apply_pw_aff,
6558 "C[{ A[i,j] -> [i]; B[i,j] -> [j] }]",
6559 "[N] -> { C[a] -> [a + N] }",
6560 "[N] -> { A[i,j] -> [i + N]; B[i,j] -> [j + N] }" },
6561 { &isl_multi_union_pw_aff_apply_pw_aff,
6562 "C[{ A[i,j] -> [i]; B[i,j] -> [j] }]",
6563 "{ C[a] -> [a] : a >= 0; C[a] -> [-a] : a < 0 }",
6564 "{ A[i,j] -> [i] : i >= 0; A[i,j] -> [-i] : i < 0; "
6565 "B[i,j] -> [j] : j >= 0; B[i,j] -> [-j] : j < 0 }" },
6566 { &isl_multi_union_pw_aff_apply_pw_aff,
6567 "C[]",
6568 "[N] -> { C[] -> [N] }",
6569 "[N] -> { [N] }" },
6570 { &isl_multi_union_pw_aff_apply_pw_aff,
6571 "C[]",
6572 "[N] -> { C[] -> [N] : N >= 0; C[] -> [-N] : N < 0 }",
6573 "[N] -> { [N] : N >= 0; [-N] : N < 0 }" },
6574 { &isl_multi_union_pw_aff_apply_pw_aff,
6575 "[N] -> (C[] : { : N >= 0 })",
6576 "[N] -> { C[] -> [N] }",
6577 "[N] -> { [N] : N >= 0 }" },
6578 { &isl_multi_union_pw_aff_apply_pw_aff,
6579 "[N] -> (C[] : { : N >= 0 })",
6580 "[N] -> { C[] -> [N] : N >= 0; C[] -> [-N] : N < 0 }",
6581 "[N] -> { [N] : N >= 0 }" },
6582 { &isl_multi_union_pw_aff_apply_pw_aff,
6583 "[N] -> (C[] : { : N >= 0 })",
6584 "{ C[] -> [0] }",
6585 "[N] -> { [0] : N >= 0 }" },
6586 { &isl_multi_union_pw_aff_apply_pw_aff,
6587 "(C[] : { A[i,j] : i >= j })",
6588 "[N] -> { C[] -> [N] }",
6589 "[N] -> { A[i,j] -> [N] : i >= j }" },
6590 { &isl_multi_union_pw_aff_apply_pw_aff,
6591 "(C[] : { A[i,j] : i >= j })",
6592 "[N] -> { C[] -> [N] : N >= 0 }",
6593 "[N] -> { A[i,j] -> [N] : i >= j and N >= 0 }" },
6596 /* Perform some basic tests of binary operations on
6597 * pairs of isl_multi_union_pw_aff and isl_pw_aff objects.
6599 static int test_mupa_pa(isl_ctx *ctx)
6601 int i;
6602 isl_bool ok;
6603 isl_multi_union_pw_aff *mupa;
6604 isl_union_pw_aff *upa, *res;
6605 isl_pw_aff *pa;
6607 for (i = 0; i < ARRAY_SIZE(mupa_pa_tests); ++i) {
6608 mupa = isl_multi_union_pw_aff_read_from_str(ctx,
6609 mupa_pa_tests[i].arg1);
6610 pa = isl_pw_aff_read_from_str(ctx, mupa_pa_tests[i].arg2);
6611 res = isl_union_pw_aff_read_from_str(ctx,
6612 mupa_pa_tests[i].res);
6613 upa = mupa_pa_tests[i].fn(mupa, pa);
6614 ok = isl_union_pw_aff_plain_is_equal(upa, res);
6615 isl_union_pw_aff_free(upa);
6616 isl_union_pw_aff_free(res);
6617 if (ok < 0)
6618 return -1;
6619 if (!ok)
6620 isl_die(ctx, isl_error_unknown,
6621 "unexpected result", return -1);
6624 return 0;
6627 /* Inputs for basic tests of binary operations on
6628 * pairs of isl_multi_union_pw_aff and isl_pw_multi_aff objects.
6629 * "fn" is the function that is tested.
6630 * "arg1" and "arg2" are string descriptions of the inputs.
6631 * "res" is a string description of the expected result.
6633 struct {
6634 __isl_give isl_multi_union_pw_aff *(*fn)(
6635 __isl_take isl_multi_union_pw_aff *mupa,
6636 __isl_take isl_pw_multi_aff *pma);
6637 const char *arg1;
6638 const char *arg2;
6639 const char *res;
6640 } mupa_pma_tests[] = {
6641 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6642 "C[{ A[i,j] -> [i]; B[i,j] -> [j] }, "
6643 "{ A[i,j] -> [j]; B[i,j] -> [i] }]",
6644 "{ C[a,b] -> D[b,a] }",
6645 "D[{ A[i,j] -> [j]; B[i,j] -> [i] }, "
6646 "{ A[i,j] -> [i]; B[i,j] -> [j] }]" },
6647 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6648 "C[{ A[i,j] -> [i] : i >= 0; B[i,j] -> [j] }, "
6649 "{ A[i,j] -> [j]; B[i,j] -> [i] }]",
6650 "{ C[a,b] -> D[b,a] }",
6651 "D[{ A[i,j] -> [j] : i >= 0; B[i,j] -> [i] }, "
6652 "{ A[i,j] -> [i] : i >= 0; B[i,j] -> [j] }]" },
6653 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6654 "C[{ A[i,j] -> [i]; B[i,j] -> [j] }]",
6655 "[N] -> { C[a] -> D[a + N] }",
6656 "[N] -> D[{ A[i,j] -> [i + N]; B[i,j] -> [j + N] }]" },
6657 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6658 "C[{ A[i,j] -> [i]; B[i,j] -> [j] }]",
6659 "{ C[a] -> D[a] : a >= 0; C[a] -> D[-a] : a < 0 }",
6660 "D[{ A[i,j] -> [i] : i >= 0; A[i,j] -> [-i] : i < 0; "
6661 "B[i,j] -> [j] : j >= 0; B[i,j] -> [-j] : j < 0 }]" },
6662 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6663 "C[{ A[i,j] -> [i]; B[i,j] -> [j] }, "
6664 "{ A[i,j] -> [j]; B[i,j] -> [i] }]",
6665 "{ C[a,b] -> D[a,b] : a >= b; C[a,b] -> D[b,a] : a < b }",
6666 "D[{ A[i,j] -> [i] : i >= j; A[i,j] -> [j] : i < j; "
6667 "B[i,j] -> [j] : i <= j; B[i,j] -> [i] : i > j }, "
6668 "{ A[i,j] -> [j] : i >= j; A[i,j] -> [i] : i < j; "
6669 "B[i,j] -> [i] : i <= j; B[i,j] -> [j] : i > j }]" },
6670 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6671 "C[]",
6672 "{ C[] -> D[] }",
6673 "D[]" },
6674 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6675 "[N] -> (C[] : { : N >= 0 })",
6676 "{ C[] -> D[] }",
6677 "[N] -> (D[] : { : N >= 0 })" },
6678 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6679 "C[]",
6680 "[N] -> { C[] -> D[N] }",
6681 "[N] -> D[{ [N] }]" },
6682 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6683 "(C[] : { A[i,j] : i >= j })",
6684 "{ C[] -> D[] }",
6685 "(D[] : { A[i,j] : i >= j })" },
6686 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6687 "[N] -> (C[] : { A[i,j] : N >= 0 })",
6688 "{ C[] -> D[] }",
6689 "[N] -> (D[] : { A[i,j] : N >= 0 })" },
6690 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6691 "(C[] : { A[i,j] : i >= j })",
6692 "[N] -> { C[] -> D[N] }",
6693 "[N] -> (D[{ A[i,j] -> [N] : i >= j }])" },
6694 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6695 "C[]",
6696 "[N] -> { C[] -> D[N] : N >= 0; C[] -> D[-N] : N < 0 }",
6697 "[N] -> D[{ [N] : N >= 0; [-N] : N < 0 }]" },
6698 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6699 "[N] -> (C[] : { : N >= 0 })",
6700 "[N] -> { C[] -> D[N] }",
6701 "[N] -> D[{ [N] : N >= 0 }]" },
6702 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6703 "[N] -> (C[] : { : N >= 0 })",
6704 "[N] -> { C[] -> D[N] : N >= 0; C[] -> D[-N] : N < 0 }",
6705 "[N] -> D[{ [N] : N >= 0 }]" },
6706 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6707 "[N] -> (C[] : { : N >= 0 })",
6708 "{ C[] -> D[0] }",
6709 "[N] -> D[{ [0] : N >= 0 }]" },
6710 { &isl_multi_union_pw_aff_apply_pw_multi_aff,
6711 "(C[] : { A[i,j] : i >= j })",
6712 "[N] -> { C[] -> D[N] : N >= 0 }",
6713 "[N] -> D[{ A[i,j] -> [N] : i >= j and N >= 0 }]" },
6716 /* Perform some basic tests of binary operations on
6717 * pairs of isl_multi_union_pw_aff and isl_pw_multi_aff objects.
6719 static int test_mupa_pma(isl_ctx *ctx)
6721 int i;
6722 isl_bool ok;
6723 isl_multi_union_pw_aff *mupa, *res;
6724 isl_pw_multi_aff *pma;
6726 for (i = 0; i < ARRAY_SIZE(mupa_pma_tests); ++i) {
6727 mupa = isl_multi_union_pw_aff_read_from_str(ctx,
6728 mupa_pma_tests[i].arg1);
6729 pma = isl_pw_multi_aff_read_from_str(ctx,
6730 mupa_pma_tests[i].arg2);
6731 res = isl_multi_union_pw_aff_read_from_str(ctx,
6732 mupa_pma_tests[i].res);
6733 mupa = mupa_pma_tests[i].fn(mupa, pma);
6734 ok = isl_multi_union_pw_aff_plain_is_equal(mupa, res);
6735 isl_multi_union_pw_aff_free(mupa);
6736 isl_multi_union_pw_aff_free(res);
6737 if (ok < 0)
6738 return -1;
6739 if (!ok)
6740 isl_die(ctx, isl_error_unknown,
6741 "unexpected result", return -1);
6744 return 0;
6747 /* Inputs for basic tests of binary operations on
6748 * pairs of isl_multi_union_pw_aff and isl_union_pw_multi_aff objects.
6749 * "fn" is the function that is tested.
6750 * "arg1" and "arg2" are string descriptions of the inputs.
6751 * "res" is a string description of the expected result.
6753 struct {
6754 __isl_give isl_multi_union_pw_aff *(*fn)(
6755 __isl_take isl_multi_union_pw_aff *mupa,
6756 __isl_take isl_union_pw_multi_aff *upma);
6757 const char *arg1;
6758 const char *arg2;
6759 const char *res;
6760 } mupa_upma_tests[] = {
6761 { &isl_multi_union_pw_aff_pullback_union_pw_multi_aff,
6762 "C[{ B[i,j] -> [i + 2j] }]", "{ A[a,b] -> B[b,a] }",
6763 "C[{ A[a,b] -> [b + 2a] }]" },
6764 { &isl_multi_union_pw_aff_pullback_union_pw_multi_aff,
6765 "C[{ B[i,j] -> [i + 2j] }]",
6766 "{ A[a,b] -> B[b,a] : b > a }",
6767 "C[{ A[a,b] -> [b + 2a] : b > a }]" },
6768 { &isl_multi_union_pw_aff_pullback_union_pw_multi_aff,
6769 "C[{ B[i,j] -> [i + 2j] : j > 4 }]",
6770 "{ A[a,b] -> B[b,a] : b > a }",
6771 "C[{ A[a,b] -> [b + 2a] : b > a > 4 }]" },
6772 { &isl_multi_union_pw_aff_pullback_union_pw_multi_aff,
6773 "C[{ B[i,j] -> [i + 2j] }]",
6774 "{ A[a,b] -> B[b,a] : a > b; A[a,b] -> B[a,b] : a <= b }",
6775 "C[{ A[a,b] -> [b + 2a] : a > b; A[a,b] -> [a + 2b] : a <= b }]" },
6776 { &isl_multi_union_pw_aff_pullback_union_pw_multi_aff,
6777 "(C[] : { B[a,b] })",
6778 "{ A[a,b] -> B[b,a] }",
6779 "(C[] : { A[a,b] })" },
6780 { &isl_multi_union_pw_aff_pullback_union_pw_multi_aff,
6781 "(C[] : { B[a,b] })",
6782 "{ B[a,b] -> A[b,a] }",
6783 "(C[] : { })" },
6784 { &isl_multi_union_pw_aff_pullback_union_pw_multi_aff,
6785 "(C[] : { B[a,b] })",
6786 "{ A[a,b] -> B[b,a] : a > b }",
6787 "(C[] : { A[a,b] : a > b })" },
6788 { &isl_multi_union_pw_aff_pullback_union_pw_multi_aff,
6789 "(C[] : { B[a,b] : a > b })",
6790 "{ A[a,b] -> B[b,a] }",
6791 "(C[] : { A[a,b] : b > a })" },
6792 { &isl_multi_union_pw_aff_pullback_union_pw_multi_aff,
6793 "[N] -> (C[] : { B[a,b] : a > N })",
6794 "{ A[a,b] -> B[b,a] : a > b }",
6795 "[N] -> (C[] : { A[a,b] : a > b > N })" },
6796 { &isl_multi_union_pw_aff_pullback_union_pw_multi_aff,
6797 "(C[] : { B[a,b] : a > b })",
6798 "[N] -> { A[a,b] -> B[b,a] : a > N }",
6799 "[N] -> (C[] : { A[a,b] : b > a > N })" },
6800 { &isl_multi_union_pw_aff_pullback_union_pw_multi_aff,
6801 "C[]",
6802 "{ A[a,b] -> B[b,a] }",
6803 "C[]" },
6804 { &isl_multi_union_pw_aff_pullback_union_pw_multi_aff,
6805 "[N] -> (C[] : { : N >= 0 })",
6806 "{ A[a,b] -> B[b,a] }",
6807 "[N] -> (C[] : { : N >= 0 })" },
6808 { &isl_multi_union_pw_aff_pullback_union_pw_multi_aff,
6809 "C[]",
6810 "[N] -> { A[a,b] -> B[b,a] : N >= 0 }",
6811 "[N] -> (C[] : { : N >= 0 })" },
6814 /* Perform some basic tests of binary operations on
6815 * pairs of isl_multi_union_pw_aff and isl_union_pw_multi_aff objects.
6817 static int test_mupa_upma(isl_ctx *ctx)
6819 int i;
6820 isl_bool ok;
6821 isl_multi_union_pw_aff *mupa, *res;
6822 isl_union_pw_multi_aff *upma;
6824 for (i = 0; i < ARRAY_SIZE(mupa_upma_tests); ++i) {
6825 mupa = isl_multi_union_pw_aff_read_from_str(ctx,
6826 mupa_upma_tests[i].arg1);
6827 upma = isl_union_pw_multi_aff_read_from_str(ctx,
6828 mupa_upma_tests[i].arg2);
6829 res = isl_multi_union_pw_aff_read_from_str(ctx,
6830 mupa_upma_tests[i].res);
6831 mupa = mupa_upma_tests[i].fn(mupa, upma);
6832 ok = isl_multi_union_pw_aff_plain_is_equal(mupa, res);
6833 isl_multi_union_pw_aff_free(mupa);
6834 isl_multi_union_pw_aff_free(res);
6835 if (ok < 0)
6836 return -1;
6837 if (!ok)
6838 isl_die(ctx, isl_error_unknown,
6839 "unexpected result", return -1);
6842 return 0;
6845 /* Check that the input tuple of an isl_aff can be set properly.
6847 static isl_stat test_aff_set_tuple_id(isl_ctx *ctx)
6849 isl_id *id;
6850 isl_aff *aff;
6851 isl_stat equal;
6853 aff = isl_aff_read_from_str(ctx, "{ [x] -> [x + 1] }");
6854 id = isl_id_alloc(ctx, "A", NULL);
6855 aff = isl_aff_set_tuple_id(aff, isl_dim_in, id);
6856 equal = aff_check_plain_equal(aff, "{ A[x] -> [x + 1] }");
6857 isl_aff_free(aff);
6858 if (equal < 0)
6859 return isl_stat_error;
6861 return isl_stat_ok;
6864 /* Check that affine expressions get normalized on addition/subtraction.
6865 * In particular, check that (final) unused integer divisions get removed
6866 * such that an expression derived from expressions with integer divisions
6867 * is found to be obviously equal to one that is created directly.
6869 static isl_stat test_aff_normalize(isl_ctx *ctx)
6871 isl_aff *aff, *aff2;
6872 isl_stat ok;
6874 aff = isl_aff_read_from_str(ctx, "{ [x] -> [x//2] }");
6875 aff2 = isl_aff_read_from_str(ctx, "{ [x] -> [1 + x//2] }");
6876 aff = isl_aff_sub(aff2, aff);
6877 ok = aff_check_plain_equal(aff, "{ [x] -> [1] }");
6878 isl_aff_free(aff);
6880 return ok;
6883 int test_aff(isl_ctx *ctx)
6885 const char *str;
6886 isl_set *set;
6887 isl_space *space;
6888 isl_local_space *ls;
6889 isl_aff *aff;
6890 int zero;
6891 isl_stat equal;
6893 if (test_upa(ctx) < 0)
6894 return -1;
6895 if (test_bin_aff(ctx) < 0)
6896 return -1;
6897 if (test_bin_pw_aff(ctx) < 0)
6898 return -1;
6899 if (test_upma_test(ctx) < 0)
6900 return -1;
6901 if (test_bin_upma(ctx) < 0)
6902 return -1;
6903 if (test_bin_upma_fail(ctx) < 0)
6904 return -1;
6905 if (test_upma_uset(ctx) < 0)
6906 return -1;
6907 if (test_un_mpa(ctx) < 0)
6908 return -1;
6909 if (test_bin_mpa(ctx) < 0)
6910 return -1;
6911 if (test_un_mupa(ctx) < 0)
6912 return -1;
6913 if (test_bin_mupa(ctx) < 0)
6914 return -1;
6915 if (test_mupa_set(ctx) < 0)
6916 return -1;
6917 if (test_mupa_uset(ctx) < 0)
6918 return -1;
6919 if (test_mupa_ma(ctx) < 0)
6920 return -1;
6921 if (test_mupa_pa(ctx) < 0)
6922 return -1;
6923 if (test_mupa_pma(ctx) < 0)
6924 return -1;
6925 if (test_mupa_upma(ctx) < 0)
6926 return -1;
6928 space = isl_space_set_alloc(ctx, 0, 1);
6929 ls = isl_local_space_from_space(space);
6930 aff = isl_aff_zero_on_domain(ls);
6932 aff = isl_aff_add_coefficient_si(aff, isl_dim_in, 0, 1);
6933 aff = isl_aff_scale_down_ui(aff, 3);
6934 aff = isl_aff_floor(aff);
6935 aff = isl_aff_add_coefficient_si(aff, isl_dim_in, 0, 1);
6936 aff = isl_aff_scale_down_ui(aff, 2);
6937 aff = isl_aff_floor(aff);
6938 aff = isl_aff_add_coefficient_si(aff, isl_dim_in, 0, 1);
6940 str = "{ [10] }";
6941 set = isl_set_read_from_str(ctx, str);
6942 aff = isl_aff_gist(aff, set);
6944 aff = isl_aff_add_constant_si(aff, -16);
6945 zero = isl_aff_plain_is_zero(aff);
6946 isl_aff_free(aff);
6948 if (zero < 0)
6949 return -1;
6950 if (!zero)
6951 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
6953 aff = isl_aff_read_from_str(ctx, "{ [-1] }");
6954 aff = isl_aff_scale_down_ui(aff, 64);
6955 aff = isl_aff_floor(aff);
6956 equal = aff_check_plain_equal(aff, "{ [-1] }");
6957 isl_aff_free(aff);
6958 if (equal < 0)
6959 return -1;
6961 if (test_aff_set_tuple_id(ctx) < 0)
6962 return -1;
6963 if (test_aff_normalize(ctx) < 0)
6964 return -1;
6966 return 0;
6969 /* Inputs for isl_set_bind tests.
6970 * "set" is the input set.
6971 * "tuple" is the binding tuple.
6972 * "res" is the expected result.
6974 static
6975 struct {
6976 const char *set;
6977 const char *tuple;
6978 const char *res;
6979 } bind_set_tests[] = {
6980 { "{ A[M, N] : M mod 2 = 0 and N mod 8 = 3 }",
6981 "{ A[M, N] }",
6982 "[M, N] -> { : M mod 2 = 0 and N mod 8 = 3 }" },
6983 { "{ B[N, M] : M mod 2 = 0 and N mod 8 = 3 }",
6984 "{ B[N, M] }",
6985 "[M, N] -> { : M mod 2 = 0 and N mod 8 = 3 }" },
6986 { "[M] -> { C[N] : M mod 2 = 0 and N mod 8 = 3 }",
6987 "{ C[N] }",
6988 "[M, N] -> { : M mod 2 = 0 and N mod 8 = 3 }" },
6989 { "[M] -> { D[x, N] : x mod 2 = 0 and N mod 8 = 3 and M >= 0 }",
6990 "{ D[M, N] }",
6991 "[M, N] -> { : M mod 2 = 0 and N mod 8 = 3 and M >= 0 }" },
6994 /* Perform basic isl_set_bind tests.
6996 static isl_stat test_bind_set(isl_ctx *ctx)
6998 int i;
7000 for (i = 0; i < ARRAY_SIZE(bind_set_tests); ++i) {
7001 const char *str;
7002 isl_set *set;
7003 isl_multi_id *tuple;
7004 isl_stat r;
7006 set = isl_set_read_from_str(ctx, bind_set_tests[i].set);
7007 str = bind_set_tests[i].tuple;
7008 tuple = isl_multi_id_read_from_str(ctx, str);
7009 set = isl_set_bind(set, tuple);
7010 r = set_check_equal(set, bind_set_tests[i].res);
7011 isl_set_free(set);
7012 if (r < 0)
7013 return isl_stat_error;
7016 return isl_stat_ok;
7019 /* Inputs for isl_map_bind_domain tests.
7020 * "map" is the input map.
7021 * "tuple" is the binding tuple.
7022 * "res" is the expected result.
