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diplodocus.org Git - nmh/blob - sbr/datetime.c
1 /* datetime.c -- functions for manipulating RFC 5545 date-time values
3 * This code is Copyright (c) 2014, by the authors of nmh.
4 * See the COPYRIGHT file in the root directory of the nmh
5 * distribution for complete copyright information.
9 #include "h/icalendar.h"
10 #include <h/fmt_scan.h>
16 * This doesn't try to support all of the myriad date-time formats
17 * allowed by RFC 5545. It is only used for viewing date-times,
18 * so that shouldn't be a problem: if a particular format can't
19 * be handled by this code, just present it to the user in its
22 * And, this assumes a valid iCalendar input file. E.g, it
23 * doesn't check that each BEGIN has a matching END and vice
24 * versa. That should be done in the parser, though it currently
28 typedef struct tzparams
{
29 /* Pointers to values in parse tree.
30 * TZOFFSETFROM is used to calculate the absolute time at which
31 * the transition to a given observance takes place.
32 * TZOFFSETTO is the timezone offset from UTC. Both are in HHmm
34 char *offsetfrom
, *offsetto
;
38 /* This is only used to make sure that timezone applies. And not
39 always, because if the timezone DTSTART is before the epoch, we
40 don't try to compare to it. */
41 time_t start_dt
; /* in seconds since epoch */
47 /* The following are translations of the pieces of RRULE and DTSTART
48 into seconds from beginning of year. */
49 tzparams standard_params
;
50 tzparams daylight_params
;
56 * Parse a datetime of the form YYYYMMDDThhmmss and a string
57 * representation of the timezone in units of [+-]hhmm and load the
61 parse_datetime (const char *datetime
, const char *zone
, int dst
,
69 sscanf (datetime
, "%4d%2d%2dT%2d%2d%2d%c",
70 &tws
->tw_year
, &tws
->tw_mon
, &tws
->tw_mday
,
71 &tws
->tw_hour
, &tws
->tw_min
, &tws
->tw_sec
,
73 tws
->tw_flags
= TW_NULL
;
75 if (items_matched
== 7) {
76 /* The 'Z' must be capital according to RFC 5545 Sec. 3.3.5. */
77 if (utc_indicator
!= 'Z') {
78 inform("%s has invalid timezone indicator of 0x%x",
79 datetime
, utc_indicator
);
82 } else if (zone
== NULL
) {
86 /* items_matched of 3 is for, e.g., 20151230. Assume that means
87 the entire day. The time fields of the tws struct were
88 initialized to 0 by the memset() above. */
89 if (items_matched
>= 6 || items_matched
== 3) {
90 int offset
= atoi (zone
? zone
: "0");
92 /* struct tws defines tw_mon over [0, 11]. */
95 /* Fill out rest of tws, i.e., its tw_wday and tw_flags. */
97 /* set_dotw() sets TW_SIMP. Replace that with TW_SEXP so that
98 dasctime() outputs the dotw before the date instead of after. */
99 tws
->tw_flags
&= ~TW_SDAY
;
100 tws
->tw_flags
|= TW_SEXP
;
102 /* For the call to dmktime():
104 - tw_clock must be 0 on entry, and is set by dmktime()
105 - the only flag in tw_flags used is TW_DST
107 tws
->tw_yday
= tws
->tw_clock
= 0;
108 tws
->tw_zone
= 60 * (offset
/ 100) + offset
% 100;
110 tws
->tw_zone
-= 60; /* per dlocaltime() */
111 tws
->tw_flags
|= TW_DST
;
113 /* dmktime() just sets tws->tw_clock. */
114 (void) dmktime (tws
);
117 /* Set TW_SZEXP so that dasctime outputs timezone, except
118 with local time (Form #1). */
119 tws
->tw_flags
|= TW_SZEXP
;
121 /* Convert UTC time to time in local timezone. However,
122 don't try for years before 1970 because dlocatime()
123 doesn't handle them well. dlocaltime() will succeed if
124 tws->tw_clock is nonzero. */
125 if (tws
->tw_year
>= 1970 && tws
->tw_clock
> 0) {
126 const int was_dst
= tws
->tw_flags
& TW_DST
;
128 *tws
= *dlocaltime (&tws
->tw_clock
);
129 if (was_dst
&& ! (tws
->tw_flags
& TW_DST
)) {
130 /* dlocaltime() changed the DST flag from 1 to 0,
131 which means the time is in the hour (assumed to
132 be one hour) that is lost in the transition to
133 DST. So per RFC 5545 Sec. 3.3.5, "the
134 DATE-TIME value is interpreted using the UTC
135 offset before the gap in local times." In
136 other words, add an hour to it.
