(calc-embedded-restore-original-modes): Add argument for Calculator buffer.
[bpt/emacs.git] / lisp / calc / calc.el
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1;;; calc.el --- the GNU Emacs calculator
2
3;; Copyright (C) 1990, 1991, 1992, 1993, 2001, 2002, 2003, 2004,
4;; 2005, 2006, 2007, 2008, 2009 Free Software Foundation, Inc.
5
6;; Author: David Gillespie <daveg@synaptics.com>
7;; Maintainer: Jay Belanger <jay.p.belanger@gmail.com>
8;; Keywords: convenience, extensions
9
10;; This file is part of GNU Emacs.
11
12;; GNU Emacs is free software: you can redistribute it and/or modify
13;; it under the terms of the GNU General Public License as published by
14;; the Free Software Foundation, either version 3 of the License, or
15;; (at your option) any later version.
16
17;; GNU Emacs is distributed in the hope that it will be useful,
18;; but WITHOUT ANY WARRANTY; without even the implied warranty of
19;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20;; GNU General Public License for more details.
21
22;; You should have received a copy of the GNU General Public License
23;; along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>.
24
25;;; Commentary:
26
27;; Calc is split into many files. This file is the main entry point.
28;; This file includes autoload commands for various other basic Calc
29;; facilities. The more advanced features are based in calc-ext, which
30;; in turn contains autoloads for the rest of the Calc files. This
31;; odd set of interactions is designed to make Calc's loading time
32;; be as short as possible when only simple calculations are needed.
33
34;; Original author's address:
35;; Dave Gillespie, daveg@synaptics.com, uunet!synaptx!daveg.
36;; Synaptics, Inc., 2698 Orchard Parkway, San Jose, CA 95134.
37;;
38;; The old address daveg@csvax.cs.caltech.edu will continue to
39;; work for the foreseeable future.
40;;
41;; Bug reports and suggestions are always welcome! (Type M-x
42;; report-calc-bug to send them).
43
44;; All functions, macros, and Lisp variables defined here begin with one
45;; of the prefixes "math", "Math", or "calc", with the exceptions of
46;; "full-calc", "full-calc-keypad", "another-calc", "quick-calc",
47;; "report-calc-bug", and "defmath". User-accessible variables begin
48;; with "var-".
49
50;;; TODO:
51
52;; Fix rewrite mechanism to do less gratuitous rearrangement of terms.
53;; Implement a pattern-based "refers" predicate.
54;;
55;; Make it possible to Undo a selection command.
56;; Figure out how to allow selecting rows of matrices.
57;; If cursor was in selection before, move it after j n, j p, j L, etc.
58;; Consider reimplementing calc-delete-selection using rewrites.
59;;
60;; Implement line-breaking in non-flat compositions (is this desirable?).
61;; Implement matrix formatting with multi-line components.
62;;
63;; Have "Z R" define a user command based on a set of rewrite rules.
64;; Support "incf" and "decf" in defmath definitions.
65;; Have defmath generate calls to calc-binary-op or calc-unary-op.
66;; Make some way to define algebraic functions using keyboard macros.
67;;
68;; Allow calc-word-size=0 => Common Lisp-style signed bitwise arithmetic.
69;; Consider digamma function (and thus arb. prec. Euler's gamma constant).
70;; May as well make continued-fractions stuff available to the user.
71;;
72;; How about matrix eigenvalues, SVD, pseudo-inverse, etc.?
73;; Should cache matrix inverses as well as decompositions.
74;; If dividing by a non-square matrix, use least-squares automatically.
75;; Consider supporting matrix exponentials.
76;;
77;; Have ninteg detect and work around singularities at the endpoints.
78;; Use an adaptive subdivision algorithm for ninteg.
79;; Provide nsum and nprod to go along with ninteg.
80;;
81;; Handle TeX-mode parsing of \matrix{ ... } where ... contains braces.
82;; Support AmS-TeX's \{d,t,}frac, \{d,t,}binom notations.
83;; Format and parse sums and products in Eqn and Math modes.
84;;
85;; Get math-read-big-expr to read sums, products, etc.
86;; Change calc-grab-region to use math-read-big-expr.
87;; Have a way to define functions using := in Embedded Mode.
88;;
89;; Support polar plotting with GNUPLOT.
90;; Make a calc-graph-histogram function.
91;;
92;; Replace hokey formulas for complex functions with formulas designed
93;; to minimize roundoff while maintaining the proper branch cuts.
94;; Test accuracy of advanced math functions over whole complex plane.
95;; Extend Bessel functions to provide arbitrary precision.
96;; Extend advanced math functions to handle error forms and intervals.
97;; Provide a better implementation for math-sin-cos-raw.
98;; Provide a better implementation for math-hypot.
99;; Provide a better implementation for math-make-frac.
100;; Provide a better implementation for calcFunc-prfac.
101;; Provide a better implementation for calcFunc-factor.
102;;
103;; Provide more examples in the tutorial section of the manual.
104;; Cover in the tutorial: simplification modes, declarations,
105;; bitwise stuff, selections, matrix mapping, financial functions.
106;; Provide more Lisp programming examples in the manual.
