/src/libxslt/libexslt/date.c
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1 | | /* |
2 | | * date.c: Implementation of the EXSLT -- Dates and Times module |
3 | | * |
4 | | * References: |
5 | | * http://www.exslt.org/date/date.html |
6 | | * |
7 | | * See Copyright for the status of this software. |
8 | | * |
9 | | * Authors: |
10 | | * Charlie Bozeman <cbozeman@HiWAAY.net> |
11 | | * Thomas Broyer <tbroyer@ltgt.net> |
12 | | * |
13 | | * TODO: |
14 | | * elements: |
15 | | * date-format |
16 | | * functions: |
17 | | * format-date |
18 | | * parse-date |
19 | | * sum |
20 | | */ |
21 | | |
22 | | #define IN_LIBEXSLT |
23 | | #include "libexslt/libexslt.h" |
24 | | |
25 | | #if defined(HAVE_LOCALTIME_R) && defined(__GLIBC__) /* _POSIX_SOURCE required by gnu libc */ |
26 | | #ifndef _AIX51 /* but on AIX we're not using gnu libc */ |
27 | | #define _POSIX_SOURCE |
28 | | #endif |
29 | | #endif |
30 | | |
31 | | #include <libxml/tree.h> |
32 | | #include <libxml/xpath.h> |
33 | | #include <libxml/xpathInternals.h> |
34 | | |
35 | | #include <libxslt/xsltutils.h> |
36 | | #include <libxslt/xsltInternals.h> |
37 | | #include <libxslt/extensions.h> |
38 | | |
39 | | #include "exslt.h" |
40 | | |
41 | | #include <string.h> |
42 | | #include <limits.h> |
43 | | #include <errno.h> |
44 | | #include <math.h> |
45 | | |
46 | | /* needed to get localtime_r on Solaris */ |
47 | | #ifdef __sun |
48 | | #ifndef __EXTENSIONS__ |
49 | | #define __EXTENSIONS__ |
50 | | #endif |
51 | | #endif |
52 | | |
53 | | #include <time.h> |
54 | | |
55 | | /* |
56 | | * types of date and/or time (from schema datatypes) |
57 | | * somewhat ordered from least specific to most specific (i.e. |
58 | | * most truncated to least truncated). |
59 | | */ |
60 | | typedef enum { |
61 | | EXSLT_UNKNOWN = 0, |
62 | | XS_TIME = 1, /* time is left-truncated */ |
63 | | XS_GDAY = (XS_TIME << 1), |
64 | | XS_GMONTH = (XS_GDAY << 1), |
65 | | XS_GMONTHDAY = (XS_GMONTH | XS_GDAY), |
66 | | XS_GYEAR = (XS_GMONTH << 1), |
67 | | XS_GYEARMONTH = (XS_GYEAR | XS_GMONTH), |
68 | | XS_DATE = (XS_GYEAR | XS_GMONTH | XS_GDAY), |
69 | | XS_DATETIME = (XS_DATE | XS_TIME) |
70 | | } exsltDateType; |
71 | | |
72 | | /* Date value */ |
73 | | typedef struct _exsltDateVal exsltDateVal; |
74 | | typedef exsltDateVal *exsltDateValPtr; |
75 | | struct _exsltDateVal { |
76 | | exsltDateType type; |
77 | | long year; |
78 | | unsigned int mon :4; /* 1 <= mon <= 12 */ |
79 | | unsigned int day :5; /* 1 <= day <= 31 */ |
80 | | unsigned int hour :5; /* 0 <= hour <= 23 */ |
81 | | unsigned int min :6; /* 0 <= min <= 59 */ |
82 | | double sec; |
83 | | unsigned int tz_flag :1; /* is tzo explicitely set? */ |
84 | | signed int tzo :12; /* -1440 <= tzo <= 1440 currently only -840 to +840 are needed */ |
85 | | }; |
86 | | |
87 | | /* Duration value */ |
88 | | typedef struct _exsltDateDurVal exsltDateDurVal; |
89 | | typedef exsltDateDurVal *exsltDateDurValPtr; |
90 | | struct _exsltDateDurVal { |
91 | | long mon; /* mon stores years also */ |
92 | | long day; |
93 | | double sec; /* sec stores min and hour also |
94 | | 0 <= sec < SECS_PER_DAY */ |
95 | | }; |
96 | | |
97 | | /**************************************************************** |
98 | | * * |
99 | | * Convenience macros and functions * |
100 | | * * |
101 | | ****************************************************************/ |
102 | | |
103 | | #define IS_TZO_CHAR(c) \ |
104 | 175k | ((c == 0) || (c == 'Z') || (c == '+') || (c == '-')) |
105 | | |
106 | 13.4k | #define VALID_ALWAYS(num) (num >= 0) |
107 | 127k | #define VALID_MONTH(mon) ((mon >= 1) && (mon <= 12)) |
108 | | /* VALID_DAY should only be used when month is unknown */ |
109 | 40.5k | #define VALID_DAY(day) ((day >= 1) && (day <= 31)) |
110 | 193k | #define VALID_HOUR(hr) ((hr >= 0) && (hr <= 23)) |
111 | 25.2k | #define VALID_MIN(min) ((min >= 0) && (min <= 59)) |
112 | 35.3k | #define VALID_SEC(sec) ((sec >= 0) && (sec < 60)) |
113 | 20.0k | #define VALID_TZO(tzo) ((tzo > -1440) && (tzo < 1440)) |
114 | | #define IS_LEAP(y) \ |
115 | 1.01M | (((y & 3) == 0) && ((y % 25 != 0) || ((y & 15) == 0))) |
116 | | |
117 | | static const long daysInMonth[12] = |
118 | | { 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 }; |
119 | | static const long daysInMonthLeap[12] = |
120 | | { 31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 }; |
121 | | |
122 | | #define MAX_DAYINMONTH(yr,mon) \ |
123 | 986k | (IS_LEAP(yr) ? daysInMonthLeap[mon - 1] : daysInMonth[mon - 1]) |
124 | | |
125 | | #define VALID_MDAY(dt) \ |
126 | 28.0k | (IS_LEAP(dt->year) ? \ |
127 | 28.0k | (dt->day <= daysInMonthLeap[dt->mon - 1]) : \ |
128 | 28.0k | (dt->day <= daysInMonth[dt->mon - 1])) |
129 | | |
130 | | #define VALID_DATE(dt) \ |
131 | 32.4k | (VALID_MONTH(dt->mon) && VALID_MDAY(dt)) |
132 | | |
133 | | /* |
134 | | hour and min structure vals are unsigned, so normal macros give |
135 | | warnings on some compilers. |
136 | | */ |
137 | | #define VALID_TIME(dt) \ |
138 | 17.6k | ((dt->hour <=23 ) && (dt->min <= 59) && \ |
139 | 17.6k | VALID_SEC(dt->sec) && VALID_TZO(dt->tzo)) |
140 | | |
141 | | #define VALID_DATETIME(dt) \ |
142 | 4.38k | (VALID_DATE(dt) && VALID_TIME(dt)) |
143 | | |
144 | 68.0k | #define SECS_PER_MIN 60 |
145 | 63.4k | #define MINS_PER_HOUR 60 |
146 | 59.7k | #define HOURS_PER_DAY 24 |
147 | 55.0k | #define SECS_PER_HOUR (MINS_PER_HOUR * SECS_PER_MIN) |
148 | 42.4k | #define SECS_PER_DAY (HOURS_PER_DAY * SECS_PER_HOUR) |
149 | 8.37k | #define MINS_PER_DAY (HOURS_PER_DAY * MINS_PER_HOUR) |
150 | 2.58k | #define DAYS_PER_EPOCH (400 * 365 + 100 - 4 + 1) |
151 | 1.29k | #define YEARS_PER_EPOCH 400 |
152 | | |
153 | | static const long dayInYearByMonth[12] = |
154 | | { 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334 }; |
155 | | static const long dayInLeapYearByMonth[12] = |
156 | | { 0, 31, 60, 91, 121, 152, 182, 213, 244, 274, 305, 335 }; |
157 | | |
158 | | #define DAY_IN_YEAR(day, month, year) \ |
159 | 1.85k | ((IS_LEAP(year) ? \ |
160 | 1.85k | dayInLeapYearByMonth[month - 1] : \ |
161 | 1.85k | dayInYearByMonth[month - 1]) + day) |
162 | | |
163 | 690k | #define YEAR_MAX LONG_MAX |
164 | 52.0k | #define YEAR_MIN (-LONG_MAX + 1) |
165 | | |
166 | | /** |
167 | | * _exsltDateParseGYear: |
168 | | * @dt: pointer to a date structure |
169 | | * @str: pointer to the string to analyze |
170 | | * |
171 | | * Parses a xs:gYear without time zone and fills in the appropriate |
172 | | * field of the @dt structure. @str is updated to point just after the |
173 | | * xs:gYear. It is supposed that @dt->year is big enough to contain |
174 | | * the year. |
175 | | * |
176 | | * According to XML Schema Part 2, the year "0000" is an illegal year value |
177 | | * which probably means that the year preceding AD 1 is BC 1. Internally, |
178 | | * we allow a year 0 and adjust the value when parsing and formatting. |
179 | | * |
180 | | * Returns 0 or the error code |
181 | | */ |
182 | | static int |
183 | | _exsltDateParseGYear (exsltDateValPtr dt, const xmlChar **str) |
184 | 145k | { |
185 | 145k | const xmlChar *cur = *str, *firstChar; |
186 | 145k | int isneg = 0, digcnt = 0; |
187 | | |
188 | 145k | if (((*cur < '0') || (*cur > '9')) && |
189 | 145k | (*cur != '-') && (*cur != '+')) |
190 | 19.9k | return -1; |
191 | | |
192 | 125k | if (*cur == '-') { |
193 | 22.6k | isneg = 1; |
194 | 22.6k | cur++; |
195 | 22.6k | } |
196 | | |
197 | 125k | firstChar = cur; |
198 | | |
199 | 797k | while ((*cur >= '0') && (*cur <= '9')) { |
200 | 674k | if (dt->year >= YEAR_MAX / 10) /* Not really exact */ |
201 | 2.95k | return -1; |
202 | 671k | dt->year = dt->year * 10 + (*cur - '0'); |
203 | 671k | cur++; |
204 | 671k | digcnt++; |
205 | 671k | } |
206 | | |
207 | | /* year must be at least 4 digits (CCYY); over 4 |
208 | | * digits cannot have a leading zero. */ |
209 | 122k | if ((digcnt < 4) || ((digcnt > 4) && (*firstChar == '0'))) |
210 | 37.5k | return 1; |
211 | | |
212 | 85.3k | if (dt->year == 0) |
213 | 1.03k | return 2; |
214 | | |
215 | | /* The internal representation of negative years is continuous. */ |
216 | 84.2k | if (isneg) |
217 | 13.3k | dt->year = -dt->year + 1; |
218 | | |
219 | 84.2k | *str = cur; |
220 | | |
221 | | #ifdef DEBUG_EXSLT_DATE |
222 | | xsltGenericDebug(xsltGenericDebugContext, |
223 | | "Parsed year %04ld\n", dt->year); |
224 | | #endif |
225 | | |
226 | 84.2k | return 0; |
227 | 85.3k | } |
228 | | |
229 | | /** |
230 | | * FORMAT_GYEAR: |
231 | | * @yr: the year to format |
232 | | * @cur: a pointer to an allocated buffer |
233 | | * |
234 | | * Formats @yr in xsl:gYear format. Result is appended to @cur and |
235 | | * @cur is updated to point after the xsl:gYear. |
236 | | */ |
237 | | #define FORMAT_GYEAR(yr, cur) \ |
238 | 1.71k | if (yr <= 0) { \ |
239 | 546 | *cur = '-'; \ |
240 | 546 | cur++; \ |
241 | 546 | } \ |
242 | 1.71k | { \ |
243 | 1.71k | long year = (yr <= 0) ? -yr + 1 : yr; \ |
244 | 1.71k | xmlChar tmp_buf[100], *tmp = tmp_buf; \ |
245 | 1.71k | /* result is in reverse-order */ \ |
246 | 20.2k | while (year > 0) { \ |
247 | 18.5k | *tmp = '0' + (xmlChar)(year % 10); \ |
248 | 18.5k | year /= 10; \ |
249 | 18.5k | tmp++; \ |
250 | 18.5k | } \ |
251 | 1.71k | /* virtually adds leading zeros */ \ |
252 | 1.88k | while ((tmp - tmp_buf) < 4) \ |
253 | 1.71k | *tmp++ = '0'; \ |
254 | 1.71k | /* restore the correct order */ \ |
255 | 20.4k | while (tmp > tmp_buf) { \ |
256 | 18.6k | tmp--; \ |
257 | 18.6k | *cur = *tmp; \ |
258 | 18.6k | cur++; \ |
259 | 18.6k | } \ |
260 | 1.71k | } |
261 | | |
262 | | /** |
263 | | * PARSE_2_DIGITS: |
264 | | * @num: the integer to fill in |
265 | | * @cur: an #xmlChar * |
266 | | * @func: validation function for the number |
267 | | * @invalid: an integer |
268 | | * |
269 | | * Parses a 2-digits integer and updates @num with the value. @cur is |
270 | | * updated to point just after the integer. |
271 | | * In case of error, @invalid is set to %TRUE, values of @num and |
272 | | * @cur are undefined. |
273 | | */ |
274 | | #define PARSE_2_DIGITS(num, cur, func, invalid) \ |
275 | 414k | if ((cur[0] < '0') || (cur[0] > '9') || \ |
276 | 414k | (cur[1] < '0') || (cur[1] > '9')) \ |
277 | 414k | invalid = 1; \ |
278 | 414k | else { \ |
279 | 343k | int val; \ |
280 | 343k | val = (cur[0] - '0') * 10 + (cur[1] - '0'); \ |
281 | 343k | if (!func(val)) \ |
282 | 343k | invalid = 2; \ |
283 | 343k | else \ |
284 | 343k | num = val; \ |
285 | 343k | } \ |
286 | 414k | cur += 2; |
287 | | |
288 | | /** |
289 | | * FORMAT_2_DIGITS: |
290 | | * @num: the integer to format |
291 | | * @cur: a pointer to an allocated buffer |
292 | | * |
293 | | * Formats a 2-digits integer. Result is appended to @cur and |
294 | | * @cur is updated to point after the integer. |
295 | | */ |
296 | | #define FORMAT_2_DIGITS(num, cur) \ |
297 | 2.71k | *cur = '0' + ((num / 10) % 10); \ |
298 | 2.71k | cur++; \ |
299 | 2.71k | *cur = '0' + (num % 10); \ |
300 | 2.71k | cur++; |
301 | | |
302 | | /** |
303 | | * PARSE_FLOAT: |
304 | | * @num: the double to fill in |
305 | | * @cur: an #xmlChar * |
306 | | * @invalid: an integer |
307 | | * |
308 | | * Parses a float and updates @num with the value. @cur is |
309 | | * updated to point just after the float. The float must have a |
310 | | * 2-digits integer part and may or may not have a decimal part. |
311 | | * In case of error, @invalid is set to %TRUE, values of @num and |
312 | | * @cur are undefined. |
313 | | */ |
314 | | #define PARSE_FLOAT(num, cur, invalid) \ |
315 | 16.4k | PARSE_2_DIGITS(num, cur, VALID_ALWAYS, invalid); \ |
316 | 16.4k | if (!invalid && (*cur == '.')) { \ |
317 | 4.78k | double mult = 1; \ |
318 | 4.78k | cur++; \ |
319 | 4.78k | if ((*cur < '0') || (*cur > '9')) \ |
320 | 4.78k | invalid = 1; \ |
321 | 44.2k | while ((*cur >= '0') && (*cur <= '9')) { \ |
322 | 39.4k | mult /= 10; \ |
323 | 39.4k | num += (*cur - '0') * mult; \ |
324 | 39.4k | cur++; \ |
325 | 39.4k | } \ |
326 | 4.78k | } |
327 | | |
328 | | /** |
329 | | * _exsltDateParseGMonth: |
330 | | * @dt: pointer to a date structure |
331 | | * @str: pointer to the string to analyze |
332 | | * |
333 | | * Parses a xs:gMonth without time zone and fills in the appropriate |
334 | | * field of the @dt structure. @str is updated to point just after the |
335 | | * xs:gMonth. |
336 | | * |
337 | | * Returns 0 or the error code |
338 | | */ |
339 | | static int |
340 | | _exsltDateParseGMonth (exsltDateValPtr dt, const xmlChar **str) |
341 | 83.7k | { |
342 | 83.7k | const xmlChar *cur = *str; |
343 | 83.7k | int ret = 0; |
344 | | |
345 | 83.7k | PARSE_2_DIGITS(dt->mon, cur, VALID_MONTH, ret); |
346 | 83.7k | if (ret != 0) |
347 | 19.4k | return ret; |
348 | | |
349 | 64.2k | *str = cur; |
350 | | |
351 | | #ifdef DEBUG_EXSLT_DATE |
352 | | xsltGenericDebug(xsltGenericDebugContext, |
353 | | "Parsed month %02i\n", dt->mon); |
354 | | #endif |
355 | | |
356 | 64.2k | return 0; |
357 | 83.7k | } |
358 | | |
359 | | /** |
360 | | * FORMAT_GMONTH: |
361 | | * @mon: the month to format |
362 | | * @cur: a pointer to an allocated buffer |
363 | | * |
364 | | * Formats @mon in xsl:gMonth format. Result is appended to @cur and |
365 | | * @cur is updated to point after the xsl:gMonth. |
366 | | */ |
367 | | #define FORMAT_GMONTH(mon, cur) \ |
368 | 1.31k | FORMAT_2_DIGITS(mon, cur) |
369 | | |
370 | | /** |
371 | | * _exsltDateParseGDay: |
372 | | * @dt: pointer to a date structure |
373 | | * @str: pointer to the string to analyze |
374 | | * |
375 | | * Parses a xs:gDay without time zone and fills in the appropriate |
376 | | * field of the @dt structure. @str is updated to point just after the |
377 | | * xs:gDay. |
378 | | * |
379 | | * Returns 0 or the error code |
380 | | */ |
381 | | static int |
382 | | _exsltDateParseGDay (exsltDateValPtr dt, const xmlChar **str) |
383 | 53.2k | { |
384 | 53.2k | const xmlChar *cur = *str; |
385 | 53.2k | int ret = 0; |
386 | | |
387 | 53.2k | PARSE_2_DIGITS(dt->day, cur, VALID_DAY, ret); |
388 | 53.2k | if (ret != 0) |
389 | 17.5k | return ret; |
390 | | |
391 | 35.7k | *str = cur; |
392 | | |
393 | | #ifdef DEBUG_EXSLT_DATE |
394 | | xsltGenericDebug(xsltGenericDebugContext, |
395 | | "Parsed day %02i\n", dt->day); |
396 | | #endif |
397 | | |
398 | 35.7k | return 0; |
399 | 53.2k | } |
400 | | |
401 | | /** |
402 | | * FORMAT_GDAY: |
403 | | * @dt: the #exsltDateVal to format |
404 | | * @cur: a pointer to an allocated buffer |
405 | | * |
406 | | * Formats @dt in xsl:gDay format. Result is appended to @cur and |
407 | | * @cur is updated to point after the xsl:gDay. |
408 | | */ |
409 | | #define FORMAT_GDAY(dt, cur) \ |
410 | 1.20k | FORMAT_2_DIGITS(dt->day, cur) |
411 | | |
412 | | /** |
413 | | * FORMAT_DATE: |
414 | | * @dt: the #exsltDateVal to format |
415 | | * @cur: a pointer to an allocated buffer |
416 | | * |
417 | | * Formats @dt in xsl:date format. Result is appended to @cur and |
418 | | * @cur is updated to point after the xsl:date. |
419 | | */ |
420 | | #define FORMAT_DATE(dt, cur) \ |
421 | 1.20k | FORMAT_GYEAR(dt->year, cur); \ |
422 | 1.20k | *cur = '-'; \ |
423 | 1.20k | cur++; \ |
424 | 1.20k | FORMAT_GMONTH(dt->mon, cur); \ |
425 | 1.20k | *cur = '-'; \ |
426 | 1.20k | cur++; \ |
427 | 1.20k | FORMAT_GDAY(dt, cur); |
428 | | |
429 | | /** |
430 | | * _exsltDateParseTime: |
431 | | * @dt: pointer to a date structure |
432 | | * @str: pointer to the string to analyze |
433 | | * |
434 | | * Parses a xs:time without time zone and fills in the appropriate |
435 | | * fields of the @dt structure. @str is updated to point just after the |
436 | | * xs:time. |
437 | | * In case of error, values of @dt fields are undefined. |
438 | | * |
439 | | * Returns 0 or the error code |
440 | | */ |
441 | | static int |
442 | | _exsltDateParseTime (exsltDateValPtr dt, const xmlChar **str) |
443 | 112k | { |
444 | 112k | const xmlChar *cur = *str; |
445 | 112k | unsigned int hour = 0; /* use temp var in case str is not xs:time */ |
446 | 112k | int ret = 0; |
447 | | |
448 | 112k | PARSE_2_DIGITS(hour, cur, VALID_HOUR, ret); |
449 | 112k | if (ret != 0) |
450 | 25.8k | return ret; |
451 | | |
452 | 86.4k | if (*cur != ':') |
453 | 59.6k | return 1; |
454 | 26.8k | cur++; |
455 | | |
456 | | /* the ':' insures this string is xs:time */ |
457 | 26.8k | dt->hour = hour; |
458 | | |
459 | 26.8k | PARSE_2_DIGITS(dt->min, cur, VALID_MIN, ret); |
460 | 26.8k | if (ret != 0) |
461 | 8.45k | return ret; |
462 | | |
463 | 18.3k | if (*cur != ':') |
464 | 1.93k | return 1; |
465 | 16.4k | cur++; |
466 | | |
467 | 16.4k | PARSE_FLOAT(dt->sec, cur, ret); |
468 | 16.4k | if (ret != 0) |
469 | 4.21k | return ret; |
470 | | |
471 | 12.1k | if (!VALID_TIME(dt)) |
472 | 624 | return 2; |
473 | | |
474 | 11.5k | *str = cur; |
475 | | |
476 | | #ifdef DEBUG_EXSLT_DATE |
477 | | xsltGenericDebug(xsltGenericDebugContext, |
478 | | "Parsed time %02i:%02i:%02.f\n", |
479 | | dt->hour, dt->min, dt->sec); |
480 | | #endif |
481 | | |
482 | 11.5k | return 0; |
483 | 12.1k | } |
484 | | |
485 | | /** |
486 | | * _exsltDateParseTimeZone: |
487 | | * @dt: pointer to a date structure |
488 | | * @str: pointer to the string to analyze |
489 | | * |
490 | | * Parses a time zone without time zone and fills in the appropriate |
491 | | * field of the @dt structure. @str is updated to point just after the |
492 | | * time zone. |
493 | | * |
494 | | * Returns 0 or the error code |
495 | | */ |
496 | | static int |
497 | | _exsltDateParseTimeZone (exsltDateValPtr dt, const xmlChar **str) |
498 | 146k | { |
499 | 146k | const xmlChar *cur; |
500 | 146k | int ret = 0; |
501 | | |
502 | 146k | if (str == NULL) |
503 | 0 | return -1; |
504 | 146k | cur = *str; |
505 | 146k | switch (*cur) { |
506 | 19.0k | case 0: |
507 | 19.0k | dt->tz_flag = 0; |
508 | 19.0k | dt->tzo = 0; |
509 | 19.0k | break; |
510 | | |
511 | 13.3k | case 'Z': |
512 | 13.3k | dt->tz_flag = 1; |
513 | 13.3k | dt->tzo = 0; |
514 | 13.3k | cur++; |
515 | 13.3k | break; |
516 | | |
517 | 18.1k | case '+': |
518 | 113k | case '-': { |
519 | 113k | int isneg = 0, tmp = 0; |
520 | 113k | isneg = (*cur == '-'); |
521 | | |
522 | 113k | cur++; |
523 | | |
524 | 113k | PARSE_2_DIGITS(tmp, cur, VALID_HOUR, ret); |
525 | 113k | if (ret != 0) |
526 | 31.3k | return ret; |
527 | | |
528 | 82.1k | if (*cur != ':') |
529 | 73.3k | return 1; |
530 | 8.87k | cur++; |
531 | | |
532 | 8.87k | dt->tzo = tmp * 60; |
533 | | |
534 | 8.87k | PARSE_2_DIGITS(tmp, cur, VALID_MIN, ret); |
535 | 8.87k | if (ret != 0) |
536 | 5.82k | return ret; |
537 | | |
538 | 3.05k | dt->tzo += tmp; |
539 | 3.05k | if (isneg) |
540 | 1.75k | dt->tzo = - dt->tzo; |
541 | | |
542 | 3.05k | if (!VALID_TZO(dt->tzo)) |
543 | 0 | return 2; |
544 | | |
545 | 3.05k | break; |
546 | 3.05k | } |
547 | 3.05k | default: |
548 | 744 | return 1; |
