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1ef54dcf 1///////////////////////////////////////////////////////////////////////////////
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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: $Id$
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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//
55d99c7a 16// Licence: wxWindows licence
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17///////////////////////////////////////////////////////////////////////////////
18
19/*
20 * Implementation notes:
21 *
22 * 1. the time is stored as a 64bit integer containing the signed number of
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23 * milliseconds since Jan 1. 1970 (the Unix Epoch) - so it is always
24 * expressed in GMT.
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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 *
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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.
1ef54dcf 45 */
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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
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66#if !defined(wxUSE_DATETIME) || wxUSE_DATETIME
67
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68#ifndef WX_PRECOMP
69 #include "wx/string.h"
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70 #include "wx/log.h"
71#endif // WX_PRECOMP
72
54800df8 73#include "wx/intl.h"
fcc3d7cb 74#include "wx/thread.h"
cd0b1709 75#include "wx/tokenzr.h"
7281ab04 76#include "wx/module.h"
fcc3d7cb 77
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78#include <ctype.h>
79
0979c962 80#include "wx/datetime.h"
f6bcfd97 81#include "wx/timer.h" // for wxGetLocalTimeMillis()
0979c962 82
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83const long wxDateTime::TIME_T_FACTOR = 1000l;
84
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85// ----------------------------------------------------------------------------
86// conditional compilation
87// ----------------------------------------------------------------------------
6de20863 88
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89#if defined(HAVE_STRPTIME) && defined(__GLIBC__) && \
90 ((__GLIBC__ == 2) && (__GLIBC_MINOR__ == 0))
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91 // glibc 2.0.7 strptime() is broken - the following snippet causes it to
92 // crash (instead of just failing):
93 //
94 // strncpy(buf, "Tue Dec 21 20:25:40 1999", 128);
95 // strptime(buf, "%x", &tm);
96 //
97 // so don't use it
98 #undef HAVE_STRPTIME
99#endif // broken strptime()
100
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101#if defined(__MWERKS__) && wxUSE_UNICODE
102 #include <wtime.h>
103#endif
104
0779cc9a 105#if !defined(WX_TIMEZONE) && !defined(WX_GMTOFF_IN_TM)
ad0dc53b 106 #if defined(__BORLANDC__) || defined(__MINGW32__) || defined(__VISAGECPP__)
f0f951fa 107 #define WX_TIMEZONE _timezone
8208e181 108 #elif defined(__MWERKS__)
f6bcfd97 109 long wxmw_timezone = 28800;
c4e1b7f2 110 #define WX_TIMEZONE wxmw_timezone
5283098e 111 #elif defined(__DJGPP__) || defined(__WINE__)
713a0efc 112 #include <sys/timeb.h>
c4e1b7f2 113 #include <values.h>
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114 static long wxGetTimeZone()
115 {
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116 static long timezone = MAXLONG; // invalid timezone
117 if (timezone == MAXLONG)
118 {
119 struct timeb tb;
120 ftime(&tb);
121 timezone = tb.timezone;
122 }
123 return timezone;
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124 }
125 #define WX_TIMEZONE wxGetTimeZone()
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126 #elif defined(__DARWIN__)
127 #define WX_GMTOFF_IN_TM
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128 #else // unknown platform - try timezone
129 #define WX_TIMEZONE timezone
130 #endif
0779cc9a 131#endif // !WX_TIMEZONE && !WX_GMTOFF_IN_TM
c25a510b 132
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133// ----------------------------------------------------------------------------
134// macros
135// ----------------------------------------------------------------------------
136
137// debugging helper: just a convenient replacement of wxCHECK()
138#define wxDATETIME_CHECK(expr, msg) \
139 if ( !(expr) ) \
140 { \
141 wxFAIL_MSG(msg); \
142 *this = wxInvalidDateTime; \
143 return *this; \
144 }
145
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146// ----------------------------------------------------------------------------
147// private classes
148// ----------------------------------------------------------------------------
149
150class wxDateTimeHolidaysModule : public wxModule
151{
152public:
153 virtual bool OnInit()
154 {
155 wxDateTimeHolidayAuthority::AddAuthority(new wxDateTimeWorkDays);
156
157 return TRUE;
158 }
159
160 virtual void OnExit()
161 {
162 wxDateTimeHolidayAuthority::ClearAllAuthorities();
df5168c4 163 wxDateTimeHolidayAuthority::ms_authorities.clear();
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164 }
165
166private:
167 DECLARE_DYNAMIC_CLASS(wxDateTimeHolidaysModule)
168};
169
170IMPLEMENT_DYNAMIC_CLASS(wxDateTimeHolidaysModule, wxModule)
171
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172// ----------------------------------------------------------------------------
173// constants
174// ----------------------------------------------------------------------------
175
e6ec579c 176// some trivial ones
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177static const int MONTHS_IN_YEAR = 12;
178
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179static const int SEC_PER_MIN = 60;
180
181static const int MIN_PER_HOUR = 60;
182
183static const int HOURS_PER_DAY = 24;
fcc3d7cb 184
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185static const long SECONDS_PER_DAY = 86400l;
186
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187static const int DAYS_PER_WEEK = 7;
188
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189static const long MILLISECONDS_PER_DAY = 86400000l;
190
191// this is the integral part of JDN of the midnight of Jan 1, 1970
192// (i.e. JDN(Jan 1, 1970) = 2440587.5)
cd0b1709 193static const long EPOCH_JDN = 2440587l;
b76b015e 194
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195// the date of JDN -0.5 (as we don't work with fractional parts, this is the
196// reference date for us) is Nov 24, 4714BC
197static const int JDN_0_YEAR = -4713;
198static const int JDN_0_MONTH = wxDateTime::Nov;
199static const int JDN_0_DAY = 24;
200
201// the constants used for JDN calculations
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202static const long JDN_OFFSET = 32046l;
203static const long DAYS_PER_5_MONTHS = 153l;
204static const long DAYS_PER_4_YEARS = 1461l;
205static const long DAYS_PER_400_YEARS = 146097l;
1ef54dcf 206
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207// this array contains the cumulated number of days in all previous months for
208// normal and leap years
209static const wxDateTime::wxDateTime_t gs_cumulatedDays[2][MONTHS_IN_YEAR] =
210{
211 { 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334 },
212 { 0, 31, 60, 91, 121, 152, 182, 213, 244, 274, 305, 335 }
213};
214
fcc3d7cb 215// ----------------------------------------------------------------------------
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216// global data
217// ----------------------------------------------------------------------------
218
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219// in the fine tradition of ANSI C we use our equivalent of (time_t)-1 to
220// indicate an invalid wxDateTime object
56d0c5a6 221const wxDateTime wxDefaultDateTime;
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222
223wxDateTime::Country wxDateTime::ms_country = wxDateTime::Country_Unknown;
224
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225// ----------------------------------------------------------------------------
226// private functions
227// ----------------------------------------------------------------------------
228
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229// debugger helper: shows what the date really is
230#ifdef __WXDEBUG__
231extern const wxChar *wxDumpDate(const wxDateTime* dt)
232{
0de868d9 233 static wxChar buf[128];
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234
235 wxStrcpy(buf, dt->Format(_T("%Y-%m-%d (%a) %H:%M:%S")));
236
237 return buf;
238}
239#endif // Debug
240
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241// get the number of days in the given month of the given year
242static inline
243wxDateTime::wxDateTime_t GetNumOfDaysInMonth(int year, wxDateTime::Month month)
244{
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245 // the number of days in month in Julian/Gregorian calendar: the first line
246 // is for normal years, the second one is for the leap ones
247 static wxDateTime::wxDateTime_t daysInMonth[2][MONTHS_IN_YEAR] =
248 {
249 { 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 },
250 { 31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 }
251 };
252
253 return daysInMonth[wxDateTime::IsLeapYear(year)][month];
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254}
255
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256// returns the time zone in the C sense, i.e. the difference UTC - local
257// (in seconds)
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258static int GetTimeZone()
259{
260 // set to TRUE when the timezone is set
261 static bool s_timezoneSet = FALSE;
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262#ifdef WX_GMTOFF_IN_TM
263 static long gmtoffset = LONG_MAX; // invalid timezone
264#endif
c5432233 265
c5432233 266 // ensure that the timezone variable is set by calling localtime
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267 if ( !s_timezoneSet )
268 {
1ef54dcf 269 // just call localtime() instead of figuring out whether this system
e6ec579c 270 // supports tzset(), _tzset() or something else
c5432233 271 time_t t = 0;
0779cc9a 272 struct tm *tm;
fcc3d7cb 273
0779cc9a 274 tm = localtime(&t);
fcc3d7cb 275 s_timezoneSet = TRUE;
c5432233 276
0779cc9a 277#ifdef WX_GMTOFF_IN_TM
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278 // note that GMT offset is the opposite of time zone and so to return
279 // consistent results in both WX_GMTOFF_IN_TM and !WX_GMTOFF_IN_TM
280 // cases we have to negate it
281 gmtoffset = -tm->tm_gmtoff;
0779cc9a 282#endif
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283 }
284
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285#ifdef WX_GMTOFF_IN_TM
286 return (int)gmtoffset;
287#else
6de20863 288 return (int)WX_TIMEZONE;
0779cc9a 289#endif
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290}
291
e6ec579c 292// return the integral part of the JDN for the midnight of the given date (to
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293// get the real JDN you need to add 0.5, this is, in fact, JDN of the
294// noon of the previous day)
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295static long GetTruncatedJDN(wxDateTime::wxDateTime_t day,
296 wxDateTime::Month mon,
297 int year)
298{
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299 // CREDIT: code below is by Scott E. Lee (but bugs are mine)
300
301 // check the date validity
302 wxASSERT_MSG(
303 (year > JDN_0_YEAR) ||
304 ((year == JDN_0_YEAR) && (mon > JDN_0_MONTH)) ||
305 ((year == JDN_0_YEAR) && (mon == JDN_0_MONTH) && (day >= JDN_0_DAY)),
306 _T("date out of range - can't convert to JDN")
307 );
308
309 // make the year positive to avoid problems with negative numbers division
310 year += 4800;
311
312 // months are counted from March here
313 int month;
314 if ( mon >= wxDateTime::Mar )
e6ec579c 315 {
1ef54dcf 316 month = mon - 2;
e6ec579c 317 }
1ef54dcf 318 else
e6ec579c 319 {
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320 month = mon + 10;
321 year--;
322 }
e6ec579c 323
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324 // now we can simply add all the contributions together
325 return ((year / 100) * DAYS_PER_400_YEARS) / 4
326 + ((year % 100) * DAYS_PER_4_YEARS) / 4
327 + (month * DAYS_PER_5_MONTHS + 2) / 5
328 + day
329 - JDN_OFFSET;
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330}
331
2423ef22 332// this function is a wrapper around strftime(3) adding error checking
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333static wxString CallStrftime(const wxChar *format, const tm* tm)
334{
68ee7c47 335 wxChar buf[4096];
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336 if ( !wxStrftime(buf, WXSIZEOF(buf), format, tm) )
337 {
68ee7c47 338 // buffer is too small?
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339 wxFAIL_MSG(_T("strftime() failed"));
340 }
341
342 return wxString(buf);
343}
344
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345#ifdef HAVE_STRPTIME
346
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347// glibc2 doesn't define this in the headers unless _XOPEN_SOURCE is defined
348// which, unfortunately, wreaks havoc elsewhere
349#if defined(__GLIBC__) && (__GLIBC__ == 2)
350 extern "C" char *strptime(const char *, const char *, struct tm *);
351#endif
352
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353// Unicode-friendly strptime() wrapper
354static const wxChar *
355CallStrptime(const wxChar *input, const char *fmt, tm *tm)
356{
357 // the problem here is that strptime() returns pointer into the string we
358 // passed to it while we're really interested in the pointer into the
359 // original, Unicode, string so we try to transform the pointer back
360#if wxUSE_UNICODE
361 wxCharBuffer inputMB(wxConvertWX2MB(input));
362#else // ASCII
363 const char * const inputMB = input;
364#endif // Unicode/Ascii
365
366 const char *result = strptime(inputMB, fmt, tm);
367 if ( !result )
368 return NULL;
369
370#if wxUSE_UNICODE
371 // FIXME: this is wrong in presence of surrogates &c
372 return input + (result - inputMB.data());
373#else // ASCII
374 return result;
375#endif // Unicode/Ascii
376}
377
378#endif // HAVE_STRPTIME
379
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380// if year and/or month have invalid values, replace them with the current ones
381static void ReplaceDefaultYearMonthWithCurrent(int *year,
382 wxDateTime::Month *month)
383{
384 struct tm *tmNow = NULL;
385
386 if ( *year == wxDateTime::Inv_Year )
387 {
388 tmNow = wxDateTime::GetTmNow();
389
390 *year = 1900 + tmNow->tm_year;
391 }
392
393 if ( *month == wxDateTime::Inv_Month )
394 {
395 if ( !tmNow )
396 tmNow = wxDateTime::GetTmNow();
397
398 *month = (wxDateTime::Month)tmNow->tm_mon;
399 }
400}
401
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402// fll the struct tm with default values
403static void InitTm(struct tm& tm)
404{
405 // struct tm may have etxra fields (undocumented and with unportable
406 // names) which, nevertheless, must be set to 0
407 memset(&tm, 0, sizeof(struct tm));
408
409 tm.tm_mday = 1; // mday 0 is invalid
410 tm.tm_year = 76; // any valid year
411 tm.tm_isdst = -1; // auto determine
412}
413
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414// parsing helpers
415// ---------------
416
417// return the month if the string is a month name or Inv_Month otherwise
f0f951fa 418static wxDateTime::Month GetMonthFromName(const wxString& name, int flags)
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419{
420 wxDateTime::Month mon;
421 for ( mon = wxDateTime::Jan; mon < wxDateTime::Inv_Month; wxNextMonth(mon) )
422 {
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423 // case-insensitive comparison either one of or with both abbreviated
424 // and not versions
425 if ( flags & wxDateTime::Name_Full )
cd0b1709 426 {
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427 if ( name.CmpNoCase(wxDateTime::
428 GetMonthName(mon, wxDateTime::Name_Full)) == 0 )
429 {
430 break;
431 }
432 }
433
434 if ( flags & wxDateTime::Name_Abbr )
435 {
436 if ( name.CmpNoCase(wxDateTime::
437 GetMonthName(mon, wxDateTime::Name_Abbr)) == 0 )
438 {
439 break;
440 }
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441 }
442 }
443
444 return mon;
445}
446
447// return the weekday if the string is a weekday name or Inv_WeekDay otherwise
f0f951fa 448static wxDateTime::WeekDay GetWeekDayFromName(const wxString& name, int flags)
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449{
450 wxDateTime::WeekDay wd;
451 for ( wd = wxDateTime::Sun; wd < wxDateTime::Inv_WeekDay; wxNextWDay(wd) )
452 {
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453 // case-insensitive comparison either one of or with both abbreviated
454 // and not versions
455 if ( flags & wxDateTime::Name_Full )
cd0b1709 456 {
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457 if ( name.CmpNoCase(wxDateTime::
458 GetWeekDayName(wd, wxDateTime::Name_Full)) == 0 )
459 {
460 break;
461 }
462 }
463
464 if ( flags & wxDateTime::Name_Abbr )
465 {
466 if ( name.CmpNoCase(wxDateTime::
467 GetWeekDayName(wd, wxDateTime::Name_Abbr)) == 0 )
468 {
469 break;
470 }
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471 }
472 }
473
474 return wd;
475}
476
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477// scans all digits (but no more than len) and returns the resulting number
478static bool GetNumericToken(size_t len, const wxChar*& p, unsigned long *number)
f0f951fa 479{
f6bcfd97 480 size_t n = 1;
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481 wxString s;
482 while ( wxIsdigit(*p) )