107;; Finish the Internals section of the manual (and bring it up to date).
108;;
109;; Tim suggests adding spreadsheet-like features.
110;; Implement language modes for Gnuplot, Lisp, Ada, APL, ...?
111;;
112;; For atan series, if x > tan(pi/12) (about 0.268) reduce using the identity
113;; atan(x) = atan((x * sqrt(3) - 1) / (sqrt(3) + x)) + pi/6.
114;;
115;; A better integration algorithm:
116;; Use breadth-first instead of depth-first search, as follows:
117;; The integral cache allows unfinished integrals in symbolic notation
118;; on the righthand side. An entry with no unfinished integrals on the
119;; RHS is "complete"; references to it elsewhere are replaced by the
120;; integrated value. More than one cache entry for the same integral
121;; may exist, though if one becomes complete, the others may be deleted.
122;; The integrator works by using every applicable rule (such as
123;; substitution, parts, linearity, etc.) to generate possible righthand
124;; sides, all of which are entered into the cache. Now, as long as the
125;; target integral is not complete (and the time limit has not run out)
126;; choose an incomplete integral from the cache and, for every integral
127;; appearing in its RHS's, add those integrals to the cache using the
128;; same substitition, parts, etc. rules. The cache should be organized
129;; as a priority queue, choosing the "simplest" incomplete integral at
130;; each step, or choosing randomly among equally simple integrals.
131;; Simplicity equals small size, and few steps removed from the original
132;; target integral. Note that when the integrator finishes, incomplete
133;; integrals can be left in the cache, so the algorithm can start where
134;; it left off if another similar integral is later requested.
135;; Breadth-first search would avoid the nagging problem of, e.g., whether
136;; to use parts or substitution first, and which decomposition is best.
137;; All are tried, and any path that diverges will quickly be put on the
138;; back burner by the priority queue.
139;; Note: Probably a good idea to call math-simplify-extended before
140;; measuring a formula's simplicity.
141
142;;; Code:
143
144(require 'calc-macs)
145
146;; Declare functions which are defined elsewhere.
147(declare-function calc-set-language "calc-lang" (lang &optional option no-refresh))
148(declare-function calc-edit-finish "calc-yank" (&optional keep))
149(declare-function calc-edit-cancel "calc-yank" ())
150(declare-function calc-do-quick-calc "calc-aent" ())
151(declare-function calc-do-calc-eval "calc-aent" (str separator args))
152(declare-function calc-do-keypad "calc-keypd" (&optional full-display interactive))
153(declare-function calcFunc-unixtime "calc-forms" (date &optional zone))
154(declare-function math-parse-date "calc-forms" (math-pd-str))
155(declare-function math-lessp "calc-ext" (a b))
156(declare-function calc-embedded-finish-command "calc-embed" ())
157(declare-function calc-embedded-select-buffer "calc-embed" ())
158(declare-function calc-embedded-mode-line-change "calc-embed" ())
159(declare-function calc-push-list-in-macro "calc-prog" (vals m sels))
160(declare-function calc-replace-selections "calc-sel" (n vals m))
161(declare-function calc-record-list "calc-misc" (vals &optional prefix))
162(declare-function calc-normalize-fancy "calc-ext" (val))
163(declare-function calc-do-handle-whys "calc-misc" ())
164(declare-function calc-top-selected "calc-sel" (&optional n m))
165(declare-function calc-sel-error "calc-sel" ())
166(declare-function calc-pop-stack-in-macro "calc-prog" (n mm))
167(declare-function calc-embedded-stack-change "calc-embed" ())
168(declare-function calc-refresh-evaltos "calc-ext" (&optional which-var))
169(declare-function calc-do-refresh "calc-misc" ())
170(declare-function calc-binary-op-fancy "calc-ext" (name func arg ident unary))
171(declare-function calc-unary-op-fancy "calc-ext" (name func arg))
172(declare-function calc-delete-selection "calc-sel" (n))
173(declare-function calc-alg-digit-entry "calc-aent" ())
174(declare-function calc-alg-entry "calc-aent" (&optional initial prompt))
175(declare-function calc-dots "calc-incom" ())
176(declare-function calc-temp-minibuffer-message "calc-misc" (m))
177(declare-function math-read-radix-digit "calc-misc" (dig))
178(declare-function calc-digit-dots "calc-incom" ())
179(declare-function math-normalize-fancy "calc-ext" (a))
180(declare-function math-normalize-nonstandard "calc-ext" ())
181(declare-function math-recompile-eval-rules "calc-alg" ())
