1 /* GLIB - Library of useful routines for C programming
2 * Copyright (C) 1995-1997 Peter Mattis, Spencer Kimball and Josh MacDonald
4 * This library is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU Library General Public
6 * License as published by the Free Software Foundation; either
7 * version 2 of the License, or (at your option) any later version.
9 * This library is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
12 * Library General Public License for more details.
14 * You should have received a copy of the GNU Library General Public
15 * License along with this library; if not, write to the
16 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
17 * Boston, MA 02111-1307, USA.
29 GDate *d = g_new0 (GDate, 1); /* happily, 0 is the invalid flag for everything. */
35 g_date_new_mdy (GDateMonth m, GDateDay day, GDateYear y)
38 g_return_val_if_fail (g_date_valid_mdy (m, day, y), NULL);
49 g_assert (g_date_valid (d));
55 g_date_new_julian (guint32 j)
58 g_return_val_if_fail (g_date_valid_julian (j), NULL);
67 g_assert (g_date_valid (d));
73 g_date_free (GDate *d)
75 g_return_if_fail (d != NULL);
83 g_date_valid (GDate *d)
85 g_return_val_if_fail (d != NULL, FALSE);
87 if (d->julian && d->mdy)
89 return ( g_date_valid_julian (d->julian_days) &&
90 g_date_valid_mdy (d->month, d->day, d->year) );
95 return g_date_valid_mdy (d->month, d->day, d->year);
99 return g_date_valid_julian (d->julian_days);
105 static const guint8 days_in_months[2][13] =
106 { /* error, jan feb mar apr may jun jul aug sep oct nov dec */
107 { 0, 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 },
108 { 0, 31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 } /* leap year */
111 static const guint16 days_in_year[2][14] =
112 { /* 0, jan feb mar apr may jun jul aug sep oct nov dec */
113 { 0, 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334, 365 },
114 { 0, 0, 31, 60, 91, 121, 152, 182, 213, 244, 274, 305, 335, 366 }
118 g_date_valid_month (GDateMonth m)
120 return ( (m > G_DATE_BAD_MONTH) && (m < 13) );
124 g_date_valid_year (GDateYear y)
126 return ( y > G_DATE_BAD_YEAR );
130 g_date_valid_day (GDateDay d)
132 return ( (d > G_DATE_BAD_DAY) && (d < 32) );
136 g_date_valid_weekday (GDateWeekday w)
138 return ( (w > G_DATE_BAD_WEEKDAY) && (w < 8) );
142 g_date_valid_julian (guint32 j)
144 return (j > G_DATE_BAD_JULIAN);
148 g_date_valid_mdy (GDateMonth m,
152 return ( (m > G_DATE_BAD_MONTH) &&
154 (d > G_DATE_BAD_DAY) &&
155 (y > G_DATE_BAD_YEAR) && /* must check before using g_date_is_leap_year */
156 (d <= (g_date_is_leap_year (y) ?
157 days_in_months[1][m] : days_in_months[0][m])) );
161 /* "Julian days" just means an absolute number of days, where Day 1 ==
165 g_date_update_julian (GDate *d)
170 g_return_if_fail (d != NULL);
171 g_return_if_fail (d->mdy);
172 g_return_if_fail (!d->julian);
173 g_return_if_fail (g_date_valid_mdy (d->month, d->day, d->year));
175 /* What we actually do is: multiply years * 365 days in the year,
176 * add the number of years divided by 4, subtract the number of
177 * years divided by 100 and add the number of years divided by 400,
178 * which accounts for leap year stuff. Code from Steffen Beyer's
182 year = d->year - 1; /* we know d->year > 0 since it's valid */
184 d->julian_days = year * 365U;
185 d->julian_days += (year >>= 2); /* divide by 4 and add */
186 d->julian_days -= (year /= 25); /* divides original # years by 100 */
187 d->julian_days += year >> 2; /* divides by 4, which divides original by 400 */
189 index = g_date_is_leap_year (d->year) ? 1 : 0;
191 d->julian_days += days_in_year[index][d->month] + d->day;
193 g_return_if_fail (g_date_valid_julian (d->julian_days));
199 g_date_update_mdy (GDate *d)
205 guint32 A, B, C, D, E, M;
207 g_return_if_fail (d != NULL);
208 g_return_if_fail (d->julian);
209 g_return_if_fail (!d->mdy);
210 g_return_if_fail (g_date_valid_julian (d->julian_days));
212 /* Formula taken from the Calendar FAQ; the formula was for the
213 * Julian Period which starts on 1 January 4713 BC, so we add
214 * 1,721,425 to the number of days before doing the formula.
