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1 ;;; calc-forms.el --- data format conversion functions for Calc
2
3 ;; Copyright (C) 1990, 1991, 1992, 1993, 2001, 2004 Free Software Foundation, Inc.
4
5 ;; Author: David Gillespie <daveg@synaptics.com>
6 ;; Maintainer: Jay Belanger <belanger@truman.edu>
7
8 ;; This file is part of GNU Emacs.
9
10 ;; GNU Emacs is distributed in the hope that it will be useful,
11 ;; but WITHOUT ANY WARRANTY. No author or distributor
12 ;; accepts responsibility to anyone for the consequences of using it
13 ;; or for whether it serves any particular purpose or works at all,
14 ;; unless he says so in writing. Refer to the GNU Emacs General Public
15 ;; License for full details.
16
17 ;; Everyone is granted permission to copy, modify and redistribute
18 ;; GNU Emacs, but only under the conditions described in the
19 ;; GNU Emacs General Public License. A copy of this license is
20 ;; supposed to have been given to you along with GNU Emacs so you
21 ;; can know your rights and responsibilities. It should be in a
22 ;; file named COPYING. Among other things, the copyright notice
23 ;; and this notice must be preserved on all copies.
24
25 ;;; Commentary:
26
27 ;;; Code:
28
29 ;; This file is autoloaded from calc-ext.el.
30
31 (require 'calc-ext)
32 (require 'calc-macs)
33
34 (defun calc-time ()
35 (interactive)
36 (calc-wrapper
37 (let ((time (current-time-string)))
38 (calc-enter-result 0 "time"
39 (list 'mod
40 (list 'hms
41 (string-to-int (substring time 11 13))
42 (string-to-int (substring time 14 16))
43 (string-to-int (substring time 17 19)))
44 (list 'hms 24 0 0))))))
45
46 (defun calc-to-hms (arg)
47 (interactive "P")
48 (calc-wrapper
49 (if (calc-is-inverse)
50 (if (eq calc-angle-mode 'rad)
51 (calc-unary-op ">rad" 'calcFunc-rad arg)
52 (calc-unary-op ">deg" 'calcFunc-deg arg))
53 (calc-unary-op ">hms" 'calcFunc-hms arg))))
54
55 (defun calc-from-hms (arg)
56 (interactive "P")
57 (calc-invert-func)
58 (calc-to-hms arg))
59
60
61 (defun calc-hms-notation (fmt)
62 (interactive "sHours-minutes-seconds format (hms, @ ' \", etc.): ")
63 (calc-wrapper
64 (if (string-match "\\`\\([^,; ]+\\)\\([,; ]*\\)\\([^,; ]\\)\\([,; ]*\\)\\([^,; ]\\)\\'" fmt)
65 (progn
66 (calc-change-mode 'calc-hms-format
67 (concat "%s" (math-match-substring fmt 1)
68 (math-match-substring fmt 2)
69 "%s" (math-match-substring fmt 3)
70 (math-match-substring fmt 4)
71 "%s" (math-match-substring fmt 5))
72 t)
73 (setq-default calc-hms-format calc-hms-format)) ; for minibuffer
74 (error "Bad hours-minutes-seconds format"))))
75
76 (defun calc-date-notation (fmt arg)
77 (interactive "sDate format (e.g., M/D/YY h:mm:ss): \nP")
78 (calc-wrapper
79 (if (equal fmt "")
80 (setq fmt "1"))
81 (if (string-match "\\` *[0-9] *\\'" fmt)
82 (setq fmt (nth (string-to-int fmt) calc-standard-date-formats)))
83 (or (string-match "[a-zA-Z]" fmt)
84 (error "Bad date format specifier"))
85 (and arg
86 (>= (setq arg (prefix-numeric-value arg)) 0)
87 (<= arg 9)
88 (setq calc-standard-date-formats
89 (copy-sequence calc-standard-date-formats))
90 (setcar (nthcdr arg calc-standard-date-formats) fmt))
91 (let ((case-fold-search nil))
92 (and (not (string-match "<.*>" fmt))
93 (string-match "\\`[^hHspP]*\\([^ac-gi-lnoqrt-zAC-GI-OQRT-Z]*[bBhHmpPsS]+[^ac-gi-lnoqrt-zAC-GI-OQRT-Z]*\\)[^hHspP]*\\'" fmt)
94 (string-match (concat "[^ac-gi-lnoqrt-zAC-GI-OQRT-Z]*"
95 (regexp-quote (math-match-substring fmt 1))
96 "[^ac-gi-lnoqrt-zAC-GI-OQRT-Z]*") fmt)
97 (setq fmt (concat (substring fmt 0 (match-beginning 0))
98 "<"
99 (substring fmt (match-beginning 0) (match-end 0))
100 ">"
101 (substring fmt (match-end 0))))))
102 (let ((lfmt nil)
103 (fullfmt nil)
104 (time nil)
105 pos pos2 sym temp)
106 (let ((case-fold-search nil))
107 (and (setq temp (string-match ":[BS]S" fmt))
108 (aset fmt temp ?C)))
109 (while (setq pos (string-match "[<>a-zA-Z]" fmt))
110 (if (> pos 0)
111 (setq lfmt (cons (substring fmt 0 pos) lfmt)))
112 (setq pos2 (1+ pos))
113 (cond ((= (aref fmt pos) ?\<)
114 (and time (error "Nested <'s not allowed"))
115 (and lfmt (setq fullfmt (nconc lfmt fullfmt)
116 lfmt nil))
117 (setq time t))
118 ((= (aref fmt pos) ?\>)
119 (or time (error "Misplaced > in format"))
120 (and lfmt (setq fullfmt (cons (nreverse lfmt) fullfmt)
121 lfmt nil))
122 (setq time nil))
123 (t
124 (if (string-match "\\`[^a-zA-Z]*[bB][a-zA-Z]" fmt)
125 (setq pos2 (1+ pos2)))
126 (while (and (< pos2 (length fmt))
127 (= (upcase (aref fmt pos2))
128 (upcase (aref fmt (1- pos2)))))
129 (setq pos2 (1+ pos2)))
130 (setq sym (intern (substring fmt pos pos2)))
131 (or (memq sym '(Y YY BY YYY YYYY
132 aa AA aaa AAA aaaa AAAA
133 bb BB bbb BBB bbbb BBBB
134 M MM BM mmm Mmm Mmmm MMM MMMM
135 D DD BD d ddd bdd
136 W www Www Wwww WWW WWWW
137 h hh bh H HH BH
138 p P pp PP pppp PPPP
139 m mm bm s ss bss SS BS C
140 N n J j U b))
141 (and (eq sym 'X) (not lfmt) (not fullfmt))
142 (error "Bad format code: %s" sym))
143 (and (memq sym '(bb BB bbb BBB bbbb BBBB))
144 (setq lfmt (cons 'b lfmt)))
145 (setq lfmt (cons sym lfmt))))
146 (setq fmt (substring fmt pos2)))
147 (or (equal fmt "")
148 (setq lfmt (cons fmt lfmt)))
149 (and lfmt (if time
150 (setq fullfmt (cons (nreverse lfmt) fullfmt))
151 (setq fullfmt (nconc lfmt fullfmt))))
152 (calc-change-mode 'calc-date-format (nreverse fullfmt) t))))
153
154
155 (defun calc-hms-mode ()
156 (interactive)
157 (calc-wrapper
158 (calc-change-mode 'calc-angle-mode 'hms)
159 (message "Angles measured in degrees-minutes-seconds")))
160
161
162 (defun calc-now (arg)
163 (interactive "P")
164 (calc-date-zero-args "now" 'calcFunc-now arg))
165
166 (defun calc-date-part (arg)
167 (interactive "NPart code (1-9 = Y,M,D,H,M,S,Wd,Yd,Hms): ")
168 (if (or (< arg 1) (> arg 9))
169 (error "Part code out of range"))
170 (calc-wrapper
171 (calc-enter-result 1
172 (nth arg '(nil "year" "mnth" "day" "hour" "minu"
173 "sec" "wday" "yday" "hmst"))
174 (list (nth arg '(nil calcFunc-year calcFunc-month
175 calcFunc-day calcFunc-hour
176 calcFunc-minute calcFunc-second
177 calcFunc-weekday calcFunc-yearday
178 calcFunc-time))
179 (calc-top-n 1)))))
180
181 (defun calc-date (arg)
182 (interactive "p")
183 (if (or (< arg 1) (> arg 6))
184 (error "Between one and six arguments are allowed"))
185 (calc-wrapper
186 (calc-enter-result arg "date" (cons 'calcFunc-date (calc-top-list-n arg)))))
187
188 (defun calc-julian (arg)
189 (interactive "P")
190 (calc-date-one-arg "juln" 'calcFunc-julian arg))
191
192 (defun calc-unix-time (arg)
193 (interactive "P")
194 (calc-date-one-arg "unix" 'calcFunc-unixtime arg))
195
196 (defun calc-time-zone (arg)
197 (interactive "P")
198 (calc-date-zero-args "zone" 'calcFunc-tzone arg))
199
200 (defun calc-convert-time-zones (old &optional new)
201 (interactive "sFrom time zone: ")
202 (calc-wrapper
203 (if (equal old "$")
204 (calc-enter-result 3 "tzcv" (cons 'calcFunc-tzconv (calc-top-list-n 3)))
205 (if (equal old "") (setq old "local"))
206 (or new
207 (setq new (read-string (concat "From time zone: " old
208 ", to zone: "))))
209 (if (stringp old) (setq old (math-read-expr old)))
210 (if (eq (car-safe old) 'error)
211 (error "Error in expression: %S" (nth 1 old)))
212 (if (equal new "") (setq new "local"))
213 (if (stringp new) (setq new (math-read-expr new)))
214 (if (eq (car-safe new) 'error)
215 (error "Error in expression: %S" (nth 1 new)))
216 (calc-enter-result 1 "tzcv" (list 'calcFunc-tzconv
217 (calc-top-n 1) old new)))))
218
219 (defun calc-new-week (arg)
220 (interactive "P")
221 (calc-date-one-arg "nwwk" 'calcFunc-newweek arg))
222
223 (defun calc-new-month (arg)
224 (interactive "P")
225 (calc-date-one-arg "nwmn" 'calcFunc-newmonth arg))
226
227 (defun calc-new-year (arg)
228 (interactive "P")
229 (calc-date-one-arg "nwyr" 'calcFunc-newyear arg))
230
231 (defun calc-inc-month (arg)
232 (interactive "p")
233 (calc-date-one-arg "incm" 'calcFunc-incmonth arg))
234
235 (defun calc-business-days-plus (arg)
236 (interactive "P")
237 (calc-wrapper
238 (calc-binary-op "bus+" 'calcFunc-badd arg)))
239
240 (defun calc-business-days-minus (arg)
241 (interactive "P")
242 (calc-wrapper
243 (calc-binary-op "bus-" 'calcFunc-bsub arg)))
244
245 (defun calc-date-zero-args (prefix func arg)
246 (calc-wrapper
247 (if (consp arg)
248 (calc-enter-result 1 prefix (list func (calc-top-n 1)))
249 (calc-enter-result 0 prefix (if arg
250 (list func (prefix-numeric-value arg))
251 (list func))))))
252
253 (defun calc-date-one-arg (prefix func arg)
254 (calc-wrapper
255 (if (consp arg)
256 (calc-enter-result 2 prefix (cons func (calc-top-list-n 2)))
257 (calc-enter-result 1 prefix (if arg
258 (list func (calc-top-n 1)
259 (prefix-numeric-value arg))
260 (list func (calc-top-n 1)))))))
261
262
263 ;;;; Hours-minutes-seconds forms.