182(declare-function math-apply-rewrites "calc-rewr" (expr rules &optional heads math-apply-rw-ruleset))
183(declare-function calc-record-why "calc-misc" (&rest stuff))
184(declare-function math-dimension-error "calc-vec" ())
185(declare-function calc-incomplete-error "calc-incom" (a))
186(declare-function math-float-fancy "calc-arith" (a))
187(declare-function math-neg-fancy "calc-arith" (a))
188(declare-function math-zerop "calc-misc" (a))
189(declare-function calc-add-fractions "calc-frac" (a b))
190(declare-function math-add-objects-fancy "calc-arith" (a b))
191(declare-function math-add-symb-fancy "calc-arith" (a b))
192(declare-function math-mul-zero "calc-arith" (a b))
193(declare-function calc-mul-fractions "calc-frac" (a b))
194(declare-function math-mul-objects-fancy "calc-arith" (a b))
195(declare-function math-mul-symb-fancy "calc-arith" (a b))
196(declare-function math-reject-arg "calc-misc" (&optional a p option))
197(declare-function math-div-by-zero "calc-arith" (a b))
198(declare-function math-div-zero "calc-arith" (a b))
199(declare-function math-make-frac "calc-frac" (num den))
200(declare-function calc-div-fractions "calc-frac" (a b))
201(declare-function math-div-objects-fancy "calc-arith" (a b))
202(declare-function math-div-symb-fancy "calc-arith" (a b))
203(declare-function math-compose-expr "calccomp" (a prec))
204(declare-function math-comp-width "calccomp" (c))
205(declare-function math-composition-to-string "calccomp" (c &optional width))
206(declare-function math-stack-value-offset-fancy "calccomp" ())
207(declare-function math-format-flat-expr-fancy "calc-ext" (a prec))
208(declare-function math-adjust-fraction "calc-ext" (a))
209(declare-function math-format-binary "calc-bin" (a))
210(declare-function math-format-radix "calc-bin" (a))
211(declare-function math-group-float "calc-ext" (str))
212(declare-function math-mod "calc-misc" (a b))
213(declare-function math-format-number-fancy "calc-ext" (a prec))
214(declare-function math-format-bignum-fancy "calc-ext" (a))
215(declare-function math-read-number-fancy "calc-ext" (s))
216(declare-function calc-do-grab-region "calc-yank" (top bot arg))
217(declare-function calc-do-grab-rectangle "calc-yank" (top bot arg &optional reduce))
218(declare-function calc-do-embedded "calc-embed" (calc-embed-arg end obeg oend))
219(declare-function calc-do-embedded-activate "calc-embed" (calc-embed-arg cbuf))
220(declare-function math-do-defmath "calc-prog" (func args body))
221(declare-function calc-load-everything "calc-ext" ())
222
223
224(defgroup calc nil
225 "GNU Calc."
226 :prefix "calc-"
227 :tag "Calc"
228 :group 'applications)
229
230;;;###autoload
231(defcustom calc-settings-file
232 (convert-standard-filename "~/.calc.el")
233 "File in which to record permanent settings."
234 :group 'calc
235 :type '(file))
236
237(defcustom calc-language-alist
238 '((latex-mode . latex)
239 (tex-mode . tex)
240 (plain-tex-mode . tex)
241 (context-mode . tex)
242 (nroff-mode . eqn)
243 (pascal-mode . pascal)
244 (c-mode . c)
245 (c++-mode . c)
246 (fortran-mode . fortran)
247 (f90-mode . fortran)
248 (texinfo-mode . calc-normal-language))
249 "Alist of major modes with appropriate Calc languages."
250 :group 'calc
251 :type '(alist :key-type (symbol :tag "Major mode")
252 :value-type (symbol :tag "Calc language")))
253
254(defcustom calc-embedded-announce-formula
255 "%Embed\n\\(% .*\n\\)*"
256 "A regular expression which is sure to be followed by a calc-embedded formula."
257 :group 'calc
258 :type '(regexp))
259
260(defcustom calc-embedded-announce-formula-alist
261 '((c++-mode . "//Embed\n\\(// .*\n\\)*")
262 (c-mode . "/\\*Embed\\*/\n\\(/\\* .*\\*/\n\\)*")
263 (f90-mode . "!Embed\n\\(! .*\n\\)*")
264 (fortran-mode . "C Embed\n\\(C .*\n\\)*")
265 (html-helper-mode . "<!-- Embed -->\n\\(<!-- .* -->\n\\)*")
266 (html-mode . "<!-- Embed -->\n\\(<!-- .* -->\n\\)*")
267 (nroff-mode . "\\\\\"Embed\n\\(\\\\\" .*\n\\)*")
268 (pascal-mode . "{Embed}\n\\({.*}\n\\)*")
269 (sgml-mode . "<!-- Embed -->\n\\(<!-- .* -->\n\\)*")
270 (xml-mode . "<!-- Embed -->\n\\(<!-- .* -->\n\\)*")
271 (texinfo-mode . "@c Embed\n\\(@c .*\n\\)*"))
272 "Alist of major modes with appropriate values for `calc-embedded-announce-formula'."
273 :group 'calc
274 :type '(alist :key-type (symbol :tag "Major mode")
275 :value-type (regexp :tag "Regexp to announce formula")))
276
277(defcustom calc-embedded-open-formula
278 "\\`\\|^\n\\|\\$\\$?\\|\\\\\\[\\|^\\\\begin[^{].*\n\\|^\\\\begin{.*[^x]}.*\n\\|^@.*\n\\|^\\.EQ.*\n\\|\\\\(\\|^%\n\\|^\\.\\\\\"\n"
279 "A regular expression for the opening delimiter of a formula used by calc-embedded."