549 | 146k | } |
550 | | |
551 | 35.3k | *str = cur; |
552 | | |
553 | | #ifdef DEBUG_EXSLT_DATE |
554 | | xsltGenericDebug(xsltGenericDebugContext, |
555 | | "Parsed time zone offset (%s) %i\n", |
556 | | dt->tz_flag ? "explicit" : "implicit", dt->tzo); |
557 | | #endif |
558 | | |
559 | 35.3k | return 0; |
560 | 146k | } |
561 | | |
562 | | /** |
563 | | * FORMAT_TZ: |
564 | | * @tzo: the timezone offset to format |
565 | | * @cur: a pointer to an allocated buffer |
566 | | * |
567 | | * Formats @tzo timezone. Result is appended to @cur and |
568 | | * @cur is updated to point after the timezone. |
569 | | */ |
570 | | #define FORMAT_TZ(tzo, cur) \ |
571 | 861 | if (tzo == 0) { \ |
572 | 768 | *cur = 'Z'; \ |
573 | 768 | cur++; \ |
574 | 768 | } else { \ |
575 | 93 | int aTzo = (tzo < 0) ? - tzo : tzo; \ |
576 | 93 | int tzHh = aTzo / 60, tzMm = aTzo % 60; \ |
577 | 93 | *cur = (tzo < 0) ? '-' : '+' ; \ |
578 | 93 | cur++; \ |
579 | 93 | FORMAT_2_DIGITS(tzHh, cur); \ |
580 | 93 | *cur = ':'; \ |
581 | 93 | cur++; \ |
582 | 93 | FORMAT_2_DIGITS(tzMm, cur); \ |
583 | 93 | } |
584 | | |
585 | | /**************************************************************** |
586 | | * * |
587 | | * XML Schema Dates/Times Datatypes Handling * |
588 | | * * |
589 | | ****************************************************************/ |
590 | | |
591 | | /** |
592 | | * exsltDateCreateDate: |
593 | | * @type: type to create |
594 | | * |
595 | | * Creates a new #exsltDateVal, uninitialized. |
596 | | * |
597 | | * Returns the #exsltDateValPtr |
598 | | */ |
599 | | static exsltDateValPtr |
600 | | exsltDateCreateDate (exsltDateType type) |
601 | 193k | { |
602 | 193k | exsltDateValPtr ret; |
603 | | |
604 | 193k | ret = (exsltDateValPtr) xmlMalloc(sizeof(exsltDateVal)); |
605 | 193k | if (ret == NULL) { |
606 | 0 | xsltGenericError(xsltGenericErrorContext, |
607 | 0 | "exsltDateCreateDate: out of memory\n"); |
608 | 0 | return (NULL); |
609 | 0 | } |
610 | 193k | memset (ret, 0, sizeof(exsltDateVal)); |
611 | | |
612 | 193k | ret->mon = 1; |
613 | 193k | ret->day = 1; |
614 | | |
615 | 193k | if (type != EXSLT_UNKNOWN) |
616 | 4.52k | ret->type = type; |
617 | | |
618 | 193k | return ret; |
619 | 193k | } |
620 | | |
621 | | /** |
622 | | * exsltDateFreeDate: |
623 | | * @date: an #exsltDateValPtr |
624 | | * |
625 | | * Frees up the @date |
626 | | */ |
627 | | static void |
628 | 193k | exsltDateFreeDate (exsltDateValPtr date) { |
629 | 193k | if (date == NULL) |
630 | 0 | return; |
631 | | |
632 | 193k | xmlFree(date); |
633 | 193k | } |
634 | | |
635 | | /** |
636 | | * exsltDateCreateDuration: |
637 | | * |
638 | | * Creates a new #exsltDateDurVal, uninitialized. |
639 | | * |
640 | | * Returns the #exsltDateDurValPtr |
641 | | */ |
642 | | static exsltDateDurValPtr |
643 | | exsltDateCreateDuration (void) |
644 | 25.2k | { |
645 | 25.2k | exsltDateDurValPtr ret; |
646 | | |
647 | 25.2k | ret = (exsltDateDurValPtr) xmlMalloc(sizeof(exsltDateDurVal)); |
648 | 25.2k | if (ret == NULL) { |
649 | 0 | xsltGenericError(xsltGenericErrorContext, |
650 | 0 | "exsltDateCreateDuration: out of memory\n"); |
651 | 0 | return (NULL); |
652 | 0 | } |
653 | 25.2k | memset (ret, 0, sizeof(exsltDateDurVal)); |
654 | | |
655 | 25.2k | return ret; |
656 | 25.2k | } |
657 | | |
658 | | /** |
659 | | * exsltDateFreeDuration: |
660 | | * @date: an #exsltDateDurValPtr |
661 | | * |
662 | | * Frees up the @duration |
663 | | */ |
664 | | static void |
665 | 25.2k | exsltDateFreeDuration (exsltDateDurValPtr duration) { |
666 | 25.2k | if (duration == NULL) |
667 | 0 | return; |
668 | | |
669 | 25.2k | xmlFree(duration); |
670 | 25.2k | } |
671 | | |
672 | | /** |
673 | | * exsltDateCurrent: |
674 | | * |
675 | | * Returns the current date and time. |
676 | | */ |
677 | | static exsltDateValPtr |
678 | | exsltDateCurrent (void) |
679 | 2.71k | { |
680 | 2.71k | struct tm localTm, gmTm; |
681 | | #if !defined(HAVE_GMTIME_R) && !defined(_WIN32) |
682 | | struct tm *tb = NULL; |
683 | | #endif |
684 | 2.71k | time_t secs; |
685 | 2.71k | int local_s, gm_s; |
686 | 2.71k | exsltDateValPtr ret; |
687 | 2.71k | char *source_date_epoch; |
688 | 2.71k | int override = 0; |
689 | | |
690 | 2.71k | ret = exsltDateCreateDate(XS_DATETIME); |
691 | 2.71k | if (ret == NULL) |
692 | 0 | return NULL; |
693 | | |
694 | | /* |
695 | | * Allow the date and time to be set externally by an exported |
696 | | * environment variable to enable reproducible builds. |
697 | | */ |
698 | 2.71k | source_date_epoch = getenv("SOURCE_DATE_EPOCH"); |
699 | 2.71k | if (source_date_epoch) { |
700 | 0 | errno = 0; |
701 | 0 | secs = (time_t) strtol (source_date_epoch, NULL, 10); |
702 | 0 | if (errno == 0) { |
703 | | #ifdef _WIN32 |
704 | | struct tm *gm = gmtime_s(&localTm, &secs) ? NULL : &localTm; |
705 | | if (gm != NULL) |
706 | | override = 1; |
707 | | #elif HAVE_GMTIME_R |
708 | 0 | if (gmtime_r(&secs, &localTm) != NULL) |
709 | 0 | override = 1; |
710 | | #else |
711 | | tb = gmtime(&secs); |
712 | | if (tb != NULL) { |
713 | | localTm = *tb; |
714 | | override = 1; |
715 | | } |
716 | | #endif |
717 | 0 | } |
718 | 0 | } |
719 | | |
720 | 2.71k | if (override == 0) { |
721 | | /* get current time */ |
722 | 2.71k | secs = time(NULL); |
723 | | |
724 | | #ifdef _WIN32 |
725 | | localtime_s(&localTm, &secs); |
726 | | #elif HAVE_LOCALTIME_R |
727 | 2.71k | localtime_r(&secs, &localTm); |
728 | | #else |
729 | | localTm = *localtime(&secs); |
730 | | #endif |
731 | 2.71k | } |
732 | | |
733 | | /* get real year, not years since 1900 */ |
734 | 2.71k | ret->year = localTm.tm_year + 1900; |
735 | | |
736 | 2.71k | ret->mon = localTm.tm_mon + 1; |
737 | 2.71k | ret->day = localTm.tm_mday; |
738 | 2.71k | ret->hour = localTm.tm_hour; |
739 | 2.71k | ret->min = localTm.tm_min; |
740 | | |
741 | | /* floating point seconds */ |
742 | 2.71k | ret->sec = (double) localTm.tm_sec; |
743 | | |
744 | | /* determine the time zone offset from local to gm time */ |
745 | | #ifdef _WIN32 |
746 | | gmtime_s(&gmTm, &secs); |
747 | | #elif HAVE_GMTIME_R |
748 | 2.71k | gmtime_r(&secs, &gmTm); |
749 | | #else |
750 | | tb = gmtime(&secs); |
751 | | if (tb == NULL) |
752 | | return NULL; |
753 | | gmTm = *tb; |
754 | | #endif |
755 | 2.71k | ret->tz_flag = 0; |
756 | | #if 0 |
757 | | ret->tzo = (((ret->day * 1440) + |
758 | | (ret->hour * 60) + |
759 | | ret->min) - |
760 | | ((gmTm.tm_mday * 1440) + (gmTm.tm_hour * 60) + |
761 | | gmTm.tm_min)); |
762 | | #endif |
763 | 2.71k | local_s = localTm.tm_hour * SECS_PER_HOUR + |
764 | 2.71k | localTm.tm_min * SECS_PER_MIN + |
765 | 2.71k | localTm.tm_sec; |
766 | | |
767 | 2.71k | gm_s = gmTm.tm_hour * SECS_PER_HOUR + |
768 | 2.71k | gmTm.tm_min * SECS_PER_MIN + |
769 | 2.71k | gmTm.tm_sec; |
770 | | |
771 | 2.71k | if (localTm.tm_year < gmTm.tm_year) { |
772 | 0 | ret->tzo = -((SECS_PER_DAY - local_s) + gm_s)/60; |
773 | 2.71k | } else if (localTm.tm_year > gmTm.tm_year) { |
774 | 0 | ret->tzo = ((SECS_PER_DAY - gm_s) + local_s)/60; |
775 | 2.71k | } else if (localTm.tm_mon < gmTm.tm_mon) { |
776 | 0 | ret->tzo = -((SECS_PER_DAY - local_s) + gm_s)/60; |
777 | 2.71k | } else if (localTm.tm_mon > gmTm.tm_mon) { |
778 | 0 | ret->tzo = ((SECS_PER_DAY - gm_s) + local_s)/60; |
779 | 2.71k | } else if (localTm.tm_mday < gmTm.tm_mday) { |
780 | 0 | ret->tzo = -((SECS_PER_DAY - local_s) + gm_s)/60; |
781 | 2.71k | } else if (localTm.tm_mday > gmTm.tm_mday) { |
782 | 0 | ret->tzo = ((SECS_PER_DAY - gm_s) + local_s)/60; |
783 | 2.71k | } else { |
784 | 2.71k | ret->tzo = (local_s - gm_s)/60; |
785 | 2.71k | } |
786 | | |
787 | 2.71k | return ret; |
788 | 2.71k | } |
789 | | |
790 | | /** |
791 | | * exsltDateParse: |
792 | | * @dateTime: string to analyze |
793 | | * |
794 | | * Parses a date/time string |
795 | | * |
796 | | * Returns a newly built #exsltDateValPtr of NULL in case of error |
797 | | */ |
798 | | static exsltDateValPtr |
799 | | exsltDateParse (const xmlChar *dateTime) |
800 | 188k | { |
801 | 188k | exsltDateValPtr dt; |
802 | 188k | int ret; |
803 | 188k | const xmlChar *cur = dateTime; |
804 | | |
805 | 188k | #define RETURN_TYPE_IF_VALID(t) \ |
806 | 188k | if (IS_TZO_CHAR(*cur)) { \ |
807 | 141k | ret = _exsltDateParseTimeZone(dt, &cur); \ |
808 | 141k | if (ret == 0) { \ |
809 | 31.7k | if (*cur != 0) \ |
810 | 31.7k | goto error; \ |
811 | 31.7k | dt->type = t; \ |
812 | 16.8k | return dt; \ |
813 | 31.7k | } \ |
814 | 141k | } |
815 | | |
816 | 188k | if (dateTime == NULL) |
817 | 0 | return NULL; |
818 | | |
819 | 188k | if ((*cur != '-') && (*cur < '0') && (*cur > '9')) |
820 | 0 | return NULL; |
821 | | |
822 | 188k | dt = exsltDateCreateDate(EXSLT_UNKNOWN); |
823 | 188k | if (dt == NULL) |
824 | 0 | return NULL; |
825 | | |
826 | 188k | if ((cur[0] == '-') && (cur[1] == '-')) { |
827 | | /* |
828 | | * It's an incomplete date (xs:gMonthDay, xs:gMonth or |
829 | | * xs:gDay) |
830 | | */ |
831 | 40.4k | cur += 2; |
832 | | |
833 | | /* is it an xs:gDay? */ |
834 | 40.4k | if (*cur == '-') { |
835 | 12.4k | ++cur; |
836 | 12.4k | ret = _exsltDateParseGDay(dt, &cur); |
837 | 12.4k | if (ret != 0) |
838 | 5.99k | goto error; |
839 | | |
840 | 6.49k | RETURN_TYPE_IF_VALID(XS_GDAY); |
841 | | |
842 | 4.81k | goto error; |
843 | 6.49k | } |
844 | | |
845 | | /* |
846 | | * it should be an xs:gMonthDay or xs:gMonth |
847 | | */ |
848 | 27.9k | ret = _exsltDateParseGMonth(dt, &cur); |
849 | 27.9k | if (ret != 0) |
850 | 7.35k | goto error; |
851 | | |
852 | 20.6k | if (*cur != '-') |
853 | 4.30k | goto error; |
854 | 16.3k | cur++; |
855 | | |
856 | | /* is it an xs:gMonth? */ |
857 | 16.3k | if (*cur == '-') { |
858 | 5.70k | cur++; |
859 | 5.70k | RETURN_TYPE_IF_VALID(XS_GMONTH); |
860 | 4.07k | goto error; |
861 | 5.70k | } |
862 | | |
863 | | /* it should be an xs:gMonthDay */ |
864 | 10.6k | ret = _exsltDateParseGDay(dt, &cur); |
865 | 10.6k | if (ret != 0) |
866 | 5.05k | goto error; |
867 | | |
868 | 5.55k | RETURN_TYPE_IF_VALID(XS_GMONTHDAY); |
869 | | |
870 | 3.79k | goto error; |
871 | 5.55k | } |
872 | | |
873 | | /* |
874 | | * It's a right-truncated date or an xs:time. |
875 | | * Try to parse an xs:time then fallback on right-truncated dates. |
876 | | */ |
877 | 148k | if ((*cur >= '0') && (*cur <= '9')) { |
878 | 101k | ret = _exsltDateParseTime(dt, &cur); |
879 | 101k | if (ret == 0) { |
880 | | /* it's an xs:time */ |
881 | 6.99k | RETURN_TYPE_IF_VALID(XS_TIME); |
882 | 4.72k | } |
883 | 101k | } |
884 | | |
885 | | /* fallback on date parsing */ |
886 | 145k | cur = dateTime; |
887 | | |
888 | 145k | ret = _exsltDateParseGYear(dt, &cur); |
889 | 145k | if (ret != 0) |
890 | 61.4k | goto error; |
891 | | |
892 | | /* is it an xs:gYear? */ |
893 | 84.2k | RETURN_TYPE_IF_VALID(XS_GYEAR); |
894 | | |
895 | 68.9k | if (*cur != '-') |
896 | 13.1k | goto error; |
897 | 55.7k | cur++; |
898 | | |
899 | 55.7k | ret = _exsltDateParseGMonth(dt, &cur); |
900 | 55.7k | if (ret != 0) |
901 | 12.1k | goto error; |
902 | | |
903 | | /* is it an xs:gYearMonth? */ |
904 | 43.6k | RETURN_TYPE_IF_VALID(XS_GYEARMONTH); |
905 | | |
906 | 38.8k | if (*cur != '-') |
907 | 8.68k | goto error; |
908 | 30.1k | cur++; |
909 | | |
910 | 30.1k | ret = _exsltDateParseGDay(dt, &cur); |
911 | 30.1k | if ((ret != 0) || !VALID_DATE(dt)) |
912 | 7.15k | goto error; |
913 | | |
914 | | /* is it an xs:date? */ |
915 | 23.0k | RETURN_TYPE_IF_VALID(XS_DATE); |
916 | | |
917 | 18.7k | if (*cur != 'T') |
918 | 7.68k | goto error; |
919 | 11.0k | cur++; |
920 | | |
921 | | /* it should be an xs:dateTime */ |
922 | 11.0k | ret = _exsltDateParseTime(dt, &cur); |
923 | 11.0k | if (ret != 0) |
924 | 6.45k | goto error; |
925 | | |
926 | 4.57k | ret = _exsltDateParseTimeZone(dt, &cur); |
927 | 4.57k | if ((ret != 0) || (*cur != 0) || !VALID_DATETIME(dt)) |
928 | 1.39k | goto error; |
929 | | |
930 | 3.18k | dt->type = XS_DATETIME; |
931 | | |
932 | 3.18k | return dt; |
933 | | |
934 | 168k | error: |
935 | 168k | if (dt != NULL) |
936 | 168k | exsltDateFreeDate(dt); |
937 | 168k | return NULL; |
938 | 4.57k | } |
939 | | |
940 | | /** |
941 | | * exsltDateParseDuration: |
942 | | * @duration: string to analyze |
943 | | * |
944 | | * Parses a duration string |
945 | | * |
946 | | * Returns a newly built #exsltDateDurValPtr of NULL in case of error |
947 | | */ |
948 | | static exsltDateDurValPtr |
949 | | exsltDateParseDuration (const xmlChar *duration) |
950 | 35.8k | { |
951 | 35.8k | const xmlChar *cur = duration; |
952 | 35.8k | exsltDateDurValPtr dur; |
953 | 35.8k | int isneg = 0; |
954 | 35.8k | unsigned int seq = 0; |
955 | 35.8k | long days, secs = 0; |
956 | 35.8k | double sec_frac = 0.0; |
957 | | |
958 | 35.8k | if (duration == NULL) |
959 | 0 | return NULL; |
960 | | |
961 | 35.8k | if (*cur == '-') { |
962 | 16.6k | isneg = 1; |
963 | 16.6k | cur++; |
964 | 16.6k | } |
965 | | |
966 | | /* duration must start with 'P' (after sign) */ |
967 | 35.8k | if (*cur++ != 'P') |
968 | 12.9k | return NULL; |
969 | | |
970 | 22.9k | if (*cur == 0) |
971 | 594 | return NULL; |
972 | | |
973 | 22.3k | dur = exsltDateCreateDuration(); |
974 | 22.3k | if (dur == NULL) |
975 | 0 | return NULL; |
976 | | |
977 | 63.9k | while (*cur != 0) { |
978 | 55.1k | long num = 0; |
979 | 55.1k | size_t has_digits = 0; |
980 | 55.1k | int has_frac = 0; |
981 | 55.1k | const xmlChar desig[] = {'Y', 'M', 'D', 'H', 'M', 'S'}; |
982 | | |
983 | | /* input string should be empty or invalid date/time item */ |
984 | 55.1k | if (seq >= sizeof(desig)) |
985 | 885 | goto error; |
986 | | |
987 | | /* T designator must be present for time items */ |
988 | 54.2k | if (*cur == 'T') { |
989 | 9.89k | if (seq > 3) |
990 | 381 | goto error; |
991 | 9.51k | cur++; |
992 | 9.51k | seq = 3; |
993 | 44.4k | } else if (seq == 3) |
994 | 897 | goto error; |
995 | | |
996 | | /* Parse integral part. */ |
997 | 171k | while (*cur >= '0' && *cur <= '9') { |
998 | 118k | long digit = *cur - '0'; |
999 | | |
1000 | 118k | if (num > LONG_MAX / 10) |
1001 | 694 | goto error; |
1002 | 118k | num *= 10; |
1003 | 118k | if (num > LONG_MAX - digit) |
1004 | 0 | goto error; |
1005 | 118k | num += digit; |
1006 | | |
1007 | 118k | has_digits = 1; |
1008 | 118k | cur++; |
1009 | 118k | } |
1010 | | |
1011 | 52.3k | if (*cur == '.') { |
1012 | | /* Parse fractional part. */ |
1013 | 4.89k | double mult = 1.0; |
1014 | 4.89k | cur++; |
1015 | 4.89k | has_frac = 1; |
1016 | 21.6k | while (*cur >= '0' && *cur <= '9') { |
1017 | 16.7k | mult /= 10.0; |
1018 | 16.7k | sec_frac += (*cur - '0') * mult; |
1019 | 16.7k | has_digits = 1; |
1020 | 16.7k | cur++; |
1021 | 16.7k | } |
1022 | 4.89k | } |
1023 | | |
1024 | 76.3k | while (*cur != desig[seq]) { |
1025 | 31.7k | seq++; |
1026 | | /* No T designator or invalid char. */ |
1027 | 31.7k | if (seq == 3 || seq == sizeof(desig)) |
1028 | 7.63k | goto error; |
1029 | 31.7k | } |
1030 | 44.6k | cur++; |
1031 | | |
1032 | 44.6k | if (!has_digits || (has_frac && (seq != 5))) |
1033 | 2.86k | goto error; |
1034 | | |
1035 | 41.8k | switch (seq) { |
1036 | 11.8k | case 0: |
1037 | | /* Year */ |
1038 | 11.8k | if (num > LONG_MAX / 12) |
1039 | 215 | goto error; |
1040 | 11.6k | dur->mon = num * 12; |
1041 | 11.6k | break; |
1042 | 8.15k | case 1: |
1043 | | /* Month */ |
1044 | 8.15k | if (dur->mon > LONG_MAX - num) |
1045 | 1 | goto error; |
1046 | 8.15k | dur->mon += num; |
1047 | 8.15k | break; |
1048 | 8.04k | case 2: |
1049 | | /* Day */ |
1050 | 8.04k | dur->day = num; |
1051 | 8.04k | break; |
1052 | 4.49k | case 3: |
1053 | | /* Hour */ |
1054 | 4.49k | days = num / HOURS_PER_DAY; |
1055 | 4.49k | if (dur->day > LONG_MAX - days) |
1056 | 0 | goto error; |
1057 | 4.49k | dur->day += days; |
1058 | 4.49k | secs = (num % HOURS_PER_DAY) * SECS_PER_HOUR; |
1059 | 4.49k | break; |
1060 | 4.18k | case 4: |
1061 | | /* Minute */ |
1062 | 4.18k | days = num / MINS_PER_DAY; |
1063 | 4.18k | if (dur->day > LONG_MAX - days) |
1064 | 0 | goto error; |
1065 | 4.18k | dur->day += days; |
1066 | 4.18k | secs += (num % MINS_PER_DAY) * SECS_PER_MIN; |
1067 | 4.18k | break; |
1068 | 5.05k | case 5: |
1069 | | /* Second */ |
1070 | 5.05k | days = num / SECS_PER_DAY; |
1071 | 5.05k | if (dur->day > LONG_MAX - days) |
1072 | 0 | goto error; |
1073 | 5.05k | dur->day += days; |
1074 | 5.05k | secs += num % SECS_PER_DAY; |
1075 | 5.05k | break; |
1076 | 41.8k | } |
1077 | | |
1078 | 41.6k | seq++; |
1079 | 41.6k | } |
1080 | | |
1081 | 8.75k | days = secs / SECS_PER_DAY; |
1082 | 8.75k | if (dur->day > LONG_MAX - days) |
1083 | 0 | goto error; |
1084 | 8.75k | dur->day += days; |
1085 | 8.75k | dur->sec = (secs % SECS_PER_DAY) + sec_frac; |
1086 | | |
1087 | 8.75k | if (isneg) { |
1088 | 5.71k | dur->mon = -dur->mon; |
1089 | 5.71k | dur->day = -dur->day; |
1090 | 5.71k | if (dur->sec != 0.0) { |
1091 | 3.66k | dur->sec = SECS_PER_DAY - dur->sec; |
1092 | 3.66k | dur->day -= 1; |
1093 | 3.66k | } |
1094 | 5.71k | } |
1095 | | |
1096 | | #ifdef DEBUG_EXSLT_DATE |
1097 | | xsltGenericDebug(xsltGenericDebugContext, |
1098 | | "Parsed duration %f\n", dur->sec); |
1099 | | #endif |
1100 | | |
1101 | 8.75k | return dur; |
1102 | | |
1103 | 13.5k | error: |
1104 | 13.5k | if (dur != NULL) |
1105 | 13.5k | exsltDateFreeDuration(dur); |
1106 | 13.5k | return NULL; |
1107 | 8.75k | } |
1108 | | |
1109 | | static void |
1110 | 2.87k | exsltFormatLong(xmlChar **cur, xmlChar *end, long num) { |
1111 | 2.87k | xmlChar buf[20]; |
1112 | 2.87k | int i = 0; |
1113 | | |
1114 | 9.85k | while (i < 20) { |
1115 | 9.85k | buf[i++] = '0' + num % 10; |
1116 | 9.85k | num /= 10; |
1117 | 9.85k | if (num == 0) |
1118 | 2.87k | break; |
1119 | 9.85k | } |
1120 | | |
1121 | 12.7k | while (i > 0) { |
1122 | 9.85k | if (*cur < end) |
1123 | 9.85k | *(*cur)++ = buf[--i]; |
1124 | 9.85k | } |
1125 | 2.87k | } |
1126 | | |
1127 | | static void |
1128 | 2.28k | exsltFormatNanoseconds(xmlChar **cur, xmlChar *end, long nsecs) { |
1129 | 2.28k | long p10, digit; |
1130 | | |
1131 | 2.28k | if (nsecs > 0) { |
1132 | 584 | if (*cur < end) |
1133 | 584 | *(*cur)++ = '.'; |
1134 | 584 | p10 = 100000000; |
1135 | 4.78k | while (nsecs > 0) { |
1136 | 4.20k | digit = nsecs / p10; |
1137 | 4.20k | if (*cur < end) |
1138 | 4.20k | *(*cur)++ = '0' + digit; |
1139 | 4.20k | nsecs -= digit * p10; |
1140 | 4.20k | p10 /= 10; |
1141 | 4.20k | } |
1142 | 584 | } |
1143 | 2.28k | } |
1144 | | |
1145 | | /** |
1146 | | * exsltDateFormatDuration: |
1147 | | * @dur: an #exsltDateDurValPtr |
1148 | | * |
1149 | | * Formats the duration. |
1150 | | * |
1151 | | * Returns a newly allocated string, or NULL in case of error |
1152 | | */ |
1153 | | static xmlChar * |
1154 | | exsltDateFormatDuration (const exsltDateDurValPtr dur) |
1155 | 1.03k | { |
1156 | 1.03k | xmlChar buf[100], *cur = buf, *end = buf + 99; |
1157 | 1.03k | double secs, tmp; |