216 * I'm sure this can be simplified for our 1 January 1 AD period
217 * start, but I can't figure out how to unpack the formula.
220 A = d->julian_days + 1721425 + 32045;
221 B = ( 4 *(A + 36524) )/ 146097 - 1;
222 C = A - (146097 * B)/4;
223 D = ( 4 * (C + 365) ) / 1461 - 1;
224 E = C - ((1461*D) / 4);
225 M = (5 * (E - 1) + 2)/153;
227 m = M + 3 - (12*(M/10));
228 day = E - (153*M + 2)/5;
229 y = 100 * B + D - 4800 + (M/10);
231 #ifdef G_ENABLE_DEBUG
232 if (!g_date_valid_mdy (m, day, y))
234 g_warning ("\nOOPS julian: %u computed mdy: %u %u %u\n",
235 d->julian_days, m, day, y);
247 g_date_weekday (GDate *d)
249 g_return_val_if_fail (d != NULL, G_DATE_BAD_WEEKDAY);
250 g_return_val_if_fail (g_date_valid (d), G_DATE_BAD_WEEKDAY);
254 g_date_update_julian (d);
256 g_return_val_if_fail (d->julian, G_DATE_BAD_WEEKDAY);
258 return ((d->julian_days - 1) % 7) + 1;
262 g_date_month (GDate *d)
264 g_return_val_if_fail (d != NULL, G_DATE_BAD_MONTH);
265 g_return_val_if_fail (g_date_valid (d), G_DATE_BAD_MONTH);
269 g_date_update_mdy (d);
271 g_return_val_if_fail (d->mdy, G_DATE_BAD_MONTH);
277 g_date_year (GDate *d)
279 g_return_val_if_fail (d != NULL, G_DATE_BAD_YEAR);
280 g_return_val_if_fail (g_date_valid (d), G_DATE_BAD_YEAR);
284 g_date_update_mdy (d);
286 g_return_val_if_fail (d->mdy, G_DATE_BAD_YEAR);
292 g_date_day (GDate *d)
294 g_return_val_if_fail (d != NULL, G_DATE_BAD_DAY);
295 g_return_val_if_fail (g_date_valid (d), G_DATE_BAD_DAY);
299 g_date_update_mdy (d);
301 g_return_val_if_fail (d->mdy, G_DATE_BAD_DAY);
307 g_date_julian (GDate *d)
309 g_return_val_if_fail (d != NULL, G_DATE_BAD_JULIAN);
310 g_return_val_if_fail (g_date_valid (d), G_DATE_BAD_JULIAN);
314 g_date_update_julian (d);
316 g_return_val_if_fail (d->julian, G_DATE_BAD_JULIAN);
318 return d->julian_days;
322 g_date_day_of_year (GDate *d)
326 g_return_val_if_fail (d != NULL, 0);
327 g_return_val_if_fail (g_date_valid (d), 0);
331 g_date_update_mdy (d);
333 g_return_val_if_fail (d->mdy, 0);
335 index = g_date_is_leap_year (d->year) ? 1 : 0;
337 return (days_in_year[index][d->month] + d->day);
341 g_date_monday_week_of_year (GDate *d)
347 g_return_val_if_fail (d != NULL, 0);
348 g_return_val_if_fail (g_date_valid (d), 0);
352 g_date_update_mdy (d);
354 g_return_val_if_fail (d->mdy, 0);
356 g_date_clear (&first, 1);
358 g_date_set_mdy (&first, 1, 1, d->year);
360 wd = g_date_weekday (&first) - 1; /* make Monday day 0 */
361 day = g_date_day_of_year (d) - 1;
363 return ((day + wd)/7U + (wd == 0 ? 1 : 0));
367 g_date_sunday_week_of_year (GDate *d)
373 g_return_val_if_fail (d != NULL, 0);
374 g_return_val_if_fail (g_date_valid (d), 0);
378 g_date_update_mdy (d);
380 g_return_val_if_fail (d->mdy, 0);
382 g_date_clear (&first, 1);
384 g_date_set_mdy (&first, 1, 1, d->year);
386 wd = g_date_weekday (&first);
387 if (wd == 7) wd = 0; /* make Sunday day 0 */
388 day = g_date_day_of_year (d) - 1;
390 return ((day + wd)/7U + (wd == 0 ? 1 : 0));
394 g_date_clear (GDate *d, guint ndates)
396 g_return_if_fail (d != NULL);
397 g_return_if_fail (ndates != 0);
399 memset (d, 0x0, ndates*sizeof (GDate));
402 /* These are for the parser, output to the user should use *
403 * g_date_strftime () - this creates more never-freed memory to annoy
404 * all those memory debugger users. :-)
407 static gchar *long_month_names[13] =
409 "Error", NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL
412 static gchar *short_month_names[13] =
414 "Error", NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL
417 /* This tells us if we need to update the parse info */
418 static gchar *current_locale = NULL;
420 /* order of these in the current locale */
421 static GDateMDY mdy_order[3] =
423 G_DATE_MONTH, G_DATE_DAY, G_DATE_YEAR
426 /* Where to chop two-digit years: i.e., for the 1930 default, numbers
427 * 29 and below are counted as in the year 2000, numbers 30 and above
428 * are counted as in the year 1900.