483 {
484 s += *p++;
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485
486 if ( len && ++n > len )
487 break;
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488 }
489
fde5a86b 490 return !!s && s.ToULong(number);
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491}
492
493// scans all alphabetic characters and returns the resulting string
494static wxString GetAlphaToken(const wxChar*& p)
495{
496 wxString s;
497 while ( wxIsalpha(*p) )
498 {
499 s += *p++;
500 }
501
502 return s;
503}
504
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505// ============================================================================
506// implementation of wxDateTime
507// ============================================================================
508
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509// ----------------------------------------------------------------------------
510// struct Tm
511// ----------------------------------------------------------------------------
512
513wxDateTime::Tm::Tm()
514{
515 year = (wxDateTime_t)wxDateTime::Inv_Year;
516 mon = wxDateTime::Inv_Month;
517 mday = 0;
e6ec579c 518 hour = min = sec = msec = 0;
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519 wday = wxDateTime::Inv_WeekDay;
520}
521
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522wxDateTime::Tm::Tm(const struct tm& tm, const TimeZone& tz)
523 : m_tz(tz)
b76b015e 524{
e6ec579c 525 msec = 0;
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526 sec = tm.tm_sec;
527 min = tm.tm_min;
528 hour = tm.tm_hour;
529 mday = tm.tm_mday;
fcc3d7cb 530 mon = (wxDateTime::Month)tm.tm_mon;
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531 year = 1900 + tm.tm_year;
532 wday = tm.tm_wday;
533 yday = tm.tm_yday;
534}
535
536bool wxDateTime::Tm::IsValid() const
537{
538 // we allow for the leap seconds, although we don't use them (yet)
fcc3d7cb 539 return (year != wxDateTime::Inv_Year) && (mon != wxDateTime::Inv_Month) &&
c5a1681b 540 (mday <= GetNumOfDaysInMonth(year, mon)) &&
e6ec579c 541 (hour < 24) && (min < 60) && (sec < 62) && (msec < 1000);
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542}
543
544void wxDateTime::Tm::ComputeWeekDay()
545{
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546 // compute the week day from day/month/year: we use the dumbest algorithm
547 // possible: just compute our JDN and then use the (simple to derive)
548 // formula: weekday = (JDN + 1.5) % 7
549 wday = (wxDateTime::WeekDay)(GetTruncatedJDN(mday, mon, year) + 2) % 7;
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550}
551
e6ec579c 552void wxDateTime::Tm::AddMonths(int monDiff)
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553{
554 // normalize the months field
555 while ( monDiff < -mon )
556 {
557 year--;
558
559 monDiff += MONTHS_IN_YEAR;
560 }
561
2ef31e80 562 while ( monDiff + mon >= MONTHS_IN_YEAR )
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563 {
564 year++;
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565
566 monDiff -= MONTHS_IN_YEAR;
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567 }
568
569 mon = (wxDateTime::Month)(mon + monDiff);
570
e6ec579c 571 wxASSERT_MSG( mon >= 0 && mon < MONTHS_IN_YEAR, _T("logic error") );
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572
573 // NB: we don't check here that the resulting date is valid, this function
574 // is private and the caller must check it if needed
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575}
576
e6ec579c 577void wxDateTime::Tm::AddDays(int dayDiff)
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578{
579 // normalize the days field
9d9b7755 580 while ( dayDiff + mday < 1 )
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581 {
582 AddMonths(-1);
583
9d9b7755 584 dayDiff += GetNumOfDaysInMonth(year, mon);
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585 }
586
9d9b7755 587 mday += dayDiff;
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588 while ( mday > GetNumOfDaysInMonth(year, mon) )
589 {
590 mday -= GetNumOfDaysInMonth(year, mon);
591
592 AddMonths(1);
593 }
594
595 wxASSERT_MSG( mday > 0 && mday <= GetNumOfDaysInMonth(year, mon),
596 _T("logic error") );
597}
598
599// ----------------------------------------------------------------------------
600// class TimeZone
601// ----------------------------------------------------------------------------
602
603wxDateTime::TimeZone::TimeZone(wxDateTime::TZ tz)
604{
605 switch ( tz )
606 {
607 case wxDateTime::Local:
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608 // get the offset from C RTL: it returns the difference GMT-local
609 // while we want to have the offset _from_ GMT, hence the '-'
610 m_offset = -GetTimeZone();
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611 break;
612
613 case wxDateTime::GMT_12:
614 case wxDateTime::GMT_11:
615 case wxDateTime::GMT_10:
616 case wxDateTime::GMT_9:
617 case wxDateTime::GMT_8:
618 case wxDateTime::GMT_7:
619 case wxDateTime::GMT_6:
620 case wxDateTime::GMT_5:
621 case wxDateTime::GMT_4:
622 case wxDateTime::GMT_3:
623 case wxDateTime::GMT_2:
624 case wxDateTime::GMT_1:
299fcbfe 625 m_offset = -3600*(wxDateTime::GMT0 - tz);
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626 break;
627
628 case wxDateTime::GMT0:
629 case wxDateTime::GMT1:
630 case wxDateTime::GMT2:
631 case wxDateTime::GMT3:
632 case wxDateTime::GMT4:
633 case wxDateTime::GMT5:
634 case wxDateTime::GMT6:
635 case wxDateTime::GMT7:
636 case wxDateTime::GMT8:
637 case wxDateTime::GMT9:
638 case wxDateTime::GMT10:
639 case wxDateTime::GMT11:
640 case wxDateTime::GMT12:
299fcbfe 641 m_offset = 3600*(tz - wxDateTime::GMT0);
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642 break;
643
644 case wxDateTime::A_CST:
645 // Central Standard Time in use in Australia = UTC + 9.5
cd0b1709 646 m_offset = 60l*(9*60 + 30);
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647 break;
648
649 default:
650 wxFAIL_MSG( _T("unknown time zone") );
651 }
652}
653
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654// ----------------------------------------------------------------------------
655// static functions
656// ----------------------------------------------------------------------------
657
658/* static */
659bool wxDateTime::IsLeapYear(int year, wxDateTime::Calendar cal)
660{
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661 if ( year == Inv_Year )
662 year = GetCurrentYear();
663
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664 if ( cal == Gregorian )
665 {
666 // in Gregorian calendar leap years are those divisible by 4 except
667 // those divisible by 100 unless they're also divisible by 400
668 // (in some countries, like Russia and Greece, additional corrections
669 // exist, but they won't manifest themselves until 2700)
670 return (year % 4 == 0) && ((year % 100 != 0) || (year % 400 == 0));
671 }
672 else if ( cal == Julian )
673 {
674 // in Julian calendar the rule is simpler
675 return year % 4 == 0;
676 }
677 else
678 {
679 wxFAIL_MSG(_T("unknown calendar"));
680
681 return FALSE;
682 }
683}
684
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685/* static */
686int wxDateTime::GetCentury(int year)
687{
688 return year > 0 ? year / 100 : year / 100 - 1;
689}
690
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691/* static */
692int wxDateTime::ConvertYearToBC(int year)
693{
694 // year 0 is BC 1
695 return year > 0 ? year : year - 1;
696}
697
698/* static */
699int wxDateTime::GetCurrentYear(wxDateTime::Calendar cal)
700{
701 switch ( cal )
702 {
703 case Gregorian:
704 return Now().GetYear();
705
706 case Julian:
707 wxFAIL_MSG(_T("TODO"));
708 break;
709
710 default:
711 wxFAIL_MSG(_T("unsupported calendar"));
712 break;
713 }
714
715 return Inv_Year;
716}
717
718/* static */
719wxDateTime::Month wxDateTime::GetCurrentMonth(wxDateTime::Calendar cal)
720{
721 switch ( cal )
722 {
723 case Gregorian:
724 return Now().GetMonth();
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725
726 case Julian:
727 wxFAIL_MSG(_T("TODO"));
728 break;
729
730 default:
731 wxFAIL_MSG(_T("unsupported calendar"));
732 break;
733 }
734
735 return Inv_Month;
736}
737
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738/* static */
739wxDateTime::wxDateTime_t wxDateTime::GetNumberOfDays(int year, Calendar cal)
740{
741 if ( year == Inv_Year )
742 {
743 // take the current year if none given
744 year = GetCurrentYear();
745 }
746
747 switch ( cal )
748 {
749 case Gregorian:
750 case Julian:
751 return IsLeapYear(year) ? 366 : 365;
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752
753 default:
754 wxFAIL_MSG(_T("unsupported calendar"));
755 break;
756 }
757
758 return 0;
759}
760
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761/* static */
762wxDateTime::wxDateTime_t wxDateTime::GetNumberOfDays(wxDateTime::Month month,
763 int year,
764 wxDateTime::Calendar cal)
765{
fcc3d7cb 766 wxCHECK_MSG( month < MONTHS_IN_YEAR, 0, _T("invalid month") );
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767
768 if ( cal == Gregorian || cal == Julian )
769 {
770 if ( year == Inv_Year )
771 {
772 // take the current year if none given
773 year = GetCurrentYear();
774 }
775
fcc3d7cb 776 return GetNumOfDaysInMonth(year, month);
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777 }
778 else
779 {
780 wxFAIL_MSG(_T("unsupported calendar"));
781
782 return 0;
783 }
784}
785
786/* static */
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787wxString wxDateTime::GetMonthName(wxDateTime::Month month,
788 wxDateTime::NameFlags flags)
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789{
790 wxCHECK_MSG( month != Inv_Month, _T(""), _T("invalid month") );
791
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792 // notice that we must set all the fields to avoid confusing libc (GNU one
793 // gets confused to a crash if we don't do this)
cd0b1709 794 tm tm;
f0f951fa 795 InitTm(tm);
cd0b1709 796 tm.tm_mon = month;
b76b015e 797
f0f951fa 798 return CallStrftime(flags == Name_Abbr ? _T("%b") : _T("%B"), &tm);
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799}
800
801/* static */
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802wxString wxDateTime::GetWeekDayName(wxDateTime::WeekDay wday,
803 wxDateTime::NameFlags flags)
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804{
805 wxCHECK_MSG( wday != Inv_WeekDay, _T(""), _T("invalid weekday") );
806
807 // take some arbitrary Sunday
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808 tm tm;
809 InitTm(tm);
810 tm.tm_mday = 28;
811 tm.tm_mon = Nov;
812 tm.tm_year = 99;
b76b015e 813
1ef54dcf 814 // and offset it by the number of days needed to get the correct wday
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815 tm.tm_mday += wday;
816
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817 // call mktime() to normalize it...
818 (void)mktime(&tm);
819
820 // ... and call strftime()
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821 return CallStrftime(flags == Name_Abbr ? _T("%a") : _T("%A"), &tm);
822}
823
824/* static */
825void wxDateTime::GetAmPmStrings(wxString *am, wxString *pm)
826{
827 tm tm;
828 InitTm(tm);
829 if ( am )
830 {
831 *am = CallStrftime(_T("%p"), &tm);
832 }
833 if ( pm )
834 {
835 tm.tm_hour = 13;
836 *pm = CallStrftime(_T("%p"), &tm);
837 }
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838}
839
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840// ----------------------------------------------------------------------------
841// Country stuff: date calculations depend on the country (DST, work days,
842// ...), so we need to know which rules to follow.
843// ----------------------------------------------------------------------------
844
845/* static */
846wxDateTime::Country wxDateTime::GetCountry()
847{
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848 // TODO use LOCALE_ICOUNTRY setting under Win32
849
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850 if ( ms_country == Country_Unknown )
851 {
852 // try to guess from the time zone name
853 time_t t = time(NULL);
854 struct tm *tm = localtime(&t);
855
856 wxString tz = CallStrftime(_T("%Z"), tm);
857 if ( tz == _T("WET") || tz == _T("WEST") )
858 {
859 ms_country = UK;
860 }
861 else if ( tz == _T("CET") || tz == _T("CEST") )
862 {
863 ms_country = Country_EEC;
864 }
865 else if ( tz == _T("MSK") || tz == _T("MSD") )
866 {
867 ms_country = Russia;
868 }
869 else if ( tz == _T("AST") || tz == _T("ADT") ||
870 tz == _T("EST") || tz == _T("EDT") ||
871 tz == _T("CST") || tz == _T("CDT") ||
872 tz == _T("MST") || tz == _T("MDT") ||
873 tz == _T("PST") || tz == _T("PDT") )
874 {
875 ms_country = USA;
876 }
877 else
878 {
879 // well, choose a default one
880 ms_country = USA;
881 }
882 }
883
884 return ms_country;
885}
886
887/* static */
888void wxDateTime::SetCountry(wxDateTime::Country country)
889{
890 ms_country = country;
891}
892
893/* static */
894bool wxDateTime::IsWestEuropeanCountry(Country country)
895{
896 if ( country == Country_Default )
897 {
898 country = GetCountry();
899 }
900
901 return (Country_WesternEurope_Start <= country) &&
902 (country <= Country_WesternEurope_End);
903}
904
905// ----------------------------------------------------------------------------
906// DST calculations: we use 3 different rules for the West European countries,
907// USA and for the rest of the world. This is undoubtedly false for many
908// countries, but I lack the necessary info (and the time to gather it),
909// please add the other rules here!
910// ----------------------------------------------------------------------------
911
912/* static */
913bool wxDateTime::IsDSTApplicable(int year, Country country)
914{
915 if ( year == Inv_Year )
916 {
917 // take the current year if none given
918 year = GetCurrentYear();
919 }
920
921 if ( country == Country_Default )
922 {
923 country = GetCountry();
924 }
925
926 switch ( country )
927 {
928 case USA:
929 case UK:
930 // DST was first observed in the US and UK during WWI, reused
931 // during WWII and used again since 1966
932 return year >= 1966 ||
933 (year >= 1942 && year <= 1945) ||
934 (year == 1918 || year == 1919);
935
936 default:
937 // assume that it started after WWII
938 return year > 1950;
939 }
940}
941
942/* static */
943wxDateTime wxDateTime::GetBeginDST(int year, Country country)
944{
945 if ( year == Inv_Year )
946 {
947 // take the current year if none given
948 year = GetCurrentYear();
949 }
950
951 if ( country == Country_Default )
952 {
953 country = GetCountry();
954 }
955
956 if ( !IsDSTApplicable(year, country) )
957 {
2ef31e80 958 return wxInvalidDateTime;
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959 }
960
961 wxDateTime dt;
962
963 if ( IsWestEuropeanCountry(country) || (country == Russia) )
964 {
965 // DST begins at 1 a.m. GMT on the last Sunday of March
966 if ( !dt.SetToLastWeekDay(Sun, Mar, year) )
967 {
968 // weird...
969 wxFAIL_MSG( _T("no last Sunday in March?") );
970 }
971
972 dt += wxTimeSpan::Hours(1);
973
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974 // disable DST tests because it could result in an infinite recursion!
975 dt.MakeGMT(TRUE);
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976 }
977 else switch ( country )
978 {
979 case USA:
980 switch ( year )
981 {
982 case 1918:
983 case 1919:
984 // don't know for sure - assume it was in effect all year
985
986 case 1943:
987 case 1944:
988 case 1945:
989 dt.Set(1, Jan, year);
990 break;
991
992 case 1942:
993 // DST was installed Feb 2, 1942 by the Congress
994 dt.Set(2, Feb, year);
995 break;
996
997 // Oil embargo changed the DST period in the US
998 case 1974:
999 dt.Set(6, Jan, 1974);
1000 break;
1001
1002 case 1975:
1003 dt.Set(23, Feb, 1975);
1004 break;
1005
1006 default:
1007 // before 1986, DST begun on the last Sunday of April, but
1008 // in 1986 Reagan changed it to begin at 2 a.m. of the
1009 // first Sunday in April
1010 if ( year < 1986 )
1011 {
1012 if ( !dt.SetToLastWeekDay(Sun, Apr, year) )
1013 {
1014 // weird...
1015 wxFAIL_MSG( _T("no first Sunday in April?") );
1016 }
1017 }
1018 else
1019 {
1020 if ( !dt.SetToWeekDay(Sun, 1, Apr, year) )
1021 {
1022 // weird...
1023 wxFAIL_MSG( _T("no first Sunday in April?") );
1024 }
1025 }
1026
1027 dt += wxTimeSpan::Hours(2);
1028
1029 // TODO what about timezone??
1030 }
1031
1032 break;
1033
1034 default:
1035 // assume Mar 30 as the start of the DST for the rest of the world
1036 // - totally bogus, of course
1037 dt.Set(30, Mar, year);
1038 }
1039
1040 return dt;
1041}
1042
1043/* static */
1044wxDateTime wxDateTime::GetEndDST(int year, Country country)
1045{
1046 if ( year == Inv_Year )
1047 {
1048 // take the current year if none given
1049 year = GetCurrentYear();
1050 }
1051
1052 if ( country == Country_Default )
1053 {
1054 country = GetCountry();
1055 }
1056
1057 if ( !IsDSTApplicable(year, country) )
1058 {
2ef31e80 1059 return wxInvalidDateTime;
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1060 }
1061
1062 wxDateTime dt;
1063
1064 if ( IsWestEuropeanCountry(country) || (country == Russia) )
1065 {
5f287370 1066 // DST ends at 1 a.m. GMT on the last Sunday of October
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1067 if ( !dt.SetToLastWeekDay(Sun, Oct, year) )
1068 {
1069 // weirder and weirder...
1070 wxFAIL_MSG( _T("no last Sunday in October?") );
1071 }
1072
1073 dt += wxTimeSpan::Hours(1);
1074
41acf5c0
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1075 // disable DST tests because it could result in an infinite recursion!