264
265 (defun math-normalize-hms (a)
266 (let ((h (math-normalize (nth 1 a)))
267 (m (math-normalize (nth 2 a)))
268 (s (let ((calc-internal-prec (max (- calc-internal-prec 4) 3)))
269 (math-normalize (nth 3 a)))))
270 (if (math-negp h)
271 (progn
272 (if (math-posp s)
273 (setq s (math-add s -60)
274 m (math-add m 1)))
275 (if (math-posp m)
276 (setq m (math-add m -60)
277 h (math-add h 1)))
278 (if (not (Math-lessp -60 s))
279 (setq s (math-add s 60)
280 m (math-add m -1)))
281 (if (not (Math-lessp -60 m))
282 (setq m (math-add m 60)
283 h (math-add h -1))))
284 (if (math-negp s)
285 (setq s (math-add s 60)
286 m (math-add m -1)))
287 (if (math-negp m)
288 (setq m (math-add m 60)
289 h (math-add h -1)))
290 (if (not (Math-lessp s 60))
291 (setq s (math-add s -60)
292 m (math-add m 1)))
293 (if (not (Math-lessp m 60))
294 (setq m (math-add m -60)
295 h (math-add h 1))))
296 (if (and (eq (car-safe s) 'float)
297 (<= (+ (math-numdigs (nth 1 s)) (nth 2 s))
298 (- 2 calc-internal-prec)))
299 (setq s 0))
300 (list 'hms h m s)))
301
302 ;;; Convert A from ANG or current angular mode to HMS format.
303 (defun math-to-hms (a &optional ang) ; [X R] [Public]
304 (cond ((eq (car-safe a) 'hms) a)
305 ((eq (car-safe a) 'sdev)
306 (math-make-sdev (math-to-hms (nth 1 a))
307 (math-to-hms (nth 2 a))))
308 ((not (Math-numberp a))
309 (list 'calcFunc-hms a))
310 ((math-negp a)
311 (math-neg (math-to-hms (math-neg a) ang)))
312 ((eq (or ang calc-angle-mode) 'rad)
313 (math-to-hms (math-div a (math-pi-over-180)) 'deg))
314 ((memq (car-safe a) '(cplx polar)) a)
315 (t
316 ;(setq a (let ((calc-internal-prec (max (1- calc-internal-prec) 3)))
317 ; (math-normalize a)))
318 (math-normalize
319 (let* ((b (math-mul a 3600))
320 (hm (math-trunc (math-div b 60)))
321 (hmd (math-idivmod hm 60)))
322 (list 'hms
323 (car hmd)
324 (cdr hmd)
325 (math-sub b (math-mul hm 60))))))))
326 (defun calcFunc-hms (h &optional m s)
327 (or (Math-realp h) (math-reject-arg h 'realp))
328 (or m (setq m 0))
329 (or (Math-realp m) (math-reject-arg m 'realp))
330 (or s (setq s 0))
331 (or (Math-realp s) (math-reject-arg s 'realp))
332 (if (and (not (Math-lessp m 0)) (Math-lessp m 60)
333 (not (Math-lessp s 0)) (Math-lessp s 60))
334 (math-add (math-to-hms h)
335 (list 'hms 0 m s))
336 (math-to-hms (math-add h
337 (math-add (math-div (or m 0) 60)
338 (math-div (or s 0) 3600)))
339 'deg)))
340
341 ;;; Convert A from HMS format to ANG or current angular mode.
342 (defun math-from-hms (a &optional ang) ; [R X] [Public]
343 (cond ((not (eq (car-safe a) 'hms))
344 (if (Math-numberp a)
345 a
346 (if (eq (car-safe a) 'sdev)
347 (math-make-sdev (math-from-hms (nth 1 a) ang)
348 (math-from-hms (nth 2 a) ang))
349 (if (eq (or ang calc-angle-mode) 'rad)
350 (list 'calcFunc-rad a)
351 (list 'calcFunc-deg a)))))
352 ((math-negp a)
353 (math-neg (math-from-hms (math-neg a) ang)))
354 ((eq (or ang calc-angle-mode) 'rad)
355 (math-mul (math-from-hms a 'deg) (math-pi-over-180)))
356 (t
357 (math-add (math-div (math-add (math-div (nth 3 a)
358 '(float 6 1))
359 (nth 2 a))
360 60)
361 (nth 1 a)))))
362
363 ;;;; Date forms.
364
365
366 ;;; Some of these functions are adapted from Edward Reingold's "calendar.el".
367 ;;; These versions are rewritten to use arbitrary-size integers.
368 ;;; The Julian calendar is used up to 9/2/1752, after which the Gregorian
369 ;;; calendar is used; the first day after 9/2/1752 is 9/14/1752.
370
371 ;;; A numerical date is the number of days since midnight on
372 ;;; the morning of January 1, 1 A.D. If the date is a non-integer,
373 ;;; it represents a specific date and time.
374 ;;; A "dt" is a list of the form, (year month day), corresponding to
375 ;;; an integer code, or (year month day hour minute second), corresponding
376 ;;; to a non-integer code.
377
378 (defun math-date-to-dt (value)
379 (if (eq (car-safe value) 'date)
380 (setq value (nth 1 value)))
381 (or (math-realp value)
382 (math-reject-arg value 'datep))
383 (let* ((parts (math-date-parts value))
384 (date (car parts))
385 (time (nth 1 parts))
386 (month 1)
387 day
388 (year (math-quotient (math-add date (if (Math-lessp date 711859)
389 365 ; for speed, we take
390 -108)) ; >1950 as a special case
391 (if (math-negp value) 366 365)))
392 ; this result may be an overestimate
393 temp)
394 (while (Math-lessp date (setq temp (math-absolute-from-date year 1 1)))
395 (setq year (math-add year -1)))
396 (if (eq year 0) (setq year -1))
397 (setq date (1+ (math-sub date temp)))
398 (and (eq year 1752) (>= date 247)
399 (setq date (+ date 11)))
400 (setq temp (if (math-leap-year-p year)
401 [1 32 61 92 122 153 183 214 245 275 306 336 999]
402 [1 32 60 91 121 152 182 213 244 274 305 335 999]))
403 (while (>= date (aref temp month))
404 (setq month (1+ month)))
405 (setq day (1+ (- date (aref temp (1- month)))))
406 (if (math-integerp value)
407 (list year month day)
408 (list year month day
409 (/ time 3600)
410 (% (/ time 60) 60)
411 (math-add (% time 60) (nth 2 parts))))))
412
413 (defun math-dt-to-date (dt)
414 (or (integerp (nth 1 dt))
415 (math-reject-arg (nth 1 dt) 'fixnump))
416 (if (or (< (nth 1 dt) 1) (> (nth 1 dt) 12))
417 (math-reject-arg (nth 1 dt) "Month value is out of range"))
418 (or (integerp (nth 2 dt))
419 (math-reject-arg (nth 2 dt) 'fixnump))
420 (if (or (< (nth 2 dt) 1) (> (nth 2 dt) 31))
421 (math-reject-arg (nth 2 dt) "Day value is out of range"))
422 (let ((date (math-absolute-from-date (car dt) (nth 1 dt) (nth 2 dt))))
423 (if (nth 3 dt)
424 (math-add (math-float date)
425 (math-div (math-add (+ (* (nth 3 dt) 3600)
426 (* (nth 4 dt) 60))
427 (nth 5 dt))
428 '(float 864 2)))
429 date)))
430
431 (defun math-date-parts (value &optional offset)
432 (let* ((date (math-floor value))
433 (time (math-round (math-mul (math-sub value (or offset date)) 86400)
434 (and (> calc-internal-prec 12)
435 (- calc-internal-prec 12))))
436 (ftime (math-floor time)))
437 (list date
438 ftime
439 (math-sub time ftime))))
440
441
442 (defun math-this-year ()
443 (string-to-int (substring (current-time-string) -4)))
444
445 (defun math-leap-year-p (year)
446 (if (Math-lessp year 1752)
447 (if (math-negp year)
448 (= (math-imod (math-neg year) 4) 1)
449 (= (math-imod year 4) 0))
450 (setq year (math-imod year 400))
451 (or (and (= (% year 4) 0) (/= (% year 100) 0))
452 (= year 0))))
453
454 (defun math-days-in-month (year month)
455 (if (and (= month 2) (math-leap-year-p year))
456 29
457 (aref [31 28 31 30 31 30 31 31 30 31 30 31] (1- month))))
458
459 (defun math-day-number (year month day)
460 (let ((day-of-year (+ day (* 31 (1- month)))))
461 (if (> month 2)
462 (progn
463 (setq day-of-year (- day-of-year (/ (+ 23 (* 4 month)) 10)))
464 (if (math-leap-year-p year)
465 (setq day-of-year (1+ day-of-year)))))
466 (and (eq year 1752)
467 (or (> month 9)
468 (and (= month 9) (>= day 14)))
469 (setq day-of-year (- day-of-year 11)))
470 day-of-year))
471
472 (defun math-absolute-from-date (year month day)
473 (if (eq year 0) (setq year -1))
474 (let ((yearm1 (math-sub year 1)))
475 (math-sub (math-add (math-day-number year month day)
476 (math-add (math-mul 365 yearm1)
477 (if (math-posp year)
478 (math-quotient yearm1 4)
479 (math-sub 365
480 (math-quotient (math-sub 3 year)
481 4)))))
482 (if (or (Math-lessp year 1753)
483 (and (eq year 1752) (<= month 9)))
484 1
485 (let ((correction (math-mul (math-quotient yearm1 100) 3)))
486 (let ((res (math-idivmod correction 4)))
487 (math-add (if (= (cdr res) 0)
488 -1
489 0)
490 (car res))))))))
491
492
493 ;;; It is safe to redefine these in your .emacs file to use a different
494 ;;; language.