137 No adjustment is necessary for the transition
138 from DST to standard time, because dasctime()
139 shows the first occurrence of the time. */
140 tws
->tw_clock
+= 3600;
141 *tws
= *dlocaltime (&tws
->tw_clock
);
153 load_timezones (const contentline
*clines
) {
154 tzdesc_t timezones
= NULL
, timezone
= NULL
;
155 int in_vtimezone
, in_standard
, in_daylight
;
156 tzparams
*params
= NULL
;
157 const contentline
*node
;
159 /* Interpret each VTIMEZONE section. */
160 in_vtimezone
= in_standard
= in_daylight
= 0;
161 for (node
= clines
; node
; node
= node
->next
) {
162 /* node->name will be NULL if the line was "deleted". */
163 if (! node
->name
) { continue; }
165 if (in_daylight
|| in_standard
) {
166 if (! strcasecmp ("END", node
->name
) &&
167 ((in_standard
&& ! strcasecmp ("STANDARD", node
->value
)) ||
168 (in_daylight
&& ! strcasecmp ("DAYLIGHT", node
->value
)))) {
171 if (in_standard
) { in_standard
= 0; }
172 else if (in_daylight
) { in_daylight
= 0; }
173 if (parse_datetime (params
->dtstart
, params
->offsetfrom
,
176 if (tws
.tw_year
>= 1970) {
177 /* dmktime() falls apart for, e.g., the year 1601. */
178 params
->start_dt
= tws
.tw_clock
;
181 inform("failed to parse start time %s for %s",
183 in_standard
? "standard" : "daylight");
187 } else if (! strcasecmp ("DTSTART", node
->name
)) {
188 /* Save DTSTART for use after getting TZOFFSETFROM. */
189 params
->dtstart
= node
->value
;
190 } else if (! strcasecmp ("TZOFFSETFROM", node
->name
)) {
191 params
->offsetfrom
= node
->value
;
192 } else if (! strcasecmp ("TZOFFSETTO", node
->name
)) {
193 params
->offsetto
= node
->value
;
194 } else if (! strcasecmp ("RRULE", node
->name
)) {
195 params
->rrule
= node
->value
;
197 } else if (in_vtimezone
) {
198 if (! strcasecmp ("END", node
->name
) &&
199 ! strcasecmp ("VTIMEZONE", node
->value
)) {
201 } else if (! strcasecmp ("BEGIN", node
->name
) &&
202 ! strcasecmp ("STANDARD", node
->value
)) {
204 params
= &timezone
->standard_params
;
205 } else if (! strcasecmp ("BEGIN", node
->name
) &&
206 ! strcasecmp ("DAYLIGHT", node
->value
)) {
208 params
= &timezone
->daylight_params
;
209 } else if (! strcasecmp ("TZID", node
->name
)) {
210 /* See comment below in format_datetime() about removing any enclosing quotes from a
211 timezone identifier. */
212 char *buf
= mh_xmalloc(strlen(node
->value
) + 1);
213 unquote_string(node
->value
, buf
);
214 timezone
->tzid
= buf
;
217 if (! strcasecmp ("BEGIN", node
->name
) &&
218 ! strcasecmp ("VTIMEZONE", node
->value
)) {
225 for (t
= timezones
; t
&& t
->next
; t
= t
->next
) { continue; }
226 /* The loop terminated at, not after, the last
230 timezones
= timezone
;
240 free_timezones (tzdesc_t timezone
) {
243 for ( ; timezone
; timezone
= next
) {
244 free (timezone
->tzid
);
245 next
= timezone
->next
;
251 * Convert time to local timezone, accounting for daylight saving time:
252 * - Detect which type of datetime the node contains:
253 * Form #1: DATE WITH LOCAL TIME
254 * Form #2: DATE WITH UTC TIME
255 * Form #3: DATE WITH LOCAL TIME AND TIME ZONE REFERENCE
256 * - Convert value to local time in seconds since epoch.
