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1 ///////////////////////////////////////////////////////////////////////////////
2 // Name: wx/datetime.h
3 // Purpose: implementation of time/date related classes
4 // Author: Vadim Zeitlin
5 // Modified by:
6 // Created: 11.05.99
7 // RCS-ID: $Id$
8 // Copyright: (c) 1999 Vadim Zeitlin <zeitlin@dptmaths.ens-cachan.fr>
9 // parts of code taken from sndcal library by Scott E. Lee:
10 //
11 // Copyright 1993-1995, Scott E. Lee, all rights reserved.
12 // Permission granted to use, copy, modify, distribute and sell
13 // so long as the above copyright and this permission statement
14 // are retained in all copies.
15 //
16 // Licence: wxWindows license
17 ///////////////////////////////////////////////////////////////////////////////
18
19 /*
20 * Implementation notes:
21 *
22 * 1. the time is stored as a 64bit integer containing the signed number of
23 * milliseconds since Jan 1. 1970 (the Unix Epoch) - so it is always
24 * expressed in GMT.
25 *
26 * 2. the range is thus something about 580 million years, but due to current
27 * algorithms limitations, only dates from Nov 24, 4714BC are handled
28 *
29 * 3. standard ANSI C functions are used to do time calculations whenever
30 * possible, i.e. when the date is in the range Jan 1, 1970 to 2038
31 *
32 * 4. otherwise, the calculations are done by converting the date to/from JDN
33 * first (the range limitation mentioned above comes from here: the
34 * algorithm used by Scott E. Lee's code only works for positive JDNs, more
35 * or less)
36 *
37 * 5. the object constructed for the given DD-MM-YYYY HH:MM:SS corresponds to
38 * this moment in local time and may be converted to the object
39 * corresponding to the same date/time in another time zone by using
40 * ToTimezone()
41 *
42 * 6. the conversions to the current (or any other) timezone are done when the
43 * internal time representation is converted to the broken-down one in
44 * wxDateTime::Tm.
45 */
46
47 // ============================================================================
48 // declarations
49 // ============================================================================
50
51 // ----------------------------------------------------------------------------
52 // headers
53 // ----------------------------------------------------------------------------
54
55 #ifdef __GNUG__
56 #pragma implementation "datetime.h"
57 #endif
58
59 // For compilers that support precompilation, includes "wx.h".
60 #include "wx/wxprec.h"
61
62 #ifdef __BORLANDC__
63 #pragma hdrstop
64 #endif
65
66 #ifndef WX_PRECOMP
67 #include "wx/string.h"
68 #include "wx/intl.h"
69 #include "wx/log.h"
70 #endif // WX_PRECOMP
71
72 #include "wx/thread.h"
73 #include "wx/tokenzr.h"
74
75 #define wxDEFINE_TIME_CONSTANTS // before including datetime.h
76
77 #include "wx/datetime.h"
78
79 // ----------------------------------------------------------------------------
80 // conditional compilation
81 // ----------------------------------------------------------------------------
82
83 #if defined(HAVE_STRPTIME) && defined(__LINUX__)
84 // glibc 2.0.7 strptime() is broken - the following snippet causes it to
85 // crash (instead of just failing):
86 //
87 // strncpy(buf, "Tue Dec 21 20:25:40 1999", 128);
88 // strptime(buf, "%x", &tm);
89 //
90 // so don't use it
91 #undef HAVE_STRPTIME
92 #endif // broken strptime()
93
94 #ifndef WX_TIMEZONE
95 #if defined(__BORLANDC__) || defined(__MINGW32__) || defined(__VISAGECPP__)
96 #define WX_TIMEZONE _timezone
97 #else // unknown platform - try timezone
98 #define WX_TIMEZONE timezone
99 #endif
100 #endif // !WX_TIMEZONE
101
102 // ----------------------------------------------------------------------------
103 // constants
104 // ----------------------------------------------------------------------------
105
106 // some trivial ones
107 static const int MONTHS_IN_YEAR = 12;
108
109 static const int SECONDS_IN_MINUTE = 60;
110
111 static const long SECONDS_PER_DAY = 86400l;
112
113 static const long MILLISECONDS_PER_DAY = 86400000l;
114
115 // this is the integral part of JDN of the midnight of Jan 1, 1970
116 // (i.e. JDN(Jan 1, 1970) = 2440587.5)
117 static const long EPOCH_JDN = 2440587l;
118
119 // the date of JDN -0.5 (as we don't work with fractional parts, this is the
120 // reference date for us) is Nov 24, 4714BC
121 static const int JDN_0_YEAR = -4713;
122 static const int JDN_0_MONTH = wxDateTime::Nov;
123 static const int JDN_0_DAY = 24;
124
125 // the constants used for JDN calculations
126 static const long JDN_OFFSET = 32046l;
127 static const long DAYS_PER_5_MONTHS = 153l;
128 static const long DAYS_PER_4_YEARS = 1461l;
129 static const long DAYS_PER_400_YEARS = 146097l;
130
131 // this array contains the cumulated number of days in all previous months for
132 // normal and leap years
133 static const wxDateTime::wxDateTime_t gs_cumulatedDays[2][MONTHS_IN_YEAR] =
134 {
135 { 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334 },
136 { 0, 31, 60, 91, 121, 152, 182, 213, 244, 274, 305, 335 }
137 };
138
139 // ----------------------------------------------------------------------------
140 // globals
141 // ----------------------------------------------------------------------------
142
143 // a critical section is needed to protect GetTimeZone() static
144 // variable in MT case
145 #if wxUSE_THREADS
146 wxCriticalSection gs_critsectTimezone;
147 #endif // wxUSE_THREADS
148
149 // ----------------------------------------------------------------------------
150 // private functions
151 // ----------------------------------------------------------------------------
152
153 // get the number of days in the given month of the given year
154 static inline
155 wxDateTime::wxDateTime_t GetNumOfDaysInMonth(int year, wxDateTime::Month month)
156 {
157 // the number of days in month in Julian/Gregorian calendar: the first line
158 // is for normal years, the second one is for the leap ones
159 static wxDateTime::wxDateTime_t daysInMonth[2][MONTHS_IN_YEAR] =
160 {
161 { 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 },
162 { 31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 }
163 };
164
165 return daysInMonth[wxDateTime::IsLeapYear(year)][month];
166 }
167
168 // ensure that the timezone variable is set by calling localtime
169 static int GetTimeZone()
170 {
171 // set to TRUE when the timezone is set
172 static bool s_timezoneSet = FALSE;
173
174 wxCRIT_SECT_LOCKER(lock, gs_critsectTimezone);
175
176 if ( !s_timezoneSet )
177 {
178 // just call localtime() instead of figuring out whether this system
179 // supports tzset(), _tzset() or something else
180 time_t t;
181 (void)localtime(&t);
182
183 s_timezoneSet = TRUE;
184 }
185
186 return (int)WX_TIMEZONE;
187 }
188
189 // return the integral part of the JDN for the midnight of the given date (to
190 // get the real JDN you need to add 0.5, this is, in fact, JDN of the
191 // noon of the previous day)
192 static long GetTruncatedJDN(wxDateTime::wxDateTime_t day,
193 wxDateTime::Month mon,
194 int year)
195 {
196 // CREDIT: code below is by Scott E. Lee (but bugs are mine)
197
198 // check the date validity
199 wxASSERT_MSG(
200 (year > JDN_0_YEAR) ||
201 ((year == JDN_0_YEAR) && (mon > JDN_0_MONTH)) ||
202 ((year == JDN_0_YEAR) && (mon == JDN_0_MONTH) && (day >= JDN_0_DAY)),
203 _T("date out of range - can't convert to JDN")
204 );
205
206 // make the year positive to avoid problems with negative numbers division
207 year += 4800;
208
209 // months are counted from March here
210 int month;
211 if ( mon >= wxDateTime::Mar )
212 {
213 month = mon - 2;
214 }
215 else
216 {
217 month = mon + 10;
218 year--;
219 }
220
221 // now we can simply add all the contributions together
222 return ((year / 100) * DAYS_PER_400_YEARS) / 4
223 + ((year % 100) * DAYS_PER_4_YEARS) / 4
224 + (month * DAYS_PER_5_MONTHS + 2) / 5
225 + day
226 - JDN_OFFSET;
227 }
228
229 // this function is a wrapper around strftime(3)
230 static wxString CallStrftime(const wxChar *format, const tm* tm)
231 {
232 wxChar buf[4096];
233 if ( !wxStrftime(buf, WXSIZEOF(buf), format, tm) )
234 {
235 // buffer is too small?
236 wxFAIL_MSG(_T("strftime() failed"));
237 }
238
239 return wxString(buf);
240 }
241
242 // if year and/or month have invalid values, replace them with the current ones
243 static void ReplaceDefaultYearMonthWithCurrent(int *year,
244 wxDateTime::Month *month)
245 {
246 struct tm *tmNow = NULL;
247
248 if ( *year == wxDateTime::Inv_Year )
249 {
250 tmNow = wxDateTime::GetTmNow();
251
252 *year = 1900 + tmNow->tm_year;
253 }
254
255 if ( *month == wxDateTime::Inv_Month )
256 {
257 if ( !tmNow )
258 tmNow = wxDateTime::GetTmNow();
259
260 *month = (wxDateTime::Month)tmNow->tm_mon;
261 }
262 }
263
264 // fll the struct tm with default values
265 static void InitTm(struct tm& tm)
266 {
267 // struct tm may have etxra fields (undocumented and with unportable
268 // names) which, nevertheless, must be set to 0
269 memset(&tm, 0, sizeof(struct tm));
270
271 tm.tm_mday = 1; // mday 0 is invalid
272 tm.tm_year = 76; // any valid year
273 tm.tm_isdst = -1; // auto determine
274 }
275
276 // parsing helpers
277 // ---------------
278
279 // return the month if the string is a month name or Inv_Month otherwise
280 static wxDateTime::Month GetMonthFromName(const wxString& name, int flags)
281 {
282 wxDateTime::Month mon;
283 for ( mon = wxDateTime::Jan; mon < wxDateTime::Inv_Month; wxNextMonth(mon) )
284 {
285 // case-insensitive comparison either one of or with both abbreviated
286 // and not versions
287 if ( flags & wxDateTime::Name_Full )
288 {
289 if ( name.CmpNoCase(wxDateTime::
290 GetMonthName(mon, wxDateTime::Name_Full)) == 0 )
291 {
292 break;
293 }
294 }
295
296 if ( flags & wxDateTime::Name_Abbr )
297 {
298 if ( name.CmpNoCase(wxDateTime::
299 GetMonthName(mon, wxDateTime::Name_Abbr)) == 0 )
300 {
301 break;
302 }
303 }
304 }
305
306 return mon;
307 }
308
309 // return the weekday if the string is a weekday name or Inv_WeekDay otherwise
310 static wxDateTime::WeekDay GetWeekDayFromName(const wxString& name, int flags)
311 {
312 wxDateTime::WeekDay wd;
313 for ( wd = wxDateTime::Sun; wd < wxDateTime::Inv_WeekDay; wxNextWDay(wd) )
314 {
315 // case-insensitive comparison either one of or with both abbreviated
316 // and not versions
317 if ( flags & wxDateTime::Name_Full )
318 {
319 if ( name.CmpNoCase(wxDateTime::
320 GetWeekDayName(wd, wxDateTime::Name_Full)) == 0 )
321 {
322 break;
323 }
324 }
325
326 if ( flags & wxDateTime::Name_Abbr )
327 {
328 if ( name.CmpNoCase(wxDateTime::
329 GetWeekDayName(wd, wxDateTime::Name_Abbr)) == 0 )
330 {
331 break;
332 }
333 }
334 }
335
336 return wd;
337 }
338
339 // scans all digits and returns the resulting number
340 static bool GetNumericToken(const wxChar*& p, unsigned long *number)
341 {
342 wxString s;
343 while ( wxIsdigit(*p) )
344 {
345 s += *p++;
346 }
347
348 return !!s && s.ToULong(number);
349 }
350
351 // scans all alphabetic characters and returns the resulting string
352 static wxString GetAlphaToken(const wxChar*& p)
353 {
354 wxString s;
355 while ( wxIsalpha(*p) )
356 {
357 s += *p++;
358 }
359
360 return s;
361 }
362
363 // ============================================================================
364 // implementation of wxDateTime
365 // ============================================================================
366
367 // ----------------------------------------------------------------------------