431 static GDateYear twodigit_start_year = 1930;
433 /* It is impossible to enter a year between 1 AD and 99 AD with this
436 static gboolean using_twodigit_years = FALSE;
438 struct _GDateParseTokens {
444 typedef struct _GDateParseTokens GDateParseTokens;
449 g_date_fill_parse_tokens (const gchar *str, GDateParseTokens *pt)
451 gchar num[4][NUM_LEN+1];
455 /* We count 4, but store 3; so we can give an error
458 num[0][0] = num[1][0] = num[2][0] = num[3][0] = '\0';
462 while (*s && pt->num_ints < 4)
466 while (*s && isdigit (*s) && i <= NUM_LEN)
468 num[pt->num_ints][i] = *s;
475 num[pt->num_ints][i] = '\0';
479 if (*s == '\0') break;
484 pt->n[0] = pt->num_ints > 0 ? atoi (num[0]) : 0;
485 pt->n[1] = pt->num_ints > 1 ? atoi (num[1]) : 0;
486 pt->n[2] = pt->num_ints > 2 ? atoi (num[2]) : 0;
488 pt->month = G_DATE_BAD_MONTH;
490 if (pt->num_ints < 3)
495 strncpy (lcstr, str, 127);
500 if (long_month_names[i] != NULL)
502 const gchar *found = strstr (lcstr, long_month_names[i]);
511 if (short_month_names[i] != NULL)
513 const gchar *found = strstr (lcstr, short_month_names[i]);
528 g_date_prepare_to_parse (const gchar *str, GDateParseTokens *pt)
530 const gchar *locale = setlocale (LC_TIME, NULL);
531 gboolean recompute_localeinfo = FALSE;
534 g_return_if_fail (locale != NULL); /* should not happen */
536 g_date_clear (&d, 1); /* clear for scratch use */
538 if ( (current_locale == NULL) || (strcmp (locale, current_locale) != 0) )
540 recompute_localeinfo = TRUE; /* Uh, there used to be a reason for the temporary */
543 if (recompute_localeinfo)
546 GDateParseTokens testpt;
549 g_free (current_locale); /* still works if current_locale == NULL */
551 current_locale = g_strdup (locale);
555 g_date_set_mdy (&d, i, 1, 1);
557 g_return_if_fail (g_date_valid (&d));
559 g_date_strftime (buf, 127, "%b", &d);
560 g_free (short_month_names[i]);
562 short_month_names[i] = g_strdup (buf);
566 g_date_strftime (buf, 127, "%B", &d);
567 g_free (long_month_names[i]);
569 long_month_names[i] = g_strdup (buf);
574 /* Determine MDY order */
576 g_date_set_mdy (&d, 7, 4, 1776); /* had to pick a random day */
578 g_date_strftime (buf, 127, "%x", &d);
580 g_date_fill_parse_tokens (buf, &testpt);
583 while (i < testpt.num_ints)
588 mdy_order[i] = G_DATE_MONTH;
591 mdy_order[i] = G_DATE_DAY;
594 using_twodigit_years = TRUE; /* FALL THRU */
596 mdy_order[i] = G_DATE_YEAR;
599 /* leave it unchanged */
605 #ifdef G_ENABLE_DEBUG
606 g_print ("\n**GDate prepared a new set of locale-specific parse rules.\n");
610 g_print (" %s %s\n", long_month_names[i], short_month_names[i]);
613 if (using_twodigit_years)
615 g_print ("**Using twodigit years with cutoff year: %u\n", twodigit_start_year);
622 switch (mdy_order[i])
625 strings[i] = "Month";
639 g_print ("**Order: %s, %s, %s\n", strings[0], strings[1], strings[2]);
640 g_print ("**Sample date in this locale: `%s'\n\n", buf);
645 g_date_fill_parse_tokens (str, pt);
649 g_date_set_parse (GDate *d,
653 guint m = G_DATE_BAD_MONTH, day = G_DATE_BAD_DAY, y = G_DATE_BAD_YEAR;