257 * - If there's a DST in the timezone, convert its start and end
258 * date-times to local time in seconds, also. Then determine
259 * if the value is between them, and therefore DST. Otherwise, it's
261 * - Format the time value.
265 * Given a recurrence rule and year, calculate its time in seconds
266 * from 01 January UTC of the year.
269 rrule_clock (const char *rrule
, const char *starttime
, const char *zone
,
273 if (nmh_strcasestr (rrule
, "FREQ=YEARLY;INTERVAL=1") ||
274 (nmh_strcasestr (rrule
, "FREQ=YEARLY") && nmh_strcasestr(rrule
, "INTERVAL") == NULL
)) {
277 int wday
= -1, month
= -1;
278 int specific_day
= 1; /* BYDAY integer (prefix) */
282 if ((cp
= nmh_strcasestr (rrule
, "BYDAY="))) {
284 /* BYDAY integers must be ASCII. */
285 if (*cp
== '+') { ++cp
; } /* +n specific day; don't support '-' */
286 else if (*cp
== '-') { goto fail
; }
288 if (isdigit ((unsigned char) *cp
)) { specific_day
= *cp
++ - 0x30; }
290 if (! strncasecmp (cp
, "SU", 2)) { wday
= 0; }
291 else if (! strncasecmp (cp
, "MO", 2)) { wday
= 1; }
292 else if (! strncasecmp (cp
, "TU", 2)) { wday
= 2; }
293 else if (! strncasecmp (cp
, "WE", 2)) { wday
= 3; }
294 else if (! strncasecmp (cp
, "TH", 2)) { wday
= 4; }
295 else if (! strncasecmp (cp
, "FR", 2)) { wday
= 5; }
296 else if (! strncasecmp (cp
, "SA", 2)) { wday
= 6; }
298 if ((cp
= nmh_strcasestr (rrule
, "BYMONTH="))) {
299 month
= atoi (cp
+ 8);
302 for (day
= 1; day
<= 7; ++day
) {
303 /* E.g, 11-01-2014 02:00:00-0400 */
304 snprintf (buf
, sizeof buf
, "%02d-%02d-%04u %.2s:%.2s:%.2s%s",
305 month
, day
+ 7 * (specific_day
-1), year
,
306 starttime
, starttime
+ 2, starttime
+ 4,
307 zone
? zone
: "0000");
308 if ((tws
= dparsetime (buf
))) {
309 if (! (tws
->tw_flags
& (TW_SEXP
|TW_SIMP
))) { set_dotw (tws
); }
311 if (tws
->tw_wday
== wday
) {
312 /* Found the day specified in the RRULE. */
319 clock
= tws
->tw_clock
;
325 inform("Unsupported RRULE format: %s, assume local timezone, continuing...",
333 format_datetime (tzdesc_t timezones
, const contentline
*node
) {
335 char *dt_timezone
= NULL
;
337 struct tws tws
[2]; /* [standard, daylight] */
339 char *tp_std
, *tp_dst
, *tp_dt
;
341 /* Extract the timezone, if specified (RFC 5545 Sec. 3.3.5 Form #3). */
342 for (p
= node
->params
; p
&& p
->param_name
; p
= p
->next
) {
343 if (! strcasecmp (p
->param_name
, "TZID") && p
->values
) {
344 /* Remove any enclosing quotes from the timezone identifier. I don't believe that it's
345 legal for it to be quoted, according to RFC 5545 ยง 3.2.19:
346 tzidparam = "TZID" "=" [tzidprefix] paramtext
348 where paramtext includes SAFE-CHAR, which specifically excludes DQUOTE. But we'll
349 be generous and strip quotes. */
350 char *buf
= mh_xmalloc(strlen(p
->values
->value
) + 1);
351 unquote_string(p
->values
->value
, buf
);
358 /* Form #1: DATE WITH LOCAL TIME, i.e., no time zone, or