368 // static data
369 // ----------------------------------------------------------------------------
370
371 wxDateTime::Country wxDateTime::ms_country = wxDateTime::Country_Unknown;
372 wxDateTime wxDateTime::ms_InvDateTime;
373
374 // ----------------------------------------------------------------------------
375 // struct Tm
376 // ----------------------------------------------------------------------------
377
378 wxDateTime::Tm::Tm()
379 {
380 year = (wxDateTime_t)wxDateTime::Inv_Year;
381 mon = wxDateTime::Inv_Month;
382 mday = 0;
383 hour = min = sec = msec = 0;
384 wday = wxDateTime::Inv_WeekDay;
385 }
386
387 wxDateTime::Tm::Tm(const struct tm& tm, const TimeZone& tz)
388 : m_tz(tz)
389 {
390 msec = 0;
391 sec = tm.tm_sec;
392 min = tm.tm_min;
393 hour = tm.tm_hour;
394 mday = tm.tm_mday;
395 mon = (wxDateTime::Month)tm.tm_mon;
396 year = 1900 + tm.tm_year;
397 wday = tm.tm_wday;
398 yday = tm.tm_yday;
399 }
400
401 bool wxDateTime::Tm::IsValid() const
402 {
403 // we allow for the leap seconds, although we don't use them (yet)
404 return (year != wxDateTime::Inv_Year) && (mon != wxDateTime::Inv_Month) &&
405 (mday <= GetNumOfDaysInMonth(year, mon)) &&
406 (hour < 24) && (min < 60) && (sec < 62) && (msec < 1000);
407 }
408
409 void wxDateTime::Tm::ComputeWeekDay()
410 {
411 // compute the week day from day/month/year: we use the dumbest algorithm
412 // possible: just compute our JDN and then use the (simple to derive)
413 // formula: weekday = (JDN + 1.5) % 7
414 wday = (wxDateTime::WeekDay)(GetTruncatedJDN(mday, mon, year) + 2) % 7;
415 }
416
417 void wxDateTime::Tm::AddMonths(int monDiff)
418 {
419 // normalize the months field
420 while ( monDiff < -mon )
421 {
422 year--;
423
424 monDiff += MONTHS_IN_YEAR;
425 }
426
427 while ( monDiff + mon > MONTHS_IN_YEAR )
428 {
429 year++;
430
431 monDiff -= MONTHS_IN_YEAR;
432 }
433
434 mon = (wxDateTime::Month)(mon + monDiff);
435
436 wxASSERT_MSG( mon >= 0 && mon < MONTHS_IN_YEAR, _T("logic error") );
437 }
438
439 void wxDateTime::Tm::AddDays(int dayDiff)
440 {
441 // normalize the days field
442 mday += dayDiff;
443 while ( mday < 1 )
444 {
445 AddMonths(-1);
446
447 mday += GetNumOfDaysInMonth(year, mon);
448 }
449
450 while ( mday > GetNumOfDaysInMonth(year, mon) )
451 {
452 mday -= GetNumOfDaysInMonth(year, mon);
453
454 AddMonths(1);
455 }
456
457 wxASSERT_MSG( mday > 0 && mday <= GetNumOfDaysInMonth(year, mon),
458 _T("logic error") );
459 }
460
461 // ----------------------------------------------------------------------------
462 // class TimeZone
463 // ----------------------------------------------------------------------------
464
465 wxDateTime::TimeZone::TimeZone(wxDateTime::TZ tz)
466 {
467 switch ( tz )
468 {
469 case wxDateTime::Local:
470 // get the offset from C RTL: it returns the difference GMT-local
471 // while we want to have the offset _from_ GMT, hence the '-'
472 m_offset = -GetTimeZone();
473 break;
474
475 case wxDateTime::GMT_12:
476 case wxDateTime::GMT_11:
477 case wxDateTime::GMT_10:
478 case wxDateTime::GMT_9:
479 case wxDateTime::GMT_8:
480 case wxDateTime::GMT_7:
481 case wxDateTime::GMT_6:
482 case wxDateTime::GMT_5:
483 case wxDateTime::GMT_4:
484 case wxDateTime::GMT_3:
485 case wxDateTime::GMT_2:
486 case wxDateTime::GMT_1:
487 m_offset = -3600*(wxDateTime::GMT0 - tz);
488 break;
489
490 case wxDateTime::GMT0:
491 case wxDateTime::GMT1:
492 case wxDateTime::GMT2:
493 case wxDateTime::GMT3:
494 case wxDateTime::GMT4:
495 case wxDateTime::GMT5:
496 case wxDateTime::GMT6:
497 case wxDateTime::GMT7:
498 case wxDateTime::GMT8:
499 case wxDateTime::GMT9:
500 case wxDateTime::GMT10:
501 case wxDateTime::GMT11:
502 case wxDateTime::GMT12:
503 m_offset = 3600*(tz - wxDateTime::GMT0);
504 break;
505
506 case wxDateTime::A_CST:
507 // Central Standard Time in use in Australia = UTC + 9.5
508 m_offset = 60l*(9*60 + 30);
509 break;
510
511 default:
512 wxFAIL_MSG( _T("unknown time zone") );
513 }
514 }
515
516 // ----------------------------------------------------------------------------
517 // static functions
518 // ----------------------------------------------------------------------------
519
520 /* static */
521 bool wxDateTime::IsLeapYear(int year, wxDateTime::Calendar cal)
522 {
523 if ( year == Inv_Year )
524 year = GetCurrentYear();
525
526 if ( cal == Gregorian )
527 {
528 // in Gregorian calendar leap years are those divisible by 4 except
529 // those divisible by 100 unless they're also divisible by 400
530 // (in some countries, like Russia and Greece, additional corrections
531 // exist, but they won't manifest themselves until 2700)
532 return (year % 4 == 0) && ((year % 100 != 0) || (year % 400 == 0));
533 }
534 else if ( cal == Julian )
535 {
536 // in Julian calendar the rule is simpler
537 return year % 4 == 0;
538 }
539 else
540 {
541 wxFAIL_MSG(_T("unknown calendar"));
542
543 return FALSE;
544 }
545 }
546
547 /* static */
548 int wxDateTime::GetCentury(int year)
549 {
550 return year > 0 ? year / 100 : year / 100 - 1;
551 }
552
553 /* static */
554 int wxDateTime::ConvertYearToBC(int year)
555 {
556 // year 0 is BC 1
557 return year > 0 ? year : year - 1;
558 }
559
560 /* static */
561 int wxDateTime::GetCurrentYear(wxDateTime::Calendar cal)
562 {
563 switch ( cal )
564 {
565 case Gregorian:
566 return Now().GetYear();
567
568 case Julian:
569 wxFAIL_MSG(_T("TODO"));
570 break;
571
572 default:
573 wxFAIL_MSG(_T("unsupported calendar"));
574 break;
575 }
576
577 return Inv_Year;
578 }
579
580 /* static */
581 wxDateTime::Month wxDateTime::GetCurrentMonth(wxDateTime::Calendar cal)
582 {
583 switch ( cal )
584 {
585 case Gregorian:
586 return Now().GetMonth();
587
588 case Julian:
589 wxFAIL_MSG(_T("TODO"));
590 break;
591
592 default:
593 wxFAIL_MSG(_T("unsupported calendar"));
594 break;
595 }
596
597 return Inv_Month;
598 }
599
600 /* static */
601 wxDateTime::wxDateTime_t wxDateTime::GetNumberOfDays(int year, Calendar cal)
602 {
603 if ( year == Inv_Year )
604 {
605 // take the current year if none given
606 year = GetCurrentYear();
607 }
608
609 switch ( cal )
610 {
611 case Gregorian:
612 case Julian:
613 return IsLeapYear(year) ? 366 : 365;
614
615 default:
616 wxFAIL_MSG(_T("unsupported calendar"));
617 break;
618 }
619
620 return 0;
621 }
622
623 /* static */
624 wxDateTime::wxDateTime_t wxDateTime::GetNumberOfDays(wxDateTime::Month month,
625 int year,
626 wxDateTime::Calendar cal)
627 {
628 wxCHECK_MSG( month < MONTHS_IN_YEAR, 0, _T("invalid month") );
629
630 if ( cal == Gregorian || cal == Julian )
631 {
632 if ( year == Inv_Year )
633 {
634 // take the current year if none given
635 year = GetCurrentYear();
636 }
637
638 return GetNumOfDaysInMonth(year, month);
639 }
640 else
641 {
642 wxFAIL_MSG(_T("unsupported calendar"));
643
644 return 0;
645 }
646 }
647
648 /* static */
649 wxString wxDateTime::GetMonthName(wxDateTime::Month month,
650 wxDateTime::NameFlags flags)
651 {
652 wxCHECK_MSG( month != Inv_Month, _T(""), _T("invalid month") );
653
654 // notice that we must set all the fields to avoid confusing libc (GNU one
655 // gets confused to a crash if we don't do this)
656 tm tm;
657 InitTm(tm);
658 tm.tm_mon = month;
659
660 return CallStrftime(flags == Name_Abbr ? _T("%b") : _T("%B"), &tm);
661 }
662
663 /* static */
664 wxString wxDateTime::GetWeekDayName(wxDateTime::WeekDay wday,
665 wxDateTime::NameFlags flags)
666 {
667 wxCHECK_MSG( wday != Inv_WeekDay, _T(""), _T("invalid weekday") );
668
669 // take some arbitrary Sunday
670 tm tm;
671 InitTm(tm);
672 tm.tm_mday = 28;
673 tm.tm_mon = Nov;
674 tm.tm_year = 99;
675
676 // and offset it by the number of days needed to get the correct wday
677 tm.tm_mday += wday;
678
679 // call mktime() to normalize it...
680 (void)mktime(&tm);
681
682 // ... and call strftime()
683 return CallStrftime(flags == Name_Abbr ? _T("%a") : _T("%A"), &tm);
684 }
685
686 /* static */
687 void wxDateTime::GetAmPmStrings(wxString *am, wxString *pm)
688 {
689 tm tm;
690 InitTm(tm);
691 if ( am )
692 {
693 *am = CallStrftime(_T("%p"), &tm);
694 }
695 if ( pm )
696 {
697 tm.tm_hour = 13;
698 *pm = CallStrftime(_T("%p"), &tm);
699 }
700 }
701
702 // ----------------------------------------------------------------------------
703 // Country stuff: date calculations depend on the country (DST, work days,
704 // ...), so we need to know which rules to follow.
705 // ----------------------------------------------------------------------------
706
707 /* static */
708 wxDateTime::Country wxDateTime::GetCountry()
709 {
710 // TODO use LOCALE_ICOUNTRY setting under Win32
711
712 if ( ms_country == Country_Unknown )
713 {
714 // try to guess from the time zone name
715 time_t t = time(NULL);
716 struct tm *tm = localtime(&t);
717
718 wxString tz = CallStrftime(_T("%Z"), tm);
719 if ( tz == _T("WET") || tz == _T("WEST") )
720 {
721 ms_country = UK;
722 }
723 else if ( tz == _T("CET") || tz == _T("CEST") )
724 {
725 ms_country = Country_EEC;
726 }
727 else if ( tz == _T("MSK") || tz == _T("MSD") )
728 {
729 ms_country = Russia;
730 }
731 else if ( tz == _T("AST") || tz == _T("ADT") ||
732 tz == _T("EST") || tz == _T("EDT") ||
733 tz == _T("CST") || tz == _T("CDT") ||
734 tz == _T("MST") || tz == _T("MDT") ||
735 tz == _T("PST") || tz == _T("PDT") )
736 {
737 ms_country = USA;
738 }
739 else
740 {
741 // well, choose a default one
742 ms_country = USA;
743 }
744 }
745
746 return ms_country;
747 }
748
749 /* static */
750 void wxDateTime::SetCountry(wxDateTime::Country country)
751 {
752 ms_country = country;
753 }
754
755 /* static */
756 bool wxDateTime::IsWestEuropeanCountry(Country country)
757 {
758 if ( country == Country_Default )
759 {
760 country = GetCountry();
761 }
762
763 return (Country_WesternEurope_Start <= country) &&
764 (country <= Country_WesternEurope_End);
765 }
766
767 // ----------------------------------------------------------------------------
768 // DST calculations: we use 3 different rules for the West European countries,
769 // USA and for the rest of the world. This is undoubtedly false for many
770 // countries, but I lack the necessary info (and the time to gather it),
771 // please add the other rules here!
772 // ----------------------------------------------------------------------------
773
774 /* static */
775 bool wxDateTime::IsDSTApplicable(int year, Country country)
776 {
777 if ( year == Inv_Year )
778 {
779 // take the current year if none given
780 year = GetCurrentYear();
781 }
782
783 if ( country == Country_Default )
784 {
785 country = GetCountry();
786 }
787
788 switch ( country )
789 {
790 case USA:
791 case UK:
792 // DST was first observed in the US and UK during WWI, reused
793 // during WWII and used again since 1966
794 return year >= 1966 ||
795 (year >= 1942 && year <= 1945) ||
796 (year == 1918 || year == 1919);
797
798 default:
799 // assume that it started after WWII
800 return year > 1950;
801 }
802 }
803
804 /* static */
805 wxDateTime wxDateTime::GetBeginDST(int year, Country country)
806 {
807 if ( year == Inv_Year )
808 {
809 // take the current year if none given
810 year = GetCurrentYear();
811 }
812
813 if ( country == Country_Default )
814 {
815 country = GetCountry();
816 }
817
818 if ( !IsDSTApplicable(year, country) )
819 {
820 return ms_InvDateTime;
821 }
822
823 wxDateTime dt;
824
825 if ( IsWestEuropeanCountry(country) || (country == Russia) )
826 {
827 // DST begins at 1 a.m. GMT on the last Sunday of March
828 if ( !dt.SetToLastWeekDay(Sun, Mar, year) )
829 {
830 // weird...