280 :group 'calc
281 :type '(regexp))
282
283(defcustom calc-embedded-close-formula
284 "\\'\\|\n$\\|\\$\\$?\\|\\\\]\\|^\\\\end[^{].*\n\\|^\\\\end{.*[^x]}.*\n\\|^@.*\n\\|^\\.EN.*\n\\|\\\\)\\|\n%\n\\|^\\.\\\\\"\n"
285 "A regular expression for the closing delimiter of a formula used by calc-embedded."
286 :group 'calc
287 :type '(regexp))
288
289(defcustom calc-embedded-open-close-formula-alist
290 nil
291 "Alist of major modes with pairs of formula delimiters used by calc-embedded."
292 :group 'calc
293 :type '(alist :key-type (symbol :tag "Major mode")
294 :value-type (list (regexp :tag "Opening formula delimiter")
295 (regexp :tag "Closing formula delimiter"))))
296
297(defcustom calc-embedded-word-regexp
298 "[-+]?[0-9]+\\(\\.[0-9]+\\)?\\([eE][-+]?[0-9]+\\)?"
299 "A regular expression determining a word for calc-embedded-word."
300 :group 'calc
301 :type '(regexp))
302
303(defcustom calc-embedded-word-regexp-alist
304 nil
305 "Alist of major modes with word regexps used by calc-embedded-word."
306 :group 'calc
307 :type '(alist :key-type (symbol :tag "Major mode")
308 :value-type (regexp :tag "Regexp for word")))
309
310(defcustom calc-embedded-open-plain
311 "%%% "
312 "A string which is the opening delimiter for a \"plain\" formula.
313If calc-show-plain mode is enabled, this is inserted at the front of
314each formula."
315 :group 'calc
316 :type '(string))
317
318(defcustom calc-embedded-close-plain
319 " %%%\n"
320 "A string which is the closing delimiter for a \"plain\" formula.
321See calc-embedded-open-plain."
322 :group 'calc
323 :type '(string))
324
325(defcustom calc-embedded-open-close-plain-alist
326 '((c++-mode "// %% " " %%\n")
327 (c-mode "/* %% " " %% */\n")
328 (f90-mode "! %% " " %%\n")
329 (fortran-mode "C %% " " %%\n")
330 (html-helper-mode "<!-- %% " " %% -->\n")
331 (html-mode "<!-- %% " " %% -->\n")
332 (nroff-mode "\\\" %% " " %%\n")
333 (pascal-mode "{%% " " %%}\n")
334 (sgml-mode "<!-- %% " " %% -->\n")
335 (xml-mode "<!-- %% " " %% -->\n")
336 (texinfo-mode "@c %% " " %%\n"))
337 "Alist of major modes with pairs of delimiters for \"plain\" formulas."
338 :group 'calc
339 :type '(alist :key-type (symbol :tag "Major mode")
340 :value-type (list (string :tag "Opening \"plain\" delimiter")
341 (string :tag "Closing \"plain\" delimiter"))))
342
343(defcustom calc-embedded-open-new-formula
344 "\n\n"
345 "A string which is inserted at front of formula by calc-embedded-new-formula."
346 :group 'calc
347 :type '(string))
348
349(defcustom calc-embedded-close-new-formula
350 "\n\n"
351 "A string which is inserted at end of formula by calc-embedded-new-formula."
352 :group 'calc
353 :type '(string))
354
355(defcustom calc-embedded-open-close-new-formula-alist
356 nil
357 "Alist of major modes with pairs of new formula delimiters used by calc-embedded."
358 :group 'calc
359 :type '(alist :key-type (symbol :tag "Major mode")
360 :value-type (list (string :tag "Opening new formula delimiter")
361 (string :tag "Closing new formula delimiter"))))
362
363(defcustom calc-embedded-open-mode
364 "% "
365 "A string which should precede calc-embedded mode annotations.
366This is not required to be present for user-written mode annotations."
367 :group 'calc
368 :type '(string))
369
370(defcustom calc-embedded-close-mode
371 "\n"
372 "A string which should follow calc-embedded mode annotations.
373This is not required to be present for user-written mode annotations."
374 :group 'calc
375 :type '(string))
376
377(defcustom calc-embedded-open-close-mode-alist
378 '((c++-mode "// " "\n")
379 (c-mode "/* " " */\n")
380 (f90-mode "! " "\n")
381 (fortran-mode "C " "\n")
382 (html-helper-mode "<!-- " " -->\n")
383 (html-mode "<!-- " " -->\n")
384 (nroff-mode "\\\" " "\n")
385 (pascal-mode "{ " " }\n")
386 (sgml-mode "<!-- " " -->\n")
387 (xml-mode "<!-- " " -->\n")
388 (texinfo-mode "@c " "\n"))
389 "Alist of major modes with pairs of strings to delimit annotations."
390 :group 'calc
391 :type '(alist :key-type (symbol :tag "Major mode")
392 :value-type (list (string :tag "Opening annotation delimiter")
393 (string :tag "Closing annotation delimiter"))))
394
395(defcustom calc-gnuplot-name
396 "gnuplot"
397 "Name of GNUPLOT program, for calc-graph features."
398 :group 'calc
399 :type '(string))
400
401(defcustom calc-gnuplot-plot-command
402 nil
403 "Name of command for displaying GNUPLOT output; %s = file name to print."