495
496 (defvar math-long-weekday-names '( "Sunday" "Monday" "Tuesday" "Wednesday"
497 "Thursday" "Friday" "Saturday" ))
498 (defvar math-short-weekday-names '( "Sun" "Mon" "Tue" "Wed"
499 "Thu" "Fri" "Sat" ))
500
501 (defvar math-long-month-names '( "January" "February" "March" "April"
502 "May" "June" "July" "August"
503 "September" "October" "November" "December" ))
504 (defvar math-short-month-names '( "Jan" "Feb" "Mar" "Apr" "May" "Jun"
505 "Jul" "Aug" "Sep" "Oct" "Nov" "Dec" ))
506
507
508 (defvar math-format-date-cache nil)
509
510 ;; The variables math-fd-date, math-fd-dt, math-fd-year,
511 ;; math-fd-month, math-fd-day, math-fd-weekday, math-fd-hour,
512 ;; math-fd-minute, math-fd-second, math-fd-bc-flag are local
513 ;; to math-format-date, but are used by math-format-date-part,
514 ;; which is called by math-format-date.
515 (defvar math-fd-date)
516 (defvar math-fd-dt)
517 (defvar math-fd-year)
518 (defvar math-fd-month)
519 (defvar math-fd-day)
520 (defvar math-fd-weekday)
521 (defvar math-fd-hour)
522 (defvar math-fd-minute)
523 (defvar math-fd-second)
524 (defvar math-fd-bc-flag)
525
526 (defun math-format-date (math-fd-date)
527 (if (eq (car-safe math-fd-date) 'date)
528 (setq math-fd-date (nth 1 math-fd-date)))
529 (let ((entry (list math-fd-date calc-internal-prec calc-date-format)))
530 (or (cdr (assoc entry math-format-date-cache))
531 (let* ((math-fd-dt nil)
532 (calc-group-digits nil)
533 (calc-leading-zeros nil)
534 (calc-number-radix 10)
535 math-fd-year math-fd-month math-fd-day math-fd-weekday
536 math-fd-hour math-fd-minute math-fd-second
537 (math-fd-bc-flag nil)
538 (fmt (apply 'concat (mapcar 'math-format-date-part
539 calc-date-format))))
540 (setq math-format-date-cache (cons (cons entry fmt)
541 math-format-date-cache))
542 (and (setq math-fd-dt (nthcdr 10 math-format-date-cache))
543 (setcdr math-fd-dt nil))
544 fmt))))
545
546 (defun math-format-date-part (x)
547 (cond ((stringp x)
548 x)
549 ((listp x)
550 (if (math-integerp math-fd-date)
551 ""
552 (apply 'concat (mapcar 'math-format-date-part x))))
553 ((eq x 'X)
554 "")
555 ((eq x 'N)
556 (math-format-number math-fd-date))
557 ((eq x 'n)
558 (math-format-number (math-floor math-fd-date)))
559 ((eq x 'J)
560 (math-format-number (math-add math-fd-date '(float (bigpos 235 214 17) -1))))
561 ((eq x 'j)
562 (math-format-number (math-add (math-floor math-fd-date) '(bigpos 424 721 1))))
563 ((eq x 'U)
564 (math-format-number (nth 1 (math-date-parts math-fd-date 719164))))
565 ((progn
566 (or math-fd-dt
567 (progn
568 (setq math-fd-dt (math-date-to-dt math-fd-date)
569 math-fd-year (car math-fd-dt)
570 math-fd-month (nth 1 math-fd-dt)
571 math-fd-day (nth 2 math-fd-dt)
572 math-fd-weekday (math-mod
573 (math-add (math-floor math-fd-date) 6) 7)
574 math-fd-hour (nth 3 math-fd-dt)
575 math-fd-minute (nth 4 math-fd-dt)
576 math-fd-second (nth 5 math-fd-dt))
577 (and (memq 'b calc-date-format)
578 (math-negp math-fd-year)
579 (setq math-fd-year (math-neg math-fd-year)
580 math-fd-bc-flag t))))
581 (memq x '(Y YY BY)))
582 (if (and (integerp math-fd-year) (> math-fd-year 1940) (< math-fd-year 2040))
583 (format (cond ((eq x 'YY) "%02d")
584 ((eq x 'BYY) "%2d")
585 (t "%d"))
586 (% math-fd-year 100))
587 (if (and (natnump math-fd-year) (< math-fd-year 100))
588 (format "+%d" math-fd-year)
589 (math-format-number math-fd-year))))
590 ((eq x 'YYY)
591 (math-format-number math-fd-year))
592 ((eq x 'YYYY)
593 (if (and (natnump math-fd-year) (< math-fd-year 100))
594 (format "+%d" math-fd-year)
595 (math-format-number math-fd-year)))
596 ((eq x 'b) "")
597 ((eq x 'aa)
598 (and (not math-fd-bc-flag) "ad"))
599 ((eq x 'AA)
600 (and (not math-fd-bc-flag) "AD"))
601 ((eq x 'aaa)
602 (and (not math-fd-bc-flag) "ad "))
603 ((eq x 'AAA)
604 (and (not math-fd-bc-flag) "AD "))
605 ((eq x 'aaaa)
606 (and (not math-fd-bc-flag) "a.d."))
607 ((eq x 'AAAA)
608 (and (not math-fd-bc-flag) "A.D."))
609 ((eq x 'bb)
610 (and math-fd-bc-flag "bc"))
611 ((eq x 'BB)
612 (and math-fd-bc-flag "BC"))
613 ((eq x 'bbb)
614 (and math-fd-bc-flag " bc"))
615 ((eq x 'BBB)
616 (and math-fd-bc-flag " BC"))
617 ((eq x 'bbbb)
618 (and math-fd-bc-flag "b.c."))
619 ((eq x 'BBBB)
620 (and math-fd-bc-flag "B.C."))
621 ((eq x 'M)
622 (format "%d" math-fd-month))
623 ((eq x 'MM)
624 (format "%02d" math-fd-month))
625 ((eq x 'BM)
626 (format "%2d" math-fd-month))
627 ((eq x 'mmm)
628 (downcase (nth (1- math-fd-month) math-short-month-names)))
629 ((eq x 'Mmm)
630 (nth (1- math-fd-month) math-short-month-names))
631 ((eq x 'MMM)
632 (upcase (nth (1- math-fd-month) math-short-month-names)))
633 ((eq x 'Mmmm)
634 (nth (1- math-fd-month) math-long-month-names))
635 ((eq x 'MMMM)
636 (upcase (nth (1- math-fd-month) math-long-month-names)))
637 ((eq x 'D)
638 (format "%d" math-fd-day))
639 ((eq x 'DD)
640 (format "%02d" math-fd-day))
641 ((eq x 'BD)
642 (format "%2d" math-fd-day))
643 ((eq x 'W)
644 (format "%d" math-fd-weekday))
645 ((eq x 'www)
646 (downcase (nth math-fd-weekday math-short-weekday-names)))
647 ((eq x 'Www)
648 (nth math-fd-weekday math-short-weekday-names))
649 ((eq x 'WWW)
650 (upcase (nth math-fd-weekday math-short-weekday-names)))
651 ((eq x 'Wwww)
652 (nth math-fd-weekday math-long-weekday-names))
653 ((eq x 'WWWW)
654 (upcase (nth math-fd-weekday math-long-weekday-names)))
655 ((eq x 'd)
656 (format "%d" (math-day-number math-fd-year math-fd-month math-fd-day)))
657 ((eq x 'ddd)
658 (format "%03d" (math-day-number math-fd-year math-fd-month math-fd-day)))
659 ((eq x 'bdd)
660 (format "%3d" (math-day-number math-fd-year math-fd-month math-fd-day)))
661 ((eq x 'h)
662 (and math-fd-hour (format "%d" math-fd-hour)))
663 ((eq x 'hh)
664 (and math-fd-hour (format "%02d" math-fd-hour)))
665 ((eq x 'bh)
666 (and math-fd-hour (format "%2d" math-fd-hour)))
667 ((eq x 'H)
668 (and math-fd-hour (format "%d" (1+ (% (+ math-fd-hour 11) 12)))))
669 ((eq x 'HH)
670 (and math-fd-hour (format "%02d" (1+ (% (+ math-fd-hour 11) 12)))))
671 ((eq x 'BH)
672 (and math-fd-hour (format "%2d" (1+ (% (+ math-fd-hour 11) 12)))))
673 ((eq x 'p)
674 (and math-fd-hour (if (< math-fd-hour 12) "a" "p")))
675 ((eq x 'P)
676 (and math-fd-hour (if (< math-fd-hour 12) "A" "P")))
677 ((eq x 'pp)
678 (and math-fd-hour (if (< math-fd-hour 12) "am" "pm")))
679 ((eq x 'PP)
680 (and math-fd-hour (if (< math-fd-hour 12) "AM" "PM")))
681 ((eq x 'pppp)
682 (and math-fd-hour (if (< math-fd-hour 12) "a.m." "p.m.")))
683 ((eq x 'PPPP)
684 (and math-fd-hour (if (< math-fd-hour 12) "A.M." "P.M.")))
685 ((eq x 'm)
686 (and math-fd-minute (format "%d" math-fd-minute)))
687 ((eq x 'mm)
688 (and math-fd-minute (format "%02d" math-fd-minute)))
689 ((eq x 'bm)
690 (and math-fd-minute (format "%2d" math-fd-minute)))
691 ((eq x 'C)
692 (and math-fd-second (not (math-zerop math-fd-second))
693 ":"))
694 ((memq x '(s ss bs SS BS))
695 (and math-fd-second
696 (not (and (memq x '(SS BS)) (math-zerop math-fd-second)))
697 (if (integerp math-fd-second)
698 (format (cond ((memq x '(ss SS)) "%02d")
699 ((memq x '(bs BS)) "%2d")
700 (t "%d"))
701 math-fd-second)
702 (concat (if (Math-lessp math-fd-second 10)
703 (cond ((memq x '(ss SS)) "0")
704 ((memq x '(bs BS)) " ")
705 (t ""))
706 "")
707 (let ((calc-float-format
708 (list 'fix (min (- 12 calc-internal-prec)
709 0))))
710 (math-format-number math-fd-second))))))))
711
712 ;; The variable math-pd-str is local to math-parse-date and
713 ;; math-parse-standard-date, but is used by math-parse-date-word,
714 ;; which is called by math-parse-date and math-parse-standard-date.
715 (defvar math-pd-str)
716
717 (defun math-parse-date (math-pd-str)
718 (catch 'syntax
719 (or (math-parse-standard-date math-pd-str t)
720 (math-parse-standard-date math-pd-str nil)
721 (and (string-match "\\`[^-+/0-9a-zA-Z]*\\([-+]?[0-9]+\\.?[0-9]*\\([eE][-+]?[0-9]+\\)?\\)[^-+/0-9a-zA-Z]*\\'" math-pd-str)
722 (list 'date (math-read-number (math-match-substring math-pd-str 1))))
723 (let ((case-fold-search t)
724 (year nil) (month nil) (day nil) (weekday nil)
725 (hour nil) (minute nil) (second nil) (bc-flag nil)
726 (a nil) (b nil) (c nil) (bigyear nil) temp)
727
728 ;; Extract the time, if any.