831 wxFAIL_MSG( _T("no last Sunday in March?") );
832 }
833
834 dt += wxTimeSpan::Hours(1);
835
836 // disable DST tests because it could result in an infinite recursion!
837 dt.MakeGMT(TRUE);
838 }
839 else switch ( country )
840 {
841 case USA:
842 switch ( year )
843 {
844 case 1918:
845 case 1919:
846 // don't know for sure - assume it was in effect all year
847
848 case 1943:
849 case 1944:
850 case 1945:
851 dt.Set(1, Jan, year);
852 break;
853
854 case 1942:
855 // DST was installed Feb 2, 1942 by the Congress
856 dt.Set(2, Feb, year);
857 break;
858
859 // Oil embargo changed the DST period in the US
860 case 1974:
861 dt.Set(6, Jan, 1974);
862 break;
863
864 case 1975:
865 dt.Set(23, Feb, 1975);
866 break;
867
868 default:
869 // before 1986, DST begun on the last Sunday of April, but
870 // in 1986 Reagan changed it to begin at 2 a.m. of the
871 // first Sunday in April
872 if ( year < 1986 )
873 {
874 if ( !dt.SetToLastWeekDay(Sun, Apr, year) )
875 {
876 // weird...
877 wxFAIL_MSG( _T("no first Sunday in April?") );
878 }
879 }
880 else
881 {
882 if ( !dt.SetToWeekDay(Sun, 1, Apr, year) )
883 {
884 // weird...
885 wxFAIL_MSG( _T("no first Sunday in April?") );
886 }
887 }
888
889 dt += wxTimeSpan::Hours(2);
890
891 // TODO what about timezone??
892 }
893
894 break;
895
896 default:
897 // assume Mar 30 as the start of the DST for the rest of the world
898 // - totally bogus, of course
899 dt.Set(30, Mar, year);
900 }
901
902 return dt;
903 }
904
905 /* static */
906 wxDateTime wxDateTime::GetEndDST(int year, Country country)
907 {
908 if ( year == Inv_Year )
909 {
910 // take the current year if none given
911 year = GetCurrentYear();
912 }
913
914 if ( country == Country_Default )
915 {
916 country = GetCountry();
917 }
918
919 if ( !IsDSTApplicable(year, country) )
920 {
921 return ms_InvDateTime;
922 }
923
924 wxDateTime dt;
925
926 if ( IsWestEuropeanCountry(country) || (country == Russia) )
927 {
928 // DST ends at 1 a.m. GMT on the last Sunday of October
929 if ( !dt.SetToLastWeekDay(Sun, Oct, year) )
930 {
931 // weirder and weirder...
932 wxFAIL_MSG( _T("no last Sunday in October?") );
933 }
934
935 dt += wxTimeSpan::Hours(1);
936
937 // disable DST tests because it could result in an infinite recursion!
938 dt.MakeGMT(TRUE);
939 }
940 else switch ( country )
941 {
942 case USA:
943 switch ( year )
944 {
945 case 1918:
946 case 1919:
947 // don't know for sure - assume it was in effect all year
948
949 case 1943:
950 case 1944:
951 dt.Set(31, Dec, year);
952 break;
953
954 case 1945:
955 // the time was reset after the end of the WWII
956 dt.Set(30, Sep, year);
957 break;
958
959 default:
960 // DST ends at 2 a.m. on the last Sunday of October
961 if ( !dt.SetToLastWeekDay(Sun, Oct, year) )
962 {
963 // weirder and weirder...
964 wxFAIL_MSG( _T("no last Sunday in October?") );
965 }
966
967 dt += wxTimeSpan::Hours(2);
968
969 // TODO what about timezone??
970 }
971 break;
972
973 default:
974 // assume October 26th as the end of the DST - totally bogus too
975 dt.Set(26, Oct, year);
976 }
977
978 return dt;
979 }
980
981 // ----------------------------------------------------------------------------
982 // constructors and assignment operators
983 // ----------------------------------------------------------------------------
984
985 // the values in the tm structure contain the local time
986 wxDateTime& wxDateTime::Set(const struct tm& tm)
987 {
988 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
989
990 struct tm tm2(tm);
991 time_t timet = mktime(&tm2);
992
993 if ( timet == (time_t)-1 )
994 {
995 // mktime() rather unintuitively fails for Jan 1, 1970 if the hour is
996 // less than timezone - try to make it work for this case
997 if ( tm2.tm_year == 70 && tm2.tm_mon == 0 && tm2.tm_mday == 1 )
998 {
999 // add timezone to make sure that date is in range
1000 tm2.tm_sec -= GetTimeZone();
1001
1002 timet = mktime(&tm2);
1003 if ( timet != (time_t)-1 )
1004 {
1005 timet += GetTimeZone();
1006
1007 return Set(timet);
1008 }
1009 }
1010
1011 wxFAIL_MSG( _T("mktime() failed") );
1012
1013 return ms_InvDateTime;
1014 }
1015 else
1016 {
1017 return Set(timet);
1018 }
1019 }
1020
1021 wxDateTime& wxDateTime::Set(wxDateTime_t hour,
1022 wxDateTime_t minute,
1023 wxDateTime_t second,
1024 wxDateTime_t millisec)
1025 {
1026 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1027
1028 // we allow seconds to be 61 to account for the leap seconds, even if we
1029 // don't use them really
1030 wxCHECK_MSG( hour < 24 && second < 62 && minute < 60 && millisec < 1000,
1031 ms_InvDateTime,
1032 _T("Invalid time in wxDateTime::Set()") );
1033
1034 // get the current date from system
1035 time_t timet = GetTimeNow();
1036 struct tm *tm = localtime(&timet);
1037
1038 wxCHECK_MSG( tm, ms_InvDateTime, _T("localtime() failed") );
1039
1040 // adjust the time
1041 tm->tm_hour = hour;
1042 tm->tm_min = minute;
1043 tm->tm_sec = second;
1044
1045 (void)Set(*tm);
1046
1047 // and finally adjust milliseconds
1048 return SetMillisecond(millisec);
1049 }
1050
1051 wxDateTime& wxDateTime::Set(wxDateTime_t day,
1052 Month month,
1053 int year,
1054 wxDateTime_t hour,
1055 wxDateTime_t minute,
1056 wxDateTime_t second,
1057 wxDateTime_t millisec)
1058 {
1059 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1060
1061 wxCHECK_MSG( hour < 24 && second < 62 && minute < 60 && millisec < 1000,
1062 ms_InvDateTime,
1063 _T("Invalid time in wxDateTime::Set()") );
1064
1065 ReplaceDefaultYearMonthWithCurrent(&year, &month);
1066
1067 wxCHECK_MSG( (0 < day) && (day <= GetNumberOfDays(month, year)),
1068 ms_InvDateTime,
1069 _T("Invalid date in wxDateTime::Set()") );
1070
1071 // the range of time_t type (inclusive)
1072 static const int yearMinInRange = 1970;
1073 static const int yearMaxInRange = 2037;
1074
1075 // test only the year instead of testing for the exact end of the Unix
1076 // time_t range - it doesn't bring anything to do more precise checks
1077 if ( year >= yearMinInRange && year <= yearMaxInRange )
1078 {
1079 // use the standard library version if the date is in range - this is
1080 // probably more efficient than our code
1081 struct tm tm;
1082 tm.tm_year = year - 1900;
1083 tm.tm_mon = month;
1084 tm.tm_mday = day;
1085 tm.tm_hour = hour;
1086 tm.tm_min = minute;
1087 tm.tm_sec = second;
1088 tm.tm_isdst = -1; // mktime() will guess it
1089
1090 (void)Set(tm);
1091
1092 // and finally adjust milliseconds
1093 return SetMillisecond(millisec);
1094 }
1095 else
1096 {
1097 // do time calculations ourselves: we want to calculate the number of
1098 // milliseconds between the given date and the epoch
1099
1100 // get the JDN for the midnight of this day
1101 m_time = GetTruncatedJDN(day, month, year);
1102 m_time -= EPOCH_JDN;
1103 m_time *= SECONDS_PER_DAY * TIME_T_FACTOR;
1104
1105 // JDN corresponds to GMT, we take localtime
1106 Add(wxTimeSpan(hour, minute, second + GetTimeZone(), millisec));
1107 }
1108
1109 return *this;
1110 }
1111
1112 wxDateTime& wxDateTime::Set(double jdn)
1113 {
1114 // so that m_time will be 0 for the midnight of Jan 1, 1970 which is jdn
1115 // EPOCH_JDN + 0.5
1116 jdn -= EPOCH_JDN + 0.5;
1117
1118 jdn *= MILLISECONDS_PER_DAY;
1119
1120 m_time.Assign(jdn);
1121
1122 return *this;
1123 }
1124
1125 // ----------------------------------------------------------------------------
1126 // time_t <-> broken down time conversions
1127 // ----------------------------------------------------------------------------
1128
1129 wxDateTime::Tm wxDateTime::GetTm(const TimeZone& tz) const
1130 {
1131 #ifdef __VMS__
1132 int time2;
1133 #endif
1134 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1135
1136 time_t time = GetTicks();
1137 if ( time != (time_t)-1 )
1138 {
1139 // use C RTL functions
1140 tm *tm;
1141 if ( tz.GetOffset() == -GetTimeZone() )
1142 {
1143 // we are working with local time
1144 tm = localtime(&time);
1145
1146 // should never happen
1147 wxCHECK_MSG( tm, Tm(), _T("gmtime() failed") );
1148 }
1149 else
1150 {
1151 time += tz.GetOffset();
1152 #ifdef __VMS__ /* time is unsigned so VMS gives a warning on the original */
1153 time2 = (int) time;
1154 if ( time2 >= 0 )
1155 #else
1156 if ( time >= 0 )
1157 #endif
1158 {
1159 tm = gmtime(&time);
1160
1161 // should never happen
1162 wxCHECK_MSG( tm, Tm(), _T("gmtime() failed") );
1163 }
1164 else
1165 {
1166 tm = (struct tm *)NULL;
1167 }
1168 }
1169
1170 if ( tm )
1171 {
1172 return Tm(*tm, tz);
1173 }
1174 //else: use generic code below
1175 }
1176
1177 // remember the time and do the calculations with the date only - this
1178 // eliminates rounding errors of the floating point arithmetics
1179
1180 wxLongLong timeMidnight = m_time + tz.GetOffset() * 1000;
1181
1182 long timeOnly = (timeMidnight % MILLISECONDS_PER_DAY).ToLong();
1183
1184 // we want to always have positive time and timeMidnight to be really
1185 // the midnight before it
1186 if ( timeOnly < 0 )
1187 {
1188 timeOnly = MILLISECONDS_PER_DAY + timeOnly;
1189 }
