meson: Bump up timeout for slow test
[glib.git] / glib / tests / gdatetime.c
blob5a2190d5f155b859b3c0b67fcc821c8d6609e582
1 /* gdatetime-tests.c
3 * Copyright (C) 2009-2010 Christian Hergert <chris@dronelabs.com>
5 * This is free software; you can redistribute it and/or
6 * modify it under the terms of the GNU Lesser General Public
7 * License as published by the Free Software Foundation; either
8 * version 2.1 of the License, or (at your option) any later version.
10 * This is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 * Lesser General Public License for more details.
15 * You should have received a copy of the GNU Lesser General Public License
16 * along with this library; if not, see <http://www.gnu.org/licenses/>.
19 #include "config.h"
21 #include <string.h>
22 #include <time.h>
23 #include <gi18n.h>
24 #include <glib.h>
25 #include <glib/gstdio.h>
26 #include <locale.h>
28 #define ASSERT_DATE(dt,y,m,d) G_STMT_START { \
29 g_assert_nonnull ((dt)); \
30 g_assert_cmpint ((y), ==, g_date_time_get_year ((dt))); \
31 g_assert_cmpint ((m), ==, g_date_time_get_month ((dt))); \
32 g_assert_cmpint ((d), ==, g_date_time_get_day_of_month ((dt))); \
33 } G_STMT_END
34 #define ASSERT_TIME(dt,H,M,S,U) G_STMT_START { \
35 g_assert_nonnull ((dt)); \
36 g_assert_cmpint ((H), ==, g_date_time_get_hour ((dt))); \
37 g_assert_cmpint ((M), ==, g_date_time_get_minute ((dt))); \
38 g_assert_cmpint ((S), ==, g_date_time_get_second ((dt))); \
39 g_assert_cmpint ((U), ==, g_date_time_get_microsecond ((dt))); \
40 } G_STMT_END
42 static void
43 get_localtime_tm (time_t time_,
44 struct tm *retval)
46 #ifdef HAVE_LOCALTIME_R
47 localtime_r (&time_, retval);
48 #else
50 struct tm *ptm = localtime (&time_);
52 if (ptm == NULL)
54 /* Happens at least in Microsoft's C library if you pass a
55 * negative time_t. Use 2000-01-01 as default date.
57 #ifndef G_DISABLE_CHECKS
58 g_return_if_fail_warning (G_LOG_DOMAIN, G_STRFUNC, "ptm != NULL");
59 #endif
61 retval->tm_mon = 0;
62 retval->tm_mday = 1;
63 retval->tm_year = 100;
65 else
66 memcpy ((void *) retval, (void *) ptm, sizeof (struct tm));
68 #endif /* HAVE_LOCALTIME_R */
71 static void
72 test_GDateTime_now (void)
74 GDateTime *dt;
75 struct tm tm;
76 time_t before;
77 time_t after;
79 /* before <= dt.to_unix() <= after, but the inequalities might not be
80 * equality if we're close to the boundary between seconds.
81 * We loop until before == after (and hence dt.to_unix() should equal both)
82 * to guard against that. */
85 before = g_get_real_time () / G_TIME_SPAN_SECOND;
87 memset (&tm, 0, sizeof (tm));
88 get_localtime_tm (before, &tm);
90 dt = g_date_time_new_now_local ();
92 after = g_get_real_time () / G_TIME_SPAN_SECOND;
94 while (before != after);
96 g_assert_cmpint (g_date_time_get_year (dt), ==, 1900 + tm.tm_year);
97 g_assert_cmpint (g_date_time_get_month (dt), ==, 1 + tm.tm_mon);
98 g_assert_cmpint (g_date_time_get_day_of_month (dt), ==, tm.tm_mday);
99 g_assert_cmpint (g_date_time_get_hour (dt), ==, tm.tm_hour);
100 g_assert_cmpint (g_date_time_get_minute (dt), ==, tm.tm_min);
101 g_assert_cmpint (g_date_time_get_second (dt), ==, tm.tm_sec);
103 g_date_time_unref (dt);
106 static void
107 test_GDateTime_new_from_unix (void)
109 GDateTime *dt;
110 struct tm tm;
111 time_t t;
113 memset (&tm, 0, sizeof (tm));
114 t = time (NULL);
115 get_localtime_tm (t, &tm);
117 dt = g_date_time_new_from_unix_local (t);
118 g_assert_cmpint (g_date_time_get_year (dt), ==, 1900 + tm.tm_year);
119 g_assert_cmpint (g_date_time_get_month (dt), ==, 1 + tm.tm_mon);
120 g_assert_cmpint (g_date_time_get_day_of_month (dt), ==, tm.tm_mday);
121 g_assert_cmpint (g_date_time_get_hour (dt), ==, tm.tm_hour);
122 g_assert_cmpint (g_date_time_get_minute (dt), ==, tm.tm_min);
123 g_assert_cmpint (g_date_time_get_second (dt), ==, tm.tm_sec);
124 g_date_time_unref (dt);
126 /* Choose 1990-01-01 04:00:00 because no DST leaps happened then. The more
127 * obvious 1990-01-01 00:00:00 was a DST leap in America/Lima (which has,
128 * confusingly, since stopped using DST). */
129 memset (&tm, 0, sizeof (tm));
130 tm.tm_year = 90;
131 tm.tm_mday = 1;
132 tm.tm_mon = 0;
133 tm.tm_hour = 4;
134 tm.tm_min = 0;
135 tm.tm_sec = 0;
136 tm.tm_isdst = -1;
137 t = mktime (&tm);
139 dt = g_date_time_new_from_unix_local (t);
140 g_assert_cmpint (g_date_time_get_year (dt), ==, 1990);
141 g_assert_cmpint (g_date_time_get_month (dt), ==, 1);
142 g_assert_cmpint (g_date_time_get_day_of_month (dt), ==, 1);
143 g_assert_cmpint (g_date_time_get_hour (dt), ==, 4);
144 g_assert_cmpint (g_date_time_get_minute (dt), ==, 0);
145 g_assert_cmpint (g_date_time_get_second (dt), ==, 0);
146 g_date_time_unref (dt);
149 /* Check that trying to create a #GDateTime too far in the future reliably
150 * fails. Previously, the checks for this overflowed and it silently returned
151 * an incorrect #GDateTime. */
152 static void
153 test_GDateTime_new_from_unix_overflow (void)
155 GDateTime *dt;
157 g_test_bug ("782089");
159 dt = g_date_time_new_from_unix_utc (G_MAXINT64);
160 g_assert_null (dt);
162 dt = g_date_time_new_from_unix_local (G_MAXINT64);
163 g_assert_null (dt);
166 static void
167 test_GDateTime_invalid (void)
169 GDateTime *dt;
171 g_test_bug ("702674");
173 dt = g_date_time_new_utc (2013, -2147483647, 31, 17, 15, 48);
174 g_assert (dt == NULL);
177 static void
178 test_GDateTime_compare (void)
180 GDateTime *dt1, *dt2;
181 gint i;
183 dt1 = g_date_time_new_utc (2000, 1, 1, 0, 0, 0);
185 for (i = 1; i < 2000; i++)
187 dt2 = g_date_time_new_utc (i, 12, 31, 0, 0, 0);
188 g_assert_cmpint (1, ==, g_date_time_compare (dt1, dt2));
189 g_date_time_unref (dt2);
192 dt2 = g_date_time_new_utc (1999, 12, 31, 23, 59, 59);
193 g_assert_cmpint (1, ==, g_date_time_compare (dt1, dt2));
194 g_date_time_unref (dt2);
196 dt2 = g_date_time_new_utc (2000, 1, 1, 0, 0, 1);
197 g_assert_cmpint (-1, ==, g_date_time_compare (dt1, dt2));
198 g_date_time_unref (dt2);
200 dt2 = g_date_time_new_utc (2000, 1, 1, 0, 0, 0);
201 g_assert_cmpint (0, ==, g_date_time_compare (dt1, dt2));
202 g_date_time_unref (dt2);
203 g_date_time_unref (dt1);
206 static void
207 test_GDateTime_equal (void)
209 GDateTime *dt1, *dt2;
210 GTimeZone *tz;
212 dt1 = g_date_time_new_local (2009, 10, 19, 0, 0, 0);
213 dt2 = g_date_time_new_local (2009, 10, 19, 0, 0, 0);
214 g_assert (g_date_time_equal (dt1, dt2));
215 g_date_time_unref (dt1);
216 g_date_time_unref (dt2);
218 dt1 = g_date_time_new_local (2009, 10, 18, 0, 0, 0);
219 dt2 = g_date_time_new_local (2009, 10, 19, 0, 0, 0);
220 g_assert (!g_date_time_equal (dt1, dt2));
221 g_date_time_unref (dt1);
222 g_date_time_unref (dt2);
224 /* UTC-0300 and not in DST */
225 tz = g_time_zone_new ("-03:00");
226 dt1 = g_date_time_new (tz, 2010, 5, 24, 8, 0, 0);
227 g_time_zone_unref (tz);
228 g_assert_cmpint (g_date_time_get_utc_offset (dt1) / G_USEC_PER_SEC, ==, (-3 * 3600));
229 /* UTC */
230 dt2 = g_date_time_new_utc (2010, 5, 24, 11, 0, 0);
231 g_assert_cmpint (g_date_time_get_utc_offset (dt2), ==, 0);
233 g_assert (g_date_time_equal (dt1, dt2));
234 g_date_time_unref (dt1);
236 /* America/Recife is in UTC-0300 */
237 #ifdef G_OS_UNIX
238 tz = g_time_zone_new ("America/Recife");
239 #elif defined G_OS_WIN32
240 tz = g_time_zone_new ("E. South America Standard Time");
241 #endif
242 dt1 = g_date_time_new (tz, 2010, 5, 24, 8, 0, 0);
243 g_time_zone_unref (tz);
244 g_assert_cmpint (g_date_time_get_utc_offset (dt1) / G_USEC_PER_SEC, ==, (-3 * 3600));
245 g_assert (g_date_time_equal (dt1, dt2));
246 g_date_time_unref (dt1);
247 g_date_time_unref (dt2);
250 static void
251 test_GDateTime_get_day_of_week (void)
253 GDateTime *dt;
255 dt = g_date_time_new_local (2009, 10, 19, 0, 0, 0);
256 g_assert_cmpint (1, ==, g_date_time_get_day_of_week (dt));
257 g_date_time_unref (dt);
259 dt = g_date_time_new_local (2000, 10, 1, 0, 0, 0);
260 g_assert_cmpint (7, ==, g_date_time_get_day_of_week (dt));
261 g_date_time_unref (dt);
264 static void
265 test_GDateTime_get_day_of_month (void)
267 GDateTime *dt;
269 dt = g_date_time_new_local (2009, 10, 19, 0, 0, 0);
270 g_assert_cmpint (g_date_time_get_day_of_month (dt), ==, 19);
271 g_date_time_unref (dt);
273 dt = g_date_time_new_local (1400, 3, 12, 0, 0, 0);
274 g_assert_cmpint (g_date_time_get_day_of_month (dt), ==, 12);
275 g_date_time_unref (dt);
277 dt = g_date_time_new_local (1800, 12, 31, 0, 0, 0);
278 g_assert_cmpint (g_date_time_get_day_of_month (dt), ==, 31);
279 g_date_time_unref (dt);
281 dt = g_date_time_new_local (1000, 1, 1, 0, 0, 0);
282 g_assert_cmpint (g_date_time_get_day_of_month (dt), ==, 1);
283 g_date_time_unref (dt);
286 static void
287 test_GDateTime_get_hour (void)
289 GDateTime *dt;
291 dt = g_date_time_new_utc (2009, 10, 19, 15, 13, 11);
292 g_assert_cmpint (15, ==, g_date_time_get_hour (dt));
293 g_date_time_unref (dt);
295 dt = g_date_time_new_utc (100, 10, 19, 1, 0, 0);
296 g_assert_cmpint (1, ==, g_date_time_get_hour (dt));
297 g_date_time_unref (dt);
299 dt = g_date_time_new_utc (100, 10, 19, 0, 0, 0);
300 g_assert_cmpint (0, ==, g_date_time_get_hour (dt));
301 g_date_time_unref (dt);
303 dt = g_date_time_new_utc (100, 10, 1, 23, 59, 59);
304 g_assert_cmpint (23, ==, g_date_time_get_hour (dt));
305 g_date_time_unref (dt);
308 static void
309 test_GDateTime_get_microsecond (void)
311 GTimeVal tv;
312 GDateTime *dt;
314 g_get_current_time (&tv);
315 dt = g_date_time_new_from_timeval_local (&tv);
316 g_assert_cmpint (tv.tv_usec, ==, g_date_time_get_microsecond (dt));
317 g_date_time_unref (dt);
320 static void
321 test_GDateTime_get_year (void)
323 GDateTime *dt;
325 dt = g_date_time_new_local (2009, 1, 1, 0, 0, 0);
326 g_assert_cmpint (2009, ==, g_date_time_get_year (dt));
327 g_date_time_unref (dt);
329 dt = g_date_time_new_local (1, 1, 1, 0, 0, 0);
330 g_assert_cmpint (1, ==, g_date_time_get_year (dt));
331 g_date_time_unref (dt);
333 dt = g_date_time_new_local (13, 1, 1, 0, 0, 0);
334 g_assert_cmpint (13, ==, g_date_time_get_year (dt));
335 g_date_time_unref (dt);
337 dt = g_date_time_new_local (3000, 1, 1, 0, 0, 0);
338 g_assert_cmpint (3000, ==, g_date_time_get_year (dt));
339 g_date_time_unref (dt);
342 static void
343 test_GDateTime_hash (void)
345 GHashTable *h;
347 h = g_hash_table_new_full (g_date_time_hash, g_date_time_equal,
348 (GDestroyNotify)g_date_time_unref,
349 NULL);
350 g_hash_table_add (h, g_date_time_new_now_local ());
351 g_hash_table_remove_all (h);
352 g_hash_table_destroy (h);
355 static void
356 test_GDateTime_new_from_timeval (void)
358 GDateTime *dt;
359 GTimeVal tv, tv2;
361 g_get_current_time (&tv);
362 dt = g_date_time_new_from_timeval_local (&tv);
364 if (g_test_verbose ())
365 g_printerr ("\nDT%04d-%02d-%02dT%02d:%02d:%02d%s\n",
366 g_date_time_get_year (dt),
367 g_date_time_get_month (dt),
368 g_date_time_get_day_of_month (dt),
369 g_date_time_get_hour (dt),
370 g_date_time_get_minute (dt),
371 g_date_time_get_second (dt),
372 g_date_time_get_timezone_abbreviation (dt));
374 g_date_time_to_timeval (dt, &tv2);
375 g_assert_cmpint (tv.tv_sec, ==, tv2.tv_sec);
376 g_assert_cmpint (tv.tv_usec, ==, tv2.tv_usec);
377 g_date_time_unref (dt);
380 static glong
381 find_maximum_supported_tv_sec (void)
383 glong highest_success = 0, lowest_failure = G_MAXLONG;
384 GTimeVal tv;
385 GDateTime *dt = NULL;
387 tv.tv_usec = 0;
389 /* Corner case of all glong values being valid. */
390 tv.tv_sec = G_MAXLONG;
391 dt = g_date_time_new_from_timeval_utc (&tv);
392 if (dt != NULL)
394 highest_success = tv.tv_sec;
395 g_date_time_unref (dt);
398 while (highest_success < lowest_failure - 1)
400 tv.tv_sec = highest_success + (lowest_failure - highest_success) / 2;
401 dt = g_date_time_new_from_timeval_utc (&tv);
403 if (dt != NULL)
405 highest_success = tv.tv_sec;
406 g_date_time_unref (dt);
408 else
410 lowest_failure = tv.tv_sec;
414 return highest_success;
417 /* Check that trying to create a #GDateTime too far in the future reliably
418 * fails. With a #GTimeVal, this is subtle, as the tv_usec are added into the
419 * calculation part-way through.
