blob: 4dd4fe314d4f3422fc48439f50c8c4313861f6b4 [file] [log] [blame]
Tim Peters2a799bf2002-12-16 20:18:38 +00001/* C implementation for the date/time type documented at
2 * http://www.zope.org/Members/fdrake/DateTimeWiki/FrontPage
3 */
4
5#include "Python.h"
6#include "modsupport.h"
7#include "structmember.h"
8
9#include <time.h>
10
Tim Peters1b6f7a92004-06-20 02:50:16 +000011#include "timefuncs.h"
Tim Peters9ddf40b2004-06-20 22:41:32 +000012
13/* Differentiate between building the core module and building extension
14 * modules.
15 */
Guido van Rossum360e4b82007-05-14 22:51:27 +000016#ifndef Py_BUILD_CORE
Tim Peters9ddf40b2004-06-20 22:41:32 +000017#define Py_BUILD_CORE
Guido van Rossum360e4b82007-05-14 22:51:27 +000018#endif
Tim Peters2a799bf2002-12-16 20:18:38 +000019#include "datetime.h"
Tim Peters9ddf40b2004-06-20 22:41:32 +000020#undef Py_BUILD_CORE
Tim Peters2a799bf2002-12-16 20:18:38 +000021
22/* We require that C int be at least 32 bits, and use int virtually
23 * everywhere. In just a few cases we use a temp long, where a Python
24 * API returns a C long. In such cases, we have to ensure that the
25 * final result fits in a C int (this can be an issue on 64-bit boxes).
26 */
27#if SIZEOF_INT < 4
28# error "datetime.c requires that C int have at least 32 bits"
29#endif
30
31#define MINYEAR 1
32#define MAXYEAR 9999
33
34/* Nine decimal digits is easy to communicate, and leaves enough room
35 * so that two delta days can be added w/o fear of overflowing a signed
36 * 32-bit int, and with plenty of room left over to absorb any possible
37 * carries from adding seconds.
38 */
39#define MAX_DELTA_DAYS 999999999
40
41/* Rename the long macros in datetime.h to more reasonable short names. */
42#define GET_YEAR PyDateTime_GET_YEAR
43#define GET_MONTH PyDateTime_GET_MONTH
44#define GET_DAY PyDateTime_GET_DAY
45#define DATE_GET_HOUR PyDateTime_DATE_GET_HOUR
46#define DATE_GET_MINUTE PyDateTime_DATE_GET_MINUTE
47#define DATE_GET_SECOND PyDateTime_DATE_GET_SECOND
48#define DATE_GET_MICROSECOND PyDateTime_DATE_GET_MICROSECOND
49
50/* Date accessors for date and datetime. */
51#define SET_YEAR(o, v) (((o)->data[0] = ((v) & 0xff00) >> 8), \
52 ((o)->data[1] = ((v) & 0x00ff)))
53#define SET_MONTH(o, v) (PyDateTime_GET_MONTH(o) = (v))
54#define SET_DAY(o, v) (PyDateTime_GET_DAY(o) = (v))
55
56/* Date/Time accessors for datetime. */
57#define DATE_SET_HOUR(o, v) (PyDateTime_DATE_GET_HOUR(o) = (v))
58#define DATE_SET_MINUTE(o, v) (PyDateTime_DATE_GET_MINUTE(o) = (v))
59#define DATE_SET_SECOND(o, v) (PyDateTime_DATE_GET_SECOND(o) = (v))
60#define DATE_SET_MICROSECOND(o, v) \
61 (((o)->data[7] = ((v) & 0xff0000) >> 16), \
62 ((o)->data[8] = ((v) & 0x00ff00) >> 8), \
63 ((o)->data[9] = ((v) & 0x0000ff)))
64
65/* Time accessors for time. */
66#define TIME_GET_HOUR PyDateTime_TIME_GET_HOUR
67#define TIME_GET_MINUTE PyDateTime_TIME_GET_MINUTE
68#define TIME_GET_SECOND PyDateTime_TIME_GET_SECOND
69#define TIME_GET_MICROSECOND PyDateTime_TIME_GET_MICROSECOND
70#define TIME_SET_HOUR(o, v) (PyDateTime_TIME_GET_HOUR(o) = (v))
71#define TIME_SET_MINUTE(o, v) (PyDateTime_TIME_GET_MINUTE(o) = (v))
72#define TIME_SET_SECOND(o, v) (PyDateTime_TIME_GET_SECOND(o) = (v))
73#define TIME_SET_MICROSECOND(o, v) \
74 (((o)->data[3] = ((v) & 0xff0000) >> 16), \
75 ((o)->data[4] = ((v) & 0x00ff00) >> 8), \
76 ((o)->data[5] = ((v) & 0x0000ff)))
77
78/* Delta accessors for timedelta. */
79#define GET_TD_DAYS(o) (((PyDateTime_Delta *)(o))->days)
80#define GET_TD_SECONDS(o) (((PyDateTime_Delta *)(o))->seconds)
81#define GET_TD_MICROSECONDS(o) (((PyDateTime_Delta *)(o))->microseconds)
82
83#define SET_TD_DAYS(o, v) ((o)->days = (v))
84#define SET_TD_SECONDS(o, v) ((o)->seconds = (v))
85#define SET_TD_MICROSECONDS(o, v) ((o)->microseconds = (v))
86
Tim Petersa032d2e2003-01-11 00:15:54 +000087/* p is a pointer to a time or a datetime object; HASTZINFO(p) returns
88 * p->hastzinfo.
89 */
90#define HASTZINFO(p) (((_PyDateTime_BaseTZInfo *)(p))->hastzinfo)
91
Tim Peters3f606292004-03-21 23:38:41 +000092/* M is a char or int claiming to be a valid month. The macro is equivalent
93 * to the two-sided Python test
94 * 1 <= M <= 12
95 */
96#define MONTH_IS_SANE(M) ((unsigned int)(M) - 1 < 12)
97
Tim Peters2a799bf2002-12-16 20:18:38 +000098/* Forward declarations. */
99static PyTypeObject PyDateTime_DateType;
100static PyTypeObject PyDateTime_DateTimeType;
Tim Peters2a799bf2002-12-16 20:18:38 +0000101static PyTypeObject PyDateTime_DeltaType;
102static PyTypeObject PyDateTime_TimeType;
103static PyTypeObject PyDateTime_TZInfoType;
Tim Peters2a799bf2002-12-16 20:18:38 +0000104
105/* ---------------------------------------------------------------------------
106 * Math utilities.
107 */
108
109/* k = i+j overflows iff k differs in sign from both inputs,
110 * iff k^i has sign bit set and k^j has sign bit set,
111 * iff (k^i)&(k^j) has sign bit set.
112 */
113#define SIGNED_ADD_OVERFLOWED(RESULT, I, J) \
114 ((((RESULT) ^ (I)) & ((RESULT) ^ (J))) < 0)
115
116/* Compute Python divmod(x, y), returning the quotient and storing the
117 * remainder into *r. The quotient is the floor of x/y, and that's
118 * the real point of this. C will probably truncate instead (C99
119 * requires truncation; C89 left it implementation-defined).
120 * Simplification: we *require* that y > 0 here. That's appropriate
121 * for all the uses made of it. This simplifies the code and makes
122 * the overflow case impossible (divmod(LONG_MIN, -1) is the only
123 * overflow case).
124 */
125static int
126divmod(int x, int y, int *r)
127{
128 int quo;
129
130 assert(y > 0);
131 quo = x / y;
132 *r = x - quo * y;
133 if (*r < 0) {
134 --quo;
135 *r += y;
136 }
137 assert(0 <= *r && *r < y);
138 return quo;
139}
140
Tim Peters5d644dd2003-01-02 16:32:54 +0000141/* Round a double to the nearest long. |x| must be small enough to fit
142 * in a C long; this is not checked.
143 */
144static long
145round_to_long(double x)
146{
147 if (x >= 0.0)
148 x = floor(x + 0.5);
149 else
150 x = ceil(x - 0.5);
151 return (long)x;
152}
153
Tim Peters2a799bf2002-12-16 20:18:38 +0000154/* ---------------------------------------------------------------------------
155 * General calendrical helper functions
156 */
157
158/* For each month ordinal in 1..12, the number of days in that month,
159 * and the number of days before that month in the same year. These
160 * are correct for non-leap years only.
161 */
162static int _days_in_month[] = {
163 0, /* unused; this vector uses 1-based indexing */
164 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31
165};
166
167static int _days_before_month[] = {
168 0, /* unused; this vector uses 1-based indexing */
169 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334
170};
171
172/* year -> 1 if leap year, else 0. */
173static int
174is_leap(int year)
175{
176 /* Cast year to unsigned. The result is the same either way, but
177 * C can generate faster code for unsigned mod than for signed
178 * mod (especially for % 4 -- a good compiler should just grab
179 * the last 2 bits when the LHS is unsigned).
180 */
181 const unsigned int ayear = (unsigned int)year;
182 return ayear % 4 == 0 && (ayear % 100 != 0 || ayear % 400 == 0);
183}
184
185/* year, month -> number of days in that month in that year */
186static int
187days_in_month(int year, int month)
188{
189 assert(month >= 1);
190 assert(month <= 12);
191 if (month == 2 && is_leap(year))
192 return 29;
193 else
194 return _days_in_month[month];
195}
196
197/* year, month -> number of days in year preceeding first day of month */
198static int
199days_before_month(int year, int month)
200{
201 int days;
202
203 assert(month >= 1);
204 assert(month <= 12);
205 days = _days_before_month[month];
206 if (month > 2 && is_leap(year))
207 ++days;
208 return days;
209}
210
211/* year -> number of days before January 1st of year. Remember that we
212 * start with year 1, so days_before_year(1) == 0.
213 */
214static int
215days_before_year(int year)
216{
217 int y = year - 1;
218 /* This is incorrect if year <= 0; we really want the floor
219 * here. But so long as MINYEAR is 1, the smallest year this
220 * can see is 0 (this can happen in some normalization endcases),
221 * so we'll just special-case that.
222 */
223 assert (year >= 0);
224 if (y >= 0)
225 return y*365 + y/4 - y/100 + y/400;
226 else {
227 assert(y == -1);
228 return -366;
229 }
230}
231
232/* Number of days in 4, 100, and 400 year cycles. That these have
233 * the correct values is asserted in the module init function.
234 */
235#define DI4Y 1461 /* days_before_year(5); days in 4 years */
236#define DI100Y 36524 /* days_before_year(101); days in 100 years */
237#define DI400Y 146097 /* days_before_year(401); days in 400 years */
238
239/* ordinal -> year, month, day, considering 01-Jan-0001 as day 1. */
240static void
241ord_to_ymd(int ordinal, int *year, int *month, int *day)
242{
243 int n, n1, n4, n100, n400, leapyear, preceding;
244
245 /* ordinal is a 1-based index, starting at 1-Jan-1. The pattern of
246 * leap years repeats exactly every 400 years. The basic strategy is
247 * to find the closest 400-year boundary at or before ordinal, then
248 * work with the offset from that boundary to ordinal. Life is much
249 * clearer if we subtract 1 from ordinal first -- then the values
250 * of ordinal at 400-year boundaries are exactly those divisible
251 * by DI400Y:
252 *
253 * D M Y n n-1
254 * -- --- ---- ---------- ----------------
255 * 31 Dec -400 -DI400Y -DI400Y -1
256 * 1 Jan -399 -DI400Y +1 -DI400Y 400-year boundary
257 * ...
258 * 30 Dec 000 -1 -2
259 * 31 Dec 000 0 -1
260 * 1 Jan 001 1 0 400-year boundary
261 * 2 Jan 001 2 1
262 * 3 Jan 001 3 2
263 * ...
264 * 31 Dec 400 DI400Y DI400Y -1
265 * 1 Jan 401 DI400Y +1 DI400Y 400-year boundary
266 */
267 assert(ordinal >= 1);
268 --ordinal;
269 n400 = ordinal / DI400Y;
270 n = ordinal % DI400Y;
271 *year = n400 * 400 + 1;
272
273 /* Now n is the (non-negative) offset, in days, from January 1 of
274 * year, to the desired date. Now compute how many 100-year cycles
275 * precede n.
276 * Note that it's possible for n100 to equal 4! In that case 4 full
277 * 100-year cycles precede the desired day, which implies the
278 * desired day is December 31 at the end of a 400-year cycle.
279 */
280 n100 = n / DI100Y;
281 n = n % DI100Y;
282
283 /* Now compute how many 4-year cycles precede it. */
284 n4 = n / DI4Y;
285 n = n % DI4Y;
286
287 /* And now how many single years. Again n1 can be 4, and again
288 * meaning that the desired day is December 31 at the end of the
289 * 4-year cycle.
290 */
291 n1 = n / 365;
292 n = n % 365;
293
294 *year += n100 * 100 + n4 * 4 + n1;
295 if (n1 == 4 || n100 == 4) {
296 assert(n == 0);
297 *year -= 1;
298 *month = 12;
299 *day = 31;
300 return;
301 }
302
303 /* Now the year is correct, and n is the offset from January 1. We
304 * find the month via an estimate that's either exact or one too
305 * large.
306 */
307 leapyear = n1 == 3 && (n4 != 24 || n100 == 3);
308 assert(leapyear == is_leap(*year));
309 *month = (n + 50) >> 5;
310 preceding = (_days_before_month[*month] + (*month > 2 && leapyear));
311 if (preceding > n) {
312 /* estimate is too large */
313 *month -= 1;
314 preceding -= days_in_month(*year, *month);
315 }
316 n -= preceding;
317 assert(0 <= n);
318 assert(n < days_in_month(*year, *month));
319
320 *day = n + 1;
321}
322
323/* year, month, day -> ordinal, considering 01-Jan-0001 as day 1. */
324static int
325ymd_to_ord(int year, int month, int day)
326{
327 return days_before_year(year) + days_before_month(year, month) + day;
328}
329
330/* Day of week, where Monday==0, ..., Sunday==6. 1/1/1 was a Monday. */
331static int
332weekday(int year, int month, int day)
333{
334 return (ymd_to_ord(year, month, day) + 6) % 7;
335}
336
337/* Ordinal of the Monday starting week 1 of the ISO year. Week 1 is the
338 * first calendar week containing a Thursday.
339 */
340static int
341iso_week1_monday(int year)
342{
343 int first_day = ymd_to_ord(year, 1, 1); /* ord of 1/1 */
344 /* 0 if 1/1 is a Monday, 1 if a Tue, etc. */
345 int first_weekday = (first_day + 6) % 7;
346 /* ordinal of closest Monday at or before 1/1 */
347 int week1_monday = first_day - first_weekday;
348
349 if (first_weekday > 3) /* if 1/1 was Fri, Sat, Sun */
350 week1_monday += 7;
351 return week1_monday;
352}
353
354/* ---------------------------------------------------------------------------
355 * Range checkers.
356 */
357
358/* Check that -MAX_DELTA_DAYS <= days <= MAX_DELTA_DAYS. If so, return 0.
359 * If not, raise OverflowError and return -1.
360 */
361static int
362check_delta_day_range(int days)
363{
364 if (-MAX_DELTA_DAYS <= days && days <= MAX_DELTA_DAYS)
365 return 0;
366 PyErr_Format(PyExc_OverflowError,
367 "days=%d; must have magnitude <= %d",
Guido van Rossumbd43e912002-12-16 20:34:55 +0000368 days, MAX_DELTA_DAYS);
Tim Peters2a799bf2002-12-16 20:18:38 +0000369 return -1;
370}
371
372/* Check that date arguments are in range. Return 0 if they are. If they
373 * aren't, raise ValueError and return -1.
374 */
375static int
376check_date_args(int year, int month, int day)
377{
378
379 if (year < MINYEAR || year > MAXYEAR) {
380 PyErr_SetString(PyExc_ValueError,
381 "year is out of range");
382 return -1;
383 }
384 if (month < 1 || month > 12) {
385 PyErr_SetString(PyExc_ValueError,
386 "month must be in 1..12");
387 return -1;
388 }
389 if (day < 1 || day > days_in_month(year, month)) {
390 PyErr_SetString(PyExc_ValueError,
391 "day is out of range for month");
392 return -1;
393 }
394 return 0;
395}
396
397/* Check that time arguments are in range. Return 0 if they are. If they
398 * aren't, raise ValueError and return -1.
399 */
400static int
401check_time_args(int h, int m, int s, int us)
402{
403 if (h < 0 || h > 23) {
404 PyErr_SetString(PyExc_ValueError,
405 "hour must be in 0..23");
406 return -1;
407 }
408 if (m < 0 || m > 59) {
409 PyErr_SetString(PyExc_ValueError,
410 "minute must be in 0..59");
411 return -1;
412 }
413 if (s < 0 || s > 59) {
414 PyErr_SetString(PyExc_ValueError,
415 "second must be in 0..59");
416 return -1;
417 }
418 if (us < 0 || us > 999999) {
419 PyErr_SetString(PyExc_ValueError,
420 "microsecond must be in 0..999999");
421 return -1;
422 }
423 return 0;
424}
425
426/* ---------------------------------------------------------------------------
427 * Normalization utilities.
428 */
429
430/* One step of a mixed-radix conversion. A "hi" unit is equivalent to
431 * factor "lo" units. factor must be > 0. If *lo is less than 0, or
432 * at least factor, enough of *lo is converted into "hi" units so that
433 * 0 <= *lo < factor. The input values must be such that int overflow
434 * is impossible.
435 */
436static void
437normalize_pair(int *hi, int *lo, int factor)
438{
439 assert(factor > 0);
440 assert(lo != hi);
441 if (*lo < 0 || *lo >= factor) {
442 const int num_hi = divmod(*lo, factor, lo);
443 const int new_hi = *hi + num_hi;
444 assert(! SIGNED_ADD_OVERFLOWED(new_hi, *hi, num_hi));
445 *hi = new_hi;
446 }
447 assert(0 <= *lo && *lo < factor);
448}
449
450/* Fiddle days (d), seconds (s), and microseconds (us) so that
451 * 0 <= *s < 24*3600
452 * 0 <= *us < 1000000
453 * The input values must be such that the internals don't overflow.
454 * The way this routine is used, we don't get close.
455 */
456static void
457normalize_d_s_us(int *d, int *s, int *us)
458{
459 if (*us < 0 || *us >= 1000000) {
460 normalize_pair(s, us, 1000000);
461 /* |s| can't be bigger than about
462 * |original s| + |original us|/1000000 now.
463 */
464
465 }
466 if (*s < 0 || *s >= 24*3600) {
467 normalize_pair(d, s, 24*3600);
468 /* |d| can't be bigger than about
469 * |original d| +
470 * (|original s| + |original us|/1000000) / (24*3600) now.
471 */
472 }
473 assert(0 <= *s && *s < 24*3600);
474 assert(0 <= *us && *us < 1000000);
475}
476
477/* Fiddle years (y), months (m), and days (d) so that
478 * 1 <= *m <= 12
479 * 1 <= *d <= days_in_month(*y, *m)
480 * The input values must be such that the internals don't overflow.
481 * The way this routine is used, we don't get close.
482 */
483static void
484normalize_y_m_d(int *y, int *m, int *d)
485{
486 int dim; /* # of days in month */
487
488 /* This gets muddy: the proper range for day can't be determined
489 * without knowing the correct month and year, but if day is, e.g.,
490 * plus or minus a million, the current month and year values make
491 * no sense (and may also be out of bounds themselves).
492 * Saying 12 months == 1 year should be non-controversial.
493 */
494 if (*m < 1 || *m > 12) {
495 --*m;
496 normalize_pair(y, m, 12);
497 ++*m;
498 /* |y| can't be bigger than about
499 * |original y| + |original m|/12 now.
500 */
501 }
502 assert(1 <= *m && *m <= 12);
503
504 /* Now only day can be out of bounds (year may also be out of bounds
505 * for a datetime object, but we don't care about that here).
506 * If day is out of bounds, what to do is arguable, but at least the
507 * method here is principled and explainable.
508 */
509 dim = days_in_month(*y, *m);
510 if (*d < 1 || *d > dim) {
511 /* Move day-1 days from the first of the month. First try to
512 * get off cheap if we're only one day out of range
513 * (adjustments for timezone alone can't be worse than that).
514 */
515 if (*d == 0) {
516 --*m;
517 if (*m > 0)
518 *d = days_in_month(*y, *m);
519 else {
520 --*y;
521 *m = 12;
522 *d = 31;
523 }
524 }
525 else if (*d == dim + 1) {
526 /* move forward a day */
527 ++*m;
528 *d = 1;
529 if (*m > 12) {
530 *m = 1;
531 ++*y;
532 }
533 }
534 else {
535 int ordinal = ymd_to_ord(*y, *m, 1) +
536 *d - 1;
537 ord_to_ymd(ordinal, y, m, d);
538 }
539 }
540 assert(*m > 0);
541 assert(*d > 0);
542}
543
544/* Fiddle out-of-bounds months and days so that the result makes some kind
545 * of sense. The parameters are both inputs and outputs. Returns < 0 on
546 * failure, where failure means the adjusted year is out of bounds.
547 */
548static int
549normalize_date(int *year, int *month, int *day)
550{
551 int result;
552
553 normalize_y_m_d(year, month, day);
554 if (MINYEAR <= *year && *year <= MAXYEAR)
555 result = 0;
556 else {
557 PyErr_SetString(PyExc_OverflowError,
558 "date value out of range");
559 result = -1;
560 }
561 return result;
562}
563
564/* Force all the datetime fields into range. The parameters are both
565 * inputs and outputs. Returns < 0 on error.
566 */
567static int
568normalize_datetime(int *year, int *month, int *day,
569 int *hour, int *minute, int *second,
570 int *microsecond)
571{
572 normalize_pair(second, microsecond, 1000000);
573 normalize_pair(minute, second, 60);
574 normalize_pair(hour, minute, 60);
575 normalize_pair(day, hour, 24);
576 return normalize_date(year, month, day);
577}
578
579/* ---------------------------------------------------------------------------
Tim Petersb0c854d2003-05-17 15:57:00 +0000580 * Basic object allocation: tp_alloc implementations. These allocate
581 * Python objects of the right size and type, and do the Python object-
582 * initialization bit. If there's not enough memory, they return NULL after
583 * setting MemoryError. All data members remain uninitialized trash.
584 *
585 * We abuse the tp_alloc "nitems" argument to communicate whether a tzinfo
Tim Peters03eaf8b2003-05-18 02:24:46 +0000586 * member is needed. This is ugly, imprecise, and possibly insecure.
587 * tp_basicsize for the time and datetime types is set to the size of the
588 * struct that has room for the tzinfo member, so subclasses in Python will
589 * allocate enough space for a tzinfo member whether or not one is actually
590 * needed. That's the "ugly and imprecise" parts. The "possibly insecure"
591 * part is that PyType_GenericAlloc() (which subclasses in Python end up
592 * using) just happens today to effectively ignore the nitems argument
593 * when tp_itemsize is 0, which it is for these type objects. If that
594 * changes, perhaps the callers of tp_alloc slots in this file should
595 * be changed to force a 0 nitems argument unless the type being allocated
596 * is a base type implemented in this file (so that tp_alloc is time_alloc
597 * or datetime_alloc below, which know about the nitems abuse).
Tim Petersb0c854d2003-05-17 15:57:00 +0000598 */
599
600static PyObject *
Martin v. Löwis18e16552006-02-15 17:27:45 +0000601time_alloc(PyTypeObject *type, Py_ssize_t aware)
Tim Petersb0c854d2003-05-17 15:57:00 +0000602{
603 PyObject *self;
604
605 self = (PyObject *)
606 PyObject_MALLOC(aware ?
607 sizeof(PyDateTime_Time) :
608 sizeof(_PyDateTime_BaseTime));
609 if (self == NULL)
610 return (PyObject *)PyErr_NoMemory();
611 PyObject_INIT(self, type);
612 return self;
613}
614
615static PyObject *
Martin v. Löwis18e16552006-02-15 17:27:45 +0000616datetime_alloc(PyTypeObject *type, Py_ssize_t aware)
Tim Petersb0c854d2003-05-17 15:57:00 +0000617{
618 PyObject *self;
619
620 self = (PyObject *)
621 PyObject_MALLOC(aware ?
622 sizeof(PyDateTime_DateTime) :
623 sizeof(_PyDateTime_BaseDateTime));
624 if (self == NULL)
625 return (PyObject *)PyErr_NoMemory();
626 PyObject_INIT(self, type);
627 return self;
628}
629
630/* ---------------------------------------------------------------------------
631 * Helpers for setting object fields. These work on pointers to the
632 * appropriate base class.
633 */
634
635/* For date and datetime. */
636static void
637set_date_fields(PyDateTime_Date *self, int y, int m, int d)
638{
639 self->hashcode = -1;
640 SET_YEAR(self, y);
641 SET_MONTH(self, m);
642 SET_DAY(self, d);
643}
644
645/* ---------------------------------------------------------------------------
646 * Create various objects, mostly without range checking.
647 */
648
649/* Create a date instance with no range checking. */
650static PyObject *
651new_date_ex(int year, int month, int day, PyTypeObject *type)
652{
653 PyDateTime_Date *self;
654
655 self = (PyDateTime_Date *) (type->tp_alloc(type, 0));
656 if (self != NULL)
657 set_date_fields(self, year, month, day);
658 return (PyObject *) self;
659}
660
661#define new_date(year, month, day) \
662 new_date_ex(year, month, day, &PyDateTime_DateType)
663
664/* Create a datetime instance with no range checking. */
665static PyObject *
666new_datetime_ex(int year, int month, int day, int hour, int minute,
667 int second, int usecond, PyObject *tzinfo, PyTypeObject *type)
668{
669 PyDateTime_DateTime *self;
670 char aware = tzinfo != Py_None;
671
672 self = (PyDateTime_DateTime *) (type->tp_alloc(type, aware));
673 if (self != NULL) {
674 self->hastzinfo = aware;
675 set_date_fields((PyDateTime_Date *)self, year, month, day);
676 DATE_SET_HOUR(self, hour);
677 DATE_SET_MINUTE(self, minute);
678 DATE_SET_SECOND(self, second);
679 DATE_SET_MICROSECOND(self, usecond);
680 if (aware) {
681 Py_INCREF(tzinfo);
682 self->tzinfo = tzinfo;
683 }
684 }
685 return (PyObject *)self;
686}
687
688#define new_datetime(y, m, d, hh, mm, ss, us, tzinfo) \
689 new_datetime_ex(y, m, d, hh, mm, ss, us, tzinfo, \
690 &PyDateTime_DateTimeType)
691
692/* Create a time instance with no range checking. */
693static PyObject *
694new_time_ex(int hour, int minute, int second, int usecond,
695 PyObject *tzinfo, PyTypeObject *type)
696{
697 PyDateTime_Time *self;
698 char aware = tzinfo != Py_None;
699
700 self = (PyDateTime_Time *) (type->tp_alloc(type, aware));
701 if (self != NULL) {
702 self->hastzinfo = aware;
703 self->hashcode = -1;
704 TIME_SET_HOUR(self, hour);
705 TIME_SET_MINUTE(self, minute);
706 TIME_SET_SECOND(self, second);
707 TIME_SET_MICROSECOND(self, usecond);
708 if (aware) {
709 Py_INCREF(tzinfo);
710 self->tzinfo = tzinfo;
711 }
712 }
713 return (PyObject *)self;
714}
715
716#define new_time(hh, mm, ss, us, tzinfo) \
717 new_time_ex(hh, mm, ss, us, tzinfo, &PyDateTime_TimeType)
718
719/* Create a timedelta instance. Normalize the members iff normalize is
720 * true. Passing false is a speed optimization, if you know for sure
721 * that seconds and microseconds are already in their proper ranges. In any
722 * case, raises OverflowError and returns NULL if the normalized days is out
723 * of range).
724 */
725static PyObject *
726new_delta_ex(int days, int seconds, int microseconds, int normalize,
727 PyTypeObject *type)
728{
729 PyDateTime_Delta *self;
730
731 if (normalize)
732 normalize_d_s_us(&days, &seconds, &microseconds);
733 assert(0 <= seconds && seconds < 24*3600);
734 assert(0 <= microseconds && microseconds < 1000000);
735
736 if (check_delta_day_range(days) < 0)
737 return NULL;
738
739 self = (PyDateTime_Delta *) (type->tp_alloc(type, 0));
740 if (self != NULL) {
741 self->hashcode = -1;
742 SET_TD_DAYS(self, days);
743 SET_TD_SECONDS(self, seconds);
744 SET_TD_MICROSECONDS(self, microseconds);
745 }
746 return (PyObject *) self;
747}
748
749#define new_delta(d, s, us, normalize) \
750 new_delta_ex(d, s, us, normalize, &PyDateTime_DeltaType)
751
752/* ---------------------------------------------------------------------------
Tim Peters2a799bf2002-12-16 20:18:38 +0000753 * tzinfo helpers.
754 */
755
Tim Peters855fe882002-12-22 03:43:39 +0000756/* Ensure that p is None or of a tzinfo subclass. Return 0 if OK; if not
757 * raise TypeError and return -1.
758 */
759static int
760check_tzinfo_subclass(PyObject *p)
761{
762 if (p == Py_None || PyTZInfo_Check(p))
763 return 0;
764 PyErr_Format(PyExc_TypeError,
765 "tzinfo argument must be None or of a tzinfo subclass, "
766 "not type '%s'",
Christian Heimes90aa7642007-12-19 02:45:37 +0000767 Py_TYPE(p)->tp_name);
Tim Peters855fe882002-12-22 03:43:39 +0000768 return -1;
769}
770
Tim Petersbad8ff02002-12-30 20:52:32 +0000771/* Return tzinfo.methname(tzinfoarg), without any checking of results.
Tim Peters855fe882002-12-22 03:43:39 +0000772 * If tzinfo is None, returns None.
773 */
774static PyObject *
Tim Petersbad8ff02002-12-30 20:52:32 +0000775call_tzinfo_method(PyObject *tzinfo, char *methname, PyObject *tzinfoarg)
Tim Peters855fe882002-12-22 03:43:39 +0000776{
777 PyObject *result;
778
Tim Petersbad8ff02002-12-30 20:52:32 +0000779 assert(tzinfo && methname && tzinfoarg);
Tim Peters855fe882002-12-22 03:43:39 +0000780 assert(check_tzinfo_subclass(tzinfo) >= 0);
781 if (tzinfo == Py_None) {
782 result = Py_None;
783 Py_INCREF(result);
784 }
785 else
Tim Petersbad8ff02002-12-30 20:52:32 +0000786 result = PyObject_CallMethod(tzinfo, methname, "O", tzinfoarg);
Tim Peters855fe882002-12-22 03:43:39 +0000787 return result;
788}
789
Tim Peters2a799bf2002-12-16 20:18:38 +0000790/* If self has a tzinfo member, return a BORROWED reference to it. Else
791 * return NULL, which is NOT AN ERROR. There are no error returns here,
792 * and the caller must not decref the result.
793 */
794static PyObject *
795get_tzinfo_member(PyObject *self)
796{
797 PyObject *tzinfo = NULL;
798
Tim Petersa9bc1682003-01-11 03:39:11 +0000799 if (PyDateTime_Check(self) && HASTZINFO(self))
800 tzinfo = ((PyDateTime_DateTime *)self)->tzinfo;
Tim Petersa032d2e2003-01-11 00:15:54 +0000801 else if (PyTime_Check(self) && HASTZINFO(self))
Tim Peters37f39822003-01-10 03:49:02 +0000802 tzinfo = ((PyDateTime_Time *)self)->tzinfo;
Tim Peters2a799bf2002-12-16 20:18:38 +0000803
804 return tzinfo;
805}
806
Tim Petersbad8ff02002-12-30 20:52:32 +0000807/* Call getattr(tzinfo, name)(tzinfoarg), and extract an int from the
Tim Peters2a799bf2002-12-16 20:18:38 +0000808 * result. tzinfo must be an instance of the tzinfo class. If the method
809 * returns None, this returns 0 and sets *none to 1. If the method doesn't
Tim Peters397301e2003-01-02 21:28:08 +0000810 * return None or timedelta, TypeError is raised and this returns -1. If it
811 * returnsa timedelta and the value is out of range or isn't a whole number
812 * of minutes, ValueError is raised and this returns -1.
Tim Peters2a799bf2002-12-16 20:18:38 +0000813 * Else *none is set to 0 and the integer method result is returned.