1190
1191 timeMidnight -= timeOnly;
1192
1193 // calculate the Gregorian date from JDN for the midnight of our date:
1194 // this will yield day, month (in 1..12 range) and year
1195
1196 // actually, this is the JDN for the noon of the previous day
1197 long jdn = (timeMidnight / MILLISECONDS_PER_DAY).ToLong() + EPOCH_JDN;
1198
1199 // CREDIT: code below is by Scott E. Lee (but bugs are mine)
1200
1201 wxASSERT_MSG( jdn > -2, _T("JDN out of range") );
1202
1203 // calculate the century
1204 int temp = (jdn + JDN_OFFSET) * 4 - 1;
1205 int century = temp / DAYS_PER_400_YEARS;
1206
1207 // then the year and day of year (1 <= dayOfYear <= 366)
1208 temp = ((temp % DAYS_PER_400_YEARS) / 4) * 4 + 3;
1209 int year = (century * 100) + (temp / DAYS_PER_4_YEARS);
1210 int dayOfYear = (temp % DAYS_PER_4_YEARS) / 4 + 1;
1211
1212 // and finally the month and day of the month
1213 temp = dayOfYear * 5 - 3;
1214 int month = temp / DAYS_PER_5_MONTHS;
1215 int day = (temp % DAYS_PER_5_MONTHS) / 5 + 1;
1216
1217 // month is counted from March - convert to normal
1218 if ( month < 10 )
1219 {
1220 month += 3;
1221 }
1222 else
1223 {
1224 year += 1;
1225 month -= 9;
1226 }
1227
1228 // year is offset by 4800
1229 year -= 4800;
1230
1231 // check that the algorithm gave us something reasonable
1232 wxASSERT_MSG( (0 < month) && (month <= 12), _T("invalid month") );
1233 wxASSERT_MSG( (1 <= day) && (day < 32), _T("invalid day") );
1234 wxASSERT_MSG( (INT_MIN <= year) && (year <= INT_MAX),
1235 _T("year range overflow") );
1236
1237 // construct Tm from these values
1238 Tm tm;
1239 tm.year = (int)year;
1240 tm.mon = (Month)(month - 1); // algorithm yields 1 for January, not 0
1241 tm.mday = (wxDateTime_t)day;
1242 tm.msec = timeOnly % 1000;
1243 timeOnly -= tm.msec;
1244 timeOnly /= 1000; // now we have time in seconds
1245
1246 tm.sec = timeOnly % 60;
1247 timeOnly -= tm.sec;
1248 timeOnly /= 60; // now we have time in minutes
1249
1250 tm.min = timeOnly % 60;
1251 timeOnly -= tm.min;
1252
1253 tm.hour = timeOnly / 60;
1254
1255 return tm;
1256 }
1257
1258 wxDateTime& wxDateTime::SetYear(int year)
1259 {
1260 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1261
1262 Tm tm(GetTm());
1263 tm.year = year;
1264 Set(tm);
1265
1266 return *this;
1267 }
1268
1269 wxDateTime& wxDateTime::SetMonth(Month month)
1270 {
1271 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1272
1273 Tm tm(GetTm());
1274 tm.mon = month;
1275 Set(tm);
1276
1277 return *this;
1278 }
1279
1280 wxDateTime& wxDateTime::SetDay(wxDateTime_t mday)
1281 {
1282 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1283
1284 Tm tm(GetTm());
1285 tm.mday = mday;
1286 Set(tm);
1287
1288 return *this;
1289 }
1290
1291 wxDateTime& wxDateTime::SetHour(wxDateTime_t hour)
1292 {
1293 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1294
1295 Tm tm(GetTm());
1296 tm.hour = hour;
1297 Set(tm);
1298
1299 return *this;
1300 }
1301
1302 wxDateTime& wxDateTime::SetMinute(wxDateTime_t min)
1303 {
1304 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1305
1306 Tm tm(GetTm());
1307 tm.min = min;
1308 Set(tm);
1309
1310 return *this;
1311 }
1312
1313 wxDateTime& wxDateTime::SetSecond(wxDateTime_t sec)
1314 {
1315 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1316
1317 Tm tm(GetTm());
1318 tm.sec = sec;
1319 Set(tm);
1320
1321 return *this;
1322 }
1323
1324 wxDateTime& wxDateTime::SetMillisecond(wxDateTime_t millisecond)
1325 {
1326 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1327
1328 // we don't need to use GetTm() for this one
1329 m_time -= m_time % 1000l;
1330 m_time += millisecond;
1331
1332 return *this;
1333 }
1334
1335 // ----------------------------------------------------------------------------
1336 // wxDateTime arithmetics
1337 // ----------------------------------------------------------------------------
1338
1339 wxDateTime& wxDateTime::Add(const wxDateSpan& diff)
1340 {
1341 Tm tm(GetTm());
1342
1343 tm.year += diff.GetYears();
1344 tm.AddMonths(diff.GetMonths());
1345 tm.AddDays(diff.GetTotalDays());
1346
1347 Set(tm);
1348
1349 return *this;
1350 }
1351
1352 // ----------------------------------------------------------------------------
1353 // Weekday and monthday stuff
1354 // ----------------------------------------------------------------------------
1355
1356 wxDateTime& wxDateTime::SetToLastMonthDay(Month month,
1357 int year)
1358 {
1359 // take the current month/year if none specified
1360 ReplaceDefaultYearMonthWithCurrent(&year, &month);
1361
1362 return Set(GetNumOfDaysInMonth(year, month), month, year);
1363 }
1364
1365 wxDateTime& wxDateTime::SetToWeekDayInSameWeek(WeekDay weekday)
1366 {
1367 wxCHECK_MSG( weekday != Inv_WeekDay, ms_InvDateTime, _T("invalid weekday") );
1368
1369 WeekDay wdayThis = GetWeekDay();
1370 if ( weekday == wdayThis )
1371 {
1372 // nothing to do
1373 return *this;
1374 }
1375 else if ( weekday < wdayThis )
1376 {
1377 return Substract(wxTimeSpan::Days(wdayThis - weekday));
1378 }
1379 else // weekday > wdayThis
1380 {
1381 return Add(wxTimeSpan::Days(weekday - wdayThis));
1382 }
1383 }
1384
1385 wxDateTime& wxDateTime::SetToNextWeekDay(WeekDay weekday)
1386 {
1387 wxCHECK_MSG( weekday != Inv_WeekDay, ms_InvDateTime, _T("invalid weekday") );
1388
1389 int diff;
1390 WeekDay wdayThis = GetWeekDay();
1391 if ( weekday == wdayThis )
1392 {
1393 // nothing to do
1394 return *this;
1395 }
1396 else if ( weekday < wdayThis )
1397 {
1398 // need to advance a week
1399 diff = 7 - (wdayThis - weekday);
1400 }
1401 else // weekday > wdayThis
1402 {
1403 diff = weekday - wdayThis;
1404 }
1405
1406 return Add(wxTimeSpan::Days(diff));
1407 }
1408
1409 wxDateTime& wxDateTime::SetToPrevWeekDay(WeekDay weekday)
1410 {
1411 wxCHECK_MSG( weekday != Inv_WeekDay, ms_InvDateTime, _T("invalid weekday") );
1412
1413 int diff;
1414 WeekDay wdayThis = GetWeekDay();
1415 if ( weekday == wdayThis )
1416 {
1417 // nothing to do
1418 return *this;
1419 }
1420 else if ( weekday > wdayThis )
1421 {
1422 // need to go to previous week
1423 diff = 7 - (weekday - wdayThis);
1424 }
1425 else // weekday < wdayThis
1426 {
1427 diff = wdayThis - weekday;
1428 }
1429
1430 return Substract(wxTimeSpan::Days(diff));
1431 }
1432
1433 bool wxDateTime::SetToWeekDay(WeekDay weekday,
1434 int n,
1435 Month month,
1436 int year)
1437 {
1438 wxCHECK_MSG( weekday != Inv_WeekDay, FALSE, _T("invalid weekday") );
1439
1440 // we don't check explicitly that -5 <= n <= 5 because we will return FALSE
1441 // anyhow in such case - but may be should still give an assert for it?
1442
1443 // take the current month/year if none specified
1444 ReplaceDefaultYearMonthWithCurrent(&year, &month);
1445
1446 wxDateTime dt;
1447
1448 // TODO this probably could be optimised somehow...
1449
1450 if ( n > 0 )
1451 {
1452 // get the first day of the month
1453 dt.Set(1, month, year);
1454
1455 // get its wday
1456 WeekDay wdayFirst = dt.GetWeekDay();
1457
1458 // go to the first weekday of the month
1459 int diff = weekday - wdayFirst;
1460 if ( diff < 0 )
1461 diff += 7;
1462
1463 // add advance n-1 weeks more
1464 diff += 7*(n - 1);
1465
1466 dt += wxDateSpan::Days(diff);
1467 }
1468 else // count from the end of the month
1469 {
1470 // get the last day of the month
1471 dt.SetToLastMonthDay(month, year);
1472
1473 // get its wday
1474 WeekDay wdayLast = dt.GetWeekDay();
1475
1476 // go to the last weekday of the month
1477 int diff = wdayLast - weekday;
1478 if ( diff < 0 )
1479 diff += 7;
1480
1481 // and rewind n-1 weeks from there
1482 diff += 7*(-n - 1);
1483
1484 dt -= wxDateSpan::Days(diff);
1485 }
1486
1487 // check that it is still in the same month
1488 if ( dt.GetMonth() == month )
1489 {
1490 *this = dt;
1491
1492 return TRUE;
1493 }
1494 else
1495 {
1496 // no such day in this month
1497 return FALSE;
1498 }
1499 }
1500
1501 wxDateTime::wxDateTime_t wxDateTime::GetDayOfYear(const TimeZone& tz) const
1502 {
1503 Tm tm(GetTm(tz));
1504
1505 return gs_cumulatedDays[IsLeapYear(tm.year)][tm.mon] + tm.mday;
1506 }
1507
1508 wxDateTime::wxDateTime_t wxDateTime::GetWeekOfYear(const TimeZone& tz) const
1509 {
1510 #if 1
1511 // the first week of the year is the one which contains Jan, 4 (according
1512 // to ISO standard rule), so the year day N0 = 4 + 7*W always lies in the
1513 // week W+1. As any day N = 7*W + 4 + (N - 4)%7, it lies in the same week
1514 // as N0 or in the next one.
1515
1516 // TODO this surely may be optimized - I got confused while writing it
1517
1518 wxDateTime_t nDayInYear = GetDayOfYear(tz);
1519
1520 // the week day of the day lying in the first week
1521 WeekDay wdayStart = wxDateTime(4, Jan, GetYear()).GetWeekDay();
1522
1523 wxDateTime_t week = (nDayInYear - 4) / 7 + 1;
1524
1525 // notice that Sunday shoould be counted as 7, not 0 here!
1526 if ( ((nDayInYear - 4) % 7) + (!wdayStart ? 7 : wdayStart) > 7 )
1527 {
1528 week++;
1529 }
1530
1531 return week;
1532 #else // 0
1533 // an attempt at doing it simpler - but this doesn't quite work...