1158 | 1.03k | long days, months, intSecs, nsecs; |
1159 | | |
1160 | 1.03k | if (dur == NULL) |
1161 | 0 | return NULL; |
1162 | | |
1163 | | /* quick and dirty check */ |
1164 | 1.03k | if ((dur->sec == 0.0) && (dur->day == 0) && (dur->mon == 0)) |
1165 | 26 | return xmlStrdup((xmlChar*)"P0D"); |
1166 | | |
1167 | 1.00k | secs = dur->sec; |
1168 | 1.00k | days = dur->day; |
1169 | 1.00k | months = dur->mon; |
1170 | | |
1171 | 1.00k | *cur = '\0'; |
1172 | 1.00k | if (days < 0) { |
1173 | 234 | if (secs != 0.0) { |
1174 | 212 | secs = SECS_PER_DAY - secs; |
1175 | 212 | days += 1; |
1176 | 212 | } |
1177 | 234 | days = -days; |
1178 | 234 | *cur = '-'; |
1179 | 234 | } |
1180 | 1.00k | if (months < 0) { |
1181 | 403 | months = -months; |
1182 | 403 | *cur = '-'; |
1183 | 403 | } |
1184 | 1.00k | if (*cur == '-') |
1185 | 470 | cur++; |
1186 | | |
1187 | 1.00k | *cur++ = 'P'; |
1188 | | |
1189 | 1.00k | if (months >= 12) { |
1190 | 578 | long years = months / 12; |
1191 | | |
1192 | 578 | months -= years * 12; |
1193 | 578 | exsltFormatLong(&cur, end, years); |
1194 | 578 | if (cur < end) |
1195 | 578 | *cur++ = 'Y'; |
1196 | 578 | } |
1197 | | |
1198 | 1.00k | if (months != 0) { |
1199 | 279 | exsltFormatLong(&cur, end, months); |
1200 | 279 | if (cur < end) |
1201 | 279 | *cur++ = 'M'; |
1202 | 279 | } |
1203 | | |
1204 | 1.00k | if (days != 0) { |
1205 | 538 | exsltFormatLong(&cur, end, days); |
1206 | 538 | if (cur < end) |
1207 | 538 | *cur++ = 'D'; |
1208 | 538 | } |
1209 | | |
1210 | 1.00k | tmp = floor(secs); |
1211 | 1.00k | intSecs = (long) tmp; |
1212 | | /* Round to nearest to avoid issues with floating point precision */ |
1213 | 1.00k | nsecs = (long) floor((secs - tmp) * 1000000000 + 0.5); |
1214 | 1.00k | if (nsecs >= 1000000000) { |
1215 | 0 | nsecs -= 1000000000; |
1216 | 0 | intSecs += 1; |
1217 | 0 | } |
1218 | | |
1219 | 1.00k | if ((intSecs > 0) || (nsecs > 0)) { |
1220 | 567 | if (cur < end) |
1221 | 567 | *cur++ = 'T'; |
1222 | | |
1223 | 567 | if (intSecs >= SECS_PER_HOUR) { |
1224 | 459 | long hours = intSecs / SECS_PER_HOUR; |
1225 | | |
1226 | 459 | intSecs -= hours * SECS_PER_HOUR; |
1227 | 459 | exsltFormatLong(&cur, end, hours); |
1228 | 459 | if (cur < end) |
1229 | 459 | *cur++ = 'H'; |
1230 | 459 | } |
1231 | | |
1232 | 567 | if (intSecs >= SECS_PER_MIN) { |
1233 | 474 | long mins = intSecs / SECS_PER_MIN; |
1234 | | |
1235 | 474 | intSecs -= mins * SECS_PER_MIN; |
1236 | 474 | exsltFormatLong(&cur, end, mins); |
1237 | 474 | if (cur < end) |
1238 | 474 | *cur++ = 'M'; |
1239 | 474 | } |
1240 | | |
1241 | 567 | if ((intSecs > 0) || (nsecs > 0)) { |
1242 | 544 | exsltFormatLong(&cur, end, intSecs); |
1243 | 544 | exsltFormatNanoseconds(&cur, end, nsecs); |
1244 | 544 | if (cur < end) |
1245 | 544 | *cur++ = 'S'; |
1246 | 544 | } |
1247 | 567 | } |
1248 | | |
1249 | 1.00k | *cur = 0; |
1250 | | |
1251 | 1.00k | return xmlStrdup(buf); |
1252 | 1.03k | } |
1253 | | |
1254 | | static void |
1255 | 5.21k | exsltFormatTwoDigits(xmlChar **cur, xmlChar *end, int num) { |
1256 | 5.21k | if (num < 0 || num >= 100) |
1257 | 0 | return; |
1258 | 5.21k | if (*cur < end) |
1259 | 5.21k | *(*cur)++ = '0' + num / 10; |
1260 | 5.21k | if (*cur < end) |
1261 | 5.21k | *(*cur)++ = '0' + num % 10; |
1262 | 5.21k | } |
1263 | | |
1264 | | static void |
1265 | 1.73k | exsltFormatTime(xmlChar **cur, xmlChar *end, exsltDateValPtr dt) { |
1266 | 1.73k | double tmp; |
1267 | 1.73k | long intSecs, nsecs; |
1268 | | |
1269 | 1.73k | exsltFormatTwoDigits(cur, end, dt->hour); |
1270 | 1.73k | if (*cur < end) |
1271 | 1.73k | *(*cur)++ = ':'; |
1272 | | |
1273 | 1.73k | exsltFormatTwoDigits(cur, end, dt->min); |
1274 | 1.73k | if (*cur < end) |
1275 | 1.73k | *(*cur)++ = ':'; |
1276 | | |
1277 | 1.73k | tmp = floor(dt->sec); |
1278 | 1.73k | intSecs = (long) tmp; |
1279 | | /* |
1280 | | * Round to nearest to avoid issues with floating point precision, |
1281 | | * but don't carry over so seconds stay below 60. |
1282 | | */ |
1283 | 1.73k | nsecs = (long) floor((dt->sec - tmp) * 1000000000 + 0.5); |
1284 | 1.73k | if (nsecs > 999999999) |
1285 | 0 | nsecs = 999999999; |
1286 | 1.73k | exsltFormatTwoDigits(cur, end, intSecs); |
1287 | 1.73k | exsltFormatNanoseconds(cur, end, nsecs); |
1288 | 1.73k | } |
1289 | | |
1290 | | /** |
1291 | | * exsltDateFormatDateTime: |
1292 | | * @dt: an #exsltDateValPtr |
1293 | | * |
1294 | | * Formats @dt in xs:dateTime format. |
1295 | | * |
1296 | | * Returns a newly allocated string, or NULL in case of error |
1297 | | */ |
1298 | | static xmlChar * |
1299 | | exsltDateFormatDateTime (const exsltDateValPtr dt) |
1300 | 663 | { |
1301 | 663 | xmlChar buf[100], *cur = buf, *end = buf + 99; |
1302 | | |
1303 | 663 | if ((dt == NULL) || !VALID_DATETIME(dt)) |
1304 | 0 | return NULL; |
1305 | | |
1306 | 663 | FORMAT_DATE(dt, cur); |
1307 | 663 | *cur = 'T'; |
1308 | 663 | cur++; |
1309 | 663 | exsltFormatTime(&cur, end, dt); |
1310 | 663 | FORMAT_TZ(dt->tzo, cur); |
1311 | 663 | *cur = 0; |
1312 | | |
1313 | 663 | return xmlStrdup(buf); |
1314 | 663 | } |
1315 | | |
1316 | | /** |
1317 | | * exsltDateFormatDate: |
1318 | | * @dt: an #exsltDateValPtr |
1319 | | * |
1320 | | * Formats @dt in xs:date format. |
1321 | | * |
1322 | | * Returns a newly allocated string, or NULL in case of error |
1323 | | */ |
1324 | | static xmlChar * |
1325 | | exsltDateFormatDate (const exsltDateValPtr dt) |
1326 | 544 | { |
1327 | 544 | xmlChar buf[100], *cur = buf; |
1328 | | |
1329 | 544 | if ((dt == NULL) || !VALID_DATETIME(dt)) |
1330 | 0 | return NULL; |
1331 | | |
1332 | 544 | FORMAT_DATE(dt, cur); |
1333 | 544 | if (dt->tz_flag || (dt->tzo != 0)) { |
1334 | 33 | FORMAT_TZ(dt->tzo, cur); |
1335 | 33 | } |
1336 | 544 | *cur = 0; |
1337 | | |
1338 | 544 | return xmlStrdup(buf); |
1339 | 544 | } |
1340 | | |
1341 | | /** |
1342 | | * exsltDateFormatTime: |
1343 | | * @dt: an #exsltDateValPtr |
1344 | | * |
1345 | | * Formats @dt in xs:time format. |
1346 | | * |
1347 | | * Returns a newly allocated string, or NULL in case of error |
1348 | | */ |
1349 | | static xmlChar * |
1350 | | exsltDateFormatTime (const exsltDateValPtr dt) |
1351 | 1.07k | { |
1352 | 1.07k | xmlChar buf[100], *cur = buf, *end = buf + 99; |
1353 | | |
1354 | 1.07k | if ((dt == NULL) || !VALID_TIME(dt)) |
1355 | 0 | return NULL; |
1356 | | |
1357 | 1.07k | exsltFormatTime(&cur, end, dt); |
1358 | 1.07k | if (dt->tz_flag || (dt->tzo != 0)) { |
1359 | 130 | FORMAT_TZ(dt->tzo, cur); |
1360 | 130 | } |
1361 | 1.07k | *cur = 0; |
1362 | | |
1363 | 1.07k | return xmlStrdup(buf); |
1364 | 1.07k | } |
1365 | | |
1366 | | /** |
1367 | | * exsltDateFormat: |
1368 | | * @dt: an #exsltDateValPtr |
1369 | | * |
1370 | | * Formats @dt in the proper format. |
1371 | | * Note: xs:gmonth and xs:gday are not formatted as there are no |
1372 | | * routines that output them. |
1373 | | * |
1374 | | * Returns a newly allocated string, or NULL in case of error |
1375 | | */ |
1376 | | static xmlChar * |
1377 | | exsltDateFormat (const exsltDateValPtr dt) |
1378 | 1.29k | { |
1379 | | |
1380 | 1.29k | if (dt == NULL) |
1381 | 0 | return NULL; |
1382 | | |
1383 | 1.29k | switch (dt->type) { |
1384 | 624 | case XS_DATETIME: |
1385 | 624 | return exsltDateFormatDateTime(dt); |
1386 | 163 | case XS_DATE: |
1387 | 163 | return exsltDateFormatDate(dt); |
1388 | 0 | case XS_TIME: |
1389 | 0 | return exsltDateFormatTime(dt); |
1390 | 504 | default: |
1391 | 504 | break; |
1392 | 1.29k | } |
1393 | | |
1394 | 504 | if (dt->type & XS_GYEAR) { |
1395 | 504 | xmlChar buf[100], *cur = buf; |
1396 | | |
1397 | 504 | FORMAT_GYEAR(dt->year, cur); |
1398 | 504 | if (dt->type == XS_GYEARMONTH) { |
1399 | 112 | *cur = '-'; |
1400 | 112 | cur++; |
1401 | 112 | FORMAT_GMONTH(dt->mon, cur); |
1402 | 112 | } |
1403 | | |
1404 | 504 | if (dt->tz_flag || (dt->tzo != 0)) { |
1405 | 35 | FORMAT_TZ(dt->tzo, cur); |
1406 | 35 | } |
1407 | 504 | *cur = 0; |
1408 | 504 | return xmlStrdup(buf); |
1409 | 504 | } |
1410 | | |
1411 | 0 | return NULL; |
1412 | 504 | } |
1413 | | |
1414 | | /** |
1415 | | * _exsltDateCastYMToDays: |
1416 | | * @dt: an #exsltDateValPtr |
1417 | | * |
1418 | | * Convert mon and year of @dt to total number of days. Take the |
1419 | | * number of years since (or before) 1 AD and add the number of leap |
1420 | | * years. This is a function because negative |
1421 | | * years must be handled a little differently. |
1422 | | * |
1423 | | * Returns number of days. |
1424 | | */ |
1425 | | static long |
1426 | | _exsltDateCastYMToDays (const exsltDateValPtr dt) |
1427 | 1.24k | { |
1428 | 1.24k | long ret; |
1429 | | |
1430 | 1.24k | if (dt->year <= 0) |
1431 | 270 | ret = ((dt->year-1) * 365) + |
1432 | 270 | (((dt->year)/4)-((dt->year)/100)+ |
1433 | 270 | ((dt->year)/400)) + |
1434 | 270 | DAY_IN_YEAR(0, dt->mon, dt->year) - 1; |
1435 | 970 | else |
1436 | 970 | ret = ((dt->year-1) * 365) + |
1437 | 970 | (((dt->year-1)/4)-((dt->year-1)/100)+ |
1438 | 970 | ((dt->year-1)/400)) + |
1439 | 970 | DAY_IN_YEAR(0, dt->mon, dt->year); |
1440 | | |
1441 | 1.24k | return ret; |
1442 | 1.24k | } |
1443 | | |
1444 | | /** |
1445 | | * TIME_TO_NUMBER: |
1446 | | * @dt: an #exsltDateValPtr |
1447 | | * |
1448 | | * Calculates the number of seconds in the time portion of @dt. |
1449 | | * |
1450 | | * Returns seconds. |
1451 | | */ |
1452 | | #define TIME_TO_NUMBER(dt) \ |
1453 | 1.24k | ((double)((dt->hour * SECS_PER_HOUR) + \ |
1454 | 1.24k | (dt->min * SECS_PER_MIN)) + dt->sec) |
1455 | | |
1456 | | /** |
1457 | | * _exsltDateTruncateDate: |
1458 | | * @dt: an #exsltDateValPtr |
1459 | | * @type: dateTime type to set to |
1460 | | * |
1461 | | * Set @dt to truncated @type. |
1462 | | * |
1463 | | * Returns 0 success, non-zero otherwise. |
1464 | | */ |
1465 | | static int |
1466 | | _exsltDateTruncateDate (exsltDateValPtr dt, exsltDateType type) |
1467 | 639 | { |
1468 | 639 | if (dt == NULL) |
1469 | 0 | return 1; |
1470 | | |
1471 | 639 | if ((type & XS_TIME) != XS_TIME) { |
1472 | 639 | dt->hour = 0; |
1473 | 639 | dt->min = 0; |
1474 | 639 | dt->sec = 0.0; |
1475 | 639 | } |
1476 | | |
1477 | 639 | if ((type & XS_GDAY) != XS_GDAY) |
1478 | 597 | dt->day = 1; |
1479 | | |
1480 | 639 | if ((type & XS_GMONTH) != XS_GMONTH) |
1481 | 545 | dt->mon = 1; |
1482 | | |
1483 | 639 | if ((type & XS_GYEAR) != XS_GYEAR) |
1484 | 0 | dt->year = 0; |
1485 | | |
1486 | 639 | dt->type = type; |
1487 | | |
1488 | 639 | return 0; |
1489 | 639 | } |
1490 | | |
1491 | | /** |
1492 | | * _exsltDayInWeek: |
1493 | | * @yday: year day (1-366) |
1494 | | * @yr: year |
1495 | | * |
1496 | | * Determine the day-in-week from @yday and @yr. 0001-01-01 was |
1497 | | * a Monday so all other days are calculated from there. Take the |
1498 | | * number of years since (or before) add the number of leap years and |
1499 | | * the day-in-year and mod by 7. This is a function because negative |
1500 | | * years must be handled a little differently. |
1501 | | * |
1502 | | * Returns day in week (Sunday = 0). |
1503 | | */ |
1504 | | static long |
1505 | | _exsltDateDayInWeek(long yday, long yr) |
1506 | 421 | { |
1507 | 421 | long ret; |
1508 | | |
1509 | 421 | if (yr <= 0) { |
1510 | | /* Compute modulus twice to avoid integer overflow */ |
1511 | 16 | ret = ((yr%7-2 + ((yr/4)-(yr/100)+(yr/400)) + yday) % 7); |
1512 | 16 | if (ret < 0) |
1513 | 14 | ret += 7; |
1514 | 16 | } else |
1515 | 405 | ret = (((yr%7-1) + (((yr-1)/4)-((yr-1)/100)+((yr-1)/400)) + yday) % 7); |
1516 | | |
1517 | 421 | return ret; |
1518 | 421 | } |
1519 | | |
1520 | | /** |
1521 | | * _exsltDateAdd: |
1522 | | * @dt: an #exsltDateValPtr |
1523 | | * @dur: an #exsltDateDurValPtr |
1524 | | * |
1525 | | * Compute a new date/time from @dt and @dur. This function assumes @dt |
1526 | | * is either #XS_DATETIME, #XS_DATE, #XS_GYEARMONTH, or #XS_GYEAR. |
1527 | | * |
1528 | | * Returns date/time pointer or NULL. |
1529 | | */ |
1530 | | static exsltDateValPtr |
1531 | | _exsltDateAdd (exsltDateValPtr dt, exsltDateDurValPtr dur) |
1532 | 1.29k | { |
1533 | 1.29k | exsltDateValPtr ret; |
1534 | 1.29k | long carry, temp; |
1535 | 1.29k | double sum; |
1536 | | |
1537 | 1.29k | if ((dt == NULL) || (dur == NULL)) |
1538 | 0 | return NULL; |
1539 | | |
1540 | 1.29k | ret = exsltDateCreateDate(dt->type); |
1541 | 1.29k | if (ret == NULL) |
1542 | 0 | return NULL; |
1543 | | |
1544 | | /* |
1545 | | * Note that temporary values may need more bits than the values in |
1546 | | * bit field. |
1547 | | */ |
1548 | | |
1549 | | /* month */ |
1550 | 1.29k | temp = dt->mon + dur->mon % 12; |
1551 | 1.29k | carry = dur->mon / 12; |
1552 | 1.29k | if (temp < 1) { |
1553 | 526 | temp += 12; |
1554 | 526 | carry -= 1; |
1555 | 526 | } |
1556 | 765 | else if (temp > 12) { |
1557 | 19 | temp -= 12; |
1558 | 19 | carry += 1; |
1559 | 19 | } |
1560 | 1.29k | ret->mon = temp; |
1561 | | |
1562 | | /* |
1563 | | * year (may be modified later) |
1564 | | * |
1565 | | * Add epochs from dur->day now to avoid overflow later and to speed up |
1566 | | * pathological cases. |
1567 | | */ |
1568 | 1.29k | carry += (dur->day / DAYS_PER_EPOCH) * YEARS_PER_EPOCH; |
1569 | 1.29k | if ((carry > 0 && dt->year > YEAR_MAX - carry) || |
1570 | 1.29k | (carry < 0 && dt->year < YEAR_MIN - carry)) { |
1571 | | /* Overflow */ |
1572 | 0 | exsltDateFreeDate(ret); |
1573 | 0 | return NULL; |
1574 | 0 | } |
1575 | 1.29k | ret->year = dt->year + carry; |
1576 | | |
1577 | | /* time zone */ |
1578 | 1.29k | ret->tzo = dt->tzo; |
1579 | 1.29k | ret->tz_flag = dt->tz_flag; |
1580 | | |
1581 | | /* seconds */ |
1582 | 1.29k | sum = dt->sec + dur->sec; |
1583 | 1.29k | ret->sec = fmod(sum, 60.0); |
1584 | 1.29k | carry = (long)(sum / 60.0); |
1585 | | |
1586 | | /* minute */ |
1587 | 1.29k | temp = dt->min + carry % 60; |
1588 | 1.29k | carry = carry / 60; |
1589 | 1.29k | if (temp >= 60) { |
1590 | 7 | temp -= 60; |
1591 | 7 | carry += 1; |
1592 | 7 | } |
1593 | 1.29k | ret->min = temp; |
1594 | | |
1595 | | /* hours */ |
1596 | 1.29k | temp = dt->hour + carry % 24; |
1597 | 1.29k | carry = carry / 24; |
1598 | 1.29k | if (temp >= 24) { |
1599 | 204 | temp -= 24; |
1600 | 204 | carry += 1; |
1601 | 204 | } |
1602 | 1.29k | ret->hour = temp; |
1603 | | |
1604 | | /* days */ |
1605 | 1.29k | if (dt->day > MAX_DAYINMONTH(ret->year, ret->mon)) |
1606 | 23 | temp = MAX_DAYINMONTH(ret->year, ret->mon); |
1607 | 1.26k | else if (dt->day < 1) |
1608 | 0 | temp = 1; |
1609 | 1.26k | else |
1610 | 1.26k | temp = dt->day; |
1611 | | |
1612 | 1.29k | temp += dur->day % DAYS_PER_EPOCH + carry; |
1613 | | |
1614 | 799k | while (1) { |
1615 | 799k | if (temp < 1) { |
1616 | 612k | if (ret->mon > 1) { |
1617 | 561k | ret->mon -= 1; |
1618 | 561k | } |
1619 | 51.0k | else { |
1620 | 51.0k | if (ret->year == YEAR_MIN) { |
1621 | 0 | exsltDateFreeDate(ret); |
1622 | 0 | return NULL; |
1623 | 0 | } |
1624 | 51.0k | ret->mon = 12; |
1625 | 51.0k | ret->year -= 1; |
1626 | 51.0k | } |
1627 | 612k | temp += MAX_DAYINMONTH(ret->year, ret->mon); |
1628 | 612k | } else if (temp > (long)MAX_DAYINMONTH(ret->year, ret->mon)) { |
1629 | 185k | temp -= MAX_DAYINMONTH(ret->year, ret->mon); |
1630 | 185k | if (ret->mon < 12) { |
1631 | 170k | ret->mon += 1; |
1632 | 170k | } |
1633 | 15.4k | else { |
1634 | 15.4k | if (ret->year == YEAR_MAX) { |
1635 | 0 | exsltDateFreeDate(ret); |
1636 | 0 | return NULL; |
1637 | 0 | } |
1638 | 15.4k | ret->mon = 1; |
1639 | 15.4k | ret->year += 1; |
1640 | 15.4k | } |
1641 | 185k | } else |
1642 | 1.29k | break; |
1643 | 799k | } |
1644 | | |
1645 | 1.29k | ret->day = temp; |
1646 | | |
1647 | | /* |
1648 | | * adjust the date/time type to the date values |
1649 | | */ |
1650 | 1.29k | if (ret->type != XS_DATETIME) { |
1651 | 996 | if ((ret->hour) || (ret->min) || (ret->sec)) |
1652 | 329 | ret->type = XS_DATETIME; |
1653 | 667 | else if (ret->type != XS_DATE) { |
1654 | 639 | if (ret->day != 1) |
1655 | 135 | ret->type = XS_DATE; |
1656 | 504 | else if ((ret->type != XS_GYEARMONTH) && (ret->mon != 1)) |
1657 | 81 | ret->type = XS_GYEARMONTH; |
1658 | 639 | } |
1659 | 996 | } |
1660 | | |
1661 | 1.29k | return ret; |
1662 | 1.29k | } |
1663 | | |
1664 | | /** |
1665 | | * _exsltDateDifference: |
1666 | | * @x: an #exsltDateValPtr |
1667 | | * @y: an #exsltDateValPtr |
1668 | | * @flag: force difference in days |
1669 | | * |
1670 | | * Calculate the difference between @x and @y as a duration |
1671 | | * (i.e. y - x). If the @flag is set then even if the least specific |
1672 | | * format of @x or @y is xs:gYear or xs:gYearMonth. |
1673 | | * |
1674 | | * Returns a duration pointer or NULL. |
1675 | | */ |
1676 | | static exsltDateDurValPtr |
1677 | | _exsltDateDifference (exsltDateValPtr x, exsltDateValPtr y, int flag) |
1678 | 1.06k | { |
1679 | 1.06k | exsltDateDurValPtr ret; |
1680 | | |
1681 | 1.06k | if ((x == NULL) || (y == NULL)) |
1682 | 0 | return NULL; |
1683 | | |
1684 | 1.06k | if (((x->type < XS_GYEAR) || (x->type > XS_DATETIME)) || |
1685 | 1.06k | ((y->type < XS_GYEAR) || (y->type > XS_DATETIME))) |
1686 | 0 | return NULL; |
1687 | | |
1688 | | /* |
1689 | | * the operand with the most specific format must be converted to |
1690 | | * the same type as the operand with the least specific format. |
1691 | | */ |
1692 | 1.06k | if (x->type != y->type) { |
1693 | 639 | if (x->type < y->type) { |
1694 | 169 | _exsltDateTruncateDate(y, x->type); |
1695 | 470 | } else { |
1696 | 470 | _exsltDateTruncateDate(x, y->type); |
1697 | 470 | } |
1698 | 639 | } |
1699 | | |
1700 | 1.06k | ret = exsltDateCreateDuration(); |
1701 | 1.06k | if (ret == NULL) |
1702 | 0 | return NULL; |
1703 | | |
1704 | 1.06k | if (((x->type == XS_GYEAR) || (x->type == XS_GYEARMONTH)) && (!flag)) { |
1705 | | /* compute the difference in months */ |
1706 | 397 | if ((x->year >= LONG_MAX / 24) || (x->year <= LONG_MIN / 24) || |
1707 | 397 | (y->year >= LONG_MAX / 24) || (y->year <= LONG_MIN / 24)) { |
1708 | | /* Possible overflow. */ |
1709 | 54 | exsltDateFreeDuration(ret); |
1710 | 54 | return NULL; |
1711 | 54 | } |
1712 | 343 | ret->mon = (y->year - x->year) * 12 + (y->mon - x->mon); |
1713 | 667 | } else { |
1714 | 667 | long carry; |
1715 | | |
1716 | 667 | if ((x->year > LONG_MAX / 731) || (x->year < LONG_MIN / 731) || |
1717 | 667 | (y->year > LONG_MAX / 731) || (y->year < LONG_MIN / 731)) { |
1718 | | /* Possible overflow. */ |
1719 | 47 | exsltDateFreeDuration(ret); |
1720 | 47 | return NULL; |
1721 | 47 | } |
1722 | | |
1723 | 620 | ret->sec = TIME_TO_NUMBER(y) - TIME_TO_NUMBER(x); |
1724 | 620 | ret->sec += (x->tzo - y->tzo) * SECS_PER_MIN; |
1725 | 620 | carry = (long)floor(ret->sec / SECS_PER_DAY); |
1726 | 620 | ret->sec = ret->sec - carry * SECS_PER_DAY; |
1727 | | |
1728 | 620 | ret->day = _exsltDateCastYMToDays(y) - _exsltDateCastYMToDays(x); |