814 */
815static int
816call_utc_tzinfo_method(PyObject *tzinfo, char *name, PyObject *tzinfoarg,
817 int *none)
818{
819 PyObject *u;
Tim Peters397301e2003-01-02 21:28:08 +0000820 int result = -1;
Tim Peters2a799bf2002-12-16 20:18:38 +0000821
822 assert(tzinfo != NULL);
823 assert(PyTZInfo_Check(tzinfo));
824 assert(tzinfoarg != NULL);
825
826 *none = 0;
Tim Petersbad8ff02002-12-30 20:52:32 +0000827 u = call_tzinfo_method(tzinfo, name, tzinfoarg);
Tim Peters2a799bf2002-12-16 20:18:38 +0000828 if (u == NULL)
829 return -1;
830
Tim Peters27362852002-12-23 16:17:39 +0000831 else if (u == Py_None) {
Tim Peters2a799bf2002-12-16 20:18:38 +0000832 result = 0;
833 *none = 1;
Tim Peters2a799bf2002-12-16 20:18:38 +0000834 }
Tim Peters855fe882002-12-22 03:43:39 +0000835 else if (PyDelta_Check(u)) {
836 const int days = GET_TD_DAYS(u);
837 if (days < -1 || days > 0)
838 result = 24*60; /* trigger ValueError below */
839 else {
840 /* next line can't overflow because we know days
841 * is -1 or 0 now
842 */
843 int ss = days * 24 * 3600 + GET_TD_SECONDS(u);
844 result = divmod(ss, 60, &ss);
845 if (ss || GET_TD_MICROSECONDS(u)) {
846 PyErr_Format(PyExc_ValueError,
847 "tzinfo.%s() must return a "
848 "whole number of minutes",
849 name);
850 result = -1;
Tim Peters855fe882002-12-22 03:43:39 +0000851 }
852 }
853 }
Tim Peters2a799bf2002-12-16 20:18:38 +0000854 else {
855 PyErr_Format(PyExc_TypeError,
Tim Peters397301e2003-01-02 21:28:08 +0000856 "tzinfo.%s() must return None or "
Tim Peters855fe882002-12-22 03:43:39 +0000857 "timedelta, not '%s'",
Christian Heimes90aa7642007-12-19 02:45:37 +0000858 name, Py_TYPE(u)->tp_name);
Tim Peters2a799bf2002-12-16 20:18:38 +0000859 }
860
Tim Peters2a799bf2002-12-16 20:18:38 +0000861 Py_DECREF(u);
862 if (result < -1439 || result > 1439) {
863 PyErr_Format(PyExc_ValueError,
Neal Norwitz506a2242003-01-04 01:02:25 +0000864 "tzinfo.%s() returned %d; must be in "
Tim Peters2a799bf2002-12-16 20:18:38 +0000865 "-1439 .. 1439",
866 name, result);
867 result = -1;
868 }
Tim Peters397301e2003-01-02 21:28:08 +0000869 return result;
Tim Peters2a799bf2002-12-16 20:18:38 +0000870}
871
872/* Call tzinfo.utcoffset(tzinfoarg), and extract an integer from the
873 * result. tzinfo must be an instance of the tzinfo class. If utcoffset()
874 * returns None, call_utcoffset returns 0 and sets *none to 1. If uctoffset()
Tim Peters397301e2003-01-02 21:28:08 +0000875 * doesn't return None or timedelta, TypeError is raised and this returns -1.
876 * If utcoffset() returns an invalid timedelta (out of range, or not a whole
877 * # of minutes), ValueError is raised and this returns -1. Else *none is
878 * set to 0 and the offset is returned (as int # of minutes east of UTC).
Tim Peters2a799bf2002-12-16 20:18:38 +0000879 */
880static int
881call_utcoffset(PyObject *tzinfo, PyObject *tzinfoarg, int *none)
882{
883 return call_utc_tzinfo_method(tzinfo, "utcoffset", tzinfoarg, none);
884}
885
Tim Petersbad8ff02002-12-30 20:52:32 +0000886/* Call tzinfo.name(tzinfoarg), and return the offset as a timedelta or None.
887 */
Tim Peters855fe882002-12-22 03:43:39 +0000888static PyObject *
Tim Petersbad8ff02002-12-30 20:52:32 +0000889offset_as_timedelta(PyObject *tzinfo, char *name, PyObject *tzinfoarg) {
Tim Peters855fe882002-12-22 03:43:39 +0000890 PyObject *result;
891
Tim Petersbad8ff02002-12-30 20:52:32 +0000892 assert(tzinfo && name && tzinfoarg);
Tim Peters855fe882002-12-22 03:43:39 +0000893 if (tzinfo == Py_None) {
894 result = Py_None;
895 Py_INCREF(result);
896 }
897 else {
898 int none;
Tim Petersbad8ff02002-12-30 20:52:32 +0000899 int offset = call_utc_tzinfo_method(tzinfo, name, tzinfoarg,
900 &none);
Tim Peters855fe882002-12-22 03:43:39 +0000901 if (offset < 0 && PyErr_Occurred())
902 return NULL;
903 if (none) {
904 result = Py_None;
905 Py_INCREF(result);
906 }
907 else
908 result = new_delta(0, offset * 60, 0, 1);
909 }
910 return result;
911}
912
Tim Peters2a799bf2002-12-16 20:18:38 +0000913/* Call tzinfo.dst(tzinfoarg), and extract an integer from the
914 * result. tzinfo must be an instance of the tzinfo class. If dst()
915 * returns None, call_dst returns 0 and sets *none to 1. If dst()
Tim Peters397301e2003-01-02 21:28:08 +0000916 & doesn't return None or timedelta, TypeError is raised and this
Walter Dörwaldf0dfc7a2003-10-20 14:01:56 +0000917 * returns -1. If dst() returns an invalid timedelta for a UTC offset,
Tim Peters397301e2003-01-02 21:28:08 +0000918 * ValueError is raised and this returns -1. Else *none is set to 0 and
919 * the offset is returned (as an int # of minutes east of UTC).
Tim Peters2a799bf2002-12-16 20:18:38 +0000920 */
921static int
922call_dst(PyObject *tzinfo, PyObject *tzinfoarg, int *none)
923{
924 return call_utc_tzinfo_method(tzinfo, "dst", tzinfoarg, none);
925}
926
Tim Petersbad8ff02002-12-30 20:52:32 +0000927/* Call tzinfo.tzname(tzinfoarg), and return the result. tzinfo must be
Tim Peters855fe882002-12-22 03:43:39 +0000928 * an instance of the tzinfo class or None. If tzinfo isn't None, and
Tim Petersbad8ff02002-12-30 20:52:32 +0000929 * tzname() doesn't return None or a string, TypeError is raised and this
Guido van Rossume3d1d412007-05-23 21:24:35 +0000930 * returns NULL. If the result is a string, we ensure it is a Unicode
931 * string.
Tim Peters2a799bf2002-12-16 20:18:38 +0000932 */
933static PyObject *
Tim Petersbad8ff02002-12-30 20:52:32 +0000934call_tzname(PyObject *tzinfo, PyObject *tzinfoarg)
Tim Peters2a799bf2002-12-16 20:18:38 +0000935{
936 PyObject *result;
937
938 assert(tzinfo != NULL);
Tim Peters855fe882002-12-22 03:43:39 +0000939 assert(check_tzinfo_subclass(tzinfo) >= 0);
Tim Petersbad8ff02002-12-30 20:52:32 +0000940 assert(tzinfoarg != NULL);
Tim Peters2a799bf2002-12-16 20:18:38 +0000941
Tim Peters855fe882002-12-22 03:43:39 +0000942 if (tzinfo == Py_None) {
943 result = Py_None;
944 Py_INCREF(result);
945 }
946 else
Tim Petersbad8ff02002-12-30 20:52:32 +0000947 result = PyObject_CallMethod(tzinfo, "tzname", "O", tzinfoarg);
Tim Peters855fe882002-12-22 03:43:39 +0000948
Guido van Rossume3d1d412007-05-23 21:24:35 +0000949 if (result != NULL && result != Py_None) {
Guido van Rossumfd53fd62007-08-24 04:05:13 +0000950 if (!PyUnicode_Check(result)) {
Guido van Rossume3d1d412007-05-23 21:24:35 +0000951 PyErr_Format(PyExc_TypeError, "tzinfo.tzname() must "
952 "return None or a string, not '%s'",
Christian Heimes90aa7642007-12-19 02:45:37 +0000953 Py_TYPE(result)->tp_name);
Guido van Rossume3d1d412007-05-23 21:24:35 +0000954 Py_DECREF(result);
955 result = NULL;
956 }
957 else if (!PyUnicode_Check(result)) {
958 PyObject *temp = PyUnicode_FromObject(result);
959 Py_DECREF(result);
960 result = temp;
961 }
Tim Peters2a799bf2002-12-16 20:18:38 +0000962 }
963 return result;
964}
965
966typedef enum {
967 /* an exception has been set; the caller should pass it on */
968 OFFSET_ERROR,
969
Tim Petersa9bc1682003-01-11 03:39:11 +0000970 /* type isn't date, datetime, or time subclass */
Tim Peters2a799bf2002-12-16 20:18:38 +0000971 OFFSET_UNKNOWN,
972
973 /* date,
Tim Petersa9bc1682003-01-11 03:39:11 +0000974 * datetime with !hastzinfo
975 * datetime with None tzinfo,
976 * datetime where utcoffset() returns None
Tim Peters37f39822003-01-10 03:49:02 +0000977 * time with !hastzinfo
978 * time with None tzinfo,
979 * time where utcoffset() returns None
Tim Peters2a799bf2002-12-16 20:18:38 +0000980 */
981 OFFSET_NAIVE,
982
Tim Petersa9bc1682003-01-11 03:39:11 +0000983 /* time or datetime where utcoffset() doesn't return None */
Georg Brandle810fe22006-02-19 15:28:47 +0000984 OFFSET_AWARE
Tim Peters2a799bf2002-12-16 20:18:38 +0000985} naivety;
986
Tim Peters14b69412002-12-22 18:10:22 +0000987/* Classify an object as to whether it's naive or offset-aware. See
Tim Peters2a799bf2002-12-16 20:18:38 +0000988 * the "naivety" typedef for details. If the type is aware, *offset is set
989 * to minutes east of UTC (as returned by the tzinfo.utcoffset() method).
Tim Peters14b69412002-12-22 18:10:22 +0000990 * If the type is offset-naive (or unknown, or error), *offset is set to 0.
Tim Peterse39a80c2002-12-30 21:28:52 +0000991 * tzinfoarg is the argument to pass to the tzinfo.utcoffset() method.
Tim Peters2a799bf2002-12-16 20:18:38 +0000992 */
993static naivety
Tim Peterse39a80c2002-12-30 21:28:52 +0000994classify_utcoffset(PyObject *op, PyObject *tzinfoarg, int *offset)
Tim Peters2a799bf2002-12-16 20:18:38 +0000995{
996 int none;
997 PyObject *tzinfo;
998
Tim Peterse39a80c2002-12-30 21:28:52 +0000999 assert(tzinfoarg != NULL);
Tim Peters2a799bf2002-12-16 20:18:38 +00001000 *offset = 0;
Tim Peters14b69412002-12-22 18:10:22 +00001001 tzinfo = get_tzinfo_member(op); /* NULL means no tzinfo, not error */
Tim Peters2a799bf2002-12-16 20:18:38 +00001002 if (tzinfo == Py_None)
1003 return OFFSET_NAIVE;
Tim Peters14b69412002-12-22 18:10:22 +00001004 if (tzinfo == NULL) {
1005 /* note that a datetime passes the PyDate_Check test */
1006 return (PyTime_Check(op) || PyDate_Check(op)) ?
1007 OFFSET_NAIVE : OFFSET_UNKNOWN;
1008 }
Tim Peterse39a80c2002-12-30 21:28:52 +00001009 *offset = call_utcoffset(tzinfo, tzinfoarg, &none);
Tim Peters2a799bf2002-12-16 20:18:38 +00001010 if (*offset == -1 && PyErr_Occurred())
1011 return OFFSET_ERROR;
1012 return none ? OFFSET_NAIVE : OFFSET_AWARE;
1013}
1014
Tim Peters00237032002-12-27 02:21:51 +00001015/* Classify two objects as to whether they're naive or offset-aware.
1016 * This isn't quite the same as calling classify_utcoffset() twice: for
1017 * binary operations (comparison and subtraction), we generally want to
1018 * ignore the tzinfo members if they're identical. This is by design,
1019 * so that results match "naive" expectations when mixing objects from a
1020 * single timezone. So in that case, this sets both offsets to 0 and
1021 * both naiveties to OFFSET_NAIVE.
1022 * The function returns 0 if everything's OK, and -1 on error.
1023 */
1024static int
1025classify_two_utcoffsets(PyObject *o1, int *offset1, naivety *n1,
Tim Peterse39a80c2002-12-30 21:28:52 +00001026 PyObject *tzinfoarg1,
1027 PyObject *o2, int *offset2, naivety *n2,
1028 PyObject *tzinfoarg2)
Tim Peters00237032002-12-27 02:21:51 +00001029{
1030 if (get_tzinfo_member(o1) == get_tzinfo_member(o2)) {
1031 *offset1 = *offset2 = 0;
1032 *n1 = *n2 = OFFSET_NAIVE;
1033 }
1034 else {
Tim Peterse39a80c2002-12-30 21:28:52 +00001035 *n1 = classify_utcoffset(o1, tzinfoarg1, offset1);
Tim Peters00237032002-12-27 02:21:51 +00001036 if (*n1 == OFFSET_ERROR)
1037 return -1;
Tim Peterse39a80c2002-12-30 21:28:52 +00001038 *n2 = classify_utcoffset(o2, tzinfoarg2, offset2);
Tim Peters00237032002-12-27 02:21:51 +00001039 if (*n2 == OFFSET_ERROR)
1040 return -1;
1041 }
1042 return 0;
1043}
1044
Tim Peters2a799bf2002-12-16 20:18:38 +00001045/* repr is like "someclass(arg1, arg2)". If tzinfo isn't None,
1046 * stuff
1047 * ", tzinfo=" + repr(tzinfo)
1048 * before the closing ")".
1049 */
1050static PyObject *
1051append_keyword_tzinfo(PyObject *repr, PyObject *tzinfo)
1052{
1053 PyObject *temp;
1054
Walter Dörwald1ab83302007-05-18 17:15:44 +00001055 assert(PyUnicode_Check(repr));
Tim Peters2a799bf2002-12-16 20:18:38 +00001056 assert(tzinfo);
1057 if (tzinfo == Py_None)
1058 return repr;
1059 /* Get rid of the trailing ')'. */
Walter Dörwald1ab83302007-05-18 17:15:44 +00001060 assert(PyUnicode_AS_UNICODE(repr)[PyUnicode_GET_SIZE(repr)-1] == ')');
1061 temp = PyUnicode_FromUnicode(PyUnicode_AS_UNICODE(repr),
1062 PyUnicode_GET_SIZE(repr) - 1);
Tim Peters2a799bf2002-12-16 20:18:38 +00001063 Py_DECREF(repr);
1064 if (temp == NULL)
1065 return NULL;
Walter Dörwald517bcfe2007-05-23 20:45:05 +00001066 repr = PyUnicode_FromFormat("%U, tzinfo=%R)", temp, tzinfo);
1067 Py_DECREF(temp);
Tim Peters2a799bf2002-12-16 20:18:38 +00001068 return repr;
1069}
1070
1071/* ---------------------------------------------------------------------------
1072 * String format helpers.
1073 */
1074
1075static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00001076format_ctime(PyDateTime_Date *date, int hours, int minutes, int seconds)
Tim Peters2a799bf2002-12-16 20:18:38 +00001077{
Jeremy Hyltonaf68c872005-12-10 18:50:16 +00001078 static const char *DayNames[] = {
Tim Peters2a799bf2002-12-16 20:18:38 +00001079 "Mon", "Tue", "Wed", "Thu", "Fri", "Sat", "Sun"
1080 };
Jeremy Hyltonaf68c872005-12-10 18:50:16 +00001081 static const char *MonthNames[] = {
Tim Peters2a799bf2002-12-16 20:18:38 +00001082 "Jan", "Feb", "Mar", "Apr", "May", "Jun",
1083 "Jul", "Aug", "Sep", "Oct", "Nov", "Dec"
1084 };
1085
Tim Peters2a799bf2002-12-16 20:18:38 +00001086 int wday = weekday(GET_YEAR(date), GET_MONTH(date), GET_DAY(date));
1087
Walter Dörwald4af32b32007-05-31 16:19:50 +00001088 return PyUnicode_FromFormat("%s %s %2d %02d:%02d:%02d %04d",
1089 DayNames[wday], MonthNames[GET_MONTH(date)-1],
1090 GET_DAY(date), hours, minutes, seconds,
1091 GET_YEAR(date));
Tim Peters2a799bf2002-12-16 20:18:38 +00001092}
1093
1094/* Add an hours & minutes UTC offset string to buf. buf has no more than
1095 * buflen bytes remaining. The UTC offset is gotten by calling
1096 * tzinfo.uctoffset(tzinfoarg). If that returns None, \0 is stored into
1097 * *buf, and that's all. Else the returned value is checked for sanity (an
1098 * integer in range), and if that's OK it's converted to an hours & minutes
1099 * string of the form
1100 * sign HH sep MM
1101 * Returns 0 if everything is OK. If the return value from utcoffset() is
1102 * bogus, an appropriate exception is set and -1 is returned.
1103 */
1104static int
Tim Peters328fff72002-12-20 01:31:27 +00001105format_utcoffset(char *buf, size_t buflen, const char *sep,
Tim Peters2a799bf2002-12-16 20:18:38 +00001106 PyObject *tzinfo, PyObject *tzinfoarg)
1107{
1108 int offset;
1109 int hours;
1110 int minutes;
1111 char sign;
1112 int none;
1113
Amaury Forgeot d'Arc9c74b142008-06-18 00:47:36 +00001114 assert(buflen >= 1);
1115
Tim Peters2a799bf2002-12-16 20:18:38 +00001116 offset = call_utcoffset(tzinfo, tzinfoarg, &none);
1117 if (offset == -1 && PyErr_Occurred())
1118 return -1;
1119 if (none) {
1120 *buf = '\0';
1121 return 0;
1122 }
1123 sign = '+';
1124 if (offset < 0) {
1125 sign = '-';
1126 offset = - offset;
1127 }
1128 hours = divmod(offset, 60, &minutes);
1129 PyOS_snprintf(buf, buflen, "%c%02d%s%02d", sign, hours, sep, minutes);
1130 return 0;
1131}
1132
Guido van Rossumd8595fe2007-05-23 21:36:49 +00001133static PyObject *
1134make_Zreplacement(PyObject *object, PyObject *tzinfoarg)
1135{
Neal Norwitzaea70e02007-08-12 04:32:26 +00001136 PyObject *temp;
Guido van Rossumd8595fe2007-05-23 21:36:49 +00001137 PyObject *tzinfo = get_tzinfo_member(object);
Guido van Rossum98297ee2007-11-06 21:34:58 +00001138 PyObject *Zreplacement = PyUnicode_FromStringAndSize(NULL, 0);
Guido van Rossumd8595fe2007-05-23 21:36:49 +00001139 if (Zreplacement == NULL)
1140 return NULL;
Neal Norwitzaea70e02007-08-12 04:32:26 +00001141 if (tzinfo == Py_None || tzinfo == NULL)
1142 return Zreplacement;
1143
1144 assert(tzinfoarg != NULL);
1145 temp = call_tzname(tzinfo, tzinfoarg);
1146 if (temp == NULL)
1147 goto Error;
1148 if (temp == Py_None) {
1149 Py_DECREF(temp);
1150 return Zreplacement;
1151 }
1152
1153 assert(PyUnicode_Check(temp));
1154 /* Since the tzname is getting stuffed into the
1155 * format, we have to double any % signs so that
1156 * strftime doesn't treat them as format codes.
1157 */
1158 Py_DECREF(Zreplacement);
1159 Zreplacement = PyObject_CallMethod(temp, "replace", "ss", "%", "%%");
1160 Py_DECREF(temp);
1161 if (Zreplacement == NULL)
1162 return NULL;
Guido van Rossum98297ee2007-11-06 21:34:58 +00001163 if (!PyUnicode_Check(Zreplacement)) {
Neal Norwitzaea70e02007-08-12 04:32:26 +00001164 PyErr_SetString(PyExc_TypeError,
1165 "tzname.replace() did not return a string");
1166 goto Error;
Guido van Rossumd8595fe2007-05-23 21:36:49 +00001167 }
1168 return Zreplacement;
1169
1170 Error:
1171 Py_DECREF(Zreplacement);
1172 return NULL;
1173}
1174
Christian Heimesdd15f6c2008-03-16 00:07:10 +00001175static PyObject *
1176make_freplacement(PyObject *object)
1177{
Christian Heimesb186d002008-03-18 15:15:01 +00001178 char freplacement[64];
Christian Heimesdd15f6c2008-03-16 00:07:10 +00001179 if (PyTime_Check(object))
1180 sprintf(freplacement, "%06d", TIME_GET_MICROSECOND(object));
1181 else if (PyDateTime_Check(object))
1182 sprintf(freplacement, "%06d", DATE_GET_MICROSECOND(object));
1183 else
1184 sprintf(freplacement, "%06d", 0);
1185
Christian Heimes72b710a2008-05-26 13:28:38 +00001186 return PyBytes_FromStringAndSize(freplacement, strlen(freplacement));
Christian Heimesdd15f6c2008-03-16 00:07:10 +00001187}
1188
Tim Peters2a799bf2002-12-16 20:18:38 +00001189/* I sure don't want to reproduce the strftime code from the time module,
1190 * so this imports the module and calls it. All the hair is due to
Christian Heimesdd15f6c2008-03-16 00:07:10 +00001191 * giving special meanings to the %z, %Z and %f format codes via a
1192 * preprocessing step on the format string.
Tim Petersbad8ff02002-12-30 20:52:32 +00001193 * tzinfoarg is the argument to pass to the object's tzinfo method, if
1194 * needed.
Tim Peters2a799bf2002-12-16 20:18:38 +00001195 */
1196static PyObject *
Tim Petersbad8ff02002-12-30 20:52:32 +00001197wrap_strftime(PyObject *object, PyObject *format, PyObject *timetuple,
1198 PyObject *tzinfoarg)
Tim Peters2a799bf2002-12-16 20:18:38 +00001199{
1200 PyObject *result = NULL; /* guilty until proved innocent */
1201
1202 PyObject *zreplacement = NULL; /* py string, replacement for %z */
1203 PyObject *Zreplacement = NULL; /* py string, replacement for %Z */
Christian Heimesdd15f6c2008-03-16 00:07:10 +00001204 PyObject *freplacement = NULL; /* py string, replacement for %f */
Tim Peters2a799bf2002-12-16 20:18:38 +00001205
Georg Brandlf78e02b2008-06-10 17:40:04 +00001206 const char *pin; /* pointer to next char in input format */
1207 Py_ssize_t flen; /* length of input format */
1208 char ch; /* next char in input format */
Tim Peters2a799bf2002-12-16 20:18:38 +00001209
1210 PyObject *newfmt = NULL; /* py string, the output format */
1211 char *pnew; /* pointer to available byte in output format */
Georg Brandlf78e02b2008-06-10 17:40:04 +00001212 size_t totalnew; /* number bytes total in output format buffer,
1213 exclusive of trailing \0 */
1214 size_t usednew; /* number bytes used so far in output format buffer */
Tim Peters2a799bf2002-12-16 20:18:38 +00001215
Georg Brandlf78e02b2008-06-10 17:40:04 +00001216 const char *ptoappend; /* ptr to string to append to output buffer */
Brett Cannon27da8122007-11-06 23:15:11 +00001217 Py_ssize_t ntoappend; /* # of bytes to append to output buffer */
Tim Peters2a799bf2002-12-16 20:18:38 +00001218
Tim Peters2a799bf2002-12-16 20:18:38 +00001219 assert(object && format && timetuple);
Guido van Rossumfd53fd62007-08-24 04:05:13 +00001220 assert(PyUnicode_Check(format));
Neal Norwitz908c8712007-08-27 04:58:38 +00001221 /* Convert the input format to a C string and size */
Alexandre Vassalottia85998a2008-05-03 18:24:43 +00001222 pin = PyUnicode_AsStringAndSize(format, &flen);
Neal Norwitz908c8712007-08-27 04:58:38 +00001223 if (!pin)
1224 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00001225
Tim Petersd6844152002-12-22 20:58:42 +00001226 /* Give up if the year is before 1900.
1227 * Python strftime() plays games with the year, and different
1228 * games depending on whether envar PYTHON2K is set. This makes
1229 * years before 1900 a nightmare, even if the platform strftime
1230 * supports them (and not all do).
1231 * We could get a lot farther here by avoiding Python's strftime
1232 * wrapper and calling the C strftime() directly, but that isn't
1233 * an option in the Python implementation of this module.
1234 */
1235 {
1236 long year;
1237 PyObject *pyyear = PySequence_GetItem(timetuple, 0);
1238 if (pyyear == NULL) return NULL;
Christian Heimes217cfd12007-12-02 14:31:20 +00001239 assert(PyLong_Check(pyyear));
1240 year = PyLong_AsLong(pyyear);
Tim Petersd6844152002-12-22 20:58:42 +00001241 Py_DECREF(pyyear);
1242 if (year < 1900) {
1243 PyErr_Format(PyExc_ValueError, "year=%ld is before "
1244 "1900; the datetime strftime() "
1245 "methods require year >= 1900",
1246 year);
1247 return NULL;
1248 }
1249 }
1250
Christian Heimesdd15f6c2008-03-16 00:07:10 +00001251 /* Scan the input format, looking for %z/%Z/%f escapes, building
Tim Peters328fff72002-12-20 01:31:27 +00001252 * a new format. Since computing the replacements for those codes
1253 * is expensive, don't unless they're actually used.
Tim Peters2a799bf2002-12-16 20:18:38 +00001254 */
Amaury Forgeot d'Arc9c74b142008-06-18 00:47:36 +00001255 if (flen > INT_MAX - 1) {
1256 PyErr_NoMemory();
1257 goto Done;
1258 }
1259
Guido van Rossumbce56a62007-05-10 18:04:33 +00001260 totalnew = flen + 1; /* realistic if no %z/%Z */
Christian Heimes72b710a2008-05-26 13:28:38 +00001261 newfmt = PyBytes_FromStringAndSize(NULL, totalnew);
Tim Peters2a799bf2002-12-16 20:18:38 +00001262 if (newfmt == NULL) goto Done;
Christian Heimes72b710a2008-05-26 13:28:38 +00001263 pnew = PyBytes_AsString(newfmt);
Tim Peters2a799bf2002-12-16 20:18:38 +00001264 usednew = 0;
1265
Tim Peters2a799bf2002-12-16 20:18:38 +00001266 while ((ch = *pin++) != '\0') {
1267 if (ch != '%') {
Tim Peters328fff72002-12-20 01:31:27 +00001268 ptoappend = pin - 1;
Tim Peters2a799bf2002-12-16 20:18:38 +00001269 ntoappend = 1;
1270 }
1271 else if ((ch = *pin++) == '\0') {
1272 /* There's a lone trailing %; doesn't make sense. */
1273 PyErr_SetString(PyExc_ValueError, "strftime format "
1274 "ends with raw %");
1275 goto Done;
1276 }
1277 /* A % has been seen and ch is the character after it. */
1278 else if (ch == 'z') {
1279 if (zreplacement == NULL) {
1280 /* format utcoffset */
Tim Peters328fff72002-12-20 01:31:27 +00001281 char buf[100];
Tim Peters2a799bf2002-12-16 20:18:38 +00001282 PyObject *tzinfo = get_tzinfo_member(object);
Christian Heimes72b710a2008-05-26 13:28:38 +00001283 zreplacement = PyBytes_FromStringAndSize("", 0);
Tim Peters2a799bf2002-12-16 20:18:38 +00001284 if (zreplacement == NULL) goto Done;
1285 if (tzinfo != Py_None && tzinfo != NULL) {
Tim Petersbad8ff02002-12-30 20:52:32 +00001286 assert(tzinfoarg != NULL);
Tim Peters2a799bf2002-12-16 20:18:38 +00001287 if (format_utcoffset(buf,
Tim Peters328fff72002-12-20 01:31:27 +00001288 sizeof(buf),
Tim Peters2a799bf2002-12-16 20:18:38 +00001289 "",
1290 tzinfo,
Tim Petersbad8ff02002-12-30 20:52:32 +00001291 tzinfoarg) < 0)
Tim Peters2a799bf2002-12-16 20:18:38 +00001292 goto Done;
1293 Py_DECREF(zreplacement);
Guido van Rossumfd53fd62007-08-24 04:05:13 +00001294 zreplacement =
Christian Heimes72b710a2008-05-26 13:28:38 +00001295 PyBytes_FromStringAndSize(buf,
Guido van Rossumfd53fd62007-08-24 04:05:13 +00001296 strlen(buf));
1297 if (zreplacement == NULL)
1298 goto Done;
Tim Peters2a799bf2002-12-16 20:18:38 +00001299 }
1300 }
1301 assert(zreplacement != NULL);
Christian Heimes72b710a2008-05-26 13:28:38 +00001302 ptoappend = PyBytes_AS_STRING(zreplacement);
1303 ntoappend = PyBytes_GET_SIZE(zreplacement);
Tim Peters2a799bf2002-12-16 20:18:38 +00001304 }
1305 else if (ch == 'Z') {
1306 /* format tzname */
1307 if (Zreplacement == NULL) {
Guido van Rossumd8595fe2007-05-23 21:36:49 +00001308 Zreplacement = make_Zreplacement(object,
1309 tzinfoarg);
1310 if (Zreplacement == NULL)
1311 goto Done;
Tim Peters2a799bf2002-12-16 20:18:38 +00001312 }
1313 assert(Zreplacement != NULL);
Guido van Rossum98297ee2007-11-06 21:34:58 +00001314 assert(PyUnicode_Check(Zreplacement));
1315 ptoappend = PyUnicode_AsStringAndSize(Zreplacement,
1316 &ntoappend);
Christian Heimes90aa7642007-12-19 02:45:37 +00001317 ntoappend = Py_SIZE(Zreplacement);
Tim Peters2a799bf2002-12-16 20:18:38 +00001318 }
Christian Heimesdd15f6c2008-03-16 00:07:10 +00001319 else if (ch == 'f') {
1320 /* format microseconds */
1321 if (freplacement == NULL) {
1322 freplacement = make_freplacement(object);
1323 if (freplacement == NULL)
1324 goto Done;
1325 }
1326 assert(freplacement != NULL);
Christian Heimes72b710a2008-05-26 13:28:38 +00001327 assert(PyBytes_Check(freplacement));
1328 ptoappend = PyBytes_AS_STRING(freplacement);
1329 ntoappend = PyBytes_GET_SIZE(freplacement);
Christian Heimesdd15f6c2008-03-16 00:07:10 +00001330 }
Tim Peters2a799bf2002-12-16 20:18:38 +00001331 else {
Tim Peters328fff72002-12-20 01:31:27 +00001332 /* percent followed by neither z nor Z */
1333 ptoappend = pin - 2;
Tim Peters2a799bf2002-12-16 20:18:38 +00001334 ntoappend = 2;
1335 }
1336
1337 /* Append the ntoappend chars starting at ptoappend to
1338 * the new format.