421 * This varies a bit between 32- and 64-bit architectures, due to the
422 * differences in the size of glong (tv.tv_sec). */
423 static void
424 test_GDateTime_new_from_timeval_overflow (void)
426 GDateTime *dt;
427 GTimeVal tv;
429 g_test_bug ("782089");
431 tv.tv_sec = find_maximum_supported_tv_sec ();
432 tv.tv_usec = G_USEC_PER_SEC - 1;
434 g_test_message ("Maximum supported GTimeVal.tv_sec = %lu", tv.tv_sec);
436 /* Sanity check: do we support the year 2000? */
437 g_assert_cmpint (tv.tv_sec, >=, 946684800);
439 dt = g_date_time_new_from_timeval_utc (&tv);
440 g_assert_nonnull (dt);
441 g_date_time_unref (dt);
443 if (tv.tv_sec < G_MAXLONG)
445 tv.tv_sec++;
446 tv.tv_usec = 0;
448 dt = g_date_time_new_from_timeval_utc (&tv);
449 g_assert_null (dt);
453 static void
454 test_GDateTime_new_from_timeval_utc (void)
456 GDateTime *dt;
457 GTimeVal tv, tv2;
459 g_get_current_time (&tv);
460 dt = g_date_time_new_from_timeval_utc (&tv);
462 if (g_test_verbose ())
463 g_printerr ("\nDT%04d-%02d-%02dT%02d:%02d:%02d%s\n",
464 g_date_time_get_year (dt),
465 g_date_time_get_month (dt),
466 g_date_time_get_day_of_month (dt),
467 g_date_time_get_hour (dt),
468 g_date_time_get_minute (dt),
469 g_date_time_get_second (dt),
470 g_date_time_get_timezone_abbreviation (dt));
472 g_date_time_to_timeval (dt, &tv2);
473 g_assert_cmpint (tv.tv_sec, ==, tv2.tv_sec);
474 g_assert_cmpint (tv.tv_usec, ==, tv2.tv_usec);
475 g_date_time_unref (dt);
478 static void
479 test_GDateTime_new_from_iso8601 (void)
481 GDateTime *dt;
482 GTimeZone *tz;
484 /* Need non-empty string */
485 dt = g_date_time_new_from_iso8601 ("", NULL);
486 g_assert_null (dt);
488 /* Needs to be correctly formatted */
489 dt = g_date_time_new_from_iso8601 ("not a date", NULL);
490 g_assert_null (dt);
492 /* Check common case */
493 dt = g_date_time_new_from_iso8601 ("2016-08-24T22:10:42Z", NULL);
494 ASSERT_DATE (dt, 2016, 8, 24);
495 ASSERT_TIME (dt, 22, 10, 42, 0);
496 g_date_time_unref (dt);
498 /* Timezone is required in text or passed as arg */
499 tz = g_time_zone_new_utc ();
500 dt = g_date_time_new_from_iso8601 ("2016-08-24T22:10:42", tz);
501 ASSERT_DATE (dt, 2016, 8, 24);
502 g_date_time_unref (dt);
503 g_time_zone_unref (tz);
504 dt = g_date_time_new_from_iso8601 ("2016-08-24T22:10:42", NULL);
505 g_assert_null (dt);
507 /* Can't have whitespace */
508 dt = g_date_time_new_from_iso8601 ("2016 08 24T22:10:42Z", NULL);
509 g_assert_null (dt);
510 dt = g_date_time_new_from_iso8601 ("2016-08-24T22:10:42Z ", NULL);
511 g_assert_null (dt);
512 dt = g_date_time_new_from_iso8601 (" 2016-08-24T22:10:42Z", NULL);
513 g_assert_null (dt);
515 /* Check lowercase time separator or space allowed */
516 dt = g_date_time_new_from_iso8601 ("2016-08-24t22:10:42Z", NULL);
517 ASSERT_DATE (dt, 2016, 8, 24);
518 ASSERT_TIME (dt, 22, 10, 42, 0);
519 g_date_time_unref (dt);
520 dt = g_date_time_new_from_iso8601 ("2016-08-24 22:10:42Z", NULL);
521 ASSERT_DATE (dt, 2016, 8, 24);
522 ASSERT_TIME (dt, 22, 10, 42, 0);
523 g_date_time_unref (dt);
525 /* Check dates without separators allowed */
526 dt = g_date_time_new_from_iso8601 ("20160824T22:10:42Z", NULL);
527 ASSERT_DATE (dt, 2016, 8, 24);
528 ASSERT_TIME (dt, 22, 10, 42, 0);
529 g_date_time_unref (dt);
531 /* Months are two digits */
532 dt = g_date_time_new_from_iso8601 ("2016-1-01T22:10:42Z", NULL);
533 g_assert_null (dt);
535 /* Days are two digits */
536 dt = g_date_time_new_from_iso8601 ("2016-01-1T22:10:42Z", NULL);
537 g_assert_null (dt);
539 /* Need consistent usage of separators */
540 dt = g_date_time_new_from_iso8601 ("2016-0824T22:10:42Z", NULL);
541 g_assert_null (dt);
542 dt = g_date_time_new_from_iso8601 ("201608-24T22:10:42Z", NULL);
543 g_assert_null (dt);
545 /* Check month within valid range */
546 dt = g_date_time_new_from_iso8601 ("2016-00-13T22:10:42Z", NULL);
547 g_assert_null (dt);
548 dt = g_date_time_new_from_iso8601 ("2016-13-13T22:10:42Z", NULL);
549 g_assert_null (dt);
551 /* Check day within valid range */
552 dt = g_date_time_new_from_iso8601 ("2016-01-00T22:10:42Z", NULL);
553 g_assert_null (dt);
554 dt = g_date_time_new_from_iso8601 ("2016-01-31T22:10:42Z", NULL);
555 ASSERT_DATE (dt, 2016, 1, 31);
556 g_date_time_unref (dt);
557 dt = g_date_time_new_from_iso8601 ("2016-01-32T22:10:42Z", NULL);
558 g_assert_null (dt);
559 dt = g_date_time_new_from_iso8601 ("2016-02-29T22:10:42Z", NULL);
560 ASSERT_DATE (dt, 2016, 2, 29);
561 g_date_time_unref (dt);
562 dt = g_date_time_new_from_iso8601 ("2016-02-30T22:10:42Z", NULL);
563 g_assert_null (dt);
564 dt = g_date_time_new_from_iso8601 ("2017-02-28T22:10:42Z", NULL);
565 ASSERT_DATE (dt, 2017, 2, 28);
566 g_date_time_unref (dt);
567 dt = g_date_time_new_from_iso8601 ("2017-02-29T22:10:42Z", NULL);
568 g_assert_null (dt);
569 dt = g_date_time_new_from_iso8601 ("2016-03-31T22:10:42Z", NULL);
570 ASSERT_DATE (dt, 2016, 3, 31);
571 g_date_time_unref (dt);
572 dt = g_date_time_new_from_iso8601 ("2016-03-32T22:10:42Z", NULL);
573 g_assert_null (dt);
574 dt = g_date_time_new_from_iso8601 ("2016-04-30T22:10:42Z", NULL);
575 ASSERT_DATE (dt, 2016, 4, 30);
576 g_date_time_unref (dt);
577 dt = g_date_time_new_from_iso8601 ("2016-04-31T22:10:42Z", NULL);
578 g_assert_null (dt);
579 dt = g_date_time_new_from_iso8601 ("2016-05-31T22:10:42Z", NULL);
580 ASSERT_DATE (dt, 2016, 5, 31);
581 g_date_time_unref (dt);
582 dt = g_date_time_new_from_iso8601 ("2016-05-32T22:10:42Z", NULL);
583 g_assert_null (dt);
584 dt = g_date_time_new_from_iso8601 ("2016-06-30T22:10:42Z", NULL);
585 ASSERT_DATE (dt, 2016, 6, 30);
586 g_date_time_unref (dt);
587 dt = g_date_time_new_from_iso8601 ("2016-06-31T22:10:42Z", NULL);
588 g_assert_null (dt);
589 dt = g_date_time_new_from_iso8601 ("2016-07-31T22:10:42Z", NULL);
590 ASSERT_DATE (dt, 2016, 7, 31);
591 g_date_time_unref (dt);
592 dt = g_date_time_new_from_iso8601 ("2016-07-32T22:10:42Z", NULL);
593 g_assert_null (dt);
594 dt = g_date_time_new_from_iso8601 ("2016-08-31T22:10:42Z", NULL);
595 ASSERT_DATE (dt, 2016, 8, 31);
596 g_date_time_unref (dt);
597 dt = g_date_time_new_from_iso8601 ("2016-08-32T22:10:42Z", NULL);
598 g_assert_null (dt);
599 dt = g_date_time_new_from_iso8601 ("2016-09-30T22:10:42Z", NULL);
600 ASSERT_DATE (dt, 2016, 9, 30);
601 g_date_time_unref (dt);
602 dt = g_date_time_new_from_iso8601 ("2016-09-31T22:10:42Z", NULL);
603 g_assert_null (dt);
604 dt = g_date_time_new_from_iso8601 ("2016-10-31T22:10:42Z", NULL);
605 ASSERT_DATE (dt, 2016, 10, 31);
606 g_date_time_unref (dt);
607 dt = g_date_time_new_from_iso8601 ("2016-10-32T22:10:42Z", NULL);
608 g_assert_null (dt);
609 dt = g_date_time_new_from_iso8601 ("2016-11-30T22:10:42Z", NULL);
610 ASSERT_DATE (dt, 2016, 11, 30);
611 g_date_time_unref (dt);
612 dt = g_date_time_new_from_iso8601 ("2016-11-31T22:10:42Z", NULL);
613 g_assert_null (dt);
614 dt = g_date_time_new_from_iso8601 ("2016-12-31T22:10:42Z", NULL);
615 ASSERT_DATE (dt, 2016, 12, 31);
616 g_date_time_unref (dt);
617 dt = g_date_time_new_from_iso8601 ("2016-12-32T22:10:42Z", NULL);
618 g_assert_null (dt);
620 /* Check ordinal days work */
621 dt = g_date_time_new_from_iso8601 ("2016-237T22:10:42Z", NULL);
622 ASSERT_DATE (dt, 2016, 8, 24);
623 ASSERT_TIME (dt, 22, 10, 42, 0);
624 g_date_time_unref (dt);
625 dt = g_date_time_new_from_iso8601 ("2016237T22:10:42Z", NULL);
626 ASSERT_DATE (dt, 2016, 8, 24);
627 ASSERT_TIME (dt, 22, 10, 42, 0);
628 g_date_time_unref (dt);
630 /* Check ordinal leap days */
631 dt = g_date_time_new_from_iso8601 ("2016-366T22:10:42Z", NULL);
632 ASSERT_DATE (dt, 2016, 12, 31);
633 ASSERT_TIME (dt, 22, 10, 42, 0);
634 g_date_time_unref (dt);
635 dt = g_date_time_new_from_iso8601 ("2017-365T22:10:42Z", NULL);
636 ASSERT_DATE (dt, 2017, 12, 31);
637 ASSERT_TIME (dt, 22, 10, 42, 0);
638 g_date_time_unref (dt);
639 dt = g_date_time_new_from_iso8601 ("2017-366T22:10:42Z", NULL);
640 g_assert_null (dt);
642 /* Days start at 1 */
643 dt = g_date_time_new_from_iso8601 ("2016-000T22:10:42Z", NULL);
644 g_assert_null (dt);
646 /* Limited to number of days in the year (2016 is a leap year) */
647 dt = g_date_time_new_from_iso8601 ("2016-367T22:10:42Z", NULL);
648 g_assert_null (dt);
650 /* Days are two digits */
651 dt = g_date_time_new_from_iso8601 ("2016-1T22:10:42Z", NULL);
652 g_assert_null (dt);
653 dt = g_date_time_new_from_iso8601 ("2016-12T22:10:42Z", NULL);
654 g_assert_null (dt);
656 /* Check week days work */
657 dt = g_date_time_new_from_iso8601 ("2016-W34-3T22:10:42Z", NULL);
658 ASSERT_DATE (dt, 2016, 8, 24);
659 ASSERT_TIME (dt, 22, 10, 42, 0);
660 g_date_time_unref (dt);
661 dt = g_date_time_new_from_iso8601 ("2016W343T22:10:42Z", NULL);
662 ASSERT_DATE (dt, 2016, 8, 24);
663 ASSERT_TIME (dt, 22, 10, 42, 0);
664 g_date_time_unref (dt);
666 /* We don't support weeks without weekdays (valid ISO 8601) */
667 dt = g_date_time_new_from_iso8601 ("2016-W34T22:10:42Z", NULL);
668 g_assert_null (dt);
669 dt = g_date_time_new_from_iso8601 ("2016W34T22:10:42Z", NULL);
670 g_assert_null (dt);
672 /* Weeks are two digits */
673 dt = g_date_time_new_from_iso8601 ("2016-W3-1T22:10:42Z", NULL);
674 g_assert_null (dt);
676 /* Weeks start at 1 */
677 dt = g_date_time_new_from_iso8601 ("2016-W00-1T22:10:42Z", NULL);
678 g_assert_null (dt);
680 /* Week one might be in the previous year */
681 dt = g_date_time_new_from_iso8601 ("2015-W01-1T22:10:42Z", NULL);
682 ASSERT_DATE (dt, 2014, 12, 29);