1534 return (WeekDay)((GetDayOfYear(tz) - (GetWeekDay(tz) - 1 + 7) % 7 + 7) / 7);
1535 #endif // 0/1
1536 }
1537
1538 wxDateTime::wxDateTime_t wxDateTime::GetWeekOfMonth(const TimeZone& tz) const
1539 {
1540 size_t nWeek = 0;
1541
1542 wxDateTime dt(*this);
1543 do
1544 {
1545 nWeek++;
1546
1547 dt -= wxTimeSpan::Week();
1548 }
1549 while ( dt.GetMonth(tz) == GetMonth(tz) );
1550
1551 return nWeek;
1552 }
1553
1554 wxDateTime& wxDateTime::SetToYearDay(wxDateTime::wxDateTime_t yday)
1555 {
1556 int year = GetYear();
1557 wxCHECK_MSG( (0 < yday) && (yday <= GetNumberOfDays(year)),
1558 ms_InvDateTime, _T("invalid year day") );
1559
1560 bool isLeap = IsLeapYear(year);
1561 for ( Month mon = Jan; mon < Inv_Month; wxNextMonth(mon) )
1562 {
1563 // for Dec, we can't compare with gs_cumulatedDays[mon + 1], but we
1564 // don't need it neither - because of the CHECK above we know that
1565 // yday lies in December then
1566 if ( (mon == Dec) || (yday < gs_cumulatedDays[isLeap][mon + 1]) )
1567 {
1568 Set(yday - gs_cumulatedDays[isLeap][mon], mon, year);
1569
1570 break;
1571 }
1572 }
1573
1574 return *this;
1575 }
1576
1577 // ----------------------------------------------------------------------------
1578 // Julian day number conversion and related stuff
1579 // ----------------------------------------------------------------------------
1580
1581 double wxDateTime::GetJulianDayNumber() const
1582 {
1583 // JDN are always expressed for the GMT dates
1584 Tm tm(ToTimezone(GMT0).GetTm(GMT0));
1585
1586 double result = GetTruncatedJDN(tm.mday, tm.mon, tm.year);
1587
1588 // add the part GetTruncatedJDN() neglected
1589 result += 0.5;
1590
1591 // and now add the time: 86400 sec = 1 JDN
1592 return result + ((double)(60*(60*tm.hour + tm.min) + tm.sec)) / 86400;
1593 }
1594
1595 double wxDateTime::GetRataDie() const
1596 {
1597 // March 1 of the year 0 is Rata Die day -306 and JDN 1721119.5
1598 return GetJulianDayNumber() - 1721119.5 - 306;
1599 }
1600
1601 // ----------------------------------------------------------------------------
1602 // timezone and DST stuff
1603 // ----------------------------------------------------------------------------
1604
1605 int wxDateTime::IsDST(wxDateTime::Country country) const
1606 {
1607 wxCHECK_MSG( country == Country_Default, -1,
1608 _T("country support not implemented") );
1609
1610 // use the C RTL for the dates in the standard range
1611 time_t timet = GetTicks();
1612 if ( timet != (time_t)-1 )
1613 {
1614 tm *tm = localtime(&timet);
1615
1616 wxCHECK_MSG( tm, -1, _T("localtime() failed") );
1617
1618 return tm->tm_isdst;
1619 }
1620 else
1621 {
1622 int year = GetYear();
1623
1624 if ( !IsDSTApplicable(year, country) )
1625 {
1626 // no DST time in this year in this country
1627 return -1;
1628 }
1629
1630 return IsBetween(GetBeginDST(year, country), GetEndDST(year, country));
1631 }
1632 }
1633
1634 wxDateTime& wxDateTime::MakeTimezone(const TimeZone& tz, bool noDST)
1635 {
1636 int secDiff = GetTimeZone() + tz.GetOffset();
1637
1638 // we need to know whether DST is or not in effect for this date unless
1639 // the test disabled by the caller
1640 if ( !noDST && (IsDST() == 1) )
1641 {
1642 // FIXME we assume that the DST is always shifted by 1 hour
1643 secDiff -= 3600;
1644 }
1645
1646 return Substract(wxTimeSpan::Seconds(secDiff));
1647 }
1648
1649 // ----------------------------------------------------------------------------
1650 // wxDateTime to/from text representations
1651 // ----------------------------------------------------------------------------
1652
1653 wxString wxDateTime::Format(const wxChar *format, const TimeZone& tz) const
1654 {
1655 #ifdef __VMS__
1656 int time2;
1657 #endif
1658 wxCHECK_MSG( format, _T(""), _T("NULL format in wxDateTime::Format") );
1659
1660 time_t time = GetTicks();
1661 if ( time != (time_t)-1 )
1662 {
1663 // use strftime()
1664 tm *tm;
1665 if ( tz.GetOffset() == -GetTimeZone() )
1666 {
1667 // we are working with local time
1668 tm = localtime(&time);
1669
1670 // should never happen
1671 wxCHECK_MSG( tm, wxEmptyString, _T("localtime() failed") );
1672 }
1673 else
1674 {
1675 time += tz.GetOffset();
1676
1677 #ifdef __VMS__ /* time is unsigned so VMS gives a warning on the original */
1678 time2 = (int) time;
1679 if ( time2 >= 0 )
1680 #else
1681 if ( time >= 0 )
1682 #endif
1683 {
1684 tm = gmtime(&time);
1685
1686 // should never happen
1687 wxCHECK_MSG( tm, wxEmptyString, _T("gmtime() failed") );
1688 }
1689 else
1690 {
1691 tm = (struct tm *)NULL;
1692 }
1693 }
1694
1695 if ( tm )
1696 {
1697 return CallStrftime(format, tm);
1698 }
1699 //else: use generic code below
1700 }
1701
1702 // we only parse ANSI C format specifications here, no POSIX 2
1703 // complications, no GNU extensions
1704 Tm tm = GetTm(tz);
1705
1706 // used for calls to strftime() when we only deal with time
1707 struct tm tmTimeOnly;
1708 tmTimeOnly.tm_hour = tm.hour;
1709 tmTimeOnly.tm_min = tm.min;
1710 tmTimeOnly.tm_sec = tm.sec;
1711 tmTimeOnly.tm_wday = 0;
1712 tmTimeOnly.tm_yday = 0;
1713 tmTimeOnly.tm_mday = 1; // any date will do
1714 tmTimeOnly.tm_mon = 0;
1715 tmTimeOnly.tm_year = 76;
1716 tmTimeOnly.tm_isdst = 0; // no DST, we adjust for tz ourselves
1717
1718 wxString tmp, res, fmt;
1719 for ( const wxChar *p = format; *p; p++ )
1720 {
1721 if ( *p != _T('%') )
1722 {
1723 // copy as is
1724 res += *p;
1725
1726 continue;
1727 }
1728
1729 // set the default format
1730 switch ( *++p )
1731 {
1732 case _T('Y'): // year has 4 digits
1733 fmt = _T("%04d");
1734 break;
1735
1736 case _T('j'): // day of year has 3 digits
1737 fmt = _T("%03d");
1738 break;
1739
1740 default:
1741 // it's either another valid format specifier in which case
1742 // the format is "%02d" (for all the rest) or we have the
1743 // field width preceding the format in which case it will
1744 // override the default format anyhow
1745 fmt = _T("%02d");
1746 }
1747
1748 restart:
1749 // start of the format specification
1750 switch ( *p )
1751 {
1752 case _T('a'): // a weekday name
1753 case _T('A'):
1754 // second parameter should be TRUE for abbreviated names
1755 res += GetWeekDayName(tm.GetWeekDay(),
1756 *p == _T('a') ? Name_Abbr : Name_Full);
1757 break;
1758
1759 case _T('b'): // a month name
1760 case _T('B'):
1761 res += GetMonthName(tm.mon,
1762 *p == _T('b') ? Name_Abbr : Name_Full);
1763 break;
1764
1765 case _T('c'): // locale default date and time representation
1766 case _T('x'): // locale default date representation
1767 //
1768 // the problem: there is no way to know what do these format
1769 // specifications correspond to for the current locale.
1770 //
1771 // the solution: use a hack and still use strftime(): first
1772 // find the YEAR which is a year in the strftime() range (1970
1773 // - 2038) whose Jan 1 falls on the same week day as the Jan 1
1774 // of the real year. Then make a copy of the format and
1775 // replace all occurences of YEAR in it with some unique
1776 // string not appearing anywhere else in it, then use
1777 // strftime() to format the date in year YEAR and then replace
1778 // YEAR back by the real year and the unique replacement
1779 // string back with YEAR. Notice that "all occurences of YEAR"
1780 // means all occurences of 4 digit as well as 2 digit form!
1781 //
1782 // the bugs: we assume that neither of %c nor %x contains any
1783 // fields which may change between the YEAR and real year. For
1784 // example, the week number (%U, %W) and the day number (%j)
1785 // will change if one of these years is leap and the other one
1786 // is not!
1787 {
1788 // find the YEAR: normally, for any year X, Jan 1 or the
1789 // year X + 28 is the same weekday as Jan 1 of X (because
1790 // the weekday advances by 1 for each normal X and by 2
1791 // for each leap X, hence by 5 every 4 years or by 35
1792 // which is 0 mod 7 every 28 years) but this rule breaks
1793 // down if there are years between X and Y which are
1794 // divisible by 4 but not leap (i.e. divisible by 100 but
1795 // not 400), hence the correction.
1796
1797 int yearReal = GetYear(tz);
1798 int mod28 = yearReal % 28;
1799
1800 // be careful to not go too far - we risk to leave the
1801 // supported range
1802 int year;
1803 if ( mod28 < 10 )
1804 {
1805 year = 1988 + mod28; // 1988 == 0 (mod 28)
1806 }
1807 else
1808 {
1809 year = 1970 + mod28 - 10; // 1970 == 10 (mod 28)
1810 }
1811
1812 int nCentury = year / 100,
1813 nCenturyReal = yearReal / 100;
1814
1815 // need to adjust for the years divisble by 400 which are
1816 // not leap but are counted like leap ones if we just take
1817 // the number of centuries in between for nLostWeekDays
1818 int nLostWeekDays = (nCentury - nCenturyReal) -
1819 (nCentury / 4 - nCenturyReal / 4);
1820
1821 // we have to gain back the "lost" weekdays: note that the
1822 // effect of this loop is to not do anything to
1823 // nLostWeekDays (which we won't use any more), but to
1824 // (indirectly) set the year correctly
1825 while ( (nLostWeekDays % 7) != 0 )
1826 {
1827 nLostWeekDays += year++ % 4 ? 1 : 2;
1828 }
1829
1830 // at any rate, we couldn't go further than 1988 + 9 + 28!
1831 wxASSERT_MSG( year < 2030,
1832 _T("logic error in wxDateTime::Format") );
1833
1834 wxString strYear, strYear2;
1835 strYear.Printf(_T("%d"), year);
1836 strYear2.Printf(_T("%d"), year % 100);
1837
1838 // find two strings not occuring in format (this is surely
1839 // not optimal way of doing it... improvements welcome!)
1840 wxString fmt = format;
1841 wxString replacement = (wxChar)-1;
1842 while ( fmt.Find(replacement) != wxNOT_FOUND )
1843 {
1844 replacement << (wxChar)-1;
1845 }
1846
1847 wxString replacement2 = (wxChar)-2;
1848 while ( fmt.Find(replacement) != wxNOT_FOUND )
1849 {
1850 replacement << (wxChar)-2;
1851 }
1852
1853 // replace all occurences of year with it
1854 bool wasReplaced = fmt.Replace(strYear, replacement) > 0;
1855 if ( !wasReplaced )
1856 wasReplaced = fmt.Replace(strYear2, replacement2) > 0;
1857
1858 // use strftime() to format the same date but in supported
1859 // year
1860 //
1861 // NB: we assume that strftime() doesn't check for the
1862 // date validity and will happily format the date
1863 // corresponding to Feb 29 of a non leap year (which
1864 // may happen if yearReal was leap and year is not)
1865 struct tm tmAdjusted;
1866 InitTm(tmAdjusted);
1867 tmAdjusted.tm_hour = tm.hour;
1868 tmAdjusted.tm_min = tm.min;
1869 tmAdjusted.tm_sec = tm.sec;
1870 tmAdjusted.tm_wday = tm.GetWeekDay();
1871 tmAdjusted.tm_yday = GetDayOfYear();
1872 tmAdjusted.tm_mday = tm.mday;
1873 tmAdjusted.tm_mon = tm.mon;
1874 tmAdjusted.tm_year = year - 1900;
1875 tmAdjusted.tm_isdst = 0; // no DST, already adjusted
1876 wxString str = CallStrftime(*p == _T('c') ? _T("%c")
1877 : _T("%x"),
1878 &tmAdjusted);
1879
1880 // now replace the occurence of 1999 with the real year
1881 wxString strYearReal, strYearReal2;
1882 strYearReal.Printf(_T("%04d"), yearReal);
1883 strYearReal2.Printf(_T("%02d"), yearReal % 100);
1884 str.Replace(strYear, strYearReal);
1885 str.Replace(strYear2, strYearReal2);
1886
1887 // and replace back all occurences of replacement string
1888 if ( wasReplaced )
1889 {
1890 str.Replace(replacement2, strYear2);
1891 str.Replace(replacement, strYear);
1892 }
1893
1894 res += str;
1895 }
1896 break;
1897
1898 case _T('d'): // day of a month (01-31)
1899 res += wxString::Format(fmt, tm.mday);
1900 break;
1901
1902 case _T('H'): // hour in 24h format (00-23)
1903 res += wxString::Format(fmt, tm.hour);
1904 break;
1905
1906 case _T('I'): // hour in 12h format (01-12)
1907 {
1908 // 24h -> 12h, 0h -> 12h too
1909 int hour12 = tm.hour > 12 ? tm.hour - 12
1910 : tm.hour ? tm.hour : 12;
1911 res += wxString::Format(fmt, hour12);
1912 }
1913 break;
1914
1915 case _T('j'): // day of the year
1916 res += wxString::Format(fmt, GetDayOfYear(tz));
1917 break;
1918
1919 case _T('m'): // month as a number (01-12)
1920 res += wxString::Format(fmt, tm.mon + 1);
1921 break;
1922
1923 case _T('M'): // minute as a decimal number (00-59)
1924 res += wxString::Format(fmt, tm.min);
1925 break;
1926
1927 case _T('p'): // AM or PM string
1928 res += CallStrftime(_T("%p"), &tmTimeOnly);
1929 break;
1930
1931 case _T('S'): // second as a decimal number (00-61)
1932 res += wxString::Format(fmt, tm.sec);
1933 break;
1934
1935 case _T('U'): // week number in the year (Sunday 1st week day)
1936 {
1937 int week = (GetDayOfYear(tz) - tm.GetWeekDay() + 7) / 7;
1938 res += wxString::Format(fmt, week);
1939 }
1940 break;
1941
1942 case _T('W'): // week number in the year (Monday 1st week day)
1943 res += wxString::Format(fmt, GetWeekOfYear(tz));
1944 break;
1945
1946 case _T('w'): // weekday as a number (0-6), Sunday = 0
1947 res += wxString::Format(fmt, tm.GetWeekDay());
1948 break;
1949
1950 // case _T('x'): -- handled with "%c"
1951
1952 case _T('X'): // locale default time representation
1953 // just use strftime() to format the time for us
1954 res += CallStrftime(_T("%X"), &tmTimeOnly);
1955 break;
1956
1957 case _T('y'): // year without century (00-99)
1958 res += wxString::Format(fmt, tm.year % 100);
1959 break;
1960
1961 case _T('Y'): // year with century
1962 res += wxString::Format(fmt, tm.year);
1963 break;
1964
1965 case _T('Z'): // timezone name
1966 res += CallStrftime(_T("%Z"), &tmTimeOnly);
1967 break;
1968
1969 default:
1970 // is it the format width?