1339 */
Tim Peters2a799bf2002-12-16 20:18:38 +00001340 if (ntoappend == 0)
1341 continue;
Guido van Rossumfd53fd62007-08-24 04:05:13 +00001342 assert(ptoappend != NULL);
1343 assert(ntoappend > 0);
Tim Peters2a799bf2002-12-16 20:18:38 +00001344 while (usednew + ntoappend > totalnew) {
Georg Brandlf78e02b2008-06-10 17:40:04 +00001345 size_t bigger = totalnew << 1;
Tim Peters2a799bf2002-12-16 20:18:38 +00001346 if ((bigger >> 1) != totalnew) { /* overflow */
1347 PyErr_NoMemory();
1348 goto Done;
1349 }
Christian Heimes72b710a2008-05-26 13:28:38 +00001350 if (_PyBytes_Resize(&newfmt, bigger) < 0)
Tim Peters2a799bf2002-12-16 20:18:38 +00001351 goto Done;
1352 totalnew = bigger;
Christian Heimes72b710a2008-05-26 13:28:38 +00001353 pnew = PyBytes_AsString(newfmt) + usednew;
Tim Peters2a799bf2002-12-16 20:18:38 +00001354 }
1355 memcpy(pnew, ptoappend, ntoappend);
1356 pnew += ntoappend;
1357 usednew += ntoappend;
1358 assert(usednew <= totalnew);
1359 } /* end while() */
1360
Christian Heimes72b710a2008-05-26 13:28:38 +00001361 if (_PyBytes_Resize(&newfmt, usednew) < 0)
Tim Peters2a799bf2002-12-16 20:18:38 +00001362 goto Done;
1363 {
Neal Norwitz908c8712007-08-27 04:58:38 +00001364 PyObject *format;
Christian Heimes072c0f12008-01-03 23:01:04 +00001365 PyObject *time = PyImport_ImportModuleNoBlock("time");
Tim Peters2a799bf2002-12-16 20:18:38 +00001366 if (time == NULL)
1367 goto Done;
Christian Heimes72b710a2008-05-26 13:28:38 +00001368 format = PyUnicode_FromString(PyBytes_AS_STRING(newfmt));
Neal Norwitz908c8712007-08-27 04:58:38 +00001369 if (format != NULL) {
1370 result = PyObject_CallMethod(time, "strftime", "OO",
1371 format, timetuple);
1372 Py_DECREF(format);
1373 }
Tim Peters2a799bf2002-12-16 20:18:38 +00001374 Py_DECREF(time);
1375 }
1376 Done:
Christian Heimesdd15f6c2008-03-16 00:07:10 +00001377 Py_XDECREF(freplacement);
Tim Peters2a799bf2002-12-16 20:18:38 +00001378 Py_XDECREF(zreplacement);
1379 Py_XDECREF(Zreplacement);
1380 Py_XDECREF(newfmt);
1381 return result;
1382}
1383
Tim Peters2a799bf2002-12-16 20:18:38 +00001384/* ---------------------------------------------------------------------------
1385 * Wrap functions from the time module. These aren't directly available
1386 * from C. Perhaps they should be.
1387 */
1388
1389/* Call time.time() and return its result (a Python float). */
1390static PyObject *
Guido van Rossumbd43e912002-12-16 20:34:55 +00001391time_time(void)
Tim Peters2a799bf2002-12-16 20:18:38 +00001392{
1393 PyObject *result = NULL;
Christian Heimes072c0f12008-01-03 23:01:04 +00001394 PyObject *time = PyImport_ImportModuleNoBlock("time");
Tim Peters2a799bf2002-12-16 20:18:38 +00001395
1396 if (time != NULL) {
1397 result = PyObject_CallMethod(time, "time", "()");
1398 Py_DECREF(time);
1399 }
1400 return result;
1401}
1402
1403/* Build a time.struct_time. The weekday and day number are automatically
1404 * computed from the y,m,d args.
1405 */
1406static PyObject *
1407build_struct_time(int y, int m, int d, int hh, int mm, int ss, int dstflag)
1408{
1409 PyObject *time;
1410 PyObject *result = NULL;
1411
Christian Heimes072c0f12008-01-03 23:01:04 +00001412 time = PyImport_ImportModuleNoBlock("time");
Tim Peters2a799bf2002-12-16 20:18:38 +00001413 if (time != NULL) {
1414 result = PyObject_CallMethod(time, "struct_time",
1415 "((iiiiiiiii))",
1416 y, m, d,
1417 hh, mm, ss,
1418 weekday(y, m, d),
1419 days_before_month(y, m) + d,
1420 dstflag);
1421 Py_DECREF(time);
1422 }
1423 return result;
1424}
1425
1426/* ---------------------------------------------------------------------------
1427 * Miscellaneous helpers.
1428 */
1429
Guido van Rossum19960592006-08-24 17:29:38 +00001430/* For various reasons, we need to use tp_richcompare instead of tp_compare.
Tim Peters2a799bf2002-12-16 20:18:38 +00001431 * The comparisons here all most naturally compute a cmp()-like result.
1432 * This little helper turns that into a bool result for rich comparisons.
1433 */
1434static PyObject *
1435diff_to_bool(int diff, int op)
1436{
1437 PyObject *result;
1438 int istrue;
1439
1440 switch (op) {
1441 case Py_EQ: istrue = diff == 0; break;
1442 case Py_NE: istrue = diff != 0; break;
1443 case Py_LE: istrue = diff <= 0; break;
1444 case Py_GE: istrue = diff >= 0; break;
1445 case Py_LT: istrue = diff < 0; break;
1446 case Py_GT: istrue = diff > 0; break;
1447 default:
1448 assert(! "op unknown");
1449 istrue = 0; /* To shut up compiler */
1450 }
1451 result = istrue ? Py_True : Py_False;
1452 Py_INCREF(result);
1453 return result;
1454}
1455
Tim Peters07534a62003-02-07 22:50:28 +00001456/* Raises a "can't compare" TypeError and returns NULL. */
1457static PyObject *
1458cmperror(PyObject *a, PyObject *b)
1459{
1460 PyErr_Format(PyExc_TypeError,
1461 "can't compare %s to %s",
Christian Heimes90aa7642007-12-19 02:45:37 +00001462 Py_TYPE(a)->tp_name, Py_TYPE(b)->tp_name);
Tim Peters07534a62003-02-07 22:50:28 +00001463 return NULL;
1464}
1465
Tim Peters2a799bf2002-12-16 20:18:38 +00001466/* ---------------------------------------------------------------------------
Tim Peters2a799bf2002-12-16 20:18:38 +00001467 * Cached Python objects; these are set by the module init function.
1468 */
1469
1470/* Conversion factors. */
1471static PyObject *us_per_us = NULL; /* 1 */
1472static PyObject *us_per_ms = NULL; /* 1000 */
1473static PyObject *us_per_second = NULL; /* 1000000 */
1474static PyObject *us_per_minute = NULL; /* 1e6 * 60 as Python int */
1475static PyObject *us_per_hour = NULL; /* 1e6 * 3600 as Python long */
1476static PyObject *us_per_day = NULL; /* 1e6 * 3600 * 24 as Python long */
1477static PyObject *us_per_week = NULL; /* 1e6*3600*24*7 as Python long */
1478static PyObject *seconds_per_day = NULL; /* 3600*24 as Python int */
1479
Tim Peters2a799bf2002-12-16 20:18:38 +00001480/* ---------------------------------------------------------------------------
1481 * Class implementations.
1482 */
1483
1484/*
1485 * PyDateTime_Delta implementation.
1486 */
1487
1488/* Convert a timedelta to a number of us,
1489 * (24*3600*self.days + self.seconds)*1000000 + self.microseconds
1490 * as a Python int or long.
1491 * Doing mixed-radix arithmetic by hand instead is excruciating in C,
1492 * due to ubiquitous overflow possibilities.
1493 */
1494static PyObject *
1495delta_to_microseconds(PyDateTime_Delta *self)
1496{
1497 PyObject *x1 = NULL;
1498 PyObject *x2 = NULL;
1499 PyObject *x3 = NULL;
1500 PyObject *result = NULL;
1501
Christian Heimes217cfd12007-12-02 14:31:20 +00001502 x1 = PyLong_FromLong(GET_TD_DAYS(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00001503 if (x1 == NULL)
1504 goto Done;
1505 x2 = PyNumber_Multiply(x1, seconds_per_day); /* days in seconds */
1506 if (x2 == NULL)
1507 goto Done;
1508 Py_DECREF(x1);
1509 x1 = NULL;
1510
1511 /* x2 has days in seconds */
Christian Heimes217cfd12007-12-02 14:31:20 +00001512 x1 = PyLong_FromLong(GET_TD_SECONDS(self)); /* seconds */
Tim Peters2a799bf2002-12-16 20:18:38 +00001513 if (x1 == NULL)
1514 goto Done;
1515 x3 = PyNumber_Add(x1, x2); /* days and seconds in seconds */
1516 if (x3 == NULL)
1517 goto Done;
1518 Py_DECREF(x1);
1519 Py_DECREF(x2);
1520 x1 = x2 = NULL;
1521
1522 /* x3 has days+seconds in seconds */
1523 x1 = PyNumber_Multiply(x3, us_per_second); /* us */
1524 if (x1 == NULL)
1525 goto Done;
1526 Py_DECREF(x3);
1527 x3 = NULL;
1528
1529 /* x1 has days+seconds in us */
Christian Heimes217cfd12007-12-02 14:31:20 +00001530 x2 = PyLong_FromLong(GET_TD_MICROSECONDS(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00001531 if (x2 == NULL)
1532 goto Done;
1533 result = PyNumber_Add(x1, x2);
1534
1535Done:
1536 Py_XDECREF(x1);
1537 Py_XDECREF(x2);
1538 Py_XDECREF(x3);
1539 return result;
1540}
1541
1542/* Convert a number of us (as a Python int or long) to a timedelta.
1543 */
1544static PyObject *
Tim Petersb0c854d2003-05-17 15:57:00 +00001545microseconds_to_delta_ex(PyObject *pyus, PyTypeObject *type)
Tim Peters2a799bf2002-12-16 20:18:38 +00001546{
1547 int us;
1548 int s;
1549 int d;
Tim Peters0b0f41c2002-12-19 01:44:38 +00001550 long temp;
Tim Peters2a799bf2002-12-16 20:18:38 +00001551
1552 PyObject *tuple = NULL;
1553 PyObject *num = NULL;
1554 PyObject *result = NULL;
1555
1556 tuple = PyNumber_Divmod(pyus, us_per_second);
1557 if (tuple == NULL)
1558 goto Done;
1559
1560 num = PyTuple_GetItem(tuple, 1); /* us */
1561 if (num == NULL)
1562 goto Done;
Tim Peters0b0f41c2002-12-19 01:44:38 +00001563 temp = PyLong_AsLong(num);
Tim Peters2a799bf2002-12-16 20:18:38 +00001564 num = NULL;
Tim Peters0b0f41c2002-12-19 01:44:38 +00001565 if (temp == -1 && PyErr_Occurred())
1566 goto Done;
1567 assert(0 <= temp && temp < 1000000);
1568 us = (int)temp;
Tim Peters2a799bf2002-12-16 20:18:38 +00001569 if (us < 0) {
1570 /* The divisor was positive, so this must be an error. */
1571 assert(PyErr_Occurred());
1572 goto Done;
1573 }
1574
1575 num = PyTuple_GetItem(tuple, 0); /* leftover seconds */
1576 if (num == NULL)
1577 goto Done;
1578 Py_INCREF(num);
1579 Py_DECREF(tuple);
1580
1581 tuple = PyNumber_Divmod(num, seconds_per_day);
1582 if (tuple == NULL)
1583 goto Done;
1584 Py_DECREF(num);
1585
1586 num = PyTuple_GetItem(tuple, 1); /* seconds */
1587 if (num == NULL)
1588 goto Done;
Tim Peters0b0f41c2002-12-19 01:44:38 +00001589 temp = PyLong_AsLong(num);
Tim Peters2a799bf2002-12-16 20:18:38 +00001590 num = NULL;
Tim Peters0b0f41c2002-12-19 01:44:38 +00001591 if (temp == -1 && PyErr_Occurred())
1592 goto Done;
1593 assert(0 <= temp && temp < 24*3600);
1594 s = (int)temp;
1595
Tim Peters2a799bf2002-12-16 20:18:38 +00001596 if (s < 0) {
1597 /* The divisor was positive, so this must be an error. */
1598 assert(PyErr_Occurred());
1599 goto Done;
1600 }
1601
1602 num = PyTuple_GetItem(tuple, 0); /* leftover days */
1603 if (num == NULL)
1604 goto Done;
1605 Py_INCREF(num);
Tim Peters0b0f41c2002-12-19 01:44:38 +00001606 temp = PyLong_AsLong(num);
1607 if (temp == -1 && PyErr_Occurred())
Tim Peters2a799bf2002-12-16 20:18:38 +00001608 goto Done;
Tim Peters0b0f41c2002-12-19 01:44:38 +00001609 d = (int)temp;
1610 if ((long)d != temp) {
1611 PyErr_SetString(PyExc_OverflowError, "normalized days too "
1612 "large to fit in a C int");
1613 goto Done;
1614 }
Tim Petersb0c854d2003-05-17 15:57:00 +00001615 result = new_delta_ex(d, s, us, 0, type);
Tim Peters2a799bf2002-12-16 20:18:38 +00001616
1617Done:
1618 Py_XDECREF(tuple);
1619 Py_XDECREF(num);
1620 return result;
1621}
1622
Tim Petersb0c854d2003-05-17 15:57:00 +00001623#define microseconds_to_delta(pymicros) \
1624 microseconds_to_delta_ex(pymicros, &PyDateTime_DeltaType)
1625
Tim Peters2a799bf2002-12-16 20:18:38 +00001626static PyObject *
1627multiply_int_timedelta(PyObject *intobj, PyDateTime_Delta *delta)
1628{
1629 PyObject *pyus_in;
1630 PyObject *pyus_out;
1631 PyObject *result;
1632
1633 pyus_in = delta_to_microseconds(delta);
1634 if (pyus_in == NULL)
1635 return NULL;
1636
1637 pyus_out = PyNumber_Multiply(pyus_in, intobj);
1638 Py_DECREF(pyus_in);
1639 if (pyus_out == NULL)
1640 return NULL;
1641
1642 result = microseconds_to_delta(pyus_out);
1643 Py_DECREF(pyus_out);
1644 return result;
1645}
1646
1647static PyObject *
1648divide_timedelta_int(PyDateTime_Delta *delta, PyObject *intobj)
1649{
1650 PyObject *pyus_in;
1651 PyObject *pyus_out;
1652 PyObject *result;
1653
1654 pyus_in = delta_to_microseconds(delta);
1655 if (pyus_in == NULL)
1656 return NULL;
1657
1658 pyus_out = PyNumber_FloorDivide(pyus_in, intobj);
1659 Py_DECREF(pyus_in);
1660 if (pyus_out == NULL)
1661 return NULL;
1662
1663 result = microseconds_to_delta(pyus_out);
1664 Py_DECREF(pyus_out);
1665 return result;
1666}
1667
1668static PyObject *
1669delta_add(PyObject *left, PyObject *right)
1670{
1671 PyObject *result = Py_NotImplemented;
1672
1673 if (PyDelta_Check(left) && PyDelta_Check(right)) {
1674 /* delta + delta */
1675 /* The C-level additions can't overflow because of the
1676 * invariant bounds.
1677 */
1678 int days = GET_TD_DAYS(left) + GET_TD_DAYS(right);
1679 int seconds = GET_TD_SECONDS(left) + GET_TD_SECONDS(right);
1680 int microseconds = GET_TD_MICROSECONDS(left) +
1681 GET_TD_MICROSECONDS(right);
1682 result = new_delta(days, seconds, microseconds, 1);
1683 }
1684
1685 if (result == Py_NotImplemented)
1686 Py_INCREF(result);
1687 return result;
1688}
1689
1690static PyObject *
1691delta_negative(PyDateTime_Delta *self)
1692{
1693 return new_delta(-GET_TD_DAYS(self),
1694 -GET_TD_SECONDS(self),
1695 -GET_TD_MICROSECONDS(self),
1696 1);
1697}
1698
1699static PyObject *
1700delta_positive(PyDateTime_Delta *self)
1701{
1702 /* Could optimize this (by returning self) if this isn't a
1703 * subclass -- but who uses unary + ? Approximately nobody.
1704 */
1705 return new_delta(GET_TD_DAYS(self),
1706 GET_TD_SECONDS(self),
1707 GET_TD_MICROSECONDS(self),
1708 0);
1709}
1710
1711static PyObject *
1712delta_abs(PyDateTime_Delta *self)
1713{
1714 PyObject *result;
1715
1716 assert(GET_TD_MICROSECONDS(self) >= 0);
1717 assert(GET_TD_SECONDS(self) >= 0);
1718
1719 if (GET_TD_DAYS(self) < 0)
1720 result = delta_negative(self);
1721 else
1722 result = delta_positive(self);
1723
1724 return result;
1725}
1726
1727static PyObject *
1728delta_subtract(PyObject *left, PyObject *right)
1729{
1730 PyObject *result = Py_NotImplemented;
1731
1732 if (PyDelta_Check(left) && PyDelta_Check(right)) {
1733 /* delta - delta */
1734 PyObject *minus_right = PyNumber_Negative(right);
1735 if (minus_right) {
1736 result = delta_add(left, minus_right);
1737 Py_DECREF(minus_right);
1738 }
1739 else
1740 result = NULL;
1741 }
1742
1743 if (result == Py_NotImplemented)
1744 Py_INCREF(result);
1745 return result;
1746}
1747
Tim Peters2a799bf2002-12-16 20:18:38 +00001748static PyObject *
Guido van Rossum19960592006-08-24 17:29:38 +00001749delta_richcompare(PyObject *self, PyObject *other, int op)
Tim Peters2a799bf2002-12-16 20:18:38 +00001750{
Tim Petersaa7d8492003-02-08 03:28:59 +00001751 if (PyDelta_Check(other)) {
Guido van Rossum19960592006-08-24 17:29:38 +00001752 int diff = GET_TD_DAYS(self) - GET_TD_DAYS(other);
Tim Peters07534a62003-02-07 22:50:28 +00001753 if (diff == 0) {
1754 diff = GET_TD_SECONDS(self) - GET_TD_SECONDS(other);
1755 if (diff == 0)
1756 diff = GET_TD_MICROSECONDS(self) -
1757 GET_TD_MICROSECONDS(other);
1758 }
Guido van Rossum19960592006-08-24 17:29:38 +00001759 return diff_to_bool(diff, op);
Tim Peters2a799bf2002-12-16 20:18:38 +00001760 }
Guido van Rossum19960592006-08-24 17:29:38 +00001761 else {
1762 Py_INCREF(Py_NotImplemented);
1763 return Py_NotImplemented;
1764 }
Tim Peters2a799bf2002-12-16 20:18:38 +00001765}
1766
1767static PyObject *delta_getstate(PyDateTime_Delta *self);
1768
1769static long
1770delta_hash(PyDateTime_Delta *self)
1771{
1772 if (self->hashcode == -1) {
1773 PyObject *temp = delta_getstate(self);
1774 if (temp != NULL) {
1775 self->hashcode = PyObject_Hash(temp);
1776 Py_DECREF(temp);
1777 }
1778 }
1779 return self->hashcode;
1780}
1781
1782static PyObject *
1783delta_multiply(PyObject *left, PyObject *right)
1784{
1785 PyObject *result = Py_NotImplemented;
1786
1787 if (PyDelta_Check(left)) {
1788 /* delta * ??? */
Neal Norwitz1fe5f382007-08-31 04:32:55 +00001789 if (PyLong_Check(right))
Tim Peters2a799bf2002-12-16 20:18:38 +00001790 result = multiply_int_timedelta(right,
1791 (PyDateTime_Delta *) left);
1792 }
Neal Norwitz1fe5f382007-08-31 04:32:55 +00001793 else if (PyLong_Check(left))
Tim Peters2a799bf2002-12-16 20:18:38 +00001794 result = multiply_int_timedelta(left,
1795 (PyDateTime_Delta *) right);
1796
1797 if (result == Py_NotImplemented)
1798 Py_INCREF(result);
1799 return result;
1800}
1801
1802static PyObject *
1803delta_divide(PyObject *left, PyObject *right)
1804{
1805 PyObject *result = Py_NotImplemented;
1806
1807 if (PyDelta_Check(left)) {
1808 /* delta * ??? */
Neal Norwitz1fe5f382007-08-31 04:32:55 +00001809 if (PyLong_Check(right))
Tim Peters2a799bf2002-12-16 20:18:38 +00001810 result = divide_timedelta_int(
1811 (PyDateTime_Delta *)left,
1812 right);
1813 }
1814
1815 if (result == Py_NotImplemented)
1816 Py_INCREF(result);
1817 return result;
1818}
1819
1820/* Fold in the value of the tag ("seconds", "weeks", etc) component of a
1821 * timedelta constructor. sofar is the # of microseconds accounted for
1822 * so far, and there are factor microseconds per current unit, the number
1823 * of which is given by num. num * factor is added to sofar in a
1824 * numerically careful way, and that's the result. Any fractional
1825 * microseconds left over (this can happen if num is a float type) are
1826 * added into *leftover.
1827 * Note that there are many ways this can give an error (NULL) return.
1828 */
1829static PyObject *
1830accum(const char* tag, PyObject *sofar, PyObject *num, PyObject *factor,
1831 double *leftover)
1832{
1833 PyObject *prod;
1834 PyObject *sum;
1835
1836 assert(num != NULL);
1837
Neal Norwitz1fe5f382007-08-31 04:32:55 +00001838 if (PyLong_Check(num)) {
Tim Peters2a799bf2002-12-16 20:18:38 +00001839 prod = PyNumber_Multiply(num, factor);
1840 if (prod == NULL)
1841 return NULL;
1842 sum = PyNumber_Add(sofar, prod);
1843 Py_DECREF(prod);
1844 return sum;
1845 }
1846
1847 if (PyFloat_Check(num)) {
1848 double dnum;
1849 double fracpart;
1850 double intpart;
1851 PyObject *x;
1852 PyObject *y;
1853
1854 /* The Plan: decompose num into an integer part and a
1855 * fractional part, num = intpart + fracpart.
1856 * Then num * factor ==
1857 * intpart * factor + fracpart * factor
1858 * and the LHS can be computed exactly in long arithmetic.
1859 * The RHS is again broken into an int part and frac part.
1860 * and the frac part is added into *leftover.
1861 */
1862 dnum = PyFloat_AsDouble(num);
1863 if (dnum == -1.0 && PyErr_Occurred())
1864 return NULL;
1865 fracpart = modf(dnum, &intpart);
1866 x = PyLong_FromDouble(intpart);
1867 if (x == NULL)
1868 return NULL;
1869
1870 prod = PyNumber_Multiply(x, factor);
1871 Py_DECREF(x);
1872 if (prod == NULL)
1873 return NULL;
1874
1875 sum = PyNumber_Add(sofar, prod);
1876 Py_DECREF(prod);
1877 if (sum == NULL)
1878 return NULL;
1879
1880 if (fracpart == 0.0)
1881 return sum;
1882 /* So far we've lost no information. Dealing with the
1883 * fractional part requires float arithmetic, and may
1884 * lose a little info.
1885 */
Neal Norwitz1fe5f382007-08-31 04:32:55 +00001886 assert(PyLong_Check(factor));
Guido van Rossumddefaf32007-01-14 03:31:43 +00001887 dnum = PyLong_AsDouble(factor);
Tim Peters2a799bf2002-12-16 20:18:38 +00001888
1889 dnum *= fracpart;
1890 fracpart = modf(dnum, &intpart);
1891 x = PyLong_FromDouble(intpart);
1892 if (x == NULL) {
1893 Py_DECREF(sum);
1894 return NULL;
1895 }
1896
1897 y = PyNumber_Add(sum, x);
1898 Py_DECREF(sum);
1899 Py_DECREF(x);
1900 *leftover += fracpart;
1901 return y;
1902 }
1903
1904 PyErr_Format(PyExc_TypeError,
1905 "unsupported type for timedelta %s component: %s",
Christian Heimes90aa7642007-12-19 02:45:37 +00001906 tag, Py_TYPE(num)->tp_name);
Tim Peters2a799bf2002-12-16 20:18:38 +00001907 return NULL;
1908}
1909
1910static PyObject *
1911delta_new(PyTypeObject *type, PyObject *args, PyObject *kw)
1912{
1913 PyObject *self = NULL;
1914
1915 /* Argument objects. */
1916 PyObject *day = NULL;
1917 PyObject *second = NULL;
1918 PyObject *us = NULL;
1919 PyObject *ms = NULL;
1920 PyObject *minute = NULL;
1921 PyObject *hour = NULL;
1922 PyObject *week = NULL;
1923
1924 PyObject *x = NULL; /* running sum of microseconds */
1925 PyObject *y = NULL; /* temp sum of microseconds */
1926 double leftover_us = 0.0;
1927
Martin v. Löwis02cbf4a2006-02-27 17:20:04 +00001928 static char *keywords[] = {
Tim Peters2a799bf2002-12-16 20:18:38 +00001929 "days", "seconds", "microseconds", "milliseconds",
1930 "minutes", "hours", "weeks", NULL
1931 };
1932
1933 if (PyArg_ParseTupleAndKeywords(args, kw, "|OOOOOOO:__new__",
1934 keywords,
1935 &day, &second, &us,
1936 &ms, &minute, &hour, &week) == 0)
1937 goto Done;
1938
Christian Heimes217cfd12007-12-02 14:31:20 +00001939 x = PyLong_FromLong(0);
Tim Peters2a799bf2002-12-16 20:18:38 +00001940 if (x == NULL)
1941 goto Done;
1942
1943#define CLEANUP \
1944 Py_DECREF(x); \
1945 x = y; \
1946 if (x == NULL) \
1947 goto Done
1948
1949 if (us) {
1950 y = accum("microseconds", x, us, us_per_us, &leftover_us);
1951 CLEANUP;
1952 }
1953 if (ms) {
1954 y = accum("milliseconds", x, ms, us_per_ms, &leftover_us);
1955 CLEANUP;
1956 }
1957 if (second) {
1958 y = accum("seconds", x, second, us_per_second, &leftover_us);
1959 CLEANUP;
1960 }
1961 if (minute) {
1962 y = accum("minutes", x, minute, us_per_minute, &leftover_us);
1963 CLEANUP;
1964 }
1965 if (hour) {
1966 y = accum("hours", x, hour, us_per_hour, &leftover_us);
1967 CLEANUP;
1968 }
1969 if (day) {
1970 y = accum("days", x, day, us_per_day, &leftover_us);
1971 CLEANUP;
1972 }
1973 if (week) {
1974 y = accum("weeks", x, week, us_per_week, &leftover_us);
1975 CLEANUP;
1976 }
1977 if (leftover_us) {
1978 /* Round to nearest whole # of us, and add into x. */
Tim Peters5d644dd2003-01-02 16:32:54 +00001979 PyObject *temp = PyLong_FromLong(round_to_long(leftover_us));
Tim Peters2a799bf2002-12-16 20:18:38 +00001980 if (temp == NULL) {
1981 Py_DECREF(x);
1982 goto Done;
1983 }
1984 y = PyNumber_Add(x, temp);
1985 Py_DECREF(temp);
1986 CLEANUP;
1987 }
1988
Tim Petersb0c854d2003-05-17 15:57:00 +00001989 self = microseconds_to_delta_ex(x, type);
Tim Peters2a799bf2002-12-16 20:18:38 +00001990 Py_DECREF(x);
1991Done:
1992 return self;
1993
1994#undef CLEANUP
1995}
1996
1997static int
Jack Diederich4dafcc42006-11-28 19:15:13 +00001998delta_bool(PyDateTime_Delta *self)
Tim Peters2a799bf2002-12-16 20:18:38 +00001999{
2000 return (GET_TD_DAYS(self) != 0
2001 || GET_TD_SECONDS(self) != 0
2002 || GET_TD_MICROSECONDS(self) != 0);
2003}
2004
2005static PyObject *
2006delta_repr(PyDateTime_Delta *self)
2007{
2008 if (GET_TD_MICROSECONDS(self) != 0)
Walter Dörwald1ab83302007-05-18 17:15:44 +00002009 return PyUnicode_FromFormat("%s(%d, %d, %d)",
Christian Heimes90aa7642007-12-19 02:45:37 +00002010 Py_TYPE(self)->tp_name,
Walter Dörwald7569dfe2007-05-19 21:49:49 +00002011 GET_TD_DAYS(self),
2012 GET_TD_SECONDS(self),
2013 GET_TD_MICROSECONDS(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00002014 if (GET_TD_SECONDS(self) != 0)
Walter Dörwald1ab83302007-05-18 17:15:44 +00002015 return PyUnicode_FromFormat("%s(%d, %d)",
Christian Heimes90aa7642007-12-19 02:45:37 +00002016 Py_TYPE(self)->tp_name,
Walter Dörwald7569dfe2007-05-19 21:49:49 +00002017 GET_TD_DAYS(self),
2018 GET_TD_SECONDS(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00002019
Walter Dörwald1ab83302007-05-18 17:15:44 +00002020 return PyUnicode_FromFormat("%s(%d)",
Christian Heimes90aa7642007-12-19 02:45:37 +00002021 Py_TYPE(self)->tp_name,
Walter Dörwald7569dfe2007-05-19 21:49:49 +00002022 GET_TD_DAYS(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00002023}
2024
2025static PyObject *
2026delta_str(PyDateTime_Delta *self)
2027{
Tim Peters2a799bf2002-12-16 20:18:38 +00002028 int us = GET_TD_MICROSECONDS(self);
Walter Dörwaldbaf853c2007-05-31 18:42:47 +00002029 int seconds = GET_TD_SECONDS(self);
2030 int minutes = divmod(seconds, 60, &seconds);
2031 int hours = divmod(minutes, 60, &minutes);
2032 int days = GET_TD_DAYS(self);
Tim Peters2a799bf2002-12-16 20:18:38 +00002033
2034 if (days) {
Walter Dörwaldbaf853c2007-05-31 18:42:47 +00002035 if (us)
2036 return PyUnicode_FromFormat("%d day%s, %d:%02d:%02d.%06d",
2037 days, (days == 1 || days == -1) ? "" : "s",
2038 hours, minutes, seconds, us);
2039 else
2040 return PyUnicode_FromFormat("%d day%s, %d:%02d:%02d",
2041 days, (days == 1 || days == -1) ? "" : "s",
2042 hours, minutes, seconds);
2043 } else {
2044 if (us)
2045 return PyUnicode_FromFormat("%d:%02d:%02d.%06d",
2046 hours, minutes, seconds, us);
2047 else
2048 return PyUnicode_FromFormat("%d:%02d:%02d",
2049 hours, minutes, seconds);
Tim Peters2a799bf2002-12-16 20:18:38 +00002050 }
2051
Tim Peters2a799bf2002-12-16 20:18:38 +00002052}
2053
Tim Peters371935f2003-02-01 01:52:50 +00002054/* Pickle support, a simple use of __reduce__. */
2055
Tim Petersb57f8f02003-02-01 02:54:15 +00002056/* __getstate__ isn't exposed */
Tim Peters2a799bf2002-12-16 20:18:38 +00002057static PyObject *
2058delta_getstate(PyDateTime_Delta *self)
2059{
2060 return Py_BuildValue("iii", GET_TD_DAYS(self),
2061 GET_TD_SECONDS(self),
2062 GET_TD_MICROSECONDS(self));
2063}
2064
Tim Peters2a799bf2002-12-16 20:18:38 +00002065static PyObject *
2066delta_reduce(PyDateTime_Delta* self)
2067{
Christian Heimes90aa7642007-12-19 02:45:37 +00002068 return Py_BuildValue("ON", Py_TYPE(self), delta_getstate(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00002069}
2070
2071#define OFFSET(field) offsetof(PyDateTime_Delta, field)
2072
2073static PyMemberDef delta_members[] = {
Guido van Rossum177e41a2003-01-30 22:06:23 +00002074
Neal Norwitzdfb80862002-12-19 02:30:56 +00002075 {"days", T_INT, OFFSET(days), READONLY,
Tim Peters2a799bf2002-12-16 20:18:38 +00002076 PyDoc_STR("Number of days.")},
2077
Neal Norwitzdfb80862002-12-19 02:30:56 +00002078 {"seconds", T_INT, OFFSET(seconds), READONLY,
Tim Peters2a799bf2002-12-16 20:18:38 +00002079 PyDoc_STR("Number of seconds (>= 0 and less than 1 day).")},
2080
Neal Norwitzdfb80862002-12-19 02:30:56 +00002081 {"microseconds", T_INT, OFFSET(microseconds), READONLY,
Tim Peters2a799bf2002-12-16 20:18:38 +00002082 PyDoc_STR("Number of microseconds (>= 0 and less than 1 second).")},
2083 {NULL}
2084};
2085
2086static PyMethodDef delta_methods[] = {
Guido van Rossum177e41a2003-01-30 22:06:23 +00002087 {"__reduce__", (PyCFunction)delta_reduce, METH_NOARGS,
2088 PyDoc_STR("__reduce__() -> (cls, state)")},
2089
Tim Peters2a799bf2002-12-16 20:18:38 +00002090 {NULL, NULL},
2091};
2092
2093static char delta_doc[] =
2094PyDoc_STR("Difference between two datetime values.");
2095
2096static PyNumberMethods delta_as_number = {
2097 delta_add, /* nb_add */
2098 delta_subtract, /* nb_subtract */
2099 delta_multiply, /* nb_multiply */
Tim Peters2a799bf2002-12-16 20:18:38 +00002100 0, /* nb_remainder */
2101 0, /* nb_divmod */
2102 0, /* nb_power */
2103 (unaryfunc)delta_negative, /* nb_negative */
2104 (unaryfunc)delta_positive, /* nb_positive */
2105 (unaryfunc)delta_abs, /* nb_absolute */
Jack Diederich4dafcc42006-11-28 19:15:13 +00002106 (inquiry)delta_bool, /* nb_bool */
Tim Peters2a799bf2002-12-16 20:18:38 +00002107 0, /*nb_invert*/
2108 0, /*nb_lshift*/
2109 0, /*nb_rshift*/
2110 0, /*nb_and*/
2111 0, /*nb_xor*/
2112 0, /*nb_or*/
Tim Peters2a799bf2002-12-16 20:18:38 +00002113 0, /*nb_int*/
2114 0, /*nb_long*/
2115 0, /*nb_float*/
Tim Peters2a799bf2002-12-16 20:18:38 +00002116 0, /*nb_inplace_add*/
2117 0, /*nb_inplace_subtract*/
2118 0, /*nb_inplace_multiply*/
Tim Peters2a799bf2002-12-16 20:18:38 +00002119 0, /*nb_inplace_remainder*/
2120 0, /*nb_inplace_power*/
2121 0, /*nb_inplace_lshift*/
2122 0, /*nb_inplace_rshift*/
2123 0, /*nb_inplace_and*/
2124 0, /*nb_inplace_xor*/
2125 0, /*nb_inplace_or*/
2126 delta_divide, /* nb_floor_divide */
2127 0, /* nb_true_divide */
2128 0, /* nb_inplace_floor_divide */
2129 0, /* nb_inplace_true_divide */
2130};
2131
2132static PyTypeObject PyDateTime_DeltaType = {
Martin v. Löwis9f2e3462007-07-21 17:22:18 +00002133 PyVarObject_HEAD_INIT(NULL, 0)
Tim Peters2a799bf2002-12-16 20:18:38 +00002134 "datetime.timedelta", /* tp_name */
2135 sizeof(PyDateTime_Delta), /* tp_basicsize */
2136 0, /* tp_itemsize */
2137 0, /* tp_dealloc */
2138 0, /* tp_print */
2139 0, /* tp_getattr */
2140 0, /* tp_setattr */
2141 0, /* tp_compare */
2142 (reprfunc)delta_repr, /* tp_repr */
2143 &delta_as_number, /* tp_as_number */
2144 0, /* tp_as_sequence */
2145 0, /* tp_as_mapping */
2146 (hashfunc)delta_hash, /* tp_hash */
2147 0, /* tp_call */
2148 (reprfunc)delta_str, /* tp_str */
2149 PyObject_GenericGetAttr, /* tp_getattro */
2150 0, /* tp_setattro */
2151 0, /* tp_as_buffer */
Guido van Rossum3cf5b1e2006-07-27 21:53:35 +00002152 Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE, /* tp_flags */
Tim Peters2a799bf2002-12-16 20:18:38 +00002153 delta_doc, /* tp_doc */
2154 0, /* tp_traverse */
2155 0, /* tp_clear */
Guido van Rossum19960592006-08-24 17:29:38 +00002156 delta_richcompare, /* tp_richcompare */
Tim Peters2a799bf2002-12-16 20:18:38 +00002157 0, /* tp_weaklistoffset */
2158 0, /* tp_iter */
2159 0, /* tp_iternext */
2160 delta_methods, /* tp_methods */
2161 delta_members, /* tp_members */
2162 0, /* tp_getset */
2163 0, /* tp_base */
2164 0, /* tp_dict */
2165 0, /* tp_descr_get */
2166 0, /* tp_descr_set */
2167 0, /* tp_dictoffset */
2168 0, /* tp_init */
2169 0, /* tp_alloc */
2170 delta_new, /* tp_new */
Tim Peters4c530132003-05-16 22:44:06 +00002171 0, /* tp_free */
Tim Peters2a799bf2002-12-16 20:18:38 +00002172};
2173
2174/*
2175 * PyDateTime_Date implementation.