404 :group 'calc
405 :type '(choice (string) (sexp)))
406
407(defcustom calc-gnuplot-print-command
408 "lp %s"
409 "Name of command for printing GNUPLOT output; %s = file name to print."
410 :group 'calc
411 :type '(choice (string) (sexp)))
412
413(defcustom calc-multiplication-has-precedence
414 t
415 "If non-nil, multiplication has precedence over division
416in normal mode."
417 :group 'calc
418 :type 'boolean)
419
420(defvar calc-bug-address "jay.p.belanger@gmail.com"
421 "Address of the maintainer of Calc, for use by `report-calc-bug'.")
422
423(defvar calc-scan-for-dels t
424 "If t, scan keymaps to find all DEL-like keys.
425if nil, only DEL itself is mapped to calc-pop.")
426
427(defvar calc-stack '((top-of-stack 1 nil))
428 "Calculator stack.
429Entries are 3-lists: Formula, Height (in lines), Selection (or nil).")
430
431(defvar calc-stack-top 1
432 "Index into `calc-stack' of \"top\" of stack.
433This is 1 unless `calc-truncate-stack' has been used.")
434
435(defvar calc-display-sci-high 0
436 "Floating-point numbers with this positive exponent or higher above the
437current precision are displayed in scientific notation in calc-mode.")
438
439(defvar calc-display-sci-low -3
440 "Floating-point numbers with this negative exponent or lower are displayed
441scientific notation in calc-mode.")
442
443(defvar calc-other-modes nil
444 "List of used-defined strings to append to Calculator mode line.")
445
446(defvar calc-Y-help-msgs nil
447 "List of strings for Y prefix help.")
448
449(defvar calc-loaded-settings-file nil
450 "t if `calc-settings-file' has been loaded yet.")
451
452
453(defvar calc-mode-var-list '()
454 "List of variables used in customizing GNU Calc.")
455
456(defmacro defcalcmodevar (var defval &optional doc)
457 "Declare VAR as a Calc variable, with default value DEFVAL
458and doc-string DOC.
459The variable VAR will be added to `calc-mode-var-list'."
460 `(progn
461 (defvar ,var ,defval ,doc)
462 (add-to-list 'calc-mode-var-list (list (quote ,var) ,defval))))
463
464(defun calc-mode-var-list-restore-default-values ()
465 "Restore the default values of the variables in `calc-mode-var-list'."
466 (mapcar (function (lambda (v) (set (car v) (nth 1 v))))
467 calc-mode-var-list))
468
469(defun calc-mode-var-list-restore-saved-values ()
470 "Restore the user-saved values of the variables in `calc-mode-var-list'."
471 (let ((newvarlist '()))
472 (save-excursion
473 (let (pos
474 (file (substitute-in-file-name calc-settings-file)))
475 (when (and
476 (file-regular-p file)
477 (set-buffer (find-file-noselect file))
478 (goto-char (point-min))
479 (search-forward ";;; Mode settings stored by Calc" nil t)
480 (progn
481 (forward-line 1)
482 (setq pos (point))
483 (search-forward "\n;;; End of mode settings" nil t)))
484 (beginning-of-line)
485 (calc-mode-var-list-restore-default-values)
486 (eval-region pos (point))
487 (let ((varlist calc-mode-var-list))
488 (while varlist
489 (let ((var (car varlist)))
490 (setq newvarlist
491 (cons (list (car var) (symbol-value (car var)))
492 newvarlist)))
493 (setq varlist (cdr varlist)))))))
494 (if newvarlist
495 (mapcar (function (lambda (v) (set (car v) (nth 1 v))))
496 newvarlist)
497 (calc-mode-var-list-restore-default-values))))
498
499(defcalcmodevar calc-always-load-extensions nil
500 "If non-nil, load the calc-ext module automatically when Calc is loaded.")
501
502(defcalcmodevar calc-line-numbering t
503 "If non-nil, display line numbers in Calculator stack.")
504
505(defcalcmodevar calc-line-breaking t
506 "If non-nil, break long values across multiple lines in Calculator stack.")
507
508(defcalcmodevar calc-display-just nil
509 "If nil, stack display is left-justified.
510If `right', stack display is right-justified.
511If `center', stack display is centered.")
512
513(defcalcmodevar calc-display-origin nil
514 "Horizontal origin of displayed stack entries.
515In left-justified mode, this is effectively indentation. (Default 0).
516In right-justified mode, this is effectively window width.
517In centered mode, center of stack entry is placed here.")
518
519(defcalcmodevar calc-number-radix 10
520 "Radix for entry and display of numbers in calc-mode, 2-36.")
521
522(defcalcmodevar calc-leading-zeros nil
523 "If non-nil, leading zeros are provided to pad integers to calc-word-size.")
524
525(defcalcmodevar calc-group-digits nil
526 "If non-nil, group digits in large displayed integers by inserting spaces.
527If an integer, group that many digits at a time.
528If t, use 4 for binary and hex, 3 otherwise.")
529
530(defcalcmodevar calc-group-char ","
531 "The character (in the form of a string) to be used for grouping digits.
532This is used only when calc-group-digits mode is on.")