7024 struct {
7025 const char *map;
7026 const char *tuple;
7027 const char *res;
7028 } bind_map_domain_tests[] = {
7029 { "{ A[M, N] -> [M + floor(N/2)] }",
7030 "{ A[M, N] }",
7031 "[M, N] -> { [M + floor(N/2)] }" },
7032 { "{ B[N, M] -> [M + floor(N/2)] }",
7033 "{ B[N, M] }",
7034 "[N, M] -> { [M + floor(N/2)] }" },
7035 { "[M] -> { C[N] -> [M + floor(N/2)] }",
7036 "{ C[N] }",
7037 "[M, N] -> { [M + floor(N/2)] }" },
7038 { "[M] -> { C[x, N] -> [x + floor(N/2)] }",
7039 "{ C[M, N] }",
7040 "[M, N] -> { [M + floor(N/2)] }" },
7041 { "[M] -> { C[x, N] -> [M + floor(N/2)] }",
7042 "{ C[M, N] }",
7043 "[M, N] -> { [M + floor(N/2)] }" },
7044 { "[A, M] -> { C[N, x] -> [x + floor(N/2)] }",
7045 "{ C[N, M] }",
7046 "[A, N, M] -> { [M + floor(N/2)] }" },
7049 /* Perform basic isl_map_bind_domain tests.
7051 static isl_stat test_bind_map_domain(isl_ctx *ctx)
7053 int i;
7055 for (i = 0; i < ARRAY_SIZE(bind_map_domain_tests); ++i) {
7056 const char *str;
7057 isl_map *map;
7058 isl_set *set;
7059 isl_multi_id *tuple;
7060 isl_stat r;
7062 str = bind_map_domain_tests[i].map;
7063 map = isl_map_read_from_str(ctx, str);
7064 str = bind_map_domain_tests[i].tuple;
7065 tuple = isl_multi_id_read_from_str(ctx, str);
7066 set = isl_map_bind_domain(map, tuple);
7067 str = bind_map_domain_tests[i].res;
7068 r = set_check_equal(set, str);
7069 isl_set_free(set);
7070 if (r < 0)
7071 return isl_stat_error;
7074 return isl_stat_ok;
7077 /* Inputs for isl_union_map_bind_range tests.
7078 * "map" is the input union map.
7079 * "tuple" is the binding tuple.
7080 * "res" is the expected result.
7082 struct {
7083 const char *map;
7084 const char *tuple;
7085 const char *res;
7086 } bind_umap_range_tests[] = {
7087 { "{ B[N, M] -> A[M, N] : M mod 2 = 0 and N mod 8 = 3 }",
7088 "{ A[M, N] }",
7089 "[M, N] -> { B[N, M] : M mod 2 = 0 and N mod 8 = 3 }" },
7090 { "{ B[N, M] -> A[M, N] : M mod 2 = 0 and N mod 8 = 3 }",
7091 "{ B[M, N] }",
7092 "{ }" },
7093 { "{ A[] -> B[]; C[] -> D[]; E[] -> B[] }",
7094 "{ B[] }",
7095 "{ A[]; E[] }" },
7098 /* Perform basic isl_union_map_bind_range tests.
7100 static isl_stat test_bind_umap_range(isl_ctx *ctx)
7102 int i;
7104 for (i = 0; i < ARRAY_SIZE(bind_umap_range_tests); ++i) {
7105 const char *str;
7106 isl_union_map *umap;
7107 isl_union_set *uset;
7108 isl_multi_id *tuple;
7109 isl_stat r;
7111 str = bind_umap_range_tests[i].map;
7112 umap = isl_union_map_read_from_str(ctx, str);
7113 str = bind_umap_range_tests[i].tuple;
7114 tuple = isl_multi_id_read_from_str(ctx, str);
7115 uset = isl_union_map_bind_range(umap, tuple);
7116 str = bind_umap_range_tests[i].res;
7117 r = uset_check_equal(uset, str);
7118 isl_union_set_free(uset);
7119 if (r < 0)
7120 return isl_stat_error;
7123 return isl_stat_ok;
7126 /* Inputs for isl_pw_multi_aff_bind_domain tests.
7127 * "pma" is the input expression.
7128 * "tuple" is the binding tuple.
7129 * "res" is the expected result.
7131 struct {
7132 const char *pma;
7133 const char *tuple;
7134 const char *res;
7135 } bind_pma_domain_tests[] = {
7136 { "{ A[M, N] -> [M + floor(N/2)] }",
7137 "{ A[M, N] }",
7138 "[M, N] -> { [M + floor(N/2)] }" },
7139 { "{ B[N, M] -> [M + floor(N/2)] }",
7140 "{ B[N, M] }",
7141 "[N, M] -> { [M + floor(N/2)] }" },
7142 { "[M] -> { C[N] -> [M + floor(N/2)] }",
7143 "{ C[N] }",
7144 "[M, N] -> { [M + floor(N/2)] }" },
7145 { "[M] -> { C[x, N] -> [x + floor(N/2)] }",
7146 "{ C[M, N] }",
7147 "[M, N] -> { [M + floor(N/2)] }" },
7148 { "[M] -> { C[x, N] -> [M + floor(N/2)] }",
7149 "{ C[M, N] }",
7150 "[M, N] -> { [M + floor(N/2)] }" },
7151 { "[A, M] -> { C[N, x] -> [x + floor(N/2)] }",
7152 "{ C[N, M] }",
7153 "[A, N, M] -> { [M + floor(N/2)] }" },
7156 /* Perform basic isl_pw_multi_aff_bind_domain tests.
7158 static isl_stat test_bind_pma_domain(isl_ctx *ctx)
7160 int i;
7162 for (i = 0; i < ARRAY_SIZE(bind_pma_domain_tests); ++i) {
7163 const char *str;
7164 isl_pw_multi_aff *pma;
7165 isl_multi_id *tuple;
7166 isl_stat r;
7168 str = bind_pma_domain_tests[i].pma;
7169 pma = isl_pw_multi_aff_read_from_str(ctx, str);
7170 str = bind_pma_domain_tests[i].tuple;
7171 tuple = isl_multi_id_read_from_str(ctx, str);
7172 pma = isl_pw_multi_aff_bind_domain(pma, tuple);
7173 str = bind_pma_domain_tests[i].res;
7174 r = pw_multi_aff_check_plain_equal(pma, str);
7175 isl_pw_multi_aff_free(pma);
7176 if (r < 0)
7177 return isl_stat_error;
7180 return isl_stat_ok;
7183 /* Inputs for isl_pw_multi_aff_bind_domain_wrapped_domain tests.
7184 * "pma" is the input expression.
7185 * "tuple" is the binding tuple.
7186 * "res" is the expected result.
7188 struct {
7189 const char *pma;
7190 const char *tuple;
7191 const char *res;
7192 } bind_pma_domain_wrapped_tests[] = {
7193 { "{ [A[M, N] -> B[]] -> [M + floor(N/2)] }",
7194 "{ A[M, N] }",
7195 "[M, N] -> { B[] -> [M + floor(N/2)] }" },
7196 { "{ [B[N, M] -> D[]] -> [M + floor(N/2)] }",
7197 "{ B[N, M] }",
7198 "[N, M] -> { D[] -> [M + floor(N/2)] }" },
7199 { "[M] -> { [C[N] -> B[x]] -> [x + M + floor(N/2)] }",
7200 "{ C[N] }",
7201 "[M, N] -> { B[x] -> [x + M + floor(N/2)] }" },
7202 { "[M] -> { [C[x, N] -> B[]] -> [x + floor(N/2)] }",
7203 "{ C[M, N] }",
7204 "[M, N] -> { B[] -> [M + floor(N/2)] }" },
7205 { "[M] -> { [C[x, N] -> B[]] -> [M + floor(N/2)] }",
7206 "{ C[M, N] }",
7207 "[M, N] -> { B[] -> [M + floor(N/2)] }" },
7208 { "[A, M] -> { [C[N, x] -> B[]] -> [x + floor(N/2)] }",
7209 "{ C[N, M] }",
7210 "[A, N, M] -> { B[] -> [M + floor(N/2)] }" },
7213 /* Perform basic isl_pw_multi_aff_bind_domain_wrapped_domain tests.
7215 static isl_stat test_bind_pma_domain_wrapped(isl_ctx *ctx)
7217 int i;
7219 for (i = 0; i < ARRAY_SIZE(bind_pma_domain_wrapped_tests); ++i) {
7220 const char *str;
7221 isl_pw_multi_aff *pma;
7222 isl_multi_id *tuple;
7223 isl_stat r;
7225 str = bind_pma_domain_wrapped_tests[i].pma;
7226 pma = isl_pw_multi_aff_read_from_str(ctx, str);
7227 str = bind_pma_domain_wrapped_tests[i].tuple;
7228 tuple = isl_multi_id_read_from_str(ctx, str);
7229 pma = isl_pw_multi_aff_bind_domain_wrapped_domain(pma, tuple);
7230 str = bind_pma_domain_wrapped_tests[i].res;
7231 r = pw_multi_aff_check_plain_equal(pma, str);
7232 isl_pw_multi_aff_free(pma);
7233 if (r < 0)
7234 return isl_stat_error;
7237 return isl_stat_ok;
7240 /* Inputs for isl_aff_bind_id tests.
7241 * "aff" is the input expression.
7242 * "id" is the binding id.
7243 * "res" is the expected result.
7245 static
7246 struct {
7247 const char *aff;
7248 const char *id;
7249 const char *res;
7250 } bind_aff_tests[] = {
7251 { "{ [4] }", "M", "[M = 4] -> { : }" },
7252 { "{ B[x] -> [floor(x/2)] }", "M", "[M] -> { B[x] : M = floor(x/2) }" },
7253 { "[M] -> { [4] }", "M", "[M = 4] -> { : }" },
7254 { "[M] -> { [floor(M/2)] }", "M", "[M] -> { : floor(M/2) = M }" },
7255 { "{ [NaN] }", "M", "{ : false }" },
7256 { "{ A[x] -> [NaN] }", "M", "{ A[x] : false }" },
7259 /* Perform basic isl_aff_bind_id tests.
7261 static isl_stat test_bind_aff(isl_ctx *ctx)
7263 int i;
7265 for (i = 0; i < ARRAY_SIZE(bind_aff_tests); ++i) {
7266 isl_aff *aff;
7267 isl_set *res;
7268 isl_id *id;
7269 isl_stat r;
7271 aff = isl_aff_read_from_str(ctx, bind_aff_tests[i].aff);
7272 id = isl_id_read_from_str(ctx, bind_aff_tests[i].id);
7273 res = isl_set_from_basic_set(isl_aff_bind_id(aff, id));
7274 r = set_check_equal(res, bind_aff_tests[i].res);
7275 isl_set_free(res);
7276 if (r < 0)
7277 return isl_stat_error;
7280 return isl_stat_ok;
7283 /* Inputs for isl_pw_aff_bind_id tests.
7284 * "pa" is the input expression.
7285 * "id" is the binding id.
7286 * "res" is the expected result.
7288 static
7289 struct {
7290 const char *pa;
7291 const char *id;
7292 const char *res;
7293 } bind_pa_tests[] = {
7294 { "{ [4] }", "M", "[M = 4] -> { : }" },
7295 { "{ B[x] -> [floor(x/2)] }", "M", "[M] -> { B[x] : M = floor(x/2) }" },
7296 { "[M] -> { [4] }", "M", "[M = 4] -> { : }" },
7297 { "[M] -> { [floor(M/2)] }", "M", "[M] -> { : floor(M/2) = M }" },
7298 { "[M] -> { [M] : M >= 0; [-M] : M < 0 }", "M", "[M] -> { : M >= 0 }" },
7299 { "{ [NaN] }", "M", "{ : false }" },
7300 { "{ A[x] -> [NaN] }", "M", "{ A[x] : false }" },
7303 /* Perform basic isl_pw_aff_bind_id tests.
7305 static isl_stat test_bind_pa(isl_ctx *ctx)
7307 int i;
7309 for (i = 0; i < ARRAY_SIZE(bind_pa_tests); ++i) {
7310 isl_pw_aff *pa;
7311 isl_set *res;
7312 isl_id *id;
7313 isl_stat r;
7315 pa = isl_pw_aff_read_from_str(ctx, bind_pa_tests[i].pa);
7316 id = isl_id_read_from_str(ctx, bind_pa_tests[i].id);
7317 res = isl_pw_aff_bind_id(pa, id);
7318 r = set_check_equal(res, bind_pa_tests[i].res);
7319 isl_set_free(res);
7320 if (r < 0)
7321 return isl_stat_error;
7324 return isl_stat_ok;
7327 /* Inputs for isl_multi_union_pw_aff_bind tests.
7328 * "mupa" is the input expression.
7329 * "tuple" is the binding tuple.
7330 * "res" is the expected result.
7332 static
7333 struct {
7334 const char *mupa;
7335 const char *tuple;
7336 const char *res;
7337 } bind_mupa_tests[] = {
7338 { "A[{ [4] }, { [5] }]",
7339 "{ A[M, N] }",
7340 "[M = 4, N = 5] -> { : }" },
7341 { "A[{ B[x] -> [floor(x/2)] }, { B[y] -> [y + 5] }]",
7342 "{ A[M, N] }",
7343 "[M, N] -> { B[x] : M = floor(x/2) and N = x + 5 }" },
7344 { "[M] -> A[{ [4] }, { [M + 1] }]",
7345 "{ A[M, N] }",
7346 "[M = 4, N = 5] -> { : }" },
7349 /* Perform basic isl_multi_union_pw_aff_bind tests.
7351 static isl_stat test_bind_mupa(isl_ctx *ctx)
7353 int i;
7355 for (i = 0; i < ARRAY_SIZE(bind_mupa_tests); ++i) {
7356 const char *str;
7357 isl_multi_union_pw_aff *mupa;
7358 isl_union_set *res;
7359 isl_multi_id *tuple;
7360 isl_stat r;
7362 str = bind_mupa_tests[i].mupa;
7363 mupa = isl_multi_union_pw_aff_read_from_str(ctx, str);
7364 str = bind_mupa_tests[i].tuple;
7365 tuple = isl_multi_id_read_from_str(ctx, str);
7366 res = isl_multi_union_pw_aff_bind(mupa, tuple);
7367 r = uset_check_equal(res, bind_mupa_tests[i].res);
7368 isl_union_set_free(res);
7369 if (r < 0)
7370 return isl_stat_error;
7373 return isl_stat_ok;
7376 /* Perform tests that reinterpret dimensions as parameters.
7378 static int test_bind(isl_ctx *ctx)
7380 if (test_bind_set(ctx) < 0)
7381 return -1;
7382 if (test_bind_map_domain(ctx) < 0)
7383 return -1;
7384 if (test_bind_umap_range(ctx) < 0)
7385 return -1;
7386 if (test_bind_pma_domain(ctx) < 0)
7387 return -1;
7388 if (test_bind_pma_domain_wrapped(ctx) < 0)
7389 return -1;
7390 if (test_bind_aff(ctx) < 0)
7391 return -1;
7392 if (test_bind_pa(ctx) < 0)
7393 return -1;
7394 if (test_bind_mupa(ctx) < 0)
7395 return -1;
7397 return 0;
7400 /* Inputs for isl_set_unbind_params tests.
7401 * "set" is the input parameter domain.
7402 * "tuple" is the tuple of the constructed set.
7403 * "res" is the expected result.
7405 struct {
7406 const char *set;
7407 const char *tuple;
7408 const char *res;
7409 } unbind_set_tests[] = {
7410 { "[M, N] -> { : M mod 2 = 0 and N mod 8 = 3 }",
7411 "{ A[M, N] }",
7412 "{ A[M, N] : M mod 2 = 0 and N mod 8 = 3 }" },
7413 { "[M, N] -> { : M mod 2 = 0 and N mod 8 = 3 }",
7414 "{ B[N, M] }",
7415 "{ B[N, M] : M mod 2 = 0 and N mod 8 = 3 }" },
7416 { "[M, N] -> { : M mod 2 = 0 and N mod 8 = 3 }",
7417 "{ C[N] }",
7418 "[M] -> { C[N] : M mod 2 = 0 and N mod 8 = 3 }" },
7419 { "[M, N] -> { : M mod 2 = 0 and N mod 8 = 3 }",
7420 "{ D[T, N] }",
7421 "[M] -> { D[x, N] : M mod 2 = 0 and N mod 8 = 3 }" },
7424 /* Perform basic isl_set_unbind_params tests.
7426 static isl_stat test_unbind_set(isl_ctx *ctx)
7428 int i;
7430 for (i = 0; i < ARRAY_SIZE(unbind_set_tests); ++i) {
7431 const char *str;
7432 isl_set *set;
7433 isl_multi_id *tuple;
7434 isl_stat r;
7436 set = isl_set_read_from_str(ctx, unbind_set_tests[i].set);
7437 str = unbind_set_tests[i].tuple;
7438 tuple = isl_multi_id_read_from_str(ctx, str);
7439 set = isl_set_unbind_params(set, tuple);
7440 r = set_check_equal(set, unbind_set_tests[i].res);
7441 isl_set_free(set);
7442 if (r < 0)
7443 return isl_stat_error;
7446 return isl_stat_ok;
7449 /* Inputs for isl_aff_unbind_params_insert_domain tests.
7450 * "aff" is the input affine expression defined over a parameter domain.
7451 * "tuple" is the tuple of the domain that gets introduced.
7452 * "res" is the expected result.
7454 struct {
7455 const char *aff;
7456 const char *tuple;
7457 const char *res;
7458 } unbind_aff_tests[] = {
7459 { "[M, N] -> { [M + floor(N/2)] }",
7460 "{ A[M, N] }",
7461 "{ A[M, N] -> [M + floor(N/2)] }" },
7462 { "[M, N] -> { [M + floor(N/2)] }",
7463 "{ B[N, M] }",
7464 "{ B[N, M] -> [M + floor(N/2)] }" },
7465 { "[M, N] -> { [M + floor(N/2)] }",
7466 "{ C[N] }",
7467 "[M] -> { C[N] -> [M + floor(N/2)] }" },
7468 { "[M, N] -> { [M + floor(N/2)] }",
7469 "{ D[A, B, C, N, Z] }",
7470 "[M] -> { D[A, B, C, N, Z] -> [M + floor(N/2)] }" },
7473 /* Perform basic isl_aff_unbind_params_insert_domain tests.
7475 static isl_stat test_unbind_aff(isl_ctx *ctx)
7477 int i;
7479 for (i = 0; i < ARRAY_SIZE(unbind_aff_tests); ++i) {
7480 const char *str;
7481 isl_aff *aff;
7482 isl_multi_id *tuple;
7483 isl_stat r;
7485 aff = isl_aff_read_from_str(ctx, unbind_aff_tests[i].aff);
7486 str = unbind_aff_tests[i].tuple;
7487 tuple = isl_multi_id_read_from_str(ctx, str);
7488 aff = isl_aff_unbind_params_insert_domain(aff, tuple);
7489 r = aff_check_plain_equal(aff, unbind_aff_tests[i].res);
7490 isl_aff_free(aff);
7491 if (r < 0)
7492 return isl_stat_error;
7495 return isl_stat_ok;
7498 /* Inputs for isl_multi_aff_unbind_params_insert_domain tests.
7499 * "ma" is the input multi affine expression defined over a parameter domain.
7500 * "tuple" is the tuple of the domain that gets introduced.
7501 * "res" is the expected result.
7503 static struct {
7504 const char *ma;
7505 const char *tuple;
7506 const char *res;
7507 } unbind_multi_aff_tests[] = {
7508 { "[M, N] -> { T[M + floor(N/2)] }",
7509 "{ A[M, N] }",
7510 "{ A[M, N] -> T[M + floor(N/2)] }" },
7511 { "[M, N] -> { [M + floor(N/2)] }",
7512 "{ B[N, M] }",
7513 "{ B[N, M] -> [M + floor(N/2)] }" },
7514 { "[M, N] -> { [M + floor(N/2)] }",
7515 "{ C[N] }",
7516 "[M] -> { C[N] -> [M + floor(N/2)] }" },
7517 { "[M, N] -> { [M + floor(N/2)] }",
7518 "{ D[A, B, C, N, Z] }",
7519 "[M] -> { D[A, B, C, N, Z] -> [M + floor(N/2)] }" },
7520 { "[M, N] -> { T[M + floor(N/2), N + floor(M/3)] }",
7521 "{ A[M, N] }",
7522 "{ A[M, N] -> T[M + floor(N/2), N + floor(M/3)] }" },
7525 /* Perform basic isl_multi_aff_unbind_params_insert_domain tests.
7527 static isl_stat test_unbind_multi_aff(isl_ctx *ctx)
7529 int i;
7531 for (i = 0; i < ARRAY_SIZE(unbind_multi_aff_tests); ++i) {
7532 const char *str;
7533 isl_multi_aff *ma;
7534 isl_multi_id *tuple;
7535 isl_stat r;
7537 str = unbind_multi_aff_tests[i].ma;
7538 ma = isl_multi_aff_read_from_str(ctx, str);
7539 str = unbind_multi_aff_tests[i].tuple;
7540 tuple = isl_multi_id_read_from_str(ctx, str);
7541 ma = isl_multi_aff_unbind_params_insert_domain(ma, tuple);
7542 str = unbind_multi_aff_tests[i].res;
7543 r = multi_aff_check_plain_equal(ma, str);
7544 isl_multi_aff_free(ma);
7545 if (r < 0)
7546 return isl_stat_error;
7549 return isl_stat_ok;
7552 /* Perform tests that reinterpret parameters.
7554 static int test_unbind(isl_ctx *ctx)
7556 if (test_unbind_set(ctx) < 0)
7557 return -1;
7558 if (test_unbind_aff(ctx) < 0)
7559 return -1;
7560 if (test_unbind_multi_aff(ctx) < 0)
7561 return -1;
7563 return 0;
7566 /* Check that "pa" consists of a single expression.
7568 static int check_single_piece(isl_ctx *ctx, __isl_take isl_pw_aff *pa)
7570 isl_size n;
7572 n = isl_pw_aff_n_piece(pa);
7573 isl_pw_aff_free(pa);
7575 if (n < 0)
7576 return -1;
7577 if (n != 1)
7578 isl_die(ctx, isl_error_unknown, "expecting single expression",
7579 return -1);
7581 return 0;
7584 /* Check that the computation below results in a single expression.
7585 * One or two expressions may result depending on which constraint
7586 * ends up being considered as redundant with respect to the other
7587 * constraints after the projection that is performed internally
7588 * by isl_set_dim_min.
7590 static int test_dim_max_1(isl_ctx *ctx)
7592 const char *str;
7593 isl_set *set;
7594 isl_pw_aff *pa;
7596 str = "[n] -> { [a, b] : n >= 0 and 4a >= -4 + n and b >= 0 and "
7597 "-4a <= b <= 3 and b < n - 4a }";
7598 set = isl_set_read_from_str(ctx, str);
7599 pa = isl_set_dim_min(set, 0);
7600 return check_single_piece(ctx, pa);
7603 /* Check that the computation below results in a single expression.
7604 * The PIP problem corresponding to these constraints has a row
7605 * that causes a split of the solution domain. The solver should
7606 * first pick rows that split off empty parts such that the actual
7607 * solution domain does not get split.