1076 dt.MakeGMT(TRUE);
239446b4
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1077 }
1078 else switch ( country )
1079 {
1080 case USA:
1081 switch ( year )
1082 {
1083 case 1918:
1084 case 1919:
1085 // don't know for sure - assume it was in effect all year
1086
1087 case 1943:
1088 case 1944:
1089 dt.Set(31, Dec, year);
1090 break;
1091
1092 case 1945:
1093 // the time was reset after the end of the WWII
1094 dt.Set(30, Sep, year);
1095 break;
1096
1097 default:
5f287370 1098 // DST ends at 2 a.m. on the last Sunday of October
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1099 if ( !dt.SetToLastWeekDay(Sun, Oct, year) )
1100 {
1101 // weirder and weirder...
1102 wxFAIL_MSG( _T("no last Sunday in October?") );
1103 }
1104
1105 dt += wxTimeSpan::Hours(2);
1106
1107 // TODO what about timezone??
1108 }
1109 break;
1110
1111 default:
1112 // assume October 26th as the end of the DST - totally bogus too
1113 dt.Set(26, Oct, year);
1114 }
1115
1116 return dt;
1117}
1118
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1119// ----------------------------------------------------------------------------
1120// constructors and assignment operators
1121// ----------------------------------------------------------------------------
1122
f6bcfd97
BP
1123// return the current time with ms precision
1124/* static */ wxDateTime wxDateTime::UNow()
1125{
1126 return wxDateTime(wxGetLocalTimeMillis());
1127}
1128
299fcbfe
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1129// the values in the tm structure contain the local time
1130wxDateTime& wxDateTime::Set(const struct tm& tm)
0979c962 1131{
299fcbfe 1132 struct tm tm2(tm);
b76b015e 1133 time_t timet = mktime(&tm2);
1ef54dcf 1134
4afd7529 1135 if ( timet == (time_t)-1 )
0979c962 1136 {
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1137 // mktime() rather unintuitively fails for Jan 1, 1970 if the hour is
1138 // less than timezone - try to make it work for this case
1139 if ( tm2.tm_year == 70 && tm2.tm_mon == 0 && tm2.tm_mday == 1 )
1140 {
1141 // add timezone to make sure that date is in range
1142 tm2.tm_sec -= GetTimeZone();
1143
1144 timet = mktime(&tm2);
1145 if ( timet != (time_t)-1 )
1146 {
1147 timet += GetTimeZone();
1148
1149 return Set(timet);
1150 }
1151 }
1152
1153 wxFAIL_MSG( _T("mktime() failed") );
0979c962 1154
384223b3
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1155 *this = wxInvalidDateTime;
1156
1157 return *this;
0979c962
VZ
1158 }
1159 else
1160 {
1161 return Set(timet);
1162 }
1163}
1164
1165wxDateTime& wxDateTime::Set(wxDateTime_t hour,
1166 wxDateTime_t minute,
1167 wxDateTime_t second,
1168 wxDateTime_t millisec)
1169{
1170 // we allow seconds to be 61 to account for the leap seconds, even if we
1171 // don't use them really
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1172 wxDATETIME_CHECK( hour < 24 &&
1173 second < 62 &&
1174 minute < 60 &&
1175 millisec < 1000,
1176 _T("Invalid time in wxDateTime::Set()") );
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1177
1178 // get the current date from system
9d9b7755 1179 struct tm *tm = GetTmNow();
299fcbfe 1180
384223b3 1181 wxDATETIME_CHECK( tm, _T("localtime() failed") );
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1182
1183 // adjust the time
1184 tm->tm_hour = hour;
1185 tm->tm_min = minute;
1186 tm->tm_sec = second;
1187
b76b015e 1188 (void)Set(*tm);
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1189
1190 // and finally adjust milliseconds
1191 return SetMillisecond(millisec);
1192}
1193
1194wxDateTime& wxDateTime::Set(wxDateTime_t day,
1195 Month month,
1196 int year,
1197 wxDateTime_t hour,
1198 wxDateTime_t minute,
1199 wxDateTime_t second,
1200 wxDateTime_t millisec)
1201{
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1202 wxDATETIME_CHECK( hour < 24 &&
1203 second < 62 &&
1204 minute < 60 &&
1205 millisec < 1000,
1206 _T("Invalid time in wxDateTime::Set()") );
0979c962 1207
2f02cb89 1208 ReplaceDefaultYearMonthWithCurrent(&year, &month);
0979c962 1209
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1210 wxDATETIME_CHECK( (0 < day) && (day <= GetNumberOfDays(month, year)),
1211 _T("Invalid date in wxDateTime::Set()") );
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1212
1213 // the range of time_t type (inclusive)
1214 static const int yearMinInRange = 1970;
1215 static const int yearMaxInRange = 2037;
1216
1217 // test only the year instead of testing for the exact end of the Unix
1218 // time_t range - it doesn't bring anything to do more precise checks
2f02cb89 1219 if ( year >= yearMinInRange && year <= yearMaxInRange )
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1220 {
1221 // use the standard library version if the date is in range - this is
b76b015e 1222 // probably more efficient than our code
0979c962 1223 struct tm tm;
b76b015e 1224 tm.tm_year = year - 1900;
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1225 tm.tm_mon = month;
1226 tm.tm_mday = day;
1227 tm.tm_hour = hour;
1228 tm.tm_min = minute;
1229 tm.tm_sec = second;
299fcbfe 1230 tm.tm_isdst = -1; // mktime() will guess it
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1231
1232 (void)Set(tm);
1233
1234 // and finally adjust milliseconds
1235 return SetMillisecond(millisec);
1236 }
1237 else
1238 {
1239 // do time calculations ourselves: we want to calculate the number of
fcc3d7cb 1240 // milliseconds between the given date and the epoch
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1241
1242 // get the JDN for the midnight of this day
1243 m_time = GetTruncatedJDN(day, month, year);
1244 m_time -= EPOCH_JDN;
1245 m_time *= SECONDS_PER_DAY * TIME_T_FACTOR;
1246
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1247 // JDN corresponds to GMT, we take localtime
1248 Add(wxTimeSpan(hour, minute, second + GetTimeZone(), millisec));
b76b015e
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1249 }
1250
1251 return *this;
1252}
1253
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1254wxDateTime& wxDateTime::Set(double jdn)
1255{
1ef54dcf
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1256 // so that m_time will be 0 for the midnight of Jan 1, 1970 which is jdn
1257 // EPOCH_JDN + 0.5
1258 jdn -= EPOCH_JDN + 0.5;
1259
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1260 jdn *= MILLISECONDS_PER_DAY;
1261
9c2882d9 1262 m_time.Assign(jdn);
e6ec579c
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1263
1264 return *this;
1265}
1266
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1267wxDateTime& wxDateTime::ResetTime()
1268{
1269 Tm tm = GetTm();
1270
1271 if ( tm.hour || tm.min || tm.sec || tm.msec )
1272 {
1273 tm.msec =
1274 tm.sec =
1275 tm.min =
1276 tm.hour = 0;
1277
1278 Set(tm);
1279 }
1280
1281 return *this;
1282}
1283
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1284// ----------------------------------------------------------------------------
1285// DOS Date and Time Format functions
1286// ----------------------------------------------------------------------------
1287// the dos date and time value is an unsigned 32 bit value in the format:
1288// YYYYYYYMMMMDDDDDhhhhhmmmmmmsssss
1289//
1290// Y = year offset from 1980 (0-127)
1291// M = month (1-12)
1292// D = day of month (1-31)
1293// h = hour (0-23)
1294// m = minute (0-59)
1295// s = bisecond (0-29) each bisecond indicates two seconds
1296// ----------------------------------------------------------------------------
1297
1298wxDateTime& wxDateTime::SetFromDOS(unsigned long ddt)
1299{
1300 struct tm tm;
1301
1302 long year = ddt & 0xFE000000;
1303 year >>= 25;
1304 year += 80;
1305 tm.tm_year = year;
1306
1307 long month = ddt & 0x1E00000;
1308 month >>= 21;
1309 month -= 1;
1310 tm.tm_mon = month;
1311
1312 long day = ddt & 0x1F0000;
1313 day >>= 16;
1314 tm.tm_mday = day;
1315
1316 long hour = ddt & 0xF800;
1317 hour >>= 11;
1318 tm.tm_hour = hour;
1319
1320 long minute = ddt & 0x7E0;
1321 minute >>= 5;
1322 tm.tm_min = minute;
1323
1324 long second = ddt & 0x1F;
1325 tm.tm_sec = second * 2;
1326
1327 return Set(mktime(&tm));
1328}
1329
1330unsigned long wxDateTime::GetAsDOS() const
1331{
1332 unsigned long ddt;
1333 time_t ticks = GetTicks();
1334 struct tm *tm = localtime(&ticks);
1335
1336 long year = tm->tm_year;
1337 year -= 80;
1338 year <<= 25;
1339
1340 long month = tm->tm_mon;
1341 month += 1;
1342 month <<= 21;
1343
1344 long day = tm->tm_mday;
1345 day <<= 16;
1346
1347 long hour = tm->tm_hour;
1348 hour <<= 11;
1349
1350 long minute = tm->tm_min;
1351 minute <<= 5;
1352
1353 long second = tm->tm_sec;
1354 second /= 2;
1355
1356 ddt = year | month | day | hour | minute | second;
1357 return ddt;
1358}
1359
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1360// ----------------------------------------------------------------------------
1361// time_t <-> broken down time conversions
1362// ----------------------------------------------------------------------------
1363
299fcbfe 1364wxDateTime::Tm wxDateTime::GetTm(const TimeZone& tz) const
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1365{
1366 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1367
1368 time_t time = GetTicks();
1369 if ( time != (time_t)-1 )
1370 {
1371 // use C RTL functions
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1372 tm *tm;
1373 if ( tz.GetOffset() == -GetTimeZone() )
1374 {
1375 // we are working with local time
1376 tm = localtime(&time);
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1377
1378 // should never happen
f6bcfd97 1379 wxCHECK_MSG( tm, Tm(), _T("localtime() failed") );
299fcbfe
VZ
1380 }
1381 else
1382 {
13111b2a 1383 time += (time_t)tz.GetOffset();
33ac7e6f 1384#if defined(__VMS__) || defined(__WATCOMC__) // time is unsigned so avoid warning
13111b2a 1385 int time2 = (int) time;
9d9b7755 1386 if ( time2 >= 0 )
fb10f04c 1387#else
9d9b7755 1388 if ( time >= 0 )
fb10f04c 1389#endif
c5a1681b
VZ
1390 {
1391 tm = gmtime(&time);
b76b015e 1392
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1393 // should never happen
1394 wxCHECK_MSG( tm, Tm(), _T("gmtime() failed") );
1395 }
1396 else
1397 {
1398 tm = (struct tm *)NULL;
1399 }
1400 }
b76b015e 1401
c5a1681b
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1402 if ( tm )
1403 {
f6bcfd97
BP
1404 // adjust the milliseconds
1405 Tm tm2(*tm, tz);
1406 long timeOnly = (m_time % MILLISECONDS_PER_DAY).ToLong();
1407 tm2.msec = (wxDateTime_t)(timeOnly % 1000);
1408 return tm2;
c5a1681b
VZ
1409 }
1410 //else: use generic code below
b76b015e 1411 }
e6ec579c 1412
c5a1681b
VZ
1413 // remember the time and do the calculations with the date only - this
1414 // eliminates rounding errors of the floating point arithmetics
299fcbfe 1415
c5a1681b 1416 wxLongLong timeMidnight = m_time + tz.GetOffset() * 1000;
1ef54dcf 1417
c5a1681b 1418 long timeOnly = (timeMidnight % MILLISECONDS_PER_DAY).ToLong();
1ef54dcf 1419
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1420 // we want to always have positive time and timeMidnight to be really
1421 // the midnight before it
1422 if ( timeOnly < 0 )
1423 {
1424 timeOnly = MILLISECONDS_PER_DAY + timeOnly;
1425 }
e6ec579c 1426
c5a1681b 1427 timeMidnight -= timeOnly;
1ef54dcf 1428
c5a1681b
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1429 // calculate the Gregorian date from JDN for the midnight of our date:
1430 // this will yield day, month (in 1..12 range) and year
1ef54dcf 1431
c5a1681b
VZ
1432 // actually, this is the JDN for the noon of the previous day
1433 long jdn = (timeMidnight / MILLISECONDS_PER_DAY).ToLong() + EPOCH_JDN;
1ef54dcf 1434
c5a1681b 1435 // CREDIT: code below is by Scott E. Lee (but bugs are mine)
1ef54dcf 1436
c5a1681b 1437 wxASSERT_MSG( jdn > -2, _T("JDN out of range") );
1ef54dcf 1438
c5a1681b 1439 // calculate the century
479cd5de
VZ
1440 long temp = (jdn + JDN_OFFSET) * 4 - 1;
1441 long century = temp / DAYS_PER_400_YEARS;
1ef54dcf 1442
c5a1681b
VZ
1443 // then the year and day of year (1 <= dayOfYear <= 366)
1444 temp = ((temp % DAYS_PER_400_YEARS) / 4) * 4 + 3;
479cd5de
VZ
1445 long year = (century * 100) + (temp / DAYS_PER_4_YEARS);
1446 long dayOfYear = (temp % DAYS_PER_4_YEARS) / 4 + 1;
1ef54dcf 1447
c5a1681b
VZ
1448 // and finally the month and day of the month
1449 temp = dayOfYear * 5 - 3;
479cd5de
VZ
1450 long month = temp / DAYS_PER_5_MONTHS;
1451 long day = (temp % DAYS_PER_5_MONTHS) / 5 + 1;
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VZ
1452
1453 // month is counted from March - convert to normal
1454 if ( month < 10 )
1455 {
1456 month += 3;
1457 }
1458 else
1459 {
1460 year += 1;
1461 month -= 9;
1462 }
1ef54dcf 1463
c5a1681b
VZ
1464 // year is offset by 4800
1465 year -= 4800;
1ef54dcf 1466
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1467 // check that the algorithm gave us something reasonable
1468 wxASSERT_MSG( (0 < month) && (month <= 12), _T("invalid month") );
1469 wxASSERT_MSG( (1 <= day) && (day < 32), _T("invalid day") );
e6ec579c 1470
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1471 // construct Tm from these values
1472 Tm tm;
1473 tm.year = (int)year;
1474 tm.mon = (Month)(month - 1); // algorithm yields 1 for January, not 0
1475 tm.mday = (wxDateTime_t)day;
479cd5de 1476 tm.msec = (wxDateTime_t)(timeOnly % 1000);
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VZ
1477 timeOnly -= tm.msec;
1478 timeOnly /= 1000; // now we have time in seconds
e6ec579c 1479
479cd5de 1480 tm.sec = (wxDateTime_t)(timeOnly % 60);
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VZ
1481 timeOnly -= tm.sec;
1482 timeOnly /= 60; // now we have time in minutes
e6ec579c 1483
479cd5de 1484 tm.min = (wxDateTime_t)(timeOnly % 60);
c5a1681b 1485 timeOnly -= tm.min;
e6ec579c 1486
479cd5de 1487 tm.hour = (wxDateTime_t)(timeOnly / 60);
b76b015e 1488
c5a1681b 1489 return tm;
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VZ
1490}
1491
1492wxDateTime& wxDateTime::SetYear(int year)
1493{
1494 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1495
1496 Tm tm(GetTm());
1497 tm.year = year;
1498 Set(tm);
1499
1500 return *this;
1501}
1502
1503wxDateTime& wxDateTime::SetMonth(Month month)
1504{
1505 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1506
1507 Tm tm(GetTm());
1508 tm.mon = month;
1509 Set(tm);
1510
1511 return *this;
1512}
1513
1514wxDateTime& wxDateTime::SetDay(wxDateTime_t mday)
1515{
1516 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1517
1518 Tm tm(GetTm());
1519 tm.mday = mday;
1520 Set(tm);
1521
1522 return *this;
1523}
1524
1525wxDateTime& wxDateTime::SetHour(wxDateTime_t hour)
1526{
1527 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1528
1529 Tm tm(GetTm());
1530 tm.hour = hour;
1531 Set(tm);
1532
1533 return *this;
1534}
1535
1536wxDateTime& wxDateTime::SetMinute(wxDateTime_t min)
1537{
1538 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1539
1540 Tm tm(GetTm());
1541 tm.min = min;
1542 Set(tm);
1543
1544 return *this;
1545}
1546
1547wxDateTime& wxDateTime::SetSecond(wxDateTime_t sec)
1548{
1549 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1550
1551 Tm tm(GetTm());
1552 tm.sec = sec;
1553 Set(tm);
0979c962
VZ
1554
1555 return *this;
1556}
b76b015e
VZ
1557
1558wxDateTime& wxDateTime::SetMillisecond(wxDateTime_t millisecond)
1559{
1560 wxASSERT_MSG( IsValid(), _T("invalid wxDateTime") );
1561
1562 // we don't need to use GetTm() for this one
1563 m_time -= m_time % 1000l;
1564 m_time += millisecond;
1565
1566 return *this;
1567}
1568
1569// ----------------------------------------------------------------------------
1570// wxDateTime arithmetics
1571// ----------------------------------------------------------------------------
1572
1573wxDateTime& wxDateTime::Add(const wxDateSpan& diff)
1574{
1575 Tm tm(GetTm());
1576
1577 tm.year += diff.GetYears();
fcc3d7cb 1578 tm.AddMonths(diff.GetMonths());
4f6aed9c
VZ
1579
1580 // check that the resulting date is valid
1581 if ( tm.mday > GetNumOfDaysInMonth(tm.year, tm.mon) )
1582 {
1583 // We suppose that when adding one month to Jan 31 we want to get Feb
1584 // 28 (or 29), i.e. adding a month to the last day of the month should
1585 // give the last day of the next month which is quite logical.