2176 */
2177
2178/* Accessor properties. */
2179
2180static PyObject *
2181date_year(PyDateTime_Date *self, void *unused)
2182{
Christian Heimes217cfd12007-12-02 14:31:20 +00002183 return PyLong_FromLong(GET_YEAR(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00002184}
2185
2186static PyObject *
2187date_month(PyDateTime_Date *self, void *unused)
2188{
Christian Heimes217cfd12007-12-02 14:31:20 +00002189 return PyLong_FromLong(GET_MONTH(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00002190}
2191
2192static PyObject *
2193date_day(PyDateTime_Date *self, void *unused)
2194{
Christian Heimes217cfd12007-12-02 14:31:20 +00002195 return PyLong_FromLong(GET_DAY(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00002196}
2197
2198static PyGetSetDef date_getset[] = {
2199 {"year", (getter)date_year},
2200 {"month", (getter)date_month},
2201 {"day", (getter)date_day},
2202 {NULL}
2203};
2204
2205/* Constructors. */
2206
Martin v. Löwis02cbf4a2006-02-27 17:20:04 +00002207static char *date_kws[] = {"year", "month", "day", NULL};
Tim Peters12bf3392002-12-24 05:41:27 +00002208
Tim Peters2a799bf2002-12-16 20:18:38 +00002209static PyObject *
2210date_new(PyTypeObject *type, PyObject *args, PyObject *kw)
2211{
2212 PyObject *self = NULL;
Tim Peters70533e22003-02-01 04:40:04 +00002213 PyObject *state;
Tim Peters2a799bf2002-12-16 20:18:38 +00002214 int year;
2215 int month;
2216 int day;
2217
Guido van Rossum177e41a2003-01-30 22:06:23 +00002218 /* Check for invocation from pickle with __getstate__ state */
2219 if (PyTuple_GET_SIZE(args) == 1 &&
Christian Heimes72b710a2008-05-26 13:28:38 +00002220 PyBytes_Check(state = PyTuple_GET_ITEM(args, 0)) &&
2221 PyBytes_GET_SIZE(state) == _PyDateTime_DATE_DATASIZE &&
2222 MONTH_IS_SANE(PyBytes_AS_STRING(state)[2]))
Guido van Rossum177e41a2003-01-30 22:06:23 +00002223 {
Tim Peters70533e22003-02-01 04:40:04 +00002224 PyDateTime_Date *me;
2225
Tim Peters604c0132004-06-07 23:04:33 +00002226 me = (PyDateTime_Date *) (type->tp_alloc(type, 0));
Tim Peters70533e22003-02-01 04:40:04 +00002227 if (me != NULL) {
Christian Heimes72b710a2008-05-26 13:28:38 +00002228 char *pdata = PyBytes_AS_STRING(state);
Tim Peters70533e22003-02-01 04:40:04 +00002229 memcpy(me->data, pdata, _PyDateTime_DATE_DATASIZE);
2230 me->hashcode = -1;
Guido van Rossum177e41a2003-01-30 22:06:23 +00002231 }
Tim Peters70533e22003-02-01 04:40:04 +00002232 return (PyObject *)me;
Guido van Rossum177e41a2003-01-30 22:06:23 +00002233 }
2234
Tim Peters12bf3392002-12-24 05:41:27 +00002235 if (PyArg_ParseTupleAndKeywords(args, kw, "iii", date_kws,
Tim Peters2a799bf2002-12-16 20:18:38 +00002236 &year, &month, &day)) {
2237 if (check_date_args(year, month, day) < 0)
2238 return NULL;
Guido van Rossum8b7a9a32003-04-14 22:01:58 +00002239 self = new_date_ex(year, month, day, type);
Tim Peters2a799bf2002-12-16 20:18:38 +00002240 }
2241 return self;
2242}
2243
2244/* Return new date from localtime(t). */
2245static PyObject *
Tim Peters1b6f7a92004-06-20 02:50:16 +00002246date_local_from_time_t(PyObject *cls, double ts)
Tim Peters2a799bf2002-12-16 20:18:38 +00002247{
2248 struct tm *tm;
Tim Peters1b6f7a92004-06-20 02:50:16 +00002249 time_t t;
Tim Peters2a799bf2002-12-16 20:18:38 +00002250 PyObject *result = NULL;
2251
Tim Peters1b6f7a92004-06-20 02:50:16 +00002252 t = _PyTime_DoubleToTimet(ts);
2253 if (t == (time_t)-1 && PyErr_Occurred())
2254 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00002255 tm = localtime(&t);
2256 if (tm)
2257 result = PyObject_CallFunction(cls, "iii",
2258 tm->tm_year + 1900,
2259 tm->tm_mon + 1,
2260 tm->tm_mday);
2261 else
2262 PyErr_SetString(PyExc_ValueError,
2263 "timestamp out of range for "
2264 "platform localtime() function");
2265 return result;
2266}
2267
2268/* Return new date from current time.
2269 * We say this is equivalent to fromtimestamp(time.time()), and the
2270 * only way to be sure of that is to *call* time.time(). That's not
2271 * generally the same as calling C's time.
2272 */
2273static PyObject *
2274date_today(PyObject *cls, PyObject *dummy)
2275{
2276 PyObject *time;
2277 PyObject *result;
2278
2279 time = time_time();
2280 if (time == NULL)
2281 return NULL;
2282
2283 /* Note well: today() is a class method, so this may not call
2284 * date.fromtimestamp. For example, it may call
2285 * datetime.fromtimestamp. That's why we need all the accuracy
2286 * time.time() delivers; if someone were gonzo about optimization,
2287 * date.today() could get away with plain C time().
2288 */
2289 result = PyObject_CallMethod(cls, "fromtimestamp", "O", time);
2290 Py_DECREF(time);
2291 return result;
2292}
2293
2294/* Return new date from given timestamp (Python timestamp -- a double). */
2295static PyObject *
2296date_fromtimestamp(PyObject *cls, PyObject *args)
2297{
2298 double timestamp;
2299 PyObject *result = NULL;
2300
2301 if (PyArg_ParseTuple(args, "d:fromtimestamp", &timestamp))
Tim Peters1b6f7a92004-06-20 02:50:16 +00002302 result = date_local_from_time_t(cls, timestamp);
Tim Peters2a799bf2002-12-16 20:18:38 +00002303 return result;
2304}
2305
2306/* Return new date from proleptic Gregorian ordinal. Raises ValueError if
2307 * the ordinal is out of range.
2308 */
2309static PyObject *
2310date_fromordinal(PyObject *cls, PyObject *args)
2311{
2312 PyObject *result = NULL;
2313 int ordinal;
2314
2315 if (PyArg_ParseTuple(args, "i:fromordinal", &ordinal)) {
2316 int year;
2317 int month;
2318 int day;
2319
2320 if (ordinal < 1)
2321 PyErr_SetString(PyExc_ValueError, "ordinal must be "
2322 ">= 1");
2323 else {
2324 ord_to_ymd(ordinal, &year, &month, &day);
2325 result = PyObject_CallFunction(cls, "iii",
2326 year, month, day);
2327 }
2328 }
2329 return result;
2330}
2331
2332/*
2333 * Date arithmetic.
2334 */
2335
2336/* date + timedelta -> date. If arg negate is true, subtract the timedelta
2337 * instead.
2338 */
2339static PyObject *
2340add_date_timedelta(PyDateTime_Date *date, PyDateTime_Delta *delta, int negate)
2341{
2342 PyObject *result = NULL;
2343 int year = GET_YEAR(date);
2344 int month = GET_MONTH(date);
2345 int deltadays = GET_TD_DAYS(delta);
2346 /* C-level overflow is impossible because |deltadays| < 1e9. */
2347 int day = GET_DAY(date) + (negate ? -deltadays : deltadays);
2348
2349 if (normalize_date(&year, &month, &day) >= 0)
2350 result = new_date(year, month, day);
2351 return result;
2352}
2353
2354static PyObject *
2355date_add(PyObject *left, PyObject *right)
2356{
2357 if (PyDateTime_Check(left) || PyDateTime_Check(right)) {
2358 Py_INCREF(Py_NotImplemented);
2359 return Py_NotImplemented;
2360 }
Tim Petersaa7d8492003-02-08 03:28:59 +00002361 if (PyDate_Check(left)) {
Tim Peters2a799bf2002-12-16 20:18:38 +00002362 /* date + ??? */
2363 if (PyDelta_Check(right))
2364 /* date + delta */
2365 return add_date_timedelta((PyDateTime_Date *) left,
2366 (PyDateTime_Delta *) right,
2367 0);
2368 }
2369 else {
2370 /* ??? + date
2371 * 'right' must be one of us, or we wouldn't have been called
2372 */
2373 if (PyDelta_Check(left))
2374 /* delta + date */
2375 return add_date_timedelta((PyDateTime_Date *) right,
2376 (PyDateTime_Delta *) left,
2377 0);
2378 }
2379 Py_INCREF(Py_NotImplemented);
2380 return Py_NotImplemented;
2381}
2382
2383static PyObject *
2384date_subtract(PyObject *left, PyObject *right)
2385{
2386 if (PyDateTime_Check(left) || PyDateTime_Check(right)) {
2387 Py_INCREF(Py_NotImplemented);
2388 return Py_NotImplemented;
2389 }
Tim Petersaa7d8492003-02-08 03:28:59 +00002390 if (PyDate_Check(left)) {
2391 if (PyDate_Check(right)) {
Tim Peters2a799bf2002-12-16 20:18:38 +00002392 /* date - date */
2393 int left_ord = ymd_to_ord(GET_YEAR(left),
2394 GET_MONTH(left),
2395 GET_DAY(left));
2396 int right_ord = ymd_to_ord(GET_YEAR(right),
2397 GET_MONTH(right),
2398 GET_DAY(right));
2399 return new_delta(left_ord - right_ord, 0, 0, 0);
2400 }
2401 if (PyDelta_Check(right)) {
2402 /* date - delta */
2403 return add_date_timedelta((PyDateTime_Date *) left,
2404 (PyDateTime_Delta *) right,
2405 1);
2406 }
2407 }
2408 Py_INCREF(Py_NotImplemented);
2409 return Py_NotImplemented;
2410}
2411
2412
2413/* Various ways to turn a date into a string. */
2414
2415static PyObject *
2416date_repr(PyDateTime_Date *self)
2417{
Walter Dörwald7569dfe2007-05-19 21:49:49 +00002418 return PyUnicode_FromFormat("%s(%d, %d, %d)",
Christian Heimes90aa7642007-12-19 02:45:37 +00002419 Py_TYPE(self)->tp_name,
Walter Dörwald7569dfe2007-05-19 21:49:49 +00002420 GET_YEAR(self), GET_MONTH(self), GET_DAY(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00002421}
2422
2423static PyObject *
2424date_isoformat(PyDateTime_Date *self)
2425{
Walter Dörwaldbafa1372007-05-31 17:50:48 +00002426 return PyUnicode_FromFormat("%04d-%02d-%02d",
2427 GET_YEAR(self), GET_MONTH(self), GET_DAY(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00002428}
2429
Tim Peterse2df5ff2003-05-02 18:39:55 +00002430/* str() calls the appropriate isoformat() method. */
Tim Peters2a799bf2002-12-16 20:18:38 +00002431static PyObject *
2432date_str(PyDateTime_Date *self)
2433{
2434 return PyObject_CallMethod((PyObject *)self, "isoformat", "()");
2435}
2436
2437
2438static PyObject *
2439date_ctime(PyDateTime_Date *self)
2440{
2441 return format_ctime(self, 0, 0, 0);
2442}
2443
2444static PyObject *
2445date_strftime(PyDateTime_Date *self, PyObject *args, PyObject *kw)
2446{
2447 /* This method can be inherited, and needs to call the
2448 * timetuple() method appropriate to self's class.
2449 */
2450 PyObject *result;
Tim Peters2a799bf2002-12-16 20:18:38 +00002451 PyObject *tuple;
Georg Brandlf78e02b2008-06-10 17:40:04 +00002452 PyObject *format;
Martin v. Löwis02cbf4a2006-02-27 17:20:04 +00002453 static char *keywords[] = {"format", NULL};
Tim Peters2a799bf2002-12-16 20:18:38 +00002454
Guido van Rossumfd53fd62007-08-24 04:05:13 +00002455 if (! PyArg_ParseTupleAndKeywords(args, kw, "U:strftime", keywords,
Guido van Rossumbce56a62007-05-10 18:04:33 +00002456 &format))
Tim Peters2a799bf2002-12-16 20:18:38 +00002457 return NULL;
2458
2459 tuple = PyObject_CallMethod((PyObject *)self, "timetuple", "()");
2460 if (tuple == NULL)
2461 return NULL;
Tim Petersbad8ff02002-12-30 20:52:32 +00002462 result = wrap_strftime((PyObject *)self, format, tuple,
2463 (PyObject *)self);
Tim Peters2a799bf2002-12-16 20:18:38 +00002464 Py_DECREF(tuple);
2465 return result;
2466}
2467
Eric Smith1ba31142007-09-11 18:06:02 +00002468static PyObject *
2469date_format(PyDateTime_Date *self, PyObject *args)
2470{
2471 PyObject *format;
2472
2473 if (!PyArg_ParseTuple(args, "U:__format__", &format))
2474 return NULL;
2475
2476 /* if the format is zero length, return str(self) */
2477 if (PyUnicode_GetSize(format) == 0)
Thomas Heller519a0422007-11-15 20:48:54 +00002478 return PyObject_Str((PyObject *)self);
Eric Smith1ba31142007-09-11 18:06:02 +00002479
2480 return PyObject_CallMethod((PyObject *)self, "strftime", "O", format);
2481}
2482
Tim Peters2a799bf2002-12-16 20:18:38 +00002483/* ISO methods. */
2484
2485static PyObject *
2486date_isoweekday(PyDateTime_Date *self)
2487{
2488 int dow = weekday(GET_YEAR(self), GET_MONTH(self), GET_DAY(self));
2489
Christian Heimes217cfd12007-12-02 14:31:20 +00002490 return PyLong_FromLong(dow + 1);
Tim Peters2a799bf2002-12-16 20:18:38 +00002491}
2492
2493static PyObject *
2494date_isocalendar(PyDateTime_Date *self)
2495{
2496 int year = GET_YEAR(self);
2497 int week1_monday = iso_week1_monday(year);
2498 int today = ymd_to_ord(year, GET_MONTH(self), GET_DAY(self));
2499 int week;
2500 int day;
2501
2502 week = divmod(today - week1_monday, 7, &day);
2503 if (week < 0) {
2504 --year;
2505 week1_monday = iso_week1_monday(year);
2506 week = divmod(today - week1_monday, 7, &day);
2507 }
2508 else if (week >= 52 && today >= iso_week1_monday(year + 1)) {
2509 ++year;
2510 week = 0;
2511 }
2512 return Py_BuildValue("iii", year, week + 1, day + 1);
2513}
2514
2515/* Miscellaneous methods. */
2516
Tim Peters2a799bf2002-12-16 20:18:38 +00002517static PyObject *
Guido van Rossum19960592006-08-24 17:29:38 +00002518date_richcompare(PyObject *self, PyObject *other, int op)
Tim Peters2a799bf2002-12-16 20:18:38 +00002519{
Guido van Rossum19960592006-08-24 17:29:38 +00002520 if (PyDate_Check(other)) {
2521 int diff = memcmp(((PyDateTime_Date *)self)->data,
2522 ((PyDateTime_Date *)other)->data,
2523 _PyDateTime_DATE_DATASIZE);
2524 return diff_to_bool(diff, op);
2525 }
2526 else {
Tim Peters07534a62003-02-07 22:50:28 +00002527 Py_INCREF(Py_NotImplemented);
2528 return Py_NotImplemented;
Tim Peters2a799bf2002-12-16 20:18:38 +00002529 }
Tim Peters2a799bf2002-12-16 20:18:38 +00002530}
2531
2532static PyObject *
2533date_timetuple(PyDateTime_Date *self)
2534{
2535 return build_struct_time(GET_YEAR(self),
2536 GET_MONTH(self),
2537 GET_DAY(self),
2538 0, 0, 0, -1);
2539}
2540
Tim Peters12bf3392002-12-24 05:41:27 +00002541static PyObject *
2542date_replace(PyDateTime_Date *self, PyObject *args, PyObject *kw)
2543{
2544 PyObject *clone;
2545 PyObject *tuple;
2546 int year = GET_YEAR(self);
2547 int month = GET_MONTH(self);
2548 int day = GET_DAY(self);
2549
2550 if (! PyArg_ParseTupleAndKeywords(args, kw, "|iii:replace", date_kws,
2551 &year, &month, &day))
2552 return NULL;
2553 tuple = Py_BuildValue("iii", year, month, day);
2554 if (tuple == NULL)
2555 return NULL;
Christian Heimes90aa7642007-12-19 02:45:37 +00002556 clone = date_new(Py_TYPE(self), tuple, NULL);
Tim Peters12bf3392002-12-24 05:41:27 +00002557 Py_DECREF(tuple);
2558 return clone;
2559}
2560
Guido van Rossumfd53fd62007-08-24 04:05:13 +00002561/*
2562 Borrowed from stringobject.c, originally it was string_hash()
2563*/
2564static long
2565generic_hash(unsigned char *data, int len)
2566{
2567 register unsigned char *p;
2568 register long x;
2569
2570 p = (unsigned char *) data;
2571 x = *p << 7;
2572 while (--len >= 0)
2573 x = (1000003*x) ^ *p++;
2574 x ^= len;
2575 if (x == -1)
2576 x = -2;
2577
2578 return x;
2579}
2580
2581
2582static PyObject *date_getstate(PyDateTime_Date *self);
Tim Peters2a799bf2002-12-16 20:18:38 +00002583
2584static long
2585date_hash(PyDateTime_Date *self)
2586{
Guido van Rossumfd53fd62007-08-24 04:05:13 +00002587 if (self->hashcode == -1)
2588 self->hashcode = generic_hash(
2589 (unsigned char *)self->data, _PyDateTime_DATE_DATASIZE);
Guido van Rossum254348e2007-11-21 19:29:53 +00002590
Tim Peters2a799bf2002-12-16 20:18:38 +00002591 return self->hashcode;
2592}
2593
2594static PyObject *
2595date_toordinal(PyDateTime_Date *self)
2596{
Christian Heimes217cfd12007-12-02 14:31:20 +00002597 return PyLong_FromLong(ymd_to_ord(GET_YEAR(self), GET_MONTH(self),
Tim Peters2a799bf2002-12-16 20:18:38 +00002598 GET_DAY(self)));
2599}
2600
2601static PyObject *
2602date_weekday(PyDateTime_Date *self)
2603{
2604 int dow = weekday(GET_YEAR(self), GET_MONTH(self), GET_DAY(self));
2605
Christian Heimes217cfd12007-12-02 14:31:20 +00002606 return PyLong_FromLong(dow);
Tim Peters2a799bf2002-12-16 20:18:38 +00002607}
2608
Tim Peters371935f2003-02-01 01:52:50 +00002609/* Pickle support, a simple use of __reduce__. */
Tim Peters2a799bf2002-12-16 20:18:38 +00002610
Tim Petersb57f8f02003-02-01 02:54:15 +00002611/* __getstate__ isn't exposed */
Tim Peters2a799bf2002-12-16 20:18:38 +00002612static PyObject *
Guido van Rossumfd53fd62007-08-24 04:05:13 +00002613date_getstate(PyDateTime_Date *self)
Tim Peters2a799bf2002-12-16 20:18:38 +00002614{
Martin v. Löwis10a60b32007-07-18 02:28:27 +00002615 PyObject* field;
Christian Heimes72b710a2008-05-26 13:28:38 +00002616 field = PyBytes_FromStringAndSize((char*)self->data,
Guido van Rossum254348e2007-11-21 19:29:53 +00002617 _PyDateTime_DATE_DATASIZE);
Martin v. Löwis10a60b32007-07-18 02:28:27 +00002618 return Py_BuildValue("(N)", field);
Tim Peters2a799bf2002-12-16 20:18:38 +00002619}
2620
2621static PyObject *
Guido van Rossum177e41a2003-01-30 22:06:23 +00002622date_reduce(PyDateTime_Date *self, PyObject *arg)
Tim Peters2a799bf2002-12-16 20:18:38 +00002623{
Christian Heimes90aa7642007-12-19 02:45:37 +00002624 return Py_BuildValue("(ON)", Py_TYPE(self), date_getstate(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00002625}
2626
2627static PyMethodDef date_methods[] = {
Guido van Rossum177e41a2003-01-30 22:06:23 +00002628
Tim Peters2a799bf2002-12-16 20:18:38 +00002629 /* Class methods: */
Guido van Rossum177e41a2003-01-30 22:06:23 +00002630
Tim Peters2a799bf2002-12-16 20:18:38 +00002631 {"fromtimestamp", (PyCFunction)date_fromtimestamp, METH_VARARGS |
2632 METH_CLASS,
2633 PyDoc_STR("timestamp -> local date from a POSIX timestamp (like "
2634 "time.time()).")},
2635
2636 {"fromordinal", (PyCFunction)date_fromordinal, METH_VARARGS |
2637 METH_CLASS,
2638 PyDoc_STR("int -> date corresponding to a proleptic Gregorian "
2639 "ordinal.")},
2640
2641 {"today", (PyCFunction)date_today, METH_NOARGS | METH_CLASS,
2642 PyDoc_STR("Current date or datetime: same as "
2643 "self.__class__.fromtimestamp(time.time()).")},
2644
2645 /* Instance methods: */
2646
2647 {"ctime", (PyCFunction)date_ctime, METH_NOARGS,
2648 PyDoc_STR("Return ctime() style string.")},
2649
Guido van Rossumd59da4b2007-05-22 18:11:13 +00002650 {"strftime", (PyCFunction)date_strftime, METH_VARARGS | METH_KEYWORDS,
Tim Peters2a799bf2002-12-16 20:18:38 +00002651 PyDoc_STR("format -> strftime() style string.")},
2652
Eric Smith1ba31142007-09-11 18:06:02 +00002653 {"__format__", (PyCFunction)date_format, METH_VARARGS,
2654 PyDoc_STR("Formats self with strftime.")},
2655
Tim Peters2a799bf2002-12-16 20:18:38 +00002656 {"timetuple", (PyCFunction)date_timetuple, METH_NOARGS,
2657 PyDoc_STR("Return time tuple, compatible with time.localtime().")},
2658
2659 {"isocalendar", (PyCFunction)date_isocalendar, METH_NOARGS,
2660 PyDoc_STR("Return a 3-tuple containing ISO year, week number, and "
2661 "weekday.")},
2662
2663 {"isoformat", (PyCFunction)date_isoformat, METH_NOARGS,
2664 PyDoc_STR("Return string in ISO 8601 format, YYYY-MM-DD.")},
2665
2666 {"isoweekday", (PyCFunction)date_isoweekday, METH_NOARGS,
2667 PyDoc_STR("Return the day of the week represented by the date.\n"
2668 "Monday == 1 ... Sunday == 7")},
2669
2670 {"toordinal", (PyCFunction)date_toordinal, METH_NOARGS,
2671 PyDoc_STR("Return proleptic Gregorian ordinal. January 1 of year "
2672 "1 is day 1.")},
2673
2674 {"weekday", (PyCFunction)date_weekday, METH_NOARGS,
2675 PyDoc_STR("Return the day of the week represented by the date.\n"
2676 "Monday == 0 ... Sunday == 6")},
2677
Guido van Rossumd59da4b2007-05-22 18:11:13 +00002678 {"replace", (PyCFunction)date_replace, METH_VARARGS | METH_KEYWORDS,
Tim Peters12bf3392002-12-24 05:41:27 +00002679 PyDoc_STR("Return date with new specified fields.")},
2680
Guido van Rossum177e41a2003-01-30 22:06:23 +00002681 {"__reduce__", (PyCFunction)date_reduce, METH_NOARGS,
2682 PyDoc_STR("__reduce__() -> (cls, state)")},
2683
Tim Peters2a799bf2002-12-16 20:18:38 +00002684 {NULL, NULL}
2685};
2686
2687static char date_doc[] =
Raymond Hettinger3a4231d2004-12-19 20:13:24 +00002688PyDoc_STR("date(year, month, day) --> date object");
Tim Peters2a799bf2002-12-16 20:18:38 +00002689
2690static PyNumberMethods date_as_number = {
2691 date_add, /* nb_add */
2692 date_subtract, /* nb_subtract */
2693 0, /* nb_multiply */
Tim Peters2a799bf2002-12-16 20:18:38 +00002694 0, /* nb_remainder */
2695 0, /* nb_divmod */
2696 0, /* nb_power */
2697 0, /* nb_negative */
2698 0, /* nb_positive */
2699 0, /* nb_absolute */
Jack Diederich4dafcc42006-11-28 19:15:13 +00002700 0, /* nb_bool */
Tim Peters2a799bf2002-12-16 20:18:38 +00002701};
2702
2703static PyTypeObject PyDateTime_DateType = {
Martin v. Löwis9f2e3462007-07-21 17:22:18 +00002704 PyVarObject_HEAD_INIT(NULL, 0)
Tim Peters2a799bf2002-12-16 20:18:38 +00002705 "datetime.date", /* tp_name */
2706 sizeof(PyDateTime_Date), /* tp_basicsize */
2707 0, /* tp_itemsize */
Guido van Rossum8b7a9a32003-04-14 22:01:58 +00002708 0, /* tp_dealloc */
Tim Peters2a799bf2002-12-16 20:18:38 +00002709 0, /* tp_print */
2710 0, /* tp_getattr */
2711 0, /* tp_setattr */
2712 0, /* tp_compare */
2713 (reprfunc)date_repr, /* tp_repr */
2714 &date_as_number, /* tp_as_number */
2715 0, /* tp_as_sequence */
2716 0, /* tp_as_mapping */
2717 (hashfunc)date_hash, /* tp_hash */
2718 0, /* tp_call */
2719 (reprfunc)date_str, /* tp_str */
2720 PyObject_GenericGetAttr, /* tp_getattro */
2721 0, /* tp_setattro */
2722 0, /* tp_as_buffer */
Guido van Rossum3cf5b1e2006-07-27 21:53:35 +00002723 Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE, /* tp_flags */
Tim Peters2a799bf2002-12-16 20:18:38 +00002724 date_doc, /* tp_doc */
2725 0, /* tp_traverse */
2726 0, /* tp_clear */
Guido van Rossum19960592006-08-24 17:29:38 +00002727 date_richcompare, /* tp_richcompare */
Tim Peters2a799bf2002-12-16 20:18:38 +00002728 0, /* tp_weaklistoffset */
2729 0, /* tp_iter */
2730 0, /* tp_iternext */
2731 date_methods, /* tp_methods */
2732 0, /* tp_members */
2733 date_getset, /* tp_getset */
2734 0, /* tp_base */
2735 0, /* tp_dict */
2736 0, /* tp_descr_get */
2737 0, /* tp_descr_set */
2738 0, /* tp_dictoffset */
2739 0, /* tp_init */
2740 0, /* tp_alloc */
2741 date_new, /* tp_new */
Tim Peters4c530132003-05-16 22:44:06 +00002742 0, /* tp_free */
Tim Peters2a799bf2002-12-16 20:18:38 +00002743};
2744
2745/*
Tim Peters2a799bf2002-12-16 20:18:38 +00002746 * PyDateTime_TZInfo implementation.
2747 */
2748
2749/* This is a pure abstract base class, so doesn't do anything beyond
2750 * raising NotImplemented exceptions. Real tzinfo classes need
2751 * to derive from this. This is mostly for clarity, and for efficiency in
Tim Petersa9bc1682003-01-11 03:39:11 +00002752 * datetime and time constructors (their tzinfo arguments need to
Tim Peters2a799bf2002-12-16 20:18:38 +00002753 * be subclasses of this tzinfo class, which is easy and quick to check).
2754 *
2755 * Note: For reasons having to do with pickling of subclasses, we have
2756 * to allow tzinfo objects to be instantiated. This wasn't an issue
2757 * in the Python implementation (__init__() could raise NotImplementedError
2758 * there without ill effect), but doing so in the C implementation hit a
2759 * brick wall.