7608 * Note that the description contains some redundant constraints.
7609 * If these constraints get removed first, then the row mentioned
7610 * above does not appear in the PIP problem.
7612 static int test_dim_max_2(isl_ctx *ctx)
7614 const char *str;
7615 isl_set *set;
7616 isl_pw_aff *pa;
7618 str = "[P, N] -> { [a] : a < N and a >= 0 and N > P and a <= P and "
7619 "N > 0 and P >= 0 }";
7620 set = isl_set_read_from_str(ctx, str);
7621 pa = isl_set_dim_max(set, 0);
7622 return check_single_piece(ctx, pa);
7625 int test_dim_max(isl_ctx *ctx)
7627 int equal;
7628 const char *str;
7629 isl_set *set1, *set2;
7630 isl_set *set;
7631 isl_map *map;
7632 isl_pw_aff *pwaff;
7634 if (test_dim_max_1(ctx) < 0)
7635 return -1;
7636 if (test_dim_max_2(ctx) < 0)
7637 return -1;
7639 str = "[N] -> { [i] : 0 <= i <= min(N,10) }";
7640 set = isl_set_read_from_str(ctx, str);
7641 pwaff = isl_set_dim_max(set, 0);
7642 set1 = isl_set_from_pw_aff(pwaff);
7643 str = "[N] -> { [10] : N >= 10; [N] : N <= 9 and N >= 0 }";
7644 set2 = isl_set_read_from_str(ctx, str);
7645 equal = isl_set_is_equal(set1, set2);
7646 isl_set_free(set1);
7647 isl_set_free(set2);
7648 if (equal < 0)
7649 return -1;
7650 if (!equal)
7651 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
7653 str = "[N] -> { [i] : 0 <= i <= max(2N,N+6) }";
7654 set = isl_set_read_from_str(ctx, str);
7655 pwaff = isl_set_dim_max(set, 0);
7656 set1 = isl_set_from_pw_aff(pwaff);
7657 str = "[N] -> { [6 + N] : -6 <= N <= 5; [2N] : N >= 6 }";
7658 set2 = isl_set_read_from_str(ctx, str);
7659 equal = isl_set_is_equal(set1, set2);
7660 isl_set_free(set1);
7661 isl_set_free(set2);
7662 if (equal < 0)
7663 return -1;
7664 if (!equal)
7665 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
7667 str = "[N] -> { [i] : 0 <= i <= 2N or 0 <= i <= N+6 }";
7668 set = isl_set_read_from_str(ctx, str);
7669 pwaff = isl_set_dim_max(set, 0);
7670 set1 = isl_set_from_pw_aff(pwaff);
7671 str = "[N] -> { [6 + N] : -6 <= N <= 5; [2N] : N >= 6 }";
7672 set2 = isl_set_read_from_str(ctx, str);
7673 equal = isl_set_is_equal(set1, set2);
7674 isl_set_free(set1);
7675 isl_set_free(set2);
7676 if (equal < 0)
7677 return -1;
7678 if (!equal)
7679 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
7681 str = "[N,M] -> { [i,j] -> [([i/16]), i%16, ([j/16]), j%16] : "
7682 "0 <= i < N and 0 <= j < M }";
7683 map = isl_map_read_from_str(ctx, str);
7684 set = isl_map_range(map);
7686 pwaff = isl_set_dim_max(isl_set_copy(set), 0);
7687 set1 = isl_set_from_pw_aff(pwaff);
7688 str = "[N,M] -> { [([(N-1)/16])] : M,N > 0 }";
7689 set2 = isl_set_read_from_str(ctx, str);
7690 equal = isl_set_is_equal(set1, set2);
7691 isl_set_free(set1);
7692 isl_set_free(set2);
7694 pwaff = isl_set_dim_max(isl_set_copy(set), 3);
7695 set1 = isl_set_from_pw_aff(pwaff);
7696 str = "[N,M] -> { [t] : t = min(M-1,15) and M,N > 0 }";
7697 set2 = isl_set_read_from_str(ctx, str);
7698 if (equal >= 0 && equal)
7699 equal = isl_set_is_equal(set1, set2);
7700 isl_set_free(set1);
7701 isl_set_free(set2);
7703 isl_set_free(set);
7705 if (equal < 0)
7706 return -1;
7707 if (!equal)
7708 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
7710 /* Check that solutions are properly merged. */
7711 str = "[n] -> { [a, b, c] : c >= -4a - 2b and "
7712 "c <= -1 + n - 4a - 2b and c >= -2b and "
7713 "4a >= -4 + n and c >= 0 }";
7714 set = isl_set_read_from_str(ctx, str);
7715 pwaff = isl_set_dim_min(set, 2);
7716 set1 = isl_set_from_pw_aff(pwaff);
7717 str = "[n] -> { [(0)] : n >= 1 }";
7718 set2 = isl_set_read_from_str(ctx, str);
7719 equal = isl_set_is_equal(set1, set2);
7720 isl_set_free(set1);
7721 isl_set_free(set2);
7723 if (equal < 0)
7724 return -1;
7725 if (!equal)
7726 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
7728 /* Check that empty solution lie in the right space. */
7729 str = "[n] -> { [t,a] : 1 = 0 }";
7730 set = isl_set_read_from_str(ctx, str);
7731 pwaff = isl_set_dim_max(set, 0);
7732 set1 = isl_set_from_pw_aff(pwaff);
7733 str = "[n] -> { [t] : 1 = 0 }";
7734 set2 = isl_set_read_from_str(ctx, str);
7735 equal = isl_set_is_equal(set1, set2);
7736 isl_set_free(set1);
7737 isl_set_free(set2);
7739 if (equal < 0)
7740 return -1;
7741 if (!equal)
7742 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
7744 return 0;
7747 /* Basic test for isl_pw_multi_aff_product.
7749 * Check that multiple pieces are properly handled.
7751 static int test_product_pma(isl_ctx *ctx)
7753 isl_stat equal;
7754 const char *str;
7755 isl_pw_multi_aff *pma1, *pma2;
7757 str = "{ A[i] -> B[1] : i < 0; A[i] -> B[2] : i >= 0 }";
7758 pma1 = isl_pw_multi_aff_read_from_str(ctx, str);
7759 str = "{ C[] -> D[] }";
7760 pma2 = isl_pw_multi_aff_read_from_str(ctx, str);
7761 pma1 = isl_pw_multi_aff_product(pma1, pma2);
7762 str = "{ [A[i] -> C[]] -> [B[(1)] -> D[]] : i < 0;"
7763 "[A[i] -> C[]] -> [B[(2)] -> D[]] : i >= 0 }";
7764 equal = pw_multi_aff_check_plain_equal(pma1, str);
7765 isl_pw_multi_aff_free(pma1);
7766 if (equal < 0)
7767 return -1;
7769 return 0;
7772 int test_product(isl_ctx *ctx)
7774 const char *str;
7775 isl_set *set;
7776 isl_union_set *uset1, *uset2;
7777 int ok;
7779 str = "{ A[i] }";
7780 set = isl_set_read_from_str(ctx, str);
7781 set = isl_set_product(set, isl_set_copy(set));
7782 ok = isl_set_is_wrapping(set);
7783 isl_set_free(set);
7784 if (ok < 0)
7785 return -1;
7786 if (!ok)
7787 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
7789 str = "{ [] }";
7790 uset1 = isl_union_set_read_from_str(ctx, str);
7791 uset1 = isl_union_set_product(uset1, isl_union_set_copy(uset1));
7792 str = "{ [[] -> []] }";
7793 uset2 = isl_union_set_read_from_str(ctx, str);
7794 ok = isl_union_set_is_equal(uset1, uset2);
7795 isl_union_set_free(uset1);
7796 isl_union_set_free(uset2);
7797 if (ok < 0)
7798 return -1;
7799 if (!ok)
7800 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
7802 if (test_product_pma(ctx) < 0)
7803 return -1;
7805 return 0;
7808 /* Check that two sets are not considered disjoint just because
7809 * they have a different set of (named) parameters.
7811 static int test_disjoint(isl_ctx *ctx)
7813 const char *str;
7814 isl_set *set, *set2;
7815 int disjoint;
7817 str = "[n] -> { [[]->[]] }";
7818 set = isl_set_read_from_str(ctx, str);
7819 str = "{ [[]->[]] }";
7820 set2 = isl_set_read_from_str(ctx, str);
7821 disjoint = isl_set_is_disjoint(set, set2);
7822 isl_set_free(set);
7823 isl_set_free(set2);
7824 if (disjoint < 0)
7825 return -1;
7826 if (disjoint)
7827 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
7829 return 0;
7832 /* Inputs for isl_pw_multi_aff_is_equal tests.
7833 * "f1" and "f2" are the two function that need to be compared.
7834 * "equal" is the expected result.
7836 struct {
7837 int equal;
7838 const char *f1;
7839 const char *f2;
7840 } pma_equal_tests[] = {
7841 { 1, "[N] -> { [floor(N/2)] : 0 <= N <= 1 }",
7842 "[N] -> { [0] : 0 <= N <= 1 }" },
7843 { 1, "[N] -> { [floor(N/2)] : 0 <= N <= 2 }",
7844 "[N] -> { [0] : 0 <= N <= 1; [1] : N = 2 }" },
7845 { 0, "[N] -> { [floor(N/2)] : 0 <= N <= 2 }",
7846 "[N] -> { [0] : 0 <= N <= 1 }" },
7847 { 0, "{ [NaN] }", "{ [NaN] }" },
7850 int test_equal(isl_ctx *ctx)
7852 int i;
7853 const char *str;
7854 isl_set *set, *set2;
7855 int equal;
7857 str = "{ S_6[i] }";
7858 set = isl_set_read_from_str(ctx, str);
7859 str = "{ S_7[i] }";
7860 set2 = isl_set_read_from_str(ctx, str);
7861 equal = isl_set_is_equal(set, set2);
7862 isl_set_free(set);
7863 isl_set_free(set2);
7864 if (equal < 0)
7865 return -1;
7866 if (equal)
7867 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
7869 for (i = 0; i < ARRAY_SIZE(pma_equal_tests); ++i) {
7870 int expected = pma_equal_tests[i].equal;
7871 isl_pw_multi_aff *f1, *f2;
7873 f1 = isl_pw_multi_aff_read_from_str(ctx, pma_equal_tests[i].f1);
7874 f2 = isl_pw_multi_aff_read_from_str(ctx, pma_equal_tests[i].f2);
7875 equal = isl_pw_multi_aff_is_equal(f1, f2);
7876 isl_pw_multi_aff_free(f1);
7877 isl_pw_multi_aff_free(f2);
7878 if (equal < 0)
7879 return -1;
7880 if (equal != expected)
7881 isl_die(ctx, isl_error_unknown,
7882 "unexpected equality result", return -1);
7885 return 0;
7888 static int test_plain_fixed(isl_ctx *ctx, __isl_take isl_map *map,
7889 enum isl_dim_type type, unsigned pos, int fixed)
7891 isl_bool test;
7893 test = isl_map_plain_is_fixed(map, type, pos, NULL);
7894 isl_map_free(map);
7895 if (test < 0)
7896 return -1;
7897 if (test == fixed)
7898 return 0;
7899 if (fixed)
7900 isl_die(ctx, isl_error_unknown,
7901 "map not detected as fixed", return -1);
7902 else
7903 isl_die(ctx, isl_error_unknown,
7904 "map detected as fixed", return -1);
7907 int test_fixed(isl_ctx *ctx)
7909 const char *str;
7910 isl_map *map;
7912 str = "{ [i] -> [i] }";
7913 map = isl_map_read_from_str(ctx, str);
7914 if (test_plain_fixed(ctx, map, isl_dim_out, 0, 0))
7915 return -1;
7916 str = "{ [i] -> [1] }";
7917 map = isl_map_read_from_str(ctx, str);
7918 if (test_plain_fixed(ctx, map, isl_dim_out, 0, 1))
7919 return -1;
7920 str = "{ S_1[p1] -> [o0] : o0 = -2 and p1 >= 1 and p1 <= 7 }";
7921 map = isl_map_read_from_str(ctx, str);
7922 if (test_plain_fixed(ctx, map, isl_dim_out, 0, 1))
7923 return -1;
7924 map = isl_map_read_from_str(ctx, str);
7925 map = isl_map_neg(map);
7926 if (test_plain_fixed(ctx, map, isl_dim_out, 0, 1))
7927 return -1;
7929 return 0;
7932 struct isl_vertices_test_data {
7933 const char *set;
7934 int n;
7935 const char *vertex[6];
7936 } vertices_tests[] = {
7937 { "{ A[t, i] : t = 12 and i >= 4 and i <= 12 }",
7938 2, { "{ A[12, 4] }", "{ A[12, 12] }" } },
7939 { "{ A[t, i] : t = 14 and i = 1 }",
7940 1, { "{ A[14, 1] }" } },
7941 { "[n, m] -> { [a, b, c] : b <= a and a <= n and b > 0 and c >= b and "
7942 "c <= m and m <= n and m > 0 }",
7943 6, {
7944 "[n, m] -> { [n, m, m] : 0 < m <= n }",
7945 "[n, m] -> { [n, 1, m] : 0 < m <= n }",
7946 "[n, m] -> { [n, 1, 1] : 0 < m <= n }",
7947 "[n, m] -> { [m, m, m] : 0 < m <= n }",
7948 "[n, m] -> { [1, 1, m] : 0 < m <= n }",
7949 "[n, m] -> { [1, 1, 1] : 0 < m <= n }"
7950 } },
7951 /* An input with implicit equality constraints among the parameters. */
7952 { "[N, M] -> { [a, b] : M >= 3 and 9 + 3M <= a <= 29 + 2N + 11M and "
7953 "2b >= M + a and 5 - 2N - M + a <= 2b <= 3 + a and "
7954 "3b >= 15 + a }",
7955 2, {
7956 "[N, M] -> { [(21), (12)] : M = 3 and N >= 0 }",
7957 "[N, M] -> { [(61 + 2N), (32 + N)] : M = 3 and N >= 0 }",
7962 /* Check that "vertex" corresponds to one of the vertices in data->vertex.
7964 static isl_stat find_vertex(__isl_take isl_vertex *vertex, void *user)
7966 struct isl_vertices_test_data *data = user;
7967 isl_ctx *ctx;
7968 isl_multi_aff *ma;
7969 isl_basic_set *bset;
7970 isl_pw_multi_aff *pma;
7971 int i;
7972 isl_bool equal;
7974 ctx = isl_vertex_get_ctx(vertex);
7975 bset = isl_vertex_get_domain(vertex);
7976 ma = isl_vertex_get_expr(vertex);
7977 pma = isl_pw_multi_aff_alloc(isl_set_from_basic_set(bset), ma);
7979 for (i = 0; i < data->n; ++i) {
7980 isl_pw_multi_aff *pma_i;
7982 pma_i = isl_pw_multi_aff_read_from_str(ctx, data->vertex[i]);
7983 equal = isl_pw_multi_aff_plain_is_equal(pma, pma_i);
7984 isl_pw_multi_aff_free(pma_i);
7986 if (equal < 0 || equal)
7987 break;
7990 isl_pw_multi_aff_free(pma);
7991 isl_vertex_free(vertex);
7993 if (equal < 0)
7994 return isl_stat_error;
7996 return equal ? isl_stat_ok : isl_stat_error;
7999 int test_vertices(isl_ctx *ctx)
8001 int i;
8003 for (i = 0; i < ARRAY_SIZE(vertices_tests); ++i) {
8004 isl_basic_set *bset;
8005 isl_vertices *vertices;
8006 int ok = 1;
8007 isl_size n;
8009 bset = isl_basic_set_read_from_str(ctx, vertices_tests[i].set);
8010 vertices = isl_basic_set_compute_vertices(bset);
8011 n = isl_vertices_get_n_vertices(vertices);
8012 if (vertices_tests[i].n != n)
8013 ok = 0;
8014 if (isl_vertices_foreach_vertex(vertices, &find_vertex,
8015 &vertices_tests[i]) < 0)
8016 ok = 0;
8017 isl_vertices_free(vertices);
8018 isl_basic_set_free(bset);
8020 if (n < 0)
8021 return -1;
8022 if (!ok)
8023 isl_die(ctx, isl_error_unknown, "unexpected vertices",
8024 return -1);
8027 return 0;
8030 /* Inputs for basic tests of unary operations on isl_union_map.
8031 * "fn" is the function that is being tested.
8032 * "arg" is a string description of the input.
8033 * "res" is a string description of the expected result.
8035 static struct {
8036 __isl_give isl_union_map *(*fn)(__isl_take isl_union_map *umap);
8037 const char *arg;
8038 const char *res;
8039 } umap_un_tests[] = {
8040 { &isl_union_map_range_reverse,
8041 "{ A[] -> [B[] -> C[]]; A[] -> B[]; A[0] -> N[B[1] -> B[2]] }",
8042 "{ A[] -> [C[] -> B[]]; A[0] -> N[B[2] -> B[1]] }" },
8043 { &isl_union_map_range_reverse,
8044 "{ A[] -> N[B[] -> C[]] }",
8045 "{ A[] -> [C[] -> B[]] }" },
8046 { &isl_union_map_range_reverse,
8047 "{ A[] -> N[B[x] -> B[y]] }",
8048 "{ A[] -> N[B[*] -> B[*]] }" },
8051 /* Perform basic tests of unary operations on isl_union_map.
8053 static isl_stat test_un_union_map(isl_ctx *ctx)
8055 int i;
8057 for (i = 0; i < ARRAY_SIZE(umap_un_tests); ++i) {
8058 const char *str;
8059 isl_union_map *umap, *res;
8060 isl_bool equal;
8062 str = umap_un_tests[i].arg;
8063 umap = isl_union_map_read_from_str(ctx, str);
8064 str = umap_un_tests[i].res;
8065 res = isl_union_map_read_from_str(ctx, str);
8066 umap = umap_un_tests[i].fn(umap);
8067 equal = isl_union_map_is_equal(umap, res);
8068 isl_union_map_free(umap);
8069 isl_union_map_free(res);
8070 if (equal < 0)
8071 return isl_stat_error;
8072 if (!equal)
8073 isl_die(ctx, isl_error_unknown,
8074 "unexpected result", return isl_stat_error);
8077 return isl_stat_ok;
8080 /* Inputs for basic tests of binary operations on isl_union_map.
8081 * "fn" is the function that is being tested.
8082 * "arg1" and "arg2" are string descriptions of the inputs.
8083 * "res" is a string description of the expected result.
8085 static struct {
8086 __isl_give isl_union_map *(*fn)(__isl_take isl_union_map *umap1,
8087 __isl_take isl_union_map *umap2);
8088 const char *arg1;
8089 const char *arg2;
8090 const char *res;
8091 } umap_bin_tests[] = {
8092 { &isl_union_map_intersect,
8093 "[n] -> { A[i] -> [] : 0 <= i <= n; B[] -> [] }",
8094 "[m] -> { A[i] -> [] : 0 <= i <= m; C[] -> [] }",
8095 "[m, n] -> { A[i] -> [] : 0 <= i <= n and i <= m }" },
8096 { &isl_union_map_intersect_domain_factor_domain,
8097 "{ [A[i] -> B[i + 1]] -> C[i + 2] }",
8098 "[N] -> { B[i] -> C[N] }",
8099 "{ }" },
8100 { &isl_union_map_intersect_domain_factor_domain,
8101 "{ [A[i] -> B[i + 1]] -> C[i + 2] }",
8102 "[N] -> { A[i] -> C[N] }",
8103 "[N] -> { [A[N - 2] -> B[N - 1]] -> C[N] }" },
8104 { &isl_union_map_intersect_domain_factor_domain,
8105 "{ T[A[i] -> B[i + 1]] -> C[i + 2] }",
8106 "[N] -> { A[i] -> C[N] }",
8107 "[N] -> { T[A[N - 2] -> B[N - 1]] -> C[N] }" },
8108 { &isl_union_map_intersect_domain_factor_range,
8109 "{ [A[i] -> B[i + 1]] -> C[i + 2] }",
8110 "[N] -> { B[i] -> C[N] }",
8111 "[N] -> { [A[N - 2] -> B[N - 1]] -> C[N] }" },
8112 { &isl_union_map_intersect_domain_factor_range,
8113 "{ T[A[i] -> B[i + 1]] -> C[i + 2] }",
8114 "[N] -> { B[i] -> C[N] }",
8115 "[N] -> { T[A[N - 2] -> B[N - 1]] -> C[N] }" },
8116 { &isl_union_map_intersect_domain_factor_range,
8117 "{ [A[i] -> B[i + 1]] -> C[i + 2] }",
8118 "[N] -> { A[i] -> C[N] }",
8119 "{ }" },
8120 { &isl_union_map_intersect_range_factor_domain,
8121 "{ A[i] -> [B[i + 1] -> C[i + 2]] }",
8122 "[N] -> { A[i] -> B[N] }",
8123 "[N] -> { A[N - 1] -> [B[N] -> C[N + 1]] }" },
8124 { &isl_union_map_intersect_range_factor_domain,
8125 "{ A[i] -> T[B[i + 1] -> C[i + 2]] }",
8126 "[N] -> { A[i] -> B[N] }",
8127 "[N] -> { A[N - 1] -> T[B[N] -> C[N + 1]] }" },
8128 { &isl_union_map_intersect_range_factor_domain,
8129 "{ A[i] -> [B[i + 1] -> C[i + 2]] }",
8130 "[N] -> { A[i] -> C[N] }",
8131 "{ }" },
8132 { &isl_union_map_intersect_range_factor_range,
8133 "{ A[i] -> [B[i + 1] -> C[i + 2]] }",
8134 "[N] -> { A[i] -> C[N] }",
8135 "[N] -> { A[N - 2] -> [B[N - 1] -> C[N]] }" },
8136 { &isl_union_map_intersect_range_factor_range,
8137 "{ A[i] -> T[B[i + 1] -> C[i + 2]] }",
8138 "[N] -> { A[i] -> C[N] }",
8139 "[N] -> { A[N - 2] -> T[B[N - 1] -> C[N]] }" },
8140 { &isl_union_map_intersect_range_factor_range,
8141 "{ A[i] -> [B[i + 1] -> C[i + 2]] }",
8142 "[N] -> { A[i] -> B[N] }",
8143 "{ }" },
8146 /* Perform basic tests of binary operations on isl_union_map.