683 g_date_time_unref (dt);
685 /* Last week might be in next year */
686 dt = g_date_time_new_from_iso8601 ("2015-W53-7T22:10:42Z", NULL);
687 ASSERT_DATE (dt, 2016, 1, 3);
688 g_date_time_unref (dt);
690 /* Week 53 doesn't always exist */
691 dt = g_date_time_new_from_iso8601 ("2016-W53-1T22:10:42Z", NULL);
692 g_assert_null (dt);
694 /* Limited to number of days in the week */
695 dt = g_date_time_new_from_iso8601 ("2016-W34-0T22:10:42Z", NULL);
696 g_assert_null (dt);
697 dt = g_date_time_new_from_iso8601 ("2016-W34-8T22:10:42Z", NULL);
698 g_assert_null (dt);
700 /* Days are one digit */
701 dt = g_date_time_new_from_iso8601 ("2016-W34-99T22:10:42Z", NULL);
702 g_assert_null (dt);
704 /* Check week day changes depending on year */
705 dt = g_date_time_new_from_iso8601 ("2017-W34-1T22:10:42Z", NULL);
706 ASSERT_DATE (dt, 2017, 8, 21);
707 g_date_time_unref (dt);
709 /* Check week day changes depending on leap years */
710 dt = g_date_time_new_from_iso8601 ("1900-W01-1T22:10:42Z", NULL);
711 ASSERT_DATE (dt, 1900, 1, 1);
712 g_date_time_unref (dt);
714 /* YYYY-MM not allowed (NOT valid ISO 8601) */
715 dt = g_date_time_new_from_iso8601 ("2016-08T22:10:42Z", NULL);
716 g_assert_null (dt);
718 /* We don't support omitted year (valid ISO 8601) */
719 dt = g_date_time_new_from_iso8601 ("--08-24T22:10:42Z", NULL);
720 g_assert_null (dt);
721 dt = g_date_time_new_from_iso8601 ("--0824T22:10:42Z", NULL);
722 g_assert_null (dt);
724 /* Check subseconds work */
725 dt = g_date_time_new_from_iso8601 ("2016-08-24T22:10:42.123456Z", NULL);
726 ASSERT_DATE (dt, 2016, 8, 24);
727 ASSERT_TIME (dt, 22, 10, 42, 123456);
728 g_date_time_unref (dt);
729 dt = g_date_time_new_from_iso8601 ("2016-08-24T22:10:42,123456Z", NULL);
730 ASSERT_DATE (dt, 2016, 8, 24);
731 ASSERT_TIME (dt, 22, 10, 42, 123456);
732 g_date_time_unref (dt);
733 dt = g_date_time_new_from_iso8601 ("2016-08-24T22:10:42.Z", NULL);
734 g_assert_null (dt);
735 dt = g_date_time_new_from_iso8601 ("2016-08-24T221042.123456Z", NULL);
736 ASSERT_DATE (dt, 2016, 8, 24);
737 ASSERT_TIME (dt, 22, 10, 42, 123456);
738 g_date_time_unref (dt);
740 /* We don't support times without minutes / seconds (valid ISO 8601) */
741 dt = g_date_time_new_from_iso8601 ("2016-08-24T22Z", NULL);
742 g_assert_null (dt);
743 dt = g_date_time_new_from_iso8601 ("2016-08-24T22:10Z", NULL);
744 g_assert_null (dt);
745 dt = g_date_time_new_from_iso8601 ("2016-08-24T2210Z", NULL);
746 g_assert_null (dt);
748 /* UTC time uses 'Z' */
749 dt = g_date_time_new_from_iso8601 ("2016-08-24T22:10:42Z", NULL);
750 ASSERT_DATE (dt, 2016, 8, 24);
751 ASSERT_TIME (dt, 22, 10, 42, 0);
752 g_assert_cmpint (g_date_time_get_utc_offset (dt), ==, 0);
753 g_date_time_unref (dt);
755 /* Check timezone works */
756 dt = g_date_time_new_from_iso8601 ("2016-08-24T22:10:42+12:00", NULL);
757 ASSERT_DATE (dt, 2016, 8, 24);
758 ASSERT_TIME (dt, 22, 10, 42, 0);
759 g_assert_cmpint (g_date_time_get_utc_offset (dt), ==, 12 * G_TIME_SPAN_HOUR);
760 g_date_time_unref (dt);
761 dt = g_date_time_new_from_iso8601 ("2016-08-24T22:10:42+12", NULL);
762 ASSERT_DATE (dt, 2016, 8, 24);
763 ASSERT_TIME (dt, 22, 10, 42, 0);
764 g_assert_cmpint (g_date_time_get_utc_offset (dt), ==, 12 * G_TIME_SPAN_HOUR);
765 g_date_time_unref (dt);
766 dt = g_date_time_new_from_iso8601 ("2016-08-24T22:10:42-02", NULL);
767 ASSERT_DATE (dt, 2016, 8, 24);
768 ASSERT_TIME (dt, 22, 10, 42, 0);
769 g_assert_cmpint (g_date_time_get_utc_offset (dt), ==, -2 * G_TIME_SPAN_HOUR);
770 g_date_time_unref (dt);
772 /* Timezone seconds not allowed */
773 dt = g_date_time_new_from_iso8601 ("2016-08-24T22-12:00:00", NULL);
774 g_assert_null (dt);
775 dt = g_date_time_new_from_iso8601 ("2016-08-24T22-12:00:00.000", NULL);
776 g_assert_null (dt);
778 /* Timezone hours two digits */
779 dt = g_date_time_new_from_iso8601 ("2016-08-24T22-2Z", NULL);
780 g_assert_null (dt);
783 static void
784 test_GDateTime_to_unix (void)
786 GDateTime *dt;
787 time_t t;
789 t = time (NULL);
790 dt = g_date_time_new_from_unix_local (t);
791 g_assert_cmpint (g_date_time_to_unix (dt), ==, t);
792 g_date_time_unref (dt);
795 static void
796 test_GDateTime_add_years (void)
798 GDateTime *dt, *dt2;
800 dt = g_date_time_new_local (2009, 10, 19, 0, 0, 0);
801 dt2 = g_date_time_add_years (dt, 1);
802 g_assert_cmpint (2010, ==, g_date_time_get_year (dt2));
803 g_date_time_unref (dt);
804 g_date_time_unref (dt2);
807 static void
808 test_GDateTime_add_months (void)
810 #define TEST_ADD_MONTHS(y,m,d,a,ny,nm,nd) G_STMT_START { \
811 GDateTime *dt, *dt2; \
812 dt = g_date_time_new_utc (y, m, d, 0, 0, 0); \
813 dt2 = g_date_time_add_months (dt, a); \
814 ASSERT_DATE (dt2, ny, nm, nd); \
815 g_date_time_unref (dt); \
816 g_date_time_unref (dt2); \
817 } G_STMT_END
819 TEST_ADD_MONTHS (2009, 12, 31, 1, 2010, 1, 31);
820 TEST_ADD_MONTHS (2009, 12, 31, 1, 2010, 1, 31);
821 TEST_ADD_MONTHS (2009, 6, 15, 1, 2009, 7, 15);
822 TEST_ADD_MONTHS (1400, 3, 1, 1, 1400, 4, 1);
823 TEST_ADD_MONTHS (1400, 1, 31, 1, 1400, 2, 28);
824 TEST_ADD_MONTHS (1400, 1, 31, 7200, 2000, 1, 31);
825 TEST_ADD_MONTHS (2008, 2, 29, 12, 2009, 2, 28);
826 TEST_ADD_MONTHS (2000, 8, 16, -5, 2000, 3, 16);
827 TEST_ADD_MONTHS (2000, 8, 16, -12, 1999, 8, 16);
828 TEST_ADD_MONTHS (2011, 2, 1, -13, 2010, 1, 1);
829 TEST_ADD_MONTHS (1776, 7, 4, 1200, 1876, 7, 4);
832 static void
833 test_GDateTime_add_days (void)
835 #define TEST_ADD_DAYS(y,m,d,a,ny,nm,nd) G_STMT_START { \
836 GDateTime *dt, *dt2; \
837 dt = g_date_time_new_local (y, m, d, 0, 0, 0); \
838 dt2 = g_date_time_add_days (dt, a); \
839 g_assert_cmpint (ny, ==, g_date_time_get_year (dt2)); \
840 g_assert_cmpint (nm, ==, g_date_time_get_month (dt2)); \
841 g_assert_cmpint (nd, ==, g_date_time_get_day_of_month (dt2)); \
842 g_date_time_unref (dt); \
843 g_date_time_unref (dt2); \
844 } G_STMT_END
846 TEST_ADD_DAYS (2009, 1, 31, 1, 2009, 2, 1);
847 TEST_ADD_DAYS (2009, 2, 1, -1, 2009, 1, 31);
848 TEST_ADD_DAYS (2008, 2, 28, 1, 2008, 2, 29);
849 TEST_ADD_DAYS (2008, 12, 31, 1, 2009, 1, 1);
850 TEST_ADD_DAYS (1, 1, 1, 1, 1, 1, 2);
851 TEST_ADD_DAYS (1955, 5, 24, 10, 1955, 6, 3);
852 TEST_ADD_DAYS (1955, 5, 24, -10, 1955, 5, 14);
855 static void
856 test_GDateTime_add_weeks (void)
858 #define TEST_ADD_WEEKS(y,m,d,a,ny,nm,nd) G_STMT_START { \
859 GDateTime *dt, *dt2; \
860 dt = g_date_time_new_local (y, m, d, 0, 0, 0); \
861 dt2 = g_date_time_add_weeks (dt, a); \
862 g_assert_cmpint (ny, ==, g_date_time_get_year (dt2)); \
863 g_assert_cmpint (nm, ==, g_date_time_get_month (dt2)); \
864 g_assert_cmpint (nd, ==, g_date_time_get_day_of_month (dt2)); \
865 g_date_time_unref (dt); \
866 g_date_time_unref (dt2); \
867 } G_STMT_END
869 TEST_ADD_WEEKS (2009, 1, 1, 1, 2009, 1, 8);
870 TEST_ADD_WEEKS (2009, 8, 30, 1, 2009, 9, 6);
871 TEST_ADD_WEEKS (2009, 12, 31, 1, 2010, 1, 7);
872 TEST_ADD_WEEKS (2009, 1, 1, -1, 2008, 12, 25);
875 static void
876 test_GDateTime_add_hours (void)
878 #define TEST_ADD_HOURS(y,m,d,h,mi,s,a,ny,nm,nd,nh,nmi,ns) G_STMT_START { \
879 GDateTime *dt, *dt2; \
880 dt = g_date_time_new_utc (y, m, d, h, mi, s); \
881 dt2 = g_date_time_add_hours (dt, a); \
882 g_assert_cmpint (ny, ==, g_date_time_get_year (dt2)); \
883 g_assert_cmpint (nm, ==, g_date_time_get_month (dt2)); \
884 g_assert_cmpint (nd, ==, g_date_time_get_day_of_month (dt2)); \
885 g_assert_cmpint (nh, ==, g_date_time_get_hour (dt2)); \
886 g_assert_cmpint (nmi, ==, g_date_time_get_minute (dt2)); \
887 g_assert_cmpint (ns, ==, g_date_time_get_second (dt2)); \
888 g_date_time_unref (dt); \
889 g_date_time_unref (dt2); \
890 } G_STMT_END
892 TEST_ADD_HOURS (2009, 1, 1, 0, 0, 0, 1, 2009, 1, 1, 1, 0, 0);
893 TEST_ADD_HOURS (2008, 12, 31, 23, 0, 0, 1, 2009, 1, 1, 0, 0, 0);
896 static void
897 test_GDateTime_add_full (void)
899 #define TEST_ADD_FULL(y,m,d,h,mi,s,ay,am,ad,ah,ami,as,ny,nm,nd,nh,nmi,ns) G_STMT_START { \
900 GDateTime *dt, *dt2; \
901 dt = g_date_time_new_utc (y, m, d, h, mi, s); \
902 dt2 = g_date_time_add_full (dt, ay, am, ad, ah, ami, as); \
903 g_assert_cmpint (ny, ==, g_date_time_get_year (dt2)); \
904 g_assert_cmpint (nm, ==, g_date_time_get_month (dt2)); \
905 g_assert_cmpint (nd, ==, g_date_time_get_day_of_month (dt2)); \
906 g_assert_cmpint (nh, ==, g_date_time_get_hour (dt2)); \
907 g_assert_cmpint (nmi, ==, g_date_time_get_minute (dt2)); \
908 g_assert_cmpint (ns, ==, g_date_time_get_second (dt2)); \
909 g_date_time_unref (dt); \
910 g_date_time_unref (dt2); \
911 } G_STMT_END
913 TEST_ADD_FULL (2009, 10, 21, 0, 0, 0,
914 1, 1, 1, 1, 1, 1,
915 2010, 11, 22, 1, 1, 1);
916 TEST_ADD_FULL (2000, 1, 1, 1, 1, 1,
917 0, 1, 0, 0, 0, 0,
918 2000, 2, 1, 1, 1, 1);
919 TEST_ADD_FULL (2000, 1, 1, 0, 0, 0,
920 -1, 1, 0, 0, 0, 0,
921 1999, 2, 1, 0, 0, 0);
922 TEST_ADD_FULL (2010, 10, 31, 0, 0, 0,
923 0, 4, 0, 0, 0, 0,
924 2011, 2, 28, 0, 0, 0);
925 TEST_ADD_FULL (2010, 8, 25, 22, 45, 0,
926 0, 1, 6, 1, 25, 0,
927 2010, 10, 2, 0, 10, 0);
930 static void
931 test_GDateTime_add_minutes (void)
933 #define TEST_ADD_MINUTES(i,o) G_STMT_START { \
934 GDateTime *dt, *dt2; \
935 dt = g_date_time_new_local (2000, 1, 1, 0, 0, 0); \
936 dt2 = g_date_time_add_minutes (dt, i); \
937 g_assert_cmpint (o, ==, g_date_time_get_minute (dt2)); \
938 g_date_time_unref (dt); \
939 g_date_time_unref (dt2); \
940 } G_STMT_END
942 TEST_ADD_MINUTES (60, 0);
943 TEST_ADD_MINUTES (100, 40);
944 TEST_ADD_MINUTES (5, 5);
945 TEST_ADD_MINUTES (1441, 1);