655 g_return_if_fail (d != NULL);
660 g_date_prepare_to_parse (str, &pt);
662 #ifdef G_ENABLE_DEBUG
663 g_print ("Found %d ints, `%d' `%d' `%d' and written out month %d\n",
664 pt.num_ints, pt.n[0], pt.n[1], pt.n[2], pt.month);
668 if (pt.num_ints == 4) return; /* presumably a typo; bail out. */
675 g_assert (pt.num_ints < 4); /* i.e., it is 2 or 3 */
677 while (i < pt.num_ints && j < 3)
679 switch (mdy_order[j])
683 if (pt.num_ints == 2 && pt.month != G_DATE_BAD_MONTH)
686 ++j; /* skip months, but don't skip this number */
695 if (pt.num_ints == 2 && pt.month == G_DATE_BAD_MONTH)
698 ++j; /* skip days, since we may have month/year */
708 if (using_twodigit_years && y < 100)
710 guint two = twodigit_start_year % 100;
711 guint century = (twodigit_start_year / 100) * 100;
729 if (pt.num_ints == 3 && !g_date_valid_mdy (m, day, y))
736 if (using_twodigit_years && y < 100)
737 y = G_DATE_BAD_YEAR; /* avoids ambiguity */
740 else if (pt.num_ints == 1)
742 if (pt.month != G_DATE_BAD_MONTH)
744 /* Month name and year? */
751 /* Try yyyymmdd and yymmdd */
753 m = (pt.n[0]/100) % 100;
757 /* FIXME move this into a separate function */
758 if (using_twodigit_years && y < 100)
760 guint two = twodigit_start_year % 100;
761 guint century = (twodigit_start_year / 100) * 100;
771 /* See if we got anything valid out of all this. */
772 /* y < 8000 is to catch 19998 style typos; the library is OK up to 65535 or so */
773 if (y < 8000 && g_date_valid_mdy (m, day, y))
780 #ifdef G_ENABLE_DEBUG
782 g_print ("Rejected MDY %u %u %u\n", m, day, y);
787 g_date_set_time (GDate *d, time_t t)
791 g_return_if_fail (d != NULL);
799 d->month = tm->tm_mon + 1;
800 d->day = tm->tm_mday;
801 d->year = tm->tm_year + 1900;
803 g_return_if_fail (g_date_valid_mdy (d->month, d->day, d->year));
814 g_date_set_month (GDate *d,
817 g_return_if_fail (d != NULL);
818 g_return_if_fail (g_date_valid_month (m));
824 if (g_date_valid_mdy (d->month, d->day, d->year))
831 g_date_set_day (GDate *d,
834 g_return_if_fail (d != NULL);
835 g_return_if_fail (g_date_valid_day (day));
841 if (g_date_valid_mdy (d->month, d->day, d->year))
848 g_date_set_year (GDate *d,
851 g_return_if_fail (d != NULL);
852 g_return_if_fail (g_date_valid_year (y));
858 if (g_date_valid_mdy (d->month, d->day, d->year))
865 g_date_set_mdy (GDate *d,
870 g_return_if_fail (d != NULL);
871 g_return_if_fail (g_date_valid_mdy (m, day, y));
883 g_date_set_julian (GDate *d, guint32 j)
885 g_return_if_fail (d != NULL);
886 g_return_if_fail (g_date_valid_julian (j));
895 g_date_is_first_of_month (GDate *d)
897 g_return_val_if_fail (d != NULL, FALSE);
898 g_return_val_if_fail (g_date_valid (d), FALSE);
902 g_date_update_mdy (d);
904 g_return_val_if_fail (d->mdy, FALSE);
906 if (d->day == 1) return TRUE;
911 g_date_is_last_of_month (GDate *d)
915 g_return_val_if_fail (d != NULL, FALSE);
916 g_return_val_if_fail (g_date_valid (d), FALSE);
920 g_date_update_mdy (d);
922 g_return_val_if_fail (d->mdy, FALSE);