8148 static isl_stat test_bin_union_map(isl_ctx *ctx)
8150 int i;
8152 for (i = 0; i < ARRAY_SIZE(umap_bin_tests); ++i) {
8153 const char *str;
8154 isl_union_map *umap1, *umap2, *res;
8155 isl_bool equal;
8157 str = umap_bin_tests[i].arg1;
8158 umap1 = isl_union_map_read_from_str(ctx, str);
8159 str = umap_bin_tests[i].arg2;
8160 umap2 = isl_union_map_read_from_str(ctx, str);
8161 str = umap_bin_tests[i].res;
8162 res = isl_union_map_read_from_str(ctx, str);
8163 umap1 = umap_bin_tests[i].fn(umap1, umap2);
8164 equal = isl_union_map_is_equal(umap1, res);
8165 isl_union_map_free(umap1);
8166 isl_union_map_free(res);
8167 if (equal < 0)
8168 return isl_stat_error;
8169 if (!equal)
8170 isl_die(ctx, isl_error_unknown,
8171 "unexpected result", return isl_stat_error);
8174 return isl_stat_ok;
8177 /* Check that isl_union_set_contains finds space independently
8178 * of the parameters.
8180 static isl_stat test_union_set_contains(isl_ctx *ctx)
8182 const char *str;
8183 isl_bool ok;
8184 isl_space *space;
8185 isl_id *id;
8186 isl_union_set *uset;
8188 str = "[N] -> { A[0:N]; B[*,*] }";
8189 uset = isl_union_set_read_from_str(ctx, str);
8190 space = isl_space_unit(ctx);
8191 id = isl_id_alloc(ctx, "A", NULL);
8192 space = isl_space_add_named_tuple_id_ui(space, id, 1);
8193 ok = isl_union_set_contains(uset, space);
8194 isl_space_free(space);
8195 isl_union_set_free(uset);
8197 if (ok < 0)
8198 return isl_stat_error;
8199 if (!ok)
8200 isl_die(ctx, isl_error_unknown,
8201 "unexpected result", return isl_stat_error);
8203 return isl_stat_ok;
8206 /* Perform basic tests of operations on isl_union_map or isl_union_set.
8208 static int test_union_map(isl_ctx *ctx)
8210 if (test_un_union_map(ctx) < 0)
8211 return -1;
8212 if (test_bin_union_map(ctx) < 0)
8213 return -1;
8214 if (test_union_set_contains(ctx) < 0)
8215 return -1;
8216 return 0;
8219 int test_union_pw(isl_ctx *ctx)
8221 int equal;
8222 const char *str;
8223 isl_union_set *uset;
8224 isl_union_pw_qpolynomial *upwqp1, *upwqp2;
8226 str = "{ [x] -> x^2 }";
8227 upwqp1 = isl_union_pw_qpolynomial_read_from_str(ctx, str);
8228 upwqp2 = isl_union_pw_qpolynomial_copy(upwqp1);
8229 uset = isl_union_pw_qpolynomial_domain(upwqp1);
8230 upwqp1 = isl_union_pw_qpolynomial_copy(upwqp2);
8231 upwqp1 = isl_union_pw_qpolynomial_intersect_domain(upwqp1, uset);
8232 equal = isl_union_pw_qpolynomial_plain_is_equal(upwqp1, upwqp2);
8233 isl_union_pw_qpolynomial_free(upwqp1);
8234 isl_union_pw_qpolynomial_free(upwqp2);
8235 if (equal < 0)
8236 return -1;
8237 if (!equal)
8238 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
8240 return 0;
8243 /* Inputs for basic tests of functions that select
8244 * subparts of the domain of an isl_multi_union_pw_aff.
8245 * "fn" is the function that is tested.
8246 * "arg" is a string description of the input.
8247 * "res" is a string description of the expected result.
8249 struct {
8250 __isl_give isl_union_set *(*fn)(
8251 __isl_take isl_multi_union_pw_aff *mupa);
8252 const char *arg;
8253 const char *res;
8254 } un_locus_tests[] = {
8255 { &isl_multi_union_pw_aff_zero_union_set,
8256 "F[{ A[i,j] -> [i]; B[i,j] -> [i] }]",
8257 "{ A[0,j]; B[0,j] }" },
8258 { &isl_multi_union_pw_aff_zero_union_set,
8259 "F[{ A[i,j] -> [i-j]; B[i,j] -> [i-j] : i >= 0 }]",
8260 "{ A[i,i]; B[i,i] : i >= 0 }" },
8261 { &isl_multi_union_pw_aff_zero_union_set,
8262 "(F[] : { A[i,j]; B[i,i] : i >= 0 })",
8263 "{ A[i,j]; B[i,i] : i >= 0 }" },
8266 /* Perform some basic tests of functions that select
8267 * subparts of the domain of an isl_multi_union_pw_aff.
8269 static int test_un_locus(isl_ctx *ctx)
8271 int i;
8272 isl_bool ok;
8273 isl_union_set *uset, *res;
8274 isl_multi_union_pw_aff *mupa;
8276 for (i = 0; i < ARRAY_SIZE(un_locus_tests); ++i) {
8277 mupa = isl_multi_union_pw_aff_read_from_str(ctx,
8278 un_locus_tests[i].arg);
8279 res = isl_union_set_read_from_str(ctx, un_locus_tests[i].res);
8280 uset = un_locus_tests[i].fn(mupa);
8281 ok = isl_union_set_is_equal(uset, res);
8282 isl_union_set_free(uset);
8283 isl_union_set_free(res);
8284 if (ok < 0)
8285 return -1;
8286 if (!ok)
8287 isl_die(ctx, isl_error_unknown,
8288 "unexpected result", return -1);
8291 return 0;
8294 /* Inputs for basic tests of functions that select
8295 * subparts of an isl_union_map based on a relation
8296 * specified by an isl_multi_union_pw_aff.
8297 * "fn" is the function that is tested.
8298 * "arg1" and "arg2" are string descriptions of the inputs.
8299 * "res" is a string description of the expected result.
8301 struct {
8302 __isl_give isl_union_map *(*fn)(
8303 __isl_take isl_union_map *umap,
8304 __isl_take isl_multi_union_pw_aff *mupa);
8305 const char *arg1;
8306 const char *arg2;
8307 const char *res;
8308 } bin_locus_tests[] = {
8309 { &isl_union_map_eq_at_multi_union_pw_aff,
8310 "{ A[i,j] -> B[i',j'] }",
8311 "F[{ A[i,j] -> [i]; B[i,j] -> [i] }]",
8312 "{ A[i,j] -> B[i,j'] }" },
8313 { &isl_union_map_eq_at_multi_union_pw_aff,
8314 "{ A[i,j] -> B[i',j'] }",
8315 "F[{ A[i,j] -> [i]; B[i,j] -> [i] }, "
8316 "{ A[i,j] -> [j]; B[i,j] -> [j] }]",
8317 "{ A[i,j] -> B[i,j] }" },
8318 { &isl_union_map_eq_at_multi_union_pw_aff,
8319 "{ A[i,j] -> B[i',j']; A[i,j] -> C[i',j'] }",
8320 "F[{ A[i,j] -> [i]; B[i,j] -> [i] }]",
8321 "{ A[i,j] -> B[i,j'] }" },
8322 { &isl_union_map_eq_at_multi_union_pw_aff,
8323 "{ A[i,j] -> B[i',j']; A[i,j] -> C[i',j'] }",
8324 "F[{ A[i,j] -> [i]; B[i,j] -> [i]; C[i,j] -> [0] }]",
8325 "{ A[i,j] -> B[i,j']; A[0,j] -> C[i',j'] }" },
8326 { &isl_union_map_eq_at_multi_union_pw_aff,
8327 "{ A[i,j] -> B[i',j'] }",
8328 "F[{ A[i,j] -> [i] : i > j; B[i,j] -> [i] }]",
8329 "{ A[i,j] -> B[i,j'] : i > j }" },
8330 { &isl_union_map_lex_le_at_multi_union_pw_aff,
8331 "{ A[i,j] -> B[i',j'] }",
8332 "F[{ A[i,j] -> [i]; B[i,j] -> [i] }, "
8333 "{ A[i,j] -> [j]; B[i,j] -> [j] }]",
8334 "{ A[i,j] -> B[i',j'] : i,j <<= i',j' }" },
8335 { &isl_union_map_lex_lt_at_multi_union_pw_aff,
8336 "{ A[i,j] -> B[i',j'] }",
8337 "F[{ A[i,j] -> [i]; B[i,j] -> [i] }, "
8338 "{ A[i,j] -> [j]; B[i,j] -> [j] }]",
8339 "{ A[i,j] -> B[i',j'] : i,j << i',j' }" },
8340 { &isl_union_map_lex_ge_at_multi_union_pw_aff,
8341 "{ A[i,j] -> B[i',j'] }",
8342 "F[{ A[i,j] -> [i]; B[i,j] -> [i] }, "
8343 "{ A[i,j] -> [j]; B[i,j] -> [j] }]",
8344 "{ A[i,j] -> B[i',j'] : i,j >>= i',j' }" },
8345 { &isl_union_map_lex_gt_at_multi_union_pw_aff,
8346 "{ A[i,j] -> B[i',j'] }",
8347 "F[{ A[i,j] -> [i]; B[i,j] -> [i] }, "
8348 "{ A[i,j] -> [j]; B[i,j] -> [j] }]",
8349 "{ A[i,j] -> B[i',j'] : i,j >> i',j' }" },
8350 { &isl_union_map_eq_at_multi_union_pw_aff,
8351 "{ A[i,j] -> B[i',j']; A[i,j] -> C[i',j'] }",
8352 "(F[] : { A[i,j]; B[i,j] })",
8353 "{ A[i,j] -> B[i',j'] }" },
8354 { &isl_union_map_eq_at_multi_union_pw_aff,
8355 "{ A[i,j] -> B[i',j'] }",
8356 "(F[] : { A[i,j] : i > j; B[i,j] : i < j })",
8357 "{ A[i,j] -> B[i',j'] : i > j and i' < j' }" },
8358 { &isl_union_map_eq_at_multi_union_pw_aff,
8359 "[N] -> { A[i,j] -> B[i',j'] : i,i' <= N }",
8360 "(F[] : { A[i,j] : i > j; B[i,j] : i < j })",
8361 "[N] -> { A[i,j] -> B[i',j'] : i > j and i' < j' and i,i' <= N }" },
8362 { &isl_union_map_eq_at_multi_union_pw_aff,
8363 "{ A[i,j] -> B[i',j'] }",
8364 "[N] -> (F[] : { A[i,j] : i < N; B[i,j] : i < N })",
8365 "[N] -> { A[i,j] -> B[i',j'] : i,i' < N }" },
8366 { &isl_union_map_eq_at_multi_union_pw_aff,
8367 "{ A[i,j] -> B[i',j'] }",
8368 "[N] -> (F[] : { : N >= 0 })",
8369 "[N] -> { A[i,j] -> B[i',j'] : N >= 0 }" },
8372 /* Perform some basic tests of functions that select
8373 * subparts of an isl_union_map based on a relation
8374 * specified by an isl_multi_union_pw_aff.
8376 static int test_bin_locus(isl_ctx *ctx)
8378 int i;
8379 isl_bool ok;
8380 isl_union_map *umap, *res;
8381 isl_multi_union_pw_aff *mupa;
8383 for (i = 0; i < ARRAY_SIZE(bin_locus_tests); ++i) {
8384 umap = isl_union_map_read_from_str(ctx,
8385 bin_locus_tests[i].arg1);
8386 mupa = isl_multi_union_pw_aff_read_from_str(ctx,
8387 bin_locus_tests[i].arg2);
8388 res = isl_union_map_read_from_str(ctx, bin_locus_tests[i].res);
8389 umap = bin_locus_tests[i].fn(umap, mupa);
8390 ok = isl_union_map_is_equal(umap, res);
8391 isl_union_map_free(umap);
8392 isl_union_map_free(res);
8393 if (ok < 0)
8394 return -1;
8395 if (!ok)
8396 isl_die(ctx, isl_error_unknown,
8397 "unexpected result", return -1);
8400 return 0;
8403 /* Inputs for basic tests of functions that determine
8404 * the part of the domain where two isl_multi_aff objects
8405 * related to each other in a specific way.
8406 * "fn" is the function that is being tested.
8407 * "arg1" and "arg2" are string descriptions of the inputs.
8408 * "res" is a string description of the expected result.
8410 static struct {
8411 __isl_give isl_set *(*fn)(__isl_take isl_multi_aff *ma1,
8412 __isl_take isl_multi_aff *ma2);
8413 const char *arg1;
8414 const char *arg2;
8415 const char *res;
8416 } bin_locus_ma_tests[] = {
8417 { &isl_multi_aff_lex_le_set, "{ [] }", "{ [] }", "{ : }" },
8418 { &isl_multi_aff_lex_lt_set, "{ [] }", "{ [] }", "{ : false }" },
8419 { &isl_multi_aff_lex_le_set,
8420 "{ A[i] -> [i] }", "{ A[i] -> [0] }",
8421 "{ A[i] : i <= 0 }" },
8422 { &isl_multi_aff_lex_lt_set,
8423 "{ A[i] -> [i] }", "{ A[i] -> [0] }",
8424 "{ A[i] : i < 0 }" },
8425 { &isl_multi_aff_lex_le_set,
8426 "{ A[i] -> [i, i] }", "{ A[i] -> [0, 0] }",
8427 "{ A[i] : i <= 0 }" },
8428 { &isl_multi_aff_lex_le_set,
8429 "{ A[i] -> [i, 0] }", "{ A[i] -> [0, 0] }",
8430 "{ A[i] : i <= 0 }" },
8431 { &isl_multi_aff_lex_le_set,
8432 "{ A[i] -> [i, 1] }", "{ A[i] -> [0, 0] }",
8433 "{ A[i] : i < 0 }" },
8436 /* Perform some basic tests of functions that determine
8437 * the part of the domain where two isl_multi_aff objects
8438 * related to each other in a specific way.
8440 static isl_stat test_bin_locus_ma(isl_ctx *ctx)
8442 int i;
8444 for (i = 0; i < ARRAY_SIZE(bin_locus_ma_tests); ++i) {
8445 const char *str;
8446 isl_bool ok;
8447 isl_multi_aff *ma1, *ma2;
8448 isl_set *set, *res;
8450 str = bin_locus_ma_tests[i].arg1;
8451 ma1 = isl_multi_aff_read_from_str(ctx, str);
8452 str = bin_locus_ma_tests[i].arg2;
8453 ma2 = isl_multi_aff_read_from_str(ctx, str);
8454 res = isl_set_read_from_str(ctx, bin_locus_ma_tests[i].res);
8455 set = bin_locus_ma_tests[i].fn(ma1, ma2);
8456 ok = isl_set_is_equal(set, res);
8457 isl_set_free(set);
8458 isl_set_free(res);
8459 if (ok < 0)
8460 return isl_stat_error;
8461 if (!ok)
8462 isl_die(ctx, isl_error_unknown,
8463 "unexpected result", return isl_stat_error);
8466 return isl_stat_ok;
8469 /* Perform basic locus tests.
8471 static int test_locus(isl_ctx *ctx)
8473 if (test_un_locus(ctx) < 0)
8474 return -1;
8475 if (test_bin_locus(ctx) < 0)
8476 return -1;
8477 if (test_bin_locus_ma(ctx) < 0)
8478 return -1;
8479 return 0;
8482 /* Test that isl_union_pw_qpolynomial_eval picks up the function
8483 * defined over the correct domain space.
8485 static int test_eval_1(isl_ctx *ctx)
8487 const char *str;
8488 isl_point *pnt;
8489 isl_set *set;
8490 isl_union_pw_qpolynomial *upwqp;
8491 isl_val *v;
8492 int cmp;
8494 str = "{ A[x] -> x^2; B[x] -> -x^2 }";
8495 upwqp = isl_union_pw_qpolynomial_read_from_str(ctx, str);
8496 str = "{ A[6] }";
8497 set = isl_set_read_from_str(ctx, str);
8498 pnt = isl_set_sample_point(set);
8499 v = isl_union_pw_qpolynomial_eval(upwqp, pnt);
8500 cmp = isl_val_cmp_si(v, 36);
8501 isl_val_free(v);
8503 if (!v)
8504 return -1;
8505 if (cmp != 0)
8506 isl_die(ctx, isl_error_unknown, "unexpected value", return -1);
8508 return 0;
8511 /* Check that isl_qpolynomial_eval handles getting called on a void point.
8513 static int test_eval_2(isl_ctx *ctx)
8515 const char *str;
8516 isl_point *pnt;
8517 isl_set *set;
8518 isl_qpolynomial *qp;
8519 isl_val *v;
8520 isl_bool ok;
8522 str = "{ A[x] -> [x] }";
8523 qp = isl_qpolynomial_from_aff(isl_aff_read_from_str(ctx, str));
8524 str = "{ A[x] : false }";
8525 set = isl_set_read_from_str(ctx, str);
8526 pnt = isl_set_sample_point(set);
8527 v = isl_qpolynomial_eval(qp, pnt);
8528 ok = isl_val_is_nan(v);
8529 isl_val_free(v);
8531 if (ok < 0)
8532 return -1;
8533 if (!ok)
8534 isl_die(ctx, isl_error_unknown, "expecting NaN", return -1);
8536 return 0;
8539 /* Check that a polynomial (without local variables) can be evaluated
8540 * in a rational point.
8542 static isl_stat test_eval_3(isl_ctx *ctx)
8544 isl_pw_qpolynomial *pwqp;
8545 isl_point *pnt;
8546 isl_val *v;
8547 isl_stat r;
8549 pwqp = isl_pw_qpolynomial_read_from_str(ctx, "{ [x] -> x^2 }");
8550 pnt = isl_point_zero(isl_pw_qpolynomial_get_domain_space(pwqp));
8551 v = isl_val_read_from_str(ctx, "1/2");
8552 pnt = isl_point_set_coordinate_val(pnt, isl_dim_set, 0, v);
8553 v = isl_pw_qpolynomial_eval(pwqp, pnt);
8554 r = val_check_equal(v, "1/4");
8555 isl_val_free(v);
8557 return r;
8560 /* Inputs for isl_pw_aff_eval test.
8561 * "f" is the affine function.
8562 * "p" is the point where the function should be evaluated.
8563 * "res" is the expected result.
8565 struct {
8566 const char *f;
8567 const char *p;
8568 const char *res;
8569 } aff_eval_tests[] = {
8570 { "{ [i] -> [2 * i] }", "{ [4] }", "8" },
8571 { "{ [i] -> [2 * i] }", "{ [x] : false }", "NaN" },
8572 { "{ [i] -> [i + floor(i/2) + floor(i/3)] }", "{ [0] }", "0" },
8573 { "{ [i] -> [i + floor(i/2) + floor(i/3)] }", "{ [1] }", "1" },
8574 { "{ [i] -> [i + floor(i/2) + floor(i/3)] }", "{ [2] }", "3" },
8575 { "{ [i] -> [i + floor(i/2) + floor(i/3)] }", "{ [3] }", "5" },
8576 { "{ [i] -> [i + floor(i/2) + floor(i/3)] }", "{ [4] }", "7" },
8577 { "{ [i] -> [floor((3 * floor(i/2))/5)] }", "{ [0] }", "0" },
8578 { "{ [i] -> [floor((3 * floor(i/2))/5)] }", "{ [1] }", "0" },
8579 { "{ [i] -> [floor((3 * floor(i/2))/5)] }", "{ [2] }", "0" },
8580 { "{ [i] -> [floor((3 * floor(i/2))/5)] }", "{ [3] }", "0" },
8581 { "{ [i] -> [floor((3 * floor(i/2))/5)] }", "{ [4] }", "1" },
8582 { "{ [i] -> [floor((3 * floor(i/2))/5)] }", "{ [6] }", "1" },
8583 { "{ [i] -> [floor((3 * floor(i/2))/5)] }", "{ [8] }", "2" },
8584 { "{ [i] -> [i] : i > 0; [i] -> [-i] : i < 0 }", "{ [4] }", "4" },
8585 { "{ [i] -> [i] : i > 0; [i] -> [-i] : i < 0 }", "{ [-2] }", "2" },
8586 { "{ [i] -> [i] : i > 0; [i] -> [-i] : i < 0 }", "{ [0] }", "NaN" },
8587 { "[N] -> { [2 * N] }", "[N] -> { : N = 4 }", "8" },
8588 { "{ [i, j] -> [(i + j)/2] }", "{ [1, 1] }", "1" },
8589 { "{ [i, j] -> [(i + j)/2] }", "{ [1, 2] }", "3/2" },
8590 { "{ [i] -> [i] : i mod 2 = 0 }", "{ [4] }", "4" },
8591 { "{ [i] -> [i] : i mod 2 = 0 }", "{ [3] }", "NaN" },
8592 { "{ [i] -> [i] : i mod 2 = 0 }", "{ [x] : false }", "NaN" },
8595 /* Perform basic isl_pw_aff_eval tests.
8597 static int test_eval_aff(isl_ctx *ctx)
8599 int i;
8601 for (i = 0; i < ARRAY_SIZE(aff_eval_tests); ++i) {
8602 isl_stat r;
8603 isl_pw_aff *pa;
8604 isl_set *set;
8605 isl_point *pnt;
8606 isl_val *v;
8608 pa = isl_pw_aff_read_from_str(ctx, aff_eval_tests[i].f);
8609 set = isl_set_read_from_str(ctx, aff_eval_tests[i].p);
8610 pnt = isl_set_sample_point(set);
8611 v = isl_pw_aff_eval(pa, pnt);
8612 r = val_check_equal(v, aff_eval_tests[i].res);
8613 isl_val_free(v);
8614 if (r < 0)
8615 return -1;
8617 return 0;
8620 /* Perform basic evaluation tests.
8622 static int test_eval(isl_ctx *ctx)
8624 if (test_eval_1(ctx) < 0)
8625 return -1;
8626 if (test_eval_2(ctx) < 0)
8627 return -1;
8628 if (test_eval_3(ctx) < 0)
8629 return -1;
8630 if (test_eval_aff(ctx) < 0)
8631 return -1;
8632 return 0;
8635 /* Descriptions of sets that are tested for reparsing after printing.
8637 const char *output_tests[] = {
8638 "{ [1, y] : 0 <= y <= 1; [x, -x] : 0 <= x <= 1 }",
8639 "{ [x] : 1 = 0 }",
8640 "{ [x] : false }",
8641 "{ [x] : x mod 2 = 0 }",
8642 "{ [x] : x mod 2 = 1 }",
8643 "{ [x, y] : x mod 2 = 0 and 3*floor(y/2) < x }",
8644 "{ [y, x] : x mod 2 = 0 and 3*floor(y/2) < x }",
8645 "{ [x, y] : x mod 2 = 0 and 3*floor(y/2) = x + y }",
8646 "{ [y, x] : x mod 2 = 0 and 3*floor(y/2) = x + y }",
8647 "[n] -> { [y, x] : 2*((x + 2y) mod 3) = n }",
8648 "{ [x, y] : (2*floor(x/3) + 3*floor(y/4)) mod 5 = x }",
8651 /* Check that printing a set and reparsing a set from the printed output
8652 * results in the same set.