2760 */
2761
2762static PyObject *
2763tzinfo_nogo(const char* methodname)
2764{
2765 PyErr_Format(PyExc_NotImplementedError,
2766 "a tzinfo subclass must implement %s()",
2767 methodname);
2768 return NULL;
2769}
2770
2771/* Methods. A subclass must implement these. */
2772
Tim Peters52dcce22003-01-23 16:36:11 +00002773static PyObject *
Tim Peters2a799bf2002-12-16 20:18:38 +00002774tzinfo_tzname(PyDateTime_TZInfo *self, PyObject *dt)
2775{
2776 return tzinfo_nogo("tzname");
2777}
2778
Tim Peters52dcce22003-01-23 16:36:11 +00002779static PyObject *
Tim Peters2a799bf2002-12-16 20:18:38 +00002780tzinfo_utcoffset(PyDateTime_TZInfo *self, PyObject *dt)
2781{
2782 return tzinfo_nogo("utcoffset");
2783}
2784
Tim Peters52dcce22003-01-23 16:36:11 +00002785static PyObject *
Tim Peters2a799bf2002-12-16 20:18:38 +00002786tzinfo_dst(PyDateTime_TZInfo *self, PyObject *dt)
2787{
2788 return tzinfo_nogo("dst");
2789}
2790
Tim Peters52dcce22003-01-23 16:36:11 +00002791static PyObject *
2792tzinfo_fromutc(PyDateTime_TZInfo *self, PyDateTime_DateTime *dt)
2793{
2794 int y, m, d, hh, mm, ss, us;
2795
2796 PyObject *result;
2797 int off, dst;
2798 int none;
2799 int delta;
2800
2801 if (! PyDateTime_Check(dt)) {
2802 PyErr_SetString(PyExc_TypeError,
2803 "fromutc: argument must be a datetime");
2804 return NULL;
2805 }
2806 if (! HASTZINFO(dt) || dt->tzinfo != (PyObject *)self) {
2807 PyErr_SetString(PyExc_ValueError, "fromutc: dt.tzinfo "
2808 "is not self");
2809 return NULL;
2810 }
2811
2812 off = call_utcoffset(dt->tzinfo, (PyObject *)dt, &none);
2813 if (off == -1 && PyErr_Occurred())
2814 return NULL;
2815 if (none) {
2816 PyErr_SetString(PyExc_ValueError, "fromutc: non-None "
2817 "utcoffset() result required");
2818 return NULL;
2819 }
2820
2821 dst = call_dst(dt->tzinfo, (PyObject *)dt, &none);
2822 if (dst == -1 && PyErr_Occurred())
2823 return NULL;
2824 if (none) {
2825 PyErr_SetString(PyExc_ValueError, "fromutc: non-None "
2826 "dst() result required");
2827 return NULL;
2828 }
2829
2830 y = GET_YEAR(dt);
2831 m = GET_MONTH(dt);
2832 d = GET_DAY(dt);
2833 hh = DATE_GET_HOUR(dt);
2834 mm = DATE_GET_MINUTE(dt);
2835 ss = DATE_GET_SECOND(dt);
2836 us = DATE_GET_MICROSECOND(dt);
2837
2838 delta = off - dst;
2839 mm += delta;
2840 if ((mm < 0 || mm >= 60) &&
2841 normalize_datetime(&y, &m, &d, &hh, &mm, &ss, &us) < 0)
Tim Petersb1049e82003-01-23 17:20:36 +00002842 return NULL;
Tim Peters52dcce22003-01-23 16:36:11 +00002843 result = new_datetime(y, m, d, hh, mm, ss, us, dt->tzinfo);
2844 if (result == NULL)
2845 return result;
2846
2847 dst = call_dst(dt->tzinfo, result, &none);
2848 if (dst == -1 && PyErr_Occurred())
2849 goto Fail;
2850 if (none)
2851 goto Inconsistent;
2852 if (dst == 0)
2853 return result;
2854
2855 mm += dst;
2856 if ((mm < 0 || mm >= 60) &&
2857 normalize_datetime(&y, &m, &d, &hh, &mm, &ss, &us) < 0)
2858 goto Fail;
2859 Py_DECREF(result);
2860 result = new_datetime(y, m, d, hh, mm, ss, us, dt->tzinfo);
2861 return result;
2862
2863Inconsistent:
2864 PyErr_SetString(PyExc_ValueError, "fromutc: tz.dst() gave"
2865 "inconsistent results; cannot convert");
2866
2867 /* fall thru to failure */
2868Fail:
2869 Py_DECREF(result);
2870 return NULL;
2871}
2872
Tim Peters2a799bf2002-12-16 20:18:38 +00002873/*
2874 * Pickle support. This is solely so that tzinfo subclasses can use
Guido van Rossum177e41a2003-01-30 22:06:23 +00002875 * pickling -- tzinfo itself is supposed to be uninstantiable.
Tim Peters2a799bf2002-12-16 20:18:38 +00002876 */
2877
Guido van Rossum177e41a2003-01-30 22:06:23 +00002878static PyObject *
2879tzinfo_reduce(PyObject *self)
2880{
2881 PyObject *args, *state, *tmp;
2882 PyObject *getinitargs, *getstate;
Tim Peters2a799bf2002-12-16 20:18:38 +00002883
Guido van Rossum177e41a2003-01-30 22:06:23 +00002884 tmp = PyTuple_New(0);
2885 if (tmp == NULL)
2886 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00002887
Guido van Rossum177e41a2003-01-30 22:06:23 +00002888 getinitargs = PyObject_GetAttrString(self, "__getinitargs__");
2889 if (getinitargs != NULL) {
2890 args = PyObject_CallObject(getinitargs, tmp);
2891 Py_DECREF(getinitargs);
2892 if (args == NULL) {
2893 Py_DECREF(tmp);
2894 return NULL;
2895 }
2896 }
2897 else {
2898 PyErr_Clear();
2899 args = tmp;
2900 Py_INCREF(args);
2901 }
2902
2903 getstate = PyObject_GetAttrString(self, "__getstate__");
2904 if (getstate != NULL) {
2905 state = PyObject_CallObject(getstate, tmp);
2906 Py_DECREF(getstate);
2907 if (state == NULL) {
2908 Py_DECREF(args);
2909 Py_DECREF(tmp);
2910 return NULL;
2911 }
2912 }
2913 else {
2914 PyObject **dictptr;
2915 PyErr_Clear();
2916 state = Py_None;
2917 dictptr = _PyObject_GetDictPtr(self);
2918 if (dictptr && *dictptr && PyDict_Size(*dictptr))
2919 state = *dictptr;
2920 Py_INCREF(state);
2921 }
2922
2923 Py_DECREF(tmp);
2924
2925 if (state == Py_None) {
2926 Py_DECREF(state);
Christian Heimes90aa7642007-12-19 02:45:37 +00002927 return Py_BuildValue("(ON)", Py_TYPE(self), args);
Guido van Rossum177e41a2003-01-30 22:06:23 +00002928 }
2929 else
Christian Heimes90aa7642007-12-19 02:45:37 +00002930 return Py_BuildValue("(ONN)", Py_TYPE(self), args, state);
Guido van Rossum177e41a2003-01-30 22:06:23 +00002931}
Tim Peters2a799bf2002-12-16 20:18:38 +00002932
2933static PyMethodDef tzinfo_methods[] = {
Guido van Rossum177e41a2003-01-30 22:06:23 +00002934
Tim Peters2a799bf2002-12-16 20:18:38 +00002935 {"tzname", (PyCFunction)tzinfo_tzname, METH_O,
2936 PyDoc_STR("datetime -> string name of time zone.")},
2937
2938 {"utcoffset", (PyCFunction)tzinfo_utcoffset, METH_O,
2939 PyDoc_STR("datetime -> minutes east of UTC (negative for "
2940 "west of UTC).")},
2941
2942 {"dst", (PyCFunction)tzinfo_dst, METH_O,
2943 PyDoc_STR("datetime -> DST offset in minutes east of UTC.")},
2944
Tim Peters52dcce22003-01-23 16:36:11 +00002945 {"fromutc", (PyCFunction)tzinfo_fromutc, METH_O,
2946 PyDoc_STR("datetime in UTC -> datetime in local time.")},
2947
Guido van Rossum177e41a2003-01-30 22:06:23 +00002948 {"__reduce__", (PyCFunction)tzinfo_reduce, METH_NOARGS,
2949 PyDoc_STR("-> (cls, state)")},
2950
Tim Peters2a799bf2002-12-16 20:18:38 +00002951 {NULL, NULL}
2952};
2953
2954static char tzinfo_doc[] =
2955PyDoc_STR("Abstract base class for time zone info objects.");
2956
Neal Norwitz227b5332006-03-22 09:28:35 +00002957static PyTypeObject PyDateTime_TZInfoType = {
Martin v. Löwis9f2e3462007-07-21 17:22:18 +00002958 PyVarObject_HEAD_INIT(NULL, 0)
Tim Peters2a799bf2002-12-16 20:18:38 +00002959 "datetime.tzinfo", /* tp_name */
2960 sizeof(PyDateTime_TZInfo), /* tp_basicsize */
2961 0, /* tp_itemsize */
2962 0, /* tp_dealloc */
2963 0, /* tp_print */
2964 0, /* tp_getattr */
2965 0, /* tp_setattr */
2966 0, /* tp_compare */
2967 0, /* tp_repr */
2968 0, /* tp_as_number */
2969 0, /* tp_as_sequence */
2970 0, /* tp_as_mapping */
2971 0, /* tp_hash */
2972 0, /* tp_call */
2973 0, /* tp_str */
2974 PyObject_GenericGetAttr, /* tp_getattro */
2975 0, /* tp_setattro */
2976 0, /* tp_as_buffer */
Guido van Rossum3cf5b1e2006-07-27 21:53:35 +00002977 Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE, /* tp_flags */
Tim Peters2a799bf2002-12-16 20:18:38 +00002978 tzinfo_doc, /* tp_doc */
2979 0, /* tp_traverse */
2980 0, /* tp_clear */
2981 0, /* tp_richcompare */
2982 0, /* tp_weaklistoffset */
2983 0, /* tp_iter */
2984 0, /* tp_iternext */
2985 tzinfo_methods, /* tp_methods */
2986 0, /* tp_members */
2987 0, /* tp_getset */
2988 0, /* tp_base */
2989 0, /* tp_dict */
2990 0, /* tp_descr_get */
2991 0, /* tp_descr_set */
2992 0, /* tp_dictoffset */
2993 0, /* tp_init */
2994 0, /* tp_alloc */
2995 PyType_GenericNew, /* tp_new */
2996 0, /* tp_free */
2997};
2998
2999/*
Tim Peters37f39822003-01-10 03:49:02 +00003000 * PyDateTime_Time implementation.
Tim Peters2a799bf2002-12-16 20:18:38 +00003001 */
3002
Tim Peters37f39822003-01-10 03:49:02 +00003003/* Accessor properties.
Tim Peters2a799bf2002-12-16 20:18:38 +00003004 */
3005
3006static PyObject *
Tim Peters37f39822003-01-10 03:49:02 +00003007time_hour(PyDateTime_Time *self, void *unused)
Tim Peters2a799bf2002-12-16 20:18:38 +00003008{
Christian Heimes217cfd12007-12-02 14:31:20 +00003009 return PyLong_FromLong(TIME_GET_HOUR(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00003010}
3011
Tim Peters37f39822003-01-10 03:49:02 +00003012static PyObject *
3013time_minute(PyDateTime_Time *self, void *unused)
3014{
Christian Heimes217cfd12007-12-02 14:31:20 +00003015 return PyLong_FromLong(TIME_GET_MINUTE(self));
Tim Peters37f39822003-01-10 03:49:02 +00003016}
3017
3018/* The name time_second conflicted with some platform header file. */
3019static PyObject *
3020py_time_second(PyDateTime_Time *self, void *unused)
3021{
Christian Heimes217cfd12007-12-02 14:31:20 +00003022 return PyLong_FromLong(TIME_GET_SECOND(self));
Tim Peters37f39822003-01-10 03:49:02 +00003023}
3024
3025static PyObject *
3026time_microsecond(PyDateTime_Time *self, void *unused)
3027{
Christian Heimes217cfd12007-12-02 14:31:20 +00003028 return PyLong_FromLong(TIME_GET_MICROSECOND(self));
Tim Peters37f39822003-01-10 03:49:02 +00003029}
3030
3031static PyObject *
3032time_tzinfo(PyDateTime_Time *self, void *unused)
3033{
Tim Petersa032d2e2003-01-11 00:15:54 +00003034 PyObject *result = HASTZINFO(self) ? self->tzinfo : Py_None;
Tim Peters37f39822003-01-10 03:49:02 +00003035 Py_INCREF(result);
3036 return result;
3037}
3038
3039static PyGetSetDef time_getset[] = {
3040 {"hour", (getter)time_hour},
3041 {"minute", (getter)time_minute},
3042 {"second", (getter)py_time_second},
3043 {"microsecond", (getter)time_microsecond},
3044 {"tzinfo", (getter)time_tzinfo},
Tim Peters2a799bf2002-12-16 20:18:38 +00003045 {NULL}
3046};
3047
3048/*
3049 * Constructors.
3050 */
3051
Martin v. Löwis02cbf4a2006-02-27 17:20:04 +00003052static char *time_kws[] = {"hour", "minute", "second", "microsecond",
Tim Peters37f39822003-01-10 03:49:02 +00003053 "tzinfo", NULL};
Tim Peters12bf3392002-12-24 05:41:27 +00003054
Tim Peters2a799bf2002-12-16 20:18:38 +00003055static PyObject *
Tim Peters37f39822003-01-10 03:49:02 +00003056time_new(PyTypeObject *type, PyObject *args, PyObject *kw)
Tim Peters2a799bf2002-12-16 20:18:38 +00003057{
3058 PyObject *self = NULL;
Tim Peters70533e22003-02-01 04:40:04 +00003059 PyObject *state;
Tim Peters2a799bf2002-12-16 20:18:38 +00003060 int hour = 0;
3061 int minute = 0;
3062 int second = 0;
3063 int usecond = 0;
3064 PyObject *tzinfo = Py_None;
3065
Guido van Rossum177e41a2003-01-30 22:06:23 +00003066 /* Check for invocation from pickle with __getstate__ state */
3067 if (PyTuple_GET_SIZE(args) >= 1 &&
3068 PyTuple_GET_SIZE(args) <= 2 &&
Christian Heimes72b710a2008-05-26 13:28:38 +00003069 PyBytes_Check(state = PyTuple_GET_ITEM(args, 0)) &&
3070 PyBytes_GET_SIZE(state) == _PyDateTime_TIME_DATASIZE &&
3071 ((unsigned char) (PyBytes_AS_STRING(state)[0])) < 24)
Guido van Rossum177e41a2003-01-30 22:06:23 +00003072 {
Tim Peters70533e22003-02-01 04:40:04 +00003073 PyDateTime_Time *me;
3074 char aware;
3075
3076 if (PyTuple_GET_SIZE(args) == 2) {
Guido van Rossum177e41a2003-01-30 22:06:23 +00003077 tzinfo = PyTuple_GET_ITEM(args, 1);
Tim Peters70533e22003-02-01 04:40:04 +00003078 if (check_tzinfo_subclass(tzinfo) < 0) {
3079 PyErr_SetString(PyExc_TypeError, "bad "
3080 "tzinfo state arg");
3081 return NULL;
Guido van Rossum177e41a2003-01-30 22:06:23 +00003082 }
3083 }
Tim Peters70533e22003-02-01 04:40:04 +00003084 aware = (char)(tzinfo != Py_None);
Tim Peters604c0132004-06-07 23:04:33 +00003085 me = (PyDateTime_Time *) (type->tp_alloc(type, aware));
Tim Peters70533e22003-02-01 04:40:04 +00003086 if (me != NULL) {
Christian Heimes72b710a2008-05-26 13:28:38 +00003087 char *pdata = PyBytes_AS_STRING(state);
Tim Peters70533e22003-02-01 04:40:04 +00003088
3089 memcpy(me->data, pdata, _PyDateTime_TIME_DATASIZE);
3090 me->hashcode = -1;
3091 me->hastzinfo = aware;
3092 if (aware) {
3093 Py_INCREF(tzinfo);
3094 me->tzinfo = tzinfo;
3095 }
3096 }
3097 return (PyObject *)me;
Guido van Rossum177e41a2003-01-30 22:06:23 +00003098 }
3099
Tim Peters37f39822003-01-10 03:49:02 +00003100 if (PyArg_ParseTupleAndKeywords(args, kw, "|iiiiO", time_kws,
Tim Peters2a799bf2002-12-16 20:18:38 +00003101 &hour, &minute, &second, &usecond,
3102 &tzinfo)) {
3103 if (check_time_args(hour, minute, second, usecond) < 0)
3104 return NULL;
3105 if (check_tzinfo_subclass(tzinfo) < 0)
3106 return NULL;
Tim Petersa98924a2003-05-17 05:55:19 +00003107 self = new_time_ex(hour, minute, second, usecond, tzinfo,
3108 type);
Tim Peters2a799bf2002-12-16 20:18:38 +00003109 }
3110 return self;
3111}
3112
3113/*
3114 * Destructor.
3115 */
3116
3117static void
Tim Peters37f39822003-01-10 03:49:02 +00003118time_dealloc(PyDateTime_Time *self)
Tim Peters2a799bf2002-12-16 20:18:38 +00003119{
Tim Petersa032d2e2003-01-11 00:15:54 +00003120 if (HASTZINFO(self)) {
Tim Peters37f39822003-01-10 03:49:02 +00003121 Py_XDECREF(self->tzinfo);
Neal Norwitz8e914d92003-01-10 15:29:16 +00003122 }
Christian Heimes90aa7642007-12-19 02:45:37 +00003123 Py_TYPE(self)->tp_free((PyObject *)self);
Tim Peters2a799bf2002-12-16 20:18:38 +00003124}
3125
3126/*
Tim Peters855fe882002-12-22 03:43:39 +00003127 * Indirect access to tzinfo methods.
Tim Peters2a799bf2002-12-16 20:18:38 +00003128 */
3129
Tim Peters2a799bf2002-12-16 20:18:38 +00003130/* These are all METH_NOARGS, so don't need to check the arglist. */
3131static PyObject *
Tim Peters37f39822003-01-10 03:49:02 +00003132time_utcoffset(PyDateTime_Time *self, PyObject *unused) {
Tim Petersa032d2e2003-01-11 00:15:54 +00003133 return offset_as_timedelta(HASTZINFO(self) ? self->tzinfo : Py_None,
Tim Peters37f39822003-01-10 03:49:02 +00003134 "utcoffset", Py_None);
Tim Peters2a799bf2002-12-16 20:18:38 +00003135}
3136
3137static PyObject *
Tim Peters37f39822003-01-10 03:49:02 +00003138time_dst(PyDateTime_Time *self, PyObject *unused) {
Tim Petersa032d2e2003-01-11 00:15:54 +00003139 return offset_as_timedelta(HASTZINFO(self) ? self->tzinfo : Py_None,
Tim Peters37f39822003-01-10 03:49:02 +00003140 "dst", Py_None);
Tim Peters855fe882002-12-22 03:43:39 +00003141}
3142
3143static PyObject *
Tim Peters37f39822003-01-10 03:49:02 +00003144time_tzname(PyDateTime_Time *self, PyObject *unused) {
Tim Petersa032d2e2003-01-11 00:15:54 +00003145 return call_tzname(HASTZINFO(self) ? self->tzinfo : Py_None,
Tim Peters37f39822003-01-10 03:49:02 +00003146 Py_None);
Tim Peters2a799bf2002-12-16 20:18:38 +00003147}
3148
3149/*
Tim Peters37f39822003-01-10 03:49:02 +00003150 * Various ways to turn a time into a string.
Tim Peters2a799bf2002-12-16 20:18:38 +00003151 */
3152
3153static PyObject *
Tim Peters37f39822003-01-10 03:49:02 +00003154time_repr(PyDateTime_Time *self)
Tim Peters2a799bf2002-12-16 20:18:38 +00003155{
Christian Heimes90aa7642007-12-19 02:45:37 +00003156 const char *type_name = Py_TYPE(self)->tp_name;
Tim Peters37f39822003-01-10 03:49:02 +00003157 int h = TIME_GET_HOUR(self);
3158 int m = TIME_GET_MINUTE(self);
3159 int s = TIME_GET_SECOND(self);
3160 int us = TIME_GET_MICROSECOND(self);
3161 PyObject *result = NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00003162
Tim Peters37f39822003-01-10 03:49:02 +00003163 if (us)
Walter Dörwald7569dfe2007-05-19 21:49:49 +00003164 result = PyUnicode_FromFormat("%s(%d, %d, %d, %d)",
3165 type_name, h, m, s, us);
Tim Peters37f39822003-01-10 03:49:02 +00003166 else if (s)
Walter Dörwald7569dfe2007-05-19 21:49:49 +00003167 result = PyUnicode_FromFormat("%s(%d, %d, %d)",
3168 type_name, h, m, s);
Tim Peters37f39822003-01-10 03:49:02 +00003169 else
Walter Dörwald7569dfe2007-05-19 21:49:49 +00003170 result = PyUnicode_FromFormat("%s(%d, %d)", type_name, h, m);
Tim Petersa032d2e2003-01-11 00:15:54 +00003171 if (result != NULL && HASTZINFO(self))
Tim Peters37f39822003-01-10 03:49:02 +00003172 result = append_keyword_tzinfo(result, self->tzinfo);
3173 return result;
Tim Peters2a799bf2002-12-16 20:18:38 +00003174}
3175
Tim Peters37f39822003-01-10 03:49:02 +00003176static PyObject *
3177time_str(PyDateTime_Time *self)
3178{
3179 return PyObject_CallMethod((PyObject *)self, "isoformat", "()");
3180}
Tim Peters2a799bf2002-12-16 20:18:38 +00003181
3182static PyObject *
Thomas Wouterscf297e42007-02-23 15:07:44 +00003183time_isoformat(PyDateTime_Time *self, PyObject *unused)
Tim Peters2a799bf2002-12-16 20:18:38 +00003184{
3185 char buf[100];
Tim Peters37f39822003-01-10 03:49:02 +00003186 PyObject *result;
Walter Dörwaldbafa1372007-05-31 17:50:48 +00003187 int us = TIME_GET_MICROSECOND(self);;
Tim Peters2a799bf2002-12-16 20:18:38 +00003188
Walter Dörwaldbafa1372007-05-31 17:50:48 +00003189 if (us)
3190 result = PyUnicode_FromFormat("%02d:%02d:%02d.%06d",
3191 TIME_GET_HOUR(self),
3192 TIME_GET_MINUTE(self),
3193 TIME_GET_SECOND(self),
3194 us);
3195 else
3196 result = PyUnicode_FromFormat("%02d:%02d:%02d",
3197 TIME_GET_HOUR(self),
3198 TIME_GET_MINUTE(self),
3199 TIME_GET_SECOND(self));
Tim Peters37f39822003-01-10 03:49:02 +00003200
Tim Petersa032d2e2003-01-11 00:15:54 +00003201 if (result == NULL || ! HASTZINFO(self) || self->tzinfo == Py_None)
Tim Peters2a799bf2002-12-16 20:18:38 +00003202 return result;
3203
3204 /* We need to append the UTC offset. */
3205 if (format_utcoffset(buf, sizeof(buf), ":", self->tzinfo,
Tim Petersbad8ff02002-12-30 20:52:32 +00003206 Py_None) < 0) {
Tim Peters2a799bf2002-12-16 20:18:38 +00003207 Py_DECREF(result);
3208 return NULL;
3209 }
Walter Dörwaldbafa1372007-05-31 17:50:48 +00003210 PyUnicode_AppendAndDel(&result, PyUnicode_FromString(buf));
Tim Peters2a799bf2002-12-16 20:18:38 +00003211 return result;
3212}
3213
Tim Peters37f39822003-01-10 03:49:02 +00003214static PyObject *
3215time_strftime(PyDateTime_Time *self, PyObject *args, PyObject *kw)
3216{
3217 PyObject *result;
Tim Peters37f39822003-01-10 03:49:02 +00003218 PyObject *tuple;
Georg Brandlf78e02b2008-06-10 17:40:04 +00003219 PyObject *format;
Martin v. Löwis02cbf4a2006-02-27 17:20:04 +00003220 static char *keywords[] = {"format", NULL};
Tim Peters37f39822003-01-10 03:49:02 +00003221
Guido van Rossum98297ee2007-11-06 21:34:58 +00003222 if (! PyArg_ParseTupleAndKeywords(args, kw, "U:strftime", keywords,
Guido van Rossumbce56a62007-05-10 18:04:33 +00003223 &format))
Tim Peters37f39822003-01-10 03:49:02 +00003224 return NULL;
3225
3226 /* Python's strftime does insane things with the year part of the
3227 * timetuple. The year is forced to (the otherwise nonsensical)
3228 * 1900 to worm around that.
3229 */
3230 tuple = Py_BuildValue("iiiiiiiii",
Brett Cannond1080a32004-03-02 04:38:10 +00003231 1900, 1, 1, /* year, month, day */
Tim Peters37f39822003-01-10 03:49:02 +00003232 TIME_GET_HOUR(self),
3233 TIME_GET_MINUTE(self),
3234 TIME_GET_SECOND(self),
Brett Cannond1080a32004-03-02 04:38:10 +00003235 0, 1, -1); /* weekday, daynum, dst */
Tim Peters37f39822003-01-10 03:49:02 +00003236 if (tuple == NULL)
3237 return NULL;
3238 assert(PyTuple_Size(tuple) == 9);
Georg Brandlf78e02b2008-06-10 17:40:04 +00003239 result = wrap_strftime((PyObject *)self, format, tuple,
3240 Py_None);
Tim Peters37f39822003-01-10 03:49:02 +00003241 Py_DECREF(tuple);
3242 return result;
3243}
Tim Peters2a799bf2002-12-16 20:18:38 +00003244
3245/*
3246 * Miscellaneous methods.
3247 */
3248
Tim Peters37f39822003-01-10 03:49:02 +00003249static PyObject *
Guido van Rossum19960592006-08-24 17:29:38 +00003250time_richcompare(PyObject *self, PyObject *other, int op)
Tim Peters37f39822003-01-10 03:49:02 +00003251{
3252 int diff;
3253 naivety n1, n2;
3254 int offset1, offset2;
3255
3256 if (! PyTime_Check(other)) {
Guido van Rossum19960592006-08-24 17:29:38 +00003257 Py_INCREF(Py_NotImplemented);
3258 return Py_NotImplemented;
Tim Peters37f39822003-01-10 03:49:02 +00003259 }
Guido van Rossum19960592006-08-24 17:29:38 +00003260 if (classify_two_utcoffsets(self, &offset1, &n1, Py_None,
3261 other, &offset2, &n2, Py_None) < 0)
Tim Peters37f39822003-01-10 03:49:02 +00003262 return NULL;
3263 assert(n1 != OFFSET_UNKNOWN && n2 != OFFSET_UNKNOWN);
3264 /* If they're both naive, or both aware and have the same offsets,
3265 * we get off cheap. Note that if they're both naive, offset1 ==
3266 * offset2 == 0 at this point.
3267 */
3268 if (n1 == n2 && offset1 == offset2) {
Guido van Rossum19960592006-08-24 17:29:38 +00003269 diff = memcmp(((PyDateTime_Time *)self)->data,
3270 ((PyDateTime_Time *)other)->data,
Tim Peters37f39822003-01-10 03:49:02 +00003271 _PyDateTime_TIME_DATASIZE);
3272 return diff_to_bool(diff, op);
3273 }
3274
3275 if (n1 == OFFSET_AWARE && n2 == OFFSET_AWARE) {
3276 assert(offset1 != offset2); /* else last "if" handled it */
3277 /* Convert everything except microseconds to seconds. These
3278 * can't overflow (no more than the # of seconds in 2 days).
3279 */
3280 offset1 = TIME_GET_HOUR(self) * 3600 +
3281 (TIME_GET_MINUTE(self) - offset1) * 60 +
3282 TIME_GET_SECOND(self);
3283 offset2 = TIME_GET_HOUR(other) * 3600 +
3284 (TIME_GET_MINUTE(other) - offset2) * 60 +
3285 TIME_GET_SECOND(other);
3286 diff = offset1 - offset2;
3287 if (diff == 0)
3288 diff = TIME_GET_MICROSECOND(self) -
3289 TIME_GET_MICROSECOND(other);
3290 return diff_to_bool(diff, op);
3291 }
3292
3293 assert(n1 != n2);
3294 PyErr_SetString(PyExc_TypeError,
3295 "can't compare offset-naive and "
3296 "offset-aware times");
3297 return NULL;
3298}
3299
3300static long
3301time_hash(PyDateTime_Time *self)
3302{
3303 if (self->hashcode == -1) {
3304 naivety n;
3305 int offset;
3306 PyObject *temp;
3307
3308 n = classify_utcoffset((PyObject *)self, Py_None, &offset);
3309 assert(n != OFFSET_UNKNOWN);
3310 if (n == OFFSET_ERROR)
3311 return -1;
3312
3313 /* Reduce this to a hash of another object. */
Guido van Rossumfd53fd62007-08-24 04:05:13 +00003314 if (offset == 0) {
3315 self->hashcode = generic_hash(
3316 (unsigned char *)self->data, _PyDateTime_TIME_DATASIZE);
3317 return self->hashcode;
3318 }
Tim Peters37f39822003-01-10 03:49:02 +00003319 else {
3320 int hour;
3321 int minute;
3322
3323 assert(n == OFFSET_AWARE);
Tim Petersa032d2e2003-01-11 00:15:54 +00003324 assert(HASTZINFO(self));
Tim Peters37f39822003-01-10 03:49:02 +00003325 hour = divmod(TIME_GET_HOUR(self) * 60 +
3326 TIME_GET_MINUTE(self) - offset,
3327 60,
3328 &minute);
3329 if (0 <= hour && hour < 24)
3330 temp = new_time(hour, minute,
3331 TIME_GET_SECOND(self),
3332 TIME_GET_MICROSECOND(self),
3333 Py_None);
3334 else
3335 temp = Py_BuildValue("iiii",
3336 hour, minute,
3337 TIME_GET_SECOND(self),
3338 TIME_GET_MICROSECOND(self));
3339 }
3340 if (temp != NULL) {
3341 self->hashcode = PyObject_Hash(temp);
3342 Py_DECREF(temp);
3343 }
3344 }
3345 return self->hashcode;
3346}
Tim Peters2a799bf2002-12-16 20:18:38 +00003347
Tim Peters12bf3392002-12-24 05:41:27 +00003348static PyObject *
Tim Peters37f39822003-01-10 03:49:02 +00003349time_replace(PyDateTime_Time *self, PyObject *args, PyObject *kw)
Tim Peters12bf3392002-12-24 05:41:27 +00003350{
3351 PyObject *clone;
3352 PyObject *tuple;
3353 int hh = TIME_GET_HOUR(self);
3354 int mm = TIME_GET_MINUTE(self);
3355 int ss = TIME_GET_SECOND(self);
3356 int us = TIME_GET_MICROSECOND(self);
Tim Petersa032d2e2003-01-11 00:15:54 +00003357 PyObject *tzinfo = HASTZINFO(self) ? self->tzinfo : Py_None;
Tim Peters12bf3392002-12-24 05:41:27 +00003358
3359 if (! PyArg_ParseTupleAndKeywords(args, kw, "|iiiiO:replace",
Tim Peters37f39822003-01-10 03:49:02 +00003360 time_kws,
Tim Peters12bf3392002-12-24 05:41:27 +00003361 &hh, &mm, &ss, &us, &tzinfo))
3362 return NULL;
3363 tuple = Py_BuildValue("iiiiO", hh, mm, ss, us, tzinfo);
3364 if (tuple == NULL)
3365 return NULL;
Christian Heimes90aa7642007-12-19 02:45:37 +00003366 clone = time_new(Py_TYPE(self), tuple, NULL);
Tim Peters12bf3392002-12-24 05:41:27 +00003367 Py_DECREF(tuple);
3368 return clone;
3369}
3370
Tim Peters2a799bf2002-12-16 20:18:38 +00003371static int
Jack Diederich4dafcc42006-11-28 19:15:13 +00003372time_bool(PyDateTime_Time *self)
Tim Peters2a799bf2002-12-16 20:18:38 +00003373{
3374 int offset;
3375 int none;
3376
3377 if (TIME_GET_SECOND(self) || TIME_GET_MICROSECOND(self)) {
3378 /* Since utcoffset is in whole minutes, nothing can
3379 * alter the conclusion that this is nonzero.