1729 | 620 | ret->day += y->day - x->day; |
1730 | 620 | ret->day += carry; |
1731 | 620 | } |
1732 | | |
1733 | 963 | return ret; |
1734 | 1.06k | } |
1735 | | |
1736 | | /** |
1737 | | * _exsltDateAddDurCalc |
1738 | | * @ret: an exsltDateDurValPtr for the return value: |
1739 | | * @x: an exsltDateDurValPtr for the first operand |
1740 | | * @y: an exsltDateDurValPtr for the second operand |
1741 | | * |
1742 | | * Add two durations, catering for possible negative values. |
1743 | | * The sum is placed in @ret. |
1744 | | * |
1745 | | * Returns 1 for success, 0 if error detected. |
1746 | | */ |
1747 | | static int |
1748 | | _exsltDateAddDurCalc (exsltDateDurValPtr ret, exsltDateDurValPtr x, |
1749 | | exsltDateDurValPtr y) |
1750 | 6.55k | { |
1751 | | /* months */ |
1752 | 6.55k | if ((x->mon > 0 && y->mon > LONG_MAX - x->mon) || |
1753 | 6.55k | (x->mon < 0 && y->mon < LONG_MIN - x->mon)) { |
1754 | | /* Overflow */ |
1755 | 0 | return 0; |
1756 | 0 | } |
1757 | 6.55k | ret->mon = x->mon + y->mon; |
1758 | | |
1759 | | /* days */ |
1760 | 6.55k | if ((x->day > 0 && y->day > LONG_MAX - x->day) || |
1761 | 6.55k | (x->day < 0 && y->day < LONG_MIN - x->day)) { |
1762 | | /* Overflow */ |
1763 | 0 | return 0; |
1764 | 0 | } |
1765 | 6.55k | ret->day = x->day + y->day; |
1766 | | |
1767 | | /* seconds */ |
1768 | 6.55k | ret->sec = x->sec + y->sec; |
1769 | 6.55k | if (ret->sec >= SECS_PER_DAY) { |
1770 | 1.80k | if (ret->day == LONG_MAX) { |
1771 | | /* Overflow */ |
1772 | 0 | return 0; |
1773 | 0 | } |
1774 | 1.80k | ret->sec -= SECS_PER_DAY; |
1775 | 1.80k | ret->day += 1; |
1776 | 1.80k | } |
1777 | | |
1778 | | /* |
1779 | | * are the results indeterminate? i.e. how do you subtract days from |
1780 | | * months or years? |
1781 | | */ |
1782 | 6.55k | if (ret->day >= 0) { |
1783 | 3.54k | if (((ret->day > 0) || (ret->sec > 0)) && (ret->mon < 0)) |
1784 | 87 | return 0; |
1785 | 3.54k | } |
1786 | 3.00k | else { |
1787 | 3.00k | if (ret->mon > 0) |
1788 | 62 | return 0; |
1789 | 3.00k | } |
1790 | 6.40k | return 1; |
1791 | 6.55k | } |
1792 | | |
1793 | | /** |
1794 | | * _exsltDateAddDuration: |
1795 | | * @x: an #exsltDateDurValPtr |
1796 | | * @y: an #exsltDateDurValPtr |
1797 | | * |
1798 | | * Compute a new duration from @x and @y. |
1799 | | * |
1800 | | * Returns a duration pointer or NULL. |
1801 | | */ |
1802 | | static exsltDateDurValPtr |
1803 | | _exsltDateAddDuration (exsltDateDurValPtr x, exsltDateDurValPtr y) |
1804 | 162 | { |
1805 | 162 | exsltDateDurValPtr ret; |
1806 | | |
1807 | 162 | if ((x == NULL) || (y == NULL)) |
1808 | 0 | return NULL; |
1809 | | |
1810 | 162 | ret = exsltDateCreateDuration(); |
1811 | 162 | if (ret == NULL) |
1812 | 0 | return NULL; |
1813 | | |
1814 | 162 | if (_exsltDateAddDurCalc(ret, x, y)) |
1815 | 124 | return ret; |
1816 | | |
1817 | 38 | exsltDateFreeDuration(ret); |
1818 | 38 | return NULL; |
1819 | 162 | } |
1820 | | |
1821 | | /**************************************************************** |
1822 | | * * |
1823 | | * EXSLT - Dates and Times functions * |
1824 | | * * |
1825 | | ****************************************************************/ |
1826 | | |
1827 | | /** |
1828 | | * exsltDateDateTime: |
1829 | | * |
1830 | | * Implements the EXSLT - Dates and Times date-time() function: |
1831 | | * string date:date-time() |
1832 | | * |
1833 | | * Returns the current date and time as a date/time string. |
1834 | | */ |
1835 | | static xmlChar * |
1836 | | exsltDateDateTime (void) |
1837 | 39 | { |
1838 | 39 | xmlChar *ret = NULL; |
1839 | 39 | exsltDateValPtr cur; |
1840 | | |
1841 | 39 | cur = exsltDateCurrent(); |
1842 | 39 | if (cur != NULL) { |
1843 | 39 | ret = exsltDateFormatDateTime(cur); |
1844 | 39 | exsltDateFreeDate(cur); |
1845 | 39 | } |
1846 | | |
1847 | 39 | return ret; |
1848 | 39 | } |
1849 | | |
1850 | | /** |
1851 | | * exsltDateDate: |
1852 | | * @dateTime: a date/time string |
1853 | | * |
1854 | | * Implements the EXSLT - Dates and Times date() function: |
1855 | | * string date:date (string?) |
1856 | | * |
1857 | | * Returns the date specified in the date/time string given as the |
1858 | | * argument. If no argument is given, then the current local |
1859 | | * date/time, as returned by date:date-time is used as a default |
1860 | | * argument. |
1861 | | * The date/time string specified as an argument must be a string in |
1862 | | * the format defined as the lexical representation of either |
1863 | | * xs:dateTime or xs:date. If the argument is not in either of these |
1864 | | * formats, returns NULL. |
1865 | | */ |
1866 | | static xmlChar * |
1867 | | exsltDateDate (const xmlChar *dateTime) |
1868 | 2.79k | { |
1869 | 2.79k | exsltDateValPtr dt = NULL; |
1870 | 2.79k | xmlChar *ret = NULL; |
1871 | | |
1872 | 2.79k | if (dateTime == NULL) { |
1873 | 195 | dt = exsltDateCurrent(); |
1874 | 195 | if (dt == NULL) |
1875 | 0 | return NULL; |
1876 | 2.60k | } else { |
1877 | 2.60k | dt = exsltDateParse(dateTime); |
1878 | 2.60k | if (dt == NULL) |
1879 | 2.36k | return NULL; |
1880 | 243 | if ((dt->type != XS_DATETIME) && (dt->type != XS_DATE)) { |
1881 | 57 | exsltDateFreeDate(dt); |
1882 | 57 | return NULL; |
1883 | 57 | } |
1884 | 243 | } |
1885 | | |
1886 | 381 | ret = exsltDateFormatDate(dt); |
1887 | 381 | exsltDateFreeDate(dt); |
1888 | | |
1889 | 381 | return ret; |
1890 | 2.79k | } |
1891 | | |
1892 | | /** |
1893 | | * exsltDateTime: |
1894 | | * @dateTime: a date/time string |
1895 | | * |
1896 | | * Implements the EXSLT - Dates and Times time() function: |
1897 | | * string date:time (string?) |
1898 | | * |
1899 | | * Returns the time specified in the date/time string given as the |
1900 | | * argument. If no argument is given, then the current local |
1901 | | * date/time, as returned by date:date-time is used as a default |
1902 | | * argument. |
1903 | | * The date/time string specified as an argument must be a string in |
1904 | | * the format defined as the lexical representation of either |
1905 | | * xs:dateTime or xs:time. If the argument is not in either of these |
1906 | | * formats, returns NULL. |
1907 | | */ |
1908 | | static xmlChar * |
1909 | | exsltDateTime (const xmlChar *dateTime) |
1910 | 43.2k | { |
1911 | 43.2k | exsltDateValPtr dt = NULL; |
1912 | 43.2k | xmlChar *ret = NULL; |
1913 | | |
1914 | 43.2k | if (dateTime == NULL) { |
1915 | 470 | dt = exsltDateCurrent(); |
1916 | 470 | if (dt == NULL) |
1917 | 0 | return NULL; |
1918 | 42.8k | } else { |
1919 | 42.8k | dt = exsltDateParse(dateTime); |
1920 | 42.8k | if (dt == NULL) |
1921 | 41.1k | return NULL; |
1922 | 1.64k | if ((dt->type != XS_DATETIME) && (dt->type != XS_TIME)) { |
1923 | 1.04k | exsltDateFreeDate(dt); |
1924 | 1.04k | return NULL; |
1925 | 1.04k | } |
1926 | 1.64k | } |
1927 | | |
1928 | 1.07k | ret = exsltDateFormatTime(dt); |
1929 | 1.07k | exsltDateFreeDate(dt); |
1930 | | |
1931 | 1.07k | return ret; |
1932 | 43.2k | } |
1933 | | |
1934 | | /** |
1935 | | * exsltDateYear: |
1936 | | * @dateTime: a date/time string |
1937 | | * |
1938 | | * Implements the EXSLT - Dates and Times year() function |
1939 | | * number date:year (string?) |
1940 | | * Returns the year of a date as a number. If no argument is given, |
1941 | | * then the current local date/time, as returned by date:date-time is |
1942 | | * used as a default argument. |
1943 | | * The date/time string specified as the first argument must be a |
1944 | | * right-truncated string in the format defined as the lexical |
1945 | | * representation of xs:dateTime in one of the formats defined in [XML |
1946 | | * Schema Part 2: Datatypes]. The permitted formats are as follows: |
1947 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
1948 | | * - xs:date (CCYY-MM-DD) |
1949 | | * - xs:gYearMonth (CCYY-MM) |
1950 | | * - xs:gYear (CCYY) |
1951 | | * If the date/time string is not in one of these formats, then NaN is |
1952 | | * returned. |
1953 | | */ |
1954 | | static double |
1955 | | exsltDateYear (const xmlChar *dateTime) |
1956 | 28.8k | { |
1957 | 28.8k | exsltDateValPtr dt; |
1958 | 28.8k | long year; |
1959 | 28.8k | double ret; |
1960 | | |
1961 | 28.8k | if (dateTime == NULL) { |
1962 | 949 | dt = exsltDateCurrent(); |
1963 | 949 | if (dt == NULL) |
1964 | 0 | return xmlXPathNAN; |
1965 | 27.8k | } else { |
1966 | 27.8k | dt = exsltDateParse(dateTime); |
1967 | 27.8k | if (dt == NULL) |
1968 | 26.0k | return xmlXPathNAN; |
1969 | 1.87k | if ((dt->type != XS_DATETIME) && (dt->type != XS_DATE) && |
1970 | 1.87k | (dt->type != XS_GYEARMONTH) && (dt->type != XS_GYEAR)) { |
1971 | 494 | exsltDateFreeDate(dt); |
1972 | 494 | return xmlXPathNAN; |
1973 | 494 | } |
1974 | 1.87k | } |
1975 | | |
1976 | 2.32k | year = dt->year; |
1977 | 2.32k | if (year <= 0) year -= 1; /* Adjust for missing year 0. */ |
1978 | 2.32k | ret = (double) year; |
1979 | 2.32k | exsltDateFreeDate(dt); |
1980 | | |
1981 | 2.32k | return ret; |
1982 | 28.8k | } |
1983 | | |
1984 | | /** |
1985 | | * exsltDateLeapYear: |
1986 | | * @dateTime: a date/time string |
1987 | | * |
1988 | | * Implements the EXSLT - Dates and Times leap-year() function: |
1989 | | * boolean date:leap-yea (string?) |
1990 | | * Returns true if the year given in a date is a leap year. If no |
1991 | | * argument is given, then the current local date/time, as returned by |
1992 | | * date:date-time is used as a default argument. |
1993 | | * The date/time string specified as the first argument must be a |
1994 | | * right-truncated string in the format defined as the lexical |
1995 | | * representation of xs:dateTime in one of the formats defined in [XML |
1996 | | * Schema Part 2: Datatypes]. The permitted formats are as follows: |
1997 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
1998 | | * - xs:date (CCYY-MM-DD) |
1999 | | * - xs:gYearMonth (CCYY-MM) |
2000 | | * - xs:gYear (CCYY) |
2001 | | * If the date/time string is not in one of these formats, then NaN is |
2002 | | * returned. |
2003 | | */ |
2004 | | static xmlXPathObjectPtr |
2005 | | exsltDateLeapYear (const xmlChar *dateTime) |
2006 | 5.30k | { |
2007 | 5.30k | exsltDateValPtr dt = NULL; |
2008 | 5.30k | xmlXPathObjectPtr ret; |
2009 | | |
2010 | 5.30k | if (dateTime == NULL) { |
2011 | 132 | dt = exsltDateCurrent(); |
2012 | 5.17k | } else { |
2013 | 5.17k | dt = exsltDateParse(dateTime); |
2014 | 5.17k | if ((dt != NULL) && |
2015 | 5.17k | (dt->type != XS_DATETIME) && (dt->type != XS_DATE) && |
2016 | 5.17k | (dt->type != XS_GYEARMONTH) && (dt->type != XS_GYEAR)) { |
2017 | 31 | exsltDateFreeDate(dt); |
2018 | 31 | dt = NULL; |
2019 | 31 | } |
2020 | 5.17k | } |
2021 | | |
2022 | 5.30k | if (dt == NULL) { |
2023 | 4.67k | ret = xmlXPathNewFloat(xmlXPathNAN); |
2024 | 4.67k | } |
2025 | 635 | else { |
2026 | 635 | ret = xmlXPathNewBoolean(IS_LEAP(dt->year)); |
2027 | 635 | exsltDateFreeDate(dt); |
2028 | 635 | } |
2029 | | |
2030 | 5.30k | return ret; |
2031 | 5.30k | } |
2032 | | |
2033 | | /** |
2034 | | * exsltDateMonthInYear: |
2035 | | * @dateTime: a date/time string |
2036 | | * |
2037 | | * Implements the EXSLT - Dates and Times month-in-year() function: |
2038 | | * number date:month-in-year (string?) |
2039 | | * Returns the month of a date as a number. If no argument is given, |
2040 | | * then the current local date/time, as returned by date:date-time is |
2041 | | * used the default argument. |
2042 | | * The date/time string specified as the argument is a left or |
2043 | | * right-truncated string in the format defined as the lexical |
2044 | | * representation of xs:dateTime in one of the formats defined in [XML |
2045 | | * Schema Part 2: Datatypes]. The permitted formats are as follows: |
2046 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2047 | | * - xs:date (CCYY-MM-DD) |
2048 | | * - xs:gYearMonth (CCYY-MM) |
2049 | | * - xs:gMonth (--MM--) |
2050 | | * - xs:gMonthDay (--MM-DD) |
2051 | | * If the date/time string is not in one of these formats, then NaN is |
2052 | | * returned. |
2053 | | */ |
2054 | | static double |
2055 | | exsltDateMonthInYear (const xmlChar *dateTime) |
2056 | 3.08k | { |
2057 | 3.08k | exsltDateValPtr dt; |
2058 | 3.08k | double ret; |
2059 | | |
2060 | 3.08k | if (dateTime == NULL) { |
2061 | 177 | dt = exsltDateCurrent(); |
2062 | 177 | if (dt == NULL) |
2063 | 0 | return xmlXPathNAN; |
2064 | 2.90k | } else { |
2065 | 2.90k | dt = exsltDateParse(dateTime); |
2066 | 2.90k | if (dt == NULL) |
2067 | 1.81k | return xmlXPathNAN; |
2068 | 1.08k | if ((dt->type != XS_DATETIME) && (dt->type != XS_DATE) && |
2069 | 1.08k | (dt->type != XS_GYEARMONTH) && (dt->type != XS_GMONTH) && |
2070 | 1.08k | (dt->type != XS_GMONTHDAY)) { |
2071 | 119 | exsltDateFreeDate(dt); |
2072 | 119 | return xmlXPathNAN; |
2073 | 119 | } |
2074 | 1.08k | } |
2075 | | |
2076 | 1.14k | ret = (double) dt->mon; |
2077 | 1.14k | exsltDateFreeDate(dt); |
2078 | | |
2079 | 1.14k | return ret; |
2080 | 3.08k | } |
2081 | | |
2082 | | /** |
2083 | | * exsltDateMonthName: |
2084 | | * @dateTime: a date/time string |
2085 | | * |
2086 | | * Implements the EXSLT - Dates and Time month-name() function |
2087 | | * string date:month-name (string?) |
2088 | | * Returns the full name of the month of a date. If no argument is |
2089 | | * given, then the current local date/time, as returned by |
2090 | | * date:date-time is used the default argument. |
2091 | | * The date/time string specified as the argument is a left or |
2092 | | * right-truncated string in the format defined as the lexical |
2093 | | * representation of xs:dateTime in one of the formats defined in [XML |
2094 | | * Schema Part 2: Datatypes]. The permitted formats are as follows: |
2095 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2096 | | * - xs:date (CCYY-MM-DD) |
2097 | | * - xs:gYearMonth (CCYY-MM) |
2098 | | * - xs:gMonth (--MM--) |
2099 | | * If the date/time string is not in one of these formats, then an |
2100 | | * empty string ('') is returned. |
2101 | | * The result is an English month name: one of 'January', 'February', |
2102 | | * 'March', 'April', 'May', 'June', 'July', 'August', 'September', |
2103 | | * 'October', 'November' or 'December'. |
2104 | | */ |
2105 | | static const xmlChar * |
2106 | | exsltDateMonthName (const xmlChar *dateTime) |
2107 | 2.10k | { |
2108 | 2.10k | static const xmlChar monthNames[13][10] = { |
2109 | 2.10k | { 0 }, |
2110 | 2.10k | { 'J', 'a', 'n', 'u', 'a', 'r', 'y', 0 }, |
2111 | 2.10k | { 'F', 'e', 'b', 'r', 'u', 'a', 'r', 'y', 0 }, |
2112 | 2.10k | { 'M', 'a', 'r', 'c', 'h', 0 }, |
2113 | 2.10k | { 'A', 'p', 'r', 'i', 'l', 0 }, |
2114 | 2.10k | { 'M', 'a', 'y', 0 }, |
2115 | 2.10k | { 'J', 'u', 'n', 'e', 0 }, |
2116 | 2.10k | { 'J', 'u', 'l', 'y', 0 }, |
2117 | 2.10k | { 'A', 'u', 'g', 'u', 's', 't', 0 }, |
2118 | 2.10k | { 'S', 'e', 'p', 't', 'e', 'm', 'b', 'e', 'r', 0 }, |
2119 | 2.10k | { 'O', 'c', 't', 'o', 'b', 'e', 'r', 0 }, |
2120 | 2.10k | { 'N', 'o', 'v', 'e', 'm', 'b', 'e', 'r', 0 }, |
2121 | 2.10k | { 'D', 'e', 'c', 'e', 'm', 'b', 'e', 'r', 0 } |
2122 | 2.10k | }; |
2123 | 2.10k | double month; |
2124 | 2.10k | int index = 0; |
2125 | 2.10k | month = exsltDateMonthInYear(dateTime); |
2126 | 2.10k | if (!xmlXPathIsNaN(month) && (month >= 1.0) && (month <= 12.0)) |
2127 | 969 | index = (int) month; |
2128 | 2.10k | return monthNames[index]; |
2129 | 2.10k | } |
2130 | | |
2131 | | /** |
2132 | | * exsltDateMonthAbbreviation: |
2133 | | * @dateTime: a date/time string |
2134 | | * |
2135 | | * Implements the EXSLT - Dates and Time month-abbreviation() function |
2136 | | * string date:month-abbreviation (string?) |
2137 | | * Returns the abbreviation of the month of a date. If no argument is |
2138 | | * given, then the current local date/time, as returned by |
2139 | | * date:date-time is used the default argument. |
2140 | | * The date/time string specified as the argument is a left or |
2141 | | * right-truncated string in the format defined as the lexical |
2142 | | * representation of xs:dateTime in one of the formats defined in [XML |
2143 | | * Schema Part 2: Datatypes]. The permitted formats are as follows: |
2144 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2145 | | * - xs:date (CCYY-MM-DD) |
2146 | | * - xs:gYearMonth (CCYY-MM) |
2147 | | * - xs:gMonth (--MM--) |
2148 | | * If the date/time string is not in one of these formats, then an |
2149 | | * empty string ('') is returned. |
2150 | | * The result is an English month abbreviation: one of 'Jan', 'Feb', |
2151 | | * 'Mar', 'Apr', 'May', 'Jun', 'Jul', 'Aug', 'Sep', 'Oct', 'Nov' or |
2152 | | * 'Dec'. |
2153 | | */ |
2154 | | static const xmlChar * |
2155 | | exsltDateMonthAbbreviation (const xmlChar *dateTime) |
2156 | 160 | { |
2157 | 160 | static const xmlChar monthAbbreviations[13][4] = { |
2158 | 160 | { 0 }, |
2159 | 160 | { 'J', 'a', 'n', 0 }, |
2160 | 160 | { 'F', 'e', 'b', 0 }, |
2161 | 160 | { 'M', 'a', 'r', 0 }, |
2162 | 160 | { 'A', 'p', 'r', 0 }, |
2163 | 160 | { 'M', 'a', 'y', 0 }, |
2164 | 160 | { 'J', 'u', 'n', 0 }, |
2165 | 160 | { 'J', 'u', 'l', 0 }, |
2166 | 160 | { 'A', 'u', 'g', 0 }, |
2167 | 160 | { 'S', 'e', 'p', 0 }, |
2168 | 160 | { 'O', 'c', 't', 0 }, |
2169 | 160 | { 'N', 'o', 'v', 0 }, |
2170 | 160 | { 'D', 'e', 'c', 0 } |
2171 | 160 | }; |
2172 | 160 | double month; |
2173 | 160 | int index = 0; |
2174 | 160 | month = exsltDateMonthInYear(dateTime); |
2175 | 160 | if (!xmlXPathIsNaN(month) && (month >= 1.0) && (month <= 12.0)) |
2176 | 85 | index = (int) month; |
2177 | 160 | return monthAbbreviations[index]; |
2178 | 160 | } |
2179 | | |
2180 | | /** |
2181 | | * exsltDateWeekInYear: |
2182 | | * @dateTime: a date/time string |
2183 | | * |
2184 | | * Implements the EXSLT - Dates and Times week-in-year() function |
2185 | | * number date:week-in-year (string?) |
2186 | | * Returns the week of the year as a number. If no argument is given, |
2187 | | * then the current local date/time, as returned by date:date-time is |
2188 | | * used as the default argument. For the purposes of numbering, |
2189 | | * counting follows ISO 8601: week 1 in a year is the week containing |
2190 | | * the first Thursday of the year, with new weeks beginning on a |
2191 | | * Monday. |
2192 | | * The date/time string specified as the argument is a right-truncated |
2193 | | * string in the format defined as the lexical representation of |
2194 | | * xs:dateTime in one of the formats defined in [XML Schema Part 2: |
2195 | | * Datatypes]. The permitted formats are as follows: |
2196 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2197 | | * - xs:date (CCYY-MM-DD) |
2198 | | * If the date/time string is not in one of these formats, then NaN is |
2199 | | * returned. |
2200 | | */ |
2201 | | static double |
2202 | | exsltDateWeekInYear (const xmlChar *dateTime) |
2203 | 457 | { |
2204 | 457 | exsltDateValPtr dt; |