359 Form #2: DATE WITH UTC TIME */
360 if (parse_datetime (node
->value
, NULL
, 0, &tws
[0]) == OK
) {
361 return strdup (dasctime (&tws
[0], 0));
363 inform("unable to parse datetime %s", node
->value
);
369 * Form #3: DATE WITH LOCAL TIME AND TIME ZONE REFERENCE
372 /* Find the corresponding tzdesc. */
373 for (tz
= timezones
; dt_timezone
&& tz
; tz
= tz
->next
) {
374 /* Property parameter values are case insensitive (RFC 5545
375 Sec. 2) and time zone identifiers are property parameters
376 (RFC 5545 Sec. 3.8.2.4), though it would seem odd to use
377 different case in the same file for identifiers that are
378 supposed to be the same. */
379 if (tz
->tzid
&& ! strcasecmp (dt_timezone
, tz
->tzid
)) { break; }
385 inform("did not find VTIMEZONE section for %s", dt_timezone
);
390 /* Determine if it's Daylight Saving. */
391 tp_std
= strchr (tz
->standard_params
.dtstart
, 'T');
392 tp_dt
= strchr (node
->value
, 'T');
394 if (tz
->daylight_params
.dtstart
) {
395 tp_dst
= strchr (tz
->daylight_params
.dtstart
, 'T');
397 /* No DAYLIGHT section. */
402 if (tp_std
&& tp_dt
) {
403 time_t transition
[2] = { 0, 0 }; /* [standard, daylight] */
404 time_t dt
[2]; /* [standard, daylight] */
408 /* Datetime is form YYYYMMDDThhmmss. Extract year. */
409 memcpy (buf
, node
->value
, sizeof buf
- 1);
410 buf
[sizeof buf
- 1] = '\0';
413 if (tz
->standard_params
.rrule
) {
414 /* +1 to skip the T before the time */
416 rrule_clock (tz
->standard_params
.rrule
, tp_std
+ 1,
417 tz
->standard_params
.offsetfrom
, year
);
419 if (tp_dst
&& tz
->daylight_params
.rrule
) {
420 /* +1 to skip the T before the time */
422 rrule_clock (tz
->daylight_params
.rrule
, tp_dst
+ 1,
423 tz
->daylight_params
.offsetfrom
, year
);
426 if (transition
[0] < transition
[1]) {
427 inform("format_datetime() requires that daylight "
428 "saving time transition precede standard time "
433 if (parse_datetime (node
->value
, tz
->standard_params
.offsetto
,
435 dt
[0] = tws
[0].tw_clock
;
437 inform("unable to parse datetime %s", node
->value
);
442 if (dt
[0] < transition
[1]) {
445 if (parse_datetime (node
->value
,
446 tz
->daylight_params
.offsetto
, 1,
448 dt
[1] = tws
[1].tw_clock
;
450 inform("unable to parse datetime %s",
455 dst
= dt
[1] <= transition
[0];
460 if (tz
->daylight_params
.start_dt
> 0 &&
461 dt
[dst
] < tz
->daylight_params
.start_dt
) {
462 inform("date-time of %s is before VTIMEZONE start "
463 "of %s", node
->value
,
464 tz
->daylight_params
.dtstart
);
468 if (tz
->standard_params
.start_dt
> 0 &&
469 dt
[dst
] < tz
->standard_params
.start_dt
) {
470 inform("date-time of %s is before VTIMEZONE start "
471 "of %s", node
->value
,
472 tz
->standard_params
.dtstart
);
478 inform("unsupported date-time format: %s",
479 tz
->standard_params
.dtstart
);
483 inform("unsupported date-time format: %s", node
->value
);
488 return strdup (dasctime (&tws
[dst
], 0));