1586 //
1587 // Unfortunately, there is no logic way to understand what should
1588 // Jan 30 + 1 month be - Feb 28 too or Feb 27 (assuming non leap year)?
1589 // We make it Feb 28 (last day too), but it is highly questionable.
1590 tm.mday = GetNumOfDaysInMonth(tm.year, tm.mon);
1591 }
1592
fcc3d7cb 1593 tm.AddDays(diff.GetTotalDays());
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VZ
1594
1595 Set(tm);
1596
9d9b7755
VZ
1597 wxASSERT_MSG( IsSameTime(tm),
1598 _T("Add(wxDateSpan) shouldn't modify time") );
1599
b76b015e
VZ
1600 return *this;
1601}
1602
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VZ
1603// ----------------------------------------------------------------------------
1604// Weekday and monthday stuff
1605// ----------------------------------------------------------------------------
1606
2b5f62a0
VZ
1607bool wxDateTime::SetToTheWeek(wxDateTime_t numWeek,
1608 WeekDay weekday,
1609 WeekFlags flags)
4f6aed9c 1610{
2b5f62a0
VZ
1611 wxASSERT_MSG( numWeek > 0,
1612 _T("invalid week number: weeks are counted from 1") );
1613
4f6aed9c
VZ
1614 int year = GetYear();
1615
1616 // Jan 4 always lies in the 1st week of the year
1617 Set(4, Jan, year);
2b5f62a0 1618 SetToWeekDayInSameWeek(weekday, flags) += wxDateSpan::Weeks(numWeek - 1);
4f6aed9c
VZ
1619
1620 if ( GetYear() != year )
1621 {
1622 // oops... numWeek was too big
1623 return FALSE;
1624 }
1625
1626 return TRUE;
1627}
1628
2f02cb89
VZ
1629wxDateTime& wxDateTime::SetToLastMonthDay(Month month,
1630 int year)
1631{
1632 // take the current month/year if none specified
1a8557b1
VZ
1633 if ( year == Inv_Year )
1634 year = GetYear();
1635 if ( month == Inv_Month )
1636 month = GetMonth();
2f02cb89 1637
fcc3d7cb 1638 return Set(GetNumOfDaysInMonth(year, month), month, year);
2f02cb89
VZ
1639}
1640
2b5f62a0 1641wxDateTime& wxDateTime::SetToWeekDayInSameWeek(WeekDay weekday, WeekFlags flags)
cd0b1709 1642{
384223b3 1643 wxDATETIME_CHECK( weekday != Inv_WeekDay, _T("invalid weekday") );
cd0b1709 1644
2b5f62a0 1645 int wdayThis = GetWeekDay();
cd0b1709
VZ
1646 if ( weekday == wdayThis )
1647 {
1648 // nothing to do
1649 return *this;
1650 }
2b5f62a0
VZ
1651
1652 if ( flags == Default_First )
1653 {
1654 flags = GetCountry() == USA ? Sunday_First : Monday_First;
1655 }
1656
1657 // the logic below based on comparing weekday and wdayThis works if Sun (0)
1658 // is the first day in the week, but breaks down for Monday_First case so
1659 // we adjust the week days in this case
1660 if( flags == Monday_First )
1661 {
1662 if ( wdayThis == Sun )
1663 wdayThis += 7;
1664 }
1665 //else: Sunday_First, nothing to do
1666
1667 // go forward or back in time to the day we want
1668 if ( weekday < wdayThis )
cd0b1709 1669 {
f6bcfd97 1670 return Subtract(wxDateSpan::Days(wdayThis - weekday));
cd0b1709
VZ
1671 }
1672 else // weekday > wdayThis
1673 {
4f6aed9c 1674 return Add(wxDateSpan::Days(weekday - wdayThis));
cd0b1709
VZ
1675 }
1676}
1677
1678wxDateTime& wxDateTime::SetToNextWeekDay(WeekDay weekday)
1679{
384223b3 1680 wxDATETIME_CHECK( weekday != Inv_WeekDay, _T("invalid weekday") );
cd0b1709
VZ
1681
1682 int diff;
1683 WeekDay wdayThis = GetWeekDay();
1684 if ( weekday == wdayThis )
1685 {
1686 // nothing to do
1687 return *this;
1688 }
1689 else if ( weekday < wdayThis )
1690 {
1691 // need to advance a week
1692 diff = 7 - (wdayThis - weekday);
1693 }
1694 else // weekday > wdayThis
1695 {
1696 diff = weekday - wdayThis;
1697 }
1698
4f6aed9c 1699 return Add(wxDateSpan::Days(diff));
cd0b1709
VZ
1700}
1701
1702wxDateTime& wxDateTime::SetToPrevWeekDay(WeekDay weekday)
1703{
384223b3 1704 wxDATETIME_CHECK( weekday != Inv_WeekDay, _T("invalid weekday") );
cd0b1709
VZ
1705
1706 int diff;
1707 WeekDay wdayThis = GetWeekDay();
1708 if ( weekday == wdayThis )
1709 {
1710 // nothing to do
1711 return *this;
1712 }
1713 else if ( weekday > wdayThis )
1714 {
1715 // need to go to previous week
1716 diff = 7 - (weekday - wdayThis);
1717 }
1718 else // weekday < wdayThis
1719 {
1720 diff = wdayThis - weekday;
1721 }
1722
f6bcfd97 1723 return Subtract(wxDateSpan::Days(diff));
cd0b1709
VZ
1724}
1725
2f02cb89
VZ
1726bool wxDateTime::SetToWeekDay(WeekDay weekday,
1727 int n,
1728 Month month,
1729 int year)
1730{
1731 wxCHECK_MSG( weekday != Inv_WeekDay, FALSE, _T("invalid weekday") );
1732
1733 // we don't check explicitly that -5 <= n <= 5 because we will return FALSE
1734 // anyhow in such case - but may be should still give an assert for it?
1735
1736 // take the current month/year if none specified
1737 ReplaceDefaultYearMonthWithCurrent(&year, &month);
1738
1739 wxDateTime dt;
1740
1741 // TODO this probably could be optimised somehow...
1742
1743 if ( n > 0 )
1744 {
1745 // get the first day of the month
1746 dt.Set(1, month, year);
1747
1748 // get its wday
1749 WeekDay wdayFirst = dt.GetWeekDay();
1750
1751 // go to the first weekday of the month
1752 int diff = weekday - wdayFirst;
1753 if ( diff < 0 )
1754 diff += 7;
1755
1756 // add advance n-1 weeks more
1757 diff += 7*(n - 1);
1758
239446b4 1759 dt += wxDateSpan::Days(diff);
2f02cb89 1760 }
239446b4 1761 else // count from the end of the month
2f02cb89
VZ
1762 {
1763 // get the last day of the month
1764 dt.SetToLastMonthDay(month, year);
1765
1766 // get its wday
1767 WeekDay wdayLast = dt.GetWeekDay();
1768
1769 // go to the last weekday of the month
1770 int diff = wdayLast - weekday;
1771 if ( diff < 0 )
1772 diff += 7;
1773
1774 // and rewind n-1 weeks from there
239446b4 1775 diff += 7*(-n - 1);
2f02cb89
VZ
1776
1777 dt -= wxDateSpan::Days(diff);
1778 }
1779
1780 // check that it is still in the same month
1781 if ( dt.GetMonth() == month )
1782 {
1783 *this = dt;
1784
1785 return TRUE;
1786 }
1787 else
1788 {
1789 // no such day in this month
1790 return FALSE;
1791 }
1792}
1793
239446b4
VZ
1794wxDateTime::wxDateTime_t wxDateTime::GetDayOfYear(const TimeZone& tz) const
1795{
239446b4
VZ
1796 Tm tm(GetTm(tz));
1797
f0f951fa 1798 return gs_cumulatedDays[IsLeapYear(tm.year)][tm.mon] + tm.mday;
239446b4
VZ
1799}
1800
9d9b7755
VZ
1801wxDateTime::wxDateTime_t wxDateTime::GetWeekOfYear(wxDateTime::WeekFlags flags,
1802 const TimeZone& tz) const
239446b4 1803{
9d9b7755
VZ
1804 if ( flags == Default_First )
1805 {
1806 flags = GetCountry() == USA ? Sunday_First : Monday_First;
1807 }
239446b4
VZ
1808
1809 wxDateTime_t nDayInYear = GetDayOfYear(tz);
9d9b7755 1810 wxDateTime_t week;
239446b4 1811
9d9b7755
VZ
1812 WeekDay wd = GetWeekDay(tz);
1813 if ( flags == Sunday_First )
1814 {
1815 week = (nDayInYear - wd + 7) / 7;
1816 }
1817 else
1818 {
1819 // have to shift the week days values
1820 week = (nDayInYear - (wd - 1 + 7) % 7 + 7) / 7;
1821 }
239446b4 1822
9d9b7755
VZ
1823 // FIXME some more elegant way??
1824 WeekDay wdYearStart = wxDateTime(1, Jan, GetYear()).GetWeekDay();
1825 if ( wdYearStart == Wed || wdYearStart == Thu )
239446b4
VZ
1826 {
1827 week++;
1828 }
1829
1830 return week;
68ee7c47
VZ
1831}
1832
9d9b7755
VZ
1833wxDateTime::wxDateTime_t wxDateTime::GetWeekOfMonth(wxDateTime::WeekFlags flags,
1834 const TimeZone& tz) const
68ee7c47 1835{
9d9b7755
VZ
1836 Tm tm = GetTm(tz);
1837 wxDateTime dtMonthStart = wxDateTime(1, tm.mon, tm.year);
6dc6fda6 1838 int nWeek = GetWeekOfYear(flags) - dtMonthStart.GetWeekOfYear(flags) + 1;
9d9b7755 1839 if ( nWeek < 0 )
68ee7c47 1840 {
9d9b7755
VZ
1841 // this may happen for January when Jan, 1 is the last week of the
1842 // previous year
1843 nWeek += IsLeapYear(tm.year - 1) ? 53 : 52;
68ee7c47 1844 }
68ee7c47 1845
6dc6fda6 1846 return (wxDateTime::wxDateTime_t)nWeek;
239446b4
VZ
1847}
1848
f0f951fa
VZ
1849wxDateTime& wxDateTime::SetToYearDay(wxDateTime::wxDateTime_t yday)
1850{
1851 int year = GetYear();
384223b3
VZ
1852 wxDATETIME_CHECK( (0 < yday) && (yday <= GetNumberOfDays(year)),
1853 _T("invalid year day") );
f0f951fa
VZ
1854
1855 bool isLeap = IsLeapYear(year);
1856 for ( Month mon = Jan; mon < Inv_Month; wxNextMonth(mon) )
1857 {
1858 // for Dec, we can't compare with gs_cumulatedDays[mon + 1], but we
1859 // don't need it neither - because of the CHECK above we know that
1860 // yday lies in December then
1861 if ( (mon == Dec) || (yday < gs_cumulatedDays[isLeap][mon + 1]) )
1862 {
1863 Set(yday - gs_cumulatedDays[isLeap][mon], mon, year);
1864
1865 break;
1866 }
1867 }
1868
1869 return *this;
1870}
1871
e6ec579c
VZ
1872// ----------------------------------------------------------------------------
1873// Julian day number conversion and related stuff
1874// ----------------------------------------------------------------------------
1875
1876double wxDateTime::GetJulianDayNumber() const
1877{
299fcbfe
VZ
1878 // JDN are always expressed for the GMT dates
1879 Tm tm(ToTimezone(GMT0).GetTm(GMT0));
e6ec579c
VZ
1880
1881 double result = GetTruncatedJDN(tm.mday, tm.mon, tm.year);
1882
1883 // add the part GetTruncatedJDN() neglected
1884 result += 0.5;
1885
1886 // and now add the time: 86400 sec = 1 JDN
1887 return result + ((double)(60*(60*tm.hour + tm.min) + tm.sec)) / 86400;
1888}
1889
1890double wxDateTime::GetRataDie() const
1891{
1892 // March 1 of the year 0 is Rata Die day -306 and JDN 1721119.5
1893 return GetJulianDayNumber() - 1721119.5 - 306;
1894}
1895
fcc3d7cb 1896// ----------------------------------------------------------------------------
299fcbfe 1897// timezone and DST stuff
fcc3d7cb
VZ
1898// ----------------------------------------------------------------------------
1899
299fcbfe 1900int wxDateTime::IsDST(wxDateTime::Country country) const
fcc3d7cb 1901{
299fcbfe
VZ
1902 wxCHECK_MSG( country == Country_Default, -1,
1903 _T("country support not implemented") );
1904
1905 // use the C RTL for the dates in the standard range
1906 time_t timet = GetTicks();
1907 if ( timet != (time_t)-1 )
1908 {
1909 tm *tm = localtime(&timet);
1910
1911 wxCHECK_MSG( tm, -1, _T("localtime() failed") );
1912
1913 return tm->tm_isdst;
1914 }
1915 else
1916 {
239446b4
VZ
1917 int year = GetYear();
1918
1919 if ( !IsDSTApplicable(year, country) )
1920 {
1921 // no DST time in this year in this country
1922 return -1;
1923 }
299fcbfe 1924
239446b4 1925 return IsBetween(GetBeginDST(year, country), GetEndDST(year, country));
299fcbfe 1926 }
fcc3d7cb
VZ
1927}
1928
41acf5c0 1929wxDateTime& wxDateTime::MakeTimezone(const TimeZone& tz, bool noDST)
fcc3d7cb 1930{
479cd5de 1931 long secDiff = GetTimeZone() + tz.GetOffset();
fcc3d7cb 1932
41acf5c0
VZ
1933 // we need to know whether DST is or not in effect for this date unless
1934 // the test disabled by the caller
1935 if ( !noDST && (IsDST() == 1) )
299fcbfe
VZ
1936 {
1937 // FIXME we assume that the DST is always shifted by 1 hour
1938 secDiff -= 3600;
1939 }
1940
f6bcfd97 1941 return Subtract(wxTimeSpan::Seconds(secDiff));
fcc3d7cb
VZ
1942}
1943
b76b015e
VZ
1944// ----------------------------------------------------------------------------
1945// wxDateTime to/from text representations
1946// ----------------------------------------------------------------------------
1947
299fcbfe 1948wxString wxDateTime::Format(const wxChar *format, const TimeZone& tz) const
b76b015e 1949{
e6ec579c
VZ
1950 wxCHECK_MSG( format, _T(""), _T("NULL format in wxDateTime::Format") );
1951
f6bcfd97
BP
1952 // we have to use our own implementation if the date is out of range of
1953 // strftime() or if we use non standard specificators
b76b015e 1954 time_t time = GetTicks();
f6bcfd97 1955 if ( (time != (time_t)-1) && !wxStrstr(format, _T("%l")) )
b76b015e
VZ
1956 {
1957 // use strftime()
299fcbfe
VZ
1958 tm *tm;
1959 if ( tz.GetOffset() == -GetTimeZone() )
1960 {
1961 // we are working with local time
1962 tm = localtime(&time);
c5a1681b
VZ
1963
1964 // should never happen
1965 wxCHECK_MSG( tm, wxEmptyString, _T("localtime() failed") );
299fcbfe
VZ
1966 }
1967 else
1968 {
479cd5de 1969 time += (int)tz.GetOffset();
299fcbfe 1970
33ac7e6f 1971#if defined(__VMS__) || defined(__WATCOMC__) // time is unsigned so avoid warning
13111b2a 1972 int time2 = (int) time;
9c2882d9 1973 if ( time2 >= 0 )
fb10f04c 1974#else
9c2882d9 1975 if ( time >= 0 )
fb10f04c 1976#endif
c5a1681b
VZ
1977 {
1978 tm = gmtime(&time);
b76b015e 1979
c5a1681b
VZ
1980 // should never happen
1981 wxCHECK_MSG( tm, wxEmptyString, _T("gmtime() failed") );
1982 }
1983 else
1984 {
1985 tm = (struct tm *)NULL;
1986 }
1987 }
b76b015e 1988
c5a1681b 1989 if ( tm )
e6ec579c 1990 {
c5a1681b 1991 return CallStrftime(format, tm);
e6ec579c 1992 }
c5a1681b
VZ
1993 //else: use generic code below
1994 }
1995
68ee7c47 1996 // we only parse ANSI C format specifications here, no POSIX 2
f6bcfd97
BP
1997 // complications, no GNU extensions but we do add support for a "%l" format
1998 // specifier allowing to get the number of milliseconds
68ee7c47 1999 Tm tm = GetTm(tz);
e6ec579c 2000
68ee7c47
VZ
2001 // used for calls to strftime() when we only deal with time
2002 struct tm tmTimeOnly;
2003 tmTimeOnly.tm_hour = tm.hour;
2004 tmTimeOnly.tm_min = tm.min;
2005 tmTimeOnly.tm_sec = tm.sec;
2006 tmTimeOnly.tm_wday = 0;
2007 tmTimeOnly.tm_yday = 0;
2008 tmTimeOnly.tm_mday = 1; // any date will do
2009 tmTimeOnly.tm_mon = 0;
2010 tmTimeOnly.tm_year = 76;
2011 tmTimeOnly.tm_isdst = 0; // no DST, we adjust for tz ourselves
e6ec579c 2012
77c3e48a 2013 wxString tmp, res, fmt;
68ee7c47
VZ
2014 for ( const wxChar *p = format; *p; p++ )
2015 {
2016 if ( *p != _T('%') )
2017 {
2018 // copy as is
2019 res += *p;
b76b015e 2020
68ee7c47
VZ
2021 continue;
2022 }
e6ec579c 2023
77c3e48a 2024 // set the default format
68ee7c47 2025 switch ( *++p )
77c3e48a
VZ
2026 {
2027 case _T('Y'): // year has 4 digits
2028 fmt = _T("%04d");
2029 break;
2030
2031 case _T('j'): // day of year has 3 digits
f6bcfd97 2032 case _T('l'): // milliseconds have 3 digits
77c3e48a
VZ
2033 fmt = _T("%03d");
2034 break;
2035
59d04dff
VZ
2036 case _T('w'): // week day as number has only one
2037 fmt = _T("%d");
2038 break;
2039
77c3e48a
VZ
2040 default:
2041 // it's either another valid format specifier in which case
2042 // the format is "%02d" (for all the rest) or we have the
2043 // field width preceding the format in which case it will
2044 // override the default format anyhow
2045 fmt = _T("%02d");
2046 }
2047
fc3398f8
VZ
2048 bool restart = TRUE;
2049 while ( restart )
68ee7c47 2050 {
fc3398f8 2051 restart = FALSE;
68ee7c47 2052
fc3398f8
VZ
2053 // start of the format specification
2054 switch ( *p )
2055 {
2056 case _T('a'): // a weekday name
2057 case _T('A'):
2058 // second parameter should be TRUE for abbreviated names
2059 res += GetWeekDayName(tm.GetWeekDay(),
2060 *p == _T('a') ? Name_Abbr : Name_Full);
2061 break;
68ee7c47 2062
fc3398f8
VZ
2063 case _T('b'): // a month name
2064 case _T('B'):
2065 res += GetMonthName(tm.mon,
2066 *p == _T('b') ? Name_Abbr : Name_Full);
2067 break;
2068
2069 case _T('c'): // locale default date and time representation
2070 case _T('x'): // locale default date representation
2071 //
2072 // the problem: there is no way to know what do these format
2073 // specifications correspond to for the current locale.