3380 */
3381 return 1;
3382 }
3383 offset = 0;
Tim Petersa032d2e2003-01-11 00:15:54 +00003384 if (HASTZINFO(self) && self->tzinfo != Py_None) {
Tim Petersbad8ff02002-12-30 20:52:32 +00003385 offset = call_utcoffset(self->tzinfo, Py_None, &none);
Tim Peters2a799bf2002-12-16 20:18:38 +00003386 if (offset == -1 && PyErr_Occurred())
3387 return -1;
3388 }
3389 return (TIME_GET_MINUTE(self) - offset + TIME_GET_HOUR(self)*60) != 0;
3390}
3391
Tim Peters371935f2003-02-01 01:52:50 +00003392/* Pickle support, a simple use of __reduce__. */
Tim Peters2a799bf2002-12-16 20:18:38 +00003393
Tim Peters33e0f382003-01-10 02:05:14 +00003394/* Let basestate be the non-tzinfo data string.
Tim Peters2a799bf2002-12-16 20:18:38 +00003395 * If tzinfo is None, this returns (basestate,), else (basestate, tzinfo).
3396 * So it's a tuple in any (non-error) case.
Tim Petersb57f8f02003-02-01 02:54:15 +00003397 * __getstate__ isn't exposed.
Tim Peters2a799bf2002-12-16 20:18:38 +00003398 */
3399static PyObject *
Tim Peters37f39822003-01-10 03:49:02 +00003400time_getstate(PyDateTime_Time *self)
Tim Peters2a799bf2002-12-16 20:18:38 +00003401{
3402 PyObject *basestate;
3403 PyObject *result = NULL;
3404
Christian Heimes72b710a2008-05-26 13:28:38 +00003405 basestate = PyBytes_FromStringAndSize((char *)self->data,
Tim Peters33e0f382003-01-10 02:05:14 +00003406 _PyDateTime_TIME_DATASIZE);
Tim Peters2a799bf2002-12-16 20:18:38 +00003407 if (basestate != NULL) {
Tim Petersa032d2e2003-01-11 00:15:54 +00003408 if (! HASTZINFO(self) || self->tzinfo == Py_None)
Raymond Hettinger8ae46892003-10-12 19:09:37 +00003409 result = PyTuple_Pack(1, basestate);
Tim Peters2a799bf2002-12-16 20:18:38 +00003410 else
Raymond Hettinger8ae46892003-10-12 19:09:37 +00003411 result = PyTuple_Pack(2, basestate, self->tzinfo);
Tim Peters2a799bf2002-12-16 20:18:38 +00003412 Py_DECREF(basestate);
3413 }
3414 return result;
3415}
3416
3417static PyObject *
Guido van Rossum177e41a2003-01-30 22:06:23 +00003418time_reduce(PyDateTime_Time *self, PyObject *arg)
Tim Peters2a799bf2002-12-16 20:18:38 +00003419{
Christian Heimes90aa7642007-12-19 02:45:37 +00003420 return Py_BuildValue("(ON)", Py_TYPE(self), time_getstate(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00003421}
3422
Tim Peters37f39822003-01-10 03:49:02 +00003423static PyMethodDef time_methods[] = {
Guido van Rossum177e41a2003-01-30 22:06:23 +00003424
Thomas Wouterscf297e42007-02-23 15:07:44 +00003425 {"isoformat", (PyCFunction)time_isoformat, METH_NOARGS,
Tim Peters2a799bf2002-12-16 20:18:38 +00003426 PyDoc_STR("Return string in ISO 8601 format, HH:MM:SS[.mmmmmm]"
3427 "[+HH:MM].")},
3428
Guido van Rossumd59da4b2007-05-22 18:11:13 +00003429 {"strftime", (PyCFunction)time_strftime, METH_VARARGS | METH_KEYWORDS,
Tim Peters37f39822003-01-10 03:49:02 +00003430 PyDoc_STR("format -> strftime() style string.")},
3431
Eric Smith8fd3eba2008-02-17 19:48:00 +00003432 {"__format__", (PyCFunction)date_format, METH_VARARGS,
Eric Smith1ba31142007-09-11 18:06:02 +00003433 PyDoc_STR("Formats self with strftime.")},
3434
Tim Peters37f39822003-01-10 03:49:02 +00003435 {"utcoffset", (PyCFunction)time_utcoffset, METH_NOARGS,
Tim Peters2a799bf2002-12-16 20:18:38 +00003436 PyDoc_STR("Return self.tzinfo.utcoffset(self).")},
3437
Tim Peters37f39822003-01-10 03:49:02 +00003438 {"tzname", (PyCFunction)time_tzname, METH_NOARGS,
Tim Peters2a799bf2002-12-16 20:18:38 +00003439 PyDoc_STR("Return self.tzinfo.tzname(self).")},
3440
Tim Peters37f39822003-01-10 03:49:02 +00003441 {"dst", (PyCFunction)time_dst, METH_NOARGS,
Tim Peters2a799bf2002-12-16 20:18:38 +00003442 PyDoc_STR("Return self.tzinfo.dst(self).")},
3443
Guido van Rossumd59da4b2007-05-22 18:11:13 +00003444 {"replace", (PyCFunction)time_replace, METH_VARARGS | METH_KEYWORDS,
Tim Peters37f39822003-01-10 03:49:02 +00003445 PyDoc_STR("Return time with new specified fields.")},
Tim Peters12bf3392002-12-24 05:41:27 +00003446
Guido van Rossum177e41a2003-01-30 22:06:23 +00003447 {"__reduce__", (PyCFunction)time_reduce, METH_NOARGS,
3448 PyDoc_STR("__reduce__() -> (cls, state)")},
3449
Tim Peters2a799bf2002-12-16 20:18:38 +00003450 {NULL, NULL}
Tim Peters2a799bf2002-12-16 20:18:38 +00003451};
3452
Tim Peters37f39822003-01-10 03:49:02 +00003453static char time_doc[] =
Raymond Hettinger3a4231d2004-12-19 20:13:24 +00003454PyDoc_STR("time([hour[, minute[, second[, microsecond[, tzinfo]]]]]) --> a time object\n\
3455\n\
3456All arguments are optional. tzinfo may be None, or an instance of\n\
3457a tzinfo subclass. The remaining arguments may be ints or longs.\n");
Tim Peters2a799bf2002-12-16 20:18:38 +00003458
Tim Peters37f39822003-01-10 03:49:02 +00003459static PyNumberMethods time_as_number = {
Tim Peters2a799bf2002-12-16 20:18:38 +00003460 0, /* nb_add */
3461 0, /* nb_subtract */
3462 0, /* nb_multiply */
Tim Peters2a799bf2002-12-16 20:18:38 +00003463 0, /* nb_remainder */
3464 0, /* nb_divmod */
3465 0, /* nb_power */
3466 0, /* nb_negative */
3467 0, /* nb_positive */
3468 0, /* nb_absolute */
Jack Diederich4dafcc42006-11-28 19:15:13 +00003469 (inquiry)time_bool, /* nb_bool */
Tim Peters2a799bf2002-12-16 20:18:38 +00003470};
3471
Neal Norwitz227b5332006-03-22 09:28:35 +00003472static PyTypeObject PyDateTime_TimeType = {
Martin v. Löwis9f2e3462007-07-21 17:22:18 +00003473 PyVarObject_HEAD_INIT(NULL, 0)
Tim Peters0bf60bd2003-01-08 20:40:01 +00003474 "datetime.time", /* tp_name */
Tim Peters37f39822003-01-10 03:49:02 +00003475 sizeof(PyDateTime_Time), /* tp_basicsize */
Tim Peters2a799bf2002-12-16 20:18:38 +00003476 0, /* tp_itemsize */
Tim Peters37f39822003-01-10 03:49:02 +00003477 (destructor)time_dealloc, /* tp_dealloc */
Tim Peters2a799bf2002-12-16 20:18:38 +00003478 0, /* tp_print */
3479 0, /* tp_getattr */
3480 0, /* tp_setattr */
3481 0, /* tp_compare */
Tim Peters37f39822003-01-10 03:49:02 +00003482 (reprfunc)time_repr, /* tp_repr */
3483 &time_as_number, /* tp_as_number */
Tim Peters2a799bf2002-12-16 20:18:38 +00003484 0, /* tp_as_sequence */
3485 0, /* tp_as_mapping */
Tim Peters37f39822003-01-10 03:49:02 +00003486 (hashfunc)time_hash, /* tp_hash */
Tim Peters2a799bf2002-12-16 20:18:38 +00003487 0, /* tp_call */
Tim Peters37f39822003-01-10 03:49:02 +00003488 (reprfunc)time_str, /* tp_str */
Tim Peters2a799bf2002-12-16 20:18:38 +00003489 PyObject_GenericGetAttr, /* tp_getattro */
3490 0, /* tp_setattro */
3491 0, /* tp_as_buffer */
Guido van Rossum3cf5b1e2006-07-27 21:53:35 +00003492 Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE, /* tp_flags */
Tim Peters37f39822003-01-10 03:49:02 +00003493 time_doc, /* tp_doc */
Tim Peters2a799bf2002-12-16 20:18:38 +00003494 0, /* tp_traverse */
3495 0, /* tp_clear */
Guido van Rossum19960592006-08-24 17:29:38 +00003496 time_richcompare, /* tp_richcompare */
Tim Peters2a799bf2002-12-16 20:18:38 +00003497 0, /* tp_weaklistoffset */
3498 0, /* tp_iter */
3499 0, /* tp_iternext */
Tim Peters37f39822003-01-10 03:49:02 +00003500 time_methods, /* tp_methods */
Tim Peters2a799bf2002-12-16 20:18:38 +00003501 0, /* tp_members */
Tim Peters37f39822003-01-10 03:49:02 +00003502 time_getset, /* tp_getset */
3503 0, /* tp_base */
Tim Peters2a799bf2002-12-16 20:18:38 +00003504 0, /* tp_dict */
3505 0, /* tp_descr_get */
3506 0, /* tp_descr_set */
3507 0, /* tp_dictoffset */
3508 0, /* tp_init */
Tim Petersa98924a2003-05-17 05:55:19 +00003509 time_alloc, /* tp_alloc */
Tim Peters37f39822003-01-10 03:49:02 +00003510 time_new, /* tp_new */
Tim Peters4c530132003-05-16 22:44:06 +00003511 0, /* tp_free */
Tim Peters2a799bf2002-12-16 20:18:38 +00003512};
3513
3514/*
Tim Petersa9bc1682003-01-11 03:39:11 +00003515 * PyDateTime_DateTime implementation.
Tim Peters2a799bf2002-12-16 20:18:38 +00003516 */
3517
Tim Petersa9bc1682003-01-11 03:39:11 +00003518/* Accessor properties. Properties for day, month, and year are inherited
3519 * from date.
Tim Peters2a799bf2002-12-16 20:18:38 +00003520 */
3521
3522static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00003523datetime_hour(PyDateTime_DateTime *self, void *unused)
Tim Peters2a799bf2002-12-16 20:18:38 +00003524{
Christian Heimes217cfd12007-12-02 14:31:20 +00003525 return PyLong_FromLong(DATE_GET_HOUR(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00003526}
3527
Tim Petersa9bc1682003-01-11 03:39:11 +00003528static PyObject *
3529datetime_minute(PyDateTime_DateTime *self, void *unused)
3530{
Christian Heimes217cfd12007-12-02 14:31:20 +00003531 return PyLong_FromLong(DATE_GET_MINUTE(self));
Tim Petersa9bc1682003-01-11 03:39:11 +00003532}
3533
3534static PyObject *
3535datetime_second(PyDateTime_DateTime *self, void *unused)
3536{
Christian Heimes217cfd12007-12-02 14:31:20 +00003537 return PyLong_FromLong(DATE_GET_SECOND(self));
Tim Petersa9bc1682003-01-11 03:39:11 +00003538}
3539
3540static PyObject *
3541datetime_microsecond(PyDateTime_DateTime *self, void *unused)
3542{
Christian Heimes217cfd12007-12-02 14:31:20 +00003543 return PyLong_FromLong(DATE_GET_MICROSECOND(self));
Tim Petersa9bc1682003-01-11 03:39:11 +00003544}
3545
3546static PyObject *
3547datetime_tzinfo(PyDateTime_DateTime *self, void *unused)
3548{
3549 PyObject *result = HASTZINFO(self) ? self->tzinfo : Py_None;
3550 Py_INCREF(result);
3551 return result;
3552}
3553
3554static PyGetSetDef datetime_getset[] = {
3555 {"hour", (getter)datetime_hour},
3556 {"minute", (getter)datetime_minute},
3557 {"second", (getter)datetime_second},
3558 {"microsecond", (getter)datetime_microsecond},
3559 {"tzinfo", (getter)datetime_tzinfo},
Tim Peters2a799bf2002-12-16 20:18:38 +00003560 {NULL}
3561};
3562
3563/*
3564 * Constructors.
Tim Peters2a799bf2002-12-16 20:18:38 +00003565 */
3566
Martin v. Löwis02cbf4a2006-02-27 17:20:04 +00003567static char *datetime_kws[] = {
Tim Peters12bf3392002-12-24 05:41:27 +00003568 "year", "month", "day", "hour", "minute", "second",
3569 "microsecond", "tzinfo", NULL
3570};
3571
Tim Peters2a799bf2002-12-16 20:18:38 +00003572static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00003573datetime_new(PyTypeObject *type, PyObject *args, PyObject *kw)
Tim Peters2a799bf2002-12-16 20:18:38 +00003574{
3575 PyObject *self = NULL;
Tim Peters70533e22003-02-01 04:40:04 +00003576 PyObject *state;
Tim Peters2a799bf2002-12-16 20:18:38 +00003577 int year;
3578 int month;
3579 int day;
3580 int hour = 0;
3581 int minute = 0;
3582 int second = 0;
3583 int usecond = 0;
3584 PyObject *tzinfo = Py_None;
3585
Guido van Rossum177e41a2003-01-30 22:06:23 +00003586 /* Check for invocation from pickle with __getstate__ state */
3587 if (PyTuple_GET_SIZE(args) >= 1 &&
3588 PyTuple_GET_SIZE(args) <= 2 &&
Christian Heimes72b710a2008-05-26 13:28:38 +00003589 PyBytes_Check(state = PyTuple_GET_ITEM(args, 0)) &&
3590 PyBytes_GET_SIZE(state) == _PyDateTime_DATETIME_DATASIZE &&
3591 MONTH_IS_SANE(PyBytes_AS_STRING(state)[2]))
Guido van Rossum177e41a2003-01-30 22:06:23 +00003592 {
Tim Peters70533e22003-02-01 04:40:04 +00003593 PyDateTime_DateTime *me;
3594 char aware;
3595
3596 if (PyTuple_GET_SIZE(args) == 2) {
Guido van Rossum177e41a2003-01-30 22:06:23 +00003597 tzinfo = PyTuple_GET_ITEM(args, 1);
Tim Peters70533e22003-02-01 04:40:04 +00003598 if (check_tzinfo_subclass(tzinfo) < 0) {
3599 PyErr_SetString(PyExc_TypeError, "bad "
3600 "tzinfo state arg");
3601 return NULL;
Guido van Rossum177e41a2003-01-30 22:06:23 +00003602 }
3603 }
Tim Peters70533e22003-02-01 04:40:04 +00003604 aware = (char)(tzinfo != Py_None);
Tim Peters604c0132004-06-07 23:04:33 +00003605 me = (PyDateTime_DateTime *) (type->tp_alloc(type , aware));
Tim Peters70533e22003-02-01 04:40:04 +00003606 if (me != NULL) {
Christian Heimes72b710a2008-05-26 13:28:38 +00003607 char *pdata = PyBytes_AS_STRING(state);
Tim Peters70533e22003-02-01 04:40:04 +00003608
3609 memcpy(me->data, pdata, _PyDateTime_DATETIME_DATASIZE);
3610 me->hashcode = -1;
3611 me->hastzinfo = aware;
3612 if (aware) {
3613 Py_INCREF(tzinfo);
3614 me->tzinfo = tzinfo;
3615 }
3616 }
3617 return (PyObject *)me;
Guido van Rossum177e41a2003-01-30 22:06:23 +00003618 }
3619
Tim Petersa9bc1682003-01-11 03:39:11 +00003620 if (PyArg_ParseTupleAndKeywords(args, kw, "iii|iiiiO", datetime_kws,
Tim Peters2a799bf2002-12-16 20:18:38 +00003621 &year, &month, &day, &hour, &minute,
3622 &second, &usecond, &tzinfo)) {
3623 if (check_date_args(year, month, day) < 0)
3624 return NULL;
3625 if (check_time_args(hour, minute, second, usecond) < 0)
3626 return NULL;
3627 if (check_tzinfo_subclass(tzinfo) < 0)
3628 return NULL;
Tim Petersa98924a2003-05-17 05:55:19 +00003629 self = new_datetime_ex(year, month, day,
3630 hour, minute, second, usecond,
3631 tzinfo, type);
Tim Peters2a799bf2002-12-16 20:18:38 +00003632 }
3633 return self;
3634}
3635
Tim Petersa9bc1682003-01-11 03:39:11 +00003636/* TM_FUNC is the shared type of localtime() and gmtime(). */
3637typedef struct tm *(*TM_FUNC)(const time_t *timer);
3638
3639/* Internal helper.
3640 * Build datetime from a time_t and a distinct count of microseconds.
3641 * Pass localtime or gmtime for f, to control the interpretation of timet.
3642 */
3643static PyObject *
3644datetime_from_timet_and_us(PyObject *cls, TM_FUNC f, time_t timet, int us,
3645 PyObject *tzinfo)
3646{
3647 struct tm *tm;
3648 PyObject *result = NULL;
3649
3650 tm = f(&timet);
3651 if (tm) {
3652 /* The platform localtime/gmtime may insert leap seconds,
3653 * indicated by tm->tm_sec > 59. We don't care about them,
3654 * except to the extent that passing them on to the datetime
3655 * constructor would raise ValueError for a reason that
3656 * made no sense to the user.
3657 */
3658 if (tm->tm_sec > 59)
3659 tm->tm_sec = 59;
3660 result = PyObject_CallFunction(cls, "iiiiiiiO",
3661 tm->tm_year + 1900,
3662 tm->tm_mon + 1,
3663 tm->tm_mday,
3664 tm->tm_hour,
3665 tm->tm_min,
3666 tm->tm_sec,
3667 us,
3668 tzinfo);
3669 }
3670 else
3671 PyErr_SetString(PyExc_ValueError,
3672 "timestamp out of range for "
3673 "platform localtime()/gmtime() function");
3674 return result;
3675}
3676
3677/* Internal helper.
3678 * Build datetime from a Python timestamp. Pass localtime or gmtime for f,
3679 * to control the interpretation of the timestamp. Since a double doesn't
3680 * have enough bits to cover a datetime's full range of precision, it's
3681 * better to call datetime_from_timet_and_us provided you have a way
3682 * to get that much precision (e.g., C time() isn't good enough).
3683 */
3684static PyObject *
3685datetime_from_timestamp(PyObject *cls, TM_FUNC f, double timestamp,
3686 PyObject *tzinfo)
3687{
Tim Peters1b6f7a92004-06-20 02:50:16 +00003688 time_t timet;
3689 double fraction;
3690 int us;
Tim Petersa9bc1682003-01-11 03:39:11 +00003691
Tim Peters1b6f7a92004-06-20 02:50:16 +00003692 timet = _PyTime_DoubleToTimet(timestamp);
3693 if (timet == (time_t)-1 && PyErr_Occurred())
3694 return NULL;
3695 fraction = timestamp - (double)timet;
3696 us = (int)round_to_long(fraction * 1e6);
Guido van Rossumd8faa362007-04-27 19:54:29 +00003697 if (us < 0) {
3698 /* Truncation towards zero is not what we wanted
3699 for negative numbers (Python's mod semantics) */
3700 timet -= 1;
3701 us += 1000000;
3702 }
Thomas Wouters477c8d52006-05-27 19:21:47 +00003703 /* If timestamp is less than one microsecond smaller than a
3704 * full second, round up. Otherwise, ValueErrors are raised
3705 * for some floats. */
3706 if (us == 1000000) {
3707 timet += 1;
3708 us = 0;
3709 }
Tim Petersa9bc1682003-01-11 03:39:11 +00003710 return datetime_from_timet_and_us(cls, f, timet, us, tzinfo);
3711}
3712
3713/* Internal helper.
3714 * Build most accurate possible datetime for current time. Pass localtime or
3715 * gmtime for f as appropriate.
3716 */
3717static PyObject *
3718datetime_best_possible(PyObject *cls, TM_FUNC f, PyObject *tzinfo)
3719{
3720#ifdef HAVE_GETTIMEOFDAY
3721 struct timeval t;
3722
3723#ifdef GETTIMEOFDAY_NO_TZ
3724 gettimeofday(&t);
3725#else
3726 gettimeofday(&t, (struct timezone *)NULL);
3727#endif
3728 return datetime_from_timet_and_us(cls, f, t.tv_sec, (int)t.tv_usec,
3729 tzinfo);
3730
3731#else /* ! HAVE_GETTIMEOFDAY */
3732 /* No flavor of gettimeofday exists on this platform. Python's
3733 * time.time() does a lot of other platform tricks to get the
3734 * best time it can on the platform, and we're not going to do
3735 * better than that (if we could, the better code would belong
3736 * in time.time()!) We're limited by the precision of a double,
3737 * though.
3738 */
3739 PyObject *time;
3740 double dtime;
3741
3742 time = time_time();
3743 if (time == NULL)
3744 return NULL;
3745 dtime = PyFloat_AsDouble(time);
3746 Py_DECREF(time);
3747 if (dtime == -1.0 && PyErr_Occurred())
3748 return NULL;
3749 return datetime_from_timestamp(cls, f, dtime, tzinfo);
3750#endif /* ! HAVE_GETTIMEOFDAY */
3751}
3752
Tim Peters2a799bf2002-12-16 20:18:38 +00003753/* Return best possible local time -- this isn't constrained by the
3754 * precision of a timestamp.
3755 */
3756static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00003757datetime_now(PyObject *cls, PyObject *args, PyObject *kw)
Tim Peters2a799bf2002-12-16 20:18:38 +00003758{
Tim Peters10cadce2003-01-23 19:58:02 +00003759 PyObject *self;
Tim Peters2a799bf2002-12-16 20:18:38 +00003760 PyObject *tzinfo = Py_None;
Martin v. Löwis02cbf4a2006-02-27 17:20:04 +00003761 static char *keywords[] = {"tz", NULL};
Tim Peters2a799bf2002-12-16 20:18:38 +00003762
Tim Peters10cadce2003-01-23 19:58:02 +00003763 if (! PyArg_ParseTupleAndKeywords(args, kw, "|O:now", keywords,
3764 &tzinfo))
3765 return NULL;
3766 if (check_tzinfo_subclass(tzinfo) < 0)
3767 return NULL;
3768
3769 self = datetime_best_possible(cls,
3770 tzinfo == Py_None ? localtime : gmtime,
3771 tzinfo);
3772 if (self != NULL && tzinfo != Py_None) {
3773 /* Convert UTC to tzinfo's zone. */
3774 PyObject *temp = self;
Tim Peters2a44a8d2003-01-23 20:53:10 +00003775 self = PyObject_CallMethod(tzinfo, "fromutc", "O", self);
Tim Peters10cadce2003-01-23 19:58:02 +00003776 Py_DECREF(temp);
Tim Peters2a799bf2002-12-16 20:18:38 +00003777 }
3778 return self;
3779}
3780
Tim Petersa9bc1682003-01-11 03:39:11 +00003781/* Return best possible UTC time -- this isn't constrained by the
3782 * precision of a timestamp.
3783 */
3784static PyObject *
3785datetime_utcnow(PyObject *cls, PyObject *dummy)
3786{
3787 return datetime_best_possible(cls, gmtime, Py_None);
3788}
3789
Tim Peters2a799bf2002-12-16 20:18:38 +00003790/* Return new local datetime from timestamp (Python timestamp -- a double). */
3791static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00003792datetime_fromtimestamp(PyObject *cls, PyObject *args, PyObject *kw)
Tim Peters2a799bf2002-12-16 20:18:38 +00003793{
Tim Peters2a44a8d2003-01-23 20:53:10 +00003794 PyObject *self;
Tim Peters2a799bf2002-12-16 20:18:38 +00003795 double timestamp;
3796 PyObject *tzinfo = Py_None;
Martin v. Löwis02cbf4a2006-02-27 17:20:04 +00003797 static char *keywords[] = {"timestamp", "tz", NULL};
Tim Peters2a799bf2002-12-16 20:18:38 +00003798
Tim Peters2a44a8d2003-01-23 20:53:10 +00003799 if (! PyArg_ParseTupleAndKeywords(args, kw, "d|O:fromtimestamp",
3800 keywords, &timestamp, &tzinfo))
3801 return NULL;
3802 if (check_tzinfo_subclass(tzinfo) < 0)
3803 return NULL;
3804
3805 self = datetime_from_timestamp(cls,
3806 tzinfo == Py_None ? localtime : gmtime,
3807 timestamp,
3808 tzinfo);
3809 if (self != NULL && tzinfo != Py_None) {
3810 /* Convert UTC to tzinfo's zone. */
3811 PyObject *temp = self;
3812 self = PyObject_CallMethod(tzinfo, "fromutc", "O", self);
3813 Py_DECREF(temp);
Tim Peters2a799bf2002-12-16 20:18:38 +00003814 }
3815 return self;
3816}
3817
Tim Petersa9bc1682003-01-11 03:39:11 +00003818/* Return new UTC datetime from timestamp (Python timestamp -- a double). */
3819static PyObject *
3820datetime_utcfromtimestamp(PyObject *cls, PyObject *args)
3821{
3822 double timestamp;
3823 PyObject *result = NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00003824
Tim Petersa9bc1682003-01-11 03:39:11 +00003825 if (PyArg_ParseTuple(args, "d:utcfromtimestamp", &timestamp))
3826 result = datetime_from_timestamp(cls, gmtime, timestamp,
3827 Py_None);
3828 return result;
3829}
3830
Skip Montanaro0af3ade2005-01-13 04:12:31 +00003831/* Return new datetime from time.strptime(). */
3832static PyObject *
3833datetime_strptime(PyObject *cls, PyObject *args)
3834{
Christian Heimesdd15f6c2008-03-16 00:07:10 +00003835 static PyObject *module = NULL;
3836 PyObject *result = NULL, *obj, *st = NULL, *frac = NULL;
Guido van Rossume8a17aa2007-08-29 17:28:42 +00003837 const Py_UNICODE *string, *format;
Skip Montanaro0af3ade2005-01-13 04:12:31 +00003838
Guido van Rossumfd53fd62007-08-24 04:05:13 +00003839 if (!PyArg_ParseTuple(args, "uu:strptime", &string, &format))
Skip Montanaro0af3ade2005-01-13 04:12:31 +00003840 return NULL;
3841
Christian Heimesdd15f6c2008-03-16 00:07:10 +00003842 if (module == NULL &&
3843 (module = PyImport_ImportModuleNoBlock("_strptime")) == NULL)
Skip Montanaro0af3ade2005-01-13 04:12:31 +00003844 return NULL;
Skip Montanaro0af3ade2005-01-13 04:12:31 +00003845
Christian Heimesdd15f6c2008-03-16 00:07:10 +00003846 /* _strptime._strptime returns a two-element tuple. The first
3847 element is a time.struct_time object. The second is the
3848 microseconds (which are not defined for time.struct_time). */
Mark Dickinsonfc689dd2008-03-16 03:45:34 +00003849 obj = PyObject_CallMethod(module, "_strptime", "uu", string, format);
Skip Montanaro0af3ade2005-01-13 04:12:31 +00003850 if (obj != NULL) {
Christian Heimesdd15f6c2008-03-16 00:07:10 +00003851 int i, good_timetuple = 1;
3852 long int ia[7];
3853 if (PySequence_Check(obj) && PySequence_Size(obj) == 2) {
3854 st = PySequence_GetItem(obj, 0);
3855 frac = PySequence_GetItem(obj, 1);
3856 if (st == NULL || frac == NULL)
3857 good_timetuple = 0;
3858 /* copy y/m/d/h/m/s values out of the
3859 time.struct_time */
3860 if (good_timetuple &&
3861 PySequence_Check(st) &&
3862 PySequence_Size(st) >= 6) {
3863 for (i=0; i < 6; i++) {
3864 PyObject *p = PySequence_GetItem(st, i);
3865 if (p == NULL) {
3866 good_timetuple = 0;
3867 break;
3868 }
3869 if (PyLong_Check(p))
3870 ia[i] = PyLong_AsLong(p);
3871 else
3872 good_timetuple = 0;
3873 Py_DECREF(p);
Thomas Wouters49fd7fa2006-04-21 10:40:58 +00003874 }
Christian Heimesdd15f6c2008-03-16 00:07:10 +00003875/* if (PyLong_CheckExact(p)) {
Martin v. Löwisd1a1d1e2007-12-04 22:10:37 +00003876 ia[i] = PyLong_AsLongAndOverflow(p, &overflow);
3877 if (overflow)
3878 good_timetuple = 0;
3879 }
Skip Montanaro0af3ade2005-01-13 04:12:31 +00003880 else
3881 good_timetuple = 0;
3882 Py_DECREF(p);
Christian Heimesdd15f6c2008-03-16 00:07:10 +00003883*/ }
3884 else
3885 good_timetuple = 0;
3886 /* follow that up with a little dose of microseconds */
3887 if (PyLong_Check(frac))
3888 ia[6] = PyLong_AsLong(frac);
3889 else
3890 good_timetuple = 0;
3891 }
Skip Montanaro0af3ade2005-01-13 04:12:31 +00003892 else
3893 good_timetuple = 0;
3894 if (good_timetuple)
Christian Heimesdd15f6c2008-03-16 00:07:10 +00003895 result = PyObject_CallFunction(cls, "iiiiiii",
3896 ia[0], ia[1], ia[2],
3897 ia[3], ia[4], ia[5],
3898 ia[6]);
Skip Montanaro0af3ade2005-01-13 04:12:31 +00003899 else
3900 PyErr_SetString(PyExc_ValueError,
Christian Heimesdd15f6c2008-03-16 00:07:10 +00003901 "unexpected value from _strptime._strptime");
Skip Montanaro0af3ade2005-01-13 04:12:31 +00003902 }
Christian Heimesdd15f6c2008-03-16 00:07:10 +00003903 Py_XDECREF(obj);
3904 Py_XDECREF(st);
3905 Py_XDECREF(frac);
Skip Montanaro0af3ade2005-01-13 04:12:31 +00003906 return result;
3907}
3908
Tim Petersa9bc1682003-01-11 03:39:11 +00003909/* Return new datetime from date/datetime and time arguments. */
3910static PyObject *
3911datetime_combine(PyObject *cls, PyObject *args, PyObject *kw)
3912{
Martin v. Löwis02cbf4a2006-02-27 17:20:04 +00003913 static char *keywords[] = {"date", "time", NULL};
Tim Petersa9bc1682003-01-11 03:39:11 +00003914 PyObject *date;
3915 PyObject *time;
3916 PyObject *result = NULL;
3917
3918 if (PyArg_ParseTupleAndKeywords(args, kw, "O!O!:combine", keywords,
3919 &PyDateTime_DateType, &date,
3920 &PyDateTime_TimeType, &time)) {
3921 PyObject *tzinfo = Py_None;
3922
3923 if (HASTZINFO(time))
3924 tzinfo = ((PyDateTime_Time *)time)->tzinfo;
3925 result = PyObject_CallFunction(cls, "iiiiiiiO",
3926 GET_YEAR(date),
3927 GET_MONTH(date),
3928 GET_DAY(date),
3929 TIME_GET_HOUR(time),
3930 TIME_GET_MINUTE(time),
3931 TIME_GET_SECOND(time),
3932 TIME_GET_MICROSECOND(time),
3933 tzinfo);
3934 }
3935 return result;
3936}
Tim Peters2a799bf2002-12-16 20:18:38 +00003937
3938/*
3939 * Destructor.