729 (if (or (string-match "\\([0-9][0-9]?\\):\\([0-9][0-9]?\\)\\(:\\([0-9][0-9]?\\(\\.[0-9]+\\)?\\)\\)? *\\([ap]m?\\|[ap]\\. *m\\.\\|noon\\|n\\>\\|midnight\\|mid\\>\\|m\\>\\)?" math-pd-str)
730 (string-match "\\([0-9][0-9]?\\)\\(\\)\\(\\(\\(\\)\\)\\) *\\([ap]m?\\|[ap]\\. *m\\.\\|noon\\|n\\>\\|midnight\\|mid\\>\\|m\\>\\)" math-pd-str))
731 (let ((ampm (math-match-substring math-pd-str 6)))
732 (setq hour (string-to-int (math-match-substring math-pd-str 1))
733 minute (math-match-substring math-pd-str 2)
734 second (math-match-substring math-pd-str 4)
735 math-pd-str (concat (substring math-pd-str 0 (match-beginning 0))
736 (substring math-pd-str (match-end 0))))
737 (if (equal minute "")
738 (setq minute 0)
739 (setq minute (string-to-int minute)))
740 (if (equal second "")
741 (setq second 0)
742 (setq second (math-read-number second)))
743 (if (equal ampm "")
744 (if (> hour 23)
745 (throw 'syntax "Hour value out of range"))
746 (setq ampm (upcase (aref ampm 0)))
747 (if (memq ampm '(?N ?M))
748 (if (and (= hour 12) (= minute 0) (eq second 0))
749 (if (eq ampm ?M) (setq hour 0))
750 (throw 'syntax
751 "Time must be 12:00:00 in this context"))
752 (if (or (= hour 0) (> hour 12))
753 (throw 'syntax "Hour value out of range"))
754 (if (eq (= ampm ?A) (= hour 12))
755 (setq hour (% (+ hour 12) 24)))))))
756
757 ;; Rewrite xx-yy-zz to xx/yy/zz to avoid seeing "-" as a minus sign.
758 (while (string-match "[0-9a-zA-Z]\\(-\\)[0-9a-zA-Z]" math-pd-str)
759 (progn
760 (setq math-pd-str (copy-sequence math-pd-str))
761 (aset math-pd-str (match-beginning 1) ?\/)))
762
763 ;; Extract obvious month or weekday names.
764 (if (string-match "[a-zA-Z]" math-pd-str)
765 (progn
766 (setq month (math-parse-date-word math-long-month-names))
767 (setq weekday (math-parse-date-word math-long-weekday-names))
768 (or month (setq month
769 (math-parse-date-word math-short-month-names)))
770 (or weekday (math-parse-date-word math-short-weekday-names))
771 (or hour
772 (if (setq temp (math-parse-date-word
773 '( "noon" "midnight" "mid" )))
774 (setq hour (if (= temp 1) 12 0) minute 0 second 0)))
775 (or (math-parse-date-word '( "ad" "a.d." ))
776 (if (math-parse-date-word '( "bc" "b.c." ))
777 (setq bc-flag t)))
778 (if (string-match "[a-zA-Z]+" math-pd-str)
779 (throw 'syntax (format "Bad word in date: \"%s\""
780 (math-match-substring math-pd-str 0))))))
781
782 ;; If there is a huge number other than the year, ignore it.
783 (while (and (string-match "[-+]?0*[1-9][0-9][0-9][0-9][0-9]+" math-pd-str)
784 (setq temp (concat (substring math-pd-str 0 (match-beginning 0))
785 (substring math-pd-str (match-end 0))))
786 (string-match
787 "[4-9][0-9]\\|[0-9][0-9][0-9]\\|[-+][0-9]+[^-]*\\'" temp))
788 (setq math-pd-str temp))
789
790 ;; If there is a number with a sign or a large number, it is a year.
791 (if (or (string-match "\\([-+][0-9]+\\)[^-]*\\'" math-pd-str)
792 (string-match "\\(0*[1-9][0-9][0-9]+\\)" math-pd-str))
793 (setq year (math-match-substring math-pd-str 1)
794 math-pd-str (concat (substring math-pd-str 0 (match-beginning 1))
795 (substring math-pd-str (match-end 1)))
796 year (math-read-number year)
797 bigyear t))
798
799 ;; Collect remaining numbers.
800 (setq temp 0)
801 (while (string-match "[0-9]+" math-pd-str temp)
802 (and c (throw 'syntax "Too many numbers in date"))
803 (setq c (string-to-int (math-match-substring math-pd-str 0)))
804 (or b (setq b c c nil))
805 (or a (setq a b b nil))
806 (setq temp (match-end 0)))
807
808 ;; Check that we have the right amount of information.
809 (setq temp (+ (if year 1 0) (if month 1 0) (if day 1 0)
810 (if a 1 0) (if b 1 0) (if c 1 0)))
811 (if (> temp 3)
812 (throw 'syntax "Too many numbers in date")
813 (if (or (< temp 2) (and year (= temp 2)))
814 (throw 'syntax "Not enough numbers in date")
815 (if (= temp 2) ; if year omitted, assume current year
816 (setq year (math-this-year)))))
817
818 ;; A large number must be a year.
819 (or year
820 (if (and a (or (> a 31) (< a 1)))
821 (setq year a a b b c c nil)
822 (if (and b (or (> b 31) (< b 1)))
823 (setq year b b c c nil)
824 (if (and c (or (> c 31) (< c 1)))
825 (setq year c c nil)))))
826
827 ;; A medium-large number must be a day.
828 (if year
829 (if (and a (> a 12))
830 (setq day a a b b c c nil)
831 (if (and b (> b 12))
832 (setq day b b c c nil)
833 (if (and c (> c 12))
834 (setq day c c nil)))))
835
836 ;; We may know enough to sort it out now.
837 (if (and year day)
838 (or month (setq month a))
839 (if (and year month)
840 (setq day a)
841
842 ;; Interpret order of numbers as same as for display format.
843 (setq temp calc-date-format)
844 (while temp
845 (cond ((not (symbolp (car temp))))
846 ((memq (car temp) '(Y YY BY YYY YYYY))
847 (or year (setq year a a b b c)))
848 ((memq (car temp) '(M MM BM mmm Mmm Mmmm MMM MMMM))
849 (or month (setq month a a b b c)))
850 ((memq (car temp) '(D DD BD))
851 (or day (setq day a a b b c))))
852 (setq temp (cdr temp)))
853
854 ;; If display format was not complete, assume American style.
855 (or month (setq month a a b b c))
856 (or day (setq day a a b b c))
857 (or year (setq year a a b b c))))
858
859 (if bc-flag
860 (setq year (math-neg (math-abs year))))
861
862 (math-parse-date-validate year bigyear month day
863 hour minute second)))))
864
865 (defun math-parse-date-validate (year bigyear month day hour minute second)
866 (and (not bigyear) (natnump year) (< year 100)
867 (setq year (+ year (if (< year 40) 2000 1900))))
868 (if (eq year 0)
869 (throw 'syntax "Year value is out of range"))
870 (if (or (< month 1) (> month 12))
871 (throw 'syntax "Month value is out of range"))
872 (if (or (< day 1) (> day (math-days-in-month year month)))
873 (throw 'syntax "Day value is out of range"))
874 (and hour
875 (progn
876 (if (or (< hour 0) (> hour 23))
877 (throw 'syntax "Hour value is out of range"))
878 (if (or (< minute 0) (> minute 59))
879 (throw 'syntax "Minute value is out of range"))
880 (if (or (math-negp second) (not (Math-lessp second 60)))
881 (throw 'syntax "Seconds value is out of range"))))
882 (list 'date (math-dt-to-date (append (list year month day)
883 (and hour (list hour minute second))))))
884
885 (defun math-parse-date-word (names &optional front)
886 (let ((n 1))
887 (while (and names (not (string-match (if (equal (car names) "Sep")
888 "Sept?"
889 (regexp-quote (car names)))
890 math-pd-str)))
891 (setq names (cdr names)
892 n (1+ n)))
893 (and names
894 (or (not front) (= (match-beginning 0) 0))
895 (progn
896 (setq math-pd-str (concat (substring math-pd-str 0 (match-beginning 0))
897 (if front "" " ")
898 (substring math-pd-str (match-end 0))))
899 n))))
900
901 (defun math-parse-standard-date (math-pd-str with-time)
902 (let ((case-fold-search t)
903 (okay t) num
904 (fmt calc-date-format) this next (gnext nil)
905 (year nil) (month nil) (day nil) (bigyear nil) (yearday nil)
906 (hour nil) (minute nil) (second nil) (bc-flag nil))
907 (while (and fmt okay)
908 (setq this (car fmt)
909 fmt (setq fmt (or (cdr fmt)
910 (prog1
911 gnext
912 (setq gnext nil))))
913 next (car fmt))
914 (if (consp next) (setq next (car next)))
915 (or (cond ((listp this)
916 (or (not with-time)
917 (not this)
918 (setq gnext fmt
919 fmt this)))
920 ((stringp this)
921 (if (and (<= (length this) (length math-pd-str))
922 (equal this
923 (substring math-pd-str 0 (length this))))
924 (setq math-pd-str (substring math-pd-str (length this)))))
925 ((eq this 'X)
926 t)
927 ((memq this '(n N j J))
928 (and (string-match "\\`[-+]?[0-9.]+\\([eE][-+]?[0-9]+\\)?" math-pd-str)
929 (setq num (math-match-substring math-pd-str 0)
930 math-pd-str (substring math-pd-str (match-end 0))
931 num (math-date-to-dt (math-read-number num))
932 num (math-sub num
933 (if (memq this '(n N))
934 0
935 (if (or (eq this 'j)
936 (math-integerp num))
937 '(bigpos 424 721 1)
938 '(float (bigpos 235 214 17)
939 -1))))
940 hour (or (nth 3 num) hour)
941 minute (or (nth 4 num) minute)
942 second (or (nth 5 num) second)
943 year (car num)
944 month (nth 1 num)
945 day (nth 2 num))))
946 ((eq this 'U)
947 (and (string-match "\\`[-+]?[0-9]+" math-pd-str)
948 (setq num (math-match-substring math-pd-str 0)
949 math-pd-str (substring math-pd-str (match-end 0))
950 num (math-date-to-dt