2074 //
2075 // the solution: use a hack and still use strftime(): first
2076 // find the YEAR which is a year in the strftime() range (1970
2077 // - 2038) whose Jan 1 falls on the same week day as the Jan 1
2078 // of the real year. Then make a copy of the format and
2079 // replace all occurences of YEAR in it with some unique
2080 // string not appearing anywhere else in it, then use
2081 // strftime() to format the date in year YEAR and then replace
2082 // YEAR back by the real year and the unique replacement
2083 // string back with YEAR. Notice that "all occurences of YEAR"
2084 // means all occurences of 4 digit as well as 2 digit form!
2085 //
2086 // the bugs: we assume that neither of %c nor %x contains any
2087 // fields which may change between the YEAR and real year. For
2088 // example, the week number (%U, %W) and the day number (%j)
2089 // will change if one of these years is leap and the other one
2090 // is not!
68ee7c47 2091 {
fc3398f8
VZ
2092 // find the YEAR: normally, for any year X, Jan 1 or the
2093 // year X + 28 is the same weekday as Jan 1 of X (because
2094 // the weekday advances by 1 for each normal X and by 2
2095 // for each leap X, hence by 5 every 4 years or by 35
2096 // which is 0 mod 7 every 28 years) but this rule breaks
2097 // down if there are years between X and Y which are
2098 // divisible by 4 but not leap (i.e. divisible by 100 but
2099 // not 400), hence the correction.
2100
2101 int yearReal = GetYear(tz);
2102 int mod28 = yearReal % 28;
2103
2104 // be careful to not go too far - we risk to leave the
2105 // supported range
2106 int year;
2107 if ( mod28 < 10 )
2108 {
2109 year = 1988 + mod28; // 1988 == 0 (mod 28)
2110 }
2111 else
2112 {
2113 year = 1970 + mod28 - 10; // 1970 == 10 (mod 28)
2114 }
e6ec579c 2115
fc3398f8
VZ
2116 int nCentury = year / 100,
2117 nCenturyReal = yearReal / 100;
c5a1681b 2118
fc3398f8
VZ
2119 // need to adjust for the years divisble by 400 which are
2120 // not leap but are counted like leap ones if we just take
2121 // the number of centuries in between for nLostWeekDays
2122 int nLostWeekDays = (nCentury - nCenturyReal) -
2123 (nCentury / 4 - nCenturyReal / 4);
c5a1681b 2124
fc3398f8
VZ
2125 // we have to gain back the "lost" weekdays: note that the
2126 // effect of this loop is to not do anything to
2127 // nLostWeekDays (which we won't use any more), but to
2128 // (indirectly) set the year correctly
2129 while ( (nLostWeekDays % 7) != 0 )
2130 {
2131 nLostWeekDays += year++ % 4 ? 1 : 2;
2132 }
c5a1681b 2133
fc3398f8
VZ
2134 // at any rate, we couldn't go further than 1988 + 9 + 28!
2135 wxASSERT_MSG( year < 2030,
2136 _T("logic error in wxDateTime::Format") );
c5a1681b 2137
fc3398f8
VZ
2138 wxString strYear, strYear2;
2139 strYear.Printf(_T("%d"), year);
2140 strYear2.Printf(_T("%d"), year % 100);
c5a1681b 2141
fc3398f8
VZ
2142 // find two strings not occuring in format (this is surely
2143 // not optimal way of doing it... improvements welcome!)
2144 wxString fmt = format;
2145 wxString replacement = (wxChar)-1;
2146 while ( fmt.Find(replacement) != wxNOT_FOUND )
2147 {
2148 replacement << (wxChar)-1;
2149 }
c5a1681b 2150
fc3398f8
VZ
2151 wxString replacement2 = (wxChar)-2;
2152 while ( fmt.Find(replacement) != wxNOT_FOUND )
2153 {
2154 replacement << (wxChar)-2;
2155 }
2156
2157 // replace all occurences of year with it
2158 bool wasReplaced = fmt.Replace(strYear, replacement) > 0;
2159 if ( !wasReplaced )
2160 wasReplaced = fmt.Replace(strYear2, replacement2) > 0;
2161
2162 // use strftime() to format the same date but in supported
2163 // year
2164 //
2165 // NB: we assume that strftime() doesn't check for the
2166 // date validity and will happily format the date
2167 // corresponding to Feb 29 of a non leap year (which
2168 // may happen if yearReal was leap and year is not)
2169 struct tm tmAdjusted;
2170 InitTm(tmAdjusted);
2171 tmAdjusted.tm_hour = tm.hour;
2172 tmAdjusted.tm_min = tm.min;
2173 tmAdjusted.tm_sec = tm.sec;
2174 tmAdjusted.tm_wday = tm.GetWeekDay();
2175 tmAdjusted.tm_yday = GetDayOfYear();
2176 tmAdjusted.tm_mday = tm.mday;
2177 tmAdjusted.tm_mon = tm.mon;
2178 tmAdjusted.tm_year = year - 1900;
2179 tmAdjusted.tm_isdst = 0; // no DST, already adjusted
2180 wxString str = CallStrftime(*p == _T('c') ? _T("%c")
2181 : _T("%x"),
2182 &tmAdjusted);
2183
2184 // now replace the occurence of 1999 with the real year
2185 wxString strYearReal, strYearReal2;
2186 strYearReal.Printf(_T("%04d"), yearReal);
2187 strYearReal2.Printf(_T("%02d"), yearReal % 100);
2188 str.Replace(strYear, strYearReal);
2189 str.Replace(strYear2, strYearReal2);
2190
2191 // and replace back all occurences of replacement string
2192 if ( wasReplaced )
2193 {
2194 str.Replace(replacement2, strYear2);
2195 str.Replace(replacement, strYear);
2196 }
2197
2198 res += str;
68ee7c47 2199 }
fc3398f8 2200 break;
c5a1681b 2201
fc3398f8
VZ
2202 case _T('d'): // day of a month (01-31)
2203 res += wxString::Format(fmt, tm.mday);
2204 break;
68ee7c47 2205
fc3398f8
VZ
2206 case _T('H'): // hour in 24h format (00-23)
2207 res += wxString::Format(fmt, tm.hour);
2208 break;
2209
2210 case _T('I'): // hour in 12h format (01-12)
68ee7c47 2211 {
fc3398f8
VZ
2212 // 24h -> 12h, 0h -> 12h too
2213 int hour12 = tm.hour > 12 ? tm.hour - 12
2214 : tm.hour ? tm.hour : 12;
2215 res += wxString::Format(fmt, hour12);
68ee7c47 2216 }
fc3398f8 2217 break;
c5a1681b 2218
fc3398f8
VZ
2219 case _T('j'): // day of the year
2220 res += wxString::Format(fmt, GetDayOfYear(tz));
2221 break;
68ee7c47 2222
f6bcfd97
BP
2223 case _T('l'): // milliseconds (NOT STANDARD)
2224 res += wxString::Format(fmt, GetMillisecond(tz));
2225 break;
2226
fc3398f8
VZ
2227 case _T('m'): // month as a number (01-12)
2228 res += wxString::Format(fmt, tm.mon + 1);
2229 break;
68ee7c47 2230
fc3398f8
VZ
2231 case _T('M'): // minute as a decimal number (00-59)
2232 res += wxString::Format(fmt, tm.min);
2233 break;
68ee7c47 2234
fc3398f8
VZ
2235 case _T('p'): // AM or PM string
2236 res += CallStrftime(_T("%p"), &tmTimeOnly);
2237 break;
68ee7c47 2238
fc3398f8
VZ
2239 case _T('S'): // second as a decimal number (00-61)
2240 res += wxString::Format(fmt, tm.sec);
2241 break;
68ee7c47 2242
fc3398f8
VZ
2243 case _T('U'): // week number in the year (Sunday 1st week day)
2244 res += wxString::Format(fmt, GetWeekOfYear(Sunday_First, tz));
2245 break;
68ee7c47 2246
fc3398f8
VZ
2247 case _T('W'): // week number in the year (Monday 1st week day)
2248 res += wxString::Format(fmt, GetWeekOfYear(Monday_First, tz));
2249 break;
68ee7c47 2250
fc3398f8
VZ
2251 case _T('w'): // weekday as a number (0-6), Sunday = 0
2252 res += wxString::Format(fmt, tm.GetWeekDay());
2253 break;
68ee7c47 2254
fc3398f8 2255 // case _T('x'): -- handled with "%c"
68ee7c47 2256
fc3398f8
VZ
2257 case _T('X'): // locale default time representation
2258 // just use strftime() to format the time for us
2259 res += CallStrftime(_T("%X"), &tmTimeOnly);
2260 break;
68ee7c47 2261
fc3398f8
VZ
2262 case _T('y'): // year without century (00-99)
2263 res += wxString::Format(fmt, tm.year % 100);
2264 break;
68ee7c47 2265
fc3398f8
VZ
2266 case _T('Y'): // year with century
2267 res += wxString::Format(fmt, tm.year);
2268 break;
68ee7c47 2269
fc3398f8
VZ
2270 case _T('Z'): // timezone name
2271 res += CallStrftime(_T("%Z"), &tmTimeOnly);
2272 break;
68ee7c47 2273
fc3398f8
VZ
2274 default:
2275 // is it the format width?
2276 fmt.Empty();
2277 while ( *p == _T('-') || *p == _T('+') ||
2278 *p == _T(' ') || wxIsdigit(*p) )
2279 {
2280 fmt += *p;
2281 }
68ee7c47 2282
fc3398f8
VZ
2283 if ( !fmt.IsEmpty() )
2284 {
2285 // we've only got the flags and width so far in fmt
2286 fmt.Prepend(_T('%'));
2287 fmt.Append(_T('d'));
68ee7c47 2288
fc3398f8 2289 restart = TRUE;
68ee7c47 2290
fc3398f8
VZ
2291 break;
2292 }
68ee7c47 2293
fc3398f8
VZ
2294 // no, it wasn't the width
2295 wxFAIL_MSG(_T("unknown format specificator"));
68ee7c47 2296
fc3398f8 2297 // fall through and just copy it nevertheless
68ee7c47 2298
fc3398f8
VZ
2299 case _T('%'): // a percent sign
2300 res += *p;
2301 break;
2302
2303 case 0: // the end of string
2304 wxFAIL_MSG(_T("missing format at the end of string"));
2305
2306 // just put the '%' which was the last char in format
2307 res += _T('%');
2308 break;
2309 }
68ee7c47 2310 }
c5a1681b
VZ
2311 }
2312
68ee7c47 2313 return res;
b76b015e 2314}
fcc3d7cb 2315
cd0b1709
VZ
2316// this function parses a string in (strict) RFC 822 format: see the section 5
2317// of the RFC for the detailed description, but briefly it's something of the
2318// form "Sat, 18 Dec 1999 00:48:30 +0100"
2319//
2320// this function is "strict" by design - it must reject anything except true
2321// RFC822 time specs.
2322//
2323// TODO a great candidate for using reg exps
2324const wxChar *wxDateTime::ParseRfc822Date(const wxChar* date)
2325{
2326 wxCHECK_MSG( date, (wxChar *)NULL, _T("NULL pointer in wxDateTime::Parse") );
2327
2328 const wxChar *p = date;
2329 const wxChar *comma = wxStrchr(p, _T(','));
2330 if ( comma )
2331 {
2332 // the part before comma is the weekday
2333
2334 // skip it for now - we don't use but might check that it really
2335 // corresponds to the specfied date
2336 p = comma + 1;
2337
2338 if ( *p != _T(' ') )
2339 {
2340 wxLogDebug(_T("no space after weekday in RFC822 time spec"));
2341
2342 return (wxChar *)NULL;
2343 }
2344
2345 p++; // skip space
2346 }
2347
2348 // the following 1 or 2 digits are the day number
2349 if ( !wxIsdigit(*p) )
2350 {
2351 wxLogDebug(_T("day number expected in RFC822 time spec, none found"));
2352
2353 return (wxChar *)NULL;
2354 }
2355
2356 wxDateTime_t day = *p++ - _T('0');
2357 if ( wxIsdigit(*p) )
2358 {
2359 day *= 10;
2360 day += *p++ - _T('0');
2361 }
2362
2363 if ( *p++ != _T(' ') )
2364 {
2365 return (wxChar *)NULL;
2366 }
2367
2368 // the following 3 letters specify the month
2369 wxString monName(p, 3);
2370 Month mon;
2371 if ( monName == _T("Jan") )
2372 mon = Jan;
2373 else if ( monName == _T("Feb") )
2374 mon = Feb;
2375 else if ( monName == _T("Mar") )
2376 mon = Mar;
2377 else if ( monName == _T("Apr") )
2378 mon = Apr;
2379 else if ( monName == _T("May") )
2380 mon = May;
2381 else if ( monName == _T("Jun") )
2382 mon = Jun;
2383 else if ( monName == _T("Jul") )
2384 mon = Jul;
2385 else if ( monName == _T("Aug") )
2386 mon = Aug;
2387 else if ( monName == _T("Sep") )
2388 mon = Sep;
2389 else if ( monName == _T("Oct") )
2390 mon = Oct;
2391 else if ( monName == _T("Nov") )
2392 mon = Nov;
2393 else if ( monName == _T("Dec") )
2394 mon = Dec;
2395 else
2396 {
2397 wxLogDebug(_T("Invalid RFC 822 month name '%s'"), monName.c_str());
2398
2399 return (wxChar *)NULL;
2400 }
2401
2402 p += 3;
2403
2404 if ( *p++ != _T(' ') )
2405 {
2406 return (wxChar *)NULL;
2407 }
2408
2409 // next is the year
2410 if ( !wxIsdigit(*p) )
2411 {
2412 // no year?