3940 */
3941
3942static void
Tim Petersa9bc1682003-01-11 03:39:11 +00003943datetime_dealloc(PyDateTime_DateTime *self)
Tim Peters2a799bf2002-12-16 20:18:38 +00003944{
Tim Petersa9bc1682003-01-11 03:39:11 +00003945 if (HASTZINFO(self)) {
3946 Py_XDECREF(self->tzinfo);
3947 }
Christian Heimes90aa7642007-12-19 02:45:37 +00003948 Py_TYPE(self)->tp_free((PyObject *)self);
Tim Peters2a799bf2002-12-16 20:18:38 +00003949}
3950
3951/*
3952 * Indirect access to tzinfo methods.
3953 */
3954
Tim Peters2a799bf2002-12-16 20:18:38 +00003955/* These are all METH_NOARGS, so don't need to check the arglist. */
3956static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00003957datetime_utcoffset(PyDateTime_DateTime *self, PyObject *unused) {
3958 return offset_as_timedelta(HASTZINFO(self) ? self->tzinfo : Py_None,
3959 "utcoffset", (PyObject *)self);
Tim Peters2a799bf2002-12-16 20:18:38 +00003960}
3961
3962static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00003963datetime_dst(PyDateTime_DateTime *self, PyObject *unused) {
3964 return offset_as_timedelta(HASTZINFO(self) ? self->tzinfo : Py_None,
3965 "dst", (PyObject *)self);
Tim Peters855fe882002-12-22 03:43:39 +00003966}
3967
3968static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00003969datetime_tzname(PyDateTime_DateTime *self, PyObject *unused) {
3970 return call_tzname(HASTZINFO(self) ? self->tzinfo : Py_None,
3971 (PyObject *)self);
Tim Peters2a799bf2002-12-16 20:18:38 +00003972}
3973
3974/*
Tim Petersa9bc1682003-01-11 03:39:11 +00003975 * datetime arithmetic.
Tim Peters2a799bf2002-12-16 20:18:38 +00003976 */
3977
Tim Petersa9bc1682003-01-11 03:39:11 +00003978/* factor must be 1 (to add) or -1 (to subtract). The result inherits
3979 * the tzinfo state of date.
Tim Peters2a799bf2002-12-16 20:18:38 +00003980 */
3981static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00003982add_datetime_timedelta(PyDateTime_DateTime *date, PyDateTime_Delta *delta,
3983 int factor)
Tim Peters2a799bf2002-12-16 20:18:38 +00003984{
Tim Petersa9bc1682003-01-11 03:39:11 +00003985 /* Note that the C-level additions can't overflow, because of
3986 * invariant bounds on the member values.
3987 */
3988 int year = GET_YEAR(date);
3989 int month = GET_MONTH(date);
3990 int day = GET_DAY(date) + GET_TD_DAYS(delta) * factor;
3991 int hour = DATE_GET_HOUR(date);
3992 int minute = DATE_GET_MINUTE(date);
3993 int second = DATE_GET_SECOND(date) + GET_TD_SECONDS(delta) * factor;
3994 int microsecond = DATE_GET_MICROSECOND(date) +
3995 GET_TD_MICROSECONDS(delta) * factor;
Tim Peters2a799bf2002-12-16 20:18:38 +00003996
Tim Petersa9bc1682003-01-11 03:39:11 +00003997 assert(factor == 1 || factor == -1);
3998 if (normalize_datetime(&year, &month, &day,
3999 &hour, &minute, &second, &microsecond) < 0)
4000 return NULL;
4001 else
4002 return new_datetime(year, month, day,
4003 hour, minute, second, microsecond,
4004 HASTZINFO(date) ? date->tzinfo : Py_None);
Tim Peters2a799bf2002-12-16 20:18:38 +00004005}
4006
4007static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00004008datetime_add(PyObject *left, PyObject *right)
Tim Peters2a799bf2002-12-16 20:18:38 +00004009{
Tim Petersa9bc1682003-01-11 03:39:11 +00004010 if (PyDateTime_Check(left)) {
4011 /* datetime + ??? */
4012 if (PyDelta_Check(right))
4013 /* datetime + delta */
4014 return add_datetime_timedelta(
4015 (PyDateTime_DateTime *)left,
4016 (PyDateTime_Delta *)right,
4017 1);
4018 }
4019 else if (PyDelta_Check(left)) {
4020 /* delta + datetime */
4021 return add_datetime_timedelta((PyDateTime_DateTime *) right,
4022 (PyDateTime_Delta *) left,
4023 1);
4024 }
4025 Py_INCREF(Py_NotImplemented);
4026 return Py_NotImplemented;
Tim Peters2a799bf2002-12-16 20:18:38 +00004027}
4028
4029static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00004030datetime_subtract(PyObject *left, PyObject *right)
Tim Peters2a799bf2002-12-16 20:18:38 +00004031{
4032 PyObject *result = Py_NotImplemented;
4033
4034 if (PyDateTime_Check(left)) {
4035 /* datetime - ??? */
4036 if (PyDateTime_Check(right)) {
4037 /* datetime - datetime */
4038 naivety n1, n2;
4039 int offset1, offset2;
Tim Petersa9bc1682003-01-11 03:39:11 +00004040 int delta_d, delta_s, delta_us;
Tim Peters2a799bf2002-12-16 20:18:38 +00004041
Tim Peterse39a80c2002-12-30 21:28:52 +00004042 if (classify_two_utcoffsets(left, &offset1, &n1, left,
4043 right, &offset2, &n2,
4044 right) < 0)
Tim Peters00237032002-12-27 02:21:51 +00004045 return NULL;
Tim Peters8702d5f2002-12-27 02:26:16 +00004046 assert(n1 != OFFSET_UNKNOWN && n2 != OFFSET_UNKNOWN);
Tim Peters2a799bf2002-12-16 20:18:38 +00004047 if (n1 != n2) {
4048 PyErr_SetString(PyExc_TypeError,
4049 "can't subtract offset-naive and "
4050 "offset-aware datetimes");
4051 return NULL;
4052 }
Tim Petersa9bc1682003-01-11 03:39:11 +00004053 delta_d = ymd_to_ord(GET_YEAR(left),
4054 GET_MONTH(left),
4055 GET_DAY(left)) -
4056 ymd_to_ord(GET_YEAR(right),
4057 GET_MONTH(right),
4058 GET_DAY(right));
4059 /* These can't overflow, since the values are
4060 * normalized. At most this gives the number of
4061 * seconds in one day.
4062 */
4063 delta_s = (DATE_GET_HOUR(left) -
4064 DATE_GET_HOUR(right)) * 3600 +
4065 (DATE_GET_MINUTE(left) -
4066 DATE_GET_MINUTE(right)) * 60 +
4067 (DATE_GET_SECOND(left) -
4068 DATE_GET_SECOND(right));
4069 delta_us = DATE_GET_MICROSECOND(left) -
4070 DATE_GET_MICROSECOND(right);
Tim Peters2a799bf2002-12-16 20:18:38 +00004071 /* (left - offset1) - (right - offset2) =
4072 * (left - right) + (offset2 - offset1)
4073 */
Tim Petersa9bc1682003-01-11 03:39:11 +00004074 delta_s += (offset2 - offset1) * 60;
4075 result = new_delta(delta_d, delta_s, delta_us, 1);
Tim Peters2a799bf2002-12-16 20:18:38 +00004076 }
4077 else if (PyDelta_Check(right)) {
Tim Petersa9bc1682003-01-11 03:39:11 +00004078 /* datetime - delta */
4079 result = add_datetime_timedelta(
Tim Peters2a799bf2002-12-16 20:18:38 +00004080 (PyDateTime_DateTime *)left,
Tim Petersa9bc1682003-01-11 03:39:11 +00004081 (PyDateTime_Delta *)right,
4082 -1);
Tim Peters2a799bf2002-12-16 20:18:38 +00004083 }
4084 }
4085
4086 if (result == Py_NotImplemented)
4087 Py_INCREF(result);
4088 return result;
4089}
4090
4091/* Various ways to turn a datetime into a string. */
4092
4093static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00004094datetime_repr(PyDateTime_DateTime *self)
Tim Peters2a799bf2002-12-16 20:18:38 +00004095{
Christian Heimes90aa7642007-12-19 02:45:37 +00004096 const char *type_name = Py_TYPE(self)->tp_name;
Tim Petersa9bc1682003-01-11 03:39:11 +00004097 PyObject *baserepr;
Tim Peters2a799bf2002-12-16 20:18:38 +00004098
Tim Petersa9bc1682003-01-11 03:39:11 +00004099 if (DATE_GET_MICROSECOND(self)) {
Walter Dörwald7569dfe2007-05-19 21:49:49 +00004100 baserepr = PyUnicode_FromFormat(
Tim Petersa9bc1682003-01-11 03:39:11 +00004101 "%s(%d, %d, %d, %d, %d, %d, %d)",
Thomas Wouters49fd7fa2006-04-21 10:40:58 +00004102 type_name,
Tim Petersa9bc1682003-01-11 03:39:11 +00004103 GET_YEAR(self), GET_MONTH(self), GET_DAY(self),
4104 DATE_GET_HOUR(self), DATE_GET_MINUTE(self),
4105 DATE_GET_SECOND(self),
4106 DATE_GET_MICROSECOND(self));
4107 }
4108 else if (DATE_GET_SECOND(self)) {
Walter Dörwald7569dfe2007-05-19 21:49:49 +00004109 baserepr = PyUnicode_FromFormat(
Tim Petersa9bc1682003-01-11 03:39:11 +00004110 "%s(%d, %d, %d, %d, %d, %d)",
Thomas Wouters49fd7fa2006-04-21 10:40:58 +00004111 type_name,
Tim Petersa9bc1682003-01-11 03:39:11 +00004112 GET_YEAR(self), GET_MONTH(self), GET_DAY(self),
4113 DATE_GET_HOUR(self), DATE_GET_MINUTE(self),
4114 DATE_GET_SECOND(self));
4115 }
4116 else {
Walter Dörwald7569dfe2007-05-19 21:49:49 +00004117 baserepr = PyUnicode_FromFormat(
Tim Petersa9bc1682003-01-11 03:39:11 +00004118 "%s(%d, %d, %d, %d, %d)",
Thomas Wouters49fd7fa2006-04-21 10:40:58 +00004119 type_name,
Tim Petersa9bc1682003-01-11 03:39:11 +00004120 GET_YEAR(self), GET_MONTH(self), GET_DAY(self),
4121 DATE_GET_HOUR(self), DATE_GET_MINUTE(self));
4122 }
Tim Petersa9bc1682003-01-11 03:39:11 +00004123 if (baserepr == NULL || ! HASTZINFO(self))
4124 return baserepr;
Tim Peters2a799bf2002-12-16 20:18:38 +00004125 return append_keyword_tzinfo(baserepr, self->tzinfo);
4126}
4127
Tim Petersa9bc1682003-01-11 03:39:11 +00004128static PyObject *
4129datetime_str(PyDateTime_DateTime *self)
4130{
4131 return PyObject_CallMethod((PyObject *)self, "isoformat", "(s)", " ");
4132}
Tim Peters2a799bf2002-12-16 20:18:38 +00004133
4134static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00004135datetime_isoformat(PyDateTime_DateTime *self, PyObject *args, PyObject *kw)
Tim Peters2a799bf2002-12-16 20:18:38 +00004136{
Walter Dörwaldbc1f8862007-06-20 11:02:38 +00004137 int sep = 'T';
Martin v. Löwis02cbf4a2006-02-27 17:20:04 +00004138 static char *keywords[] = {"sep", NULL};
Tim Petersa9bc1682003-01-11 03:39:11 +00004139 char buffer[100];
Tim Petersa9bc1682003-01-11 03:39:11 +00004140 PyObject *result;
Walter Dörwaldbafa1372007-05-31 17:50:48 +00004141 int us = DATE_GET_MICROSECOND(self);
Tim Peters2a799bf2002-12-16 20:18:38 +00004142
Walter Dörwaldd0941302007-07-01 21:58:22 +00004143 if (!PyArg_ParseTupleAndKeywords(args, kw, "|C:isoformat", keywords, &sep))
Tim Petersa9bc1682003-01-11 03:39:11 +00004144 return NULL;
Walter Dörwaldbafa1372007-05-31 17:50:48 +00004145 if (us)
4146 result = PyUnicode_FromFormat("%04d-%02d-%02d%c%02d:%02d:%02d.%06d",
4147 GET_YEAR(self), GET_MONTH(self),
4148 GET_DAY(self), (int)sep,
4149 DATE_GET_HOUR(self), DATE_GET_MINUTE(self),
4150 DATE_GET_SECOND(self), us);
4151 else
4152 result = PyUnicode_FromFormat("%04d-%02d-%02d%c%02d:%02d:%02d",
4153 GET_YEAR(self), GET_MONTH(self),
4154 GET_DAY(self), (int)sep,
4155 DATE_GET_HOUR(self), DATE_GET_MINUTE(self),
4156 DATE_GET_SECOND(self));
4157
4158 if (!result || !HASTZINFO(self))
Tim Peters2a799bf2002-12-16 20:18:38 +00004159 return result;
4160
4161 /* We need to append the UTC offset. */
Tim Petersa9bc1682003-01-11 03:39:11 +00004162 if (format_utcoffset(buffer, sizeof(buffer), ":", self->tzinfo,
Tim Peters2a799bf2002-12-16 20:18:38 +00004163 (PyObject *)self) < 0) {
4164 Py_DECREF(result);
4165 return NULL;
4166 }
Walter Dörwaldbafa1372007-05-31 17:50:48 +00004167 PyUnicode_AppendAndDel(&result, PyUnicode_FromString(buffer));
Tim Peters2a799bf2002-12-16 20:18:38 +00004168 return result;
4169}
4170
Tim Petersa9bc1682003-01-11 03:39:11 +00004171static PyObject *
4172datetime_ctime(PyDateTime_DateTime *self)
4173{
4174 return format_ctime((PyDateTime_Date *)self,
4175 DATE_GET_HOUR(self),
4176 DATE_GET_MINUTE(self),
4177 DATE_GET_SECOND(self));
4178}
4179
Tim Peters2a799bf2002-12-16 20:18:38 +00004180/* Miscellaneous methods. */
4181
Tim Petersa9bc1682003-01-11 03:39:11 +00004182static PyObject *
Guido van Rossum19960592006-08-24 17:29:38 +00004183datetime_richcompare(PyObject *self, PyObject *other, int op)
Tim Petersa9bc1682003-01-11 03:39:11 +00004184{
4185 int diff;
4186 naivety n1, n2;
4187 int offset1, offset2;
4188
4189 if (! PyDateTime_Check(other)) {
Guido van Rossum19960592006-08-24 17:29:38 +00004190 if (PyDate_Check(other)) {
4191 /* Prevent invocation of date_richcompare. We want to
4192 return NotImplemented here to give the other object
4193 a chance. But since DateTime is a subclass of
4194 Date, if the other object is a Date, it would
4195 compute an ordering based on the date part alone,
4196 and we don't want that. So force unequal or
4197 uncomparable here in that case. */
4198 if (op == Py_EQ)
4199 Py_RETURN_FALSE;
4200 if (op == Py_NE)
4201 Py_RETURN_TRUE;
4202 return cmperror(self, other);
Tim Peters8d81a012003-01-24 22:36:34 +00004203 }
Guido van Rossum19960592006-08-24 17:29:38 +00004204 Py_INCREF(Py_NotImplemented);
4205 return Py_NotImplemented;
Tim Petersa9bc1682003-01-11 03:39:11 +00004206 }
4207
Guido van Rossum19960592006-08-24 17:29:38 +00004208 if (classify_two_utcoffsets(self, &offset1, &n1, self,
4209 other, &offset2, &n2, other) < 0)
Tim Petersa9bc1682003-01-11 03:39:11 +00004210 return NULL;
4211 assert(n1 != OFFSET_UNKNOWN && n2 != OFFSET_UNKNOWN);
4212 /* If they're both naive, or both aware and have the same offsets,
4213 * we get off cheap. Note that if they're both naive, offset1 ==
4214 * offset2 == 0 at this point.
4215 */
4216 if (n1 == n2 && offset1 == offset2) {
Guido van Rossum19960592006-08-24 17:29:38 +00004217 diff = memcmp(((PyDateTime_DateTime *)self)->data,
4218 ((PyDateTime_DateTime *)other)->data,
Tim Petersa9bc1682003-01-11 03:39:11 +00004219 _PyDateTime_DATETIME_DATASIZE);
4220 return diff_to_bool(diff, op);
4221 }
4222
4223 if (n1 == OFFSET_AWARE && n2 == OFFSET_AWARE) {
4224 PyDateTime_Delta *delta;
4225
4226 assert(offset1 != offset2); /* else last "if" handled it */
4227 delta = (PyDateTime_Delta *)datetime_subtract((PyObject *)self,
4228 other);
4229 if (delta == NULL)
4230 return NULL;
4231 diff = GET_TD_DAYS(delta);
4232 if (diff == 0)
4233 diff = GET_TD_SECONDS(delta) |
4234 GET_TD_MICROSECONDS(delta);
4235 Py_DECREF(delta);
4236 return diff_to_bool(diff, op);
4237 }
4238
4239 assert(n1 != n2);
4240 PyErr_SetString(PyExc_TypeError,
4241 "can't compare offset-naive and "
4242 "offset-aware datetimes");
4243 return NULL;
4244}
4245
4246static long
4247datetime_hash(PyDateTime_DateTime *self)
4248{
4249 if (self->hashcode == -1) {
4250 naivety n;
4251 int offset;
4252 PyObject *temp;
4253
4254 n = classify_utcoffset((PyObject *)self, (PyObject *)self,
4255 &offset);
4256 assert(n != OFFSET_UNKNOWN);
4257 if (n == OFFSET_ERROR)
4258 return -1;
4259
4260 /* Reduce this to a hash of another object. */
Guido van Rossumfd53fd62007-08-24 04:05:13 +00004261 if (n == OFFSET_NAIVE) {
4262 self->hashcode = generic_hash(
4263 (unsigned char *)self->data, _PyDateTime_DATETIME_DATASIZE);
4264 return self->hashcode;
4265 }
Tim Petersa9bc1682003-01-11 03:39:11 +00004266 else {
4267 int days;
4268 int seconds;
4269
4270 assert(n == OFFSET_AWARE);
4271 assert(HASTZINFO(self));
4272 days = ymd_to_ord(GET_YEAR(self),
4273 GET_MONTH(self),
4274 GET_DAY(self));
4275 seconds = DATE_GET_HOUR(self) * 3600 +
4276 (DATE_GET_MINUTE(self) - offset) * 60 +
4277 DATE_GET_SECOND(self);
4278 temp = new_delta(days,
4279 seconds,
4280 DATE_GET_MICROSECOND(self),
4281 1);
4282 }
4283 if (temp != NULL) {
4284 self->hashcode = PyObject_Hash(temp);
4285 Py_DECREF(temp);
4286 }
4287 }
4288 return self->hashcode;
4289}
Tim Peters2a799bf2002-12-16 20:18:38 +00004290
4291static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00004292datetime_replace(PyDateTime_DateTime *self, PyObject *args, PyObject *kw)
Tim Peters12bf3392002-12-24 05:41:27 +00004293{
4294 PyObject *clone;
4295 PyObject *tuple;
4296 int y = GET_YEAR(self);
4297 int m = GET_MONTH(self);
4298 int d = GET_DAY(self);
4299 int hh = DATE_GET_HOUR(self);
4300 int mm = DATE_GET_MINUTE(self);
4301 int ss = DATE_GET_SECOND(self);
4302 int us = DATE_GET_MICROSECOND(self);
Tim Petersa9bc1682003-01-11 03:39:11 +00004303 PyObject *tzinfo = HASTZINFO(self) ? self->tzinfo : Py_None;
Tim Peters12bf3392002-12-24 05:41:27 +00004304
4305 if (! PyArg_ParseTupleAndKeywords(args, kw, "|iiiiiiiO:replace",
Tim Petersa9bc1682003-01-11 03:39:11 +00004306 datetime_kws,
Tim Peters12bf3392002-12-24 05:41:27 +00004307 &y, &m, &d, &hh, &mm, &ss, &us,
4308 &tzinfo))
4309 return NULL;
4310 tuple = Py_BuildValue("iiiiiiiO", y, m, d, hh, mm, ss, us, tzinfo);
4311 if (tuple == NULL)
4312 return NULL;
Christian Heimes90aa7642007-12-19 02:45:37 +00004313 clone = datetime_new(Py_TYPE(self), tuple, NULL);
Tim Peters12bf3392002-12-24 05:41:27 +00004314 Py_DECREF(tuple);
4315 return clone;
4316}
4317
4318static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00004319datetime_astimezone(PyDateTime_DateTime *self, PyObject *args, PyObject *kw)
Tim Peters80475bb2002-12-25 07:40:55 +00004320{
Tim Peters52dcce22003-01-23 16:36:11 +00004321 int y, m, d, hh, mm, ss, us;
Tim Peters521fc152002-12-31 17:36:56 +00004322 PyObject *result;
Tim Peters52dcce22003-01-23 16:36:11 +00004323 int offset, none;
Tim Peters521fc152002-12-31 17:36:56 +00004324
Tim Peters80475bb2002-12-25 07:40:55 +00004325 PyObject *tzinfo;
Martin v. Löwis02cbf4a2006-02-27 17:20:04 +00004326 static char *keywords[] = {"tz", NULL};
Tim Peters80475bb2002-12-25 07:40:55 +00004327
Tim Peters52dcce22003-01-23 16:36:11 +00004328 if (! PyArg_ParseTupleAndKeywords(args, kw, "O!:astimezone", keywords,
4329 &PyDateTime_TZInfoType, &tzinfo))
Tim Peters80475bb2002-12-25 07:40:55 +00004330 return NULL;
4331
Tim Peters52dcce22003-01-23 16:36:11 +00004332 if (!HASTZINFO(self) || self->tzinfo == Py_None)
4333 goto NeedAware;
Tim Peters521fc152002-12-31 17:36:56 +00004334
Tim Peters52dcce22003-01-23 16:36:11 +00004335 /* Conversion to self's own time zone is a NOP. */
4336 if (self->tzinfo == tzinfo) {
4337 Py_INCREF(self);
4338 return (PyObject *)self;
Tim Peters710fb152003-01-02 19:35:54 +00004339 }
Tim Peters521fc152002-12-31 17:36:56 +00004340
Tim Peters52dcce22003-01-23 16:36:11 +00004341 /* Convert self to UTC. */
4342 offset = call_utcoffset(self->tzinfo, (PyObject *)self, &none);
4343 if (offset == -1 && PyErr_Occurred())
4344 return NULL;
4345 if (none)
4346 goto NeedAware;
Tim Petersf3615152003-01-01 21:51:37 +00004347
Tim Peters52dcce22003-01-23 16:36:11 +00004348 y = GET_YEAR(self);
4349 m = GET_MONTH(self);
4350 d = GET_DAY(self);
4351 hh = DATE_GET_HOUR(self);
4352 mm = DATE_GET_MINUTE(self);
4353 ss = DATE_GET_SECOND(self);
4354 us = DATE_GET_MICROSECOND(self);
4355
4356 mm -= offset;
Tim Petersf3615152003-01-01 21:51:37 +00004357 if ((mm < 0 || mm >= 60) &&
4358 normalize_datetime(&y, &m, &d, &hh, &mm, &ss, &us) < 0)
Tim Peters52dcce22003-01-23 16:36:11 +00004359 return NULL;
4360
4361 /* Attach new tzinfo and let fromutc() do the rest. */
4362 result = new_datetime(y, m, d, hh, mm, ss, us, tzinfo);
4363 if (result != NULL) {
4364 PyObject *temp = result;
4365
4366 result = PyObject_CallMethod(tzinfo, "fromutc", "O", temp);
4367 Py_DECREF(temp);
4368 }
Tim Petersadf64202003-01-04 06:03:15 +00004369 return result;
Tim Peters521fc152002-12-31 17:36:56 +00004370
Tim Peters52dcce22003-01-23 16:36:11 +00004371NeedAware:
4372 PyErr_SetString(PyExc_ValueError, "astimezone() cannot be applied to "
4373 "a naive datetime");
Tim Peters521fc152002-12-31 17:36:56 +00004374 return NULL;
Tim Peters80475bb2002-12-25 07:40:55 +00004375}
4376
4377static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00004378datetime_timetuple(PyDateTime_DateTime *self)
Tim Peters2a799bf2002-12-16 20:18:38 +00004379{
4380 int dstflag = -1;
4381
Tim Petersa9bc1682003-01-11 03:39:11 +00004382 if (HASTZINFO(self) && self->tzinfo != Py_None) {
Tim Peters2a799bf2002-12-16 20:18:38 +00004383 int none;
4384
4385 dstflag = call_dst(self->tzinfo, (PyObject *)self, &none);
4386 if (dstflag == -1 && PyErr_Occurred())
4387 return NULL;
4388
4389 if (none)
4390 dstflag = -1;
4391 else if (dstflag != 0)
4392 dstflag = 1;
4393
4394 }
4395 return build_struct_time(GET_YEAR(self),
4396 GET_MONTH(self),
4397 GET_DAY(self),
4398 DATE_GET_HOUR(self),
4399 DATE_GET_MINUTE(self),
4400 DATE_GET_SECOND(self),
4401 dstflag);
4402}
4403
4404static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00004405datetime_getdate(PyDateTime_DateTime *self)
4406{
4407 return new_date(GET_YEAR(self),
4408 GET_MONTH(self),
4409 GET_DAY(self));
4410}
4411
4412static PyObject *
4413datetime_gettime(PyDateTime_DateTime *self)
4414{
4415 return new_time(DATE_GET_HOUR(self),
4416 DATE_GET_MINUTE(self),
4417 DATE_GET_SECOND(self),
4418 DATE_GET_MICROSECOND(self),
4419 Py_None);
4420}
4421
4422static PyObject *
4423datetime_gettimetz(PyDateTime_DateTime *self)
4424{
4425 return new_time(DATE_GET_HOUR(self),
4426 DATE_GET_MINUTE(self),
4427 DATE_GET_SECOND(self),
4428 DATE_GET_MICROSECOND(self),
4429 HASTZINFO(self) ? self->tzinfo : Py_None);
4430}
4431
4432static PyObject *
4433datetime_utctimetuple(PyDateTime_DateTime *self)
Tim Peters2a799bf2002-12-16 20:18:38 +00004434{
4435 int y = GET_YEAR(self);
4436 int m = GET_MONTH(self);
4437 int d = GET_DAY(self);
4438 int hh = DATE_GET_HOUR(self);
4439 int mm = DATE_GET_MINUTE(self);
4440 int ss = DATE_GET_SECOND(self);
4441 int us = 0; /* microseconds are ignored in a timetuple */
4442 int offset = 0;
4443
Tim Petersa9bc1682003-01-11 03:39:11 +00004444 if (HASTZINFO(self) && self->tzinfo != Py_None) {
Tim Peters2a799bf2002-12-16 20:18:38 +00004445 int none;
4446
4447 offset = call_utcoffset(self->tzinfo, (PyObject *)self, &none);
4448 if (offset == -1 && PyErr_Occurred())
4449 return NULL;
4450 }
4451 /* Even if offset is 0, don't call timetuple() -- tm_isdst should be
4452 * 0 in a UTC timetuple regardless of what dst() says.
4453 */
4454 if (offset) {
4455 /* Subtract offset minutes & normalize. */
4456 int stat;
4457
4458 mm -= offset;
4459 stat = normalize_datetime(&y, &m, &d, &hh, &mm, &ss, &us);
4460 if (stat < 0) {
4461 /* At the edges, it's possible we overflowed
4462 * beyond MINYEAR or MAXYEAR.
4463 */
4464 if (PyErr_ExceptionMatches(PyExc_OverflowError))
4465 PyErr_Clear();
4466 else
4467 return NULL;
4468 }
4469 }
4470 return build_struct_time(y, m, d, hh, mm, ss, 0);
4471}
4472
Tim Peters371935f2003-02-01 01:52:50 +00004473/* Pickle support, a simple use of __reduce__. */
Tim Peters33e0f382003-01-10 02:05:14 +00004474
Tim Petersa9bc1682003-01-11 03:39:11 +00004475/* Let basestate be the non-tzinfo data string.
Tim Peters2a799bf2002-12-16 20:18:38 +00004476 * If tzinfo is None, this returns (basestate,), else (basestate, tzinfo).
4477 * So it's a tuple in any (non-error) case.
Tim Petersb57f8f02003-02-01 02:54:15 +00004478 * __getstate__ isn't exposed.