2205 | 457 | long diy, diw, year, ret; |
2206 | | |
2207 | 457 | if (dateTime == NULL) { |
2208 | 35 | dt = exsltDateCurrent(); |
2209 | 35 | if (dt == NULL) |
2210 | 0 | return xmlXPathNAN; |
2211 | 422 | } else { |
2212 | 422 | dt = exsltDateParse(dateTime); |
2213 | 422 | if (dt == NULL) |
2214 | 278 | return xmlXPathNAN; |
2215 | 144 | if ((dt->type != XS_DATETIME) && (dt->type != XS_DATE)) { |
2216 | 58 | exsltDateFreeDate(dt); |
2217 | 58 | return xmlXPathNAN; |
2218 | 58 | } |
2219 | 144 | } |
2220 | | |
2221 | 121 | diy = DAY_IN_YEAR(dt->day, dt->mon, dt->year); |
2222 | | |
2223 | | /* |
2224 | | * Determine day-in-week (0=Sun, 1=Mon, etc.) then adjust so Monday |
2225 | | * is the first day-in-week |
2226 | | */ |
2227 | 121 | diw = (_exsltDateDayInWeek(diy, dt->year) + 6) % 7; |
2228 | | |
2229 | | /* ISO 8601 adjustment, 3 is Thu */ |
2230 | 121 | diy += (3 - diw); |
2231 | 121 | if(diy < 1) { |
2232 | 58 | year = dt->year - 1; |
2233 | 58 | if(year == 0) year--; |
2234 | 58 | diy = DAY_IN_YEAR(31, 12, year) + diy; |
2235 | 63 | } else if (diy > (long)DAY_IN_YEAR(31, 12, dt->year)) { |
2236 | 0 | diy -= DAY_IN_YEAR(31, 12, dt->year); |
2237 | 0 | } |
2238 | | |
2239 | 121 | ret = ((diy - 1) / 7) + 1; |
2240 | | |
2241 | 121 | exsltDateFreeDate(dt); |
2242 | | |
2243 | 121 | return (double) ret; |
2244 | 457 | } |
2245 | | |
2246 | | /** |
2247 | | * exsltDateWeekInMonth: |
2248 | | * @dateTime: a date/time string |
2249 | | * |
2250 | | * Implements the EXSLT - Dates and Times week-in-month() function |
2251 | | * number date:week-in-month (string?) |
2252 | | * The date:week-in-month function returns the week in a month of a |
2253 | | * date as a number. If no argument is given, then the current local |
2254 | | * date/time, as returned by date:date-time is used the default |
2255 | | * argument. For the purposes of numbering, the first day of the month |
2256 | | * is in week 1 and new weeks begin on a Monday (so the first and last |
2257 | | * weeks in a month will often have less than 7 days in them). |
2258 | | * The date/time string specified as the argument is a right-truncated |
2259 | | * string in the format defined as the lexical representation of |
2260 | | * xs:dateTime in one of the formats defined in [XML Schema Part 2: |
2261 | | * Datatypes]. The permitted formats are as follows: |
2262 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2263 | | * - xs:date (CCYY-MM-DD) |
2264 | | * If the date/time string is not in one of these formats, then NaN is |
2265 | | * returned. |
2266 | | */ |
2267 | | static double |
2268 | | exsltDateWeekInMonth (const xmlChar *dateTime) |
2269 | 708 | { |
2270 | 708 | exsltDateValPtr dt; |
2271 | 708 | long fdiy, fdiw, ret; |
2272 | | |
2273 | 708 | if (dateTime == NULL) { |
2274 | 19 | dt = exsltDateCurrent(); |
2275 | 19 | if (dt == NULL) |
2276 | 0 | return xmlXPathNAN; |
2277 | 689 | } else { |
2278 | 689 | dt = exsltDateParse(dateTime); |
2279 | 689 | if (dt == NULL) |
2280 | 626 | return xmlXPathNAN; |
2281 | 63 | if ((dt->type != XS_DATETIME) && (dt->type != XS_DATE)) { |
2282 | 22 | exsltDateFreeDate(dt); |
2283 | 22 | return xmlXPathNAN; |
2284 | 22 | } |
2285 | 63 | } |
2286 | | |
2287 | 60 | fdiy = DAY_IN_YEAR(1, dt->mon, dt->year); |
2288 | | /* |
2289 | | * Determine day-in-week (0=Sun, 1=Mon, etc.) then adjust so Monday |
2290 | | * is the first day-in-week |
2291 | | */ |
2292 | 60 | fdiw = (_exsltDateDayInWeek(fdiy, dt->year) + 6) % 7; |
2293 | | |
2294 | 60 | ret = ((dt->day + fdiw - 1) / 7) + 1; |
2295 | | |
2296 | 60 | exsltDateFreeDate(dt); |
2297 | | |
2298 | 60 | return (double) ret; |
2299 | 708 | } |
2300 | | |
2301 | | /** |
2302 | | * exsltDateDayInYear: |
2303 | | * @dateTime: a date/time string |
2304 | | * |
2305 | | * Implements the EXSLT - Dates and Times day-in-year() function |
2306 | | * number date:day-in-year (string?) |
2307 | | * Returns the day of a date in a year as a number. If no argument is |
2308 | | * given, then the current local date/time, as returned by |
2309 | | * date:date-time is used the default argument. |
2310 | | * The date/time string specified as the argument is a right-truncated |
2311 | | * string in the format defined as the lexical representation of |
2312 | | * xs:dateTime in one of the formats defined in [XML Schema Part 2: |
2313 | | * Datatypes]. The permitted formats are as follows: |
2314 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2315 | | * - xs:date (CCYY-MM-DD) |
2316 | | * If the date/time string is not in one of these formats, then NaN is |
2317 | | * returned. |
2318 | | */ |
2319 | | static double |
2320 | | exsltDateDayInYear (const xmlChar *dateTime) |
2321 | 1.52k | { |
2322 | 1.52k | exsltDateValPtr dt; |
2323 | 1.52k | long ret; |
2324 | | |
2325 | 1.52k | if (dateTime == NULL) { |
2326 | 31 | dt = exsltDateCurrent(); |
2327 | 31 | if (dt == NULL) |
2328 | 0 | return xmlXPathNAN; |
2329 | 1.49k | } else { |
2330 | 1.49k | dt = exsltDateParse(dateTime); |
2331 | 1.49k | if (dt == NULL) |
2332 | 1.43k | return xmlXPathNAN; |
2333 | 59 | if ((dt->type != XS_DATETIME) && (dt->type != XS_DATE)) { |
2334 | 20 | exsltDateFreeDate(dt); |
2335 | 20 | return xmlXPathNAN; |
2336 | 20 | } |
2337 | 59 | } |
2338 | | |
2339 | 70 | ret = DAY_IN_YEAR(dt->day, dt->mon, dt->year); |
2340 | | |
2341 | 70 | exsltDateFreeDate(dt); |
2342 | | |
2343 | 70 | return (double) ret; |
2344 | 1.52k | } |
2345 | | |
2346 | | /** |
2347 | | * exsltDateDayInMonth: |
2348 | | * @dateTime: a date/time string |
2349 | | * |
2350 | | * Implements the EXSLT - Dates and Times day-in-month() function: |
2351 | | * number date:day-in-month (string?) |
2352 | | * Returns the day of a date as a number. If no argument is given, |
2353 | | * then the current local date/time, as returned by date:date-time is |
2354 | | * used the default argument. |
2355 | | * The date/time string specified as the argument is a left or |
2356 | | * right-truncated string in the format defined as the lexical |
2357 | | * representation of xs:dateTime in one of the formats defined in [XML |
2358 | | * Schema Part 2: Datatypes]. The permitted formats are as follows: |
2359 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2360 | | * - xs:date (CCYY-MM-DD) |
2361 | | * - xs:gMonthDay (--MM-DD) |
2362 | | * - xs:gDay (---DD) |
2363 | | * If the date/time string is not in one of these formats, then NaN is |
2364 | | * returned. |
2365 | | */ |
2366 | | static double |
2367 | | exsltDateDayInMonth (const xmlChar *dateTime) |
2368 | 1.49k | { |
2369 | 1.49k | exsltDateValPtr dt; |
2370 | 1.49k | double ret; |
2371 | | |
2372 | 1.49k | if (dateTime == NULL) { |
2373 | 19 | dt = exsltDateCurrent(); |
2374 | 19 | if (dt == NULL) |
2375 | 0 | return xmlXPathNAN; |
2376 | 1.48k | } else { |
2377 | 1.48k | dt = exsltDateParse(dateTime); |
2378 | 1.48k | if (dt == NULL) |
2379 | 1.40k | return xmlXPathNAN; |
2380 | 71 | if ((dt->type != XS_DATETIME) && (dt->type != XS_DATE) && |
2381 | 71 | (dt->type != XS_GMONTHDAY) && (dt->type != XS_GDAY)) { |
2382 | 19 | exsltDateFreeDate(dt); |
2383 | 19 | return xmlXPathNAN; |
2384 | 19 | } |
2385 | 71 | } |
2386 | | |
2387 | 71 | ret = (double) dt->day; |
2388 | 71 | exsltDateFreeDate(dt); |
2389 | | |
2390 | 71 | return ret; |
2391 | 1.49k | } |
2392 | | |
2393 | | /** |
2394 | | * exsltDateDayOfWeekInMonth: |
2395 | | * @dateTime: a date/time string |
2396 | | * |
2397 | | * Implements the EXSLT - Dates and Times day-of-week-in-month() function: |
2398 | | * number date:day-of-week-in-month (string?) |
2399 | | * Returns the day-of-the-week in a month of a date as a number |
2400 | | * (e.g. 3 for the 3rd Tuesday in May). If no argument is |
2401 | | * given, then the current local date/time, as returned by |
2402 | | * date:date-time is used the default argument. |
2403 | | * The date/time string specified as the argument is a right-truncated |
2404 | | * string in the format defined as the lexical representation of |
2405 | | * xs:dateTime in one of the formats defined in [XML Schema Part 2: |
2406 | | * Datatypes]. The permitted formats are as follows: |
2407 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2408 | | * - xs:date (CCYY-MM-DD) |
2409 | | * If the date/time string is not in one of these formats, then NaN is |
2410 | | * returned. |
2411 | | */ |
2412 | | static double |
2413 | | exsltDateDayOfWeekInMonth (const xmlChar *dateTime) |
2414 | 9.79k | { |
2415 | 9.79k | exsltDateValPtr dt; |
2416 | 9.79k | long ret; |
2417 | | |
2418 | 9.79k | if (dateTime == NULL) { |
2419 | 30 | dt = exsltDateCurrent(); |
2420 | 30 | if (dt == NULL) |
2421 | 0 | return xmlXPathNAN; |
2422 | 9.76k | } else { |
2423 | 9.76k | dt = exsltDateParse(dateTime); |
2424 | 9.76k | if (dt == NULL) |
2425 | 9.69k | return xmlXPathNAN; |
2426 | 70 | if ((dt->type != XS_DATETIME) && (dt->type != XS_DATE)) { |
2427 | 32 | exsltDateFreeDate(dt); |
2428 | 32 | return xmlXPathNAN; |
2429 | 32 | } |
2430 | 70 | } |
2431 | | |
2432 | 68 | ret = ((dt->day -1) / 7) + 1; |
2433 | | |
2434 | 68 | exsltDateFreeDate(dt); |
2435 | | |
2436 | 68 | return (double) ret; |
2437 | 9.79k | } |
2438 | | |
2439 | | /** |
2440 | | * exsltDateDayInWeek: |
2441 | | * @dateTime: a date/time string |
2442 | | * |
2443 | | * Implements the EXSLT - Dates and Times day-in-week() function: |
2444 | | * number date:day-in-week (string?) |
2445 | | * Returns the day of the week given in a date as a number. If no |
2446 | | * argument is given, then the current local date/time, as returned by |
2447 | | * date:date-time is used the default argument. |
2448 | | * The date/time string specified as the argument is a left or |
2449 | | * right-truncated string in the format defined as the lexical |
2450 | | * representation of xs:dateTime in one of the formats defined in [XML |
2451 | | * Schema Part 2: Datatypes]. The permitted formats are as follows: |
2452 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2453 | | * - xs:date (CCYY-MM-DD) |
2454 | | * If the date/time string is not in one of these formats, then NaN is |
2455 | | * returned. |
2456 | | * The numbering of days of the week starts at 1 for Sunday, 2 for |
2457 | | * Monday and so on up to 7 for Saturday. |
2458 | | */ |
2459 | | static double |
2460 | | exsltDateDayInWeek (const xmlChar *dateTime) |
2461 | 2.93k | { |
2462 | 2.93k | exsltDateValPtr dt; |
2463 | 2.93k | long diy, ret; |
2464 | | |
2465 | 2.93k | if (dateTime == NULL) { |
2466 | 114 | dt = exsltDateCurrent(); |
2467 | 114 | if (dt == NULL) |
2468 | 0 | return xmlXPathNAN; |
2469 | 2.82k | } else { |
2470 | 2.82k | dt = exsltDateParse(dateTime); |
2471 | 2.82k | if (dt == NULL) |
2472 | 2.65k | return xmlXPathNAN; |
2473 | 163 | if ((dt->type != XS_DATETIME) && (dt->type != XS_DATE)) { |
2474 | 37 | exsltDateFreeDate(dt); |
2475 | 37 | return xmlXPathNAN; |
2476 | 37 | } |
2477 | 163 | } |
2478 | | |
2479 | 240 | diy = DAY_IN_YEAR(dt->day, dt->mon, dt->year); |
2480 | | |
2481 | 240 | ret = _exsltDateDayInWeek(diy, dt->year) + 1; |
2482 | | |
2483 | 240 | exsltDateFreeDate(dt); |
2484 | | |
2485 | 240 | return (double) ret; |
2486 | 2.93k | } |
2487 | | |
2488 | | /** |
2489 | | * exsltDateDayName: |
2490 | | * @dateTime: a date/time string |
2491 | | * |
2492 | | * Implements the EXSLT - Dates and Time day-name() function |
2493 | | * string date:day-name (string?) |
2494 | | * Returns the full name of the day of the week of a date. If no |
2495 | | * argument is given, then the current local date/time, as returned by |
2496 | | * date:date-time is used the default argument. |
2497 | | * The date/time string specified as the argument is a left or |
2498 | | * right-truncated string in the format defined as the lexical |
2499 | | * representation of xs:dateTime in one of the formats defined in [XML |
2500 | | * Schema Part 2: Datatypes]. The permitted formats are as follows: |
2501 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2502 | | * - xs:date (CCYY-MM-DD) |
2503 | | * If the date/time string is not in one of these formats, then an |
2504 | | * empty string ('') is returned. |
2505 | | * The result is an English day name: one of 'Sunday', 'Monday', |
2506 | | * 'Tuesday', 'Wednesday', 'Thursday' or 'Friday'. |
2507 | | */ |
2508 | | static const xmlChar * |
2509 | | exsltDateDayName (const xmlChar *dateTime) |
2510 | 357 | { |
2511 | 357 | static const xmlChar dayNames[8][10] = { |
2512 | 357 | { 0 }, |
2513 | 357 | { 'S', 'u', 'n', 'd', 'a', 'y', 0 }, |
2514 | 357 | { 'M', 'o', 'n', 'd', 'a', 'y', 0 }, |
2515 | 357 | { 'T', 'u', 'e', 's', 'd', 'a', 'y', 0 }, |
2516 | 357 | { 'W', 'e', 'd', 'n', 'e', 's', 'd', 'a', 'y', 0 }, |
2517 | 357 | { 'T', 'h', 'u', 'r', 's', 'd', 'a', 'y', 0 }, |
2518 | 357 | { 'F', 'r', 'i', 'd', 'a', 'y', 0 }, |
2519 | 357 | { 'S', 'a', 't', 'u', 'r', 'd', 'a', 'y', 0 } |
2520 | 357 | }; |
2521 | 357 | double day; |
2522 | 357 | int index = 0; |
2523 | 357 | day = exsltDateDayInWeek(dateTime); |
2524 | 357 | if(!xmlXPathIsNaN(day) && (day >= 1.0) && (day <= 7.0)) |
2525 | 59 | index = (int) day; |
2526 | 357 | return dayNames[index]; |
2527 | 357 | } |
2528 | | |
2529 | | /** |
2530 | | * exsltDateDayAbbreviation: |
2531 | | * @dateTime: a date/time string |
2532 | | * |
2533 | | * Implements the EXSLT - Dates and Time day-abbreviation() function |
2534 | | * string date:day-abbreviation (string?) |
2535 | | * Returns the abbreviation of the day of the week of a date. If no |
2536 | | * argument is given, then the current local date/time, as returned by |
2537 | | * date:date-time is used the default argument. |
2538 | | * The date/time string specified as the argument is a left or |
2539 | | * right-truncated string in the format defined as the lexical |
2540 | | * representation of xs:dateTime in one of the formats defined in [XML |
2541 | | * Schema Part 2: Datatypes]. The permitted formats are as follows: |
2542 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2543 | | * - xs:date (CCYY-MM-DD) |
2544 | | * If the date/time string is not in one of these formats, then an |
2545 | | * empty string ('') is returned. |
2546 | | * The result is a three-letter English day abbreviation: one of |
2547 | | * 'Sun', 'Mon', 'Tue', 'Wed', 'Thu' or 'Fri'. |
2548 | | */ |
2549 | | static const xmlChar * |
2550 | | exsltDateDayAbbreviation (const xmlChar *dateTime) |
2551 | 593 | { |
2552 | 593 | static const xmlChar dayAbbreviations[8][4] = { |
2553 | 593 | { 0 }, |
2554 | 593 | { 'S', 'u', 'n', 0 }, |
2555 | 593 | { 'M', 'o', 'n', 0 }, |
2556 | 593 | { 'T', 'u', 'e', 0 }, |
2557 | 593 | { 'W', 'e', 'd', 0 }, |
2558 | 593 | { 'T', 'h', 'u', 0 }, |
2559 | 593 | { 'F', 'r', 'i', 0 }, |
2560 | 593 | { 'S', 'a', 't', 0 } |
2561 | 593 | }; |
2562 | 593 | double day; |
2563 | 593 | int index = 0; |
2564 | 593 | day = exsltDateDayInWeek(dateTime); |
2565 | 593 | if(!xmlXPathIsNaN(day) && (day >= 1.0) && (day <= 7.0)) |
2566 | 113 | index = (int) day; |
2567 | 593 | return dayAbbreviations[index]; |
2568 | 593 | } |
2569 | | |
2570 | | /** |
2571 | | * exsltDateHourInDay: |
2572 | | * @dateTime: a date/time string |
2573 | | * |
2574 | | * Implements the EXSLT - Dates and Times day-in-month() function: |
2575 | | * number date:day-in-month (string?) |
2576 | | * Returns the hour of the day as a number. If no argument is given, |
2577 | | * then the current local date/time, as returned by date:date-time is |
2578 | | * used the default argument. |
2579 | | * The date/time string specified as the argument is a left or |
2580 | | * right-truncated string in the format defined as the lexical |
2581 | | * representation of xs:dateTime in one of the formats defined in [XML |
2582 | | * Schema Part 2: Datatypes]. The permitted formats are as follows: |
2583 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2584 | | * - xs:time (hh:mm:ss) |
2585 | | * If the date/time string is not in one of these formats, then NaN is |
2586 | | * returned. |
2587 | | */ |
2588 | | static double |
2589 | | exsltDateHourInDay (const xmlChar *dateTime) |
2590 | 467 | { |
2591 | 467 | exsltDateValPtr dt; |
2592 | 467 | double ret; |
2593 | | |
2594 | 467 | if (dateTime == NULL) { |
2595 | 31 | dt = exsltDateCurrent(); |
2596 | 31 | if (dt == NULL) |
2597 | 0 | return xmlXPathNAN; |
2598 | 436 | } else { |
2599 | 436 | dt = exsltDateParse(dateTime); |
2600 | 436 | if (dt == NULL) |
2601 | 328 | return xmlXPathNAN; |
2602 | 108 | if ((dt->type != XS_DATETIME) && (dt->type != XS_TIME)) { |
2603 | 54 | exsltDateFreeDate(dt); |
2604 | 54 | return xmlXPathNAN; |
2605 | 54 | } |
2606 | 108 | } |
2607 | | |
2608 | 85 | ret = (double) dt->hour; |
2609 | 85 | exsltDateFreeDate(dt); |
2610 | | |
2611 | 85 | return ret; |
2612 | 467 | } |
2613 | | |
2614 | | /** |
2615 | | * exsltDateMinuteInHour: |
2616 | | * @dateTime: a date/time string |
2617 | | * |
2618 | | * Implements the EXSLT - Dates and Times day-in-month() function: |
2619 | | * number date:day-in-month (string?) |
2620 | | * Returns the minute of the hour as a number. If no argument is |
2621 | | * given, then the current local date/time, as returned by |
2622 | | * date:date-time is used the default argument. |
2623 | | * The date/time string specified as the argument is a left or |
2624 | | * right-truncated string in the format defined as the lexical |
2625 | | * representation of xs:dateTime in one of the formats defined in [XML |
2626 | | * Schema Part 2: Datatypes]. The permitted formats are as follows: |
2627 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2628 | | * - xs:time (hh:mm:ss) |
2629 | | * If the date/time string is not in one of these formats, then NaN is |
2630 | | * returned. |
2631 | | */ |
2632 | | static double |
2633 | | exsltDateMinuteInHour (const xmlChar *dateTime) |
2634 | 23.1k | { |
2635 | 23.1k | exsltDateValPtr dt; |
2636 | 23.1k | double ret; |
2637 | | |
2638 | 23.1k | if (dateTime == NULL) { |
2639 | 303 | dt = exsltDateCurrent(); |
2640 | 303 | if (dt == NULL) |
2641 | 0 | return xmlXPathNAN; |
2642 | 22.8k | } else { |
2643 | 22.8k | dt = exsltDateParse(dateTime); |
2644 | 22.8k | if (dt == NULL) |
2645 | 22.3k | return xmlXPathNAN; |
2646 | 512 | if ((dt->type != XS_DATETIME) && (dt->type != XS_TIME)) { |
2647 | 373 | exsltDateFreeDate(dt); |
2648 | 373 | return xmlXPathNAN; |
2649 | 373 | } |
2650 | 512 | } |
2651 | | |
2652 | 442 | ret = (double) dt->min; |
2653 | 442 | exsltDateFreeDate(dt); |
2654 | | |
2655 | 442 | return ret; |
2656 | 23.1k | } |
2657 | | |
2658 | | /** |
2659 | | * exsltDateSecondInMinute: |
2660 | | * @dateTime: a date/time string |
2661 | | * |
2662 | | * Implements the EXSLT - Dates and Times second-in-minute() function: |
2663 | | * number date:day-in-month (string?) |
2664 | | * Returns the second of the minute as a number. If no argument is |
2665 | | * given, then the current local date/time, as returned by |