951 (math-add 719164
952 (math-div (math-read-number num)
953 '(float 864 2))))
954 hour (nth 3 num)
955 minute (nth 4 num)
956 second (nth 5 num)
957 year (car num)
958 month (nth 1 num)
959 day (nth 2 num))))
960 ((memq this '(mmm Mmm MMM))
961 (setq month (math-parse-date-word math-short-month-names t)))
962 ((memq this '(Mmmm MMMM))
963 (setq month (math-parse-date-word math-long-month-names t)))
964 ((memq this '(www Www WWW))
965 (math-parse-date-word math-short-weekday-names t))
966 ((memq this '(Wwww WWWW))
967 (math-parse-date-word math-long-weekday-names t))
968 ((memq this '(p P))
969 (if (string-match "\\`a" math-pd-str)
970 (setq hour (if (= hour 12) 0 hour)
971 math-pd-str (substring math-pd-str 1))
972 (if (string-match "\\`p" math-pd-str)
973 (setq hour (if (= hour 12) 12 (% (+ hour 12) 24))
974 math-pd-str (substring math-pd-str 1)))))
975 ((memq this '(pp PP pppp PPPP))
976 (if (string-match "\\`am\\|a\\.m\\." math-pd-str)
977 (setq hour (if (= hour 12) 0 hour)
978 math-pd-str (substring math-pd-str (match-end 0)))
979 (if (string-match "\\`pm\\|p\\.m\\." math-pd-str)
980 (setq hour (if (= hour 12) 12 (% (+ hour 12) 24))
981 math-pd-str (substring math-pd-str (match-end 0))))))
982 ((memq this '(Y YY BY YYY YYYY))
983 (and (if (memq next '(MM DD ddd hh HH mm ss SS))
984 (if (memq this '(Y YY BYY))
985 (string-match "\\` *[0-9][0-9]" math-pd-str)
986 (string-match "\\`[0-9][0-9][0-9][0-9]" math-pd-str))
987 (string-match "\\`[-+]?[0-9]+" math-pd-str))
988 (setq year (math-match-substring math-pd-str 0)
989 bigyear (or (eq this 'YYY)
990 (memq (aref math-pd-str 0) '(?\+ ?\-)))
991 math-pd-str (substring math-pd-str (match-end 0))
992 year (math-read-number year))))
993 ((eq this 'b)
994 t)
995 ((memq this '(aa AA aaaa AAAA))
996 (if (string-match "\\` *\\(ad\\|a\\.d\\.\\)" math-pd-str)
997 (setq math-pd-str (substring math-pd-str (match-end 0)))))
998 ((memq this '(aaa AAA))
999 (if (string-match "\\` *ad *" math-pd-str)
1000 (setq math-pd-str (substring math-pd-str (match-end 0)))))
1001 ((memq this '(bb BB bbb BBB bbbb BBBB))
1002 (if (string-match "\\` *\\(bc\\|b\\.c\\.\\)" math-pd-str)
1003 (setq math-pd-str (substring math-pd-str (match-end 0))
1004 bc-flag t)))
1005 ((memq this '(s ss bs SS BS))
1006 (and (if (memq next '(YY YYYY MM DD hh HH mm))
1007 (string-match "\\` *[0-9][0-9]\\(\\.[0-9]+\\)?" math-pd-str)
1008 (string-match "\\` *[0-9][0-9]?\\(\\.[0-9]+\\)?" math-pd-str))
1009 (setq second (math-match-substring math-pd-str 0)
1010 math-pd-str (substring math-pd-str (match-end 0))
1011 second (math-read-number second))))
1012 ((eq this 'C)
1013 (if (string-match "\\`:[0-9][0-9]" math-pd-str)
1014 (setq math-pd-str (substring math-pd-str 1))
1015 t))
1016 ((or (not (if (and (memq this '(ddd MM DD hh HH mm))
1017 (memq next '(YY YYYY MM DD ddd
1018 hh HH mm ss SS)))
1019 (if (eq this 'ddd)
1020 (string-match "\\` *[0-9][0-9][0-9]" math-pd-str)
1021 (string-match "\\` *[0-9][0-9]" math-pd-str))
1022 (string-match "\\` *[0-9]+" math-pd-str)))
1023 (and (setq num (string-to-int
1024 (math-match-substring math-pd-str 0))
1025 math-pd-str (substring math-pd-str (match-end 0)))
1026 nil))
1027 nil)
1028 ((eq this 'W)
1029 (and (>= num 0) (< num 7)))
1030 ((memq this '(d ddd bdd))
1031 (setq yearday num))
1032 ((memq this '(M MM BM))
1033 (setq month num))
1034 ((memq this '(D DD BD))
1035 (setq day num))
1036 ((memq this '(h hh bh H HH BH))
1037 (setq hour num))
1038 ((memq this '(m mm bm))
1039 (setq minute num)))
1040 (setq okay nil)))
1041 (if yearday
1042 (if (and month day)
1043 (setq yearday nil)
1044 (setq month 1 day 1)))
1045 (if (and okay (equal math-pd-str ""))
1046 (and month day (or (not (or hour minute second))
1047 (and hour minute))
1048 (progn
1049 (or year (setq year (math-this-year)))
1050 (or second (setq second 0))
1051 (if bc-flag
1052 (setq year (math-neg (math-abs year))))
1053 (setq day (math-parse-date-validate year bigyear month day
1054 hour minute second))
1055 (if yearday
1056 (setq day (math-add day (1- yearday))))
1057 day)))))
1058
1059
1060 (defun calcFunc-now (&optional zone)
1061 (let ((date (let ((calc-date-format nil))
1062 (math-parse-date (current-time-string)))))
1063 (if (consp date)
1064 (if zone
1065 (math-add date (math-div (math-sub (calcFunc-tzone nil date)
1066 (calcFunc-tzone zone date))
1067 '(float 864 2)))
1068 date)
1069 (calc-record-why "*Unable to interpret current date from system")
1070 (append (list 'calcFunc-now) (and zone (list zone))))))
1071
1072 (defun calcFunc-year (date)
1073 (car (math-date-to-dt date)))
1074
1075 (defun calcFunc-month (date)
1076 (nth 1 (math-date-to-dt date)))
1077
1078 (defun calcFunc-day (date)
1079 (nth 2 (math-date-to-dt date)))
1080
1081 (defun calcFunc-weekday (date)
1082 (if (eq (car-safe date) 'date)
1083 (setq date (nth 1 date)))
1084 (or (math-realp date)
1085 (math-reject-arg date 'datep))
1086 (math-mod (math-add (math-floor date) 6) 7))
1087
1088 (defun calcFunc-yearday (date)
1089 (let ((dt (math-date-to-dt date)))
1090 (math-day-number (car dt) (nth 1 dt) (nth 2 dt))))
1091
1092 (defun calcFunc-hour (date)
1093 (if (eq (car-safe date) 'hms)
1094 (nth 1 date)
1095 (or (nth 3 (math-date-to-dt date)) 0)))
1096
1097 (defun calcFunc-minute (date)
1098 (if (eq (car-safe date) 'hms)
1099 (nth 2 date)
1100 (or (nth 4 (math-date-to-dt date)) 0)))
1101
1102 (defun calcFunc-second (date)
1103 (if (eq (car-safe date) 'hms)
1104 (nth 3 date)
1105 (or (nth 5 (math-date-to-dt date)) 0)))
1106
1107 (defun calcFunc-time (date)
1108 (let ((dt (math-date-to-dt date)))
1109 (if (nth 3 dt)
1110 (cons 'hms (nthcdr 3 dt))
1111 (list 'hms 0 0 0))))
1112
1113 (defun calcFunc-date (date &optional month day hour minute second)
1114 (and (math-messy-integerp month) (setq month (math-trunc month)))
1115 (and month (not (integerp month)) (math-reject-arg month 'fixnump))
1116 (and (math-messy-integerp day) (setq day (math-trunc day)))
1117 (and day (not (integerp day)) (math-reject-arg day 'fixnump))
1118 (if (and (eq (car-safe hour) 'hms) (not minute))
1119 (setq second (nth 3 hour)
1120 minute (nth 2 hour)
1121 hour (nth 1 hour)))
1122 (and (math-messy-integerp hour) (setq hour (math-trunc hour)))
1123 (and hour (not (integerp hour)) (math-reject-arg hour 'fixnump))
1124 (and (math-messy-integerp minute) (setq minute (math-trunc minute)))
1125 (and minute (not (integerp minute)) (math-reject-arg minute 'fixnump))
1126 (and (math-messy-integerp second) (setq second (math-trunc second)))
1127 (and second (not (math-realp second)) (math-reject-arg second 'realp))
1128 (if month
1129 (progn
1130 (and (math-messy-integerp date) (setq date (math-trunc date)))
1131 (and date (not (math-integerp date)) (math-reject-arg date 'integerp))
1132 (if day
1133 (if hour
1134 (list 'date (math-dt-to-date (list date month day hour
1135 (or minute 0)
1136 (or second 0))))
1137 (list 'date (math-dt-to-date (list date month day))))
1138 (list 'date (math-dt-to-date (list (math-this-year) date month)))))
1139 (if (math-realp date)
1140 (list 'date date)
1141 (if (eq (car date) 'date)
1142 (nth 1 date)
1143 (math-reject-arg date 'datep)))))
1144
1145 (defun calcFunc-julian (date &optional zone)
1146 (if (math-realp date)
1147 (list 'date (if (math-integerp date)
1148 (math-sub date '(bigpos 424 721 1))
1149 (setq date (math-sub date '(float (bigpos 235 214 17) -1)))
1150 (math-sub date (math-div (calcFunc-tzone zone date)
1151 '(float 864 2)))))
1152 (if (eq (car date) 'date)
1153 (math-add (nth 1 date) (if (math-integerp (nth 1 date))
1154 '(bigpos 424 721 1)
1155 (math-add '(float (bigpos 235 214 17) -1)
1156 (math-div (calcFunc-tzone zone date)
1157 '(float 864 2)))))
1158 (math-reject-arg date 'datep))))
1159
1160 (defun calcFunc-unixtime (date &optional zone)
1161 (if (math-realp date)
1162 (progn
1163 (setq date (math-add 719164 (math-div date '(float 864 2))))
1164 (list 'date (math-sub date (math-div (calcFunc-tzone zone date)
1165 '(float 864 2)))))
1166 (if (eq (car date) 'date)
1167 (math-add (nth 1 (math-date-parts (nth 1 date) 719164))
1168 (calcFunc-tzone zone date))
1169 (math-reject-arg date 'datep))))
1170
1171
1172 ;;; Note: Longer names must appear before shorter names which are
1173 ;;; substrings of them.