Tim Peters2a799bf2002-12-16 20:18:38 +00004479 */
4480static PyObject *
Tim Petersa9bc1682003-01-11 03:39:11 +00004481datetime_getstate(PyDateTime_DateTime *self)
Tim Peters2a799bf2002-12-16 20:18:38 +00004482{
4483 PyObject *basestate;
4484 PyObject *result = NULL;
4485
Christian Heimes72b710a2008-05-26 13:28:38 +00004486 basestate = PyBytes_FromStringAndSize((char *)self->data,
Guido van Rossum254348e2007-11-21 19:29:53 +00004487 _PyDateTime_DATETIME_DATASIZE);
Tim Peters2a799bf2002-12-16 20:18:38 +00004488 if (basestate != NULL) {
Tim Petersa9bc1682003-01-11 03:39:11 +00004489 if (! HASTZINFO(self) || self->tzinfo == Py_None)
Raymond Hettinger8ae46892003-10-12 19:09:37 +00004490 result = PyTuple_Pack(1, basestate);
Tim Peters2a799bf2002-12-16 20:18:38 +00004491 else
Raymond Hettinger8ae46892003-10-12 19:09:37 +00004492 result = PyTuple_Pack(2, basestate, self->tzinfo);
Tim Peters2a799bf2002-12-16 20:18:38 +00004493 Py_DECREF(basestate);
4494 }
4495 return result;
4496}
4497
4498static PyObject *
Guido van Rossum177e41a2003-01-30 22:06:23 +00004499datetime_reduce(PyDateTime_DateTime *self, PyObject *arg)
Tim Peters2a799bf2002-12-16 20:18:38 +00004500{
Christian Heimes90aa7642007-12-19 02:45:37 +00004501 return Py_BuildValue("(ON)", Py_TYPE(self), datetime_getstate(self));
Tim Peters2a799bf2002-12-16 20:18:38 +00004502}
4503
Tim Petersa9bc1682003-01-11 03:39:11 +00004504static PyMethodDef datetime_methods[] = {
Guido van Rossum177e41a2003-01-30 22:06:23 +00004505
Tim Peters2a799bf2002-12-16 20:18:38 +00004506 /* Class methods: */
Tim Peters2a799bf2002-12-16 20:18:38 +00004507
Tim Petersa9bc1682003-01-11 03:39:11 +00004508 {"now", (PyCFunction)datetime_now,
Guido van Rossumd59da4b2007-05-22 18:11:13 +00004509 METH_VARARGS | METH_KEYWORDS | METH_CLASS,
Neal Norwitz2fbe5372003-01-23 21:09:05 +00004510 PyDoc_STR("[tz] -> new datetime with tz's local day and time.")},
Tim Peters2a799bf2002-12-16 20:18:38 +00004511
Tim Petersa9bc1682003-01-11 03:39:11 +00004512 {"utcnow", (PyCFunction)datetime_utcnow,
4513 METH_NOARGS | METH_CLASS,
4514 PyDoc_STR("Return a new datetime representing UTC day and time.")},
4515
4516 {"fromtimestamp", (PyCFunction)datetime_fromtimestamp,
Guido van Rossumd59da4b2007-05-22 18:11:13 +00004517 METH_VARARGS | METH_KEYWORDS | METH_CLASS,
Tim Peters2a44a8d2003-01-23 20:53:10 +00004518 PyDoc_STR("timestamp[, tz] -> tz's local time from POSIX timestamp.")},
Tim Peters2a799bf2002-12-16 20:18:38 +00004519
Tim Petersa9bc1682003-01-11 03:39:11 +00004520 {"utcfromtimestamp", (PyCFunction)datetime_utcfromtimestamp,
4521 METH_VARARGS | METH_CLASS,
4522 PyDoc_STR("timestamp -> UTC datetime from a POSIX timestamp "
4523 "(like time.time()).")},
4524
Skip Montanaro0af3ade2005-01-13 04:12:31 +00004525 {"strptime", (PyCFunction)datetime_strptime,
4526 METH_VARARGS | METH_CLASS,
4527 PyDoc_STR("string, format -> new datetime parsed from a string "
4528 "(like time.strptime()).")},
4529
Tim Petersa9bc1682003-01-11 03:39:11 +00004530 {"combine", (PyCFunction)datetime_combine,
4531 METH_VARARGS | METH_KEYWORDS | METH_CLASS,
4532 PyDoc_STR("date, time -> datetime with same date and time fields")},
4533
Tim Peters2a799bf2002-12-16 20:18:38 +00004534 /* Instance methods: */
Guido van Rossum177e41a2003-01-30 22:06:23 +00004535
Tim Petersa9bc1682003-01-11 03:39:11 +00004536 {"date", (PyCFunction)datetime_getdate, METH_NOARGS,
4537 PyDoc_STR("Return date object with same year, month and day.")},
4538
4539 {"time", (PyCFunction)datetime_gettime, METH_NOARGS,
4540 PyDoc_STR("Return time object with same time but with tzinfo=None.")},
4541
4542 {"timetz", (PyCFunction)datetime_gettimetz, METH_NOARGS,
4543 PyDoc_STR("Return time object with same time and tzinfo.")},
4544
4545 {"ctime", (PyCFunction)datetime_ctime, METH_NOARGS,
4546 PyDoc_STR("Return ctime() style string.")},
4547
4548 {"timetuple", (PyCFunction)datetime_timetuple, METH_NOARGS,
Tim Peters2a799bf2002-12-16 20:18:38 +00004549 PyDoc_STR("Return time tuple, compatible with time.localtime().")},
4550
Tim Petersa9bc1682003-01-11 03:39:11 +00004551 {"utctimetuple", (PyCFunction)datetime_utctimetuple, METH_NOARGS,
Tim Peters2a799bf2002-12-16 20:18:38 +00004552 PyDoc_STR("Return UTC time tuple, compatible with time.localtime().")},
4553
Guido van Rossumd59da4b2007-05-22 18:11:13 +00004554 {"isoformat", (PyCFunction)datetime_isoformat, METH_VARARGS | METH_KEYWORDS,
Tim Peters2a799bf2002-12-16 20:18:38 +00004555 PyDoc_STR("[sep] -> string in ISO 8601 format, "
4556 "YYYY-MM-DDTHH:MM:SS[.mmmmmm][+HH:MM].\n\n"
4557 "sep is used to separate the year from the time, and "
4558 "defaults to 'T'.")},
4559
Tim Petersa9bc1682003-01-11 03:39:11 +00004560 {"utcoffset", (PyCFunction)datetime_utcoffset, METH_NOARGS,
Tim Peters2a799bf2002-12-16 20:18:38 +00004561 PyDoc_STR("Return self.tzinfo.utcoffset(self).")},
4562
Tim Petersa9bc1682003-01-11 03:39:11 +00004563 {"tzname", (PyCFunction)datetime_tzname, METH_NOARGS,
Tim Peters2a799bf2002-12-16 20:18:38 +00004564 PyDoc_STR("Return self.tzinfo.tzname(self).")},
4565
Tim Petersa9bc1682003-01-11 03:39:11 +00004566 {"dst", (PyCFunction)datetime_dst, METH_NOARGS,
Tim Peters2a799bf2002-12-16 20:18:38 +00004567 PyDoc_STR("Return self.tzinfo.dst(self).")},
4568
Guido van Rossumd59da4b2007-05-22 18:11:13 +00004569 {"replace", (PyCFunction)datetime_replace, METH_VARARGS | METH_KEYWORDS,
Tim Petersa9bc1682003-01-11 03:39:11 +00004570 PyDoc_STR("Return datetime with new specified fields.")},
Tim Peters12bf3392002-12-24 05:41:27 +00004571
Guido van Rossumd59da4b2007-05-22 18:11:13 +00004572 {"astimezone", (PyCFunction)datetime_astimezone, METH_VARARGS | METH_KEYWORDS,
Tim Peters80475bb2002-12-25 07:40:55 +00004573 PyDoc_STR("tz -> convert to local time in new timezone tz\n")},
4574
Guido van Rossum177e41a2003-01-30 22:06:23 +00004575 {"__reduce__", (PyCFunction)datetime_reduce, METH_NOARGS,
4576 PyDoc_STR("__reduce__() -> (cls, state)")},
4577
Tim Peters2a799bf2002-12-16 20:18:38 +00004578 {NULL, NULL}
4579};
4580
Tim Petersa9bc1682003-01-11 03:39:11 +00004581static char datetime_doc[] =
Raymond Hettinger3a4231d2004-12-19 20:13:24 +00004582PyDoc_STR("datetime(year, month, day[, hour[, minute[, second[, microsecond[,tzinfo]]]]])\n\
4583\n\
4584The year, month and day arguments are required. tzinfo may be None, or an\n\
4585instance of a tzinfo subclass. The remaining arguments may be ints or longs.\n");
Tim Peters2a799bf2002-12-16 20:18:38 +00004586
Tim Petersa9bc1682003-01-11 03:39:11 +00004587static PyNumberMethods datetime_as_number = {
4588 datetime_add, /* nb_add */
4589 datetime_subtract, /* nb_subtract */
Tim Peters2a799bf2002-12-16 20:18:38 +00004590 0, /* nb_multiply */
Tim Peters2a799bf2002-12-16 20:18:38 +00004591 0, /* nb_remainder */
4592 0, /* nb_divmod */
4593 0, /* nb_power */
4594 0, /* nb_negative */
4595 0, /* nb_positive */
4596 0, /* nb_absolute */
Jack Diederich4dafcc42006-11-28 19:15:13 +00004597 0, /* nb_bool */
Tim Peters2a799bf2002-12-16 20:18:38 +00004598};
4599
Neal Norwitz227b5332006-03-22 09:28:35 +00004600static PyTypeObject PyDateTime_DateTimeType = {
Martin v. Löwis9f2e3462007-07-21 17:22:18 +00004601 PyVarObject_HEAD_INIT(NULL, 0)
Tim Peters0bf60bd2003-01-08 20:40:01 +00004602 "datetime.datetime", /* tp_name */
Tim Petersa9bc1682003-01-11 03:39:11 +00004603 sizeof(PyDateTime_DateTime), /* tp_basicsize */
Tim Peters2a799bf2002-12-16 20:18:38 +00004604 0, /* tp_itemsize */
Tim Petersa9bc1682003-01-11 03:39:11 +00004605 (destructor)datetime_dealloc, /* tp_dealloc */
Tim Peters2a799bf2002-12-16 20:18:38 +00004606 0, /* tp_print */
4607 0, /* tp_getattr */
4608 0, /* tp_setattr */
4609 0, /* tp_compare */
Tim Petersa9bc1682003-01-11 03:39:11 +00004610 (reprfunc)datetime_repr, /* tp_repr */
4611 &datetime_as_number, /* tp_as_number */
Tim Peters2a799bf2002-12-16 20:18:38 +00004612 0, /* tp_as_sequence */
4613 0, /* tp_as_mapping */
Tim Petersa9bc1682003-01-11 03:39:11 +00004614 (hashfunc)datetime_hash, /* tp_hash */
Tim Peters2a799bf2002-12-16 20:18:38 +00004615 0, /* tp_call */
Tim Petersa9bc1682003-01-11 03:39:11 +00004616 (reprfunc)datetime_str, /* tp_str */
Tim Peters2a799bf2002-12-16 20:18:38 +00004617 PyObject_GenericGetAttr, /* tp_getattro */
4618 0, /* tp_setattro */
4619 0, /* tp_as_buffer */
Guido van Rossum3cf5b1e2006-07-27 21:53:35 +00004620 Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE, /* tp_flags */
Tim Petersa9bc1682003-01-11 03:39:11 +00004621 datetime_doc, /* tp_doc */
Tim Peters2a799bf2002-12-16 20:18:38 +00004622 0, /* tp_traverse */
4623 0, /* tp_clear */
Guido van Rossum19960592006-08-24 17:29:38 +00004624 datetime_richcompare, /* tp_richcompare */
Tim Peters2a799bf2002-12-16 20:18:38 +00004625 0, /* tp_weaklistoffset */
4626 0, /* tp_iter */
4627 0, /* tp_iternext */
Tim Petersa9bc1682003-01-11 03:39:11 +00004628 datetime_methods, /* tp_methods */
Tim Peters2a799bf2002-12-16 20:18:38 +00004629 0, /* tp_members */
Tim Petersa9bc1682003-01-11 03:39:11 +00004630 datetime_getset, /* tp_getset */
4631 &PyDateTime_DateType, /* tp_base */
Tim Peters2a799bf2002-12-16 20:18:38 +00004632 0, /* tp_dict */
4633 0, /* tp_descr_get */
4634 0, /* tp_descr_set */
4635 0, /* tp_dictoffset */
4636 0, /* tp_init */
Tim Petersa98924a2003-05-17 05:55:19 +00004637 datetime_alloc, /* tp_alloc */
Tim Petersa9bc1682003-01-11 03:39:11 +00004638 datetime_new, /* tp_new */
Tim Peters4c530132003-05-16 22:44:06 +00004639 0, /* tp_free */
Tim Peters2a799bf2002-12-16 20:18:38 +00004640};
4641
4642/* ---------------------------------------------------------------------------
4643 * Module methods and initialization.
4644 */
4645
4646static PyMethodDef module_methods[] = {
Tim Peters2a799bf2002-12-16 20:18:38 +00004647 {NULL, NULL}
4648};
4649
Tim Peters9ddf40b2004-06-20 22:41:32 +00004650/* C API. Clients get at this via PyDateTime_IMPORT, defined in
4651 * datetime.h.
4652 */
4653static PyDateTime_CAPI CAPI = {
4654 &PyDateTime_DateType,
4655 &PyDateTime_DateTimeType,
4656 &PyDateTime_TimeType,
4657 &PyDateTime_DeltaType,
4658 &PyDateTime_TZInfoType,
4659 new_date_ex,
4660 new_datetime_ex,
4661 new_time_ex,
4662 new_delta_ex,
4663 datetime_fromtimestamp,
4664 date_fromtimestamp
4665};
4666
4667
Martin v. Löwis1a214512008-06-11 05:26:20 +00004668
4669static struct PyModuleDef datetimemodule = {
4670 PyModuleDef_HEAD_INIT,
4671 "datetime",
4672 "Fast implementation of the datetime type.",
4673 -1,
4674 module_methods,
4675 NULL,
4676 NULL,
4677 NULL,
4678 NULL
4679};
4680
Tim Peters2a799bf2002-12-16 20:18:38 +00004681PyMODINIT_FUNC
Martin v. Löwis1a214512008-06-11 05:26:20 +00004682PyInit_datetime(void)
Tim Peters2a799bf2002-12-16 20:18:38 +00004683{
4684 PyObject *m; /* a module object */
4685 PyObject *d; /* its dict */
4686 PyObject *x;
4687
Martin v. Löwis1a214512008-06-11 05:26:20 +00004688 m = PyModule_Create(&datetimemodule);
Neal Norwitz1ac754f2006-01-19 06:09:39 +00004689 if (m == NULL)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004690 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004691
4692 if (PyType_Ready(&PyDateTime_DateType) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004693 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004694 if (PyType_Ready(&PyDateTime_DateTimeType) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004695 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004696 if (PyType_Ready(&PyDateTime_DeltaType) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004697 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004698 if (PyType_Ready(&PyDateTime_TimeType) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004699 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004700 if (PyType_Ready(&PyDateTime_TZInfoType) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004701 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004702
Tim Peters2a799bf2002-12-16 20:18:38 +00004703 /* timedelta values */
4704 d = PyDateTime_DeltaType.tp_dict;
4705
Tim Peters2a799bf2002-12-16 20:18:38 +00004706 x = new_delta(0, 0, 1, 0);
4707 if (x == NULL || PyDict_SetItemString(d, "resolution", x) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004708 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004709 Py_DECREF(x);
4710
4711 x = new_delta(-MAX_DELTA_DAYS, 0, 0, 0);
4712 if (x == NULL || PyDict_SetItemString(d, "min", x) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004713 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004714 Py_DECREF(x);
4715
4716 x = new_delta(MAX_DELTA_DAYS, 24*3600-1, 1000000-1, 0);
4717 if (x == NULL || PyDict_SetItemString(d, "max", x) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004718 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004719 Py_DECREF(x);
4720
4721 /* date values */
4722 d = PyDateTime_DateType.tp_dict;
4723
4724 x = new_date(1, 1, 1);
4725 if (x == NULL || PyDict_SetItemString(d, "min", x) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004726 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004727 Py_DECREF(x);
4728
4729 x = new_date(MAXYEAR, 12, 31);
4730 if (x == NULL || PyDict_SetItemString(d, "max", x) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004731 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004732 Py_DECREF(x);
4733
4734 x = new_delta(1, 0, 0, 0);
4735 if (x == NULL || PyDict_SetItemString(d, "resolution", x) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004736 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004737 Py_DECREF(x);
4738
Tim Peters37f39822003-01-10 03:49:02 +00004739 /* time values */
4740 d = PyDateTime_TimeType.tp_dict;
Tim Peters2a799bf2002-12-16 20:18:38 +00004741
Tim Peters37f39822003-01-10 03:49:02 +00004742 x = new_time(0, 0, 0, 0, Py_None);
Tim Peters2a799bf2002-12-16 20:18:38 +00004743 if (x == NULL || PyDict_SetItemString(d, "min", x) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004744 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004745 Py_DECREF(x);
4746
Tim Peters37f39822003-01-10 03:49:02 +00004747 x = new_time(23, 59, 59, 999999, Py_None);
Tim Peters2a799bf2002-12-16 20:18:38 +00004748 if (x == NULL || PyDict_SetItemString(d, "max", x) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004749 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004750 Py_DECREF(x);
4751
4752 x = new_delta(0, 0, 1, 0);
4753 if (x == NULL || PyDict_SetItemString(d, "resolution", x) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004754 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004755 Py_DECREF(x);
4756
Tim Petersa9bc1682003-01-11 03:39:11 +00004757 /* datetime values */
4758 d = PyDateTime_DateTimeType.tp_dict;
Tim Peters2a799bf2002-12-16 20:18:38 +00004759
Tim Petersa9bc1682003-01-11 03:39:11 +00004760 x = new_datetime(1, 1, 1, 0, 0, 0, 0, Py_None);
Tim Peters2a799bf2002-12-16 20:18:38 +00004761 if (x == NULL || PyDict_SetItemString(d, "min", x) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004762 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004763 Py_DECREF(x);
4764
Tim Petersa9bc1682003-01-11 03:39:11 +00004765 x = new_datetime(MAXYEAR, 12, 31, 23, 59, 59, 999999, Py_None);
Tim Peters2a799bf2002-12-16 20:18:38 +00004766 if (x == NULL || PyDict_SetItemString(d, "max", x) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004767 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004768 Py_DECREF(x);
4769
4770 x = new_delta(0, 0, 1, 0);
4771 if (x == NULL || PyDict_SetItemString(d, "resolution", x) < 0)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004772 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004773 Py_DECREF(x);
4774
Tim Peters2a799bf2002-12-16 20:18:38 +00004775 /* module initialization */
4776 PyModule_AddIntConstant(m, "MINYEAR", MINYEAR);
4777 PyModule_AddIntConstant(m, "MAXYEAR", MAXYEAR);
4778
4779 Py_INCREF(&PyDateTime_DateType);
4780 PyModule_AddObject(m, "date", (PyObject *) &PyDateTime_DateType);
4781
Tim Petersa9bc1682003-01-11 03:39:11 +00004782 Py_INCREF(&PyDateTime_DateTimeType);
4783 PyModule_AddObject(m, "datetime",
4784 (PyObject *)&PyDateTime_DateTimeType);
4785
4786 Py_INCREF(&PyDateTime_TimeType);
4787 PyModule_AddObject(m, "time", (PyObject *) &PyDateTime_TimeType);
4788
Tim Peters2a799bf2002-12-16 20:18:38 +00004789 Py_INCREF(&PyDateTime_DeltaType);
4790 PyModule_AddObject(m, "timedelta", (PyObject *) &PyDateTime_DeltaType);
4791
Tim Peters2a799bf2002-12-16 20:18:38 +00004792 Py_INCREF(&PyDateTime_TZInfoType);
4793 PyModule_AddObject(m, "tzinfo", (PyObject *) &PyDateTime_TZInfoType);
4794
Tim Peters9ddf40b2004-06-20 22:41:32 +00004795 x = PyCObject_FromVoidPtrAndDesc(&CAPI, (void*) DATETIME_API_MAGIC,
4796 NULL);
4797 if (x == NULL)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004798 return NULL;
Tim Peters9ddf40b2004-06-20 22:41:32 +00004799 PyModule_AddObject(m, "datetime_CAPI", x);
4800
Tim Peters2a799bf2002-12-16 20:18:38 +00004801 /* A 4-year cycle has an extra leap day over what we'd get from
4802 * pasting together 4 single years.
4803 */
4804 assert(DI4Y == 4 * 365 + 1);
4805 assert(DI4Y == days_before_year(4+1));
4806
4807 /* Similarly, a 400-year cycle has an extra leap day over what we'd
4808 * get from pasting together 4 100-year cycles.
4809 */
4810 assert(DI400Y == 4 * DI100Y + 1);
4811 assert(DI400Y == days_before_year(400+1));
4812
4813 /* OTOH, a 100-year cycle has one fewer leap day than we'd get from
4814 * pasting together 25 4-year cycles.
4815 */
4816 assert(DI100Y == 25 * DI4Y - 1);
4817 assert(DI100Y == days_before_year(100+1));
4818
Christian Heimes217cfd12007-12-02 14:31:20 +00004819 us_per_us = PyLong_FromLong(1);
4820 us_per_ms = PyLong_FromLong(1000);
4821 us_per_second = PyLong_FromLong(1000000);
4822 us_per_minute = PyLong_FromLong(60000000);
4823 seconds_per_day = PyLong_FromLong(24 * 3600);
Tim Peters2a799bf2002-12-16 20:18:38 +00004824 if (us_per_us == NULL || us_per_ms == NULL || us_per_second == NULL ||
4825 us_per_minute == NULL || seconds_per_day == NULL)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004826 return NULL;
Tim Peters2a799bf2002-12-16 20:18:38 +00004827
4828 /* The rest are too big for 32-bit ints, but even
4829 * us_per_week fits in 40 bits, so doubles should be exact.
4830 */
4831 us_per_hour = PyLong_FromDouble(3600000000.0);
4832 us_per_day = PyLong_FromDouble(86400000000.0);
4833 us_per_week = PyLong_FromDouble(604800000000.0);
4834 if (us_per_hour == NULL || us_per_day == NULL || us_per_week == NULL)
Martin v. Löwis1a214512008-06-11 05:26:20 +00004835 return NULL;
4836 return m;
Tim Peters2a799bf2002-12-16 20:18:38 +00004837}
Tim Petersf3615152003-01-01 21:51:37 +00004838
4839/* ---------------------------------------------------------------------------
Tim Petersa9bc1682003-01-11 03:39:11 +00004840Some time zone algebra. For a datetime x, let
Tim Petersf3615152003-01-01 21:51:37 +00004841 x.n = x stripped of its timezone -- its naive time.
4842 x.o = x.utcoffset(), and assuming that doesn't raise an exception or
4843 return None
4844 x.d = x.dst(), and assuming that doesn't raise an exception or
4845 return None
4846 x.s = x's standard offset, x.o - x.d
4847
4848Now some derived rules, where k is a duration (timedelta).
4849
48501. x.o = x.s + x.d
4851 This follows from the definition of x.s.
4852
Tim Petersc5dc4da2003-01-02 17:55:03 +000048532. If x and y have the same tzinfo member, x.s = y.s.
Tim Petersf3615152003-01-01 21:51:37 +00004854 This is actually a requirement, an assumption we need to make about
4855 sane tzinfo classes.
4856
48573. The naive UTC time corresponding to x is x.n - x.o.
4858 This is again a requirement for a sane tzinfo class.
4859
48604. (x+k).s = x.s
Tim Peters8bb5ad22003-01-24 02:44:45 +00004861 This follows from #2, and that datimetimetz+timedelta preserves tzinfo.
Tim Petersf3615152003-01-01 21:51:37 +00004862
Tim Petersc5dc4da2003-01-02 17:55:03 +000048635. (x+k).n = x.n + k
Tim Petersf3615152003-01-01 21:51:37 +00004864 Again follows from how arithmetic is defined.
4865
Tim Peters8bb5ad22003-01-24 02:44:45 +00004866Now we can explain tz.fromutc(x). Let's assume it's an interesting case
Tim Petersf3615152003-01-01 21:51:37 +00004867(meaning that the various tzinfo methods exist, and don't blow up or return
4868None when called).
4869
Tim Petersa9bc1682003-01-11 03:39:11 +00004870The function wants to return a datetime y with timezone tz, equivalent to x.
Tim Peters8bb5ad22003-01-24 02:44:45 +00004871x is already in UTC.
Tim Petersf3615152003-01-01 21:51:37 +00004872
4873By #3, we want
4874
Tim Peters8bb5ad22003-01-24 02:44:45 +00004875 y.n - y.o = x.n [1]
Tim Petersf3615152003-01-01 21:51:37 +00004876
4877The algorithm starts by attaching tz to x.n, and calling that y. So
4878x.n = y.n at the start. Then it wants to add a duration k to y, so that [1]
4879becomes true; in effect, we want to solve [2] for k:
4880
Tim Peters8bb5ad22003-01-24 02:44:45 +00004881 (y+k).n - (y+k).o = x.n [2]
Tim Petersf3615152003-01-01 21:51:37 +00004882
4883By #1, this is the same as
4884
Tim Peters8bb5ad22003-01-24 02:44:45 +00004885 (y+k).n - ((y+k).s + (y+k).d) = x.n [3]
Tim Petersf3615152003-01-01 21:51:37 +00004886
4887By #5, (y+k).n = y.n + k, which equals x.n + k because x.n=y.n at the start.
4888Substituting that into [3],
4889
Tim Peters8bb5ad22003-01-24 02:44:45 +00004890 x.n + k - (y+k).s - (y+k).d = x.n; the x.n terms cancel, leaving
4891 k - (y+k).s - (y+k).d = 0; rearranging,
4892 k = (y+k).s - (y+k).d; by #4, (y+k).s == y.s, so
4893 k = y.s - (y+k).d
Tim Petersf3615152003-01-01 21:51:37 +00004894
Tim Peters8bb5ad22003-01-24 02:44:45 +00004895On the RHS, (y+k).d can't be computed directly, but y.s can be, and we
4896approximate k by ignoring the (y+k).d term at first. Note that k can't be
4897very large, since all offset-returning methods return a duration of magnitude
4898less than 24 hours. For that reason, if y is firmly in std time, (y+k).d must
4899be 0, so ignoring it has no consequence then.
Tim Petersf3615152003-01-01 21:51:37 +00004900
4901In any case, the new value is
4902
Tim Peters8bb5ad22003-01-24 02:44:45 +00004903 z = y + y.s [4]
Tim Petersf3615152003-01-01 21:51:37 +00004904
Tim Peters8bb5ad22003-01-24 02:44:45 +00004905It's helpful to step back at look at [4] from a higher level: it's simply
4906mapping from UTC to tz's standard time.
Tim Petersc5dc4da2003-01-02 17:55:03 +00004907
4908At this point, if
4909
Tim Peters8bb5ad22003-01-24 02:44:45 +00004910 z.n - z.o = x.n [5]
Tim Petersc5dc4da2003-01-02 17:55:03 +00004911
4912we have an equivalent time, and are almost done. The insecurity here is
Tim Petersf3615152003-01-01 21:51:37 +00004913at the start of daylight time. Picture US Eastern for concreteness. The wall
4914time jumps from 1:59 to 3:00, and wall hours of the form 2:MM don't make good
Tim Peters8bb5ad22003-01-24 02:44:45 +00004915sense then. The docs ask that an Eastern tzinfo class consider such a time to
4916be EDT (because it's "after 2"), which is a redundant spelling of 1:MM EST
4917on the day DST starts. We want to return the 1:MM EST spelling because that's
Tim Petersf3615152003-01-01 21:51:37 +00004918the only spelling that makes sense on the local wall clock.
4919
Tim Petersc5dc4da2003-01-02 17:55:03 +00004920In fact, if [5] holds at this point, we do have the standard-time spelling,
4921but that takes a bit of proof. We first prove a stronger result. What's the
4922difference between the LHS and RHS of [5]? Let
Tim Petersf3615152003-01-01 21:51:37 +00004923
Tim Peters8bb5ad22003-01-24 02:44:45 +00004924 diff = x.n - (z.n - z.o) [6]
Tim Petersf3615152003-01-01 21:51:37 +00004925
Tim Petersc5dc4da2003-01-02 17:55:03 +00004926Now
4927 z.n = by [4]
Tim Peters8bb5ad22003-01-24 02:44:45 +00004928 (y + y.s).n = by #5
4929 y.n + y.s = since y.n = x.n
4930 x.n + y.s = since z and y are have the same tzinfo member,
4931 y.s = z.s by #2
4932 x.n + z.s
Tim Petersf3615152003-01-01 21:51:37 +00004933
Tim Petersc5dc4da2003-01-02 17:55:03 +00004934Plugging that back into [6] gives
Tim Petersf3615152003-01-01 21:51:37 +00004935
Tim Petersc5dc4da2003-01-02 17:55:03 +00004936 diff =
Tim Peters8bb5ad22003-01-24 02:44:45 +00004937 x.n - ((x.n + z.s) - z.o) = expanding
4938 x.n - x.n - z.s + z.o = cancelling
4939 - z.s + z.o = by #2
Tim Petersc5dc4da2003-01-02 17:55:03 +00004940 z.d
Tim Petersf3615152003-01-01 21:51:37 +00004941
Tim Petersc5dc4da2003-01-02 17:55:03 +00004942So diff = z.d.
Tim Petersf3615152003-01-01 21:51:37 +00004943
Tim Petersc5dc4da2003-01-02 17:55:03 +00004944If [5] is true now, diff = 0, so z.d = 0 too, and we have the standard-time
Tim Peters8bb5ad22003-01-24 02:44:45 +00004945spelling we wanted in the endcase described above. We're done. Contrarily,
4946if z.d = 0, then we have a UTC equivalent, and are also done.
Tim Petersf3615152003-01-01 21:51:37 +00004947
Tim Petersc5dc4da2003-01-02 17:55:03 +00004948If [5] is not true now, diff = z.d != 0, and z.d is the offset we need to
4949add to z (in effect, z is in tz's standard time, and we need to shift the
Tim Peters8bb5ad22003-01-24 02:44:45 +00004950local clock into tz's daylight time).
Tim Petersf3615152003-01-01 21:51:37 +00004951
Tim Petersc5dc4da2003-01-02 17:55:03 +00004952Let
Tim Petersf3615152003-01-01 21:51:37 +00004953
Tim Peters4fede1a2003-01-04 00:26:59 +00004954 z' = z + z.d = z + diff [7]
Tim Petersc3bb26a2003-01-02 03:14:59 +00004955
Tim Peters4fede1a2003-01-04 00:26:59 +00004956and we can again ask whether
Tim Petersc3bb26a2003-01-02 03:14:59 +00004957
Tim Peters8bb5ad22003-01-24 02:44:45 +00004958 z'.n - z'.o = x.n [8]
Tim Petersc3bb26a2003-01-02 03:14:59 +00004959
Tim Peters8bb5ad22003-01-24 02:44:45 +00004960If so, we're done. If not, the tzinfo class is insane, according to the
4961assumptions we've made. This also requires a bit of proof. As before, let's
4962compute the difference between the LHS and RHS of [8] (and skipping some of
4963the justifications for the kinds of substitutions we've done several times
4964already):
Tim Peters4fede1a2003-01-04 00:26:59 +00004965
Tim Peters8bb5ad22003-01-24 02:44:45 +00004966 diff' = x.n - (z'.n - z'.o) = replacing z'.n via [7]
4967 x.n - (z.n + diff - z'.o) = replacing diff via [6]
4968 x.n - (z.n + x.n - (z.n - z.o) - z'.o) =
4969 x.n - z.n - x.n + z.n - z.o + z'.o = cancel x.n
4970 - z.n + z.n - z.o + z'.o = cancel z.n
Tim Peters4fede1a2003-01-04 00:26:59 +00004971 - z.o + z'.o = #1 twice
4972 -z.s - z.d + z'.s + z'.d = z and z' have same tzinfo
4973 z'.d - z.d
4974
4975So z' is UTC-equivalent to x iff z'.d = z.d at this point. If they are equal,
Tim Peters8bb5ad22003-01-24 02:44:45 +00004976we've found the UTC-equivalent so are done. In fact, we stop with [7] and
4977return z', not bothering to compute z'.d.
Tim Peters4fede1a2003-01-04 00:26:59 +00004978
Tim Peters8bb5ad22003-01-24 02:44:45 +00004979How could z.d and z'd differ? z' = z + z.d [7], so merely moving z' by
4980a dst() offset, and starting *from* a time already in DST (we know z.d != 0),
4981would have to change the result dst() returns: we start in DST, and moving
4982a little further into it takes us out of DST.
Tim Peters4fede1a2003-01-04 00:26:59 +00004983
Tim Peters8bb5ad22003-01-24 02:44:45 +00004984There isn't a sane case where this can happen. The closest it gets is at
4985the end of DST, where there's an hour in UTC with no spelling in a hybrid
4986tzinfo class. In US Eastern, that's 5:MM UTC = 0:MM EST = 1:MM EDT. During
4987that hour, on an Eastern clock 1:MM is taken as being in standard time (6:MM
4988UTC) because the docs insist on that, but 0:MM is taken as being in daylight
4989time (4:MM UTC). There is no local time mapping to 5:MM UTC. The local
4990clock jumps from 1:59 back to 1:00 again, and repeats the 1:MM hour in
4991standard time. Since that's what the local clock *does*, we want to map both
4992UTC hours 5:MM and 6:MM to 1:MM Eastern. The result is ambiguous
Tim Peters4fede1a2003-01-04 00:26:59 +00004993in local time, but so it goes -- it's the way the local clock works.
4994
Tim Peters8bb5ad22003-01-24 02:44:45 +00004995When x = 5:MM UTC is the input to this algorithm, x.o=0, y.o=-5 and y.d=0,
4996so z=0:MM. z.d=60 (minutes) then, so [5] doesn't hold and we keep going.
4997z' = z + z.d = 1:MM then, and z'.d=0, and z'.d - z.d = -60 != 0 so [8]
Tim Peters4fede1a2003-01-04 00:26:59 +00004998(correctly) concludes that z' is not UTC-equivalent to x.
4999
5000Because we know z.d said z was in daylight time (else [5] would have held and
5001we would have stopped then), and we know z.d != z'.d (else [8] would have held
Walter Dörwaldf0dfc7a2003-10-20 14:01:56 +00005002and we would have stopped then), and there are only 2 possible values dst() can
Tim Peters4fede1a2003-01-04 00:26:59 +00005003return in Eastern, it follows that z'.d must be 0 (which it is in the example,
5004but the reasoning doesn't depend on the example -- it depends on there being
5005two possible dst() outcomes, one zero and the other non-zero). Therefore
Tim Peters8bb5ad22003-01-24 02:44:45 +00005006z' must be in standard time, and is the spelling we want in this case.
5007
5008Note again that z' is not UTC-equivalent as far as the hybrid tzinfo class is
5009concerned (because it takes z' as being in standard time rather than the
5010daylight time we intend here), but returning it gives the real-life "local
5011clock repeats an hour" behavior when mapping the "unspellable" UTC hour into
5012tz.
5013
5014When the input is 6:MM, z=1:MM and z.d=0, and we stop at once, again with
5015the 1:MM standard time spelling we want.
5016
5017So how can this break? One of the assumptions must be violated. Two
5018possibilities:
5019
50201) [2] effectively says that y.s is invariant across all y belong to a given
5021 time zone. This isn't true if, for political reasons or continental drift,
5022 a region decides to change its base offset from UTC.
5023
50242) There may be versions of "double daylight" time where the tail end of
5025 the analysis gives up a step too early. I haven't thought about that
5026 enough to say.
5027
5028In any case, it's clear that the default fromutc() is strong enough to handle
5029"almost all" time zones: so long as the standard offset is invariant, it
5030doesn't matter if daylight time transition points change from year to year, or
5031if daylight time is skipped in some years; it doesn't matter how large or
5032small dst() may get within its bounds; and it doesn't even matter if some
5033perverse time zone returns a negative dst()). So a breaking case must be
5034pretty bizarre, and a tzinfo subclass can override fromutc() if it is.
Tim Petersf3615152003-01-01 21:51:37 +00005035--------------------------------------------------------------------------- */