533
534(defcalcmodevar calc-point-char "."
535 "The character (in the form of a string) to be used as a decimal point.")
536
537(defcalcmodevar calc-frac-format '(":" nil)
538 "Format of displayed fractions; a string of one or two of \":\" or \"/\".")
539
540(defcalcmodevar calc-prefer-frac nil
541 "If non-nil, prefer fractional over floating-point results.")
542
543(defcalcmodevar calc-hms-format "%s@ %s' %s\""
544 "Format of displayed hours-minutes-seconds angles, a format string.
545String must contain three %s marks for hours, minutes, seconds respectively.")
546
547(defcalcmodevar calc-date-format '((H ":" mm C SS pp " ")
548 Www " " Mmm " " D ", " YYYY)
549 "Format of displayed date forms.")
550
551(defcalcmodevar calc-float-format '(float 0)
552 "Format to use for display of floating-point numbers in calc-mode.
553Must be a list of one of the following forms:
554 (float 0) Floating point format, display full precision.
555 (float N) N > 0: Floating point format, at most N significant figures.
556 (float -N) -N < 0: Floating point format, calc-internal-prec - N figs.
557 (fix N) N >= 0: Fixed point format, N places after decimal point.
558 (sci 0) Scientific notation, full precision.
559 (sci N) N > 0: Scientific notation, N significant figures.
560 (sci -N) -N < 0: Scientific notation, calc-internal-prec - N figs.
561 (eng 0) Engineering notation, full precision.
562 (eng N) N > 0: Engineering notation, N significant figures.
563 (eng -N) -N < 0: Engineering notation, calc-internal-prec - N figs.")
564
565(defcalcmodevar calc-full-float-format '(float 0)
566 "Format to use when full precision must be displayed.")
567
568(defcalcmodevar calc-complex-format nil
569 "Format to use for display of complex numbers in calc-mode. Must be one of:
570 nil Use (x, y) form.
571 i Use x + yi form.
572 j Use x + yj form.")
573
574(defcalcmodevar calc-complex-mode 'cplx
575 "Preferred form, either `cplx' or `polar', for complex numbers.")
576
577(defcalcmodevar calc-infinite-mode nil
578 "If nil, 1 / 0 is left unsimplified.
579If 0, 1 / 0 is changed to inf (zeros are considered positive).
580Otherwise, 1 / 0 is changed to uinf (undirected infinity).")
581
582(defcalcmodevar calc-display-strings nil
583 "If non-nil, display vectors of byte-sized integers as strings.")
584
585(defcalcmodevar calc-matrix-just 'center
586 "If nil, vector elements are left-justified.
587If `right', vector elements are right-justified.
588If `center', vector elements are centered.")
589
590(defcalcmodevar calc-break-vectors nil
591 "If non-nil, display vectors one element per line.")
592
593(defcalcmodevar calc-full-vectors t
594 "If non-nil, display long vectors in full. If nil, use abbreviated form.")
595
596(defcalcmodevar calc-full-trail-vectors t
597 "If non-nil, display long vectors in full in the trail.")
598
599(defcalcmodevar calc-vector-commas ","
600 "If non-nil, separate elements of displayed vectors with this string.")
601
602(defcalcmodevar calc-vector-brackets "[]"
603 "If non-nil, surround displayed vectors with these characters.")
604
605(defcalcmodevar calc-matrix-brackets '(R O)
606 "A list of code-letter symbols that control \"big\" matrix display.
607If `R' is present, display inner brackets for matrices.
608If `O' is present, display outer brackets for matrices (above/below).
609If `C' is present, display outer brackets for matrices (centered).")
610
611(defcalcmodevar calc-language nil
612 "Language or format for entry and display of stack values. Must be one of:
613 nil Use standard Calc notation.
614 flat Use standard Calc notation, one-line format.
615 big Display formulas in 2-d notation (enter w/std notation).
616 unform Use unformatted display: add(a, mul(b,c)).
617 c Use C language notation.
618 pascal Use Pascal language notation.
619 fortran Use Fortran language notation.
620 tex Use TeX notation.
621 latex Use LaTeX notation.
622 eqn Use eqn notation.
623 yacas Use Yacas notation.
624 maxima Use Maxima notation.
625 giac Use Giac notation.
626 math Use Mathematica(tm) notation.
627 maple Use Maple notation.")
628
629(defcalcmodevar calc-language-option nil
630 "Numeric prefix argument for the command that set `calc-language'.")
631
632(defcalcmodevar calc-left-label ""
633 "Label to display at left of formula.")
634
635(defcalcmodevar calc-right-label ""
636 "Label to display at right of formula.")
637
638(defcalcmodevar calc-word-size 32
639 "Minimum number of bits per word, if any, for binary operations in calc-mode.")
640
641(defcalcmodevar calc-previous-modulo nil
642 "Most recently used value of M in a modulo form.")
643
644(defcalcmodevar calc-simplify-mode nil
645 "Type of simplification applied to results.
646If `none', results are not simplified when pushed on the stack.
647If `num', functions are simplified only when args are constant.
648If nil, only fast simplifications are applied.
649If `binary', `math-clip' is applied if appropriate.