1174 (defvar math-tzone-names
1175 '(( "UTC" 0 0)
1176 ( "MEGT" -1 "MET" "METDST" ) ; Middle Europe
1177 ( "METDST" -1 -1 ) ( "MET" -1 0 )
1178 ( "MEGZ" -1 "MEZ" "MESZ" ) ( "MEZ" -1 0 ) ( "MESZ" -1 -1 )
1179 ( "WEGT" 0 "WET" "WETDST" ) ; Western Europe
1180 ( "WETDST" 0 -1 ) ( "WET" 0 0 )
1181 ( "BGT" 0 "GMT" "BST" ) ( "GMT" 0 0 ) ( "BST" 0 -1 ) ; Britain
1182 ( "NGT" (float 35 -1) "NST" "NDT" ) ; Newfoundland
1183 ( "NST" (float 35 -1) 0 ) ( "NDT" (float 35 -1) -1 )
1184 ( "AGT" 4 "AST" "ADT" ) ( "AST" 4 0 ) ( "ADT" 4 -1 ) ; Atlantic
1185 ( "EGT" 5 "EST" "EDT" ) ( "EST" 5 0 ) ( "EDT" 5 -1 ) ; Eastern
1186 ( "CGT" 6 "CST" "CDT" ) ( "CST" 6 0 ) ( "CDT" 6 -1 ) ; Central
1187 ( "MGT" 7 "MST" "MDT" ) ( "MST" 7 0 ) ( "MDT" 7 -1 ) ; Mountain
1188 ( "PGT" 8 "PST" "PDT" ) ( "PST" 8 0 ) ( "PDT" 8 -1 ) ; Pacific
1189 ( "YGT" 9 "YST" "YDT" ) ( "YST" 9 0 ) ( "YDT" 9 -1 ) ; Yukon
1190 )
1191 "No doc yet. See calc manual for now. ")
1192
1193 (defvar var-TimeZone)
1194
1195 (defun calcFunc-tzone (&optional zone date)
1196 (if zone
1197 (cond ((math-realp zone)
1198 (math-round (math-mul zone 3600)))
1199 ((eq (car zone) 'hms)
1200 (math-round (math-mul (math-from-hms zone 'deg) 3600)))
1201 ((eq (car zone) '+)
1202 (math-add (calcFunc-tzone (nth 1 zone) date)
1203 (calcFunc-tzone (nth 2 zone) date)))
1204 ((eq (car zone) '-)
1205 (math-sub (calcFunc-tzone (nth 1 zone) date)
1206 (calcFunc-tzone (nth 2 zone) date)))
1207 ((eq (car zone) 'var)
1208 (let ((name (upcase (symbol-name (nth 1 zone))))
1209 found)
1210 (if (setq found (assoc name math-tzone-names))
1211 (calcFunc-tzone (math-add (nth 1 found)
1212 (if (integerp (nth 2 found))
1213 (nth 2 found)
1214 (or
1215 (math-daylight-savings-adjust
1216 date (car found))
1217 0)))
1218 date)
1219 (if (equal name "LOCAL")
1220 (calcFunc-tzone nil date)
1221 (math-reject-arg zone "*Unrecognized time zone name")))))
1222 (t (math-reject-arg zone "*Expected a time zone")))
1223 (if (calc-var-value 'var-TimeZone)
1224 (calcFunc-tzone (calc-var-value 'var-TimeZone) date)
1225 (let ((p math-tzone-names)
1226 (offset 0)
1227 (tz '(var error var-error)))
1228 (save-excursion
1229 (set-buffer (get-buffer-create " *Calc Temporary*"))
1230 (erase-buffer)
1231 (call-process "date" nil t)
1232 (goto-char 1)
1233 (let ((case-fold-search t))
1234 (while (and p (not (search-forward (car (car p)) nil t)))
1235 (setq p (cdr p))))
1236 (if (looking-at "\\([-+][0-9]?[0-9]\\)\\([0-9][0-9]\\)?\\(\\'\\|[^0-9]\\)")
1237 (setq offset (math-add
1238 (string-to-int (buffer-substring
1239 (match-beginning 1)
1240 (match-end 1)))
1241 (if (match-beginning 2)
1242 (math-div (string-to-int (buffer-substring
1243 (match-beginning 2)
1244 (match-end 2)))
1245 60)
1246 0)))))
1247 (if p
1248 (progn
1249 (setq p (car p))
1250 ;; Try to convert to a generalized time zone.
1251 (if (integerp (nth 2 p))
1252 (let ((gen math-tzone-names))
1253 (while (and gen
1254 (not (equal (nth 2 (car gen)) (car p)))
1255 (not (equal (nth 3 (car gen)) (car p)))
1256 (not (equal (nth 4 (car gen)) (car p)))
1257 (not (equal (nth 5 (car gen)) (car p))))
1258 (setq gen (cdr gen)))
1259 (and gen
1260 (setq gen (car gen))
1261 (equal (math-daylight-savings-adjust nil (car gen))
1262 (nth 2 p))
1263 (setq p gen))))
1264 (setq tz (math-add (list 'var
1265 (intern (car p))
1266 (intern (concat "var-" (car p))))
1267 offset))))
1268 (kill-buffer " *Calc Temporary*")
1269 (setq var-TimeZone tz)
1270 (calc-refresh-evaltos 'var-TimeZone)
1271 (calcFunc-tzone tz date)))))
1272
1273 (defvar math-daylight-savings-hook 'math-std-daylight-savings)
1274
1275 (defun math-daylight-savings-adjust (date zone &optional dt)
1276 (or date (setq date (nth 1 (calcFunc-now))))
1277 (let (bump)
1278 (if (eq (car-safe date) 'date)
1279 (setq bump 0
1280 date (nth 1 date))
1281 (if (and date (math-realp date))
1282 (let ((zadj (assoc zone math-tzone-names)))
1283 (if zadj (setq bump -1
1284 date (math-sub date (math-div (nth 1 zadj)
1285 '(float 24 0))))))
1286 (math-reject-arg date 'datep)))
1287 (setq date (math-float date))
1288 (or dt (setq dt (math-date-to-dt date)))
1289 (and math-daylight-savings-hook
1290 (funcall math-daylight-savings-hook date dt zone bump))))
1291
1292 (defun calcFunc-dsadj (date &optional zone)
1293 (if zone
1294 (or (eq (car-safe zone) 'var)
1295 (math-reject-arg zone "*Time zone variable expected"))
1296 (setq zone (or (calc-var-value 'var-TimeZone)
1297 (progn
1298 (calcFunc-tzone)
1299 (calc-var-value 'var-TimeZone)))))
1300 (setq zone (and (eq (car-safe zone) 'var)
1301 (upcase (symbol-name (nth 1 zone)))))
1302 (let ((zadj (assoc zone math-tzone-names)))
1303 (or zadj (math-reject-arg zone "*Unrecognized time zone name"))
1304 (if (integerp (nth 2 zadj))
1305 (nth 2 zadj)
1306 (math-daylight-savings-adjust date zone))))
1307
1308 (defun calcFunc-tzconv (date z1 z2)
1309 (if (math-realp date)
1310 (nth 1 (calcFunc-tzconv (list 'date date) z1 z2))
1311 (calcFunc-unixtime (calcFunc-unixtime date z1) z2)))
1312
1313 (defun math-std-daylight-savings (date dt zone bump)
1314 "Standard North American daylight savings algorithm.
1315 This implements the rules for the U.S. and Canada as of 1987.
1316 Daylight savings begins on the first Sunday of April at 2 a.m.,
1317 and ends on the last Sunday of October at 2 a.m."
1318 (cond ((< (nth 1 dt) 4) 0)
1319 ((= (nth 1 dt) 4)
1320 (let ((sunday (math-prev-weekday-in-month date dt 7 0)))
1321 (cond ((< (nth 2 dt) sunday) 0)
1322 ((= (nth 2 dt) sunday)
1323 (if (>= (nth 3 dt) (+ 3 bump)) -1 0))
1324 (t -1))))
1325 ((< (nth 1 dt) 10) -1)
1326 ((= (nth 1 dt) 10)
1327 (let ((sunday (math-prev-weekday-in-month date dt 31 0)))
1328 (cond ((< (nth 2 dt) sunday) -1)
1329 ((= (nth 2 dt) sunday)
1330 (if (>= (nth 3 dt) (+ 2 bump)) 0 -1))
1331 (t 0))))
1332 (t 0)))
1333
1334 ;;; Compute the day (1-31) of the WDAY (0-6) on or preceding the given
1335 ;;; day of the given month.
1336 (defun math-prev-weekday-in-month (date dt day wday)
1337 (or day (setq day (nth 2 dt)))
1338 (if (> day (math-days-in-month (car dt) (nth 1 dt)))
1339 (setq day (math-days-in-month (car dt) (nth 1 dt))))
1340 (let ((zeroth (math-sub (math-floor date) (nth 2 dt))))
1341 (math-sub (nth 1 (calcFunc-newweek (math-add zeroth day))) zeroth)))
1342
1343 (defun calcFunc-pwday (date &optional day weekday)
1344 (if (eq (car-safe date) 'date)
1345 (setq date (nth 1 date)))
1346 (or (math-realp date)
1347 (math-reject-arg date 'datep))
1348 (if (math-messy-integerp day) (setq day (math-trunc day)))
1349 (or (integerp day) (math-reject-arg day 'fixnump))
1350 (if (= day 0) (setq day 31))
1351 (and (or (< day 7) (> day 31)) (math-reject-arg day 'range))
1352 (math-prev-weekday-in-month date (math-date-to-dt date) day (or weekday 0)))
1353
1354
1355 (defun calcFunc-newweek (date &optional weekday)
1356 (if (eq (car-safe date) 'date)
1357 (setq date (nth 1 date)))
1358 (or (math-realp date)
1359 (math-reject-arg date 'datep))
1360 (or weekday (setq weekday 0))
1361 (and (math-messy-integerp weekday) (setq weekday (math-trunc weekday)))
1362 (or (integerp weekday) (math-reject-arg weekday 'fixnump))
1363 (and (or (< weekday 0) (> weekday 6)) (math-reject-arg weekday 'range))
1364 (setq date (math-floor date))
1365 (list 'date (math-sub date (calcFunc-weekday (math-sub date weekday)))))
1366
1367 (defun calcFunc-newmonth (date &optional day)
1368 (or day (setq day 1))
1369 (and (math-messy-integerp day) (setq day (math-trunc day)))
1370 (or (integerp day) (math-reject-arg day 'fixnump))
1371 (and (or (< day 0) (> day 31)) (math-reject-arg day 'range))
1372 (let ((dt (math-date-to-dt date)))
1373 (if (or (= day 0) (> day (math-days-in-month (car dt) (nth 1 dt))))
1374 (setq day (math-days-in-month (car dt) (nth 1 dt))))
1375 (and (eq (car dt) 1752) (= (nth 1 dt) 9)
1376 (if (>= day 14) (setq day (- day 11))))
1377 (list 'date (math-add (math-dt-to-date (list (car dt) (nth 1 dt) 1))
1378 (1- day)))))
1379
1380 (defun calcFunc-newyear (date &optional day)
1381 (or day (setq day 1))
1382 (and (math-messy-integerp day) (setq day (math-trunc day)))
1383 (or (integerp day) (math-reject-arg day 'fixnump))
1384 (let ((dt (math-date-to-dt date)))
1385 (if (and (>= day 0) (<= day 366))
1386 (let ((max (if (eq (car dt) 1752) 355
1387 (if (math-leap-year-p (car dt)) 366 365))))
1388 (if (or (= day 0) (> day max)) (setq day max))
1389 (list 'date (math-add (math-dt-to-date (list (car dt) 1 1))
1390 (1- day))))
1391 (if (and (>= day -12) (<= day -1))
1392 (list 'date (math-dt-to-date (list (car dt) (- day) 1)))
1393 (math-reject-arg day 'range)))))
1394
1395 (defun calcFunc-incmonth (date &optional step)
1396 (or step (setq step 1))
1397 (and (math-messy-integerp step) (setq step (math-trunc step)))
1398 (or (math-integerp step) (math-reject-arg step 'integerp))
1399 (let* ((dt (math-date-to-dt date))
1400 (year (car dt))
1401 (month (math-add (1- (nth 1 dt)) step))
1402 (extra (calcFunc-idiv month 12))
1403 (day (nth 2 dt)))
1404 (setq month (1+ (math-sub month (math-mul extra 12)))
1405 year (math-add year extra)
1406 day (min day (math-days-in-month year month)))
1407 (and (math-posp (car dt)) (not (math-posp year))
1408 (setq year (math-sub year 1))) ; did we go past the year zero?