946 TEST_ADD_MINUTES (-1441, 59);
949 static void
950 test_GDateTime_add_seconds (void)
952 #define TEST_ADD_SECONDS(i,o) G_STMT_START { \
953 GDateTime *dt, *dt2; \
954 dt = g_date_time_new_local (2000, 1, 1, 0, 0, 0); \
955 dt2 = g_date_time_add_seconds (dt, i); \
956 g_assert_cmpint (o, ==, g_date_time_get_second (dt2)); \
957 g_date_time_unref (dt); \
958 g_date_time_unref (dt2); \
959 } G_STMT_END
961 TEST_ADD_SECONDS (1, 1);
962 TEST_ADD_SECONDS (60, 0);
963 TEST_ADD_SECONDS (61, 1);
964 TEST_ADD_SECONDS (120, 0);
965 TEST_ADD_SECONDS (-61, 59);
966 TEST_ADD_SECONDS (86401, 1);
967 TEST_ADD_SECONDS (-86401, 59);
968 TEST_ADD_SECONDS (-31, 29);
969 TEST_ADD_SECONDS (13, 13);
972 static void
973 test_GDateTime_diff (void)
975 #define TEST_DIFF(y,m,d,y2,m2,d2,u) G_STMT_START { \
976 GDateTime *dt1, *dt2; \
977 GTimeSpan ts = 0; \
978 dt1 = g_date_time_new_utc (y, m, d, 0, 0, 0); \
979 dt2 = g_date_time_new_utc (y2, m2, d2, 0, 0, 0); \
980 ts = g_date_time_difference (dt2, dt1); \
981 g_assert_cmpint (ts, ==, u); \
982 g_date_time_unref (dt1); \
983 g_date_time_unref (dt2); \
984 } G_STMT_END
986 TEST_DIFF (2009, 1, 1, 2009, 2, 1, G_TIME_SPAN_DAY * 31);
987 TEST_DIFF (2009, 1, 1, 2010, 1, 1, G_TIME_SPAN_DAY * 365);
988 TEST_DIFF (2008, 2, 28, 2008, 2, 29, G_TIME_SPAN_DAY);
989 TEST_DIFF (2008, 2, 29, 2008, 2, 28, -G_TIME_SPAN_DAY);
991 /* TODO: Add usec tests */
994 static void
995 test_GDateTime_get_minute (void)
997 GDateTime *dt;
999 dt = g_date_time_new_utc (2009, 12, 1, 1, 31, 0);
1000 g_assert_cmpint (31, ==, g_date_time_get_minute (dt));
1001 g_date_time_unref (dt);
1004 static void
1005 test_GDateTime_get_month (void)
1007 GDateTime *dt;
1009 dt = g_date_time_new_utc (2009, 12, 1, 1, 31, 0);
1010 g_assert_cmpint (12, ==, g_date_time_get_month (dt));
1011 g_date_time_unref (dt);
1014 static void
1015 test_GDateTime_get_second (void)
1017 GDateTime *dt;
1019 dt = g_date_time_new_utc (2009, 12, 1, 1, 31, 44);
1020 g_assert_cmpint (44, ==, g_date_time_get_second (dt));
1021 g_date_time_unref (dt);
1024 static void
1025 test_GDateTime_new_full (void)
1027 GTimeZone *tz;
1028 GDateTime *dt;
1030 dt = g_date_time_new_utc (2009, 12, 11, 12, 11, 10);
1031 g_assert_cmpint (2009, ==, g_date_time_get_year (dt));
1032 g_assert_cmpint (12, ==, g_date_time_get_month (dt));
1033 g_assert_cmpint (11, ==, g_date_time_get_day_of_month (dt));
1034 g_assert_cmpint (12, ==, g_date_time_get_hour (dt));
1035 g_assert_cmpint (11, ==, g_date_time_get_minute (dt));
1036 g_assert_cmpint (10, ==, g_date_time_get_second (dt));
1037 g_date_time_unref (dt);
1039 #ifdef G_OS_UNIX
1040 tz = g_time_zone_new ("America/Tijuana");
1041 #elif defined G_OS_WIN32
1042 tz = g_time_zone_new ("Pacific Standard Time");
1043 #endif
1044 dt = g_date_time_new (tz, 2010, 11, 24, 8, 4, 0);
1045 g_time_zone_unref (tz);
1046 g_assert_cmpint (2010, ==, g_date_time_get_year (dt));
1047 g_assert_cmpint (11, ==, g_date_time_get_month (dt));
1048 g_assert_cmpint (24, ==, g_date_time_get_day_of_month (dt));
1049 g_assert_cmpint (8, ==, g_date_time_get_hour (dt));
1050 g_assert_cmpint (4, ==, g_date_time_get_minute (dt));
1051 g_assert_cmpint (0, ==, g_date_time_get_second (dt));
1052 #ifdef G_OS_UNIX
1053 g_assert_cmpstr ("PST", ==, g_date_time_get_timezone_abbreviation (dt));
1054 #elif defined G_OS_WIN32
1055 g_assert_cmpstr ("Pacific Standard Time", ==,
1056 g_date_time_get_timezone_abbreviation (dt));
1057 #endif
1058 g_assert (!g_date_time_is_daylight_savings (dt));
1059 g_date_time_unref (dt);
1061 /* Check month limits */
1062 dt = g_date_time_new_utc (2016, 1, 31, 22, 10, 42);
1063 ASSERT_DATE (dt, 2016, 1, 31);
1064 g_date_time_unref (dt);
1065 dt = g_date_time_new_utc (2016, 1, 32, 22, 10, 42);
1066 g_assert_null (dt);
1067 dt = g_date_time_new_utc (2016, 2, 29, 22, 10, 42);
1068 ASSERT_DATE (dt, 2016, 2, 29);
1069 g_date_time_unref (dt);
1070 dt = g_date_time_new_utc (2016, 2, 30, 22, 10, 42);
1071 g_assert_null (dt);
1072 dt = g_date_time_new_utc (2017, 2, 28, 22, 10, 42);
1073 ASSERT_DATE (dt, 2017, 2, 28);
1074 g_date_time_unref (dt);
1075 dt = g_date_time_new_utc (2017, 2, 29, 22, 10, 42);
1076 g_assert_null (dt);
1077 dt = g_date_time_new_utc (2016, 3, 31, 22, 10, 42);
1078 ASSERT_DATE (dt, 2016, 3, 31);
1079 g_date_time_unref (dt);
1080 dt = g_date_time_new_utc (2016, 3, 32, 22, 10, 42);
1081 g_assert_null (dt);
1082 dt = g_date_time_new_utc (2016, 4, 30, 22, 10, 42);
1083 ASSERT_DATE (dt, 2016, 4, 30);
1084 g_date_time_unref (dt);
1085 dt = g_date_time_new_utc (2016, 4, 31, 22, 10, 42);
1086 g_assert_null (dt);
1087 dt = g_date_time_new_utc (2016, 5, 31, 22, 10, 42);
1088 ASSERT_DATE (dt, 2016, 5, 31);
1089 g_date_time_unref (dt);
1090 dt = g_date_time_new_utc (2016, 5, 32, 22, 10, 42);
1091 g_assert_null (dt);
1092 dt = g_date_time_new_utc (2016, 6, 30, 22, 10, 42);
1093 ASSERT_DATE (dt, 2016, 6, 30);
1094 g_date_time_unref (dt);
1095 dt = g_date_time_new_utc (2016, 6, 31, 22, 10, 42);
1096 g_assert_null (dt);
1097 dt = g_date_time_new_utc (2016, 7, 31, 22, 10, 42);
1098 ASSERT_DATE (dt, 2016, 7, 31);
1099 g_date_time_unref (dt);
1100 dt = g_date_time_new_utc (2016, 7, 32, 22, 10, 42);
1101 g_assert_null (dt);
1102 dt = g_date_time_new_utc (2016, 8, 31, 22, 10, 42);
1103 ASSERT_DATE (dt, 2016, 8, 31);
1104 g_date_time_unref (dt);
1105 dt = g_date_time_new_utc (2016, 8, 32, 22, 10, 42);
1106 g_assert_null (dt);
1107 dt = g_date_time_new_utc (2016, 9, 30, 22, 10, 42);
1108 ASSERT_DATE (dt, 2016, 9, 30);
1109 g_date_time_unref (dt);
1110 dt = g_date_time_new_utc (2016, 9, 31, 22, 10, 42);
1111 g_assert_null (dt);
1112 dt = g_date_time_new_utc (2016, 10, 31, 22, 10, 42);
1113 ASSERT_DATE (dt, 2016, 10, 31);
1114 g_date_time_unref (dt);
1115 dt = g_date_time_new_utc (2016, 10, 32, 22, 10, 42);
1116 g_assert_null (dt);
1117 dt = g_date_time_new_utc (2016, 11, 30, 22, 10, 42);
1118 ASSERT_DATE (dt, 2016, 11, 30);
1119 g_date_time_unref (dt);
1120 dt = g_date_time_new_utc (2016, 11, 31, 22, 10, 42);
1121 g_assert_null (dt);
1122 dt = g_date_time_new_utc (2016, 12, 31, 22, 10, 42);
1123 ASSERT_DATE (dt, 2016, 12, 31);
1124 g_date_time_unref (dt);
1125 dt = g_date_time_new_utc (2016, 12, 32, 22, 10, 42);
1126 g_assert_null (dt);
1129 static void
1130 test_GDateTime_now_utc (void)
1132 GDateTime *dt;
1133 struct tm tm;
1134 time_t t;
1135 time_t after;
1137 /* t <= dt.to_unix() <= after, but the inequalities might not be
1138 * equality if we're close to the boundary between seconds.
1139 * We loop until t == after (and hence dt.to_unix() should equal both)
1140 * to guard against that. */
1143 t = g_get_real_time () / G_TIME_SPAN_SECOND;
1144 #ifdef HAVE_GMTIME_R
1145 gmtime_r (&t, &tm);
1146 #else
1148 struct tm *tmp = gmtime (&t);
1149 /* Assume gmtime() can't fail as we got t from time(NULL). (Note
1150 * that on Windows, gmtime() *is* MT-safe, it uses a thread-local
1151 * buffer.)
1153 memcpy (&tm, tmp, sizeof (struct tm));
1155 #endif
1156 dt = g_date_time_new_now_utc ();
1158 after = g_get_real_time () / G_TIME_SPAN_SECOND;
1160 while (t != after);
1162 g_assert_cmpint (tm.tm_year + 1900, ==, g_date_time_get_year (dt));
1163 g_assert_cmpint (tm.tm_mon + 1, ==, g_date_time_get_month (dt));
1164 g_assert_cmpint (tm.tm_mday, ==, g_date_time_get_day_of_month (dt));
1165 g_assert_cmpint (tm.tm_hour, ==, g_date_time_get_hour (dt));
1166 g_assert_cmpint (tm.tm_min, ==, g_date_time_get_minute (dt));
1167 g_assert_cmpint (tm.tm_sec, ==, g_date_time_get_second (dt));
1168 g_date_time_unref (dt);
1171 static void
1172 test_GDateTime_new_from_unix_utc (void)
1174 GDateTime *dt;
1175 gint64 t;
1177 t = g_get_real_time ();
1179 #if 0
1180 dt = g_date_time_new_from_unix_utc (t);
1181 g_assert (dt == NULL);
1182 #endif
1184 t = t / 1e6; /* oops, this was microseconds */
1186 dt = g_date_time_new_from_unix_utc (t);
1187 g_assert (dt != NULL);
1189 g_assert (dt == g_date_time_ref (dt));
1190 g_date_time_unref (dt);
1191 g_assert_cmpint (g_date_time_to_unix (dt), ==, t);
1192 g_date_time_unref (dt);
1195 static void
1196 test_GDateTime_get_utc_offset (void)
1198 #if defined (HAVE_STRUCT_TM_TM_GMTOFF) || defined (HAVE_STRUCT_TM___TM_GMTOFF)
1199 GDateTime *dt;
1200 GTimeSpan ts;
1201 struct tm tm;
1203 memset (&tm, 0, sizeof (tm));
1204 get_localtime_tm (g_get_real_time () / G_TIME_SPAN_SECOND, &tm);
1206 dt = g_date_time_new_now_local ();
1207 ts = g_date_time_get_utc_offset (dt);
1208 #ifdef HAVE_STRUCT_TM_TM_GMTOFF
1209 g_assert_cmpint (ts, ==, (tm.tm_gmtoff * G_TIME_SPAN_SECOND));
1210 #endif
1211 #ifdef HAVE_STRUCT_TM___TM_GMTOFF
1212 g_assert_cmpint (ts, ==, (tm.__tm_gmtoff * G_TIME_SPAN_SECOND));
1213 #endif
1214 g_date_time_unref (dt);
1215 #endif
1218 static void
1219 test_GDateTime_to_timeval (void)
1221 GTimeVal tv1, tv2;
1222 GDateTime *dt;
1224 memset (&tv1, 0, sizeof (tv1));
1225 memset (&tv2, 0, sizeof (tv2));
1227 g_get_current_time (&tv1);
1228 dt = g_date_time_new_from_timeval_local (&tv1);
1229 g_date_time_to_timeval (dt, &tv2);
1230 g_assert_cmpint (tv1.tv_sec, ==, tv2.tv_sec);
1231 g_assert_cmpint (tv1.tv_usec, ==, tv2.tv_usec);
1232 g_date_time_unref (dt);
1235 static void
1236 test_GDateTime_to_local (void)
1238 GDateTime *utc = NULL, *now = NULL, *dt;
1239 time_t before, after;
1241 /* before <= utc.to_unix() <= now.to_unix() <= after, but the inequalities
1242 * might not be equality if we're close to the boundary between seconds.