8654 static int test_output_set(isl_ctx *ctx)
8656 int i;
8657 char *str;
8658 isl_set *set1, *set2;
8659 isl_bool equal;
8661 for (i = 0; i < ARRAY_SIZE(output_tests); ++i) {
8662 set1 = isl_set_read_from_str(ctx, output_tests[i]);
8663 str = isl_set_to_str(set1);
8664 set2 = isl_set_read_from_str(ctx, str);
8665 free(str);
8666 equal = isl_set_is_equal(set1, set2);
8667 isl_set_free(set1);
8668 isl_set_free(set2);
8669 if (equal < 0)
8670 return -1;
8671 if (!equal)
8672 isl_die(ctx, isl_error_unknown,
8673 "parsed output not the same", return -1);
8676 return 0;
8679 /* Check that an isl_multi_aff is printed using a consistent space.
8681 static isl_stat test_output_ma(isl_ctx *ctx)
8683 char *str;
8684 isl_bool equal;
8685 isl_aff *aff;
8686 isl_multi_aff *ma, *ma2;
8688 ma = isl_multi_aff_read_from_str(ctx, "{ [a, b] -> [a + b] }");
8689 aff = isl_aff_read_from_str(ctx, "{ [c, d] -> [c + d] }");
8690 ma = isl_multi_aff_set_aff(ma, 0, aff);
8691 str = isl_multi_aff_to_str(ma);
8692 ma2 = isl_multi_aff_read_from_str(ctx, str);
8693 free(str);
8694 equal = isl_multi_aff_plain_is_equal(ma, ma2);
8695 isl_multi_aff_free(ma2);
8696 isl_multi_aff_free(ma);
8698 if (equal < 0)
8699 return isl_stat_error;
8700 if (!equal)
8701 isl_die(ctx, isl_error_unknown, "bad conversion",
8702 return isl_stat_error);
8704 return isl_stat_ok;
8707 /* Check that an isl_multi_pw_aff is printed using a consistent space.
8709 static isl_stat test_output_mpa(isl_ctx *ctx)
8711 char *str;
8712 isl_bool equal;
8713 isl_pw_aff *pa;
8714 isl_multi_pw_aff *mpa, *mpa2;
8716 mpa = isl_multi_pw_aff_read_from_str(ctx, "{ [a, b] -> [a + b] }");
8717 pa = isl_pw_aff_read_from_str(ctx, "{ [c, d] -> [c + d] }");
8718 mpa = isl_multi_pw_aff_set_pw_aff(mpa, 0, pa);
8719 str = isl_multi_pw_aff_to_str(mpa);
8720 mpa2 = isl_multi_pw_aff_read_from_str(ctx, str);
8721 free(str);
8722 equal = isl_multi_pw_aff_plain_is_equal(mpa, mpa2);
8723 isl_multi_pw_aff_free(mpa2);
8724 isl_multi_pw_aff_free(mpa);
8726 if (equal < 0)
8727 return isl_stat_error;
8728 if (!equal)
8729 isl_die(ctx, isl_error_unknown, "bad conversion",
8730 return isl_stat_error);
8732 return isl_stat_ok;
8735 int test_output(isl_ctx *ctx)
8737 char *s;
8738 const char *str;
8739 isl_pw_aff *pa;
8740 isl_printer *p;
8741 int equal;
8743 if (test_output_set(ctx) < 0)
8744 return -1;
8745 if (test_output_ma(ctx) < 0)
8746 return -1;
8747 if (test_output_mpa(ctx) < 0)
8748 return -1;
8750 str = "[x] -> { [1] : x % 4 <= 2; [2] : x = 3 }";
8751 pa = isl_pw_aff_read_from_str(ctx, str);
8753 p = isl_printer_to_str(ctx);
8754 p = isl_printer_set_output_format(p, ISL_FORMAT_C);
8755 p = isl_printer_print_pw_aff(p, pa);
8756 s = isl_printer_get_str(p);
8757 isl_printer_free(p);
8758 isl_pw_aff_free(pa);
8759 if (!s)
8760 equal = -1;
8761 else
8762 equal = !strcmp(s, "4 * floord(x, 4) + 2 >= x ? 1 : 2");
8763 free(s);
8764 if (equal < 0)
8765 return -1;
8766 if (!equal)
8767 isl_die(ctx, isl_error_unknown, "unexpected result", return -1);
8769 return 0;
8772 int test_sample(isl_ctx *ctx)
8774 const char *str;
8775 isl_basic_set *bset1, *bset2;
8776 int empty, subset;
8778 str = "{ [a, b, c, d, e, f, g, h, i, j, k] : "
8779 "3i >= 1073741823b - c - 1073741823e + f and c >= 0 and "
8780 "3i >= -1 + 3221225466b + c + d - 3221225466e - f and "
8781 "2e >= a - b and 3e <= 2a and 3k <= -a and f <= -1 + a and "
8782 "3i <= 4 - a + 4b + 2c - e - 2f and 3k <= -a + c - f and "
8783 "3h >= -2 + a and 3g >= -3 - a and 3k >= -2 - a and "
8784 "3i >= -2 - a - 2c + 3e + 2f and 3h <= a + c - f and "
8785 "3h >= a + 2147483646b + 2c - 2147483646e - 2f and "
8786 "3g <= -1 - a and 3i <= 1 + c + d - f and a <= 1073741823 and "
8787 "f >= 1 - a + 1073741822b + c + d - 1073741822e and "
8788 "3i >= 1 + 2b - 2c + e + 2f + 3g and "
8789 "1073741822f <= 1073741822 - a + 1073741821b + 1073741822c +"
8790 "d - 1073741821e and "
8791 "3j <= 3 - a + 3b and 3g <= -2 - 2b + c + d - e - f and "
8792 "3j >= 1 - a + b + 2e and "
8793 "3f >= -3 + a + 3221225462b + 3c + d - 3221225465e and "
8794 "3i <= 4 - a + 4b - e and "
8795 "f <= 1073741822 + 1073741822b - 1073741822e and 3h <= a and "
8796 "f >= 0 and 2e <= 4 - a + 5b - d and 2e <= a - b + d and "
8797 "c <= -1 + a and 3i >= -2 - a + 3e and "
8798 "1073741822e <= 1073741823 - a + 1073741822b + c and "
8799 "3g >= -4 + 3221225464b + 3c + d - 3221225467e - 3f and "
8800 "3i >= -1 + 3221225466b + 3c + d - 3221225466e - 3f and "
8801 "1073741823e >= 1 + 1073741823b - d and "
8802 "3i >= 1073741823b + c - 1073741823e - f and "
8803 "3i >= 1 + 2b + e + 3g }";
8804 bset1 = isl_basic_set_read_from_str(ctx, str);
8805 bset2 = isl_basic_set_sample(isl_basic_set_copy(bset1));
8806 empty = isl_basic_set_is_empty(bset2);
8807 subset = isl_basic_set_is_subset(bset2, bset1);
8808 isl_basic_set_free(bset1);
8809 isl_basic_set_free(bset2);
8810 if (empty < 0 || subset < 0)
8811 return -1;
8812 if (empty)
8813 isl_die(ctx, isl_error_unknown, "point not found", return -1);
8814 if (!subset)
8815 isl_die(ctx, isl_error_unknown, "bad point found", return -1);
8817 return 0;
8820 /* Perform a projection on a basic set that is known to be empty
8821 * but that has not been assigned a canonical representation.
8822 * Earlier versions of isl would run into a stack overflow
8823 * on this example.
8825 static int test_empty_projection(isl_ctx *ctx)
8827 const char *str;
8828 isl_bool empty;
8829 isl_basic_set *bset;
8831 str = "{ [a, b, c, d, e, f, g, h] : 5f = 1 + 4a - b + 5c - d - 2e and "
8832 "3h = 2 + b + c and 14c >= 9 - 3a + 25b and "
8833 "4c <= 50 - 3a + 23b and 6b <= -39 + a and "
8834 "9g >= -6 + 3a + b + c and e < a + b - 2d and "
8835 "7d >= -5 + 2a + 2b and 5g >= -14 + a - 4b + d + 2e and "
8836 "9g <= -28 - 5b - 2c + 3d + 6e }";
8837 bset = isl_basic_set_read_from_str(ctx, str);
8838 empty = isl_basic_set_is_empty(bset);
8839 bset = isl_basic_set_params(bset);
8840 isl_basic_set_free(bset);
8842 if (empty < 0)
8843 return -1;
8845 return 0;
8848 int test_fixed_power(isl_ctx *ctx)
8850 const char *str;
8851 isl_map *map;
8852 isl_val *exp;
8853 int equal;
8855 str = "{ [i] -> [i + 1] }";
8856 map = isl_map_read_from_str(ctx, str);
8857 exp = isl_val_int_from_si(ctx, 23);
8858 map = isl_map_fixed_power_val(map, exp);
8859 equal = map_check_equal(map, "{ [i] -> [i + 23] }");
8860 isl_map_free(map);
8861 if (equal < 0)
8862 return -1;
8864 return 0;
8867 int test_slice(isl_ctx *ctx)
8869 const char *str;
8870 isl_map *map;
8871 int equal;
8873 str = "{ [i] -> [j] }";
8874 map = isl_map_read_from_str(ctx, str);
8875 map = isl_map_equate(map, isl_dim_in, 0, isl_dim_out, 0);
8876 equal = map_check_equal(map, "{ [i] -> [i] }");
8877 isl_map_free(map);
8878 if (equal < 0)
8879 return -1;
8881 str = "{ [i] -> [j] }";
8882 map = isl_map_read_from_str(ctx, str);
8883 map = isl_map_equate(map, isl_dim_in, 0, isl_dim_in, 0);
8884 equal = map_check_equal(map, "{ [i] -> [j] }");
8885 isl_map_free(map);
8886 if (equal < 0)
8887 return -1;
8889 str = "{ [i] -> [j] }";
8890 map = isl_map_read_from_str(ctx, str);
8891 map = isl_map_oppose(map, isl_dim_in, 0, isl_dim_out, 0);
8892 equal = map_check_equal(map, "{ [i] -> [-i] }");
8893 isl_map_free(map);
8894 if (equal < 0)
8895 return -1;
8897 str = "{ [i] -> [j] }";
8898 map = isl_map_read_from_str(ctx, str);
8899 map = isl_map_oppose(map, isl_dim_in, 0, isl_dim_in, 0);
8900 equal = map_check_equal(map, "{ [0] -> [j] }");
8901 isl_map_free(map);
8902 if (equal < 0)
8903 return -1;
8905 str = "{ [i] -> [j] }";
8906 map = isl_map_read_from_str(ctx, str);
8907 map = isl_map_order_gt(map, isl_dim_in, 0, isl_dim_out, 0);
8908 equal = map_check_equal(map, "{ [i] -> [j] : i > j }");
8909 isl_map_free(map);
8910 if (equal < 0)
8911 return -1;
8913 str = "{ [i] -> [j] }";
8914 map = isl_map_read_from_str(ctx, str);
8915 map = isl_map_order_gt(map, isl_dim_in, 0, isl_dim_in, 0);
8916 equal = map_check_equal(map, "{ [i] -> [j] : false }");
8917 isl_map_free(map);
8918 if (equal < 0)
8919 return -1;
8921 return 0;
8924 int test_eliminate(isl_ctx *ctx)
8926 const char *str;
8927 isl_map *map;
8928 int equal;
8930 str = "{ [i] -> [j] : i = 2j }";
8931 map = isl_map_read_from_str(ctx, str);
8932 map = isl_map_eliminate(map, isl_dim_out, 0, 1);
8933 equal = map_check_equal(map, "{ [i] -> [j] : exists a : i = 2a }");
8934 isl_map_free(map);
8935 if (equal < 0)
8936 return -1;
8938 return 0;
8941 /* Check basic functionality of isl_map_deltas_map.
8943 static int test_deltas_map(isl_ctx *ctx)
8945 const char *str;
8946 isl_map *map;
8947 int equal;
8949 str = "{ A[i] -> A[i + 1] }";
8950 map = isl_map_read_from_str(ctx, str);
8951 map = isl_map_deltas_map(map);
8952 equal = map_check_equal(map, "{ [A[i] -> A[i + 1]] -> A[1] }");
8953 isl_map_free(map);
8954 if (equal < 0)
8955 return -1;
8957 return 0;
8960 /* Check that isl_set_dim_residue_class detects that the values of j
8961 * in the set below are all odd and that it does not detect any spurious
8962 * strides.
8964 static int test_residue_class(isl_ctx *ctx)
8966 const char *str;
8967 isl_set *set;
8968 isl_int m, r;
8969 isl_stat res;
8971 str = "{ [i,j] : j = 4 i + 1 and 0 <= i <= 100; "
8972 "[i,j] : j = 4 i + 3 and 500 <= i <= 600 }";
8973 set = isl_set_read_from_str(ctx, str);
8974 isl_int_init(m);
8975 isl_int_init(r);
8976 res = isl_set_dim_residue_class(set, 1, &m, &r);
8977 if (res >= 0 &&
8978 (isl_int_cmp_si(m, 2) != 0 || isl_int_cmp_si(r, 1) != 0))
8979 isl_die(ctx, isl_error_unknown, "incorrect residue class",
8980 res = isl_stat_error);
8981 isl_int_clear(r);
8982 isl_int_clear(m);
8983 isl_set_free(set);
8985 return res;
8988 static int test_align_parameters_1(isl_ctx *ctx)
8990 const char *str;
8991 isl_space *space;
8992 isl_multi_aff *ma1, *ma2;
8993 int equal;
8995 str = "{ A[B[] -> C[]] -> D[E[] -> F[]] }";
8996 ma1 = isl_multi_aff_read_from_str(ctx, str);
8998 space = isl_space_params_alloc(ctx, 1);
8999 space = isl_space_set_dim_name(space, isl_dim_param, 0, "N");
9000 ma1 = isl_multi_aff_align_params(ma1, space);
9002 str = "[N] -> { A[B[] -> C[]] -> D[E[] -> F[]] }";
9003 ma2 = isl_multi_aff_read_from_str(ctx, str);
9005 equal = isl_multi_aff_plain_is_equal(ma1, ma2);
9007 isl_multi_aff_free(ma1);
9008 isl_multi_aff_free(ma2);
9010 if (equal < 0)
9011 return -1;
9012 if (!equal)
9013 isl_die(ctx, isl_error_unknown,
9014 "result not as expected", return -1);
9016 return 0;
9019 /* Check the isl_multi_*_from_*_list operation in case inputs
9020 * have unaligned parameters.
9021 * In particular, older versions of isl would simply fail
9022 * (without printing any error message).
9024 static isl_stat test_align_parameters_2(isl_ctx *ctx)
9026 isl_space *space;
9027 isl_map *map;
9028 isl_aff *aff;
9029 isl_multi_aff *ma;
9031 map = isl_map_read_from_str(ctx, "{ A[] -> M[x] }");
9032 space = isl_map_get_space(map);
9033 isl_map_free(map);
9035 aff = isl_aff_read_from_str(ctx, "[N] -> { A[] -> [N] }");
9036 ma = isl_multi_aff_from_aff_list(space, isl_aff_list_from_aff(aff));
9037 isl_multi_aff_free(ma);
9039 if (!ma)
9040 return isl_stat_error;
9041 return isl_stat_ok;
9044 /* Perform basic parameter alignment tests.
9046 static int test_align_parameters(isl_ctx *ctx)
9048 if (test_align_parameters_1(ctx) < 0)
9049 return -1;
9050 if (test_align_parameters_2(ctx) < 0)
9051 return -1;
9053 return 0;
9056 /* Check that isl_*_drop_unused_params actually drops the unused parameters
9057 * by comparing the result using isl_*_plain_is_equal.
9058 * Note that this assumes that isl_*_plain_is_equal does not consider
9059 * objects that only differ by unused parameters to be equal.
9061 int test_drop_unused_parameters(isl_ctx *ctx)
9063 const char *str_with, *str_without;
9064 isl_basic_set *bset1, *bset2;
9065 isl_set *set1, *set2;
9066 isl_pw_aff *pwa1, *pwa2;
9067 int equal;
9069 str_with = "[n, m, o] -> { [m] }";
9070 str_without = "[m] -> { [m] }";
9072 bset1 = isl_basic_set_read_from_str(ctx, str_with);
9073 bset2 = isl_basic_set_read_from_str(ctx, str_without);
9074 bset1 = isl_basic_set_drop_unused_params(bset1);
9075 equal = isl_basic_set_plain_is_equal(bset1, bset2);
9076 isl_basic_set_free(bset1);
9077 isl_basic_set_free(bset2);
9079 if (equal < 0)
9080 return -1;
9081 if (!equal)
9082 isl_die(ctx, isl_error_unknown,
9083 "result not as expected", return -1);
9085 set1 = isl_set_read_from_str(ctx, str_with);
9086 set2 = isl_set_read_from_str(ctx, str_without);
9087 set1 = isl_set_drop_unused_params(set1);
9088 equal = isl_set_plain_is_equal(set1, set2);
9089 isl_set_free(set1);
9090 isl_set_free(set2);
9092 if (equal < 0)
9093 return -1;
9094 if (!equal)
9095 isl_die(ctx, isl_error_unknown,
9096 "result not as expected", return -1);
9098 pwa1 = isl_pw_aff_read_from_str(ctx, str_with);
9099 pwa2 = isl_pw_aff_read_from_str(ctx, str_without);
9100 pwa1 = isl_pw_aff_drop_unused_params(pwa1);
9101 equal = isl_pw_aff_plain_is_equal(pwa1, pwa2);
9102 isl_pw_aff_free(pwa1);
9103 isl_pw_aff_free(pwa2);
9105 if (equal < 0)
9106 return -1;
9107 if (!equal)
9108 isl_die(ctx, isl_error_unknown,
9109 "result not as expected", return -1);
9111 return 0;
9114 static int test_list(isl_ctx *ctx)
9116 isl_id *a, *b, *c, *d, *id;
9117 isl_id_list *list;
9118 isl_size n;
9119 int ok;
9121 a = isl_id_alloc(ctx, "a", NULL);
9122 b = isl_id_alloc(ctx, "b", NULL);
9123 c = isl_id_alloc(ctx, "c", NULL);
9124 d = isl_id_alloc(ctx, "d", NULL);
9126 list = isl_id_list_alloc(ctx, 4);
9127 list = isl_id_list_add(list, b);
9128 list = isl_id_list_insert(list, 0, a);
9129 list = isl_id_list_add(list, c);
9130 list = isl_id_list_add(list, d);
9131 list = isl_id_list_drop(list, 1, 1);
9133 n = isl_id_list_n_id(list);
9134 if (n < 0)
9135 return -1;
9136 if (n != 3) {
9137 isl_id_list_free(list);
9138 isl_die(ctx, isl_error_unknown,
9139 "unexpected number of elements in list", return -1);
9142 id = isl_id_list_get_id(list, 0);
9143 ok = id == a;
9144 isl_id_free(id);
9145 id = isl_id_list_get_id(list, 1);
9146 ok = ok && id == c;
9147 isl_id_free(id);
9148 id = isl_id_list_get_id(list, 2);
9149 ok = ok && id == d;
9150 isl_id_free(id);
9152 isl_id_list_free(list);
9154 if (!ok)
9155 isl_die(ctx, isl_error_unknown,
9156 "unexpected elements in list", return -1);
9158 return 0;
9161 /* Check the conversion from an isl_multi_aff to an isl_basic_set.
9163 static isl_stat test_ma_conversion(isl_ctx *ctx)
9165 const char *str;
9166 isl_bool equal;
9167 isl_multi_aff *ma;
9168 isl_basic_set *bset1, *bset2;
9170 str = "[N] -> { A[0, N + 1] }";
9171 ma = isl_multi_aff_read_from_str(ctx, str);
9172 bset1 = isl_basic_set_read_from_str(ctx, str);
9173 bset2 = isl_basic_set_from_multi_aff(ma);
9174 equal = isl_basic_set_is_equal(bset1, bset2);
9175 isl_basic_set_free(bset1);
9176 isl_basic_set_free(bset2);
9177 if (equal < 0)
9178 return isl_stat_error;
9179 if (!equal)
9180 isl_die(ctx, isl_error_unknown, "bad conversion",
9181 return isl_stat_error);
9182 return isl_stat_ok;
9185 const char *set_conversion_tests[] = {
9186 "[N] -> { [i] : N - 1 <= 2 i <= N }",
9187 "[N] -> { [i] : exists a : i = 4 a and N - 1 <= i <= N }",
9188 "[N] -> { [i,j] : exists a : i = 4 a and N - 1 <= i, 2j <= N }",
9189 "[N] -> { [[i]->[j]] : exists a : i = 4 a and N - 1 <= i, 2j <= N }",
9190 "[N] -> { [3*floor(N/2) + 5*floor(N/3)] }",
9191 "[a, b] -> { [c, d] : (4*floor((-a + c)/4) = -a + c and "
9192 "32*floor((-b + d)/32) = -b + d and 5 <= c <= 8 and "
9193 "-3 + c <= d <= 28 + c) }",
9196 /* Check that converting from isl_set to isl_pw_multi_aff and back
9197 * to isl_set produces the original isl_set.
9199 static int test_set_conversion(isl_ctx *ctx)
9201 int i;
9202 const char *str;
9203 isl_set *set1, *set2;
9204 isl_pw_multi_aff *pma;
9205 int equal;
9207 for (i = 0; i < ARRAY_SIZE(set_conversion_tests); ++i) {
9208 str = set_conversion_tests[i];
9209 set1 = isl_set_read_from_str(ctx, str);
9210 pma = isl_pw_multi_aff_from_set(isl_set_copy(set1));
9211 set2 = isl_set_from_pw_multi_aff(pma);
9212 equal = isl_set_is_equal(set1, set2);
9213 isl_set_free(set1);
9214 isl_set_free(set2);
9216 if (equal < 0)
9217 return -1;
9218 if (!equal)
9219 isl_die(ctx, isl_error_unknown, "bad conversion",
9220 return -1);
9223 return 0;
9226 const char *conversion_tests[] = {
9227 "{ [a, b, c, d] -> s0[a, b, e, f] : "
9228 "exists (e0 = [(a - 2c)/3], e1 = [(-4 + b - 5d)/9], "
9229 "e2 = [(-d + f)/9]: 3e0 = a - 2c and 9e1 = -4 + b - 5d and "
9230 "9e2 = -d + f and f >= 0 and f <= 8 and 9e >= -5 - 2a and "
9231 "9e <= -2 - 2a) }",
9232 "{ [a, b] -> [c] : exists (e0 = floor((-a - b + c)/5): "
9233 "5e0 = -a - b + c and c >= -a and c <= 4 - a) }",
9234 "{ [a, b] -> [c] : exists d : 18 * d = -3 - a + 2c and 1 <= c <= 3 }",
9237 /* Check that converting from isl_map to isl_pw_multi_aff and back
9238 * to isl_map produces the original isl_map.