924 index = g_date_is_leap_year (d->year) ? 1 : 0;
926 if (d->day == days_in_months[index][d->month]) return TRUE;
931 g_date_add_days (GDate *d, guint ndays)
933 g_return_if_fail (d != NULL);
934 g_return_if_fail (g_date_valid (d));
938 g_date_update_julian (d);
940 g_return_if_fail (d->julian);
942 d->julian_days += ndays;
947 g_date_subtract_days (GDate *d, guint ndays)
949 g_return_if_fail (d != NULL);
950 g_return_if_fail (g_date_valid (d));
954 g_date_update_julian (d);
956 g_return_if_fail (d->julian);
957 g_return_if_fail (d->julian_days > ndays);
959 d->julian_days -= ndays;
964 g_date_add_months (GDate *d,
970 g_return_if_fail (d != NULL);
971 g_return_if_fail (g_date_valid (d));
975 g_date_update_mdy (d);
977 g_return_if_fail (d->mdy);
979 nmonths += d->month - 1;
984 d->month = months + 1;
987 index = g_date_is_leap_year (d->year) ? 1 : 0;
989 if (d->day > days_in_months[index][d->month])
990 d->day = days_in_months[index][d->month];
994 g_return_if_fail (g_date_valid (d));
998 g_date_subtract_months (GDate *d,
1001 guint years, months;
1004 g_return_if_fail (d != NULL);
1005 g_return_if_fail (g_date_valid (d));
1009 g_date_update_mdy (d);
1011 g_return_if_fail (d->mdy);
1014 months = nmonths%12;
1016 g_return_if_fail (d->year > years);
1020 if (d->month > months) d->month -= months;
1024 d->month = 12 - months;
1028 index = g_date_is_leap_year (d->year) ? 1 : 0;
1030 if (d->day > days_in_months[index][d->month])
1031 d->day = days_in_months[index][d->month];
1035 g_return_if_fail (g_date_valid (d));
1039 g_date_add_years (GDate *d,
1042 g_return_if_fail (d != NULL);
1043 g_return_if_fail (g_date_valid (d));
1047 g_date_update_mdy (d);
1049 g_return_if_fail (d->mdy);
1053 if (d->month == 2 && d->day == 29)
1055 if (!g_date_is_leap_year (d->year))
1065 g_date_subtract_years (GDate *d,
1068 g_return_if_fail (d != NULL);
1069 g_return_if_fail (g_date_valid (d));
1073 g_date_update_mdy (d);
1075 g_return_if_fail (d->mdy);
1076 g_return_if_fail (d->year > nyears);
1080 if (d->month == 2 && d->day == 29)
1082 if (!g_date_is_leap_year (d->year))
1093 g_date_is_leap_year (GDateYear year)
1095 g_return_val_if_fail (g_date_valid_year (year), FALSE);
1097 return ( (((year % 4) == 0) && ((year % 100) != 0)) ||
1098 (year % 400) == 0 );
1102 g_date_days_in_month (GDateMonth month,
1107 g_return_val_if_fail (g_date_valid_year (year), 0);
1108 g_return_val_if_fail (g_date_valid_month (month), 0);
1110 index = g_date_is_leap_year (year) ? 1 : 0;
1112 return days_in_months[index][month];
1116 g_date_monday_weeks_in_year (GDateYear year)
1120 g_return_val_if_fail (g_date_valid_year (year), 0);
1122 g_date_clear (&d, 1);
1123 g_date_set_mdy (&d, 1, 1, year);
1124 if (g_date_weekday (&d) == G_DATE_MONDAY) return 53;
1125 g_date_set_mdy (&d, 12, 31, year);
1126 if (g_date_weekday (&d) == G_DATE_MONDAY) return 53;
1127 if (g_date_is_leap_year (year))
1129 g_date_set_mdy (&d, 1, 2, year);
1130 if (g_date_weekday (&d) == G_DATE_MONDAY) return 53;
1131 g_date_set_mdy (&d, 12, 30, year);