2413 return (wxChar *)NULL;
2414 }
2415
2416 int year = *p++ - _T('0');
2417
2418 if ( !wxIsdigit(*p) )
2419 {
2420 // should have at least 2 digits in the year
2421 return (wxChar *)NULL;
2422 }
2423
2424 year *= 10;
2425 year += *p++ - _T('0');
2426
2427 // is it a 2 digit year (as per original RFC 822) or a 4 digit one?
2428 if ( wxIsdigit(*p) )
2429 {
2430 year *= 10;
2431 year += *p++ - _T('0');
2432
2433 if ( !wxIsdigit(*p) )
2434 {
2435 // no 3 digit years please
2436 return (wxChar *)NULL;
2437 }
2438
2439 year *= 10;
2440 year += *p++ - _T('0');
2441 }
2442
2443 if ( *p++ != _T(' ') )
2444 {
2445 return (wxChar *)NULL;
2446 }
2447
2448 // time is in the format hh:mm:ss and seconds are optional
2449 if ( !wxIsdigit(*p) )
2450 {
2451 return (wxChar *)NULL;
2452 }
2453
2454 wxDateTime_t hour = *p++ - _T('0');
2455
2456 if ( !wxIsdigit(*p) )
2457 {
2458 return (wxChar *)NULL;
2459 }
2460
2461 hour *= 10;
2462 hour += *p++ - _T('0');
2463
2464 if ( *p++ != _T(':') )
2465 {
2466 return (wxChar *)NULL;
2467 }
2468
2469 if ( !wxIsdigit(*p) )
2470 {
2471 return (wxChar *)NULL;
2472 }
2473
2474 wxDateTime_t min = *p++ - _T('0');
2475
2476 if ( !wxIsdigit(*p) )
2477 {
2478 return (wxChar *)NULL;
2479 }
2480
2481 min *= 10;
2482 min += *p++ - _T('0');
2483
2484 wxDateTime_t sec = 0;
2485 if ( *p++ == _T(':') )
2486 {
2487 if ( !wxIsdigit(*p) )
2488 {
2489 return (wxChar *)NULL;
2490 }
2491
2492 sec = *p++ - _T('0');
2493
2494 if ( !wxIsdigit(*p) )
2495 {
2496 return (wxChar *)NULL;
2497 }
2498
2499 sec *= 10;
2500 sec += *p++ - _T('0');
2501 }
2502
2503 if ( *p++ != _T(' ') )
2504 {
2505 return (wxChar *)NULL;
2506 }
2507
2508 // and now the interesting part: the timezone
40973ea5 2509 int offset;
cd0b1709
VZ
2510 if ( *p == _T('-') || *p == _T('+') )
2511 {
2512 // the explicit offset given: it has the form of hhmm
2513 bool plus = *p++ == _T('+');
2514
2515 if ( !wxIsdigit(*p) || !wxIsdigit(*(p + 1)) )
2516 {
2517 return (wxChar *)NULL;
2518 }
2519
2520 // hours
2521 offset = 60*(10*(*p - _T('0')) + (*(p + 1) - _T('0')));
2522
2523 p += 2;
2524
2525 if ( !wxIsdigit(*p) || !wxIsdigit(*(p + 1)) )
2526 {
2527 return (wxChar *)NULL;
2528 }
2529
2530 // minutes
2531 offset += 10*(*p - _T('0')) + (*(p + 1) - _T('0'));
2532
2533 if ( !plus )
2534 {
2535 offset = -offset;
2536 }
2537
2538 p += 2;
2539 }
2540 else
2541 {
2542 // the symbolic timezone given: may be either military timezone or one
2543 // of standard abbreviations
2544 if ( !*(p + 1) )
2545 {
2546 // military: Z = UTC, J unused, A = -1, ..., Y = +12
2547 static const int offsets[26] =
2548 {
2549 //A B C D E F G H I J K L M
2550 -1, -2, -3, -4, -5, -6, -7, -8, -9, 0, -10, -11, -12,
2551 //N O P R Q S T U V W Z Y Z
2552 +1, +2, +3, +4, +5, +6, +7, +8, +9, +10, +11, +12, 0
2553 };
2554
2555 if ( *p < _T('A') || *p > _T('Z') || *p == _T('J') )
2556 {
2557 wxLogDebug(_T("Invalid militaty timezone '%c'"), *p);
2558
2559 return (wxChar *)NULL;
2560 }
2561
2562 offset = offsets[*p++ - _T('A')];
2563 }
2564 else
2565 {
2566 // abbreviation
2567 wxString tz = p;
2568 if ( tz == _T("UT") || tz == _T("UTC") || tz == _T("GMT") )
2569 offset = 0;
2570 else if ( tz == _T("AST") )
2571 offset = AST - GMT0;
2572 else if ( tz == _T("ADT") )
2573 offset = ADT - GMT0;
2574 else if ( tz == _T("EST") )
2575 offset = EST - GMT0;
2576 else if ( tz == _T("EDT") )
2577 offset = EDT - GMT0;
2578 else if ( tz == _T("CST") )
2579 offset = CST - GMT0;
2580 else if ( tz == _T("CDT") )
2581 offset = CDT - GMT0;
2582 else if ( tz == _T("MST") )
2583 offset = MST - GMT0;
2584 else if ( tz == _T("MDT") )
2585 offset = MDT - GMT0;
2586 else if ( tz == _T("PST") )
2587 offset = PST - GMT0;
2588 else if ( tz == _T("PDT") )
2589 offset = PDT - GMT0;
2590 else
2591 {
2592 wxLogDebug(_T("Unknown RFC 822 timezone '%s'"), p);
2593
2594 return (wxChar *)NULL;
2595 }
2596
2597 p += tz.length();
2598 }
2599
2600 // make it minutes
2601 offset *= 60;
2602 }
2603
2604 // the spec was correct
2605 Set(day, mon, year, hour, min, sec);
487c1f7e 2606 MakeTimezone((wxDateTime_t)(60*offset));
cd0b1709
VZ
2607
2608 return p;
2609}
2610
f0f951fa
VZ
2611const wxChar *wxDateTime::ParseFormat(const wxChar *date,
2612 const wxChar *format,
2613 const wxDateTime& dateDef)
cd0b1709
VZ
2614{
2615 wxCHECK_MSG( date && format, (wxChar *)NULL,
f0f951fa 2616 _T("NULL pointer in wxDateTime::ParseFormat()") );
cd0b1709 2617
f0f951fa
VZ
2618 wxString str;
2619 unsigned long num;
cd0b1709 2620
f0f951fa
VZ
2621 // what fields have we found?
2622 bool haveWDay = FALSE,
2623 haveYDay = FALSE,
2624 haveDay = FALSE,
2625 haveMon = FALSE,
2626 haveYear = FALSE,
2627 haveHour = FALSE,
2628 haveMin = FALSE,
2629 haveSec = FALSE;
2630
2631 bool hourIsIn12hFormat = FALSE, // or in 24h one?
2632 isPM = FALSE; // AM by default
2633
2634 // and the value of the items we have (init them to get rid of warnings)
2635 wxDateTime_t sec = 0,
2636 min = 0,
2637 hour = 0;
2638 WeekDay wday = Inv_WeekDay;
2639 wxDateTime_t yday = 0,
2640 mday = 0;
2641 wxDateTime::Month mon = Inv_Month;
2642 int year = 0;
2643
2644 const wxChar *input = date;
2645 for ( const wxChar *fmt = format; *fmt; fmt++ )
2646 {
2647 if ( *fmt != _T('%') )
2648 {
2649 if ( wxIsspace(*fmt) )
2650 {
2651 // a white space in the format string matches 0 or more white
2652 // spaces in the input
2653 while ( wxIsspace(*input) )
2654 {
2655 input++;
2656 }
2657 }
2658 else // !space
2659 {
2660 // any other character (not whitespace, not '%') must be
2661 // matched by itself in the input
2662 if ( *input++ != *fmt )
2663 {
2664 // no match
2665 return (wxChar *)NULL;
2666 }
2667 }
2668
2669 // done with this format char
2670 continue;
2671 }
2672
2673 // start of a format specification
f6bcfd97
BP
2674
2675 // parse the optional width
2676 size_t width = 0;
1c193821 2677 while ( wxIsdigit(*++fmt) )
f6bcfd97
BP
2678 {
2679 width *= 10;
2680 width += *fmt - _T('0');
2681 }
2682
4147efe9
VZ
2683 // the default widths for the various fields
2684 if ( !width )
2685 {
2686 switch ( *fmt )
2687 {
2688 case _T('Y'): // year has 4 digits
2689 width = 4;
2690 break;
2691
2692 case _T('j'): // day of year has 3 digits
2693 case _T('l'): // milliseconds have 3 digits
2694 width = 3;
2695 break;
2696
2697 case _T('w'): // week day as number has only one
2698 width = 1;
2699 break;
2700
2701 default:
2702 // default for all other fields
2703 width = 2;
2704 }
2705 }
2706
f6bcfd97
BP
2707 // then the format itself
2708 switch ( *fmt )
f0f951fa
VZ
2709 {
2710 case _T('a'): // a weekday name
2711 case _T('A'):
2712 {
2713 int flag = *fmt == _T('a') ? Name_Abbr : Name_Full;
2714 wday = GetWeekDayFromName(GetAlphaToken(input), flag);
2715 if ( wday == Inv_WeekDay )
2716 {
2717 // no match
2718 return (wxChar *)NULL;
2719 }
2720 }
2721 haveWDay = TRUE;
2722 break;
2723
2724 case _T('b'): // a month name
2725 case _T('B'):
2726 {
2727 int flag = *fmt == _T('b') ? Name_Abbr : Name_Full;
2728 mon = GetMonthFromName(GetAlphaToken(input), flag);
2729 if ( mon == Inv_Month )
2730 {
2731 // no match
2732 return (wxChar *)NULL;
2733 }
2734 }
2735 haveMon = TRUE;
2736 break;
2737
2738 case _T('c'): // locale default date and time representation
2739 {
2740 wxDateTime dt;
2741
2742 // this is the format which corresponds to ctime() output
2743 // and strptime("%c") should parse it, so try it first
41acf5c0 2744 static const wxChar *fmtCtime = _T("%a %b %d %H:%M:%S %Y");
f0f951fa
VZ
2745
2746 const wxChar *result = dt.ParseFormat(input, fmtCtime);
2747 if ( !result )
2748 {
2749 result = dt.ParseFormat(input, _T("%x %X"));
2750 }
2751
2752 if ( !result )
2753 {
2754 result = dt.ParseFormat(input, _T("%X %x"));
2755 }
2756
2757 if ( !result )
2758 {
2759 // we've tried everything and still no match
2760 return (wxChar *)NULL;
2761 }
2762
be4017f8
VZ
2763 Tm tm = dt.GetTm();
2764
2765 haveDay = haveMon = haveYear =
2766 haveHour = haveMin = haveSec = TRUE;
2767
2768 hour = tm.hour;
2769 min = tm.min;
2770 sec = tm.sec;
2771
2772 year = tm.year;
2773 mon = tm.mon;
2774 mday = tm.mday;
2775
f0f951fa
VZ
2776 input = result;
2777 }
2778 break;
2779
2780 case _T('d'): // day of a month (01-31)
f6bcfd97
BP
2781 if ( !GetNumericToken(width, input, &num) ||
2782 (num > 31) || (num < 1) )
f0f951fa
VZ
2783 {
2784 // no match
2785 return (wxChar *)NULL;
2786 }
2787
2788 // we can't check whether the day range is correct yet, will
2789 // do it later - assume ok for now
2790 haveDay = TRUE;
2791 mday = (wxDateTime_t)num;
2792 break;
5f287370 2793
f0f951fa 2794 case _T('H'): // hour in 24h format (00-23)
f6bcfd97 2795 if ( !GetNumericToken(width, input, &num) || (num > 23) )
f0f951fa
VZ
2796 {
2797 // no match
2798 return (wxChar *)NULL;
2799 }
2800
2801 haveHour = TRUE;
2802 hour = (wxDateTime_t)num;
2803 break;
2804
2805 case _T('I'): // hour in 12h format (01-12)
f6bcfd97 2806 if ( !GetNumericToken(width, input, &num) || !num || (num > 12) )
f0f951fa
VZ
2807 {
2808 // no match
2809 return (wxChar *)NULL;
2810 }
2811
2812 haveHour = TRUE;
2813 hourIsIn12hFormat = TRUE;
479cd5de 2814 hour = (wxDateTime_t)(num % 12); // 12 should be 0
f0f951fa
VZ
2815 break;
2816
2817 case _T('j'): // day of the year
f6bcfd97 2818 if ( !GetNumericToken(width, input, &num) || !num || (num > 366) )
f0f951fa
VZ
2819 {
2820 // no match
2821 return (wxChar *)NULL;
2822 }
2823
2824 haveYDay = TRUE;
2825 yday = (wxDateTime_t)num;
2826 break;
2827
2828 case _T('m'): // month as a number (01-12)
f6bcfd97 2829 if ( !GetNumericToken(width, input, &num) || !num || (num > 12) )
f0f951fa
VZ
2830 {
2831 // no match
2832 return (wxChar *)NULL;
2833 }
2834
2835 haveMon = TRUE;
be4017f8 2836 mon = (Month)(num - 1);
f0f951fa
VZ
2837 break;
2838
2839 case _T('M'): // minute as a decimal number (00-59)
f6bcfd97 2840 if ( !GetNumericToken(width, input, &num) || (num > 59) )
f0f951fa
VZ
2841 {
2842 // no match
2843 return (wxChar *)NULL;
2844 }
2845
2846 haveMin = TRUE;
2847 min = (wxDateTime_t)num;
2848 break;
2849
2850 case _T('p'): // AM or PM string
2851 {
2852 wxString am, pm, token = GetAlphaToken(input);
2853
2854 GetAmPmStrings(&am, &pm);
2855 if ( token.CmpNoCase(pm) == 0 )
2856 {
2857 isPM = TRUE;
2858 }
2859 else if ( token.CmpNoCase(am) != 0 )
2860 {
2861 // no match
2862 return (wxChar *)NULL;
2863 }
2864 }
2865 break;
2866
2867 case _T('r'): // time as %I:%M:%S %p
2868 {
2869 wxDateTime dt;
2870 input = dt.ParseFormat(input, _T("%I:%M:%S %p"));
2871 if ( !input )
2872 {
2873 // no match
2874 return (wxChar *)NULL;
2875 }
2876
2877 haveHour = haveMin = haveSec = TRUE;
2878
2879 Tm tm = dt.GetTm();
2880 hour = tm.hour;
2881 min = tm.min;
2882 sec = tm.sec;
2883 }
2884 break;
2885
2886 case _T('R'): // time as %H:%M
2887 {
2888 wxDateTime dt;
2889 input = dt.ParseFormat(input, _T("%H:%M"));
2890 if ( !input )
2891 {
2892 // no match
2893 return (wxChar *)NULL;
2894 }
2895
2896 haveHour = haveMin = TRUE;
2897
2898 Tm tm = dt.GetTm();
2899 hour = tm.hour;
2900 min = tm.min;
2901 }
2902
2903 case _T('S'): // second as a decimal number (00-61)
f6bcfd97 2904 if ( !GetNumericToken(width, input, &num) || (num > 61) )
f0f951fa
VZ
2905 {
2906 // no match
2907 return (wxChar *)NULL;
2908 }
2909
2910 haveSec = TRUE;
2911 sec = (wxDateTime_t)num;
2912 break;
2913
2914 case _T('T'): // time as %H:%M:%S
2915 {
2916 wxDateTime dt;
2917 input = dt.ParseFormat(input, _T("%H:%M:%S"));
2918 if ( !input )
2919 {
2920 // no match
2921 return (wxChar *)NULL;
2922 }
2923
2924 haveHour = haveMin = haveSec = TRUE;
2925
2926 Tm tm = dt.GetTm();
2927 hour = tm.hour;
2928 min = tm.min;
2929 sec = tm.sec;
2930 }
be4017f8 2931 break;
f0f951fa
VZ
2932
2933 case _T('w'): // weekday as a number (0-6), Sunday = 0
f6bcfd97 2934 if ( !GetNumericToken(width, input, &num) || (wday > 6) )
f0f951fa
VZ
2935 {
2936 // no match
2937 return (wxChar *)NULL;
2938 }
2939
2940 haveWDay = TRUE;
2941 wday = (WeekDay)num;
2942 break;
2943
2944 case _T('x'): // locale default date representation
2945#ifdef HAVE_STRPTIME
2423ef22 2946 // try using strptime() -- it may fail even if the input is
f0f951fa 2947 // correct but the date is out of range, so we will fall back
2423ef22 2948 // to our generic code anyhow
f0f951fa
VZ
2949 {
2950 struct tm tm;
2423ef22
VZ
2951
2952 const wxChar *result = CallStrptime(input, "%x", &tm);
f0f951fa
VZ
2953 if ( result )
2954 {
2955 input = result;
2956
2957 haveDay = haveMon = haveYear = TRUE;
2958
2959 year = 1900 + tm.tm_year;
2960 mon = (Month)tm.tm_mon;
2961 mday = tm.tm_mday;
2962
2963 break;
2964 }
2965 }