1971 fmt.Empty();
1972 while ( *p == _T('-') || *p == _T('+') ||
1973 *p == _T(' ') || wxIsdigit(*p) )
1974 {
1975 fmt += *p;
1976 }
1977
1978 if ( !fmt.IsEmpty() )
1979 {
1980 // we've only got the flags and width so far in fmt
1981 fmt.Prepend(_T('%'));
1982 fmt.Append(_T('d'));
1983
1984 goto restart;
1985 }
1986
1987 // no, it wasn't the width
1988 wxFAIL_MSG(_T("unknown format specificator"));
1989
1990 // fall through and just copy it nevertheless
1991
1992 case _T('%'): // a percent sign
1993 res += *p;
1994 break;
1995
1996 case 0: // the end of string
1997 wxFAIL_MSG(_T("missing format at the end of string"));
1998
1999 // just put the '%' which was the last char in format
2000 res += _T('%');
2001 break;
2002 }
2003 }
2004
2005 return res;
2006 }
2007
2008 // this function parses a string in (strict) RFC 822 format: see the section 5
2009 // of the RFC for the detailed description, but briefly it's something of the
2010 // form "Sat, 18 Dec 1999 00:48:30 +0100"
2011 //
2012 // this function is "strict" by design - it must reject anything except true
2013 // RFC822 time specs.
2014 //
2015 // TODO a great candidate for using reg exps
2016 const wxChar *wxDateTime::ParseRfc822Date(const wxChar* date)
2017 {
2018 wxCHECK_MSG( date, (wxChar *)NULL, _T("NULL pointer in wxDateTime::Parse") );
2019
2020 const wxChar *p = date;
2021 const wxChar *comma = wxStrchr(p, _T(','));
2022 if ( comma )
2023 {
2024 // the part before comma is the weekday
2025
2026 // skip it for now - we don't use but might check that it really
2027 // corresponds to the specfied date
2028 p = comma + 1;
2029
2030 if ( *p != _T(' ') )
2031 {
2032 wxLogDebug(_T("no space after weekday in RFC822 time spec"));
2033
2034 return (wxChar *)NULL;
2035 }
2036
2037 p++; // skip space
2038 }
2039
2040 // the following 1 or 2 digits are the day number
2041 if ( !wxIsdigit(*p) )
2042 {
2043 wxLogDebug(_T("day number expected in RFC822 time spec, none found"));
2044
2045 return (wxChar *)NULL;
2046 }
2047
2048 wxDateTime_t day = *p++ - _T('0');
2049 if ( wxIsdigit(*p) )
2050 {
2051 day *= 10;
2052 day += *p++ - _T('0');
2053 }
2054
2055 if ( *p++ != _T(' ') )
2056 {
2057 return (wxChar *)NULL;
2058 }
2059
2060 // the following 3 letters specify the month
2061 wxString monName(p, 3);
2062 Month mon;
2063 if ( monName == _T("Jan") )
2064 mon = Jan;
2065 else if ( monName == _T("Feb") )
2066 mon = Feb;
2067 else if ( monName == _T("Mar") )
2068 mon = Mar;
2069 else if ( monName == _T("Apr") )
2070 mon = Apr;
2071 else if ( monName == _T("May") )
2072 mon = May;
2073 else if ( monName == _T("Jun") )
2074 mon = Jun;
2075 else if ( monName == _T("Jul") )
2076 mon = Jul;
2077 else if ( monName == _T("Aug") )
2078 mon = Aug;
2079 else if ( monName == _T("Sep") )
2080 mon = Sep;
2081 else if ( monName == _T("Oct") )
2082 mon = Oct;
2083 else if ( monName == _T("Nov") )
2084 mon = Nov;
2085 else if ( monName == _T("Dec") )
2086 mon = Dec;
2087 else
2088 {
2089 wxLogDebug(_T("Invalid RFC 822 month name '%s'"), monName.c_str());
2090
2091 return (wxChar *)NULL;
2092 }
2093
2094 p += 3;
2095
2096 if ( *p++ != _T(' ') )
2097 {
2098 return (wxChar *)NULL;
2099 }
2100
2101 // next is the year
2102 if ( !wxIsdigit(*p) )
2103 {
2104 // no year?
2105 return (wxChar *)NULL;
2106 }
2107
2108 int year = *p++ - _T('0');
2109
2110 if ( !wxIsdigit(*p) )
2111 {
2112 // should have at least 2 digits in the year
2113 return (wxChar *)NULL;
2114 }
2115
2116 year *= 10;
2117 year += *p++ - _T('0');
2118
2119 // is it a 2 digit year (as per original RFC 822) or a 4 digit one?
2120 if ( wxIsdigit(*p) )
2121 {
2122 year *= 10;
2123 year += *p++ - _T('0');
2124
2125 if ( !wxIsdigit(*p) )
2126 {
2127 // no 3 digit years please
2128 return (wxChar *)NULL;
2129 }
2130
2131 year *= 10;
2132 year += *p++ - _T('0');
2133 }
2134
2135 if ( *p++ != _T(' ') )
2136 {
2137 return (wxChar *)NULL;
2138 }
2139
2140 // time is in the format hh:mm:ss and seconds are optional
2141 if ( !wxIsdigit(*p) )
2142 {
2143 return (wxChar *)NULL;
2144 }
2145
2146 wxDateTime_t hour = *p++ - _T('0');
2147
2148 if ( !wxIsdigit(*p) )
2149 {
2150 return (wxChar *)NULL;
2151 }
2152
2153 hour *= 10;
2154 hour += *p++ - _T('0');
2155
2156 if ( *p++ != _T(':') )
2157 {
2158 return (wxChar *)NULL;
2159 }
2160
2161 if ( !wxIsdigit(*p) )
2162 {
2163 return (wxChar *)NULL;
2164 }
2165
2166 wxDateTime_t min = *p++ - _T('0');
2167
2168 if ( !wxIsdigit(*p) )
2169 {
2170 return (wxChar *)NULL;
2171 }
2172
2173 min *= 10;
2174 min += *p++ - _T('0');
2175
2176 wxDateTime_t sec = 0;
2177 if ( *p++ == _T(':') )
2178 {
2179 if ( !wxIsdigit(*p) )
2180 {
2181 return (wxChar *)NULL;
2182 }
2183
2184 sec = *p++ - _T('0');
2185
2186 if ( !wxIsdigit(*p) )
2187 {
2188 return (wxChar *)NULL;
2189 }
2190
2191 sec *= 10;
2192 sec += *p++ - _T('0');
2193 }
2194
2195 if ( *p++ != _T(' ') )
2196 {
2197 return (wxChar *)NULL;
2198 }
2199
2200 // and now the interesting part: the timezone
2201 int offset;
2202 if ( *p == _T('-') || *p == _T('+') )
2203 {
2204 // the explicit offset given: it has the form of hhmm
2205 bool plus = *p++ == _T('+');
2206
2207 if ( !wxIsdigit(*p) || !wxIsdigit(*(p + 1)) )
2208 {
2209 return (wxChar *)NULL;
2210 }
2211
2212 // hours
2213 offset = 60*(10*(*p - _T('0')) + (*(p + 1) - _T('0')));
2214
2215 p += 2;
2216
2217 if ( !wxIsdigit(*p) || !wxIsdigit(*(p + 1)) )
2218 {
2219 return (wxChar *)NULL;
2220 }
2221
2222 // minutes
2223 offset += 10*(*p - _T('0')) + (*(p + 1) - _T('0'));
2224
2225 if ( !plus )
2226 {
2227 offset = -offset;
2228 }
2229
2230 p += 2;
2231 }
2232 else
2233 {
2234 // the symbolic timezone given: may be either military timezone or one
2235 // of standard abbreviations
2236 if ( !*(p + 1) )
2237 {
2238 // military: Z = UTC, J unused, A = -1, ..., Y = +12
2239 static const int offsets[26] =
2240 {
2241 //A B C D E F G H I J K L M
2242 -1, -2, -3, -4, -5, -6, -7, -8, -9, 0, -10, -11, -12,
2243 //N O P R Q S T U V W Z Y Z
2244 +1, +2, +3, +4, +5, +6, +7, +8, +9, +10, +11, +12, 0
2245 };
2246
2247 if ( *p < _T('A') || *p > _T('Z') || *p == _T('J') )
2248 {
2249 wxLogDebug(_T("Invalid militaty timezone '%c'"), *p);
2250
2251 return (wxChar *)NULL;
2252 }
2253
2254 offset = offsets[*p++ - _T('A')];
2255 }
2256 else
2257 {
2258 // abbreviation
2259 wxString tz = p;
2260 if ( tz == _T("UT") || tz == _T("UTC") || tz == _T("GMT") )
2261 offset = 0;
2262 else if ( tz == _T("AST") )
2263 offset = AST - GMT0;
2264 else if ( tz == _T("ADT") )
2265 offset = ADT - GMT0;
2266 else if ( tz == _T("EST") )
2267 offset = EST - GMT0;
2268 else if ( tz == _T("EDT") )
2269 offset = EDT - GMT0;
2270 else if ( tz == _T("CST") )
2271 offset = CST - GMT0;
2272 else if ( tz == _T("CDT") )
2273 offset = CDT - GMT0;
2274 else if ( tz == _T("MST") )
2275 offset = MST - GMT0;
2276 else if ( tz == _T("MDT") )
2277 offset = MDT - GMT0;
2278 else if ( tz == _T("PST") )
2279 offset = PST - GMT0;
2280 else if ( tz == _T("PDT") )
2281 offset = PDT - GMT0;
2282 else
2283 {
2284 wxLogDebug(_T("Unknown RFC 822 timezone '%s'"), p);
2285
2286 return (wxChar *)NULL;
2287 }
2288
2289 p += tz.length();
2290 }
2291
2292 // make it minutes
2293 offset *= 60;
2294 }
2295
2296 // the spec was correct
2297 Set(day, mon, year, hour, min, sec);
2298 #ifndef __BORLANDC__ // The following line doesn't compile with BC++
2299 MakeTimezone(60*(wxDateTime_t)offset);
2300 #else
2301 wxMessageBox("ParseRfc822Date doesn't with BC++ yet, sorry.");
2302 #endif
2303
2304 return p;
2305 }
2306
2307 const wxChar *wxDateTime::ParseFormat(const wxChar *date,
2308 const wxChar *format,
2309 const wxDateTime& dateDef)
2310 {
2311 wxCHECK_MSG( date && format, (wxChar *)NULL,
2312 _T("NULL pointer in wxDateTime::ParseFormat()") );
2313
2314 wxString str;
2315 unsigned long num;
2316
2317 // what fields have we found?
2318 bool haveWDay = FALSE,
2319 haveYDay = FALSE,
2320 haveDay = FALSE,
2321 haveMon = FALSE,
2322 haveYear = FALSE,
2323 haveHour = FALSE,
2324 haveMin = FALSE,
2325 haveSec = FALSE;
2326
2327 bool hourIsIn12hFormat = FALSE, // or in 24h one?