9240 static int test_map_conversion(isl_ctx *ctx)
9242 int i;
9243 isl_map *map1, *map2;
9244 isl_pw_multi_aff *pma;
9245 int equal;
9247 for (i = 0; i < ARRAY_SIZE(conversion_tests); ++i) {
9248 map1 = isl_map_read_from_str(ctx, conversion_tests[i]);
9249 pma = isl_pw_multi_aff_from_map(isl_map_copy(map1));
9250 map2 = isl_map_from_pw_multi_aff(pma);
9251 equal = isl_map_is_equal(map1, map2);
9252 isl_map_free(map1);
9253 isl_map_free(map2);
9255 if (equal < 0)
9256 return -1;
9257 if (!equal)
9258 isl_die(ctx, isl_error_unknown, "bad conversion",
9259 return -1);
9262 return 0;
9265 /* Descriptions of isl_pw_multi_aff objects for testing conversion
9266 * to isl_multi_pw_aff and back.
9268 const char *mpa_conversion_tests[] = {
9269 "{ [x] -> A[x] }",
9270 "{ [x] -> A[x] : x >= 0 }",
9271 "{ [x] -> A[x] : x >= 0; [x] -> A[-x] : x < 0 }",
9272 "{ [x] -> A[x, x + 1] }",
9273 "{ [x] -> A[] }",
9274 "{ [x] -> A[] : x >= 0 }",
9277 /* Check that conversion from isl_pw_multi_aff to isl_multi_pw_aff and
9278 * back to isl_pw_multi_aff preserves the original meaning.
9280 static int test_mpa_conversion(isl_ctx *ctx)
9282 int i;
9283 isl_pw_multi_aff *pma1, *pma2;
9284 isl_multi_pw_aff *mpa;
9285 int equal;
9287 for (i = 0; i < ARRAY_SIZE(mpa_conversion_tests); ++i) {
9288 const char *str;
9289 str = mpa_conversion_tests[i];
9290 pma1 = isl_pw_multi_aff_read_from_str(ctx, str);
9291 pma2 = isl_pw_multi_aff_copy(pma1);
9292 mpa = isl_multi_pw_aff_from_pw_multi_aff(pma1);
9293 pma1 = isl_pw_multi_aff_from_multi_pw_aff(mpa);
9294 equal = isl_pw_multi_aff_plain_is_equal(pma1, pma2);
9295 isl_pw_multi_aff_free(pma1);
9296 isl_pw_multi_aff_free(pma2);
9298 if (equal < 0)
9299 return -1;
9300 if (!equal)
9301 isl_die(ctx, isl_error_unknown, "bad conversion",
9302 return -1);
9305 return 0;
9308 /* Descriptions of union maps that should be convertible
9309 * to an isl_multi_union_pw_aff.
9311 const char *umap_mupa_conversion_tests[] = {
9312 "{ [a, b, c, d] -> s0[a, b, e, f] : "
9313 "exists (e0 = [(a - 2c)/3], e1 = [(-4 + b - 5d)/9], "
9314 "e2 = [(-d + f)/9]: 3e0 = a - 2c and 9e1 = -4 + b - 5d and "
9315 "9e2 = -d + f and f >= 0 and f <= 8 and 9e >= -5 - 2a and "
9316 "9e <= -2 - 2a) }",
9317 "{ [a, b] -> [c] : exists (e0 = floor((-a - b + c)/5): "
9318 "5e0 = -a - b + c and c >= -a and c <= 4 - a) }",
9319 "{ [a, b] -> [c] : exists d : 18 * d = -3 - a + 2c and 1 <= c <= 3 }",
9320 "{ A[] -> B[0]; C[] -> B[1] }",
9321 "{ A[] -> B[]; C[] -> B[] }",
9324 /* Check that converting from isl_union_map to isl_multi_union_pw_aff and back
9325 * to isl_union_map produces the original isl_union_map.
9327 static int test_union_map_mupa_conversion(isl_ctx *ctx)
9329 int i;
9330 isl_union_map *umap1, *umap2;
9331 isl_multi_union_pw_aff *mupa;
9332 int equal;
9334 for (i = 0; i < ARRAY_SIZE(umap_mupa_conversion_tests); ++i) {
9335 const char *str;
9336 str = umap_mupa_conversion_tests[i];
9337 umap1 = isl_union_map_read_from_str(ctx, str);
9338 umap2 = isl_union_map_copy(umap1);
9339 mupa = isl_multi_union_pw_aff_from_union_map(umap2);
9340 umap2 = isl_union_map_from_multi_union_pw_aff(mupa);
9341 equal = isl_union_map_is_equal(umap1, umap2);
9342 isl_union_map_free(umap1);
9343 isl_union_map_free(umap2);
9345 if (equal < 0)
9346 return -1;
9347 if (!equal)
9348 isl_die(ctx, isl_error_unknown, "bad conversion",
9349 return -1);
9352 return 0;
9355 static int test_conversion(isl_ctx *ctx)
9357 if (test_ma_conversion(ctx) < 0)
9358 return -1;
9359 if (test_set_conversion(ctx) < 0)
9360 return -1;
9361 if (test_map_conversion(ctx) < 0)
9362 return -1;
9363 if (test_mpa_conversion(ctx) < 0)
9364 return -1;
9365 if (test_union_map_mupa_conversion(ctx) < 0)
9366 return -1;
9367 return 0;
9370 /* Check that isl_basic_map_curry does not modify input.
9372 static int test_curry(isl_ctx *ctx)
9374 const char *str;
9375 isl_basic_map *bmap1, *bmap2;
9376 int equal;
9378 str = "{ [A[] -> B[]] -> C[] }";
9379 bmap1 = isl_basic_map_read_from_str(ctx, str);
9380 bmap2 = isl_basic_map_curry(isl_basic_map_copy(bmap1));
9381 equal = isl_basic_map_is_equal(bmap1, bmap2);
9382 isl_basic_map_free(bmap1);
9383 isl_basic_map_free(bmap2);
9385 if (equal < 0)
9386 return -1;
9387 if (equal)
9388 isl_die(ctx, isl_error_unknown,
9389 "curried map should not be equal to original",
9390 return -1);
9392 return 0;
9395 struct {
9396 const char *ma1;
9397 const char *ma;
9398 const char *res;
9399 } pullback_tests[] = {
9400 { "{ B[i,j] -> C[i + 2j] }" , "{ A[a,b] -> B[b,a] }",
9401 "{ A[a,b] -> C[b + 2a] }" },
9402 { "{ B[i] -> C[2i] }", "{ A[a] -> B[(a)/2] }", "{ A[a] -> C[a] }" },
9403 { "{ B[i] -> C[(i)/2] }", "{ A[a] -> B[2a] }", "{ A[a] -> C[a] }" },
9404 { "{ B[i] -> C[(i)/2] }", "{ A[a] -> B[(a)/3] }",
9405 "{ A[a] -> C[(a)/6] }" },
9406 { "{ B[i] -> C[2i] }", "{ A[a] -> B[5a] }", "{ A[a] -> C[10a] }" },
9407 { "{ B[i] -> C[2i] }", "{ A[a] -> B[(a)/3] }",
9408 "{ A[a] -> C[(2a)/3] }" },
9409 { "{ B[i,j] -> C[i + j] }", "{ A[a] -> B[a,a] }", "{ A[a] -> C[2a] }"},
9410 { "{ B[a] -> C[a,a] }", "{ A[i,j] -> B[i + j] }",
9411 "{ A[i,j] -> C[i + j, i + j] }"},
9412 { "{ B[i] -> C[([i/2])] }", "{ B[5] }", "{ C[2] }" },
9413 { "[n] -> { B[i,j] -> C[([i/2]) + 2j] }",
9414 "[n] -> { B[n,[n/3]] }", "[n] -> { C[([n/2]) + 2*[n/3]] }", },
9415 { "{ [i, j] -> [floor((i)/4) + floor((2*i+j)/5)] }",
9416 "{ [i, j] -> [floor((i)/3), j] }",
9417 "{ [i, j] -> [(floor((i)/12) + floor((j + 2*floor((i)/3))/5))] }" },
9420 static int test_pullback(isl_ctx *ctx)
9422 int i;
9423 isl_multi_aff *ma1, *ma2;
9424 isl_multi_aff *ma;
9425 int equal;
9427 for (i = 0; i < ARRAY_SIZE(pullback_tests); ++i) {
9428 ma1 = isl_multi_aff_read_from_str(ctx, pullback_tests[i].ma1);
9429 ma = isl_multi_aff_read_from_str(ctx, pullback_tests[i].ma);
9430 ma2 = isl_multi_aff_read_from_str(ctx, pullback_tests[i].res);
9431 ma1 = isl_multi_aff_pullback_multi_aff(ma1, ma);
9432 equal = isl_multi_aff_plain_is_equal(ma1, ma2);
9433 isl_multi_aff_free(ma1);
9434 isl_multi_aff_free(ma2);
9435 if (equal < 0)
9436 return -1;
9437 if (!equal)
9438 isl_die(ctx, isl_error_unknown, "bad pullback",
9439 return -1);
9442 return 0;
9445 /* Check that negation is printed correctly and that equal expressions
9446 * are correctly identified.
9448 static int test_ast(isl_ctx *ctx)
9450 isl_ast_expr *expr, *expr1, *expr2, *expr3;
9451 char *str;
9452 int ok, equal;
9454 expr1 = isl_ast_expr_from_id(isl_id_alloc(ctx, "A", NULL));
9455 expr2 = isl_ast_expr_from_id(isl_id_alloc(ctx, "B", NULL));
9456 expr = isl_ast_expr_add(expr1, expr2);
9457 expr2 = isl_ast_expr_copy(expr);
9458 expr = isl_ast_expr_neg(expr);
9459 expr2 = isl_ast_expr_neg(expr2);
9460 equal = isl_ast_expr_is_equal(expr, expr2);
9461 str = isl_ast_expr_to_C_str(expr);
9462 ok = str ? !strcmp(str, "-(A + B)") : -1;
9463 free(str);
9464 isl_ast_expr_free(expr);
9465 isl_ast_expr_free(expr2);
9467 if (ok < 0 || equal < 0)
9468 return -1;
9469 if (!equal)
9470 isl_die(ctx, isl_error_unknown,
9471 "equal expressions not considered equal", return -1);
9472 if (!ok)
9473 isl_die(ctx, isl_error_unknown,
9474 "isl_ast_expr printed incorrectly", return -1);
9476 expr1 = isl_ast_expr_from_id(isl_id_alloc(ctx, "A", NULL));
9477 expr2 = isl_ast_expr_from_id(isl_id_alloc(ctx, "B", NULL));
9478 expr = isl_ast_expr_add(expr1, expr2);
9479 expr3 = isl_ast_expr_from_id(isl_id_alloc(ctx, "C", NULL));
9480 expr = isl_ast_expr_sub(expr3, expr);
9481 str = isl_ast_expr_to_C_str(expr);
9482 ok = str ? !strcmp(str, "C - (A + B)") : -1;
9483 free(str);
9484 isl_ast_expr_free(expr);
9486 if (ok < 0)
9487 return -1;
9488 if (!ok)
9489 isl_die(ctx, isl_error_unknown,
9490 "isl_ast_expr printed incorrectly", return -1);
9492 return 0;
9495 /* Check that isl_ast_build_expr_from_set returns a valid expression
9496 * for an empty set. Note that isl_ast_build_expr_from_set getting
9497 * called on an empty set probably indicates a bug in the caller.
9499 static int test_ast_build(isl_ctx *ctx)
9501 isl_set *set;
9502 isl_ast_build *build;
9503 isl_ast_expr *expr;
9505 set = isl_set_universe(isl_space_params_alloc(ctx, 0));
9506 build = isl_ast_build_from_context(set);
9508 set = isl_set_empty(isl_space_params_alloc(ctx, 0));
9509 expr = isl_ast_build_expr_from_set(build, set);
9511 isl_ast_expr_free(expr);
9512 isl_ast_build_free(build);
9514 if (!expr)
9515 return -1;
9517 return 0;
9520 /* Internal data structure for before_for and after_for callbacks.
9522 * depth is the current depth
9523 * before is the number of times before_for has been called
9524 * after is the number of times after_for has been called
9526 struct isl_test_codegen_data {
9527 int depth;
9528 int before;
9529 int after;
9532 /* This function is called before each for loop in the AST generated
9533 * from test_ast_gen1.
9535 * Increment the number of calls and the depth.
9536 * Check that the space returned by isl_ast_build_get_schedule_space
9537 * matches the target space of the schedule returned by
9538 * isl_ast_build_get_schedule.
9539 * Return an isl_id that is checked by the corresponding call
9540 * to after_for.
9542 static __isl_give isl_id *before_for(__isl_keep isl_ast_build *build,
9543 void *user)
9545 struct isl_test_codegen_data *data = user;
9546 isl_ctx *ctx;
9547 isl_space *space;
9548 isl_union_map *schedule;
9549 isl_union_set *uset;
9550 isl_set *set;
9551 isl_bool empty;
9552 isl_size n;
9553 char name[] = "d0";
9555 ctx = isl_ast_build_get_ctx(build);
9557 if (data->before >= 3)
9558 isl_die(ctx, isl_error_unknown,
9559 "unexpected number of for nodes", return NULL);
9560 if (data->depth < 0 || data->depth >= 2)
9561 isl_die(ctx, isl_error_unknown,
9562 "unexpected depth", return NULL);
9564 snprintf(name, sizeof(name), "d%d", data->depth);
9565 data->before++;
9566 data->depth++;
9568 schedule = isl_ast_build_get_schedule(build);
9569 uset = isl_union_map_range(schedule);
9570 n = isl_union_set_n_set(uset);
9571 if (n != 1) {
9572 isl_union_set_free(uset);
9573 if (n < 0)
9574 return NULL;
9575 isl_die(ctx, isl_error_unknown,
9576 "expecting single range space", return NULL);
9579 space = isl_ast_build_get_schedule_space(build);
9580 set = isl_union_set_extract_set(uset, space);
9581 isl_union_set_free(uset);
9582 empty = isl_set_is_empty(set);
9583 isl_set_free(set);
9585 if (empty < 0)
9586 return NULL;
9587 if (empty)
9588 isl_die(ctx, isl_error_unknown,
9589 "spaces don't match", return NULL);
9591 return isl_id_alloc(ctx, name, NULL);
9594 /* This function is called after each for loop in the AST generated
9595 * from test_ast_gen1.
9597 * Increment the number of calls and decrement the depth.
9598 * Check that the annotation attached to the node matches
9599 * the isl_id returned by the corresponding call to before_for.
9601 static __isl_give isl_ast_node *after_for(__isl_take isl_ast_node *node,
9602 __isl_keep isl_ast_build *build, void *user)
9604 struct isl_test_codegen_data *data = user;
9605 isl_id *id;
9606 const char *name;
9607 int valid;
9609 data->after++;
9610 data->depth--;
9612 if (data->after > data->before)
9613 isl_die(isl_ast_node_get_ctx(node), isl_error_unknown,
9614 "mismatch in number of for nodes",
9615 return isl_ast_node_free(node));
9617 id = isl_ast_node_get_annotation(node);
9618 if (!id)
9619 isl_die(isl_ast_node_get_ctx(node), isl_error_unknown,
9620 "missing annotation", return isl_ast_node_free(node));
9622 name = isl_id_get_name(id);
9623 valid = name && atoi(name + 1) == data->depth;
9624 isl_id_free(id);
9626 if (!valid)
9627 isl_die(isl_ast_node_get_ctx(node), isl_error_unknown,
9628 "wrong annotation", return isl_ast_node_free(node));
9630 return node;
9633 /* Check that the before_each_for and after_each_for callbacks
9634 * are called for each for loop in the generated code,
9635 * that they are called in the right order and that the isl_id
9636 * returned from the before_each_for callback is attached to
9637 * the isl_ast_node passed to the corresponding after_each_for call.
9639 static int test_ast_gen1(isl_ctx *ctx)
9641 const char *str;
9642 isl_set *set;
9643 isl_union_map *schedule;
9644 isl_ast_build *build;
9645 isl_ast_node *tree;
9646 struct isl_test_codegen_data data;
9648 str = "[N] -> { : N >= 10 }";
9649 set = isl_set_read_from_str(ctx, str);
9650 str = "[N] -> { A[i,j] -> S[8,i,3,j] : 0 <= i,j <= N; "
9651 "B[i,j] -> S[8,j,9,i] : 0 <= i,j <= N }";
9652 schedule = isl_union_map_read_from_str(ctx, str);
9654 data.before = 0;
9655 data.after = 0;
9656 data.depth = 0;
9657 build = isl_ast_build_from_context(set);
9658 build = isl_ast_build_set_before_each_for(build,
9659 &before_for, &data);
9660 build = isl_ast_build_set_after_each_for(build,
9661 &after_for, &data);
9662 tree = isl_ast_build_node_from_schedule_map(build, schedule);
9663 isl_ast_build_free(build);
9664 if (!tree)
9665 return -1;
9667 isl_ast_node_free(tree);
9669 if (data.before != 3 || data.after != 3)
9670 isl_die(ctx, isl_error_unknown,
9671 "unexpected number of for nodes", return -1);
9673 return 0;
9676 /* Check that the AST generator handles domains that are integrally disjoint
9677 * but not rationally disjoint.
9679 static int test_ast_gen2(isl_ctx *ctx)
9681 const char *str;
9682 isl_set *set;
9683 isl_union_map *schedule;
9684 isl_union_map *options;
9685 isl_ast_build *build;
9686 isl_ast_node *tree;
9688 str = "{ A[i,j] -> [i,j] : 0 <= i,j <= 1 }";
9689 schedule = isl_union_map_read_from_str(ctx, str);
9690 set = isl_set_universe(isl_space_params_alloc(ctx, 0));
9691 build = isl_ast_build_from_context(set);
9693 str = "{ [i,j] -> atomic[1] : i + j = 1; [i,j] -> unroll[1] : i = j }";
9694 options = isl_union_map_read_from_str(ctx, str);
9695 build = isl_ast_build_set_options(build, options);
9696 tree = isl_ast_build_node_from_schedule_map(build, schedule);
9697 isl_ast_build_free(build);
9698 if (!tree)
9699 return -1;
9700 isl_ast_node_free(tree);
9702 return 0;
9705 /* Increment *user on each call.
9707 static __isl_give isl_ast_node *count_domains(__isl_take isl_ast_node *node,
9708 __isl_keep isl_ast_build *build, void *user)
9710 int *n = user;
9712 (*n)++;
9714 return node;
9717 /* Test that unrolling tries to minimize the number of instances.
9718 * In particular, for the schedule given below, make sure it generates
9719 * 3 nodes (rather than 101).
9721 static int test_ast_gen3(isl_ctx *ctx)
9723 const char *str;
9724 isl_set *set;
9725 isl_union_map *schedule;
9726 isl_union_map *options;
9727 isl_ast_build *build;
9728 isl_ast_node *tree;
9729 int n_domain = 0;
9731 str = "[n] -> { A[i] -> [i] : 0 <= i <= 100 and n <= i <= n + 2 }";
9732 schedule = isl_union_map_read_from_str(ctx, str);
9733 set = isl_set_universe(isl_space_params_alloc(ctx, 0));
9735 str = "{ [i] -> unroll[0] }";
9736 options = isl_union_map_read_from_str(ctx, str);
9738 build = isl_ast_build_from_context(set);
9739 build = isl_ast_build_set_options(build, options);
9740 build = isl_ast_build_set_at_each_domain(build,
9741 &count_domains, &n_domain);
9742 tree = isl_ast_build_node_from_schedule_map(build, schedule);
9743 isl_ast_build_free(build);
9744 if (!tree)
9745 return -1;
9747 isl_ast_node_free(tree);
9749 if (n_domain != 3)
9750 isl_die(ctx, isl_error_unknown,
9751 "unexpected number of for nodes", return -1);
9753 return 0;
9756 /* Check that if the ast_build_exploit_nested_bounds options is set,
9757 * we do not get an outer if node in the generated AST,
9758 * while we do get such an outer if node if the options is not set.
9760 static int test_ast_gen4(isl_ctx *ctx)
9762 const char *str;
9763 isl_set *set;
9764 isl_union_map *schedule;
9765 isl_ast_build *build;
9766 isl_ast_node *tree;
9767 enum isl_ast_node_type type;
9768 int enb;
9770 enb = isl_options_get_ast_build_exploit_nested_bounds(ctx);
9771 str = "[N,M] -> { A[i,j] -> [i,j] : 0 <= i <= N and 0 <= j <= M }";
9773 isl_options_set_ast_build_exploit_nested_bounds(ctx, 1);
9775 schedule = isl_union_map_read_from_str(ctx, str);
9776 set = isl_set_universe(isl_space_params_alloc(ctx, 0));
9777 build = isl_ast_build_from_context(set);
9778 tree = isl_ast_build_node_from_schedule_map(build, schedule);
9779 isl_ast_build_free(build);
9780 if (!tree)
9781 return -1;
9783 type = isl_ast_node_get_type(tree);
9784 isl_ast_node_free(tree);
9786 if (type == isl_ast_node_if)
9787 isl_die(ctx, isl_error_unknown,
9788 "not expecting if node", return -1);
9790 isl_options_set_ast_build_exploit_nested_bounds(ctx, 0);
9792 schedule = isl_union_map_read_from_str(ctx, str);
9793 set = isl_set_universe(isl_space_params_alloc(ctx, 0));
9794 build = isl_ast_build_from_context(set);
9795 tree = isl_ast_build_node_from_schedule_map(build, schedule);
9796 isl_ast_build_free(build);
9797 if (!tree)
9798 return -1;
9800 type = isl_ast_node_get_type(tree);
9801 isl_ast_node_free(tree);
9803 if (type != isl_ast_node_if)
9804 isl_die(ctx, isl_error_unknown,
9805 "expecting if node", return -1);
9807 isl_options_set_ast_build_exploit_nested_bounds(ctx, enb);
9809 return 0;
9812 /* This function is called for each leaf in the AST generated
9813 * from test_ast_gen5.
9815 * We finalize the AST generation by extending the outer schedule
9816 * with a zero-dimensional schedule. If this results in any for loops,
9817 * then this means that we did not pass along enough information
9818 * about the outer schedule to the inner AST generation.