650If `alg', `math-simplify' is applied.
651If `ext', `math-simplify-extended' is applied.
652If `units', `math-simplify-units' is applied.")
653
654(defcalcmodevar calc-auto-recompute t
655 "If non-nil, recompute evalto's automatically when necessary.")
656
657(defcalcmodevar calc-display-raw nil
658 "If non-nil, display shows unformatted Lisp exprs. (For debugging)")
659
660(defcalcmodevar calc-internal-prec 12
661 "Number of digits of internal precision for calc-mode calculations.")
662
663(defcalcmodevar calc-angle-mode 'deg
664 "If deg, angles are in degrees; if rad, angles are in radians.
665If hms, angles are in degrees-minutes-seconds.")
666
667(defcalcmodevar calc-algebraic-mode nil
668 "If non-nil, numeric entry accepts whole algebraic expressions.
669If nil, algebraic expressions must be preceded by \"'\".")
670
671(defcalcmodevar calc-incomplete-algebraic-mode nil
672 "Like calc-algebraic-mode except only affects ( and [ keys.")
673
674(defcalcmodevar calc-symbolic-mode nil
675 "If non-nil, inexact numeric computations like sqrt(2) are postponed.
676If nil, computations on numbers always yield numbers where possible.")
677
678(defcalcmodevar calc-matrix-mode nil
679 "If `matrix', variables are assumed to be matrix-valued.
680If a number, variables are assumed to be NxN matrices.
681If `sqmatrix', variables are assumed to be square matrices of an unspecified size.
682If `scalar', variables are assumed to be scalar-valued.
683If nil, symbolic math routines make no assumptions about variables.")
684
685(defcalcmodevar calc-shift-prefix nil
686 "If non-nil, shifted letter keys are prefix keys rather than normal meanings.")
687
688(defcalcmodevar calc-window-height 7
689 "Initial height of Calculator window.")
690
691(defcalcmodevar calc-display-trail t
692 "If non-nil, M-x calc creates a window to display Calculator trail.")
693
694(defcalcmodevar calc-show-selections t
695 "If non-nil, selected sub-formulas are shown by obscuring rest of formula.
696If nil, selected sub-formulas are highlighted by obscuring the sub-formulas.")
697
698(defcalcmodevar calc-use-selections t
699 "If non-nil, commands operate only on selected portions of formulas.
700If nil, selections displayed but ignored.")
701
702(defcalcmodevar calc-assoc-selections t
703 "If non-nil, selection hides deep structure of associative formulas.")
704
705(defcalcmodevar calc-display-working-message 'lots
706 "If non-nil, display \"Working...\" for potentially slow Calculator commands.")
707
708(defcalcmodevar calc-auto-why 'maybe
709 "If non-nil, automatically execute a \"why\" command to explain odd results.")
710
711(defcalcmodevar calc-timing nil
712 "If non-nil, display timing information on each slow command.")
713
714(defcalcmodevar calc-mode-save-mode 'local)
715
716(defcalcmodevar calc-standard-date-formats
717 '("N"
718 "<H:mm:SSpp >Www Mmm D, YYYY"
719 "D Mmm YYYY<, h:mm:SS>"
720 "Www Mmm BD< hh:mm:ss> YYYY"
721 "M/D/Y< H:mm:SSpp>"
722 "D.M.Y< h:mm:SS>"
723 "M-D-Y< H:mm:SSpp>"
724 "D-M-Y< h:mm:SS>"
725 "j<, h:mm:SS>"
726 "YYddd< hh:mm:ss>"))
727
728(defcalcmodevar calc-autorange-units nil
729 "If non-nil, automatically set unit prefixes to keep units in a reasonable range.")
730
731(defcalcmodevar calc-was-keypad-mode nil
732 "Non-nil if Calc was last invoked in keypad mode.")
733
734(defcalcmodevar calc-full-mode nil
735 "Non-nil if Calc was last invoked in full-screen mode.")
736
737(defcalcmodevar calc-user-parse-tables nil
738 "Alist of languages with user-defined parse rules.")
739
740(defcalcmodevar calc-gnuplot-default-device "default"
741 "The default device name for GNUPLOT plotting.")
742
743(defcalcmodevar calc-gnuplot-default-output "STDOUT"
744 "The default output file for GNUPLOT plotting.")
745
746(defcalcmodevar calc-gnuplot-print-device "postscript"
747 "The default device name for GNUPLOT printing.")
748
749(defcalcmodevar calc-gnuplot-print-output "auto"
750 "The default output for GNUPLOT printing.")
751
752(defcalcmodevar calc-gnuplot-geometry nil
753 "The default geometry for the GNUPLOT window.")
754
755(defcalcmodevar calc-graph-default-resolution 15
756 "The default number of data points when plotting curves.")
757
758(defcalcmodevar calc-graph-default-resolution-3d 5
759 "The default number of x- and y- data points when plotting surfaces.")
760
761(defcalcmodevar calc-invocation-macro nil
762 "A user defined macro for starting Calc.
763Used by `calc-user-invocation'.")
764
765(defcalcmodevar calc-show-banner t
766 "*If non-nil, show a friendly greeting above the stack.")