1243 * We loop until before == after (and hence the GDateTimes should match)
1244 * to guard against that. */
1247 before = g_get_real_time () / G_TIME_SPAN_SECOND;
1248 g_clear_pointer (&utc, g_date_time_unref);
1249 g_clear_pointer (&now, g_date_time_unref);
1250 utc = g_date_time_new_now_utc ();
1251 now = g_date_time_new_now_local ();
1252 after = g_get_real_time () / G_TIME_SPAN_SECOND;
1254 while (before != after);
1256 dt = g_date_time_to_local (utc);
1258 g_assert_cmpint (g_date_time_get_year (now), ==, g_date_time_get_year (dt));
1259 g_assert_cmpint (g_date_time_get_month (now), ==, g_date_time_get_month (dt));
1260 g_assert_cmpint (g_date_time_get_day_of_month (now), ==, g_date_time_get_day_of_month (dt));
1261 g_assert_cmpint (g_date_time_get_hour (now), ==, g_date_time_get_hour (dt));
1262 g_assert_cmpint (g_date_time_get_minute (now), ==, g_date_time_get_minute (dt));
1263 g_assert_cmpint (g_date_time_get_second (now), ==, g_date_time_get_second (dt));
1265 g_date_time_unref (now);
1266 g_date_time_unref (utc);
1267 g_date_time_unref (dt);
1270 static void
1271 test_GDateTime_to_utc (void)
1273 GDateTime *dt, *dt2;
1274 time_t t;
1275 struct tm tm;
1277 t = time (NULL);
1278 #ifdef HAVE_GMTIME_R
1279 gmtime_r (&t, &tm);
1280 #else
1282 struct tm *tmp = gmtime (&t);
1283 memcpy (&tm, tmp, sizeof (struct tm));
1285 #endif
1286 dt2 = g_date_time_new_from_unix_local (t);
1287 dt = g_date_time_to_utc (dt2);
1288 g_assert_cmpint (tm.tm_year + 1900, ==, g_date_time_get_year (dt));
1289 g_assert_cmpint (tm.tm_mon + 1, ==, g_date_time_get_month (dt));
1290 g_assert_cmpint (tm.tm_mday, ==, g_date_time_get_day_of_month (dt));
1291 g_assert_cmpint (tm.tm_hour, ==, g_date_time_get_hour (dt));
1292 g_assert_cmpint (tm.tm_min, ==, g_date_time_get_minute (dt));
1293 g_assert_cmpint (tm.tm_sec, ==, g_date_time_get_second (dt));
1294 g_date_time_unref (dt);
1295 g_date_time_unref (dt2);
1298 static void
1299 test_GDateTime_get_day_of_year (void)
1301 #define TEST_DAY_OF_YEAR(y,m,d,o) G_STMT_START { \
1302 GDateTime *__dt = g_date_time_new_local ((y), (m), (d), 0, 0, 0); \
1303 g_assert_cmpint ((o), ==, g_date_time_get_day_of_year (__dt)); \
1304 g_date_time_unref (__dt); } G_STMT_END
1306 TEST_DAY_OF_YEAR (2009, 1, 1, 1);
1307 TEST_DAY_OF_YEAR (2009, 2, 1, 32);
1308 TEST_DAY_OF_YEAR (2009, 8, 16, 228);
1309 TEST_DAY_OF_YEAR (2008, 8, 16, 229);
1312 static void
1313 test_GDateTime_printf (void)
1315 /* 64 seems big, but one zoneinfo file, Factory, has an abbreviation
1316 * that long, and it will cause the test to fail if dst isn't big
1317 * enough.
1319 gchar dst[64];
1320 struct tm tt;
1321 time_t t;
1323 #define TEST_PRINTF(f,o) G_STMT_START { \
1324 GDateTime *__dt = g_date_time_new_local (2009, 10, 24, 0, 0, 0);\
1325 gchar *__p = g_date_time_format (__dt, (f)); \
1326 g_assert_cmpstr (__p, ==, (o)); \
1327 g_date_time_unref (__dt); \
1328 g_free (__p); } G_STMT_END
1330 #define TEST_PRINTF_DATE(y,m,d,f,o) G_STMT_START { \
1331 GDateTime *dt = g_date_time_new_local (y, m, d, 0, 0, 0); \
1332 gchar *p = g_date_time_format (dt, (f)); \
1333 gchar *o_casefold = g_utf8_casefold (o, -1); \
1334 gchar *p_casefold = g_utf8_casefold (p, -1); \
1335 g_assert_cmpstr (p_casefold, ==, (o_casefold)); \
1336 g_date_time_unref (dt); \
1337 g_free (p_casefold); \
1338 g_free (o_casefold); \
1339 g_free (p); } G_STMT_END
1341 #define TEST_PRINTF_TIME(h,m,s,f,o) G_STMT_START { \
1342 GDateTime *dt = g_date_time_new_local (2009, 10, 24, (h), (m), (s)); \
1343 gchar *p = g_date_time_format (dt, (f)); \
1344 g_assert_cmpstr (p, ==, (o)); \
1345 g_date_time_unref (dt); \
1346 g_free (p); } G_STMT_END
1349 * This is a little helper to make sure we can compare timezones to
1350 * that of the generated timezone.
1352 t = time (NULL);
1353 memset (&tt, 0, sizeof(tt));
1354 get_localtime_tm (t, &tt);
1355 tt.tm_year = 2009 - 1900;
1356 tt.tm_mon = 9; /* 0 indexed */
1357 tt.tm_mday = 24;
1358 t = mktime (&tt);
1359 memset (&tt, 0, sizeof(tt));
1360 get_localtime_tm (t, &tt);
1361 strftime (dst, sizeof(dst), "%Z", &tt);
1363 /* get current time_t for 20090924 in the local timezone */
1364 tt.tm_sec = 0;
1365 tt.tm_min = 0;
1366 tt.tm_hour = 0;
1367 t = mktime (&tt);
1369 TEST_PRINTF ("%a", "Sat");
1370 TEST_PRINTF ("%A", "Saturday");
1371 TEST_PRINTF ("%b", "Oct");
1372 TEST_PRINTF ("%B", "October");
1373 TEST_PRINTF ("%d", "24");
1374 TEST_PRINTF_DATE (2009, 1, 1, "%d", "01");
1375 TEST_PRINTF ("%e", "24"); // fixme
1376 TEST_PRINTF ("%h", "Oct");
1377 TEST_PRINTF ("%H", "00");
1378 TEST_PRINTF_TIME (15, 0, 0, "%H", "15");
1379 TEST_PRINTF ("%I", "12");
1380 TEST_PRINTF_TIME (12, 0, 0, "%I", "12");
1381 TEST_PRINTF_TIME (15, 0, 0, "%I", "03");
1382 TEST_PRINTF ("%j", "297");
1383 TEST_PRINTF ("%k", " 0");
1384 TEST_PRINTF_TIME (13, 13, 13, "%k", "13");
1385 TEST_PRINTF ("%l", "12");
1386 TEST_PRINTF_TIME (12, 0, 0, "%I", "12");
1387 TEST_PRINTF_TIME (13, 13, 13, "%l", " 1");
1388 TEST_PRINTF_TIME (10, 13, 13, "%l", "10");
1389 TEST_PRINTF ("%m", "10");
1390 TEST_PRINTF ("%M", "00");
1391 TEST_PRINTF ("%p", "AM");
1392 TEST_PRINTF_TIME (13, 13, 13, "%p", "PM");
1393 TEST_PRINTF ("%P", "am");
1394 TEST_PRINTF_TIME (13, 13, 13, "%P", "pm");
1395 TEST_PRINTF ("%r", "12:00:00 AM");
1396 TEST_PRINTF_TIME (13, 13, 13, "%r", "01:13:13 PM");
1397 TEST_PRINTF ("%R", "00:00");
1398 TEST_PRINTF_TIME (13, 13, 31, "%R", "13:13");
1399 TEST_PRINTF ("%S", "00");
1400 TEST_PRINTF ("%t", " ");
1401 TEST_PRINTF ("%u", "6");
1402 TEST_PRINTF ("%x", "10/24/09");
1403 TEST_PRINTF ("%X", "00:00:00");
1404 TEST_PRINTF_TIME (13, 14, 15, "%X", "13:14:15");
1405 TEST_PRINTF ("%y", "09");
1406 TEST_PRINTF ("%Y", "2009");
1407 TEST_PRINTF ("%%", "%");
1408 TEST_PRINTF ("%", "");
1409 TEST_PRINTF ("%9", NULL);
1410 #ifdef G_OS_UNIX
1411 TEST_PRINTF ("%Z", dst);
1412 #elif defined G_OS_WIN32
1413 TEST_PRINTF ("%Z", "Pacific Standard Time");
1414 #endif
1417 static void
1418 test_non_utf8_printf (void)
1420 gchar *oldlocale;
1422 oldlocale = g_strdup (setlocale (LC_ALL, NULL));
1423 setlocale (LC_ALL, "ja_JP.eucjp");
1424 if (strstr (setlocale (LC_ALL, NULL), "ja_JP") == NULL)
1426 g_test_skip ("locale ja_JP.eucjp not available, skipping non-UTF8 tests");
1427 g_free (oldlocale);
1428 return;
1430 if (g_get_charset (NULL))
1432 g_test_skip ("locale ja_JP.eucjp may be available, but glib seems to think that it's equivalent to UTF-8, skipping non-UTF-8 tests. This is a known issue on Darwin");
1433 setlocale (LC_ALL, oldlocale);
1434 g_free (oldlocale);
1435 return;
1438 /* These are the outputs that ja_JP.UTF-8 generates; if everything
1439 * is working then ja_JP.eucjp should generate the same.
1441 TEST_PRINTF ("%a", "\345\234\237");
1442 TEST_PRINTF ("%A", "\345\234\237\346\233\234\346\227\245");
1443 #ifndef __APPLE__ /* OSX just returns the number */
1444 TEST_PRINTF ("%b", "10\346\234\210");
1445 #endif
1446 TEST_PRINTF ("%B", "10\346\234\210");
1447 TEST_PRINTF ("%d", "24");
1448 TEST_PRINTF_DATE (2009, 1, 1, "%d", "01");
1449 TEST_PRINTF ("%e", "24"); // fixme
1450 #ifndef __APPLE__ /* OSX just returns the number */
1451 TEST_PRINTF ("%h", "10\346\234\210");
1452 #endif
1453 TEST_PRINTF ("%H", "00");
1454 TEST_PRINTF_TIME (15, 0, 0, "%H", "15");
1455 TEST_PRINTF ("%I", "12");
1456 TEST_PRINTF_TIME (12, 0, 0, "%I", "12");
1457 TEST_PRINTF_TIME (15, 0, 0, "%I", "03");
1458 TEST_PRINTF ("%j", "297");
1459 TEST_PRINTF ("%k", " 0");
1460 TEST_PRINTF_TIME (13, 13, 13, "%k", "13");
1461 TEST_PRINTF ("%l", "12");
1462 TEST_PRINTF_TIME (12, 0, 0, "%I", "12");
1463 TEST_PRINTF_TIME (13, 13, 13, "%l", " 1");
1464 TEST_PRINTF_TIME (10, 13, 13, "%l", "10");
1465 TEST_PRINTF ("%m", "10");
1466 TEST_PRINTF ("%M", "00");
1467 #ifndef __APPLE__ /* OSX returns latin "AM", not japanese */
1468 TEST_PRINTF ("%p", "\345\215\210\345\211\215");
1469 TEST_PRINTF_TIME (13, 13, 13, "%p", "\345\215\210\345\276\214");
1470 TEST_PRINTF ("%P", "\345\215\210\345\211\215");
1471 TEST_PRINTF_TIME (13, 13, 13, "%P", "\345\215\210\345\276\214");
1472 TEST_PRINTF ("%r", "\345\215\210\345\211\21512\346\231\20200\345\210\20600\347\247\222");
1473 TEST_PRINTF_TIME (13, 13, 13, "%r", "\345\215\210\345\276\21401\346\231\20213\345\210\20613\347\247\222");
1474 #endif
1475 TEST_PRINTF ("%R", "00:00");
1476 TEST_PRINTF_TIME (13, 13, 31, "%R", "13:13");
1477 TEST_PRINTF ("%S", "00");
1478 TEST_PRINTF ("%t", " ");
1479 TEST_PRINTF ("%u", "6");
1480 #ifndef __APPLE__ /* OSX returns YYYY/MM/DD in ASCII */
1481 TEST_PRINTF ("%x", "2009\345\271\26410\346\234\21024\346\227\245");
1482 #endif
1483 TEST_PRINTF ("%X", "00\346\231\20200\345\210\20600\347\247\222");
1484 TEST_PRINTF_TIME (13, 14, 15, "%X", "13\346\231\20214\345\210\20615\347\247\222");
1485 TEST_PRINTF ("%y", "09");
1486 TEST_PRINTF ("%Y", "2009");
1487 TEST_PRINTF ("%%", "%");
1488 TEST_PRINTF ("%", "");
1489 TEST_PRINTF ("%9", NULL);
1491 setlocale (LC_ALL, oldlocale);
1492 g_free (oldlocale);
1495 static void
1496 test_modifiers (void)
1498 gchar *oldlocale;
1500 TEST_PRINTF_DATE (2009, 1, 1, "%d", "01");
1501 TEST_PRINTF_DATE (2009, 1, 1, "%_d", " 1");
1502 TEST_PRINTF_DATE (2009, 1, 1, "%-d", "1");
1503 TEST_PRINTF_DATE (2009, 1, 1, "%0d", "01");
1504 TEST_PRINTF_DATE (2009, 1, 21, "%d", "21");
1505 TEST_PRINTF_DATE (2009, 1, 21, "%_d", "21");
1506 TEST_PRINTF_DATE (2009, 1, 21, "%-d", "21");
1507 TEST_PRINTF_DATE (2009, 1, 21, "%0d", "21");
1509 TEST_PRINTF_DATE (2009, 1, 1, "%e", " 1");
1510 TEST_PRINTF_DATE (2009, 1, 1, "%_e", " 1");
1511 TEST_PRINTF_DATE (2009, 1, 1, "%-e", "1");
1512 TEST_PRINTF_DATE (2009, 1, 1, "%0e", "01");
1513 TEST_PRINTF_DATE (2009, 1, 21, "%e", "21");
1514 TEST_PRINTF_DATE (2009, 1, 21, "%_e", "21");
1515 TEST_PRINTF_DATE (2009, 1, 21, "%-e", "21");
1516 TEST_PRINTF_DATE (2009, 1, 21, "%0e", "21");
1518 TEST_PRINTF_TIME ( 1, 0, 0, "%H", "01");
1519 TEST_PRINTF_TIME ( 1, 0, 0, "%_H", " 1");
1520 TEST_PRINTF_TIME ( 1, 0, 0, "%-H", "1");
1521 TEST_PRINTF_TIME ( 1, 0, 0, "%0H", "01");
1522 TEST_PRINTF_TIME (21, 0, 0, "%H", "21");
1523 TEST_PRINTF_TIME (21, 0, 0, "%_H", "21");
1524 TEST_PRINTF_TIME (21, 0, 0, "%-H", "21");
1525 TEST_PRINTF_TIME (21, 0, 0, "%0H", "21");
1527 TEST_PRINTF_TIME ( 1, 0, 0, "%I", "01");
1528 TEST_PRINTF_TIME ( 1, 0, 0, "%_I", " 1");
1529 TEST_PRINTF_TIME ( 1, 0, 0, "%-I", "1");
1530 TEST_PRINTF_TIME ( 1, 0, 0, "%0I", "01");
1531 TEST_PRINTF_TIME (23, 0, 0, "%I", "11");
1532 TEST_PRINTF_TIME (23, 0, 0, "%_I", "11");
1533 TEST_PRINTF_TIME (23, 0, 0, "%-I", "11");
1534 TEST_PRINTF_TIME (23, 0, 0, "%0I", "11");
1536 TEST_PRINTF_TIME ( 1, 0, 0, "%k", " 1");
1537 TEST_PRINTF_TIME ( 1, 0, 0, "%_k", " 1");
1538 TEST_PRINTF_TIME ( 1, 0, 0, "%-k", "1");
1539 TEST_PRINTF_TIME ( 1, 0, 0, "%0k", "01");
1541 oldlocale = g_strdup (setlocale (LC_ALL, NULL));
1542 setlocale (LC_ALL, "fa_IR.utf-8");
1543 if (strstr (setlocale (LC_ALL, NULL), "fa_IR") != NULL)
1545 TEST_PRINTF_TIME (23, 0, 0, "%OH", "\333\262\333\263"); /* '23' */
1546 TEST_PRINTF_TIME (23, 0, 0, "%OI", "\333\261\333\261"); /* '11' */
1547 TEST_PRINTF_TIME (23, 0, 0, "%OM", "\333\260\333\260"); /* '00' */
1549 TEST_PRINTF_DATE (2011, 7, 1, "%Om", "\333\260\333\267"); /* '07' */
1550 TEST_PRINTF_DATE (2011, 7, 1, "%0Om", "\333\260\333\267"); /* '07' */
1551 TEST_PRINTF_DATE (2011, 7, 1, "%-Om", "\333\267"); /* '7' */
1552 TEST_PRINTF_DATE (2011, 7, 1, "%_Om", " \333\267"); /* ' 7' */