1409 (and (math-negp (car dt)) (not (math-negp year))
1410 (setq year (math-add year 1)))
1411 (list 'date (math-dt-to-date
1412 (cons year (cons month (cons day (cdr (cdr (cdr dt))))))))))
1413
1414 (defun calcFunc-incyear (date &optional step)
1415 (calcFunc-incmonth date (math-mul (or step 1) 12)))
1416
1417
1418
1419 (defun calcFunc-bsub (a b)
1420 (or (eq (car-safe a) 'date)
1421 (math-reject-arg a 'datep))
1422 (if (eq (car-safe b) 'date)
1423 (if (math-lessp (nth 1 a) (nth 1 b))
1424 (math-neg (calcFunc-bsub b a))
1425 (math-setup-holidays b)
1426 (let* ((da (math-to-business-day a))
1427 (db (math-to-business-day b)))
1428 (math-add (math-sub (car da) (car db))
1429 (if (and (cdr db) (not (cdr da))) 1 0))))
1430 (calcFunc-badd a (math-neg b))))
1431
1432 (defvar math-holidays-cache nil)
1433 (defvar math-holidays-cache-tag t)
1434 (defun calcFunc-badd (a b)
1435 (if (eq (car-safe b) 'date)
1436 (if (eq (car-safe a) 'date)
1437 (math-reject-arg nil "*Illegal combination in date arithmetic")
1438 (calcFunc-badd b a))
1439 (if (eq (car-safe a) 'date)
1440 (if (Math-realp b)
1441 (if (Math-zerop b)
1442 a
1443 (let* ((d (math-to-business-day a))
1444 (bb (math-add (car d)
1445 (if (and (cdr d) (Math-posp b))
1446 (math-sub b 1) b))))
1447 (or (math-from-business-day bb)
1448 (calcFunc-badd a b))))
1449 (if (eq (car-safe b) 'hms)
1450 (let ((hours (nth 7 math-holidays-cache)))
1451 (setq b (math-div (math-from-hms b 'deg) 24))
1452 (if hours
1453 (setq b (math-div b (cdr hours))))
1454 (calcFunc-badd a b))
1455 (math-reject-arg nil "*Illegal combination in date arithmetic")))
1456 (math-reject-arg a 'datep))))
1457
1458 (defun calcFunc-holiday (a)
1459 (if (cdr (math-to-business-day a)) 1 0))
1460
1461 ;;; Compute the number of business days since Jan 1, 1 AD.
1462
1463 (defun math-to-business-day (date &optional need-year)
1464 (if (eq (car-safe date) 'date)
1465 (setq date (nth 1 date)))
1466 (or (Math-realp date)
1467 (math-reject-arg date 'datep))
1468 (let* ((day (math-floor date))
1469 (time (math-sub date day))
1470 (dt (math-date-to-dt day))
1471 (delta 0)
1472 (holiday nil))
1473 (or (not need-year) (eq (car dt) need-year)
1474 (math-reject-arg (list 'date day) "*Generated holiday has wrong year"))
1475 (math-setup-holidays date)
1476 (let ((days (car math-holidays-cache)))
1477 (while (and (setq days (cdr days)) (< (car days) day))
1478 (setq delta (1+ delta)))
1479 (and days (= day (car days))
1480 (setq holiday t)))
1481 (let* ((weekdays (nth 3 math-holidays-cache))
1482 (weeks (1- (/ (+ day 6) 7)))
1483 (wkday (- day 1 (* weeks 7))))
1484 (setq delta (+ delta (* weeks (length weekdays))))
1485 (while (and weekdays (< (car weekdays) wkday))
1486 (setq weekdays (cdr weekdays)
1487 delta (1+ delta)))
1488 (and weekdays (eq wkday (car weekdays))
1489 (setq holiday t)))
1490 (let ((hours (nth 7 math-holidays-cache)))
1491 (if hours
1492 (progn
1493 (setq time (math-div (math-sub time (car hours)) (cdr hours)))
1494 (if (Math-lessp time 0) (setq time 0))
1495 (or (Math-lessp time 1)
1496 (setq time
1497 (math-sub 1
1498 (math-div 1 (math-mul 86400 (cdr hours)))))))))
1499 (cons (math-add (math-sub day delta) time) holiday)))
1500
1501
1502 ;;; Compute the date a certain number of business days since Jan 1, 1 AD.
1503 ;;; If this returns nil, holiday table was adjusted; redo calculation.
1504
1505 (defun math-from-business-day (num)
1506 (let* ((day (math-floor num))
1507 (time (math-sub num day)))
1508 (or (integerp day)
1509 (math-reject-arg nil "*Date is outside valid range"))
1510 (math-setup-holidays)
1511 (let ((days (nth 1 math-holidays-cache))
1512 (delta 0))
1513 (while (and (setq days (cdr days)) (< (car days) day))
1514 (setq delta (1+ delta)))
1515 (setq day (+ day delta)))
1516 (let* ((weekdays (nth 3 math-holidays-cache))
1517 (bweek (- 7 (length weekdays)))
1518 (weeks (1- (/ (+ day (1- bweek)) bweek)))
1519 (wkday (- day 1 (* weeks bweek)))
1520 (w 0))
1521 (setq day (+ day (* weeks (length weekdays))))
1522 (while (if (memq w weekdays)
1523 (setq day (1+ day))
1524 (> (setq wkday (1- wkday)) 0))
1525 (setq w (1+ w)))
1526 (let ((hours (nth 7 math-holidays-cache)))
1527 (if hours
1528 (setq time (math-add (math-mul time (cdr hours)) (car hours)))))
1529 (and (not (math-setup-holidays day))
1530 (list 'date (math-add day time))))))
1531
1532 ;; The variable math-sh-year is local to math-setup-holidays
1533 ;; and math-setup-year-holiday, but is used by math-setup-add-holidays,
1534 ;; which is called by math-setup-holidays and math-setup-year-holiday.
1535 (defvar math-sh-year)
1536
1537 (defun math-setup-holidays (&optional date)
1538 (or (eq (calc-var-value 'var-Holidays) math-holidays-cache-tag)
1539 (let ((h (calc-var-value 'var-Holidays))
1540 (wdnames '( (sun . 0) (mon . 1) (tue . 2) (wed . 3)
1541 (thu . 4) (fri . 5) (sat . 6) ))
1542 (days nil) (weekdays nil) (exprs nil) (limit nil) (hours nil))
1543 (or (math-vectorp h)
1544 (math-reject-arg h "*Holidays variable must be a vector"))
1545 (while (setq h (cdr h))
1546 (cond ((or (and (eq (car-safe (car h)) 'date)
1547 (integerp (nth 1 (car h))))
1548 (and (eq (car-safe (car h)) 'intv)
1549 (eq (car-safe (nth 2 (car h))) 'date))
1550 (eq (car-safe (car h)) 'vec))
1551 (setq days (cons (car h) days)))
1552 ((and (eq (car-safe (car h)) 'var)
1553 (assq (nth 1 (car h)) wdnames))
1554 (setq weekdays (cons (cdr (assq (nth 1 (car h)) wdnames))
1555 weekdays)))
1556 ((and (eq (car-safe (car h)) 'intv)
1557 (eq (car-safe (nth 2 (car h))) 'hms)
1558 (eq (car-safe (nth 3 (car h))) 'hms))
1559 (if hours
1560 (math-reject-arg
1561 (car h) "*Only one hours interval allowed in Holidays"))
1562 (setq hours (math-div (car h) '(hms 24 0 0)))
1563 (if (or (Math-lessp (nth 2 hours) 0)
1564 (Math-lessp 1 (nth 3 hours)))
1565 (math-reject-arg
1566 (car h) "*Hours interval out of range"))
1567 (setq hours (cons (nth 2 hours)
1568 (math-sub (nth 3 hours) (nth 2 hours))))
1569 (if (Math-zerop (cdr hours))
1570 (math-reject-arg
1571 (car h) "*Degenerate hours interval")))
1572 ((or (and (eq (car-safe (car h)) 'intv)
1573 (Math-integerp (nth 2 (car h)))
1574 (Math-integerp (nth 3 (car h))))
1575 (and (integerp (car h))
1576 (> (car h) 1900) (< (car h) 2100)))
1577 (if limit
1578 (math-reject-arg
1579 (car h) "*Only one limit allowed in Holidays"))
1580 (setq limit (calcFunc-vint (car h) '(intv 3 1 2737)))
1581 (if (equal limit '(vec))
1582 (math-reject-arg (car h) "*Limit is out of range")))
1583 ((or (math-expr-contains (car h) '(var y var-y))
1584 (math-expr-contains (car h) '(var m var-m)))
1585 (setq exprs (cons (car h) exprs)))
1586 (t (math-reject-arg
1587 (car h) "*Holidays must contain a vector of holidays"))))
1588 (if (= (length weekdays) 7)
1589 (math-reject-arg nil "*Too many weekend days"))
1590 (setq math-holidays-cache (list (list -1) ; 0: days list
1591 (list -1) ; 1: inverse-days list
1592 nil ; 2: exprs
1593 (sort weekdays '<)
1594 (or limit '(intv 3 1 2737))
1595 nil ; 5: (lo.hi) expanded years
1596 (cons exprs days)
1597 hours) ; 7: business hours
1598 math-holidays-cache-tag (calc-var-value 'var-Holidays))))
1599 (if date
1600 (let ((year (calcFunc-year date))
1601 (limits (nth 5 math-holidays-cache))
1602 (done nil))
1603 (or (eq (calcFunc-in year (nth 4 math-holidays-cache)) 1)
1604 (progn
1605 (or (eq (car-safe date) 'date) (setq date (list 'date date)))
1606 (math-reject-arg date "*Date is outside valid range")))
1607 (unwind-protect
1608 (let ((days (nth 6 math-holidays-cache)))
1609 (if days
1610 (let ((math-sh-year nil)) ; see below
1611 (setcar (nthcdr 6 math-holidays-cache) nil)
1612 (math-setup-add-holidays (cons 'vec (cdr days)))
1613 (setcar (nthcdr 2 math-holidays-cache) (car days))))
1614 (cond ((not (nth 2 math-holidays-cache))
1615 (setq done t)
1616 nil)
1617 ((not limits)
1618 (setcar (nthcdr 5 math-holidays-cache) (cons year year))
1619 (math-setup-year-holidays year)
1620 (setq done t))
1621 ((< year (car limits))
1622 (message "Computing holidays, %d .. %d"
1623 year (1- (car limits)))
1624 (calc-set-command-flag 'clear-message)
1625 (while (< year (car limits))
1626 (setcar limits (1- (car limits)))
1627 (math-setup-year-holidays (car limits)))
1628 (setq done t))
1629 ((> year (cdr limits))
1630 (message "Computing holidays, %d .. %d"
1631 (1+ (cdr limits)) year)
1632 (calc-set-command-flag 'clear-message)
1633 (while (> year (cdr limits))
1634 (setcdr limits (1+ (cdr limits)))
1635 (math-setup-year-holidays (cdr limits)))
1636 (setq done t))
1637 (t
1638 (setq done t)
1639 nil)))
1640 (or done (setq math-holidays-cache-tag t))))))
1641
1642 (defun math-setup-year-holidays (math-sh-year)
1643 (let ((exprs (nth 2 math-holidays-cache)))
1644 (while exprs
1645 (let* ((var-y math-sh-year)
1646 (var-m nil)
1647 (expr (math-evaluate-expr (car exprs))))
1648 (if (math-expr-contains expr '(var m var-m))
1649 (let ((var-m 0))
1650 (while (<= (setq var-m (1+ var-m)) 12)
1651 (math-setup-add-holidays (math-evaluate-expr expr))))
1652 (math-setup-add-holidays expr)))
1653 (setq exprs (cdr exprs)))))
1654
1655 (defun math-setup-add-holidays (days) ; uses "math-sh-year"
1656 (cond ((eq (car-safe days) 'vec)
1657 (while (setq days (cdr days))
1658 (math-setup-add-holidays (car days))))
1659 ((eq (car-safe days) 'intv)
1660 (let ((day (math-ceiling (nth 2 days))))
1661 (or (eq (calcFunc-in day days) 1)
1662 (setq day (math-add day 1)))
1663 (while (eq (calcFunc-in day days) 1)
1664 (math-setup-add-holidays day)
1665 (setq day (math-add day 1)))))
1666 ((eq (car-safe days) 'date)
1667 (math-setup-add-holidays (nth 1 days)))
1668 ((eq days 0))
1669 ((integerp days)
1670 (let ((b (math-to-business-day days math-sh-year)))
1671 (or (cdr b) ; don't register holidays twice!