2966#endif // HAVE_STRPTIME
2967
2968 // TODO query the LOCALE_IDATE setting under Win32
2969 {
2970 wxDateTime dt;
2971
41acf5c0 2972 wxString fmtDate, fmtDateAlt;
f0f951fa
VZ
2973 if ( IsWestEuropeanCountry(GetCountry()) ||
2974 GetCountry() == Russia )
2975 {
2976 fmtDate = _T("%d/%m/%y");
41acf5c0 2977 fmtDateAlt = _T("%m/%d/%y");
f0f951fa
VZ
2978 }
2979 else // assume USA
2980 {
2981 fmtDate = _T("%m/%d/%y");
41acf5c0 2982 fmtDateAlt = _T("%d/%m/%y");
f0f951fa
VZ
2983 }
2984
2985 const wxChar *result = dt.ParseFormat(input, fmtDate);
41acf5c0
VZ
2986
2987 if ( !result )
2988 {
2989 // ok, be nice and try another one
2990 result = dt.ParseFormat(input, fmtDateAlt);
2991 }
2992
f0f951fa
VZ
2993 if ( !result )
2994 {
2995 // bad luck
2996 return (wxChar *)NULL;
2997 }
2998
2999 Tm tm = dt.GetTm();
3000
3001 haveDay = haveMon = haveYear = TRUE;
3002
3003 year = tm.year;
3004 mon = tm.mon;
3005 mday = tm.mday;
3006
3007 input = result;
3008 }
3009
3010 break;
3011
3012 case _T('X'): // locale default time representation
3013#ifdef HAVE_STRPTIME
3014 {
3015 // use strptime() to do it for us (FIXME !Unicode friendly)
3016 struct tm tm;
2423ef22 3017 input = CallStrptime(input, "%X", &tm);
f0f951fa
VZ
3018 if ( !input )
3019 {
3020 return (wxChar *)NULL;
3021 }
3022
3023 haveHour = haveMin = haveSec = TRUE;
3024
3025 hour = tm.tm_hour;
3026 min = tm.tm_min;
3027 sec = tm.tm_sec;
3028 }
3029#else // !HAVE_STRPTIME
3030 // TODO under Win32 we can query the LOCALE_ITIME system
3031 // setting which says whether the default time format is
3032 // 24 or 12 hour
3033 {
3034 // try to parse what follows as "%H:%M:%S" and, if this
3035 // fails, as "%I:%M:%S %p" - this should catch the most
3036 // common cases
3037 wxDateTime dt;
3038
3039 const wxChar *result = dt.ParseFormat(input, _T("%T"));
3040 if ( !result )
3041 {
3042 result = dt.ParseFormat(input, _T("%r"));
3043 }
3044
3045 if ( !result )
3046 {
3047 // no match
3048 return (wxChar *)NULL;
3049 }
3050
3051 haveHour = haveMin = haveSec = TRUE;
3052
3053 Tm tm = dt.GetTm();
3054 hour = tm.hour;
3055 min = tm.min;
3056 sec = tm.sec;
3057
3058 input = result;
3059 }
3060#endif // HAVE_STRPTIME/!HAVE_STRPTIME
3061 break;
3062
3063 case _T('y'): // year without century (00-99)
f6bcfd97 3064 if ( !GetNumericToken(width, input, &num) || (num > 99) )
f0f951fa
VZ
3065 {
3066 // no match
3067 return (wxChar *)NULL;
3068 }
3069
3070 haveYear = TRUE;
f6bcfd97
BP
3071
3072 // TODO should have an option for roll over date instead of
3073 // hard coding it here
3074 year = (num > 30 ? 1900 : 2000) + (wxDateTime_t)num;
f0f951fa
VZ
3075 break;
3076
3077 case _T('Y'): // year with century
f6bcfd97 3078 if ( !GetNumericToken(width, input, &num) )
f0f951fa
VZ
3079 {
3080 // no match
3081 return (wxChar *)NULL;
3082 }
3083
be4017f8
VZ
3084 haveYear = TRUE;
3085 year = (wxDateTime_t)num;
f0f951fa
VZ
3086 break;
3087
3088 case _T('Z'): // timezone name
3089 wxFAIL_MSG(_T("TODO"));
3090 break;
3091
3092 case _T('%'): // a percent sign
3093 if ( *input++ != _T('%') )
3094 {
3095 // no match
3096 return (wxChar *)NULL;
3097 }
3098 break;
3099
3100 case 0: // the end of string
3101 wxFAIL_MSG(_T("unexpected format end"));
3102
3103 // fall through
3104
3105 default: // not a known format spec
3106 return (wxChar *)NULL;
3107 }
3108 }
3109
3110 // format matched, try to construct a date from what we have now
3111 Tm tmDef;
3112 if ( dateDef.IsValid() )
3113 {
3114 // take this date as default
3115 tmDef = dateDef.GetTm();
3116 }
c3302e7e 3117 else if ( IsValid() )
f0f951fa
VZ
3118 {
3119 // if this date is valid, don't change it
3120 tmDef = GetTm();
3121 }
3122 else
3123 {
3124 // no default and this date is invalid - fall back to Today()
3125 tmDef = Today().GetTm();
3126 }
3127
3128 Tm tm = tmDef;
3129
3130 // set the date
3131 if ( haveYear )
3132 {
3133 tm.year = year;
3134 }
3135
3136 // TODO we don't check here that the values are consistent, if both year
3137 // day and month/day were found, we just ignore the year day and we
3138 // also always ignore the week day
3139 if ( haveMon && haveDay )
3140 {
be4017f8
VZ
3141 if ( mday > GetNumOfDaysInMonth(tm.year, mon) )
3142 {
3143 wxLogDebug(_T("bad month day in wxDateTime::ParseFormat"));
3144
3145 return (wxChar *)NULL;
3146 }
3147
f0f951fa
VZ
3148 tm.mon = mon;
3149 tm.mday = mday;
3150 }
3151 else if ( haveYDay )
3152 {
be4017f8
VZ
3153 if ( yday > GetNumberOfDays(tm.year) )
3154 {
3155 wxLogDebug(_T("bad year day in wxDateTime::ParseFormat"));
3156
3157 return (wxChar *)NULL;
3158 }
3159
f0f951fa
VZ
3160 Tm tm2 = wxDateTime(1, Jan, tm.year).SetToYearDay(yday).GetTm();
3161
3162 tm.mon = tm2.mon;
3163 tm.mday = tm2.mday;
3164 }
3165
3166 // deal with AM/PM
3167 if ( haveHour && hourIsIn12hFormat && isPM )
3168 {
3169 // translate to 24hour format
3170 hour += 12;
3171 }
3172 //else: either already in 24h format or no translation needed
3173
3174 // set the time
3175 if ( haveHour )
3176 {
5f287370 3177 tm.hour = hour;
f0f951fa
VZ
3178 }
3179
3180 if ( haveMin )
3181 {
3182 tm.min = min;
3183 }
3184
3185 if ( haveSec )
3186 {
3187 tm.sec = sec;
3188 }
3189
3190 Set(tm);
3191
3192 return input;
cd0b1709
VZ
3193}
3194
3195const wxChar *wxDateTime::ParseDateTime(const wxChar *date)
3196{
3197 wxCHECK_MSG( date, (wxChar *)NULL, _T("NULL pointer in wxDateTime::Parse") );
3198
f0f951fa
VZ
3199 // there is a public domain version of getdate.y, but it only works for
3200 // English...
cd0b1709
VZ
3201 wxFAIL_MSG(_T("TODO"));
3202
3203 return (wxChar *)NULL;
3204}
3205
3206const wxChar *wxDateTime::ParseDate(const wxChar *date)
3207{
3208 // this is a simplified version of ParseDateTime() which understands only
3209 // "today" (for wxDate compatibility) and digits only otherwise (and not
3210 // all esoteric constructions ParseDateTime() knows about)
3211
3212 wxCHECK_MSG( date, (wxChar *)NULL, _T("NULL pointer in wxDateTime::Parse") );
3213
3214 const wxChar *p = date;
3215 while ( wxIsspace(*p) )
3216 p++;
3217
fd9f9f4c
VZ
3218 // some special cases
3219 static struct
cd0b1709 3220 {
fd9f9f4c
VZ
3221 const wxChar *str;
3222 int dayDiffFromToday;
3223 } literalDates[] =
3224 {
3225 { wxTRANSLATE("today"), 0 },
3226 { wxTRANSLATE("yesterday"), -1 },
3227 { wxTRANSLATE("tomorrow"), 1 },
3228 };
3229
3230 for ( size_t n = 0; n < WXSIZEOF(literalDates); n++ )
3231 {
3232 wxString date = wxGetTranslation(literalDates[n].str);
3233 size_t len = date.length();
3b415ba4 3234 if ( wxStrlen(p) >= len && (wxString(p, len).CmpNoCase(date) == 0) )
fd9f9f4c
VZ
3235 {
3236 // nothing can follow this, so stop here
3237 p += len;
cd0b1709 3238
fd9f9f4c
VZ
3239 int dayDiffFromToday = literalDates[n].dayDiffFromToday;
3240 *this = Today();
3241 if ( dayDiffFromToday )
3242 {
3243 *this += wxDateSpan::Days(dayDiffFromToday);
3244 }
cd0b1709 3245
fd9f9f4c
VZ
3246 return p;
3247 }
cd0b1709
VZ
3248 }
3249
3ca6a5f0
BP
3250 // We try to guess what we have here: for each new (numeric) token, we
3251 // determine if it can be a month, day or a year. Of course, there is an
3252 // ambiguity as some numbers may be days as well as months, so we also
3253 // have the ability to back track.
3254
cd0b1709
VZ
3255 // what do we have?
3256 bool haveDay = FALSE, // the months day?
3257 haveWDay = FALSE, // the day of week?
3258 haveMon = FALSE, // the month?
3259 haveYear = FALSE; // the year?
3260
3261 // and the value of the items we have (init them to get rid of warnings)
3262 WeekDay wday = Inv_WeekDay;
3263 wxDateTime_t day = 0;
3264 wxDateTime::Month mon = Inv_Month;
3265 int year = 0;
3266
3267 // tokenize the string
f6bcfd97 3268 size_t nPosCur = 0;
62ae2780 3269 static const wxChar *dateDelimiters = _T(".,/-\t\r\n ");
f6bcfd97 3270 wxStringTokenizer tok(p, dateDelimiters);
cd0b1709
VZ
3271 while ( tok.HasMoreTokens() )
3272 {
3273 wxString token = tok.GetNextToken();
3ca6a5f0
BP
3274 if ( !token )
3275 continue;
cd0b1709
VZ
3276
3277 // is it a number?
3278 unsigned long val;
fde5a86b 3279 if ( token.ToULong(&val) )
cd0b1709
VZ
3280 {
3281 // guess what this number is
3282
3283 bool isDay = FALSE,
3284 isMonth = FALSE,
3ca6a5f0
BP
3285 isYear = FALSE;
3286
3287 if ( !haveMon && val > 0 && val <= 12 )
cd0b1709 3288 {
3ca6a5f0
BP
3289 // assume it is month
3290 isMonth = TRUE;
3291 }
3292 else // not the month
3293 {
3294 wxDateTime_t maxDays = haveMon
3295 ? GetNumOfDaysInMonth(haveYear ? year : Inv_Year, mon)
3296 : 31;
3297
3298 // can it be day?
3897b707 3299 if ( (val == 0) || (val > (unsigned long)maxDays) ) // cast to shut up compiler warning in BCC
cd0b1709 3300 {
3ca6a5f0 3301 isYear = TRUE;
cd0b1709 3302 }
3ca6a5f0 3303 else
cd0b1709
VZ
3304 {
3305 isDay = TRUE;
cd0b1709
VZ
3306 }
3307 }
3308
cd0b1709
VZ
3309 if ( isYear )
3310 {
3311 if ( haveYear )
cd0b1709 3312 break;
cd0b1709
VZ
3313
3314 haveYear = TRUE;
3315
479cd5de 3316 year = (wxDateTime_t)val;
cd0b1709 3317 }
3ca6a5f0 3318 else if ( isDay )
cd0b1709 3319 {
3ca6a5f0 3320 if ( haveDay )
cd0b1709 3321 break;
cd0b1709 3322
3ca6a5f0 3323 haveDay = TRUE;
cd0b1709 3324
3ca6a5f0 3325 day = (wxDateTime_t)val;
cd0b1709 3326 }
3ca6a5f0 3327 else if ( isMonth )
cd0b1709 3328 {
3ca6a5f0 3329 haveMon = TRUE;
cd0b1709 3330
3ca6a5f0 3331 mon = (Month)(val - 1);
cd0b1709
VZ
3332 }
3333 }
3334 else // not a number
3335 {
f6bcfd97
BP
3336 // be careful not to overwrite the current mon value
3337 Month mon2 = GetMonthFromName(token, Name_Full | Name_Abbr);
3338 if ( mon2 != Inv_Month )
cd0b1709
VZ
3339 {
3340 // it's a month
3341 if ( haveMon )
3342 {
6411a32c
VZ
3343 // but we already have a month - maybe we guessed wrong?
3344 if ( !haveDay )
3345 {
f5cd9787 3346 // no need to check in month range as always < 12, but
6411a32c
VZ
3347 // the days are counted from 1 unlike the months
3348 day = (wxDateTime_t)mon + 1;
3349 haveDay = TRUE;
3350 }
3351 else
3352 {
3353 // could possible be the year (doesn't the year come
3354 // before the month in the japanese format?) (FIXME)
3355 break;
f5cd9787 3356 }
cd0b1709
VZ
3357 }
3358
f6bcfd97
BP
3359 mon = mon2;
3360
cd0b1709
VZ
3361 haveMon = TRUE;
3362 }
6411a32c 3363 else // not a valid month name
cd0b1709 3364 {
f0f951fa 3365 wday = GetWeekDayFromName(token, Name_Full | Name_Abbr);
cd0b1709
VZ
3366 if ( wday != Inv_WeekDay )
3367 {
3368 // a week day
3369 if ( haveWDay )
3370 {
3371 break;
3372 }
3373
3374 haveWDay = TRUE;
3375 }
6411a32c 3376 else // not a valid weekday name
cd0b1709
VZ
3377 {
3378 // try the ordinals
3379 static const wxChar *ordinals[] =
3380 {
3381 wxTRANSLATE("first"),
3382 wxTRANSLATE("second"),
3383 wxTRANSLATE("third"),
3384 wxTRANSLATE("fourth"),
3385 wxTRANSLATE("fifth"),
3386 wxTRANSLATE("sixth"),
3387 wxTRANSLATE("seventh"),
3388 wxTRANSLATE("eighth"),
3389 wxTRANSLATE("ninth"),
3390 wxTRANSLATE("tenth"),
3391 wxTRANSLATE("eleventh"),
3392 wxTRANSLATE("twelfth"),
3393 wxTRANSLATE("thirteenth"),
3394 wxTRANSLATE("fourteenth"),
3395 wxTRANSLATE("fifteenth"),
3396 wxTRANSLATE("sixteenth"),
3397 wxTRANSLATE("seventeenth"),
3398 wxTRANSLATE("eighteenth"),
3399 wxTRANSLATE("nineteenth"),
3400 wxTRANSLATE("twentieth"),
3401 // that's enough - otherwise we'd have problems with
6411a32c 3402 // composite (or not) ordinals
cd0b1709
VZ
3403 };
3404
3405 size_t n;
3406 for ( n = 0; n < WXSIZEOF(ordinals); n++ )
3407 {
3408 if ( token.CmpNoCase(ordinals[n]) == 0 )
3409 {
3410 break;
3411 }
3412 }
3413
3414 if ( n == WXSIZEOF(ordinals) )
3415 {
3416 // stop here - something unknown
3417 break;
3418 }
3419
3420 // it's a day
3421 if ( haveDay )
3422 {
3423 // don't try anything here (as in case of numeric day
3424 // above) - the symbolic day spec should always
3425 // precede the month/year
3426 break;
3427 }
3428
3429 haveDay = TRUE;
3430
33ac7e6f 3431 day = (wxDateTime_t)(n + 1);
cd0b1709
VZ
3432 }
3433 }
3434 }
f6bcfd97
BP
3435
3436 nPosCur = tok.GetPosition();
cd0b1709
VZ
3437 }
3438
3439 // either no more tokens or the scan was stopped by something we couldn't
3440 // parse - in any case, see if we can construct a date from what we have
3441 if ( !haveDay && !haveWDay )
3442 {
f6bcfd97 3443 wxLogDebug(_T("ParseDate: no day, no weekday hence no date."));
cd0b1709
VZ
3444
3445 return (wxChar *)NULL;
3446 }
3447
3448 if ( haveWDay && (haveMon || haveYear || haveDay) &&
f6bcfd97 3449 !(haveDay && haveMon && haveYear) )
cd0b1709
VZ
3450 {
3451 // without adjectives (which we don't support here) the week day only
3452 // makes sense completely separately or with the full date
3453 // specification (what would "Wed 1999" mean?)