2666 | | * date:date-time is used the default argument. |
2667 | | * The date/time string specified as the argument is a left or |
2668 | | * right-truncated string in the format defined as the lexical |
2669 | | * representation of xs:dateTime in one of the formats defined in [XML |
2670 | | * Schema Part 2: Datatypes]. The permitted formats are as follows: |
2671 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2672 | | * - xs:time (hh:mm:ss) |
2673 | | * If the date/time string is not in one of these formats, then NaN is |
2674 | | * returned. |
2675 | | * |
2676 | | * Returns the second or NaN. |
2677 | | */ |
2678 | | static double |
2679 | | exsltDateSecondInMinute (const xmlChar *dateTime) |
2680 | 4.80k | { |
2681 | 4.80k | exsltDateValPtr dt; |
2682 | 4.80k | double ret; |
2683 | | |
2684 | 4.80k | if (dateTime == NULL) { |
2685 | 35 | dt = exsltDateCurrent(); |
2686 | 35 | if (dt == NULL) |
2687 | 0 | return xmlXPathNAN; |
2688 | 4.76k | } else { |
2689 | 4.76k | dt = exsltDateParse(dateTime); |
2690 | 4.76k | if (dt == NULL) |
2691 | 4.67k | return xmlXPathNAN; |
2692 | 86 | if ((dt->type != XS_DATETIME) && (dt->type != XS_TIME)) { |
2693 | 32 | exsltDateFreeDate(dt); |
2694 | 32 | return xmlXPathNAN; |
2695 | 32 | } |
2696 | 86 | } |
2697 | | |
2698 | 89 | ret = dt->sec; |
2699 | 89 | exsltDateFreeDate(dt); |
2700 | | |
2701 | 89 | return ret; |
2702 | 4.80k | } |
2703 | | |
2704 | | /** |
2705 | | * exsltDateAdd: |
2706 | | * @xstr: date/time string |
2707 | | * @ystr: date/time string |
2708 | | * |
2709 | | * Implements the date:add (string,string) function which returns the |
2710 | | * date/time * resulting from adding a duration to a date/time. |
2711 | | * The first argument (@xstr) must be right-truncated date/time |
2712 | | * strings in one of the formats defined in [XML Schema Part 2: |
2713 | | * Datatypes]. The permitted formats are as follows: |
2714 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2715 | | * - xs:date (CCYY-MM-DD) |
2716 | | * - xs:gYearMonth (CCYY-MM) |
2717 | | * - xs:gYear (CCYY) |
2718 | | * The second argument (@ystr) is a string in the format defined for |
2719 | | * xs:duration in [3.2.6 duration] of [XML Schema Part 2: Datatypes]. |
2720 | | * The return value is a right-truncated date/time strings in one of |
2721 | | * the formats defined in [XML Schema Part 2: Datatypes] and listed |
2722 | | * above. This value is calculated using the algorithm described in |
2723 | | * [Appendix E Adding durations to dateTimes] of [XML Schema Part 2: |
2724 | | * Datatypes]. |
2725 | | |
2726 | | * Returns date/time string or NULL. |
2727 | | */ |
2728 | | static xmlChar * |
2729 | | exsltDateAdd (const xmlChar *xstr, const xmlChar *ystr) |
2730 | 40.7k | { |
2731 | 40.7k | exsltDateValPtr dt, res; |
2732 | 40.7k | exsltDateDurValPtr dur; |
2733 | 40.7k | xmlChar *ret; |
2734 | | |
2735 | 40.7k | if ((xstr == NULL) || (ystr == NULL)) |
2736 | 0 | return NULL; |
2737 | | |
2738 | 40.7k | dt = exsltDateParse(xstr); |
2739 | 40.7k | if (dt == NULL) |
2740 | 30.2k | return NULL; |
2741 | 10.4k | else if ((dt->type < XS_GYEAR) || (dt->type > XS_DATETIME)) { |
2742 | 468 | exsltDateFreeDate(dt); |
2743 | 468 | return NULL; |
2744 | 468 | } |
2745 | | |
2746 | 10.0k | dur = exsltDateParseDuration(ystr); |
2747 | 10.0k | if (dur == NULL) { |
2748 | 8.71k | exsltDateFreeDate(dt); |
2749 | 8.71k | return NULL; |
2750 | 8.71k | } |
2751 | | |
2752 | 1.29k | res = _exsltDateAdd(dt, dur); |
2753 | | |
2754 | 1.29k | exsltDateFreeDate(dt); |
2755 | 1.29k | exsltDateFreeDuration(dur); |
2756 | | |
2757 | 1.29k | if (res == NULL) |
2758 | 0 | return NULL; |
2759 | | |
2760 | 1.29k | ret = exsltDateFormat(res); |
2761 | 1.29k | exsltDateFreeDate(res); |
2762 | | |
2763 | 1.29k | return ret; |
2764 | 1.29k | } |
2765 | | |
2766 | | /** |
2767 | | * exsltDateAddDuration: |
2768 | | * @xstr: first duration string |
2769 | | * @ystr: second duration string |
2770 | | * |
2771 | | * Implements the date:add-duration (string,string) function which returns |
2772 | | * the duration resulting from adding two durations together. |
2773 | | * Both arguments are strings in the format defined for xs:duration |
2774 | | * in [3.2.6 duration] of [XML Schema Part 2: Datatypes]. If either |
2775 | | * argument is not in this format, the function returns an empty string |
2776 | | * (''). |
2777 | | * The return value is a string in the format defined for xs:duration |
2778 | | * in [3.2.6 duration] of [XML Schema Part 2: Datatypes]. |
2779 | | * The durations can usually be added by summing the numbers given for |
2780 | | * each of the components in the durations. However, if the durations |
2781 | | * are differently signed, then this sometimes results in durations |
2782 | | * that are impossible to express in this syntax (e.g. 'P1M' + '-P1D'). |
2783 | | * In these cases, the function returns an empty string (''). |
2784 | | * |
2785 | | * Returns duration string or NULL. |
2786 | | */ |
2787 | | static xmlChar * |
2788 | | exsltDateAddDuration (const xmlChar *xstr, const xmlChar *ystr) |
2789 | 4.11k | { |
2790 | 4.11k | exsltDateDurValPtr x, y, res; |
2791 | 4.11k | xmlChar *ret; |
2792 | | |
2793 | 4.11k | if ((xstr == NULL) || (ystr == NULL)) |
2794 | 0 | return NULL; |
2795 | | |
2796 | 4.11k | x = exsltDateParseDuration(xstr); |
2797 | 4.11k | if (x == NULL) |
2798 | 3.41k | return NULL; |
2799 | | |
2800 | 698 | y = exsltDateParseDuration(ystr); |
2801 | 698 | if (y == NULL) { |
2802 | 536 | exsltDateFreeDuration(x); |
2803 | 536 | return NULL; |
2804 | 536 | } |
2805 | | |
2806 | 162 | res = _exsltDateAddDuration(x, y); |
2807 | | |
2808 | 162 | exsltDateFreeDuration(x); |
2809 | 162 | exsltDateFreeDuration(y); |
2810 | | |
2811 | 162 | if (res == NULL) |
2812 | 38 | return NULL; |
2813 | | |
2814 | 124 | ret = exsltDateFormatDuration(res); |
2815 | 124 | exsltDateFreeDuration(res); |
2816 | | |
2817 | 124 | return ret; |
2818 | 162 | } |
2819 | | |
2820 | | /** |
2821 | | * exsltDateSumFunction: |
2822 | | * @ns: a node set of duration strings |
2823 | | * |
2824 | | * The date:sum function adds a set of durations together. |
2825 | | * The string values of the nodes in the node set passed as an argument |
2826 | | * are interpreted as durations and added together as if using the |
2827 | | * date:add-duration function. (from exslt.org) |
2828 | | * |
2829 | | * The return value is a string in the format defined for xs:duration |
2830 | | * in [3.2.6 duration] of [XML Schema Part 2: Datatypes]. |
2831 | | * The durations can usually be added by summing the numbers given for |
2832 | | * each of the components in the durations. However, if the durations |
2833 | | * are differently signed, then this sometimes results in durations |
2834 | | * that are impossible to express in this syntax (e.g. 'P1M' + '-P1D'). |
2835 | | * In these cases, the function returns an empty string (''). |
2836 | | * |
2837 | | * Returns duration string or NULL. |
2838 | | */ |
2839 | | static void |
2840 | | exsltDateSumFunction (xmlXPathParserContextPtr ctxt, int nargs) |
2841 | 2.33k | { |
2842 | 2.33k | xmlNodeSetPtr ns; |
2843 | 2.33k | void *user = NULL; |
2844 | 2.33k | xmlChar *tmp; |
2845 | 2.33k | exsltDateDurValPtr x, total; |
2846 | 2.33k | xmlChar *ret; |
2847 | 2.33k | int i; |
2848 | | |
2849 | 2.33k | if (nargs != 1) { |
2850 | 22 | xmlXPathSetArityError (ctxt); |
2851 | 22 | return; |
2852 | 22 | } |
2853 | | |
2854 | | /* We need to delay the freeing of value->user */ |
2855 | 2.31k | if ((ctxt->value != NULL) && ctxt->value->boolval != 0) { |
2856 | 19 | user = ctxt->value->user; |
2857 | 19 | ctxt->value->boolval = 0; |
2858 | 19 | ctxt->value->user = NULL; |
2859 | 19 | } |
2860 | | |
2861 | 2.31k | ns = xmlXPathPopNodeSet (ctxt); |
2862 | 2.31k | if (xmlXPathCheckError (ctxt)) |
2863 | 61 | return; |
2864 | | |
2865 | 2.25k | if ((ns == NULL) || (ns->nodeNr == 0)) { |
2866 | 825 | xmlXPathReturnEmptyString (ctxt); |
2867 | 825 | if (ns != NULL) |
2868 | 664 | xmlXPathFreeNodeSet (ns); |
2869 | 825 | return; |
2870 | 825 | } |
2871 | | |
2872 | 1.43k | total = exsltDateCreateDuration (); |
2873 | 1.43k | if (total == NULL) { |
2874 | 0 | xmlXPathFreeNodeSet (ns); |
2875 | 0 | return; |
2876 | 0 | } |
2877 | | |
2878 | 7.71k | for (i = 0; i < ns->nodeNr; i++) { |
2879 | 7.56k | int result; |
2880 | 7.56k | tmp = xmlXPathCastNodeToString (ns->nodeTab[i]); |
2881 | 7.56k | if (tmp == NULL) { |
2882 | 0 | xmlXPathFreeNodeSet (ns); |
2883 | 0 | exsltDateFreeDuration (total); |
2884 | 0 | return; |
2885 | 0 | } |
2886 | | |
2887 | 7.56k | x = exsltDateParseDuration (tmp); |
2888 | 7.56k | if (x == NULL) { |
2889 | 1.16k | xmlFree (tmp); |
2890 | 1.16k | exsltDateFreeDuration (total); |
2891 | 1.16k | xmlXPathFreeNodeSet (ns); |
2892 | 1.16k | xmlXPathReturnEmptyString (ctxt); |
2893 | 1.16k | return; |
2894 | 1.16k | } |
2895 | | |
2896 | 6.39k | result = _exsltDateAddDurCalc(total, total, x); |
2897 | | |
2898 | 6.39k | exsltDateFreeDuration (x); |
2899 | 6.39k | xmlFree (tmp); |
2900 | 6.39k | if (!result) { |
2901 | 111 | exsltDateFreeDuration (total); |
2902 | 111 | xmlXPathFreeNodeSet (ns); |
2903 | 111 | xmlXPathReturnEmptyString (ctxt); |
2904 | 111 | return; |
2905 | 111 | } |
2906 | 6.39k | } |
2907 | | |
2908 | 153 | ret = exsltDateFormatDuration (total); |
2909 | 153 | exsltDateFreeDuration (total); |
2910 | | |
2911 | 153 | xmlXPathFreeNodeSet (ns); |
2912 | 153 | if (user != NULL) |
2913 | 0 | xmlFreeNodeList ((xmlNodePtr) user); |
2914 | | |
2915 | 153 | if (ret == NULL) |
2916 | 0 | xmlXPathReturnEmptyString (ctxt); |
2917 | 153 | else |
2918 | 153 | xmlXPathReturnString (ctxt, ret); |
2919 | 153 | } |
2920 | | |
2921 | | /** |
2922 | | * exsltDateSeconds: |
2923 | | * @dateTime: a date/time string |
2924 | | * |
2925 | | * Implements the EXSLT - Dates and Times seconds() function: |
2926 | | * number date:seconds(string?) |
2927 | | * The date:seconds function returns the number of seconds specified |
2928 | | * by the argument string. If no argument is given, then the current |
2929 | | * local date/time, as returned by exsltDateCurrent() is used as the |
2930 | | * default argument. If the date/time string is a xs:duration, then the |
2931 | | * years and months must be zero (or not present). Parsing a duration |
2932 | | * converts the fields to seconds. If the date/time string is not a |
2933 | | * duration (and not null), then the legal formats are: |
2934 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
2935 | | * - xs:date (CCYY-MM-DD) |
2936 | | * - xs:gYearMonth (CCYY-MM) |
2937 | | * - xs:gYear (CCYY) |
2938 | | * In these cases the difference between the @dateTime and |
2939 | | * 1970-01-01T00:00:00Z is calculated and converted to seconds. |
2940 | | * |
2941 | | * Note that there was some confusion over whether "difference" meant |
2942 | | * that a dateTime of 1970-01-01T00:00:01Z should be a positive one or |
2943 | | * a negative one. After correspondence with exslt.org, it was determined |
2944 | | * that the intent of the specification was to have it positive. The |
2945 | | * coding was modified in July 2003 to reflect this. |
2946 | | * |
2947 | | * Returns seconds or Nan. |
2948 | | */ |
2949 | | static double |
2950 | | exsltDateSeconds (const xmlChar *dateTime) |
2951 | 14.0k | { |
2952 | 14.0k | exsltDateValPtr dt; |
2953 | 14.0k | exsltDateDurValPtr dur = NULL; |
2954 | 14.0k | double ret = xmlXPathNAN; |
2955 | | |
2956 | 14.0k | if (dateTime == NULL) { |
2957 | 136 | dt = exsltDateCurrent(); |
2958 | 136 | if (dt == NULL) |
2959 | 0 | return xmlXPathNAN; |
2960 | 13.8k | } else { |
2961 | 13.8k | dt = exsltDateParse(dateTime); |
2962 | 13.8k | if (dt == NULL) |
2963 | 13.4k | dur = exsltDateParseDuration(dateTime); |
2964 | 13.8k | } |
2965 | | |
2966 | 14.0k | if ((dt != NULL) && (dt->type >= XS_GYEAR)) { |
2967 | 521 | exsltDateValPtr y; |
2968 | 521 | exsltDateDurValPtr diff; |
2969 | | |
2970 | | /* |
2971 | | * compute the difference between the given (or current) date |
2972 | | * and epoch date |
2973 | | */ |
2974 | 521 | y = exsltDateCreateDate(XS_DATETIME); |
2975 | 521 | if (y != NULL) { |
2976 | 521 | y->year = 1970; |
2977 | 521 | y->mon = 1; |
2978 | 521 | y->day = 1; |
2979 | 521 | y->tz_flag = 1; |
2980 | | |
2981 | 521 | diff = _exsltDateDifference(y, dt, 1); |
2982 | 521 | if (diff != NULL) { |
2983 | 500 | ret = (double)diff->day * SECS_PER_DAY + diff->sec; |
2984 | 500 | exsltDateFreeDuration(diff); |
2985 | 500 | } |
2986 | 521 | exsltDateFreeDate(y); |
2987 | 521 | } |
2988 | | |
2989 | 13.5k | } else if ((dur != NULL) && (dur->mon == 0)) { |
2990 | 207 | ret = (double)dur->day * SECS_PER_DAY + dur->sec; |
2991 | 207 | } |
2992 | | |
2993 | 14.0k | if (dt != NULL) |
2994 | 539 | exsltDateFreeDate(dt); |
2995 | 14.0k | if (dur != NULL) |
2996 | 207 | exsltDateFreeDuration(dur); |
2997 | | |
2998 | 14.0k | return ret; |
2999 | 14.0k | } |
3000 | | |
3001 | | /** |
3002 | | * exsltDateDifference: |
3003 | | * @xstr: date/time string |
3004 | | * @ystr: date/time string |
3005 | | * |
3006 | | * Implements the date:difference (string,string) function which returns |
3007 | | * the duration between the first date and the second date. If the first |
3008 | | * date occurs before the second date, then the result is a positive |
3009 | | * duration; if it occurs after the second date, the result is a |
3010 | | * negative duration. The two dates must both be right-truncated |
3011 | | * date/time strings in one of the formats defined in [XML Schema Part |
3012 | | * 2: Datatypes]. The date/time with the most specific format (i.e. the |
3013 | | * least truncation) is converted into the same format as the date with |
3014 | | * the least specific format (i.e. the most truncation). The permitted |
3015 | | * formats are as follows, from most specific to least specific: |
3016 | | * - xs:dateTime (CCYY-MM-DDThh:mm:ss) |
3017 | | * - xs:date (CCYY-MM-DD) |
3018 | | * - xs:gYearMonth (CCYY-MM) |
3019 | | * - xs:gYear (CCYY) |
3020 | | * If either of the arguments is not in one of these formats, |
3021 | | * date:difference returns the empty string (''). |
3022 | | * The difference between the date/times is returned as a string in the |
3023 | | * format defined for xs:duration in [3.2.6 duration] of [XML Schema |
3024 | | * Part 2: Datatypes]. |
3025 | | * If the date/time string with the least specific format is in either |
3026 | | * xs:gYearMonth or xs:gYear format, then the number of days, hours, |
3027 | | * minutes and seconds in the duration string must be equal to zero. |
3028 | | * (The format of the string will be PnYnM.) The number of months |
3029 | | * specified in the duration must be less than 12. |
3030 | | * Otherwise, the number of years and months in the duration string |
3031 | | * must be equal to zero. (The format of the string will be |
3032 | | * PnDTnHnMnS.) The number of seconds specified in the duration string |
3033 | | * must be less than 60; the number of minutes must be less than 60; |
3034 | | * the number of hours must be less than 24. |
3035 | | * |
3036 | | * Returns duration string or NULL. |
3037 | | */ |
3038 | | static xmlChar * |
3039 | | exsltDateDifference (const xmlChar *xstr, const xmlChar *ystr) |
3040 | 5.84k | { |
3041 | 5.84k | exsltDateValPtr x, y; |
3042 | 5.84k | exsltDateDurValPtr dur; |
3043 | 5.84k | xmlChar *ret = NULL; |
3044 | | |
3045 | 5.84k | if ((xstr == NULL) || (ystr == NULL)) |
3046 | 0 | return NULL; |
3047 | | |
3048 | 5.84k | x = exsltDateParse(xstr); |
3049 | 5.84k | if (x == NULL) |
3050 | 3.92k | return NULL; |
3051 | | |
3052 | 1.91k | y = exsltDateParse(ystr); |
3053 | 1.91k | if (y == NULL) { |
3054 | 1.32k | exsltDateFreeDate(x); |
3055 | 1.32k | return NULL; |
3056 | 1.32k | } |
3057 | | |
3058 | 589 | if (((x->type < XS_GYEAR) || (x->type > XS_DATETIME)) || |
3059 | 589 | ((y->type < XS_GYEAR) || (y->type > XS_DATETIME))) { |
3060 | 46 | exsltDateFreeDate(x); |
3061 | 46 | exsltDateFreeDate(y); |
3062 | 46 | return NULL; |
3063 | 46 | } |
3064 | | |
3065 | 543 | dur = _exsltDateDifference(x, y, 0); |
3066 | | |
3067 | 543 | exsltDateFreeDate(x); |
3068 | 543 | exsltDateFreeDate(y); |
3069 | | |
3070 | 543 | if (dur == NULL) |
3071 | 80 | return NULL; |
3072 | | |
3073 | 463 | ret = exsltDateFormatDuration(dur); |
3074 | 463 | exsltDateFreeDuration(dur); |
3075 | | |
3076 | 463 | return ret; |
3077 | 543 | } |
3078 | | |
3079 | | /** |
3080 | | * exsltDateDuration: |
3081 | | * @number: a xmlChar string |
3082 | | * |
3083 | | * Implements the The date:duration function returns a duration string |
3084 | | * representing the number of seconds specified by the argument string. |
3085 | | * If no argument is given, then the result of calling date:seconds |
3086 | | * without any arguments is used as a default argument. |
3087 | | * The duration is returned as a string in the format defined for |
3088 | | * xs:duration in [3.2.6 duration] of [XML Schema Part 2: Datatypes]. |
3089 | | * The number of years and months in the duration string must be equal |
3090 | | * to zero. (The format of the string will be PnDTnHnMnS.) The number |
3091 | | * of seconds specified in the duration string must be less than 60; |
3092 | | * the number of minutes must be less than 60; the number of hours must |
3093 | | * be less than 24. |
3094 | | * If the argument is Infinity, -Infinity or NaN, then date:duration |
3095 | | * returns an empty string (''). |
3096 | | * |
3097 | | * Returns duration string or NULL. |
3098 | | */ |
3099 | | static xmlChar * |
3100 | | exsltDateDuration (const xmlChar *number) |
3101 | 596 | { |
3102 | 596 | exsltDateDurValPtr dur; |
3103 | 596 | double secs, days; |
3104 | 596 | xmlChar *ret; |
3105 | | |
3106 | 596 | if (number == NULL) |
3107 | 54 | secs = exsltDateSeconds(number); |
3108 | 542 | else |
3109 | 542 | secs = xmlXPathCastStringToNumber(number); |
3110 | | |
3111 | 596 | if (xmlXPathIsNaN(secs)) |
3112 | 278 | return NULL; |
3113 | | |
3114 | 318 | days = floor(secs / SECS_PER_DAY); |
3115 | 318 | if ((days <= (double)LONG_MIN) || (days >= (double)LONG_MAX)) |
3116 | 28 | return NULL; |
3117 | | |
3118 | 290 | dur = exsltDateCreateDuration(); |
3119 | 290 | if (dur == NULL) |
3120 | 0 | return NULL; |
3121 | | |
3122 | 290 | dur->day = (long)days; |
3123 | 290 | dur->sec = secs - days * SECS_PER_DAY; |
3124 | | |
3125 | 290 | ret = exsltDateFormatDuration(dur); |
3126 | 290 | exsltDateFreeDuration(dur); |
3127 | | |
3128 | 290 | return ret; |
3129 | 290 | } |
3130 | | |
3131 | | /**************************************************************** |
3132 | | * * |
3133 | | * Wrappers for use by the XPath engine * |
3134 | | * * |
3135 | | ****************************************************************/ |
3136 | | |