1554 else
1555 g_test_skip ("locale fa_IR not available, skipping O modifier tests");
1556 setlocale (LC_ALL, oldlocale);
1557 g_free (oldlocale);
1560 /* Test that the `O` modifier for g_date_time_format() works with %B, %b and %h;
1561 * i.e. whether genitive month names are supported. */
1562 static void
1563 test_month_names (void)
1565 gchar *oldlocale;
1567 g_test_bug ("749206");
1569 /* If running uninstalled (G_TEST_BUILDDIR is set), skip this test, since we
1570 * need the translations to be installed. We can’t mess around with
1571 * bindtextdomain() here, as the compiled .gmo files in po/ are not in the
1572 * right installed directory hierarchy to be successfully loaded by gettext. */
1573 if (g_getenv ("G_TEST_BUILDDIR") != NULL)
1575 g_test_skip ("Skipping due to running uninstalled. "
1576 "This test can only be run when the translations are installed.");
1577 return;
1580 oldlocale = g_strdup (setlocale (LC_ALL, NULL));
1582 /* Make sure that nothing has been changed in western European languages. */
1583 setlocale (LC_ALL, "en_GB.utf-8");
1584 if (strstr (setlocale (LC_ALL, NULL), "en_GB") != NULL)
1586 TEST_PRINTF_DATE (2018, 1, 1, "%B", "January");
1587 TEST_PRINTF_DATE (2018, 2, 1, "%OB", "February");
1588 TEST_PRINTF_DATE (2018, 3, 1, "%b", "Mar");
1589 TEST_PRINTF_DATE (2018, 4, 1, "%Ob", "Apr");
1590 TEST_PRINTF_DATE (2018, 5, 1, "%h", "May");
1591 TEST_PRINTF_DATE (2018, 6, 1, "%Oh", "Jun");
1593 else
1594 g_test_skip ("locale en_GB not available, skipping English month names test");
1596 setlocale (LC_ALL, "de_DE.utf-8");
1597 if (strstr (setlocale (LC_ALL, NULL), "de_DE") != NULL)
1599 TEST_PRINTF_DATE (2018, 7, 1, "%B", "Juli");
1600 TEST_PRINTF_DATE (2018, 8, 1, "%OB", "August");
1601 TEST_PRINTF_DATE (2018, 9, 1, "%b", "Sep");
1602 TEST_PRINTF_DATE (2018, 10, 1, "%Ob", "Okt");
1603 TEST_PRINTF_DATE (2018, 11, 1, "%h", "Nov");
1604 TEST_PRINTF_DATE (2018, 12, 1, "%Oh", "Dez");
1606 else
1607 g_test_skip ("locale de_DE not available, skipping German month names test");
1609 setlocale (LC_ALL, "es_ES.utf-8");
1610 if (strstr (setlocale (LC_ALL, NULL), "es_ES") != NULL)
1612 TEST_PRINTF_DATE (2018, 1, 1, "%B", "enero");
1613 TEST_PRINTF_DATE (2018, 2, 1, "%OB", "febrero");
1614 TEST_PRINTF_DATE (2018, 3, 1, "%b", "mar");
1615 TEST_PRINTF_DATE (2018, 4, 1, "%Ob", "abr");
1616 TEST_PRINTF_DATE (2018, 5, 1, "%h", "may");
1617 TEST_PRINTF_DATE (2018, 6, 1, "%Oh", "jun");
1619 else
1620 g_test_skip ("locale es_ES not available, skipping Spanish month names test");
1622 setlocale (LC_ALL, "fr_FR.utf-8");
1623 if (strstr (setlocale (LC_ALL, NULL), "fr_FR") != NULL)
1625 TEST_PRINTF_DATE (2018, 7, 1, "%B", "juillet");
1626 TEST_PRINTF_DATE (2018, 8, 1, "%OB", "août");
1627 TEST_PRINTF_DATE (2018, 9, 1, "%b", "sept.");
1628 TEST_PRINTF_DATE (2018, 10, 1, "%Ob", "oct.");
1629 TEST_PRINTF_DATE (2018, 11, 1, "%h", "nov.");
1630 TEST_PRINTF_DATE (2018, 12, 1, "%Oh", "déc.");
1632 else
1633 g_test_skip ("locale fr_FR not available, skipping French month names test");
1635 /* Make sure that there are visible changes in some European languages. */
1636 setlocale (LC_ALL, "el_GR.utf-8");
1637 if (strstr (setlocale (LC_ALL, NULL), "el_GR") != NULL)
1639 TEST_PRINTF_DATE (2018, 1, 1, "%B", "Ιανουαρίου");
1640 TEST_PRINTF_DATE (2018, 2, 1, "%B", "Φεβρουαρίου");
1641 TEST_PRINTF_DATE (2018, 3, 1, "%B", "Μαρτίου");
1642 TEST_PRINTF_DATE (2018, 4, 1, "%OB", "Απρίλιος");
1643 TEST_PRINTF_DATE (2018, 5, 1, "%OB", "Μάιος");
1644 TEST_PRINTF_DATE (2018, 6, 1, "%OB", "Ιούνιος");
1645 TEST_PRINTF_DATE (2018, 7, 1, "%b", "Ιουλ");
1646 TEST_PRINTF_DATE (2018, 8, 1, "%Ob", "Αύγ");
1648 else
1649 g_test_skip ("locale el_GR not available, skipping Greek month names test");
1651 setlocale (LC_ALL, "hr_HR.utf-8");
1652 if (strstr (setlocale (LC_ALL, NULL), "hr_HR") != NULL)
1654 TEST_PRINTF_DATE (2018, 5, 1, "%B", "svibnja");
1655 TEST_PRINTF_DATE (2018, 6, 1, "%B", "lipnja");
1656 TEST_PRINTF_DATE (2018, 7, 1, "%B", "srpnja");
1657 TEST_PRINTF_DATE (2018, 8, 1, "%OB", "Kolovoz");
1658 TEST_PRINTF_DATE (2018, 9, 1, "%OB", "Rujan");
1659 TEST_PRINTF_DATE (2018, 10, 1, "%OB", "Listopad");
1660 TEST_PRINTF_DATE (2018, 11, 1, "%b", "Stu");
1661 TEST_PRINTF_DATE (2018, 12, 1, "%Ob", "Pro");
1663 else
1664 g_test_skip ("locale hr_HR not available, skipping Croatian month names test");
1666 setlocale (LC_ALL, "lt_LT.utf-8");
1667 if (strstr (setlocale (LC_ALL, NULL), "lt_LT") != NULL)
1669 TEST_PRINTF_DATE (2018, 1, 1, "%B", "sausio");
1670 TEST_PRINTF_DATE (2018, 2, 1, "%B", "vasario");
1671 TEST_PRINTF_DATE (2018, 3, 1, "%B", "kovo");
1672 TEST_PRINTF_DATE (2018, 4, 1, "%OB", "balandis");
1673 TEST_PRINTF_DATE (2018, 5, 1, "%OB", "gegužė");
1674 TEST_PRINTF_DATE (2018, 6, 1, "%OB", "birželis");
1675 TEST_PRINTF_DATE (2018, 7, 1, "%b", "liep.");
1676 TEST_PRINTF_DATE (2018, 8, 1, "%Ob", "rugp.");
1678 else
1679 g_test_skip ("locale lt_LT not available, skipping Lithuanian month names test");
1681 setlocale (LC_ALL, "pl_PL.utf-8");
1682 if (strstr (setlocale (LC_ALL, NULL), "pl_PL") != NULL)
1684 TEST_PRINTF_DATE (2018, 5, 1, "%B", "maja");
1685 TEST_PRINTF_DATE (2018, 6, 1, "%B", "czerwca");
1686 TEST_PRINTF_DATE (2018, 7, 1, "%B", "lipca");
1687 TEST_PRINTF_DATE (2018, 8, 1, "%OB", "sierpień");
1688 TEST_PRINTF_DATE (2018, 9, 1, "%OB", "wrzesień");
1689 TEST_PRINTF_DATE (2018, 10, 1, "%OB", "październik");
1690 TEST_PRINTF_DATE (2018, 11, 1, "%b", "lis");
1691 TEST_PRINTF_DATE (2018, 12, 1, "%Ob", "gru");
1693 else
1694 g_test_skip ("locale pl_PL not available, skipping Polish month names test");
1696 setlocale (LC_ALL, "ru_RU.utf-8");
1697 if (strstr (setlocale (LC_ALL, NULL), "ru_RU") != NULL)
1699 TEST_PRINTF_DATE (2018, 1, 1, "%B", "января");
1700 TEST_PRINTF_DATE (2018, 2, 1, "%B", "февраля");
1701 TEST_PRINTF_DATE (2018, 3, 1, "%B", "марта");
1702 TEST_PRINTF_DATE (2018, 4, 1, "%OB", "Апрель");
1703 TEST_PRINTF_DATE (2018, 5, 1, "%OB", "Май");
1704 TEST_PRINTF_DATE (2018, 6, 1, "%OB", "Июнь");
1705 TEST_PRINTF_DATE (2018, 7, 1, "%b", "июл");
1706 TEST_PRINTF_DATE (2018, 8, 1, "%Ob", "авг");
1707 /* This difference is very important in Russian: */
1708 TEST_PRINTF_DATE (2018, 5, 1, "%b", "мая");
1709 TEST_PRINTF_DATE (2018, 5, 1, "%Ob", "май");
1711 else
1712 g_test_skip ("locale ru_RU not available, skipping Russian month names test");
1714 setlocale (LC_ALL, oldlocale);
1715 g_free (oldlocale);
1718 static void
1719 test_GDateTime_dst (void)
1721 GDateTime *dt1, *dt2;
1722 GTimeZone *tz;
1724 /* this date has the DST state set for Europe/London */
1725 #ifdef G_OS_UNIX
1726 tz = g_time_zone_new ("Europe/London");
1727 #elif defined G_OS_WIN32
1728 tz = g_time_zone_new ("GMT Standard Time");
1729 #endif
1730 dt1 = g_date_time_new (tz, 2009, 8, 15, 3, 0, 1);
1731 g_assert (g_date_time_is_daylight_savings (dt1));
1732 g_assert_cmpint (g_date_time_get_utc_offset (dt1) / G_USEC_PER_SEC, ==, 3600);
1733 g_assert_cmpint (g_date_time_get_hour (dt1), ==, 3);
1735 /* add 6 months to clear the DST flag but keep the same time */
1736 dt2 = g_date_time_add_months (dt1, 6);
1737 g_assert (!g_date_time_is_daylight_savings (dt2));
1738 g_assert_cmpint (g_date_time_get_utc_offset (dt2) / G_USEC_PER_SEC, ==, 0);
1739 g_assert_cmpint (g_date_time_get_hour (dt2), ==, 3);
1741 g_date_time_unref (dt2);
1742 g_date_time_unref (dt1);
1744 /* now do the reverse: start with a non-DST state and move to DST */
1745 dt1 = g_date_time_new (tz, 2009, 2, 15, 2, 0, 1);
1746 g_assert (!g_date_time_is_daylight_savings (dt1));
1747 g_assert_cmpint (g_date_time_get_hour (dt1), ==, 2);
1749 dt2 = g_date_time_add_months (dt1, 6);
1750 g_assert (g_date_time_is_daylight_savings (dt2));
1751 g_assert_cmpint (g_date_time_get_hour (dt2), ==, 2);
1753 g_date_time_unref (dt2);
1754 g_date_time_unref (dt1);
1755 g_time_zone_unref (tz);
1758 static inline gboolean
1759 is_leap_year (gint year)
1761 g_assert (1 <= year && year <= 9999);
1763 return year % 400 == 0 || (year % 4 == 0 && year % 100 != 0);
1766 static inline gint
1767 days_in_month (gint year, gint month)
1769 const gint table[2][13] = {
1770 {0, 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31},
1771 {0, 31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31}
1774 g_assert (1 <= month && month <= 12);
1776 return table[is_leap_year (year)][month];
1779 static void
1780 test_all_dates (void)
1782 gint year, month, day;
1783 GTimeZone *timezone;
1784 gint64 unix_time;
1785 gint day_of_year;
1786 gint week_year;
1787 gint week_num;
1788 gint weekday;
1790 /* save some time by hanging on to this. */
1791 timezone = g_time_zone_new_utc ();
1793 unix_time = G_GINT64_CONSTANT(-62135596800);
1795 /* 0001-01-01 is 0001-W01-1 */
1796 week_year = 1;
1797 week_num = 1;
1798 weekday = 1;
1801 /* The calendar makes a full cycle every 400 years, so we could
1802 * theoretically just test years 1 through 400. That assumes that our
1803 * software has no bugs, so probably we should just test them all. :)
1805 for (year = 1; year <= 9999; year++)
1807 day_of_year = 1;
1809 for (month = 1; month <= 12; month++)
1810 for (day = 1; day <= days_in_month (year, month); day++)
1812 GDateTime *dt;
1814 dt = g_date_time_new (timezone, year, month, day, 0, 0, 0);
1816 #if 0
1817 g_printerr ("%04d-%02d-%02d = %04d-W%02d-%d = %04d-%03d\n",
1818 year, month, day,
1819 week_year, week_num, weekday,
1820 year, day_of_year);
1821 #endif
1823 /* sanity check */
1824 if G_UNLIKELY (g_date_time_get_year (dt) != year ||
1825 g_date_time_get_month (dt) != month ||
1826 g_date_time_get_day_of_month (dt) != day)
1827 g_error ("%04d-%02d-%02d comes out as %04d-%02d-%02d",
1828 year, month, day,
1829 g_date_time_get_year (dt),
1830 g_date_time_get_month (dt),
1831 g_date_time_get_day_of_month (dt));
1833 if G_UNLIKELY (g_date_time_get_week_numbering_year (dt) != week_year ||
1834 g_date_time_get_week_of_year (dt) != week_num ||
1835 g_date_time_get_day_of_week (dt) != weekday)
1836 g_error ("%04d-%02d-%02d should be %04d-W%02d-%d but "
1837 "comes out as %04d-W%02d-%d", year, month, day,
1838 week_year, week_num, weekday,
1839 g_date_time_get_week_numbering_year (dt),
1840 g_date_time_get_week_of_year (dt),
1841 g_date_time_get_day_of_week (dt));
1843 if G_UNLIKELY (g_date_time_to_unix (dt) != unix_time)
1844 g_error ("%04d-%02d-%02d 00:00:00 UTC should have unix time %"
1845 G_GINT64_FORMAT " but comes out as %"G_GINT64_FORMAT,
1846 year, month, day, unix_time, g_date_time_to_unix (dt));
1848 if G_UNLIKELY (g_date_time_get_day_of_year (dt) != day_of_year)
1849 g_error ("%04d-%02d-%02d should be day of year %d"
1850 " but comes out as %d", year, month, day,
1851 day_of_year, g_date_time_get_day_of_year (dt));
1853 if G_UNLIKELY (g_date_time_get_hour (dt) != 0 ||
1854 g_date_time_get_minute (dt) != 0 ||
1855 g_date_time_get_seconds (dt) != 0)
1856 g_error ("%04d-%02d-%02d 00:00:00 UTC comes out "
1857 "as %02d:%02d:%02.6f", year, month, day,
1858 g_date_time_get_hour (dt),
1859 g_date_time_get_minute (dt),
1860 g_date_time_get_seconds (dt));
1861 /* done */
1863 /* add 24 hours to unix time */
1864 unix_time += 24 * 60 * 60;
1866 /* move day of year forward */
1867 day_of_year++;
1869 /* move the week date forward */
1870 if (++weekday == 8)
1872 weekday = 1; /* Sunday -> Monday */
1874 /* NOTE: year/month/day is the final day of the week we
1875 * just finished.