3454 return (wxChar *)NULL;
3455 }
3456
f6bcfd97
BP
3457 if ( !haveWDay && haveYear && !(haveDay && haveMon) )
3458 {
3459 // may be we have month and day instead of day and year?
3460 if ( haveDay && !haveMon )
3461 {
3462 if ( day <= 12 )
3463 {
3464 // exchange day and month
3465 mon = (wxDateTime::Month)(day - 1);
3466
3467 // we're in the current year then
f5cd9787
VZ
3468 if ( (year > 0) &&
3469 (unsigned)year <= GetNumOfDaysInMonth(Inv_Year, mon) )
f6bcfd97
BP
3470 {
3471 day = year;
3472
3473 haveMon = TRUE;
3474 haveYear = FALSE;
3475 }
3476 //else: no, can't exchange, leave haveMon == FALSE
3477 }
3478 }
3479
3480 if ( !haveMon )
3481 {
3482 // if we give the year, month and day must be given too
3483 wxLogDebug(_T("ParseDate: day and month should be specified if year is."));
3484
3485 return (wxChar *)NULL;
3486 }
3487 }
3488
cd0b1709
VZ
3489 if ( !haveMon )
3490 {
3491 mon = GetCurrentMonth();
3492 }
3493
3494 if ( !haveYear )
3495 {
3496 year = GetCurrentYear();
3497 }
3498
3499 if ( haveDay )
3500 {
3501 Set(day, mon, year);
3502
3503 if ( haveWDay )
3504 {
3505 // check that it is really the same
3506 if ( GetWeekDay() != wday )
3507 {
3508 // inconsistency detected
f6bcfd97
BP
3509 wxLogDebug(_T("ParseDate: inconsistent day/weekday."));
3510
cd0b1709
VZ
3511 return (wxChar *)NULL;
3512 }
3513 }
3514 }
3515 else // haveWDay
3516 {
3517 *this = Today();
3518
3519 SetToWeekDayInSameWeek(wday);
3520 }
3521
f6bcfd97
BP
3522 // return the pointer to the first unparsed char
3523 p += nPosCur;
3524 if ( nPosCur && wxStrchr(dateDelimiters, *(p - 1)) )
3525 {
3526 // if we couldn't parse the token after the delimiter, put back the
3527 // delimiter as well
3528 p--;
3529 }
3530
3531 return p;
cd0b1709
VZ
3532}
3533
3534const wxChar *wxDateTime::ParseTime(const wxChar *time)
3535{
3536 wxCHECK_MSG( time, (wxChar *)NULL, _T("NULL pointer in wxDateTime::Parse") );
3537
f0f951fa
VZ
3538 // first try some extra things
3539 static const struct
3540 {
3541 const wxChar *name;
3542 wxDateTime_t hour;
3543 } stdTimes[] =
3544 {
3545 { wxTRANSLATE("noon"), 12 },
3546 { wxTRANSLATE("midnight"), 00 },
3547 // anything else?
3548 };
cd0b1709 3549
f0f951fa
VZ
3550 for ( size_t n = 0; n < WXSIZEOF(stdTimes); n++ )
3551 {
3552 wxString timeString = wxGetTranslation(stdTimes[n].name);
3553 size_t len = timeString.length();
3554 if ( timeString.CmpNoCase(wxString(time, len)) == 0 )
3555 {
4ded51f2
CE
3556 // casts required by DigitalMars
3557 Set(stdTimes[n].hour, wxDateTime_t(0), wxDateTime_t(0));
f0f951fa
VZ
3558
3559 return time + len;
3560 }
3561 }
3562
c7f9a482
VZ
3563 // try all time formats we may think about in the order from longest to
3564 // shortest
3565
3566 // 12hour with AM/PM?
3567 const wxChar *result = ParseFormat(time, _T("%I:%M:%S %p"));
3568
f0f951fa
VZ
3569 if ( !result )
3570 {
3571 // normally, it's the same, but why not try it?
3572 result = ParseFormat(time, _T("%H:%M:%S"));
3573 }
3574
3575 if ( !result )
3576 {
c7f9a482
VZ
3577 // 12hour with AM/PM but without seconds?
3578 result = ParseFormat(time, _T("%I:%M %p"));
f0f951fa
VZ
3579 }
3580
3581 if ( !result )
3582 {
3583 // without seconds?
3584 result = ParseFormat(time, _T("%H:%M"));
3585 }
3586
3587 if ( !result )
3588 {
c7f9a482
VZ
3589 // just the hour and AM/PM?
3590 result = ParseFormat(time, _T("%I %p"));
f0f951fa
VZ
3591 }
3592
3593 if ( !result )
3594 {
3595 // just the hour?
3596 result = ParseFormat(time, _T("%H"));
3597 }
3598
3599 if ( !result )
3600 {
c7f9a482
VZ
3601 // parse the standard format: normally it is one of the formats above
3602 // but it may be set to something completely different by the user
3603 result = ParseFormat(time, _T("%X"));
f0f951fa
VZ
3604 }
3605
3606 // TODO: parse timezones
3607
3608 return result;
cd0b1709
VZ
3609}
3610
4f6aed9c
VZ
3611// ----------------------------------------------------------------------------
3612// Workdays and holidays support
3613// ----------------------------------------------------------------------------
3614
3615bool wxDateTime::IsWorkDay(Country WXUNUSED(country)) const
3616{
3617 return !wxDateTimeHolidayAuthority::IsHoliday(*this);
3618}
3619
fcc3d7cb
VZ
3620// ============================================================================
3621// wxTimeSpan
3622// ============================================================================
3623
033400eb
VZ
3624// this enum is only used in wxTimeSpan::Format() below but we can't declare
3625// it locally to the method as it provokes an internal compiler error in egcs
3626// 2.91.60 when building with -O2
3627enum TimeSpanPart
3628{
3629 Part_Week,
3630 Part_Day,
3631 Part_Hour,
3632 Part_Min,
3633 Part_Sec,
3634 Part_MSec
3635};
3636
e6ec579c
VZ
3637// not all strftime(3) format specifiers make sense here because, for example,
3638// a time span doesn't have a year nor a timezone
3639//
3640// Here are the ones which are supported (all of them are supported by strftime
3641// as well):
3642// %H hour in 24 hour format
3643// %M minute (00 - 59)
3644// %S second (00 - 59)
3645// %% percent sign
3646//
3647// Also, for MFC CTimeSpan compatibility, we support
3648// %D number of days
3649//
3650// And, to be better than MFC :-), we also have
3651// %E number of wEeks
3652// %l milliseconds (000 - 999)
fcc3d7cb
VZ
3653wxString wxTimeSpan::Format(const wxChar *format) const
3654{
e6ec579c 3655 wxCHECK_MSG( format, _T(""), _T("NULL format in wxTimeSpan::Format") );
fcc3d7cb
VZ
3656
3657 wxString str;
5b735202 3658 str.Alloc(wxStrlen(format));
e6ec579c 3659
df05cdc5
VZ
3660 // Suppose we have wxTimeSpan ts(1 /* hour */, 2 /* min */, 3 /* sec */)
3661 //
3662 // Then, of course, ts.Format("%H:%M:%S") must return "01:02:03", but the
3663 // question is what should ts.Format("%S") do? The code here returns "3273"
3664 // in this case (i.e. the total number of seconds, not just seconds % 60)
3665 // because, for me, this call means "give me entire time interval in
3666 // seconds" and not "give me the seconds part of the time interval"
3667 //
3668 // If we agree that it should behave like this, it is clear that the
3669 // interpretation of each format specifier depends on the presence of the
3670 // other format specs in the string: if there was "%H" before "%M", we
3671 // should use GetMinutes() % 60, otherwise just GetMinutes() &c
3672
3673 // we remember the most important unit found so far
033400eb 3674 TimeSpanPart partBiggest = Part_MSec;
df05cdc5 3675
f6bcfd97 3676 for ( const wxChar *pch = format; *pch; pch++ )
e6ec579c
VZ
3677 {
3678 wxChar ch = *pch;
3679
f6bcfd97 3680 if ( ch == _T('%') )
e6ec579c 3681 {
df05cdc5
VZ
3682 // the start of the format specification of the printf() below
3683 wxString fmtPrefix = _T('%');
3684
3685 // the number
3686 long n;
e6ec579c 3687
f6bcfd97 3688 ch = *++pch; // get the format spec char
e6ec579c
VZ
3689 switch ( ch )
3690 {
3691 default:
3692 wxFAIL_MSG( _T("invalid format character") );
3693 // fall through
3694
f6bcfd97 3695 case _T('%'):
df05cdc5
VZ
3696 str += ch;
3697
3698 // skip the part below switch
3699 continue;
e6ec579c 3700
f6bcfd97 3701 case _T('D'):
df05cdc5
VZ
3702 n = GetDays();
3703 if ( partBiggest < Part_Day )
3704 {
3705 n %= DAYS_PER_WEEK;
3706 }
3707 else
3708 {
3709 partBiggest = Part_Day;
3710 }
e6ec579c
VZ
3711 break;
3712
f6bcfd97 3713 case _T('E'):
df05cdc5
VZ
3714 partBiggest = Part_Week;
3715 n = GetWeeks();
e6ec579c
VZ
3716 break;
3717
f6bcfd97 3718 case _T('H'):
df05cdc5
VZ
3719 n = GetHours();
3720 if ( partBiggest < Part_Hour )
3721 {
3722 n %= HOURS_PER_DAY;
3723 }
3724 else
3725 {
3726 partBiggest = Part_Hour;
3727 }
3728
3729 fmtPrefix += _T("02");
e6ec579c
VZ
3730 break;
3731
f6bcfd97 3732 case _T('l'):
df05cdc5
VZ
3733 n = GetMilliseconds().ToLong();
3734 if ( partBiggest < Part_MSec )
3735 {
3736 n %= 1000;
3737 }
3738 //else: no need to reset partBiggest to Part_MSec, it is
3739 // the least significant one anyhow
3740
3741 fmtPrefix += _T("03");
e6ec579c
VZ
3742 break;
3743
f6bcfd97 3744 case _T('M'):
df05cdc5
VZ
3745 n = GetMinutes();
3746 if ( partBiggest < Part_Min )
3747 {
3748 n %= MIN_PER_HOUR;
3749 }
3750 else
3751 {
3752 partBiggest = Part_Min;
3753 }
3754
3755 fmtPrefix += _T("02");
e6ec579c
VZ
3756 break;
3757
f6bcfd97 3758 case _T('S'):
df05cdc5
VZ
3759 n = GetSeconds().ToLong();
3760 if ( partBiggest < Part_Sec )
3761 {
3762 n %= SEC_PER_MIN;
3763 }
3764 else
3765 {
3766 partBiggest = Part_Sec;
3767 }
3768
3769 fmtPrefix += _T("02");
e6ec579c
VZ
3770 break;
3771 }
3772
df05cdc5
VZ
3773 str += wxString::Format(fmtPrefix + _T("ld"), n);
3774 }
3775 else
3776 {
3777 // normal character, just copy
3778 str += ch;
e6ec579c 3779 }
e6ec579c 3780 }
fcc3d7cb
VZ
3781
3782 return str;
3783}
4f6aed9c
VZ
3784
3785// ============================================================================
3786// wxDateTimeHolidayAuthority and related classes
3787// ============================================================================
3788
3789#include "wx/arrimpl.cpp"
3790
f6bcfd97 3791WX_DEFINE_OBJARRAY(wxDateTimeArray);
4f6aed9c
VZ
3792
3793static int wxCMPFUNC_CONV
3794wxDateTimeCompareFunc(wxDateTime **first, wxDateTime **second)
3795{
3796 wxDateTime dt1 = **first,
3797 dt2 = **second;
3798
3799 return dt1 == dt2 ? 0 : dt1 < dt2 ? -1 : +1;
3800}
3801
3802// ----------------------------------------------------------------------------
3803// wxDateTimeHolidayAuthority
3804// ----------------------------------------------------------------------------
3805
3806wxHolidayAuthoritiesArray wxDateTimeHolidayAuthority::ms_authorities;
3807
3808/* static */
3809bool wxDateTimeHolidayAuthority::IsHoliday(const wxDateTime& dt)
3810{
df5168c4 3811 size_t count = ms_authorities.size();
4f6aed9c
VZ
3812 for ( size_t n = 0; n < count; n++ )
3813 {
3814 if ( ms_authorities[n]->DoIsHoliday(dt) )
3815 {
3816 return TRUE;
3817 }
3818 }
3819
3820 return FALSE;
3821}
3822
3823/* static */
3824size_t
3825wxDateTimeHolidayAuthority::GetHolidaysInRange(const wxDateTime& dtStart,
3826 const wxDateTime& dtEnd,
3827 wxDateTimeArray& holidays)
3828{
3829 wxDateTimeArray hol;
3830
df5168c4 3831 holidays.Clear();
4f6aed9c 3832
df5168c4 3833 size_t count = ms_authorities.size();
6dc6fda6 3834 for ( size_t nAuth = 0; nAuth < count; nAuth++ )
4f6aed9c 3835 {
6dc6fda6 3836 ms_authorities[nAuth]->DoGetHolidaysInRange(dtStart, dtEnd, hol);
4f6aed9c
VZ
3837
3838 WX_APPEND_ARRAY(holidays, hol);
3839 }
3840
3841 holidays.Sort(wxDateTimeCompareFunc);
3842
df5168c4 3843 return holidays.size();
4f6aed9c
VZ
3844}
3845
3846/* static */
3847void wxDateTimeHolidayAuthority::ClearAllAuthorities()
3848{
3849 WX_CLEAR_ARRAY(ms_authorities);
3850}
3851
3852/* static */
3853void wxDateTimeHolidayAuthority::AddAuthority(wxDateTimeHolidayAuthority *auth)
3854{
df5168c4 3855 ms_authorities.push_back(auth);
4f6aed9c
VZ
3856}
3857
30e671a5
VZ
3858wxDateTimeHolidayAuthority::~wxDateTimeHolidayAuthority()
3859{
3860 // nothing to do here
3861}
3862
4f6aed9c
VZ
3863// ----------------------------------------------------------------------------
3864// wxDateTimeWorkDays
3865// ----------------------------------------------------------------------------
3866
3867bool wxDateTimeWorkDays::DoIsHoliday(const wxDateTime& dt) const
3868{
3869 wxDateTime::WeekDay wd = dt.GetWeekDay();
3870
3871 return (wd == wxDateTime::Sun) || (wd == wxDateTime::Sat);
3872}
3873
3874size_t wxDateTimeWorkDays::DoGetHolidaysInRange(const wxDateTime& dtStart,
3875 const wxDateTime& dtEnd,
3876 wxDateTimeArray& holidays) const
3877{
3878 if ( dtStart > dtEnd )
3879 {
3880 wxFAIL_MSG( _T("invalid date range in GetHolidaysInRange") );
3881
3882 return 0u;
3883 }
3884
3885 holidays.Empty();
3886
3887 // instead of checking all days, start with the first Sat after dtStart and
3888 // end with the last Sun before dtEnd
3889 wxDateTime dtSatFirst = dtStart.GetNextWeekDay(wxDateTime::Sat),
3890 dtSatLast = dtEnd.GetPrevWeekDay(wxDateTime::Sat),
3891 dtSunFirst = dtStart.GetNextWeekDay(wxDateTime::Sun),
3892 dtSunLast = dtEnd.GetPrevWeekDay(wxDateTime::Sun),
3893 dt;
3894
3895 for ( dt = dtSatFirst; dt <= dtSatLast; dt += wxDateSpan::Week() )
3896 {
3897 holidays.Add(dt);
3898 }
3899
3900 for ( dt = dtSunFirst; dt <= dtSunLast; dt += wxDateSpan::Week() )
3901 {
3902 holidays.Add(dt);
3903 }
3904
3905 return holidays.GetCount();
3906}
3e0b743f 3907
1e6feb95 3908#endif // wxUSE_DATETIME