3137 | | /** |
3138 | | * exsltDateDateTimeFunction: |
3139 | | * @ctxt: an XPath parser context |
3140 | | * @nargs : the number of arguments |
3141 | | * |
3142 | | * Wraps exsltDateDateTime() for use by the XPath engine. |
3143 | | */ |
3144 | | static void |
3145 | | exsltDateDateTimeFunction (xmlXPathParserContextPtr ctxt, int nargs) |
3146 | 58 | { |
3147 | 58 | xmlChar *ret; |
3148 | | |
3149 | 58 | if (nargs != 0) { |
3150 | 19 | xmlXPathSetArityError(ctxt); |
3151 | 19 | return; |
3152 | 19 | } |
3153 | | |
3154 | 39 | ret = exsltDateDateTime(); |
3155 | 39 | if (ret == NULL) |
3156 | 0 | xmlXPathReturnEmptyString(ctxt); |
3157 | 39 | else |
3158 | 39 | xmlXPathReturnString(ctxt, ret); |
3159 | 39 | } |
3160 | | |
3161 | | /** |
3162 | | * exsltDateDateFunction: |
3163 | | * @ctxt: an XPath parser context |
3164 | | * @nargs : the number of arguments |
3165 | | * |
3166 | | * Wraps exsltDateDate() for use by the XPath engine. |
3167 | | */ |
3168 | | static void |
3169 | | exsltDateDateFunction (xmlXPathParserContextPtr ctxt, int nargs) |
3170 | 2.81k | { |
3171 | 2.81k | xmlChar *ret, *dt = NULL; |
3172 | | |
3173 | 2.81k | if ((nargs < 0) || (nargs > 1)) { |
3174 | 19 | xmlXPathSetArityError(ctxt); |
3175 | 19 | return; |
3176 | 19 | } |
3177 | 2.79k | if (nargs == 1) { |
3178 | 2.60k | dt = xmlXPathPopString(ctxt); |
3179 | 2.60k | if (xmlXPathCheckError(ctxt)) { |
3180 | 0 | xmlXPathSetTypeError(ctxt); |
3181 | 0 | return; |
3182 | 0 | } |
3183 | 2.60k | } |
3184 | | |
3185 | 2.79k | ret = exsltDateDate(dt); |
3186 | | |
3187 | 2.79k | if (ret == NULL) { |
3188 | 2.41k | xsltGenericDebug(xsltGenericDebugContext, |
3189 | 2.41k | "{http://exslt.org/dates-and-times}date: " |
3190 | 2.41k | "invalid date or format %s\n", dt); |
3191 | 2.41k | xmlXPathReturnEmptyString(ctxt); |
3192 | 2.41k | } else { |
3193 | 381 | xmlXPathReturnString(ctxt, ret); |
3194 | 381 | } |
3195 | | |
3196 | 2.79k | if (dt != NULL) |
3197 | 2.60k | xmlFree(dt); |
3198 | 2.79k | } |
3199 | | |
3200 | | /** |
3201 | | * exsltDateTimeFunction: |
3202 | | * @ctxt: an XPath parser context |
3203 | | * @nargs : the number of arguments |
3204 | | * |
3205 | | * Wraps exsltDateTime() for use by the XPath engine. |
3206 | | */ |
3207 | | static void |
3208 | | exsltDateTimeFunction (xmlXPathParserContextPtr ctxt, int nargs) |
3209 | 43.3k | { |
3210 | 43.3k | xmlChar *ret, *dt = NULL; |
3211 | | |
3212 | 43.3k | if ((nargs < 0) || (nargs > 1)) { |
3213 | 20 | xmlXPathSetArityError(ctxt); |
3214 | 20 | return; |
3215 | 20 | } |
3216 | 43.2k | if (nargs == 1) { |
3217 | 42.8k | dt = xmlXPathPopString(ctxt); |
3218 | 42.8k | if (xmlXPathCheckError(ctxt)) { |
3219 | 0 | xmlXPathSetTypeError(ctxt); |
3220 | 0 | return; |
3221 | 0 | } |
3222 | 42.8k | } |
3223 | | |
3224 | 43.2k | ret = exsltDateTime(dt); |
3225 | | |
3226 | 43.2k | if (ret == NULL) { |
3227 | 42.2k | xsltGenericDebug(xsltGenericDebugContext, |
3228 | 42.2k | "{http://exslt.org/dates-and-times}time: " |
3229 | 42.2k | "invalid date or format %s\n", dt); |
3230 | 42.2k | xmlXPathReturnEmptyString(ctxt); |
3231 | 42.2k | } else { |
3232 | 1.07k | xmlXPathReturnString(ctxt, ret); |
3233 | 1.07k | } |
3234 | | |
3235 | 43.2k | if (dt != NULL) |
3236 | 42.8k | xmlFree(dt); |
3237 | 43.2k | } |
3238 | | |
3239 | | /** |
3240 | | * exsltDateYearFunction: |
3241 | | * @ctxt: an XPath parser context |
3242 | | * @nargs : the number of arguments |
3243 | | * |
3244 | | * Wraps exsltDateYear() for use by the XPath engine. |
3245 | | */ |
3246 | | static void |
3247 | | exsltDateYearFunction (xmlXPathParserContextPtr ctxt, int nargs) |
3248 | 28.8k | { |
3249 | 28.8k | xmlChar *dt = NULL; |
3250 | 28.8k | double ret; |
3251 | | |
3252 | 28.8k | if ((nargs < 0) || (nargs > 1)) { |
3253 | 22 | xmlXPathSetArityError(ctxt); |
3254 | 22 | return; |
3255 | 22 | } |
3256 | | |
3257 | 28.8k | if (nargs == 1) { |
3258 | 27.8k | dt = xmlXPathPopString(ctxt); |
3259 | 27.8k | if (xmlXPathCheckError(ctxt)) { |
3260 | 0 | xmlXPathSetTypeError(ctxt); |
3261 | 0 | return; |
3262 | 0 | } |
3263 | 27.8k | } |
3264 | | |
3265 | 28.8k | ret = exsltDateYear(dt); |
3266 | | |
3267 | 28.8k | if (dt != NULL) |
3268 | 27.8k | xmlFree(dt); |
3269 | | |
3270 | 28.8k | xmlXPathReturnNumber(ctxt, ret); |
3271 | 28.8k | } |
3272 | | |
3273 | | /** |
3274 | | * exsltDateLeapYearFunction: |
3275 | | * @ctxt: an XPath parser context |
3276 | | * @nargs : the number of arguments |
3277 | | * |
3278 | | * Wraps exsltDateLeapYear() for use by the XPath engine. |
3279 | | */ |
3280 | | static void |
3281 | | exsltDateLeapYearFunction (xmlXPathParserContextPtr ctxt, int nargs) |
3282 | 5.32k | { |
3283 | 5.32k | xmlChar *dt = NULL; |
3284 | 5.32k | xmlXPathObjectPtr ret; |
3285 | | |
3286 | 5.32k | if ((nargs < 0) || (nargs > 1)) { |
3287 | 19 | xmlXPathSetArityError(ctxt); |
3288 | 19 | return; |
3289 | 19 | } |
3290 | | |
3291 | 5.30k | if (nargs == 1) { |
3292 | 5.17k | dt = xmlXPathPopString(ctxt); |
3293 | 5.17k | if (xmlXPathCheckError(ctxt)) { |
3294 | 0 | xmlXPathSetTypeError(ctxt); |
3295 | 0 | return; |
3296 | 0 | } |
3297 | 5.17k | } |
3298 | | |
3299 | 5.30k | ret = exsltDateLeapYear(dt); |
3300 | | |
3301 | 5.30k | if (dt != NULL) |
3302 | 5.17k | xmlFree(dt); |
3303 | | |
3304 | 5.30k | valuePush(ctxt, ret); |
3305 | 5.30k | } |
3306 | | |
3307 | | #define X_IN_Y(x, y) \ |
3308 | | static void \ |
3309 | | exsltDate##x##In##y##Function (xmlXPathParserContextPtr ctxt, \ |
3310 | 45.4k | int nargs) { \ |
3311 | 45.4k | xmlChar *dt = NULL; \ |
3312 | 45.4k | double ret; \ |
3313 | 45.4k | \ |
3314 | 45.4k | if ((nargs < 0) || (nargs > 1)) { \ |
3315 | 198 | xmlXPathSetArityError(ctxt); \ |
3316 | 198 | return; \ |
3317 | 198 | } \ |
3318 | 45.4k | \ |
3319 | 45.4k | if (nargs == 1) { \ |
3320 | 44.6k | dt = xmlXPathPopString(ctxt); \ |
3321 | 44.6k | if (xmlXPathCheckError(ctxt)) { \ |
3322 | 0 | xmlXPathSetTypeError(ctxt); \ |
3323 | 0 | return; \ |
3324 | 0 | } \ |
3325 | 44.6k | } \ |
3326 | 45.2k | \ |
3327 | 45.2k | ret = exsltDate##x##In##y(dt); \ |
3328 | 45.2k | \ |
3329 | 45.2k | if (dt != NULL) \ |
3330 | 45.2k | xmlFree(dt); \ |
3331 | 45.2k | \ |
3332 | 45.2k | xmlXPathReturnNumber(ctxt, ret); \ |
3333 | 45.2k | } date.c:exsltDateDayInMonthFunction Line | Count | Source | 3310 | 1.51k | int nargs) { \ | 3311 | 1.51k | xmlChar *dt = NULL; \ | 3312 | 1.51k | double ret; \ | 3313 | 1.51k | \ | 3314 | 1.51k | if ((nargs < 0) || (nargs > 1)) { \ | 3315 | 19 | xmlXPathSetArityError(ctxt); \ | 3316 | 19 | return; \ | 3317 | 19 | } \ | 3318 | 1.51k | \ | 3319 | 1.51k | if (nargs == 1) { \ | 3320 | 1.48k | dt = xmlXPathPopString(ctxt); \ | 3321 | 1.48k | if (xmlXPathCheckError(ctxt)) { \ | 3322 | 0 | xmlXPathSetTypeError(ctxt); \ | 3323 | 0 | return; \ | 3324 | 0 | } \ | 3325 | 1.48k | } \ | 3326 | 1.49k | \ | 3327 | 1.49k | ret = exsltDate##x##In##y(dt); \ | 3328 | 1.49k | \ | 3329 | 1.49k | if (dt != NULL) \ | 3330 | 1.49k | xmlFree(dt); \ | 3331 | 1.49k | \ | 3332 | 1.49k | xmlXPathReturnNumber(ctxt, ret); \ | 3333 | 1.49k | } |
date.c:exsltDateDayInWeekFunction Line | Count | Source | 3310 | 2.00k | int nargs) { \ | 3311 | 2.00k | xmlChar *dt = NULL; \ | 3312 | 2.00k | double ret; \ | 3313 | 2.00k | \ | 3314 | 2.00k | if ((nargs < 0) || (nargs > 1)) { \ | 3315 | 19 | xmlXPathSetArityError(ctxt); \ | 3316 | 19 | return; \ | 3317 | 19 | } \ | 3318 | 2.00k | \ | 3319 | 2.00k | if (nargs == 1) { \ | 3320 | 1.96k | dt = xmlXPathPopString(ctxt); \ | 3321 | 1.96k | if (xmlXPathCheckError(ctxt)) { \ | 3322 | 0 | xmlXPathSetTypeError(ctxt); \ | 3323 | 0 | return; \ | 3324 | 0 | } \ | 3325 | 1.96k | } \ | 3326 | 1.98k | \ | 3327 | 1.98k | ret = exsltDate##x##In##y(dt); \ | 3328 | 1.98k | \ | 3329 | 1.98k | if (dt != NULL) \ | 3330 | 1.98k | xmlFree(dt); \ | 3331 | 1.98k | \ | 3332 | 1.98k | xmlXPathReturnNumber(ctxt, ret); \ | 3333 | 1.98k | } |
date.c:exsltDateDayInYearFunction Line | Count | Source | 3310 | 1.54k | int nargs) { \ | 3311 | 1.54k | xmlChar *dt = NULL; \ | 3312 | 1.54k | double ret; \ | 3313 | 1.54k | \ | 3314 | 1.54k | if ((nargs < 0) || (nargs > 1)) { \ | 3315 | 19 | xmlXPathSetArityError(ctxt); \ | 3316 | 19 | return; \ | 3317 | 19 | } \ | 3318 | 1.54k | \ | 3319 | 1.54k | if (nargs == 1) { \ | 3320 | 1.49k | dt = xmlXPathPopString(ctxt); \ | 3321 | 1.49k | if (xmlXPathCheckError(ctxt)) { \ | 3322 | 0 | xmlXPathSetTypeError(ctxt); \ | 3323 | 0 | return; \ | 3324 | 0 | } \ | 3325 | 1.49k | } \ | 3326 | 1.52k | \ | 3327 | 1.52k | ret = exsltDate##x##In##y(dt); \ | 3328 | 1.52k | \ | 3329 | 1.52k | if (dt != NULL) \ | 3330 | 1.52k | xmlFree(dt); \ | 3331 | 1.52k | \ | 3332 | 1.52k | xmlXPathReturnNumber(ctxt, ret); \ | 3333 | 1.52k | } |
date.c:exsltDateDayOfWeekInMonthFunction Line | Count | Source | 3310 | 9.81k | int nargs) { \ | 3311 | 9.81k | xmlChar *dt = NULL; \ | 3312 | 9.81k | double ret; \ | 3313 | 9.81k | \ | 3314 | 9.81k | if ((nargs < 0) || (nargs > 1)) { \ | 3315 | 19 | xmlXPathSetArityError(ctxt); \ | 3316 | 19 | return; \ | 3317 | 19 | } \ | 3318 | 9.81k | \ | 3319 | 9.81k | if (nargs == 1) { \ | 3320 | 9.76k | dt = xmlXPathPopString(ctxt); \ | 3321 | 9.76k | if (xmlXPathCheckError(ctxt)) { \ | 3322 | 0 | xmlXPathSetTypeError(ctxt); \ | 3323 | 0 | return; \ | 3324 | 0 | } \ | 3325 | 9.76k | } \ | 3326 | 9.79k | \ | 3327 | 9.79k | ret = exsltDate##x##In##y(dt); \ | 3328 | 9.79k | \ | 3329 | 9.79k | if (dt != NULL) \ | 3330 | 9.79k | xmlFree(dt); \ | 3331 | 9.79k | \ | 3332 | 9.79k | xmlXPathReturnNumber(ctxt, ret); \ | 3333 | 9.79k | } |
date.c:exsltDateHourInDayFunction Line | Count | Source | 3310 | 486 | int nargs) { \ | 3311 | 486 | xmlChar *dt = NULL; \ | 3312 | 486 | double ret; \ | 3313 | 486 | \ | 3314 | 486 | if ((nargs < 0) || (nargs > 1)) { \ | 3315 | 19 | xmlXPathSetArityError(ctxt); \ | 3316 | 19 | return; \ | 3317 | 19 | } \ | 3318 | 486 | \ | 3319 | 486 | if (nargs == 1) { \ | 3320 | 436 | dt = xmlXPathPopString(ctxt); \ | 3321 | 436 | if (xmlXPathCheckError(ctxt)) { \ | 3322 | 0 | xmlXPathSetTypeError(ctxt); \ | 3323 | 0 | return; \ | 3324 | 0 | } \ | 3325 | 436 | } \ | 3326 | 467 | \ | 3327 | 467 | ret = exsltDate##x##In##y(dt); \ | 3328 | 467 | \ | 3329 | 467 | if (dt != NULL) \ | 3330 | 467 | xmlFree(dt); \ | 3331 | 467 | \ | 3332 | 467 | xmlXPathReturnNumber(ctxt, ret); \ | 3333 | 467 | } |
date.c:exsltDateMinuteInHourFunction Line | Count | Source | 3310 | 23.1k | int nargs) { \ | 3311 | 23.1k | xmlChar *dt = NULL; \ | 3312 | 23.1k | double ret; \ | 3313 | 23.1k | \ | 3314 | 23.1k | if ((nargs < 0) || (nargs > 1)) { \ | 3315 | 19 | xmlXPathSetArityError(ctxt); \ | 3316 | 19 | return; \ | 3317 | 19 | } \ | 3318 | 23.1k | \ | 3319 | 23.1k | if (nargs == 1) { \ | 3320 | 22.8k | dt = xmlXPathPopString(ctxt); \ | 3321 | 22.8k | if (xmlXPathCheckError(ctxt)) { \ | 3322 | 0 | xmlXPathSetTypeError(ctxt); \ | 3323 | 0 | return; \ | 3324 | 0 | } \ | 3325 | 22.8k | } \ | 3326 | 23.1k | \ | 3327 | 23.1k | ret = exsltDate##x##In##y(dt); \ | 3328 | 23.1k | \ | 3329 | 23.1k | if (dt != NULL) \ | 3330 | 23.1k | xmlFree(dt); \ | 3331 | 23.1k | \ | 3332 | 23.1k | xmlXPathReturnNumber(ctxt, ret); \ | 3333 | 23.1k | } |
date.c:exsltDateMonthInYearFunction Line | Count | Source | 3310 | 836 | int nargs) { \ | 3311 | 836 | xmlChar *dt = NULL; \ | 3312 | 836 | double ret; \ | 3313 | 836 | \ | 3314 | 836 | if ((nargs < 0) || (nargs > 1)) { \ | 3315 | 19 | xmlXPathSetArityError(ctxt); \ | 3316 | 19 | return; \ | 3317 | 19 | } \ | 3318 | 836 | \ | 3319 | 836 | if (nargs == 1) { \ | 3320 | 798 | dt = xmlXPathPopString(ctxt); \ | 3321 | 798 | if (xmlXPathCheckError(ctxt)) { \ | 3322 | 0 | xmlXPathSetTypeError(ctxt); \ | 3323 | 0 | return; \ | 3324 | 0 | } \ | 3325 | 798 | } \ | 3326 | 817 | \ | 3327 | 817 | ret = exsltDate##x##In##y(dt); \ | 3328 | 817 | \ | 3329 | 817 | if (dt != NULL) \ | 3330 | 817 | xmlFree(dt); \ | 3331 | 817 | \ | 3332 | 817 | xmlXPathReturnNumber(ctxt, ret); \ | 3333 | 817 | } |
date.c:exsltDateSecondInMinuteFunction Line | Count | Source | 3310 | 4.81k | int nargs) { \ | 3311 | 4.81k | xmlChar *dt = NULL; \ | 3312 | 4.81k | double ret; \ | 3313 | 4.81k | \ | 3314 | 4.81k | if ((nargs < 0) || (nargs > 1)) { \ | 3315 | 19 | xmlXPathSetArityError(ctxt); \ | 3316 | 19 | return; \ | 3317 | 19 | } \ | 3318 | 4.81k | \ | 3319 | 4.81k | if (nargs == 1) { \ | 3320 | 4.76k | dt = xmlXPathPopString(ctxt); \ | 3321 | 4.76k | if (xmlXPathCheckError(ctxt)) { \ | 3322 | 0 | xmlXPathSetTypeError(ctxt); \ | 3323 | 0 | return; \ | 3324 | 0 | } \ | 3325 | 4.76k | } \ | 3326 | 4.80k | \ | 3327 | 4.80k | ret = exsltDate##x##In##y(dt); \ | 3328 | 4.80k | \ | 3329 | 4.80k | if (dt != NULL) \ | 3330 | 4.80k | xmlFree(dt); \ | 3331 | 4.80k | \ | 3332 | 4.80k | xmlXPathReturnNumber(ctxt, ret); \ | 3333 | 4.80k | } |
date.c:exsltDateWeekInMonthFunction Line | Count | Source | 3310 | 735 | int nargs) { \ | 3311 | 735 | xmlChar *dt = NULL; \ | 3312 | 735 | double ret; \ | 3313 | 735 | \ | 3314 | 735 | if ((nargs < 0) || (nargs > 1)) { \ | 3315 | 27 | xmlXPathSetArityError(ctxt); \ | 3316 | 27 | return; \ | 3317 | 27 | } \ | 3318 | 735 | \ | 3319 | 735 | if (nargs == 1) { \ | 3320 | 689 | dt = xmlXPathPopString(ctxt); \ | 3321 | 689 | if (xmlXPathCheckError(ctxt)) { \ | 3322 | 0 | xmlXPathSetTypeError(ctxt); \ | 3323 | 0 | return; \ | 3324 | 0 | } \ | 3325 | 689 | } \ | 3326 | 708 | \ | 3327 | 708 | ret = exsltDate##x##In##y(dt); \ | 3328 | 708 | \ | 3329 | 708 | if (dt != NULL) \ | 3330 | 708 | xmlFree(dt); \ | 3331 | 708 | \ | 3332 | 708 | xmlXPathReturnNumber(ctxt, ret); \ | 3333 | 708 | } |
date.c:exsltDateWeekInYearFunction Line | Count | Source | 3310 | 476 | int nargs) { \ | 3311 | 476 | xmlChar *dt = NULL; \ | 3312 | 476 | double ret; \ | 3313 | 476 | \ | 3314 | 476 | if ((nargs < 0) || (nargs > 1)) { \ | 3315 | 19 | xmlXPathSetArityError(ctxt); \ | 3316 | 19 | return; \ | 3317 | 19 | } \ | 3318 | 476 | \ | 3319 | 476 | if (nargs == 1) { \ | 3320 | 422 | dt = xmlXPathPopString(ctxt); \ | 3321 | 422 | if (xmlXPathCheckError(ctxt)) { \ | 3322 | 0 | xmlXPathSetTypeError(ctxt); \ | 3323 | 0 | return; \ | 3324 | 0 | } \ | 3325 | 422 | } \ | 3326 | 457 | \ | 3327 | 457 | ret = exsltDate##x##In##y(dt); \ | 3328 | 457 | \ | 3329 | 457 | if (dt != NULL) \ | 3330 | 457 | xmlFree(dt); \ | 3331 | 457 | \ | 3332 | 457 | xmlXPathReturnNumber(ctxt, ret); \ | 3333 | 457 | } |
|
3334 | | |
3335 | | /** |
3336 | | * exsltDateMonthInYearFunction: |
3337 | | * @ctxt: an XPath parser context |
3338 | | * @nargs : the number of arguments |
3339 | | * |
3340 | | * Wraps exsltDateMonthInYear() for use by the XPath engine. |
3341 | | */ |
3342 | | X_IN_Y(Month,Year) |
3343 | | |
3344 | | /** |
3345 | | * exsltDateMonthNameFunction: |
3346 | | * @ctxt: an XPath parser context |
3347 | | * @nargs : the number of arguments |
3348 | | * |
3349 | | * Wraps exsltDateMonthName() for use by the XPath engine. |
3350 | | */ |
3351 | | static void |
3352 | | exsltDateMonthNameFunction (xmlXPathParserContextPtr ctxt, int nargs) |
3353 | 2.12k | { |
3354 | 2.12k | xmlChar *dt = NULL; |
3355 | 2.12k | const xmlChar *ret; |
3356 | | |
3357 | 2.12k | if ((nargs < 0) || (nargs > 1)) { |
3358 | 19 | xmlXPathSetArityError(ctxt); |
3359 | 19 | return; |
3360 | 19 | } |
3361 | | |
3362 | 2.10k | if (nargs == 1) { |
3363 | 1.96k | dt = xmlXPathPopString(ctxt); |
3364 | 1.96k | if (xmlXPathCheckError(ctxt)) { |
3365 | 0 | xmlXPathSetTypeError(ctxt); |
3366 | 0 | return; |
3367 | 0 | } |
3368 | 1.96k | } |
3369 | | |
3370 | 2.10k | ret = exsltDateMonthName(dt); |
3371 | | |
3372 | 2.10k | if (dt != NULL) |
3373 | 1.96k | xmlFree(dt); |
3374 | | |
3375 | 2.10k | if (ret == NULL) |
3376 | 0 | xmlXPathReturnEmptyString(ctxt); |
3377 | 2.10k | else |
3378 | 2.10k | xmlXPathReturnString(ctxt, xmlStrdup(ret)); |
3379 | 2.10k | } |
3380 | | |
3381 | | /** |
3382 | | * exsltDateMonthAbbreviationFunction: |
3383 | | * @ctxt: an XPath parser context |
3384 | | * @nargs : the number of arguments |
3385 | | * |
3386 | | * Wraps exsltDateMonthAbbreviation() for use by the XPath engine. |
3387 | | */ |
3388 | | static void |
3389 | | exsltDateMonthAbbreviationFunction (xmlXPathParserContextPtr ctxt, int nargs) |
3390 | 179 | { |
3391 | 179 | xmlChar *dt = NULL; |
3392 | 179 | const xmlChar *ret; |
3393 | | |
3394 | 179 | if ((nargs < 0) || (nargs > 1)) { |
3395 | 19 | xmlXPathSetArityError(ctxt); |
3396 | 19 | return; |
3397 | 19 | } |
3398 | | |
3399 | 160 | if (nargs == 1) { |
3400 | 141 | dt = xmlXPathPopString(ctxt); |
3401 | 141 | if (xmlXPathCheckError(ctxt)) { |
3402 | 0 | xmlXPathSetTypeError(ctxt); |
3403 | 0 | return; |
3404 | 0 | } |
3405 | 141 | } |
3406 | | |
3407 | 160 | ret = exsltDateMonthAbbreviation(dt); |
3408 | | |
3409 | 160 | if (dt != NULL) |
3410 | 141 | xmlFree(dt); |
3411 | | |
3412 | 160 | if (ret == NULL) |
3413 | 0 | xmlXPathReturnEmptyString(ctxt); |
3414 | 160 | else |
3415 | 160 | xmlXPathReturnString(ctxt, xmlStrdup(ret)); |
3416 | 160 | } |
3417 | | |
3418 | | /** |
3419 | | * exsltDateWeekInYearFunction: |
3420 | | * @ctxt: an XPath parser context |
3421 | | * @nargs : the number of arguments |
3422 | | * |
3423 | | * Wraps exsltDateWeekInYear() for use by the XPath engine. |
3424 | | */ |
3425 | | X_IN_Y(Week,Year) |
3426 | | |
3427 | | /** |
3428 | | * exsltDateWeekInMonthFunction: |
3429 | | * @ctxt: an XPath parser context |
3430 | | * @nargs : the number of arguments |
3431 | | * |
3432 | | * Wraps exsltDateWeekInMonthYear() for use by the XPath engine. |
3433 | | */ |
3434 | | X_IN_Y(Week,Month) |
3435 | | |
3436 | | /** |
3437 | | * exsltDateDayInYearFunction: |
3438 | | * @ctxt: an XPath parser context |
3439 | | * @nargs : the number of arguments |
3440 | | * |
3441 | | * Wraps exsltDateDayInYear() for use by the XPath engine. |
3442 | | */ |
3443 | | X_IN_Y(Day,Year) |
3444 | | |
3445 | | /** |
3446 | | * exsltDateDayInMonthFunction: |
3447 | | * @ctxt: an XPath parser context |
3448 | | * @nargs : the number of arguments |
3449 | | * |
3450 | | * Wraps exsltDateDayInMonth() for use by the XPath engine. |
3451 | | */ |
3452 | | X_IN_Y(Day,Month) |
3453 | | |
3454 | | /** |
3455 | | * exsltDateDayOfWeekInMonthFunction: |
3456 | | * @ctxt: an XPath parser context |
3457 | | * @nargs : the number of arguments |
3458 | | * |
3459 | | * Wraps exsltDayOfWeekInMonth() for use by the XPath engine. |
3460 | | */ |
3461 | | X_IN_Y(DayOfWeek,Month) |
3462 | | |
3463 | | /** |
3464 | | * exsltDateDayInWeekFunction: |
3465 | | * @ctxt: an XPath parser context |
3466 | | * @nargs : the number of arguments |
3467 | | * |
3468 | | * Wraps exsltDateDayInWeek() for use by the XPath engine. |
3469 | | */ |
3470 | | X_IN_Y(Day,Week) |
3471 | | |
3472 | | /** |
3473 | | * exsltDateDayNameFunction: |
3474 | | * @ctxt: an XPath parser context |
3475 | | * @nargs : the number of arguments |
3476 | | * |