9820 static __isl_give isl_ast_node *create_leaf(__isl_take isl_ast_build *build,
9821 void *user)
9823 isl_union_map *schedule, *extra;
9824 isl_ast_node *tree;
9826 schedule = isl_ast_build_get_schedule(build);
9827 extra = isl_union_map_copy(schedule);
9828 extra = isl_union_map_from_domain(isl_union_map_domain(extra));
9829 schedule = isl_union_map_range_product(schedule, extra);
9830 tree = isl_ast_build_node_from_schedule_map(build, schedule);
9831 isl_ast_build_free(build);
9833 if (!tree)
9834 return NULL;
9836 if (isl_ast_node_get_type(tree) == isl_ast_node_for)
9837 isl_die(isl_ast_node_get_ctx(tree), isl_error_unknown,
9838 "code should not contain any for loop",
9839 return isl_ast_node_free(tree));
9841 return tree;
9844 /* Check that we do not lose any information when going back and
9845 * forth between internal and external schedule.
9847 * In particular, we create an AST where we unroll the only
9848 * non-constant dimension in the schedule. We therefore do
9849 * not expect any for loops in the AST. However, older versions
9850 * of isl would not pass along enough information about the outer
9851 * schedule when performing an inner code generation from a create_leaf
9852 * callback, resulting in the inner code generation producing a for loop.
9854 static int test_ast_gen5(isl_ctx *ctx)
9856 const char *str;
9857 isl_set *set;
9858 isl_union_map *schedule, *options;
9859 isl_ast_build *build;
9860 isl_ast_node *tree;
9862 str = "{ A[] -> [1, 1, 2]; B[i] -> [1, i, 0] : i >= 1 and i <= 2 }";
9863 schedule = isl_union_map_read_from_str(ctx, str);
9865 str = "{ [a, b, c] -> unroll[1] : exists (e0 = [(a)/4]: "
9866 "4e0 >= -1 + a - b and 4e0 <= -2 + a + b) }";
9867 options = isl_union_map_read_from_str(ctx, str);
9869 set = isl_set_universe(isl_space_params_alloc(ctx, 0));
9870 build = isl_ast_build_from_context(set);
9871 build = isl_ast_build_set_options(build, options);
9872 build = isl_ast_build_set_create_leaf(build, &create_leaf, NULL);
9873 tree = isl_ast_build_node_from_schedule_map(build, schedule);
9874 isl_ast_build_free(build);
9875 isl_ast_node_free(tree);
9876 if (!tree)
9877 return -1;
9879 return 0;
9882 /* Check that the expression
9884 * [n] -> { [n/2] : n <= 0 and n % 2 = 0; [0] : n > 0 }
9886 * is not combined into
9888 * min(n/2, 0)
9890 * as this would result in n/2 being evaluated in parts of
9891 * the definition domain where n is not a multiple of 2.
9893 static int test_ast_expr(isl_ctx *ctx)
9895 const char *str;
9896 isl_pw_aff *pa;
9897 isl_ast_build *build;
9898 isl_ast_expr *expr;
9899 int min_max;
9900 int is_min;
9902 min_max = isl_options_get_ast_build_detect_min_max(ctx);
9903 isl_options_set_ast_build_detect_min_max(ctx, 1);
9905 str = "[n] -> { [n/2] : n <= 0 and n % 2 = 0; [0] : n > 0 }";
9906 pa = isl_pw_aff_read_from_str(ctx, str);
9907 build = isl_ast_build_alloc(ctx);
9908 expr = isl_ast_build_expr_from_pw_aff(build, pa);
9909 is_min = isl_ast_expr_get_type(expr) == isl_ast_expr_op &&
9910 isl_ast_expr_get_op_type(expr) == isl_ast_expr_op_min;
9911 isl_ast_build_free(build);
9912 isl_ast_expr_free(expr);
9914 isl_options_set_ast_build_detect_min_max(ctx, min_max);
9916 if (!expr)
9917 return -1;
9918 if (is_min)
9919 isl_die(ctx, isl_error_unknown,
9920 "expressions should not be combined", return -1);
9922 return 0;
9925 static int test_ast_gen(isl_ctx *ctx)
9927 if (test_ast_gen1(ctx) < 0)
9928 return -1;
9929 if (test_ast_gen2(ctx) < 0)
9930 return -1;
9931 if (test_ast_gen3(ctx) < 0)
9932 return -1;
9933 if (test_ast_gen4(ctx) < 0)
9934 return -1;
9935 if (test_ast_gen5(ctx) < 0)
9936 return -1;
9937 if (test_ast_expr(ctx) < 0)
9938 return -1;
9939 return 0;
9942 /* Check if dropping output dimensions from an isl_pw_multi_aff
9943 * works properly.
9945 static int test_pw_multi_aff(isl_ctx *ctx)
9947 const char *str;
9948 isl_pw_multi_aff *pma1, *pma2;
9949 int equal;
9951 str = "{ [i,j] -> [i+j, 4i-j] }";
9952 pma1 = isl_pw_multi_aff_read_from_str(ctx, str);
9953 str = "{ [i,j] -> [4i-j] }";
9954 pma2 = isl_pw_multi_aff_read_from_str(ctx, str);
9956 pma1 = isl_pw_multi_aff_drop_dims(pma1, isl_dim_out, 0, 1);
9958 equal = isl_pw_multi_aff_plain_is_equal(pma1, pma2);
9960 isl_pw_multi_aff_free(pma1);
9961 isl_pw_multi_aff_free(pma2);
9962 if (equal < 0)
9963 return -1;
9964 if (!equal)
9965 isl_die(ctx, isl_error_unknown,
9966 "expressions not equal", return -1);
9968 return 0;
9971 /* Check that we can properly parse multi piecewise affine expressions
9972 * where the piecewise affine expressions have different domains.
9974 static int test_multi_pw_aff_1(isl_ctx *ctx)
9976 const char *str;
9977 isl_set *dom, *dom2;
9978 isl_multi_pw_aff *mpa1, *mpa2;
9979 isl_pw_aff *pa;
9980 int equal;
9981 int equal_domain;
9983 mpa1 = isl_multi_pw_aff_read_from_str(ctx, "{ [i] -> [i] }");
9984 dom = isl_set_read_from_str(ctx, "{ [i] : i > 0 }");
9985 mpa1 = isl_multi_pw_aff_intersect_domain(mpa1, dom);
9986 mpa2 = isl_multi_pw_aff_read_from_str(ctx, "{ [i] -> [2i] }");
9987 mpa2 = isl_multi_pw_aff_flat_range_product(mpa1, mpa2);
9988 str = "{ [i] -> [(i : i > 0), 2i] }";
9989 mpa1 = isl_multi_pw_aff_read_from_str(ctx, str);
9991 equal = isl_multi_pw_aff_plain_is_equal(mpa1, mpa2);
9993 pa = isl_multi_pw_aff_get_pw_aff(mpa1, 0);
9994 dom = isl_pw_aff_domain(pa);
9995 pa = isl_multi_pw_aff_get_pw_aff(mpa1, 1);
9996 dom2 = isl_pw_aff_domain(pa);
9997 equal_domain = isl_set_is_equal(dom, dom2);
9999 isl_set_free(dom);
10000 isl_set_free(dom2);
10001 isl_multi_pw_aff_free(mpa1);
10002 isl_multi_pw_aff_free(mpa2);
10004 if (equal < 0)
10005 return -1;
10006 if (!equal)
10007 isl_die(ctx, isl_error_unknown,
10008 "expressions not equal", return -1);
10010 if (equal_domain < 0)
10011 return -1;
10012 if (equal_domain)
10013 isl_die(ctx, isl_error_unknown,
10014 "domains unexpectedly equal", return -1);
10016 return 0;
10019 /* Check that the dimensions in the explicit domain
10020 * of a multi piecewise affine expression are properly
10021 * taken into account.
10023 static int test_multi_pw_aff_2(isl_ctx *ctx)
10025 const char *str;
10026 isl_bool involves1, involves2, involves3, equal;
10027 isl_multi_pw_aff *mpa, *mpa1, *mpa2;
10029 str = "{ A[x,y] -> B[] : x >= y }";
10030 mpa = isl_multi_pw_aff_read_from_str(ctx, str);
10031 involves1 = isl_multi_pw_aff_involves_dims(mpa, isl_dim_in, 0, 2);
10032 mpa1 = isl_multi_pw_aff_copy(mpa);
10034 mpa = isl_multi_pw_aff_insert_dims(mpa, isl_dim_in, 0, 1);
10035 involves2 = isl_multi_pw_aff_involves_dims(mpa, isl_dim_in, 0, 1);
10036 involves3 = isl_multi_pw_aff_involves_dims(mpa, isl_dim_in, 1, 2);
10037 str = "{ [a,x,y] -> B[] : x >= y }";
10038 mpa2 = isl_multi_pw_aff_read_from_str(ctx, str);
10039 equal = isl_multi_pw_aff_plain_is_equal(mpa, mpa2);
10040 isl_multi_pw_aff_free(mpa2);
10042 mpa = isl_multi_pw_aff_drop_dims(mpa, isl_dim_in, 0, 1);
10043 mpa = isl_multi_pw_aff_set_tuple_name(mpa, isl_dim_in, "A");
10044 if (equal >= 0 && equal)
10045 equal = isl_multi_pw_aff_plain_is_equal(mpa, mpa1);
10046 isl_multi_pw_aff_free(mpa1);
10047 isl_multi_pw_aff_free(mpa);
10049 if (involves1 < 0 || involves2 < 0 || involves3 < 0 || equal < 0)
10050 return -1;
10051 if (!equal)
10052 isl_die(ctx, isl_error_unknown,
10053 "incorrect result of dimension insertion/removal",
10054 return isl_stat_error);
10055 if (!involves1 || involves2 || !involves3)
10056 isl_die(ctx, isl_error_unknown,
10057 "incorrect characterization of involved dimensions",
10058 return isl_stat_error);
10060 return 0;
10063 /* Check that isl_multi_union_pw_aff_multi_val_on_domain
10064 * sets the explicit domain of a zero-dimensional result,
10065 * such that it can be converted to an isl_union_map.
10067 static isl_stat test_multi_pw_aff_3(isl_ctx *ctx)
10069 isl_space *space;
10070 isl_union_set *dom;
10071 isl_multi_val *mv;
10072 isl_multi_union_pw_aff *mupa;
10073 isl_union_map *umap;
10075 dom = isl_union_set_read_from_str(ctx, "{ A[]; B[] }");
10076 space = isl_union_set_get_space(dom);
10077 mv = isl_multi_val_zero(isl_space_set_from_params(space));
10078 mupa = isl_multi_union_pw_aff_multi_val_on_domain(dom, mv);
10079 umap = isl_union_map_from_multi_union_pw_aff(mupa);
10080 isl_union_map_free(umap);
10081 if (!umap)
10082 return isl_stat_error;
10084 return isl_stat_ok;
10087 /* String descriptions of boxes that
10088 * are used for reconstructing box maps from their lower and upper bounds.
10090 static const char *multi_pw_aff_box_tests[] = {
10091 "{ A[x, y] -> [] : x + y >= 0 }",
10092 "[N] -> { A[x, y] -> [x] : x + y <= N }",
10093 "[N] -> { A[x, y] -> [x : y] : x + y <= N }",
10096 /* Check that map representations of boxes can be reconstructed
10097 * from their lower and upper bounds.
10099 static isl_stat test_multi_pw_aff_box(isl_ctx *ctx)
10101 int i;
10103 for (i = 0; i < ARRAY_SIZE(multi_pw_aff_box_tests); ++i) {
10104 const char *str;
10105 isl_bool equal;
10106 isl_map *map, *box;
10107 isl_multi_pw_aff *min, *max;
10109 str = multi_pw_aff_box_tests[i];
10110 map = isl_map_read_from_str(ctx, str);
10111 min = isl_map_min_multi_pw_aff(isl_map_copy(map));
10112 max = isl_map_max_multi_pw_aff(isl_map_copy(map));
10113 box = isl_map_universe(isl_map_get_space(map));
10114 box = isl_map_lower_bound_multi_pw_aff(box, min);
10115 box = isl_map_upper_bound_multi_pw_aff(box, max);
10116 equal = isl_map_is_equal(map, box);
10117 isl_map_free(map);
10118 isl_map_free(box);
10119 if (equal < 0)
10120 return isl_stat_error;
10121 if (!equal)
10122 isl_die(ctx, isl_error_unknown,
10123 "unexpected result", return isl_stat_error);
10126 return isl_stat_ok;
10129 /* Perform some tests on multi piecewise affine expressions.
10131 static int test_multi_pw_aff(isl_ctx *ctx)
10133 if (test_multi_pw_aff_1(ctx) < 0)
10134 return -1;
10135 if (test_multi_pw_aff_2(ctx) < 0)
10136 return -1;
10137 if (test_multi_pw_aff_3(ctx) < 0)
10138 return -1;
10139 if (test_multi_pw_aff_box(ctx) < 0)
10140 return -1;
10141 return 0;
10144 /* This is a regression test for a bug where isl_basic_map_simplify
10145 * would end up in an infinite loop. In particular, we construct
10146 * an empty basic set that is not obviously empty.
10147 * isl_basic_set_is_empty marks the basic set as empty.
10148 * After projecting out i3, the variable can be dropped completely,
10149 * but isl_basic_map_simplify refrains from doing so if the basic set
10150 * is empty and would end up in an infinite loop if it didn't test
10151 * explicitly for empty basic maps in the outer loop.
10153 static int test_simplify_1(isl_ctx *ctx)
10155 const char *str;
10156 isl_basic_set *bset;
10157 int empty;
10159 str = "{ [i0, i1, i2, i3] : i0 >= -2 and 6i2 <= 4 + i0 + 5i1 and "
10160 "i2 <= 22 and 75i2 <= 111 + 13i0 + 60i1 and "
10161 "25i2 >= 38 + 6i0 + 20i1 and i0 <= -1 and i2 >= 20 and "
10162 "i3 >= i2 }";
10163 bset = isl_basic_set_read_from_str(ctx, str);
10164 empty = isl_basic_set_is_empty(bset);
10165 bset = isl_basic_set_project_out(bset, isl_dim_set, 3, 1);
10166 isl_basic_set_free(bset);
10167 if (!bset)
10168 return -1;
10169 if (!empty)
10170 isl_die(ctx, isl_error_unknown,
10171 "basic set should be empty", return -1);
10173 return 0;
10176 /* Check that the equality in the set description below
10177 * is simplified away.
10179 static int test_simplify_2(isl_ctx *ctx)
10181 const char *str;
10182 isl_basic_set *bset;
10183 isl_bool universe;
10185 str = "{ [a] : exists e0, e1: 32e1 = 31 + 31a + 31e0 }";
10186 bset = isl_basic_set_read_from_str(ctx, str);
10187 universe = isl_basic_set_plain_is_universe(bset);
10188 isl_basic_set_free(bset);
10190 if (universe < 0)
10191 return -1;
10192 if (!universe)
10193 isl_die(ctx, isl_error_unknown,
10194 "equality not simplified away", return -1);
10195 return 0;
10198 /* Some simplification tests.
10200 static int test_simplify(isl_ctx *ctx)
10202 if (test_simplify_1(ctx) < 0)
10203 return -1;
10204 if (test_simplify_2(ctx) < 0)
10205 return -1;
10206 return 0;
10209 /* This is a regression test for a bug where isl_tab_basic_map_partial_lexopt
10210 * with gbr context would fail to disable the use of the shifted tableau
10211 * when transferring equalities for the input to the context, resulting
10212 * in invalid sample values.
10214 static int test_partial_lexmin(isl_ctx *ctx)
10216 const char *str;
10217 isl_basic_set *bset;
10218 isl_basic_map *bmap;
10219 isl_map *map;
10221 str = "{ [1, b, c, 1 - c] -> [e] : 2e <= -c and 2e >= -3 + c }";
10222 bmap = isl_basic_map_read_from_str(ctx, str);
10223 str = "{ [a, b, c, d] : c <= 1 and 2d >= 6 - 4b - c }";
10224 bset = isl_basic_set_read_from_str(ctx, str);
10225 map = isl_basic_map_partial_lexmin(bmap, bset, NULL);
10226 isl_map_free(map);
10228 if (!map)
10229 return -1;
10231 return 0;
10234 /* Check that the variable compression performed on the existentially
10235 * quantified variables inside isl_basic_set_compute_divs is not confused
10236 * by the implicit equalities among the parameters.
10238 static int test_compute_divs(isl_ctx *ctx)
10240 const char *str;
10241 isl_basic_set *bset;
10242 isl_set *set;
10244 str = "[a, b, c, d, e] -> { [] : exists (e0: 2d = b and a <= 124 and "
10245 "b <= 2046 and b >= 0 and b <= 60 + 64a and 2e >= b + 2c and "
10246 "2e >= b and 2e <= 1 + b and 2e <= 1 + b + 2c and "
10247 "32768e0 >= -124 + a and 2097152e0 <= 60 + 64a - b) }";
10248 bset = isl_basic_set_read_from_str(ctx, str);
10249 set = isl_basic_set_compute_divs(bset);
10250 isl_set_free(set);
10251 if (!set)
10252 return -1;
10254 return 0;
10257 /* Check that isl_schedule_get_map is not confused by a schedule tree
10258 * with divergent filter node parameters, as can result from a call
10259 * to isl_schedule_intersect_domain.
10261 static int test_schedule_tree(isl_ctx *ctx)
10263 const char *str;
10264 isl_union_set *uset;
10265 isl_schedule *sched1, *sched2;
10266 isl_union_map *umap;
10268 uset = isl_union_set_read_from_str(ctx, "{ A[i] }");
10269 sched1 = isl_schedule_from_domain(uset);
10270 uset = isl_union_set_read_from_str(ctx, "{ B[] }");
10271 sched2 = isl_schedule_from_domain(uset);
10273 sched1 = isl_schedule_sequence(sched1, sched2);
10274 str = "[n] -> { A[i] : 0 <= i < n; B[] }";
10275 uset = isl_union_set_read_from_str(ctx, str);
10276 sched1 = isl_schedule_intersect_domain(sched1, uset);
10277 umap = isl_schedule_get_map(sched1);
10278 isl_schedule_free(sched1);
10279 isl_union_map_free(umap);
10280 if (!umap)
10281 return -1;
10283 return 0;
10286 /* Check that a zero-dimensional prefix schedule keeps track
10287 * of the domain and outer filters.
10289 static int test_schedule_tree_prefix(isl_ctx *ctx)
10291 const char *str;
10292 isl_bool equal;
10293 isl_union_set *uset;
10294 isl_union_set_list *filters;
10295 isl_multi_union_pw_aff *mupa, *mupa2;
10296 isl_schedule_node *node;
10298 str = "{ S1[i,j] : 0 <= i,j < 10; S2[i,j] : 0 <= i,j < 10 }";
10299 uset = isl_union_set_read_from_str(ctx, str);
10300 node = isl_schedule_node_from_domain(uset);
10301 node = isl_schedule_node_child(node, 0);
10303 str = "{ S1[i,j] : i > j }";
10304 uset = isl_union_set_read_from_str(ctx, str);
10305 filters = isl_union_set_list_from_union_set(uset);
10306 str = "{ S1[i,j] : i <= j; S2[i,j] }";
10307 uset = isl_union_set_read_from_str(ctx, str);
10308 filters = isl_union_set_list_add(filters, uset);
10309 node = isl_schedule_node_insert_sequence(node, filters);
10311 node = isl_schedule_node_child(node, 0);
10312 node = isl_schedule_node_child(node, 0);
10313 mupa = isl_schedule_node_get_prefix_schedule_multi_union_pw_aff(node);
10314 str = "([] : { S1[i,j] : i > j })";
10315 mupa2 = isl_multi_union_pw_aff_read_from_str(ctx, str);
10316 equal = isl_multi_union_pw_aff_plain_is_equal(mupa, mupa2);
10317 isl_multi_union_pw_aff_free(mupa2);
10318 isl_multi_union_pw_aff_free(mupa);
10319 isl_schedule_node_free(node);
10321 if (equal < 0)
10322 return -1;
10323 if (!equal)
10324 isl_die(ctx, isl_error_unknown, "unexpected prefix schedule",
10325 return -1);
10327 return 0;
10330 /* Check that the reaching domain elements and the prefix schedule
10331 * at a leaf node are the same before and after grouping.
10333 static int test_schedule_tree_group_1(isl_ctx *ctx)
10335 int equal;
10336 const char *str;
10337 isl_id *id;
10338 isl_union_set *uset;
10339 isl_multi_union_pw_aff *mupa;
10340 isl_union_pw_multi_aff *upma1, *upma2;
10341 isl_union_set *domain1, *domain2;
10342 isl_union_map *umap1, *umap2;
10343 isl_schedule_node *node;
10345 str = "{ S1[i,j] : 0 <= i,j < 10; S2[i,j] : 0 <= i,j < 10 }";
10346 uset = isl_union_set_read_from_str(ctx, str);
10347 node = isl_schedule_node_from_domain(uset);
10348 node = isl_schedule_node_child(node, 0);
10349 str = "[{ S1[i,j] -> [i]; S2[i,j] -> [9 - i] }]";
10350 mupa = isl_multi_union_pw_aff_read_from_str(ctx, str);
10351 node = isl_schedule_node_insert_partial_schedule(node, mupa);
10352 node = isl_schedule_node_child(node, 0);
10353 str = "[{ S1[i,j] -> [j]; S2[i,j] -> [j] }]";
10354 mupa = isl_multi_union_pw_aff_read_from_str(ctx, str);
10355 node = isl_schedule_node_insert_partial_schedule(node, mupa);
10356 node = isl_schedule_node_child(node, 0);
10357 umap1 = isl_schedule_node_get_prefix_schedule_union_map(node);
10358 upma1 = isl_schedule_node_get_prefix_schedule_union_pw_multi_aff(node);
10359 domain1 = isl_schedule_node_get_domain(node);
10360 id = isl_id_alloc(ctx, "group", NULL);
10361 node = isl_schedule_node_parent(node);
10362 node = isl_schedule_node_group(node, id);
10363 node = isl_schedule_node_child(node, 0);
10364 umap2 = isl_schedule_node_get_prefix_schedule_union_map(node);
10365 upma2 = isl_schedule_node_get_prefix_schedule_union_pw_multi_aff(node);
10366 domain2 = isl_schedule_node_get_domain(node);
10367 equal = isl_union_pw_multi_aff_plain_is_equal(upma1, upma2);
10368 if (equal >= 0 && equal)
10369 equal = isl_union_set_is_equal(domain1, domain2);
10370 if (equal >= 0 && equal)
10371 equal = isl_union_map_is_equal(umap1, umap2);
10372 isl_union_map_free(umap1);
10373 isl_union_map_free(umap2);
10374 isl_union_set_free(domain1);
10375 isl_union_set_free(domain2);
10376 isl_union_pw_multi_aff_free(upma1);
10377 isl_union_pw_multi_aff_free(upma2);
10378 isl_schedule_node_free(node);
10380 if (equal < 0)
10381 return -1;
10382 if (!equal)
10383 isl_die(ctx, isl_error_unknown,
10384 "expressions not equal", return -1);
10386 return 0;
10389 /* Check that we can have nested groupings and that the union map
10390 * schedule representation is the same before and after the grouping.