2328 isPM = FALSE; // AM by default
2329
2330 // and the value of the items we have (init them to get rid of warnings)
2331 wxDateTime_t sec = 0,
2332 min = 0,
2333 hour = 0;
2334 WeekDay wday = Inv_WeekDay;
2335 wxDateTime_t yday = 0,
2336 mday = 0;
2337 wxDateTime::Month mon = Inv_Month;
2338 int year = 0;
2339
2340 const wxChar *input = date;
2341 for ( const wxChar *fmt = format; *fmt; fmt++ )
2342 {
2343 if ( *fmt != _T('%') )
2344 {
2345 if ( wxIsspace(*fmt) )
2346 {
2347 // a white space in the format string matches 0 or more white
2348 // spaces in the input
2349 while ( wxIsspace(*input) )
2350 {
2351 input++;
2352 }
2353 }
2354 else // !space
2355 {
2356 // any other character (not whitespace, not '%') must be
2357 // matched by itself in the input
2358 if ( *input++ != *fmt )
2359 {
2360 // no match
2361 return (wxChar *)NULL;
2362 }
2363 }
2364
2365 // done with this format char
2366 continue;
2367 }
2368
2369 // start of a format specification
2370 switch ( *++fmt )
2371 {
2372 case _T('a'): // a weekday name
2373 case _T('A'):
2374 {
2375 int flag = *fmt == _T('a') ? Name_Abbr : Name_Full;
2376 wday = GetWeekDayFromName(GetAlphaToken(input), flag);
2377 if ( wday == Inv_WeekDay )
2378 {
2379 // no match
2380 return (wxChar *)NULL;
2381 }
2382 }
2383 haveWDay = TRUE;
2384 break;
2385
2386 case _T('b'): // a month name
2387 case _T('B'):
2388 {
2389 int flag = *fmt == _T('b') ? Name_Abbr : Name_Full;
2390 mon = GetMonthFromName(GetAlphaToken(input), flag);
2391 if ( mon == Inv_Month )
2392 {
2393 // no match
2394 return (wxChar *)NULL;
2395 }
2396 }
2397 haveMon = TRUE;
2398 break;
2399
2400 case _T('c'): // locale default date and time representation
2401 {
2402 wxDateTime dt;
2403
2404 // this is the format which corresponds to ctime() output
2405 // and strptime("%c") should parse it, so try it first
2406 static const wxChar *fmtCtime = _T("%a %b %d %H:%M:%S %Y");
2407
2408 const wxChar *result = dt.ParseFormat(input, fmtCtime);
2409 if ( !result )
2410 {
2411 result = dt.ParseFormat(input, _T("%x %X"));
2412 }
2413
2414 if ( !result )
2415 {
2416 result = dt.ParseFormat(input, _T("%X %x"));
2417 }
2418
2419 if ( !result )
2420 {
2421 // we've tried everything and still no match
2422 return (wxChar *)NULL;
2423 }
2424
2425 Tm tm = dt.GetTm();
2426
2427 haveDay = haveMon = haveYear =
2428 haveHour = haveMin = haveSec = TRUE;
2429
2430 hour = tm.hour;
2431 min = tm.min;
2432 sec = tm.sec;
2433
2434 year = tm.year;
2435 mon = tm.mon;
2436 mday = tm.mday;
2437
2438 input = result;
2439 }
2440 break;
2441
2442 case _T('d'): // day of a month (01-31)
2443 if ( !GetNumericToken(input, &num) || (num > 31) )
2444 {
2445 // no match
2446 return (wxChar *)NULL;
2447 }
2448
2449 // we can't check whether the day range is correct yet, will
2450 // do it later - assume ok for now
2451 haveDay = TRUE;
2452 mday = (wxDateTime_t)num;
2453 break;
2454
2455 case _T('H'): // hour in 24h format (00-23)
2456 if ( !GetNumericToken(input, &num) || (num > 23) )
2457 {
2458 // no match
2459 return (wxChar *)NULL;
2460 }
2461
2462 haveHour = TRUE;
2463 hour = (wxDateTime_t)num;
2464 break;
2465
2466 case _T('I'): // hour in 12h format (01-12)
2467 if ( !GetNumericToken(input, &num) || !num || (num > 12) )
2468 {
2469 // no match
2470 return (wxChar *)NULL;
2471 }
2472
2473 haveHour = TRUE;
2474 hourIsIn12hFormat = TRUE;
2475 hour = num % 12; // 12 should be 0
2476 break;
2477
2478 case _T('j'): // day of the year
2479 if ( !GetNumericToken(input, &num) || !num || (num > 366) )
2480 {
2481 // no match
2482 return (wxChar *)NULL;
2483 }
2484
2485 haveYDay = TRUE;
2486 yday = (wxDateTime_t)num;
2487 break;
2488
2489 case _T('m'): // month as a number (01-12)
2490 if ( !GetNumericToken(input, &num) || !num || (num > 12) )
2491 {
2492 // no match
2493 return (wxChar *)NULL;
2494 }
2495
2496 haveMon = TRUE;
2497 mon = (Month)(num - 1);
2498 break;
2499
2500 case _T('M'): // minute as a decimal number (00-59)
2501 if ( !GetNumericToken(input, &num) || (num > 59) )
2502 {
2503 // no match
2504 return (wxChar *)NULL;
2505 }
2506
2507 haveMin = TRUE;
2508 min = (wxDateTime_t)num;
2509 break;
2510
2511 case _T('p'): // AM or PM string
2512 {
2513 wxString am, pm, token = GetAlphaToken(input);
2514
2515 GetAmPmStrings(&am, &pm);
2516 if ( token.CmpNoCase(pm) == 0 )
2517 {
2518 isPM = TRUE;
2519 }
2520 else if ( token.CmpNoCase(am) != 0 )
2521 {
2522 // no match
2523 return (wxChar *)NULL;
2524 }
2525 }
2526 break;
2527
2528 case _T('r'): // time as %I:%M:%S %p
2529 {
2530 wxDateTime dt;
2531 input = dt.ParseFormat(input, _T("%I:%M:%S %p"));
2532 if ( !input )
2533 {
2534 // no match
2535 return (wxChar *)NULL;
2536 }
2537
2538 haveHour = haveMin = haveSec = TRUE;
2539
2540 Tm tm = dt.GetTm();
2541 hour = tm.hour;
2542 min = tm.min;
2543 sec = tm.sec;
2544 }
2545 break;
2546
2547 case _T('R'): // time as %H:%M
2548 {
2549 wxDateTime dt;
2550 input = dt.ParseFormat(input, _T("%H:%M"));
2551 if ( !input )
2552 {
2553 // no match
2554 return (wxChar *)NULL;
2555 }
2556
2557 haveHour = haveMin = TRUE;
2558
2559 Tm tm = dt.GetTm();
2560 hour = tm.hour;
2561 min = tm.min;
2562 }
2563
2564 case _T('S'): // second as a decimal number (00-61)
2565 if ( !GetNumericToken(input, &num) || (num > 61) )
2566 {
2567 // no match
2568 return (wxChar *)NULL;
2569 }
2570
2571 haveSec = TRUE;
2572 sec = (wxDateTime_t)num;
2573 break;
2574
2575 case _T('T'): // time as %H:%M:%S
2576 {
2577 wxDateTime dt;
2578 input = dt.ParseFormat(input, _T("%H:%M:%S"));
2579 if ( !input )
2580 {
2581 // no match
2582 return (wxChar *)NULL;
2583 }
2584
2585 haveHour = haveMin = haveSec = TRUE;
2586
2587 Tm tm = dt.GetTm();
2588 hour = tm.hour;
2589 min = tm.min;
2590 sec = tm.sec;
2591 }
2592 break;
2593
2594 case _T('w'): // weekday as a number (0-6), Sunday = 0
2595 if ( !GetNumericToken(input, &num) || (wday > 6) )
2596 {
2597 // no match
2598 return (wxChar *)NULL;
2599 }
2600
2601 haveWDay = TRUE;
2602 wday = (WeekDay)num;
2603 break;
2604
2605 case _T('x'): // locale default date representation
2606 #ifdef HAVE_STRPTIME
2607 // try using strptime() - it may fail even if the input is
2608 // correct but the date is out of range, so we will fall back
2609 // to our generic code anyhow (FIXME !Unicode friendly)
2610 {
2611 struct tm tm;
2612 const wxChar *result = strptime(input, "%x", &tm);
2613 if ( result )
2614 {
2615 input = result;
2616
2617 haveDay = haveMon = haveYear = TRUE;
2618
2619 year = 1900 + tm.tm_year;
2620 mon = (Month)tm.tm_mon;
2621 mday = tm.tm_mday;
2622
2623 break;
2624 }
2625 }
2626 #endif // HAVE_STRPTIME
2627
2628 // TODO query the LOCALE_IDATE setting under Win32
2629 {
2630 wxDateTime dt;
2631
2632 wxString fmtDate, fmtDateAlt;
2633 if ( IsWestEuropeanCountry(GetCountry()) ||
2634 GetCountry() == Russia )
2635 {
2636 fmtDate = _T("%d/%m/%y");
2637 fmtDateAlt = _T("%m/%d/%y");
2638 }
2639 else // assume USA
2640 {
2641 fmtDate = _T("%m/%d/%y");
2642 fmtDateAlt = _T("%d/%m/%y");
2643 }
2644
2645 const wxChar *result = dt.ParseFormat(input, fmtDate);
2646
2647 if ( !result )
2648 {
2649 // ok, be nice and try another one
2650 result = dt.ParseFormat(input, fmtDateAlt);
2651 }
2652
2653 if ( !result )
2654 {
2655 // bad luck
2656 return (wxChar *)NULL;
2657 }
2658
2659 Tm tm = dt.GetTm();
2660
2661 haveDay = haveMon = haveYear = TRUE;
2662
2663 year = tm.year;
2664 mon = tm.mon;
2665 mday = tm.mday;
2666
2667 input = result;
2668 }
2669
2670 break;
2671
2672 case _T('X'): // locale default time representation
2673 #ifdef HAVE_STRPTIME
2674 {
2675 // use strptime() to do it for us (FIXME !Unicode friendly)
2676 struct tm tm;
2677 input = strptime(input, "%X", &tm);
2678 if ( !input )
2679 {
2680 return (wxChar *)NULL;
2681 }
2682
2683 haveHour = haveMin = haveSec = TRUE;
2684
2685 hour = tm.tm_hour;
2686 min = tm.tm_min;
2687 sec = tm.tm_sec;
2688 }
2689 #else // !HAVE_STRPTIME
2690 // TODO under Win32 we can query the LOCALE_ITIME system
2691 // setting which says whether the default time format is
2692 // 24 or 12 hour
2693 {
2694 // try to parse what follows as "%H:%M:%S" and, if this
2695 // fails, as "%I:%M:%S %p" - this should catch the most
2696 // common cases
2697 wxDateTime dt;
2698
2699 const wxChar *result = dt.ParseFormat(input, _T("%T"));
2700 if ( !result )
2701 {
2702 result = dt.ParseFormat(input, _T("%r"));
2703 }
2704
2705 if ( !result )
2706 {
2707 // no match
2708 return (wxChar *)NULL;
2709 }
2710
2711 haveHour = haveMin = haveSec = TRUE;
2712
2713 Tm tm = dt.GetTm();
2714 hour = tm.hour;
2715 min = tm.min;
2716 sec = tm.sec;
2717
2718 input = result;
2719 }
2720 #endif // HAVE_STRPTIME/!HAVE_STRPTIME
2721 break;
2722
2723 case _T('y'): // year without century (00-99)
2724 if ( !GetNumericToken(input, &num) || (num > 99) )
2725 {
2726 // no match
2727 return (wxChar *)NULL;
2728 }
2729
2730 haveYear = TRUE;
2731 year = 1900 + num;
2732 break;
2733
2734 case _T('Y'): // year with century
2735 if ( !GetNumericToken(input, &num) )
2736 {
2737 // no match
2738 return (wxChar *)NULL;
2739 }
2740
2741 haveYear = TRUE;
2742 year = (wxDateTime_t)num;
2743 break;
2744
2745 case _T('Z'): // timezone name
2746 wxFAIL_MSG(_T("TODO"));
2747 break;
2748
2749 case _T('%'): // a percent sign
2750 if ( *input++ != _T('%') )
2751 {
2752 // no match
2753 return (wxChar *)NULL;
2754 }
2755 break;
2756
2757 case 0: // the end of string
2758 wxFAIL_MSG(_T("unexpected format end"));
2759
2760 // fall through
2761
2762 default: // not a known format spec
2763 return (wxChar *)NULL;
2764 }
2765 }
2766
2767 // format matched, try to construct a date from what we have now
2768 Tm tmDef;
2769 if ( dateDef.IsValid() )
2770 {
2771 // take this date as default
2772 tmDef = dateDef.GetTm();
2773 }
2774 else if ( m_time != 0 )
2775 {
2776 // if this date is valid, don't change it
2777 tmDef = GetTm();
2778 }
2779 else
2780 {
2781 // no default and this date is invalid - fall back to Today()
2782 tmDef = Today().GetTm();
2783 }
2784
2785 Tm tm = tmDef;
2786
2787 // set the date
2788 if ( haveYear )
2789 {
2790 tm.year = year;
2791 }
2792
2793 // TODO we don't check here that the values are consistent, if both year
2794 // day and month/day were found, we just ignore the year day and we
2795 // also always ignore the week day
2796 if ( haveMon && haveDay )
2797 {
2798 if ( mday > GetNumOfDaysInMonth(tm.year, mon) )
2799 {
2800 wxLogDebug(_T("bad month day in wxDateTime::ParseFormat"));
2801
2802 return (wxChar *)NULL;
2803 }
2804
2805 tm.mon = mon;
2806 tm.mday = mday;
2807 }
2808 else if ( haveYDay )
2809 {
2810 if ( yday > GetNumberOfDays(tm.year) )
2811 {
2812 wxLogDebug(_T("bad year day in wxDateTime::ParseFormat"));
2813
2814 return (wxChar *)NULL;
2815 }
2816
2817 Tm tm2 = wxDateTime(1, Jan, tm.year).SetToYearDay(yday).GetTm();
2818
2819 tm.mon = tm2.mon;
2820 tm.mday = tm2.mday;
2821 }
2822
2823 // deal with AM/PM
2824 if ( haveHour && hourIsIn12hFormat && isPM )
2825 {
2826 // translate to 24hour format
2827 hour += 12;
2828 }
2829 //else: either already in 24h format or no translation needed
2830
2831 // set the time
2832 if ( haveHour )
2833 {
2834 tm.hour = hour;
2835 }
2836
2837 if ( haveMin )
2838 {
2839 tm.min = min;
2840 }
2841
2842 if ( haveSec )
2843 {
2844 tm.sec = sec;
2845 }
2846
2847 Set(tm);
2848
2849 return input;
2850 }
2851
2852 const wxChar *wxDateTime::ParseDateTime(const wxChar *date)
2853 {
2854 wxCHECK_MSG( date, (wxChar *)NULL, _T("NULL pointer in wxDateTime::Parse") );
2855
2856 // there is a public domain version of getdate.y, but it only works for
2857 // English...