3477 | | * Wraps exsltDateDayName() for use by the XPath engine. |
3478 | | */ |
3479 | | static void |
3480 | | exsltDateDayNameFunction (xmlXPathParserContextPtr ctxt, int nargs) |
3481 | 376 | { |
3482 | 376 | xmlChar *dt = NULL; |
3483 | 376 | const xmlChar *ret; |
3484 | | |
3485 | 376 | if ((nargs < 0) || (nargs > 1)) { |
3486 | 19 | xmlXPathSetArityError(ctxt); |
3487 | 19 | return; |
3488 | 19 | } |
3489 | | |
3490 | 357 | if (nargs == 1) { |
3491 | 337 | dt = xmlXPathPopString(ctxt); |
3492 | 337 | if (xmlXPathCheckError(ctxt)) { |
3493 | 0 | xmlXPathSetTypeError(ctxt); |
3494 | 0 | return; |
3495 | 0 | } |
3496 | 337 | } |
3497 | | |
3498 | 357 | ret = exsltDateDayName(dt); |
3499 | | |
3500 | 357 | if (dt != NULL) |
3501 | 337 | xmlFree(dt); |
3502 | | |
3503 | 357 | if (ret == NULL) |
3504 | 0 | xmlXPathReturnEmptyString(ctxt); |
3505 | 357 | else |
3506 | 357 | xmlXPathReturnString(ctxt, xmlStrdup(ret)); |
3507 | 357 | } |
3508 | | |
3509 | | /** |
3510 | | * exsltDateMonthDayFunction: |
3511 | | * @ctxt: an XPath parser context |
3512 | | * @nargs : the number of arguments |
3513 | | * |
3514 | | * Wraps exsltDateDayAbbreviation() for use by the XPath engine. |
3515 | | */ |
3516 | | static void |
3517 | | exsltDateDayAbbreviationFunction (xmlXPathParserContextPtr ctxt, int nargs) |
3518 | 612 | { |
3519 | 612 | xmlChar *dt = NULL; |
3520 | 612 | const xmlChar *ret; |
3521 | | |
3522 | 612 | if ((nargs < 0) || (nargs > 1)) { |
3523 | 19 | xmlXPathSetArityError(ctxt); |
3524 | 19 | return; |
3525 | 19 | } |
3526 | | |
3527 | 593 | if (nargs == 1) { |
3528 | 522 | dt = xmlXPathPopString(ctxt); |
3529 | 522 | if (xmlXPathCheckError(ctxt)) { |
3530 | 0 | xmlXPathSetTypeError(ctxt); |
3531 | 0 | return; |
3532 | 0 | } |
3533 | 522 | } |
3534 | | |
3535 | 593 | ret = exsltDateDayAbbreviation(dt); |
3536 | | |
3537 | 593 | if (dt != NULL) |
3538 | 522 | xmlFree(dt); |
3539 | | |
3540 | 593 | if (ret == NULL) |
3541 | 0 | xmlXPathReturnEmptyString(ctxt); |
3542 | 593 | else |
3543 | 593 | xmlXPathReturnString(ctxt, xmlStrdup(ret)); |
3544 | 593 | } |
3545 | | |
3546 | | |
3547 | | /** |
3548 | | * exsltDateHourInDayFunction: |
3549 | | * @ctxt: an XPath parser context |
3550 | | * @nargs : the number of arguments |
3551 | | * |
3552 | | * Wraps exsltDateHourInDay() for use by the XPath engine. |
3553 | | */ |
3554 | | X_IN_Y(Hour,Day) |
3555 | | |
3556 | | /** |
3557 | | * exsltDateMinuteInHourFunction: |
3558 | | * @ctxt: an XPath parser context |
3559 | | * @nargs : the number of arguments |
3560 | | * |
3561 | | * Wraps exsltDateMinuteInHour() for use by the XPath engine. |
3562 | | */ |
3563 | | X_IN_Y(Minute,Hour) |
3564 | | |
3565 | | /** |
3566 | | * exsltDateSecondInMinuteFunction: |
3567 | | * @ctxt: an XPath parser context |
3568 | | * @nargs : the number of arguments |
3569 | | * |
3570 | | * Wraps exsltDateSecondInMinute() for use by the XPath engine. |
3571 | | */ |
3572 | | X_IN_Y(Second,Minute) |
3573 | | |
3574 | | /** |
3575 | | * exsltDateSecondsFunction: |
3576 | | * @ctxt: an XPath parser context |
3577 | | * @nargs : the number of arguments |
3578 | | * |
3579 | | * Wraps exsltDateSeconds() for use by the XPath engine. |
3580 | | */ |
3581 | | static void |
3582 | | exsltDateSecondsFunction (xmlXPathParserContextPtr ctxt, int nargs) |
3583 | 13.9k | { |
3584 | 13.9k | xmlChar *str = NULL; |
3585 | 13.9k | double ret; |
3586 | | |
3587 | 13.9k | if (nargs > 1) { |
3588 | 19 | xmlXPathSetArityError(ctxt); |
3589 | 19 | return; |
3590 | 19 | } |
3591 | | |
3592 | 13.9k | if (nargs == 1) { |
3593 | 13.8k | str = xmlXPathPopString(ctxt); |
3594 | 13.8k | if (xmlXPathCheckError(ctxt)) { |
3595 | 0 | xmlXPathSetTypeError(ctxt); |
3596 | 0 | return; |
3597 | 0 | } |
3598 | 13.8k | } |
3599 | | |
3600 | 13.9k | ret = exsltDateSeconds(str); |
3601 | 13.9k | if (str != NULL) |
3602 | 13.8k | xmlFree(str); |
3603 | | |
3604 | 13.9k | xmlXPathReturnNumber(ctxt, ret); |
3605 | 13.9k | } |
3606 | | |
3607 | | /** |
3608 | | * exsltDateAddFunction: |
3609 | | * @ctxt: an XPath parser context |
3610 | | * @nargs: the number of arguments |
3611 | | * |
3612 | | * Wraps exsltDateAdd() for use by the XPath processor. |
3613 | | */ |
3614 | | static void |
3615 | | exsltDateAddFunction (xmlXPathParserContextPtr ctxt, int nargs) |
3616 | 40.8k | { |
3617 | 40.8k | xmlChar *ret, *xstr, *ystr; |
3618 | | |
3619 | 40.8k | if (nargs != 2) { |
3620 | 77 | xmlXPathSetArityError(ctxt); |
3621 | 77 | return; |
3622 | 77 | } |
3623 | 40.7k | ystr = xmlXPathPopString(ctxt); |
3624 | 40.7k | if (xmlXPathCheckError(ctxt)) |
3625 | 0 | return; |
3626 | | |
3627 | 40.7k | xstr = xmlXPathPopString(ctxt); |
3628 | 40.7k | if (xmlXPathCheckError(ctxt)) { |
3629 | 0 | xmlFree(ystr); |
3630 | 0 | return; |
3631 | 0 | } |
3632 | | |
3633 | 40.7k | ret = exsltDateAdd(xstr, ystr); |
3634 | | |
3635 | 40.7k | xmlFree(ystr); |
3636 | 40.7k | xmlFree(xstr); |
3637 | | |
3638 | 40.7k | if (ret == NULL) |
3639 | 39.4k | xmlXPathReturnEmptyString(ctxt); |
3640 | 1.29k | else |
3641 | 1.29k | xmlXPathReturnString(ctxt, ret); |
3642 | 40.7k | } |
3643 | | |
3644 | | /** |
3645 | | * exsltDateAddDurationFunction: |
3646 | | * @ctxt: an XPath parser context |
3647 | | * @nargs: the number of arguments |
3648 | | * |
3649 | | * Wraps exsltDateAddDuration() for use by the XPath processor. |
3650 | | */ |
3651 | | static void |
3652 | | exsltDateAddDurationFunction (xmlXPathParserContextPtr ctxt, int nargs) |
3653 | 4.13k | { |
3654 | 4.13k | xmlChar *ret, *xstr, *ystr; |
3655 | | |
3656 | 4.13k | if (nargs != 2) { |
3657 | 19 | xmlXPathSetArityError(ctxt); |
3658 | 19 | return; |
3659 | 19 | } |
3660 | 4.11k | ystr = xmlXPathPopString(ctxt); |
3661 | 4.11k | if (xmlXPathCheckError(ctxt)) |
3662 | 0 | return; |
3663 | | |
3664 | 4.11k | xstr = xmlXPathPopString(ctxt); |
3665 | 4.11k | if (xmlXPathCheckError(ctxt)) { |
3666 | 0 | xmlFree(ystr); |
3667 | 0 | return; |
3668 | 0 | } |
3669 | | |
3670 | 4.11k | ret = exsltDateAddDuration(xstr, ystr); |
3671 | | |
3672 | 4.11k | xmlFree(ystr); |
3673 | 4.11k | xmlFree(xstr); |
3674 | | |
3675 | 4.11k | if (ret == NULL) |
3676 | 3.98k | xmlXPathReturnEmptyString(ctxt); |
3677 | 124 | else |
3678 | 124 | xmlXPathReturnString(ctxt, ret); |
3679 | 4.11k | } |
3680 | | |
3681 | | /** |
3682 | | * exsltDateDifferenceFunction: |
3683 | | * @ctxt: an XPath parser context |
3684 | | * @nargs: the number of arguments |
3685 | | * |
3686 | | * Wraps exsltDateDifference() for use by the XPath processor. |
3687 | | */ |
3688 | | static void |
3689 | | exsltDateDifferenceFunction (xmlXPathParserContextPtr ctxt, int nargs) |
3690 | 5.87k | { |
3691 | 5.87k | xmlChar *ret, *xstr, *ystr; |
3692 | | |
3693 | 5.87k | if (nargs != 2) { |
3694 | 35 | xmlXPathSetArityError(ctxt); |
3695 | 35 | return; |
3696 | 35 | } |
3697 | 5.84k | ystr = xmlXPathPopString(ctxt); |
3698 | 5.84k | if (xmlXPathCheckError(ctxt)) |
3699 | 0 | return; |
3700 | | |
3701 | 5.84k | xstr = xmlXPathPopString(ctxt); |
3702 | 5.84k | if (xmlXPathCheckError(ctxt)) { |
3703 | 0 | xmlFree(ystr); |
3704 | 0 | return; |
3705 | 0 | } |
3706 | | |
3707 | 5.84k | ret = exsltDateDifference(xstr, ystr); |
3708 | | |
3709 | 5.84k | xmlFree(ystr); |
3710 | 5.84k | xmlFree(xstr); |
3711 | | |
3712 | 5.84k | if (ret == NULL) |
3713 | 5.37k | xmlXPathReturnEmptyString(ctxt); |
3714 | 463 | else |
3715 | 463 | xmlXPathReturnString(ctxt, ret); |
3716 | 5.84k | } |
3717 | | |
3718 | | /** |
3719 | | * exsltDateDurationFunction: |
3720 | | * @ctxt: an XPath parser context |
3721 | | * @nargs : the number of arguments |
3722 | | * |
3723 | | * Wraps exsltDateDuration() for use by the XPath engine |
3724 | | */ |
3725 | | static void |
3726 | | exsltDateDurationFunction (xmlXPathParserContextPtr ctxt, int nargs) |
3727 | 615 | { |
3728 | 615 | xmlChar *ret; |
3729 | 615 | xmlChar *number = NULL; |
3730 | | |
3731 | 615 | if ((nargs < 0) || (nargs > 1)) { |
3732 | 19 | xmlXPathSetArityError(ctxt); |
3733 | 19 | return; |
3734 | 19 | } |
3735 | | |
3736 | 596 | if (nargs == 1) { |
3737 | 542 | number = xmlXPathPopString(ctxt); |
3738 | 542 | if (xmlXPathCheckError(ctxt)) { |
3739 | 0 | xmlXPathSetTypeError(ctxt); |
3740 | 0 | return; |
3741 | 0 | } |
3742 | 542 | } |
3743 | | |
3744 | 596 | ret = exsltDateDuration(number); |
3745 | | |
3746 | 596 | if (number != NULL) |
3747 | 542 | xmlFree(number); |
3748 | | |
3749 | 596 | if (ret == NULL) |
3750 | 306 | xmlXPathReturnEmptyString(ctxt); |
3751 | 290 | else |
3752 | 290 | xmlXPathReturnString(ctxt, ret); |
3753 | 596 | } |
3754 | | |
3755 | | /** |
3756 | | * exsltDateRegister: |
3757 | | * |
3758 | | * Registers the EXSLT - Dates and Times module |
3759 | | */ |
3760 | | void |
3761 | | exsltDateRegister (void) |
3762 | 3.51k | { |
3763 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "add", |
3764 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3765 | 3.51k | exsltDateAddFunction); |
3766 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "add-duration", |
3767 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3768 | 3.51k | exsltDateAddDurationFunction); |
3769 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "date", |
3770 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3771 | 3.51k | exsltDateDateFunction); |
3772 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "date-time", |
3773 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3774 | 3.51k | exsltDateDateTimeFunction); |
3775 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "day-abbreviation", |
3776 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3777 | 3.51k | exsltDateDayAbbreviationFunction); |
3778 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "day-in-month", |
3779 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3780 | 3.51k | exsltDateDayInMonthFunction); |
3781 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "day-in-week", |
3782 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3783 | 3.51k | exsltDateDayInWeekFunction); |
3784 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "day-in-year", |
3785 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3786 | 3.51k | exsltDateDayInYearFunction); |
3787 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "day-name", |
3788 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3789 | 3.51k | exsltDateDayNameFunction); |
3790 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "day-of-week-in-month", |
3791 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3792 | 3.51k | exsltDateDayOfWeekInMonthFunction); |
3793 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "difference", |
3794 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3795 | 3.51k | exsltDateDifferenceFunction); |
3796 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "duration", |
3797 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3798 | 3.51k | exsltDateDurationFunction); |
3799 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "hour-in-day", |
3800 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3801 | 3.51k | exsltDateHourInDayFunction); |
3802 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "leap-year", |
3803 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3804 | 3.51k | exsltDateLeapYearFunction); |
3805 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "minute-in-hour", |
3806 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3807 | 3.51k | exsltDateMinuteInHourFunction); |
3808 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "month-abbreviation", |
3809 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3810 | 3.51k | exsltDateMonthAbbreviationFunction); |
3811 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "month-in-year", |
3812 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3813 | 3.51k | exsltDateMonthInYearFunction); |
3814 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "month-name", |
3815 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3816 | 3.51k | exsltDateMonthNameFunction); |
3817 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "second-in-minute", |
3818 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3819 | 3.51k | exsltDateSecondInMinuteFunction); |
3820 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "seconds", |
3821 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3822 | 3.51k | exsltDateSecondsFunction); |
3823 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "sum", |
3824 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3825 | 3.51k | exsltDateSumFunction); |
3826 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "time", |
3827 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3828 | 3.51k | exsltDateTimeFunction); |
3829 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "week-in-month", |
3830 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3831 | 3.51k | exsltDateWeekInMonthFunction); |
3832 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "week-in-year", |
3833 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3834 | 3.51k | exsltDateWeekInYearFunction); |
3835 | 3.51k | xsltRegisterExtModuleFunction ((const xmlChar *) "year", |
3836 | 3.51k | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3837 | 3.51k | exsltDateYearFunction); |
3838 | 3.51k | } |
3839 | | |
3840 | | /** |
3841 | | * exsltDateXpathCtxtRegister: |
3842 | | * |
3843 | | * Registers the EXSLT - Dates and Times module for use outside XSLT |
3844 | | */ |
3845 | | int |
3846 | | exsltDateXpathCtxtRegister (xmlXPathContextPtr ctxt, const xmlChar *prefix) |
3847 | 0 | { |
3848 | 0 | if (ctxt |
3849 | 0 | && prefix |
3850 | 0 | && !xmlXPathRegisterNs(ctxt, |
3851 | 0 | prefix, |
3852 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE) |
3853 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3854 | 0 | (const xmlChar *) "add", |
3855 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3856 | 0 | exsltDateAddFunction) |
3857 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3858 | 0 | (const xmlChar *) "add-duration", |
3859 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3860 | 0 | exsltDateAddDurationFunction) |
3861 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3862 | 0 | (const xmlChar *) "date", |
3863 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3864 | 0 | exsltDateDateFunction) |
3865 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3866 | 0 | (const xmlChar *) "date-time", |
3867 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3868 | 0 | exsltDateDateTimeFunction) |
3869 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3870 | 0 | (const xmlChar *) "day-abbreviation", |
3871 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3872 | 0 | exsltDateDayAbbreviationFunction) |
3873 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3874 | 0 | (const xmlChar *) "day-in-month", |
3875 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3876 | 0 | exsltDateDayInMonthFunction) |
3877 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3878 | 0 | (const xmlChar *) "day-in-week", |
3879 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3880 | 0 | exsltDateDayInWeekFunction) |
3881 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3882 | 0 | (const xmlChar *) "day-in-year", |
3883 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3884 | 0 | exsltDateDayInYearFunction) |
3885 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3886 | 0 | (const xmlChar *) "day-name", |
3887 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3888 | 0 | exsltDateDayNameFunction) |
3889 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3890 | 0 | (const xmlChar *) "day-of-week-in-month", |
3891 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3892 | 0 | exsltDateDayOfWeekInMonthFunction) |
3893 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3894 | 0 | (const xmlChar *) "difference", |
3895 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3896 | 0 | exsltDateDifferenceFunction) |
3897 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3898 | 0 | (const xmlChar *) "duration", |
3899 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3900 | 0 | exsltDateDurationFunction) |
3901 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3902 | 0 | (const xmlChar *) "hour-in-day", |
3903 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3904 | 0 | exsltDateHourInDayFunction) |
3905 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3906 | 0 | (const xmlChar *) "leap-year", |
3907 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3908 | 0 | exsltDateLeapYearFunction) |
3909 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3910 | 0 | (const xmlChar *) "minute-in-hour", |
3911 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3912 | 0 | exsltDateMinuteInHourFunction) |
3913 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3914 | 0 | (const xmlChar *) "month-abbreviation", |
3915 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3916 | 0 | exsltDateMonthAbbreviationFunction) |
3917 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3918 | 0 | (const xmlChar *) "month-in-year", |
3919 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3920 | 0 | exsltDateMonthInYearFunction) |
3921 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3922 | 0 | (const xmlChar *) "month-name", |
3923 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3924 | 0 | exsltDateMonthNameFunction) |
3925 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3926 | 0 | (const xmlChar *) "second-in-minute", |
3927 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3928 | 0 | exsltDateSecondInMinuteFunction) |
3929 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3930 | 0 | (const xmlChar *) "seconds", |
3931 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3932 | 0 | exsltDateSecondsFunction) |
3933 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3934 | 0 | (const xmlChar *) "sum", |
3935 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3936 | 0 | exsltDateSumFunction) |
3937 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3938 | 0 | (const xmlChar *) "time", |
3939 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3940 | 0 | exsltDateTimeFunction) |
3941 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3942 | 0 | (const xmlChar *) "week-in-month", |
3943 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3944 | 0 | exsltDateWeekInMonthFunction) |
3945 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3946 | 0 | (const xmlChar *) "week-in-year", |
3947 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3948 | 0 | exsltDateWeekInYearFunction) |
3949 | 0 | && !xmlXPathRegisterFuncNS(ctxt, |
3950 | 0 | (const xmlChar *) "year", |
3951 | 0 | (const xmlChar *) EXSLT_DATE_NAMESPACE, |
3952 | 0 | exsltDateYearFunction)) { |
3953 | 0 | return 0; |
3954 | 0 | } |
3955 | 0 | return -1; |
3956 | 0 | } |