10391 * Note that after the grouping, the union map representation contains
10392 * the domain constraints from the ranges of the expansion nodes,
10393 * while they are missing from the union map representation of
10394 * the tree without expansion nodes.
10396 * Also check that the global expansion is as expected.
10398 static int test_schedule_tree_group_2(isl_ctx *ctx)
10400 int equal, equal_expansion;
10401 const char *str;
10402 isl_id *id;
10403 isl_union_set *uset;
10404 isl_union_map *umap1, *umap2;
10405 isl_union_map *expansion1, *expansion2;
10406 isl_union_set_list *filters;
10407 isl_multi_union_pw_aff *mupa;
10408 isl_schedule *schedule;
10409 isl_schedule_node *node;
10411 str = "{ S1[i,j] : 0 <= i,j < 10; S2[i,j] : 0 <= i,j < 10; "
10412 "S3[i,j] : 0 <= i,j < 10 }";
10413 uset = isl_union_set_read_from_str(ctx, str);
10414 node = isl_schedule_node_from_domain(uset);
10415 node = isl_schedule_node_child(node, 0);
10416 str = "[{ S1[i,j] -> [i]; S2[i,j] -> [i]; S3[i,j] -> [i] }]";
10417 mupa = isl_multi_union_pw_aff_read_from_str(ctx, str);
10418 node = isl_schedule_node_insert_partial_schedule(node, mupa);
10419 node = isl_schedule_node_child(node, 0);
10420 str = "{ S1[i,j] }";
10421 uset = isl_union_set_read_from_str(ctx, str);
10422 filters = isl_union_set_list_from_union_set(uset);
10423 str = "{ S2[i,j]; S3[i,j] }";
10424 uset = isl_union_set_read_from_str(ctx, str);
10425 filters = isl_union_set_list_add(filters, uset);
10426 node = isl_schedule_node_insert_sequence(node, filters);
10427 node = isl_schedule_node_child(node, 1);
10428 node = isl_schedule_node_child(node, 0);
10429 str = "{ S2[i,j] }";
10430 uset = isl_union_set_read_from_str(ctx, str);
10431 filters = isl_union_set_list_from_union_set(uset);
10432 str = "{ S3[i,j] }";
10433 uset = isl_union_set_read_from_str(ctx, str);
10434 filters = isl_union_set_list_add(filters, uset);
10435 node = isl_schedule_node_insert_sequence(node, filters);
10437 schedule = isl_schedule_node_get_schedule(node);
10438 umap1 = isl_schedule_get_map(schedule);
10439 uset = isl_schedule_get_domain(schedule);
10440 umap1 = isl_union_map_intersect_domain(umap1, uset);
10441 isl_schedule_free(schedule);
10443 node = isl_schedule_node_parent(node);
10444 node = isl_schedule_node_parent(node);
10445 id = isl_id_alloc(ctx, "group1", NULL);
10446 node = isl_schedule_node_group(node, id);
10447 node = isl_schedule_node_child(node, 1);
10448 node = isl_schedule_node_child(node, 0);
10449 id = isl_id_alloc(ctx, "group2", NULL);
10450 node = isl_schedule_node_group(node, id);
10452 schedule = isl_schedule_node_get_schedule(node);
10453 umap2 = isl_schedule_get_map(schedule);
10454 isl_schedule_free(schedule);
10456 node = isl_schedule_node_root(node);
10457 node = isl_schedule_node_child(node, 0);
10458 expansion1 = isl_schedule_node_get_subtree_expansion(node);
10459 isl_schedule_node_free(node);
10461 str = "{ group1[i] -> S1[i,j] : 0 <= i,j < 10; "
10462 "group1[i] -> S2[i,j] : 0 <= i,j < 10; "
10463 "group1[i] -> S3[i,j] : 0 <= i,j < 10 }";
10465 expansion2 = isl_union_map_read_from_str(ctx, str);
10467 equal = isl_union_map_is_equal(umap1, umap2);
10468 equal_expansion = isl_union_map_is_equal(expansion1, expansion2);
10470 isl_union_map_free(umap1);
10471 isl_union_map_free(umap2);
10472 isl_union_map_free(expansion1);
10473 isl_union_map_free(expansion2);
10475 if (equal < 0 || equal_expansion < 0)
10476 return -1;
10477 if (!equal)
10478 isl_die(ctx, isl_error_unknown,
10479 "expressions not equal", return -1);
10480 if (!equal_expansion)
10481 isl_die(ctx, isl_error_unknown,
10482 "unexpected expansion", return -1);
10484 return 0;
10487 /* Some tests for the isl_schedule_node_group function.
10489 static int test_schedule_tree_group(isl_ctx *ctx)
10491 if (test_schedule_tree_group_1(ctx) < 0)
10492 return -1;
10493 if (test_schedule_tree_group_2(ctx) < 0)
10494 return -1;
10495 return 0;
10498 struct {
10499 const char *set;
10500 const char *dual;
10501 } coef_tests[] = {
10502 { "{ rat: [i] : 0 <= i <= 10 }",
10503 "{ rat: coefficients[[cst] -> [a]] : cst >= 0 and 10a + cst >= 0 }" },
10504 { "{ rat: [i] : FALSE }",
10505 "{ rat: coefficients[[cst] -> [a]] }" },
10506 { "{ rat: [i] : }",
10507 "{ rat: coefficients[[cst] -> [0]] : cst >= 0 }" },
10508 { "{ [0:,1,2:3] }",
10509 "{ rat: coefficients[[c_cst] -> [a, b, c]] : "
10510 "a >= 0 and 2c >= -c_cst - b and 3c >= -c_cst - b }" },
10511 { "[M, N] -> { [x = (1 - N):-1, -4x:(M - 4x)] }",
10512 "{ rat: coefficients[[c_cst, c_M = 0:, c_N = 0:] -> [a, b = -c_M:]] :"
10513 "4b >= -c_N + a and 4b >= -c_cst - 2c_N + a }" },
10514 { "{ rat : [x, y] : 1 <= 2x <= 9 and 2 <= 3y <= 16 }",
10515 "{ rat: coefficients[[c_cst] -> [c_x, c_y]] : "
10516 "4c_y >= -6c_cst - 3c_x and 4c_y >= -6c_cst - 27c_x and "
10517 "32c_y >= -6c_cst - 3c_x and 32c_y >= -6c_cst - 27c_x }" },
10518 { "{ [x, y, z] : 3y <= 2x - 2 and y >= -2 + 2x and 2y >= 2 - x }",
10519 "{ rat: coefficients[[cst] -> [a, b, c]] }" },
10522 struct {
10523 const char *set;
10524 const char *dual;
10525 } sol_tests[] = {
10526 { "{ rat: coefficients[[cst] -> [a]] : cst >= 0 and 10a + cst >= 0 }",
10527 "{ rat: [i] : 0 <= i <= 10 }" },
10528 { "{ rat: coefficients[[cst] -> [a]] : FALSE }",
10529 "{ rat: [i] }" },
10530 { "{ rat: coefficients[[cst] -> [a]] }",
10531 "{ rat: [i] : FALSE }" },
10534 /* Test the basic functionality of isl_basic_set_coefficients and
10535 * isl_basic_set_solutions.
10537 static int test_dual(isl_ctx *ctx)
10539 int i;
10541 for (i = 0; i < ARRAY_SIZE(coef_tests); ++i) {
10542 int equal;
10543 isl_basic_set *bset1, *bset2;
10545 bset1 = isl_basic_set_read_from_str(ctx, coef_tests[i].set);
10546 bset2 = isl_basic_set_read_from_str(ctx, coef_tests[i].dual);
10547 bset1 = isl_basic_set_coefficients(bset1);
10548 equal = isl_basic_set_is_equal(bset1, bset2);
10549 isl_basic_set_free(bset1);
10550 isl_basic_set_free(bset2);
10551 if (equal < 0)
10552 return -1;
10553 if (!equal)
10554 isl_die(ctx, isl_error_unknown,
10555 "incorrect dual", return -1);
10558 for (i = 0; i < ARRAY_SIZE(sol_tests); ++i) {
10559 int equal;
10560 isl_basic_set *bset1, *bset2;
10562 bset1 = isl_basic_set_read_from_str(ctx, sol_tests[i].set);
10563 bset2 = isl_basic_set_read_from_str(ctx, sol_tests[i].dual);
10564 bset1 = isl_basic_set_solutions(bset1);
10565 equal = isl_basic_set_is_equal(bset1, bset2);
10566 isl_basic_set_free(bset1);
10567 isl_basic_set_free(bset2);
10568 if (equal < 0)
10569 return -1;
10570 if (!equal)
10571 isl_die(ctx, isl_error_unknown,
10572 "incorrect dual", return -1);
10575 return 0;
10578 struct {
10579 int scale_tile;
10580 int shift_point;
10581 const char *domain;
10582 const char *schedule;
10583 const char *sizes;
10584 const char *tile;
10585 const char *point;
10586 } tile_tests[] = {
10587 { 0, 0, "[n] -> { S[i,j] : 0 <= i,j < n }",
10588 "[{ S[i,j] -> [i] }, { S[i,j] -> [j] }]",
10589 "{ [32,32] }",
10590 "[{ S[i,j] -> [floor(i/32)] }, { S[i,j] -> [floor(j/32)] }]",
10591 "[{ S[i,j] -> [i] }, { S[i,j] -> [j] }]",
10593 { 1, 0, "[n] -> { S[i,j] : 0 <= i,j < n }",
10594 "[{ S[i,j] -> [i] }, { S[i,j] -> [j] }]",
10595 "{ [32,32] }",
10596 "[{ S[i,j] -> [32*floor(i/32)] }, { S[i,j] -> [32*floor(j/32)] }]",
10597 "[{ S[i,j] -> [i] }, { S[i,j] -> [j] }]",
10599 { 0, 1, "[n] -> { S[i,j] : 0 <= i,j < n }",
10600 "[{ S[i,j] -> [i] }, { S[i,j] -> [j] }]",
10601 "{ [32,32] }",
10602 "[{ S[i,j] -> [floor(i/32)] }, { S[i,j] -> [floor(j/32)] }]",
10603 "[{ S[i,j] -> [i%32] }, { S[i,j] -> [j%32] }]",
10605 { 1, 1, "[n] -> { S[i,j] : 0 <= i,j < n }",
10606 "[{ S[i,j] -> [i] }, { S[i,j] -> [j] }]",
10607 "{ [32,32] }",
10608 "[{ S[i,j] -> [32*floor(i/32)] }, { S[i,j] -> [32*floor(j/32)] }]",
10609 "[{ S[i,j] -> [i%32] }, { S[i,j] -> [j%32] }]",
10613 /* Basic tiling tests. Create a schedule tree with a domain and a band node,
10614 * tile the band and then check if the tile and point bands have the
10615 * expected partial schedule.
10617 static int test_tile(isl_ctx *ctx)
10619 int i;
10620 int scale;
10621 int shift;
10623 scale = isl_options_get_tile_scale_tile_loops(ctx);
10624 shift = isl_options_get_tile_shift_point_loops(ctx);
10626 for (i = 0; i < ARRAY_SIZE(tile_tests); ++i) {
10627 int opt;
10628 int equal;
10629 const char *str;
10630 isl_union_set *domain;
10631 isl_multi_union_pw_aff *mupa, *mupa2;
10632 isl_schedule_node *node;
10633 isl_multi_val *sizes;
10635 opt = tile_tests[i].scale_tile;
10636 isl_options_set_tile_scale_tile_loops(ctx, opt);
10637 opt = tile_tests[i].shift_point;
10638 isl_options_set_tile_shift_point_loops(ctx, opt);
10640 str = tile_tests[i].domain;
10641 domain = isl_union_set_read_from_str(ctx, str);
10642 node = isl_schedule_node_from_domain(domain);
10643 node = isl_schedule_node_child(node, 0);
10644 str = tile_tests[i].schedule;
10645 mupa = isl_multi_union_pw_aff_read_from_str(ctx, str);
10646 node = isl_schedule_node_insert_partial_schedule(node, mupa);
10647 str = tile_tests[i].sizes;
10648 sizes = isl_multi_val_read_from_str(ctx, str);
10649 node = isl_schedule_node_band_tile(node, sizes);
10651 str = tile_tests[i].tile;
10652 mupa = isl_multi_union_pw_aff_read_from_str(ctx, str);
10653 mupa2 = isl_schedule_node_band_get_partial_schedule(node);
10654 equal = isl_multi_union_pw_aff_plain_is_equal(mupa, mupa2);
10655 isl_multi_union_pw_aff_free(mupa);
10656 isl_multi_union_pw_aff_free(mupa2);
10658 node = isl_schedule_node_child(node, 0);
10660 str = tile_tests[i].point;
10661 mupa = isl_multi_union_pw_aff_read_from_str(ctx, str);
10662 mupa2 = isl_schedule_node_band_get_partial_schedule(node);
10663 if (equal >= 0 && equal)
10664 equal = isl_multi_union_pw_aff_plain_is_equal(mupa,
10665 mupa2);
10666 isl_multi_union_pw_aff_free(mupa);
10667 isl_multi_union_pw_aff_free(mupa2);
10669 isl_schedule_node_free(node);
10671 if (equal < 0)
10672 return -1;
10673 if (!equal)
10674 isl_die(ctx, isl_error_unknown,
10675 "unexpected result", return -1);
10678 isl_options_set_tile_scale_tile_loops(ctx, scale);
10679 isl_options_set_tile_shift_point_loops(ctx, shift);
10681 return 0;
10684 /* Check that the domain hash of a space is equal to the hash
10685 * of the domain of the space, both ignoring parameters.
10687 static int test_domain_hash(isl_ctx *ctx)
10689 isl_map *map;
10690 isl_space *space;
10691 uint32_t hash1, hash2;
10693 map = isl_map_read_from_str(ctx, "[n] -> { A[B[x] -> C[]] -> D[] }");
10694 space = isl_map_get_space(map);
10695 isl_map_free(map);
10696 hash1 = isl_space_get_tuple_domain_hash(space);
10697 space = isl_space_domain(space);
10698 hash2 = isl_space_get_tuple_hash(space);
10699 isl_space_free(space);
10701 if (!space)
10702 return -1;
10703 if (hash1 != hash2)
10704 isl_die(ctx, isl_error_unknown,
10705 "domain hash not equal to hash of domain", return -1);
10707 return 0;
10710 /* Check that a universe basic set that is not obviously equal to the universe
10711 * is still recognized as being equal to the universe.
10713 static int test_universe(isl_ctx *ctx)
10715 const char *s;
10716 isl_basic_set *bset;
10717 isl_bool is_univ;
10719 s = "{ [] : exists x, y : 3y <= 2x and y >= -3 + 2x and 2y >= 2 - x }";
10720 bset = isl_basic_set_read_from_str(ctx, s);
10721 is_univ = isl_basic_set_is_universe(bset);
10722 isl_basic_set_free(bset);
10724 if (is_univ < 0)
10725 return -1;
10726 if (!is_univ)
10727 isl_die(ctx, isl_error_unknown,
10728 "not recognized as universe set", return -1);
10730 return 0;
10733 /* Sets for which chambers are computed and checked.
10735 const char *chambers_tests[] = {
10736 "[A, B, C] -> { [x, y, z] : x >= 0 and y >= 0 and y <= A - x and "
10737 "z >= 0 and z <= C - y and z <= B - x - y }",
10740 /* Add the domain of "cell" to "cells".
10742 static isl_stat add_cell(__isl_take isl_cell *cell, void *user)
10744 isl_basic_set_list **cells = user;
10745 isl_basic_set *dom;
10747 dom = isl_cell_get_domain(cell);
10748 isl_cell_free(cell);
10749 *cells = isl_basic_set_list_add(*cells, dom);
10751 return *cells ? isl_stat_ok : isl_stat_error;
10754 /* Check that the elements of "list" are pairwise disjoint.
10756 static isl_stat check_pairwise_disjoint(__isl_keep isl_basic_set_list *list)
10758 int i, j;
10759 isl_size n;
10761 n = isl_basic_set_list_n_basic_set(list);
10762 if (n < 0)
10763 return isl_stat_error;
10765 for (i = 0; i < n; ++i) {
10766 isl_basic_set *bset_i;
10768 bset_i = isl_basic_set_list_get_basic_set(list, i);
10769 for (j = i + 1; j < n; ++j) {
10770 isl_basic_set *bset_j;
10771 isl_bool disjoint;
10773 bset_j = isl_basic_set_list_get_basic_set(list, j);
10774 disjoint = isl_basic_set_is_disjoint(bset_i, bset_j);
10775 isl_basic_set_free(bset_j);
10776 if (!disjoint)
10777 isl_die(isl_basic_set_list_get_ctx(list),
10778 isl_error_unknown, "not disjoint",
10779 break);
10780 if (disjoint < 0 || !disjoint)
10781 break;
10783 isl_basic_set_free(bset_i);
10784 if (j < n)
10785 return isl_stat_error;
10788 return isl_stat_ok;
10791 /* Check that the chambers computed by isl_vertices_foreach_disjoint_cell
10792 * are pairwise disjoint.
10794 static int test_chambers(isl_ctx *ctx)
10796 int i;
10798 for (i = 0; i < ARRAY_SIZE(chambers_tests); ++i) {
10799 isl_basic_set *bset;
10800 isl_vertices *vertices;
10801 isl_basic_set_list *cells;
10802 isl_stat ok;
10804 bset = isl_basic_set_read_from_str(ctx, chambers_tests[i]);
10805 vertices = isl_basic_set_compute_vertices(bset);
10806 cells = isl_basic_set_list_alloc(ctx, 0);
10807 if (isl_vertices_foreach_disjoint_cell(vertices, &add_cell,
10808 &cells) < 0)
10809 cells = isl_basic_set_list_free(cells);
10810 ok = check_pairwise_disjoint(cells);
10811 isl_basic_set_list_free(cells);
10812 isl_vertices_free(vertices);
10813 isl_basic_set_free(bset);
10815 if (ok < 0)
10816 return -1;
10819 return 0;
10822 struct {
10823 const char *name;
10824 int (*fn)(isl_ctx *ctx);
10825 } tests [] = {
10826 { "universe", &test_universe },
10827 { "domain hash", &test_domain_hash },
10828 { "dual", &test_dual },
10829 { "dependence analysis", &test_flow },
10830 { "val", &test_val },
10831 { "compute divs", &test_compute_divs },
10832 { "partial lexmin", &test_partial_lexmin },
10833 { "simplify", &test_simplify },
10834 { "curry", &test_curry },
10835 { "piecewise multi affine expressions", &test_pw_multi_aff },
10836 { "multi piecewise affine expressions", &test_multi_pw_aff },
10837 { "conversion", &test_conversion },
10838 { "list", &test_list },
10839 { "align parameters", &test_align_parameters },
10840 { "drop unused parameters", &test_drop_unused_parameters },
10841 { "pullback", &test_pullback },
10842 { "AST", &test_ast },
10843 { "AST build", &test_ast_build },
10844 { "AST generation", &test_ast_gen },
10845 { "eliminate", &test_eliminate },
10846 { "deltas_map", &test_deltas_map },
10847 { "residue class", &test_residue_class },
10848 { "div", &test_div },
10849 { "slice", &test_slice },
10850 { "fixed power", &test_fixed_power },
10851 { "sample", &test_sample },
10852 { "empty projection", &test_empty_projection },
10853 { "output", &test_output },
10854 { "vertices", &test_vertices },
10855 { "chambers", &test_chambers },
10856 { "fixed", &test_fixed },
10857 { "equal", &test_equal },
10858 { "disjoint", &test_disjoint },
10859 { "product", &test_product },
10860 { "dim_max", &test_dim_max },
10861 { "affine", &test_aff },
10862 { "injective", &test_injective },
10863 { "schedule (whole component)", &test_schedule_whole },
10864 { "schedule (incremental)", &test_schedule_incremental },
10865 { "schedule tree", &test_schedule_tree },
10866 { "schedule tree prefix", &test_schedule_tree_prefix },
10867 { "schedule tree grouping", &test_schedule_tree_group },
10868 { "tile", &test_tile },
10869 { "union map", &test_union_map },
10870 { "union_pw", &test_union_pw },
10871 { "locus", &test_locus },
10872 { "eval", &test_eval },
10873 { "parse", &test_parse },
10874 { "single-valued", &test_sv },
10875 { "recession cone", &test_recession_cone },
10876 { "affine hull", &test_affine_hull },
10877 { "simple_hull", &test_simple_hull },
10878 { "box hull", &test_box_hull },
10879 { "coalesce", &test_coalesce },
10880 { "factorize", &test_factorize },
10881 { "subset", &test_subset },
10882 { "subtract", &test_subtract },
10883 { "intersect", &test_intersect },
10884 { "lexmin", &test_lexmin },
10885 { "min", &test_min },
10886 { "set lower bounds", &test_min_mpa },
10887 { "gist", &test_gist },
10888 { "piecewise quasi-polynomials", &test_pwqp },
10889 { "lift", &test_lift },
10890 { "bind parameters", &test_bind },
10891 { "unbind parameters", &test_unbind },
10892 { "bound", &test_bound },
10893 { "get lists", &test_get_list },
10894 { "union", &test_union },
10895 { "split periods", &test_split_periods },
10896 { "lexicographic order", &test_lex },
10897 { "bijectivity", &test_bijective },
10898 { "dataflow analysis", &test_dep },
10899 { "reading", &test_read },
10900 { "bounded", &test_bounded },
10901 { "construction", &test_construction },
10902 { "dimension manipulation", &test_dim },
10903 { "map application", &test_application },
10904 { "convex hull", &test_convex_hull },
10905 { "transitive closure", &test_closure },
10906 { "isl_bool", &test_isl_bool},
10909 int main(int argc, char **argv)
10911 int i;
10912 struct isl_ctx *ctx;
10913 struct isl_options *options;
10915 options = isl_options_new_with_defaults();
10916 assert(options);
10917 argc = isl_options_parse(options, argc, argv, ISL_ARG_ALL);
10919 ctx = isl_ctx_alloc_with_options(&isl_options_args, options);
10920 for (i = 0; i < ARRAY_SIZE(tests); ++i) {
10921 printf("%s\n", tests[i].name);
10922 if (tests[i].fn(ctx) < 0)
10923 goto error;
10925 isl_ctx_free(ctx);
10926 return 0;
10927 error:
10928 isl_ctx_free(ctx);
10929 return -1;