2858 wxFAIL_MSG(_T("TODO"));
2859
2860 return (wxChar *)NULL;
2861 }
2862
2863 const wxChar *wxDateTime::ParseDate(const wxChar *date)
2864 {
2865 // this is a simplified version of ParseDateTime() which understands only
2866 // "today" (for wxDate compatibility) and digits only otherwise (and not
2867 // all esoteric constructions ParseDateTime() knows about)
2868
2869 wxCHECK_MSG( date, (wxChar *)NULL, _T("NULL pointer in wxDateTime::Parse") );
2870
2871 const wxChar *p = date;
2872 while ( wxIsspace(*p) )
2873 p++;
2874
2875 wxString today = _T("today");
2876 size_t len = today.length();
2877 if ( wxString(p, len).CmpNoCase(today) == 0 )
2878 {
2879 // nothing can follow this, so stop here
2880 p += len;
2881
2882 *this = Today();
2883
2884 return p;
2885 }
2886
2887 // what do we have?
2888 bool haveDay = FALSE, // the months day?
2889 haveWDay = FALSE, // the day of week?
2890 haveMon = FALSE, // the month?
2891 haveYear = FALSE; // the year?
2892
2893 // and the value of the items we have (init them to get rid of warnings)
2894 WeekDay wday = Inv_WeekDay;
2895 wxDateTime_t day = 0;
2896 wxDateTime::Month mon = Inv_Month;
2897 int year = 0;
2898
2899 // tokenize the string
2900 wxStringTokenizer tok(p, _T(",/-\t "));
2901 while ( tok.HasMoreTokens() )
2902 {
2903 wxString token = tok.GetNextToken();
2904
2905 // is it a number?
2906 unsigned long val;
2907 if ( token.ToULong(&val) )
2908 {
2909 // guess what this number is
2910
2911 bool isDay = FALSE,
2912 isMonth = FALSE,
2913 // only years are counted from 0
2914 isYear = (val == 0) || (val > 31);
2915 if ( !isYear )
2916 {
2917 // may be the month or month day or the year, assume the
2918 // month day by default and fallback to month if the range
2919 // allow it or to the year if our assumption doesn't work
2920 if ( haveDay )
2921 {
2922 // we already have the day, so may only be a month or year
2923 if ( val > 12 )
2924 {
2925 isYear = TRUE;
2926 }
2927 else
2928 {
2929 isMonth = TRUE;
2930 }
2931 }
2932 else // it may be day
2933 {
2934 isDay = TRUE;
2935
2936 // check the range
2937 if ( haveMon )
2938 {
2939 if ( val > GetNumOfDaysInMonth(haveYear ? year
2940 : Inv_Year,
2941 mon) )
2942 {
2943 // oops, it can't be a day finally
2944 isDay = FALSE;
2945
2946 if ( val > 12 )
2947 {
2948 isYear = TRUE;
2949 }
2950 else
2951 {
2952 isMonth = TRUE;
2953 }
2954 }
2955 }
2956 }
2957 }
2958
2959 // remember that we have this and stop the scan if it's the second
2960 // time we find this, except for the day logic (see there)
2961 if ( isYear )
2962 {
2963 if ( haveYear )
2964 {
2965 break;
2966 }
2967
2968 haveYear = TRUE;
2969
2970 // no roll over - 99 means 99, not 1999 for us
2971 year = val;
2972 }
2973 else if ( isMonth )
2974 {
2975 if ( haveMon )
2976 {
2977 break;
2978 }
2979
2980 haveMon = TRUE;
2981
2982 mon = (wxDateTime::Month)val;
2983 }
2984 else
2985 {
2986 wxASSERT_MSG( isDay, _T("logic error") );
2987
2988 if ( haveDay )
2989 {
2990 // may be were mistaken when we found it for the first
2991 // time? may be it was a month or year instead?
2992 //
2993 // this ability to "backtrack" allows us to correctly parse
2994 // both things like 01/13 and 13/01 - but, of course, we
2995 // still can't resolve the ambiguity in 01/02 (it will be
2996 // Feb 1 for us, not Jan 2 as americans might expect!)
2997 if ( (day <= 12) && !haveMon )
2998 {
2999 // exchange day and month
3000 mon = (wxDateTime::Month)day;
3001
3002 haveMon = TRUE;
3003 }
3004 else if ( !haveYear )
3005 {
3006 // exchange day and year
3007 year = day;
3008
3009 haveYear = TRUE;
3010 }
3011 }
3012
3013 haveDay = TRUE;
3014
3015 day = val;
3016 }
3017 }
3018 else // not a number
3019 {
3020 mon = GetMonthFromName(token, Name_Full | Name_Abbr);
3021 if ( mon != Inv_Month )
3022 {
3023 // it's a month
3024 if ( haveMon )
3025 {
3026 break;
3027 }
3028
3029 haveMon = TRUE;
3030 }
3031 else
3032 {
3033 wday = GetWeekDayFromName(token, Name_Full | Name_Abbr);
3034 if ( wday != Inv_WeekDay )
3035 {
3036 // a week day
3037 if ( haveWDay )
3038 {
3039 break;
3040 }
3041
3042 haveWDay = TRUE;
3043 }
3044 else
3045 {
3046 // try the ordinals
3047 static const wxChar *ordinals[] =
3048 {
3049 wxTRANSLATE("first"),
3050 wxTRANSLATE("second"),
3051 wxTRANSLATE("third"),
3052 wxTRANSLATE("fourth"),
3053 wxTRANSLATE("fifth"),
3054 wxTRANSLATE("sixth"),
3055 wxTRANSLATE("seventh"),
3056 wxTRANSLATE("eighth"),
3057 wxTRANSLATE("ninth"),
3058 wxTRANSLATE("tenth"),
3059 wxTRANSLATE("eleventh"),
3060 wxTRANSLATE("twelfth"),
3061 wxTRANSLATE("thirteenth"),
3062 wxTRANSLATE("fourteenth"),
3063 wxTRANSLATE("fifteenth"),
3064 wxTRANSLATE("sixteenth"),
3065 wxTRANSLATE("seventeenth"),
3066 wxTRANSLATE("eighteenth"),
3067 wxTRANSLATE("nineteenth"),
3068 wxTRANSLATE("twentieth"),
3069 // that's enough - otherwise we'd have problems with
3070 // composite (or not) ordinals otherwise
3071 };
3072
3073 size_t n;
3074 for ( n = 0; n < WXSIZEOF(ordinals); n++ )
3075 {
3076 if ( token.CmpNoCase(ordinals[n]) == 0 )
3077 {
3078 break;
3079 }
3080 }
3081
3082 if ( n == WXSIZEOF(ordinals) )
3083 {
3084 // stop here - something unknown
3085 break;
3086 }
3087
3088 // it's a day
3089 if ( haveDay )
3090 {
3091 // don't try anything here (as in case of numeric day
3092 // above) - the symbolic day spec should always
3093 // precede the month/year
3094 break;
3095 }
3096
3097 haveDay = TRUE;
3098
3099 day = n + 1;
3100 }
3101 }
3102 }
3103 }
3104
3105 // either no more tokens or the scan was stopped by something we couldn't
3106 // parse - in any case, see if we can construct a date from what we have
3107 if ( !haveDay && !haveWDay )
3108 {
3109 wxLogDebug(_T("no day, no weekday hence no date."));
3110
3111 return (wxChar *)NULL;
3112 }
3113
3114 if ( haveWDay && (haveMon || haveYear || haveDay) &&
3115 !(haveMon && haveMon && haveYear) )
3116 {
3117 // without adjectives (which we don't support here) the week day only
3118 // makes sense completely separately or with the full date
3119 // specification (what would "Wed 1999" mean?)
3120 return (wxChar *)NULL;
3121 }
3122
3123 if ( !haveMon )
3124 {
3125 mon = GetCurrentMonth();
3126 }
3127
3128 if ( !haveYear )
3129 {
3130 year = GetCurrentYear();
3131 }
3132
3133 if ( haveDay )
3134 {
3135 Set(day, mon, year);
3136
3137 if ( haveWDay )
3138 {
3139 // check that it is really the same
3140 if ( GetWeekDay() != wday )
3141 {
3142 // inconsistency detected
3143 return (wxChar *)NULL;
3144 }
3145 }
3146 }
3147 else // haveWDay
3148 {
3149 *this = Today();
3150
3151 SetToWeekDayInSameWeek(wday);
3152 }
3153
3154 // return the pointer to the next char
3155 return p + wxStrlen(p) - wxStrlen(tok.GetString());
3156 }
3157
3158 const wxChar *wxDateTime::ParseTime(const wxChar *time)
3159 {
3160 wxCHECK_MSG( time, (wxChar *)NULL, _T("NULL pointer in wxDateTime::Parse") );
3161
3162 // first try some extra things
3163 static const struct
3164 {
3165 const wxChar *name;
3166 wxDateTime_t hour;
3167 } stdTimes[] =
3168 {
3169 { wxTRANSLATE("noon"), 12 },
3170 { wxTRANSLATE("midnight"), 00 },
3171 // anything else?
3172 };
3173
3174 for ( size_t n = 0; n < WXSIZEOF(stdTimes); n++ )
3175 {
3176 wxString timeString = wxGetTranslation(stdTimes[n].name);
3177 size_t len = timeString.length();
3178 if ( timeString.CmpNoCase(wxString(time, len)) == 0 )
3179 {
3180 Set(stdTimes[n].hour, 0, 0);
3181
3182 return time + len;
3183 }
3184 }
3185
3186 // try all time formats we may think about starting with the standard one
3187 const wxChar *result = ParseFormat(time, _T("%X"));
3188 if ( !result )
3189 {
3190 // normally, it's the same, but why not try it?
3191 result = ParseFormat(time, _T("%H:%M:%S"));
3192 }
3193
3194 if ( !result )
3195 {
3196 // 12hour with AM/PM?
3197 result = ParseFormat(time, _T("%I:%M:%S %p"));
3198 }
3199
3200 if ( !result )
3201 {
3202 // without seconds?
3203 result = ParseFormat(time, _T("%H:%M"));
3204 }
3205
3206 if ( !result )
3207 {
3208 // 12hour with AM/PM but without seconds?
3209 result = ParseFormat(time, _T("%I:%M %p"));
3210 }
3211
3212 if ( !result )
3213 {
3214 // just the hour?
3215 result = ParseFormat(time, _T("%H"));
3216 }
3217
3218 if ( !result )
3219 {
3220 // just the hour and AM/PM?
3221 result = ParseFormat(time, _T("%I %p"));
3222 }
3223
3224 // TODO: parse timezones
3225
3226 return result;
3227 }
3228
3229 // ============================================================================
3230 // wxTimeSpan
3231 // ============================================================================
3232
3233 // not all strftime(3) format specifiers make sense here because, for example,
3234 // a time span doesn't have a year nor a timezone
3235 //
3236 // Here are the ones which are supported (all of them are supported by strftime
3237 // as well):
3238 // %H hour in 24 hour format
3239 // %M minute (00 - 59)
3240 // %S second (00 - 59)
3241 // %% percent sign
3242 //
3243 // Also, for MFC CTimeSpan compatibility, we support
3244 // %D number of days
3245 //
3246 // And, to be better than MFC :-), we also have
3247 // %E number of wEeks
3248 // %l milliseconds (000 - 999)
3249 wxString wxTimeSpan::Format(const wxChar *format) const
3250 {
3251 wxCHECK_MSG( format, _T(""), _T("NULL format in wxTimeSpan::Format") );
3252
3253 wxString str;
3254 str.Alloc(strlen(format));
3255
3256 for ( const wxChar *pch = format; pch; pch++ )
3257 {
3258 wxChar ch = *pch;
3259
3260 if ( ch == '%' )
3261 {
3262 wxString tmp;
3263
3264 ch = *pch++;
3265 switch ( ch )
3266 {
3267 default:
3268 wxFAIL_MSG( _T("invalid format character") );
3269 // fall through
3270
3271 case '%':
3272 // will get to str << ch below
3273 break;
3274
3275 case 'D':
3276 tmp.Printf(_T("%d"), GetDays());
3277 break;
3278
3279 case 'E':
3280 tmp.Printf(_T("%d"), GetWeeks());
3281 break;
3282
3283 case 'H':
3284 tmp.Printf(_T("%02d"), GetHours());
3285 break;
3286
3287 case 'l':
3288 tmp.Printf(_T("%03ld"), GetMilliseconds().ToLong());
3289 break;
3290
3291 case 'M':
3292 tmp.Printf(_T("%02d"), GetMinutes());
3293 break;
3294
3295 case 'S':
3296 tmp.Printf(_T("%02ld"), GetSeconds().ToLong());
3297 break;
3298 }
3299
3300 if ( !!tmp )
3301 {
3302 str += tmp;
3303
3304 // skip str += ch below
3305 continue;
3306 }
3307 }
3308
3309 str += ch;
3310 }
3311
3312 return str;
3313 }