1132 if (g_date_weekday (&d) == G_DATE_MONDAY) return 53;
1138 g_date_sunday_weeks_in_year (GDateYear year)
1142 g_return_val_if_fail (g_date_valid_year (year), 0);
1144 g_date_clear (&d, 1);
1145 g_date_set_mdy (&d, 1, 1, year);
1146 if (g_date_weekday (&d) == G_DATE_SUNDAY) return 53;
1147 g_date_set_mdy (&d, 12, 31, year);
1148 if (g_date_weekday (&d) == G_DATE_SUNDAY) return 53;
1149 if (g_date_is_leap_year (year))
1151 g_date_set_mdy (&d, 1, 2, year);
1152 if (g_date_weekday (&d) == G_DATE_SUNDAY) return 53;
1153 g_date_set_mdy (&d, 12, 30, year);
1154 if (g_date_weekday (&d) == G_DATE_SUNDAY) return 53;
1160 g_date_compare (GDate *lhs,
1163 g_return_val_if_fail (lhs != NULL, 0);
1164 g_return_val_if_fail (rhs != NULL, 0);
1165 g_return_val_if_fail (g_date_valid (lhs), 0);
1166 g_return_val_if_fail (g_date_valid (rhs), 0);
1168 /* Remember the self-comparison case! I think it works right now. */
1173 if (lhs->julian && rhs->julian)
1175 if (lhs->julian_days < rhs->julian_days) return -1;
1176 else if (lhs->julian_days > rhs->julian_days) return 1;
1179 else if (lhs->mdy && rhs->mdy)
1181 if (lhs->year < rhs->year) return -1;
1182 else if (lhs->year > rhs->year) return 1;
1185 if (lhs->month < rhs->month) return -1;
1186 else if (lhs->month > rhs->month) return 1;
1189 if (lhs->day < rhs->day) return -1;
1190 else if (lhs->day > rhs->day) return 1;
1199 if (!lhs->julian) g_date_update_julian (lhs);
1200 if (!rhs->julian) g_date_update_julian (rhs);
1201 g_return_val_if_fail (lhs->julian, 0);
1202 g_return_val_if_fail (rhs->julian, 0);
1206 return 0; /* warnings */
1211 g_date_to_struct_tm (GDate *d,
1216 g_return_if_fail (d != NULL);
1217 g_return_if_fail (g_date_valid (d));
1218 g_return_if_fail (tm != NULL);
1222 g_date_update_mdy (d);
1224 g_return_if_fail (d->mdy);
1226 /* zero all the irrelevant fields to be sure they're valid */
1228 /* On Linux and maybe other systems, there are weird non-POSIX
1229 * fields on the end of struct tm that choke strftime if they
1230 * contain garbage. So we need to 0 the entire struct, not just the
1231 * fields we know to exist.
1234 memset (tm, 0x0, sizeof (struct tm));
1236 tm->tm_mday = d->day;
1237 tm->tm_mon = d->month - 1; /* 0-11 goes in tm */
1238 tm->tm_year = ((int)d->year) - 1900; /* X/Open says tm_year can be negative */
1240 day = g_date_weekday (d);
1241 if (day == 7) day = 0; /* struct tm wants days since Sunday, so Sunday is 0 */
1243 tm->tm_wday = (int)day;
1245 tm->tm_yday = g_date_day_of_year (d) - 1; /* 0 to 365 */
1246 tm->tm_isdst = -1; /* -1 means "information not available" */
1250 g_date_strftime (gchar *s,
1252 const gchar *format,
1258 g_return_val_if_fail (d != NULL, 0);
1259 g_return_val_if_fail (g_date_valid (d), 0);
1260 g_return_val_if_fail (slen > 0, 0);
1261 g_return_val_if_fail (format != 0, 0);
1262 g_return_val_if_fail (s != 0, 0);
1264 g_date_to_struct_tm (d, &tm);
1266 retval = strftime (s, slen, format, &tm);
1269 /* If retval == 0, the contents of s are undefined. We define