1877 * If we just finished the last week of last year then
1878 * we are definitely starting the first week of this
1879 * year.
1881 * Otherwise, if we're still in this year, but Sunday
1882 * fell on or after December 28 then December 29, 30, 31
1883 * could be days within the next year's first year.
1885 if (year != week_year || (month == 12 && day >= 28))
1887 /* first week of the new year */
1888 week_num = 1;
1889 week_year++;
1891 else
1892 week_num++;
1895 g_date_time_unref (dt);
1899 g_time_zone_unref (timezone);
1902 static void
1903 test_z (void)
1905 GTimeZone *tz;
1906 GDateTime *dt;
1907 gchar *p;
1909 g_test_bug ("642935");
1911 tz = g_time_zone_new ("-08:00");
1912 dt = g_date_time_new (tz, 1, 1, 1, 0, 0, 0);
1914 p = g_date_time_format (dt, "%z");
1915 g_assert_cmpstr (p, ==, "-0800");
1916 g_free (p);
1918 p = g_date_time_format (dt, "%:z");
1919 g_assert_cmpstr (p, ==, "-08:00");
1920 g_free (p);
1922 p = g_date_time_format (dt, "%::z");
1923 g_assert_cmpstr (p, ==, "-08:00:00");
1924 g_free (p);
1926 p = g_date_time_format (dt, "%:::z");
1927 g_assert_cmpstr (p, ==, "-08");
1928 g_free (p);
1930 g_date_time_unref (dt);
1931 g_time_zone_unref (tz);
1933 tz = g_time_zone_new ("+00:00");
1934 dt = g_date_time_new (tz, 1, 1, 1, 0, 0, 0);
1935 p = g_date_time_format (dt, "%:::z");
1936 g_assert_cmpstr (p, ==, "+00");
1937 g_free (p);
1938 g_date_time_unref (dt);
1939 g_time_zone_unref (tz);
1941 tz = g_time_zone_new ("+08:23");
1942 dt = g_date_time_new (tz, 1, 1, 1, 0, 0, 0);
1943 p = g_date_time_format (dt, "%:::z");
1944 g_assert_cmpstr (p, ==, "+08:23");
1945 g_free (p);
1946 g_date_time_unref (dt);
1947 g_time_zone_unref (tz);
1949 tz = g_time_zone_new ("+08:23:45");
1950 dt = g_date_time_new (tz, 1, 1, 1, 0, 0, 0);
1951 p = g_date_time_format (dt, "%:::z");
1952 g_assert_cmpstr (p, ==, "+08:23:45");
1953 g_free (p);
1954 g_date_time_unref (dt);
1955 g_time_zone_unref (tz);
1958 #pragma GCC diagnostic push
1959 #pragma GCC diagnostic ignored "-Wformat-y2k"
1960 static void
1961 test_strftime (void)
1963 #ifdef __linux__
1964 #define TEST_FORMAT \
1965 "a%a A%A b%b B%B c%c C%C d%d e%e F%F g%g G%G h%h H%H I%I j%j m%m M%M " \
1966 "n%n p%p r%r R%R S%S t%t T%T u%u V%V w%w x%x X%X y%y Y%Y z%z Z%Z %%"
1967 time_t t;
1969 /* 127997 is prime, 1315005118 is now */
1970 for (t = 0; t < 1315005118; t += 127997)
1972 GDateTime *date_time;
1973 gchar c_str[1000];
1974 gchar *dt_str;
1976 date_time = g_date_time_new_from_unix_local (t);
1977 dt_str = g_date_time_format (date_time, TEST_FORMAT);
1978 strftime (c_str, sizeof c_str, TEST_FORMAT, localtime (&t));
1979 g_assert_cmpstr (c_str, ==, dt_str);
1980 g_date_time_unref (date_time);
1981 g_free (dt_str);
1983 #endif
1985 #pragma GCC diagnostic pop
1987 /* Check that g_date_time_format() correctly returns %NULL for format
1988 * placeholders which are not supported in the current locale. */
1989 static void
1990 test_GDateTime_strftime_error_handling (void)
1992 gchar *oldlocale;
1994 oldlocale = g_strdup (setlocale (LC_ALL, NULL));
1995 setlocale (LC_ALL, "de_DE.utf-8");
1996 if (strstr (setlocale (LC_ALL, NULL), "de_DE") != NULL)
1998 /* de_DE doesn’t ever write time in 12-hour notation, so %r is
1999 * unsupported for it. */
2000 TEST_PRINTF_TIME (23, 0, 0, "%r", NULL);
2002 else
2003 g_test_skip ("locale de_DE not available, skipping error handling tests");
2004 setlocale (LC_ALL, oldlocale);
2005 g_free (oldlocale);
2008 static void
2009 test_find_interval (void)
2011 GTimeZone *tz;
2012 GDateTime *dt;
2013 gint64 u;
2014 gint i1, i2;
2016 #ifdef G_OS_UNIX
2017 tz = g_time_zone_new ("America/Toronto");
2018 #elif defined G_OS_WIN32
2019 tz = g_time_zone_new ("Eastern Standard Time");
2020 #endif
2021 dt = g_date_time_new_utc (2010, 11, 7, 1, 30, 0);
2022 u = g_date_time_to_unix (dt);
2024 i1 = g_time_zone_find_interval (tz, G_TIME_TYPE_STANDARD, u);
2025 i2 = g_time_zone_find_interval (tz, G_TIME_TYPE_DAYLIGHT, u);
2027 g_assert_cmpint (i1, !=, i2);
2029 g_date_time_unref (dt);
2031 dt = g_date_time_new_utc (2010, 3, 14, 2, 0, 0);
2032 u = g_date_time_to_unix (dt);
2034 i1 = g_time_zone_find_interval (tz, G_TIME_TYPE_STANDARD, u);
2035 g_assert_cmpint (i1, ==, -1);
2037 g_date_time_unref (dt);
2038 g_time_zone_unref (tz);
2041 static void
2042 test_adjust_time (void)
2044 GTimeZone *tz;
2045 GDateTime *dt;
2046 gint64 u, u2;
2047 gint i1, i2;
2049 #ifdef G_OS_UNIX
2050 tz = g_time_zone_new ("America/Toronto");
2051 #elif defined G_OS_WIN32
2052 tz = g_time_zone_new ("Eastern Standard Time");
2053 #endif
2054 dt = g_date_time_new_utc (2010, 11, 7, 1, 30, 0);
2055 u = g_date_time_to_unix (dt);
2056 u2 = u;
2058 i1 = g_time_zone_find_interval (tz, G_TIME_TYPE_DAYLIGHT, u);
2059 i2 = g_time_zone_adjust_time (tz, G_TIME_TYPE_DAYLIGHT, &u2);
2061 g_assert_cmpint (i1, ==, i2);
2062 g_assert (u == u2);
2064 g_date_time_unref (dt);
2066 dt = g_date_time_new_utc (2010, 3, 14, 2, 30, 0);
2067 u2 = g_date_time_to_unix (dt);
2068 g_date_time_unref (dt);
2070 dt = g_date_time_new_utc (2010, 3, 14, 3, 0, 0);
2071 u = g_date_time_to_unix (dt);
2072 g_date_time_unref (dt);
2074 i1 = g_time_zone_adjust_time (tz, G_TIME_TYPE_DAYLIGHT, &u2);
2075 g_assert (u == u2);
2077 g_time_zone_unref (tz);
2080 static void
2081 test_no_header (void)
2083 GTimeZone *tz;
2085 tz = g_time_zone_new ("blabla");
2087 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 0), ==, "UTC");
2088 g_assert_cmpint (g_time_zone_get_offset (tz, 0), ==, 0);
2089 g_assert (!g_time_zone_is_dst (tz, 0));
2091 g_time_zone_unref (tz);
2094 static void
2095 test_posix_parse (void)
2097 GTimeZone *tz;
2098 GDateTime *gdt1, *gdt2;
2100 tz = g_time_zone_new ("PST");
2101 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 0), ==, "UTC");
2102 g_assert_cmpint (g_time_zone_get_offset (tz, 0), ==, 0);
2103 g_assert (!g_time_zone_is_dst (tz, 0));
2104 g_time_zone_unref (tz);
2106 tz = g_time_zone_new ("PST8");
2107 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 0), ==, "PST");
2108 g_assert_cmpint (g_time_zone_get_offset (tz, 0), ==, - 8 * 3600);
2109 g_assert (!g_time_zone_is_dst (tz, 0));
2110 g_time_zone_unref (tz);
2112 /* This fails rules_from_identifier on Unix (though not on Windows)
2113 * but passes anyway because PST8PDT is a zone name.