1672 (let ((prev (car math-holidays-cache))
1673 (iprev (nth 1 math-holidays-cache)))
1674 (while (and (cdr prev) (< (nth 1 prev) days))
1675 (setq prev (cdr prev) iprev (cdr iprev)))
1676 (setcdr prev (cons days (cdr prev)))
1677 (setcdr iprev (cons (car b) (cdr iprev)))
1678 (while (setq iprev (cdr iprev))
1679 (setcar iprev (1- (car iprev))))))))
1680 ((Math-realp days)
1681 (math-reject-arg (list 'date days) "*Invalid holiday value"))
1682 (t
1683 (math-reject-arg days "*Holiday formula failed to evaluate"))))
1684
1685
1686
1687
1688 ;;;; Error forms.
1689
1690 ;;; Build a standard deviation form. [X X X]
1691 (defun math-make-sdev (x sigma)
1692 (if (memq (car-safe x) '(date mod sdev intv vec))
1693 (math-reject-arg x 'realp))
1694 (if (memq (car-safe sigma) '(date mod sdev intv vec))
1695 (math-reject-arg sigma 'realp))
1696 (if (or (Math-negp sigma) (memq (car-safe sigma) '(cplx polar)))
1697 (setq sigma (math-abs sigma)))
1698 (if (and (Math-zerop sigma) (Math-scalarp x))
1699 x
1700 (list 'sdev x sigma)))
1701 (defun calcFunc-sdev (x sigma)
1702 (math-make-sdev x sigma))
1703
1704
1705
1706 ;;;; Modulo forms.
1707
1708 (defun math-normalize-mod (a)
1709 (let ((n (math-normalize (nth 1 a)))
1710 (m (math-normalize (nth 2 a))))
1711 (if (and (math-anglep n) (math-anglep m) (math-posp m))
1712 (math-make-mod n m)
1713 (math-normalize (list 'calcFunc-makemod n m)))))
1714
1715 ;;; Build a modulo form. [N R R]
1716 (defun math-make-mod (n m)
1717 (setq calc-previous-modulo m)
1718 (and n
1719 (cond ((not (Math-anglep m))
1720 (math-reject-arg m 'anglep))
1721 ((not (math-posp m))
1722 (math-reject-arg m 'posp))
1723 ((Math-anglep n)
1724 (if (or (Math-negp n)
1725 (not (Math-lessp n m)))
1726 (list 'mod (math-mod n m) m)
1727 (list 'mod n m)))
1728 ((memq (car n) '(+ - / vec neg))
1729 (math-normalize
1730 (cons (car n)
1731 (mapcar (function (lambda (x) (math-make-mod x m)))
1732 (cdr n)))))
1733 ((and (eq (car n) '*) (Math-anglep (nth 1 n)))
1734 (math-mul (math-make-mod (nth 1 n) m) (nth 2 n)))
1735 ((memq (car n) '(* ^ var calcFunc-subscr))
1736 (math-mul (math-make-mod 1 m) n))
1737 (t (math-reject-arg n 'anglep)))))
1738 (defun calcFunc-makemod (n m)
1739 (math-make-mod n m))
1740
1741
1742
1743 ;;;; Interval forms.
1744
1745 ;;; Build an interval form. [X S X X]
1746 (defun math-make-intv (mask lo hi)
1747 (if (memq (car-safe lo) '(cplx polar mod sdev intv vec))
1748 (math-reject-arg lo 'realp))
1749 (if (memq (car-safe hi) '(cplx polar mod sdev intv vec))
1750 (math-reject-arg hi 'realp))
1751 (or (eq (eq (car-safe lo) 'date) (eq (car-safe hi) 'date))
1752 (math-reject-arg (if (eq (car-safe lo) 'date) hi lo) 'datep))
1753 (if (and (or (Math-realp lo) (eq (car lo) 'date))
1754 (or (Math-realp hi) (eq (car hi) 'date)))
1755 (let ((cmp (math-compare lo hi)))
1756 (if (= cmp 0)
1757 (if (= mask 3)
1758 lo
1759 (list 'intv mask lo hi))
1760 (if (> cmp 0)
1761 (if (= mask 3)
1762 (list 'intv 2 lo lo)
1763 (list 'intv mask lo lo))
1764 (list 'intv mask lo hi))))
1765 (list 'intv mask lo hi)))
1766 (defun calcFunc-intv (mask lo hi)
1767 (if (math-messy-integerp mask) (setq mask (math-trunc mask)))
1768 (or (natnump mask) (math-reject-arg mask 'fixnatnump))
1769 (or (<= mask 3) (math-reject-arg mask 'range))
1770 (math-make-intv mask lo hi))
1771
1772 (defun math-sort-intv (mask lo hi)
1773 (if (Math-lessp hi lo)
1774 (math-make-intv (aref [0 2 1 3] mask) hi lo)
1775 (math-make-intv mask lo hi)))
1776
1777
1778
1779
1780 (defun math-combine-intervals (a am b bm c cm d dm)
1781 (let (res)
1782 (if (= (setq res (math-compare a c)) 1)
1783 (setq a c am cm)
1784 (if (= res 0)
1785 (setq am (or am cm))))
1786 (if (= (setq res (math-compare b d)) -1)
1787 (setq b d bm dm)
1788 (if (= res 0)
1789 (setq bm (or bm dm))))
1790 (math-make-intv (+ (if am 2 0) (if bm 1 0)) a b)))
1791
1792
1793 (defun math-div-mod (a b m) ; [R R R R] (Returns nil if no solution)
1794 (and (Math-integerp a) (Math-integerp b) (Math-integerp m)
1795 (let ((u1 1) (u3 b) (v1 0) (v3 m))
1796 (while (not (eq v3 0)) ; See Knuth sec 4.5.2, exercise 15
1797 (let* ((q (math-idivmod u3 v3))
1798 (t1 (math-sub u1 (math-mul v1 (car q)))))
1799 (setq u1 v1 u3 v3 v1 t1 v3 (cdr q))))
1800 (let ((q (math-idivmod a u3)))
1801 (and (eq (cdr q) 0)
1802 (math-mod (math-mul (car q) u1) m))))))
1803
1804 (defun math-mod-intv (a b)
1805 (let* ((q1 (math-floor (math-div (nth 2 a) b)))
1806 (q2 (math-floor (math-div (nth 3 a) b)))
1807 (m1 (math-sub (nth 2 a) (math-mul q1 b)))
1808 (m2 (math-sub (nth 3 a) (math-mul q2 b))))
1809 (cond ((equal q1 q2)
1810 (math-sort-intv (nth 1 a) m1 m2))
1811 ((and (math-equal-int (math-sub q2 q1) 1)
1812 (math-zerop m2)
1813 (memq (nth 1 a) '(0 2)))
1814 (math-make-intv (nth 1 a) m1 b))
1815 (t
1816 (math-make-intv 2 0 b)))))
1817
1818 ;; The variables math-exp-str and math-exp-pos are local to
1819 ;; math-read-exprs in math-aent.el, but are used by
1820 ;; math-read-angle-brackets, which is called (indirectly) by
1821 ;; math-read-exprs.
1822 (defvar math-exp-str)
1823 (defvar math-exp-pos)
1824
1825 (defun math-read-angle-brackets ()
1826 (let* ((last (or (math-check-for-commas t) (length math-exp-str)))
1827 (str (substring math-exp-str math-exp-pos last))
1828 (res
1829 (if (string-match "\\` *\\([a-zA-Z#][a-zA-Z0-9#]* *,? *\\)*:" str)
1830 (let ((str1 (substring str 0 (1- (match-end 0))))
1831 (str2 (substring str (match-end 0)))
1832 (calc-hashes-used 0))
1833 (setq str1 (math-read-expr (concat "[" str1 "]")))
1834 (if (eq (car-safe str1) 'error)
1835 str1
1836 (setq str2 (math-read-expr str2))
1837 (if (eq (car-safe str2) 'error)
1838 str2
1839 (append '(calcFunc-lambda) (cdr str1) (list str2)))))
1840 (if (string-match "#" str)
1841 (let ((calc-hashes-used 0))
1842 (and (setq str (math-read-expr str))
1843 (if (eq (car-safe str) 'error)
1844 str
1845 (append '(calcFunc-lambda)
1846 (calc-invent-args calc-hashes-used)
1847 (list str)))))
1848 (math-parse-date str)))))
1849 (if (stringp res)
1850 (throw 'syntax res))
1851 (if (eq (car-safe res) 'error)
1852 (throw 'syntax (nth 2 res)))
1853 (setq math-exp-pos (1+ last))
1854 (math-read-token)
1855 res))
1856
1857 (provide 'calc-forms)
1858
1859 ;;; arch-tag: a3d8f33b-9508-4043-8060-d02b8c9c750c
1860 ;;; calc-forms.el ends here