2115 tz = g_time_zone_new ("PST8PDT");
2116 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 0), ==, "PST");
2117 g_assert_cmpint (g_time_zone_get_offset (tz, 0), ==, - 8 * 3600);
2118 g_assert (!g_time_zone_is_dst (tz, 0));
2119 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 1), ==, "PDT");
2120 g_assert_cmpint (g_time_zone_get_offset (tz, 1), ==,- 7 * 3600);
2121 g_assert (g_time_zone_is_dst (tz, 1));
2122 g_time_zone_unref (tz);
2124 tz = g_time_zone_new ("PST8PDT6:32:15");
2125 #ifdef G_OS_WIN32
2126 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 0), ==, "PST");
2127 g_assert_cmpint (g_time_zone_get_offset (tz, 0), ==, - 8 * 3600);
2128 g_assert (!g_time_zone_is_dst (tz, 0));
2129 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 1), ==, "PDT");
2130 g_assert_cmpint (g_time_zone_get_offset (tz, 1), ==, - 6 * 3600 - 32 *60 - 15);
2131 g_assert (g_time_zone_is_dst (tz, 1));
2132 gdt1 = g_date_time_new (tz, 2012, 12, 6, 11, 15, 23.0);
2133 gdt2 = g_date_time_new (tz, 2012, 6, 6, 11, 15, 23.0);
2134 g_assert (!g_date_time_is_daylight_savings (gdt1));
2135 g_assert_cmpint (g_date_time_get_utc_offset (gdt1) / 1000000, ==, -28800);
2136 g_assert (g_date_time_is_daylight_savings (gdt2));
2137 g_assert_cmpint (g_date_time_get_utc_offset (gdt2) / 1000000, ==, -23535);
2138 g_date_time_unref (gdt1);
2139 g_date_time_unref (gdt2);
2140 #else
2141 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 0), ==, "UTC");
2142 g_assert_cmpint (g_time_zone_get_offset (tz, 0), ==, 0);
2143 g_assert (!g_time_zone_is_dst (tz, 0));
2144 #endif
2145 g_time_zone_unref (tz);
2147 tz = g_time_zone_new ("NZST-12:00:00NZDT-13:00:00,M10.1.0,M3.3.0");
2148 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 0), ==, "NZST");
2149 g_assert_cmpint (g_time_zone_get_offset (tz, 0), ==, 12 * 3600);
2150 g_assert (!g_time_zone_is_dst (tz, 0));
2151 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 1), ==, "NZDT");
2152 g_assert_cmpint (g_time_zone_get_offset (tz, 1), ==, 13 * 3600);
2153 g_assert (g_time_zone_is_dst (tz, 1));
2154 gdt1 = g_date_time_new (tz, 2012, 3, 18, 0, 15, 23.0);
2155 gdt2 = g_date_time_new (tz, 2012, 3, 18, 3, 15, 23.0);
2156 g_assert (g_date_time_is_daylight_savings (gdt1));
2157 g_assert_cmpint (g_date_time_get_utc_offset (gdt1) / 1000000, ==, 46800);
2158 g_assert (!g_date_time_is_daylight_savings (gdt2));
2159 g_assert_cmpint (g_date_time_get_utc_offset (gdt2) / 1000000, ==, 43200);
2160 g_date_time_unref (gdt1);
2161 g_date_time_unref (gdt2);
2162 gdt1 = g_date_time_new (tz, 2012, 10, 7, 3, 15, 23.0);
2163 gdt2 = g_date_time_new (tz, 2012, 10, 7, 1, 15, 23.0);
2164 g_assert (g_date_time_is_daylight_savings (gdt1));
2165 g_assert_cmpint (g_date_time_get_utc_offset (gdt1) / 1000000, ==, 46800);
2166 g_assert (!g_date_time_is_daylight_savings (gdt2));
2167 g_assert_cmpint (g_date_time_get_utc_offset (gdt2) / 1000000, ==, 43200);
2168 g_date_time_unref (gdt1);
2169 g_date_time_unref (gdt2);
2170 g_time_zone_unref (tz);
2172 tz = g_time_zone_new ("NZST-12:00:00NZDT-13:00:00,280,77");
2173 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 0), ==, "NZST");
2174 g_assert_cmpint (g_time_zone_get_offset (tz, 0), ==, 12 * 3600);
2175 g_assert (!g_time_zone_is_dst (tz, 0));
2176 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 1), ==, "NZDT");
2177 g_assert_cmpint (g_time_zone_get_offset (tz, 1), ==, 13 * 3600);
2178 g_assert (g_time_zone_is_dst (tz, 1));
2179 gdt1 = g_date_time_new (tz, 2012, 3, 18, 0, 15, 23.0);
2180 gdt2 = g_date_time_new (tz, 2012, 3, 18, 3, 15, 23.0);
2181 g_assert (g_date_time_is_daylight_savings (gdt1));
2182 g_assert_cmpint (g_date_time_get_utc_offset (gdt1) / 1000000, ==, 46800);
2183 g_assert (!g_date_time_is_daylight_savings (gdt2));
2184 g_assert_cmpint (g_date_time_get_utc_offset (gdt2) / 1000000, ==, 43200);
2185 g_date_time_unref (gdt1);
2186 g_date_time_unref (gdt2);
2187 gdt1 = g_date_time_new (tz, 2012, 10, 7, 3, 15, 23.0);
2188 gdt2 = g_date_time_new (tz, 2012, 10, 7, 1, 15, 23.0);
2189 g_assert (g_date_time_is_daylight_savings (gdt1));
2190 g_assert_cmpint (g_date_time_get_utc_offset (gdt1) / 1000000, ==, 46800);
2191 g_assert (!g_date_time_is_daylight_savings (gdt2));
2192 g_assert_cmpint (g_date_time_get_utc_offset (gdt2) / 1000000, ==, 43200);
2193 g_date_time_unref (gdt1);
2194 g_date_time_unref (gdt2);
2195 g_time_zone_unref (tz);
2197 tz = g_time_zone_new ("NZST-12:00:00NZDT-13:00:00,J279,J76");
2198 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 0), ==, "NZST");
2199 g_assert_cmpint (g_time_zone_get_offset (tz, 0), ==, 12 * 3600);
2200 g_assert (!g_time_zone_is_dst (tz, 0));
2201 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 1), ==, "NZDT");
2202 g_assert_cmpint (g_time_zone_get_offset (tz, 1), ==, 13 * 3600);
2203 g_assert (g_time_zone_is_dst (tz, 1));
2204 gdt1 = g_date_time_new (tz, 2012, 3, 18, 0, 15, 23.0);
2205 gdt2 = g_date_time_new (tz, 2012, 3, 18, 3, 15, 23.0);
2206 g_assert (g_date_time_is_daylight_savings (gdt1));
2207 g_assert_cmpint (g_date_time_get_utc_offset (gdt1) / 1000000, ==, 46800);
2208 g_assert (!g_date_time_is_daylight_savings (gdt2));
2209 g_assert_cmpint (g_date_time_get_utc_offset (gdt2) / 1000000, ==, 43200);
2210 g_date_time_unref (gdt1);
2211 g_date_time_unref (gdt2);
2212 gdt1 = g_date_time_new (tz, 2012, 10, 7, 3, 15, 23.0);
2213 gdt2 = g_date_time_new (tz, 2012, 10, 7, 1, 15, 23.0);
2214 g_assert (g_date_time_is_daylight_savings (gdt1));
2215 g_assert_cmpint (g_date_time_get_utc_offset (gdt1) / 1000000, ==, 46800);
2216 g_assert (!g_date_time_is_daylight_savings (gdt2));
2217 g_assert_cmpint (g_date_time_get_utc_offset (gdt2) / 1000000, ==, 43200);
2218 g_date_time_unref (gdt1);
2219 g_date_time_unref (gdt2);
2220 g_time_zone_unref (tz);
2222 tz = g_time_zone_new ("NZST-12:00:00NZDT-13:00:00,M10.1.0/07:00,M3.3.0/07:00");
2223 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 0), ==, "NZST");
2224 g_assert_cmpint (g_time_zone_get_offset (tz, 0), ==, 12 * 3600);
2225 g_assert (!g_time_zone_is_dst (tz, 0));
2226 g_assert_cmpstr (g_time_zone_get_abbreviation (tz, 1), ==, "NZDT");
2227 g_assert_cmpint (g_time_zone_get_offset (tz, 1), ==, 13 * 3600);
2228 g_assert (g_time_zone_is_dst (tz, 1));
2229 gdt1 = g_date_time_new (tz, 2012, 3, 18, 5, 15, 23.0);
2230 gdt2 = g_date_time_new (tz, 2012, 3, 18, 8, 15, 23.0);
2231 g_assert (g_date_time_is_daylight_savings (gdt1));
2232 g_assert_cmpint (g_date_time_get_utc_offset (gdt1) / 1000000, ==, 46800);
2233 g_assert (!g_date_time_is_daylight_savings (gdt2));
2234 g_assert_cmpint (g_date_time_get_utc_offset (gdt2) / 1000000, ==, 43200);
2235 g_date_time_unref (gdt1);
2236 g_date_time_unref (gdt2);
2237 gdt1 = g_date_time_new (tz, 2012, 10, 7, 8, 15, 23.0);
2238 gdt2 = g_date_time_new (tz, 2012, 10, 7, 6, 15, 23.0);
2239 g_assert (g_date_time_is_daylight_savings (gdt1));
2240 g_assert_cmpint (g_date_time_get_utc_offset (gdt1) / 1000000, ==, 46800);
2241 g_assert (!g_date_time_is_daylight_savings (gdt2));
2242 g_assert_cmpint (g_date_time_get_utc_offset (gdt2) / 1000000, ==, 43200);
2243 g_date_time_unref (gdt1);
2244 g_date_time_unref (gdt2);
2245 gdt1 = g_date_time_new (tz, 1902, 10, 7, 8, 15, 23.0);
2246 gdt2 = g_date_time_new (tz, 1902, 10, 7, 6, 15, 23.0);
2247 g_assert (!g_date_time_is_daylight_savings (gdt1));
2248 g_assert_cmpint (g_date_time_get_utc_offset (gdt1) / 1000000, ==, 43200);
2249 g_assert (!g_date_time_is_daylight_savings (gdt2));
2250 g_assert_cmpint (g_date_time_get_utc_offset (gdt2) / 1000000, ==, 43200);
2251 g_date_time_unref (gdt1);
2252 g_date_time_unref (gdt2);
2253 gdt1 = g_date_time_new (tz, 2142, 10, 7, 8, 15, 23.0);
2254 gdt2 = g_date_time_new (tz, 2142, 10, 7, 6, 15, 23.0);
2255 g_assert (g_date_time_is_daylight_savings (gdt1));
2256 g_assert_cmpint (g_date_time_get_utc_offset (gdt1) / 1000000, ==, 46800);
2257 g_assert (!g_date_time_is_daylight_savings (gdt2));
2258 g_assert_cmpint (g_date_time_get_utc_offset (gdt2) / 1000000, ==, 43200);
2259 g_date_time_unref (gdt1);
2260 g_date_time_unref (gdt2);
2261 gdt1 = g_date_time_new (tz, 3212, 10, 7, 8, 15, 23.0);
2262 gdt2 = g_date_time_new (tz, 3212, 10, 7, 6, 15, 23.0);
2263 g_assert (!g_date_time_is_daylight_savings (gdt1));
2264 g_assert_cmpint (g_date_time_get_utc_offset (gdt1) / 1000000, ==, 43200);
2265 g_assert (!g_date_time_is_daylight_savings (gdt2));
2266 g_assert_cmpint (g_date_time_get_utc_offset (gdt2) / 1000000, ==, 43200);
2267 g_date_time_unref (gdt1);
2268 g_date_time_unref (gdt2);
2269 g_time_zone_unref (tz);
2272 static void
2273 test_GDateTime_floating_point (void)
2275 GDateTime *dt;
2276 GTimeZone *tz;
2278 g_test_bug ("697715");
2280 tz = g_time_zone_new ("-03:00");
2281 dt = g_date_time_new (tz, 2010, 5, 24, 8, 0, 1.000001);
2282 g_time_zone_unref (tz);
2283 g_assert_cmpint (g_date_time_get_microsecond (dt), ==, 1);
2284 g_date_time_unref (dt);
2287 gint
2288 main (gint argc,
2289 gchar *argv[])
2291 g_test_init (&argc, &argv, NULL);
2292 g_test_bug_base ("http://bugzilla.gnome.org/");
2294 /* GDateTime Tests */
2295 bind_textdomain_codeset ("glib20", "UTF-8");
2297 g_test_add_func ("/GDateTime/invalid", test_GDateTime_invalid);
2298 g_test_add_func ("/GDateTime/add_days", test_GDateTime_add_days);
2299 g_test_add_func ("/GDateTime/add_full", test_GDateTime_add_full);
2300 g_test_add_func ("/GDateTime/add_hours", test_GDateTime_add_hours);
2301 g_test_add_func ("/GDateTime/add_minutes", test_GDateTime_add_minutes);
2302 g_test_add_func ("/GDateTime/add_months", test_GDateTime_add_months);
2303 g_test_add_func ("/GDateTime/add_seconds", test_GDateTime_add_seconds);
2304 g_test_add_func ("/GDateTime/add_weeks", test_GDateTime_add_weeks);
2305 g_test_add_func ("/GDateTime/add_years", test_GDateTime_add_years);
2306 g_test_add_func ("/GDateTime/compare", test_GDateTime_compare);
2307 g_test_add_func ("/GDateTime/diff", test_GDateTime_diff);
2308 g_test_add_func ("/GDateTime/equal", test_GDateTime_equal);
2309 g_test_add_func ("/GDateTime/get_day_of_week", test_GDateTime_get_day_of_week);
2310 g_test_add_func ("/GDateTime/get_day_of_month", test_GDateTime_get_day_of_month);
2311 g_test_add_func ("/GDateTime/get_day_of_year", test_GDateTime_get_day_of_year);
2312 g_test_add_func ("/GDateTime/get_hour", test_GDateTime_get_hour);
2313 g_test_add_func ("/GDateTime/get_microsecond", test_GDateTime_get_microsecond);
2314 g_test_add_func ("/GDateTime/get_minute", test_GDateTime_get_minute);
2315 g_test_add_func ("/GDateTime/get_month", test_GDateTime_get_month);
2316 g_test_add_func ("/GDateTime/get_second", test_GDateTime_get_second);
2317 g_test_add_func ("/GDateTime/get_utc_offset", test_GDateTime_get_utc_offset);
2318 g_test_add_func ("/GDateTime/get_year", test_GDateTime_get_year);
2319 g_test_add_func ("/GDateTime/hash", test_GDateTime_hash);
2320 g_test_add_func ("/GDateTime/new_from_unix", test_GDateTime_new_from_unix);
2321 g_test_add_func ("/GDateTime/new_from_unix_utc", test_GDateTime_new_from_unix_utc);
2322 g_test_add_func ("/GDateTime/new_from_unix/overflow", test_GDateTime_new_from_unix_overflow);
2323 g_test_add_func ("/GDateTime/new_from_timeval", test_GDateTime_new_from_timeval);
2324 g_test_add_func ("/GDateTime/new_from_timeval_utc", test_GDateTime_new_from_timeval_utc);
2325 g_test_add_func ("/GDateTime/new_from_timeval/overflow", test_GDateTime_new_from_timeval_overflow);
2326 g_test_add_func ("/GDateTime/new_from_iso8601", test_GDateTime_new_from_iso8601);
2327 g_test_add_func ("/GDateTime/new_full", test_GDateTime_new_full);
2328 g_test_add_func ("/GDateTime/now", test_GDateTime_now);
2329 g_test_add_func ("/GDateTime/printf", test_GDateTime_printf);
2330 g_test_add_func ("/GDateTime/non_utf8_printf", test_non_utf8_printf);
2331 g_test_add_func ("/GDateTime/strftime", test_strftime);
2332 g_test_add_func ("/GDateTime/strftime/error_handling", test_GDateTime_strftime_error_handling);
2333 g_test_add_func ("/GDateTime/modifiers", test_modifiers);
2334 g_test_add_func ("/GDateTime/month_names", test_month_names);
2335 g_test_add_func ("/GDateTime/to_local", test_GDateTime_to_local);
2336 g_test_add_func ("/GDateTime/to_unix", test_GDateTime_to_unix);
2337 g_test_add_func ("/GDateTime/to_timeval", test_GDateTime_to_timeval);
2338 g_test_add_func ("/GDateTime/to_utc", test_GDateTime_to_utc);
2339 g_test_add_func ("/GDateTime/now_utc", test_GDateTime_now_utc);
2340 g_test_add_func ("/GDateTime/dst", test_GDateTime_dst);
2341 g_test_add_func ("/GDateTime/test_z", test_z);
2342 g_test_add_func ("/GDateTime/test-all-dates", test_all_dates);
2343 g_test_add_func ("/GTimeZone/find-interval", test_find_interval);
2344 g_test_add_func ("/GTimeZone/adjust-time", test_adjust_time);
2345 g_test_add_func ("/GTimeZone/no-header", test_no_header);
2346 g_test_add_func ("/GTimeZone/posix-parse", test_posix_parse);
2347 g_test_add_func ("/GTimeZone/floating-point", test_GDateTime_floating_point);
2349 return g_test_run ();