767
768(defconst calc-local-var-list '(calc-stack
769 calc-stack-top
770 calc-undo-list
771 calc-redo-list
772 calc-always-load-extensions
773 calc-mode-save-mode
774 calc-display-raw
775 calc-line-numbering
776 calc-line-breaking
777 calc-display-just
778 calc-display-origin
779 calc-left-label
780 calc-right-label
781 calc-auto-why
782 calc-algebraic-mode
783 calc-incomplete-algebraic-mode
784 calc-symbolic-mode
785 calc-matrix-mode
786 calc-inverse-flag
787 calc-hyperbolic-flag
788 calc-keep-args-flag
789 calc-angle-mode
790 calc-number-radix
791 calc-leading-zeros
792 calc-group-digits
793 calc-group-char
794 calc-point-char
795 calc-frac-format
796 calc-prefer-frac
797 calc-hms-format
798 calc-date-format
799 calc-standard-date-formats
800 calc-float-format
801 calc-full-float-format
802 calc-complex-format
803 calc-matrix-just
804 calc-full-vectors
805 calc-full-trail-vectors
806 calc-break-vectors
807 calc-vector-commas
808 calc-vector-brackets
809 calc-matrix-brackets
810 calc-complex-mode
811 calc-infinite-mode
812 calc-display-strings
813 calc-simplify-mode
814 calc-auto-recompute
815 calc-autorange-units
816 calc-show-plain
817 calc-show-selections
818 calc-use-selections
819 calc-assoc-selections
820 calc-word-size
821 calc-internal-prec))
822
823(defvar calc-mode-hook nil
824 "Hook run when entering calc-mode.")
825
826(defvar calc-trail-mode-hook nil
827 "Hook run when entering calc-trail-mode.")
828
829(defvar calc-start-hook nil
830 "Hook run when calc is started.")
831
832(defvar calc-end-hook nil
833 "Hook run when calc is quit.")
834
835(defvar calc-load-hook nil
836 "Hook run when calc.el is loaded.")
837
838(defvar calc-window-hook nil
839 "Hook called to create the Calc window.")
840
841(defvar calc-trail-window-hook nil
842 "Hook called to create the Calc trail window.")
843
844(defvar calc-embedded-new-buffer-hook nil
845 "Hook run when starting embedded mode in a new buffer.")
846
847(defvar calc-embedded-new-formula-hook nil
848 "Hook run when starting embedded mode in a new formula.")
849
850(defvar calc-embedded-mode-hook nil
851 "Hook run when starting embedded mode.")
852
853;; Set up the autoloading linkage.
854(let ((name (and (fboundp 'calc-dispatch)
855 (eq (car-safe (symbol-function 'calc-dispatch)) 'autoload)
856 (nth 1 (symbol-function 'calc-dispatch))))
857 (p load-path))
858
859 ;; If Calc files exist on the load-path, we're all set.
860 (while (and p (not (file-exists-p
861 (expand-file-name "calc-misc.elc" (car p)))))
862 (setq p (cdr p)))
863 (or p
864
865 ;; If Calc is autoloaded using a path name, look there for Calc files.
866 ;; This works for both relative ("calc/calc.elc") and absolute paths.
867 (and name (file-name-directory name)
868 (let ((p2 load-path)
869 (name2 (concat (file-name-directory name)
870 "calc-misc.elc")))
871 (while (and p2 (not (file-exists-p
872 (expand-file-name name2 (car p2)))))
873 (setq p2 (cdr p2)))
874 (when p2
875 (setq load-path (nconc load-path
876 (list
877 (directory-file-name
878 (file-name-directory
879 (expand-file-name
880 name (car p2))))))))))))
881
882;; The following modes use specially-formatted data.
883(put 'calc-mode 'mode-class 'special)
884(put 'calc-trail-mode 'mode-class 'special)
885
886;; Define "inexact-result" as an e-lisp error symbol.
887(put 'inexact-result 'error-conditions '(error inexact-result calc-error))
888(put 'inexact-result 'error-message "Calc internal error (inexact-result)")
889
890;; Define "math-overflow" and "math-underflow" as e-lisp error symbols.
891(put 'math-overflow 'error-conditions '(error math-overflow calc-error))
892(put 'math-overflow 'error-message "Floating-point overflow occurred")
893(put 'math-underflow 'error-conditions '(error math-underflow calc-error))
894(put 'math-underflow 'error-message "Floating-point underflow occurred")
895
896(defvar calc-trail-pointer nil
897 "The \"current\" entry in trail buffer.")
898(defvar calc-trail-overlay nil
899 "The value of overlay-arrow-string.")
900(defvar calc-undo-list nil
901 "The list of previous operations for undo.")
902(defvar calc-redo-list nil
903 "The list of recent undo operations.")
904(defvar calc-main-buffer nil
905 "A pointer to Calculator buffer.")
906(defvar calc-trail-buffer nil
907 "A pointer to Calc Trail buffer.")
908(defvar calc-why nil
909 "Explanations of most recent errors.")
910(defvar calc-next-why nil)
911(defvar calc-inverse-flag nil
912 "If non-nil, next operation is Inverse.")
913(defvar calc-hyperbolic-flag nil
914 "If non-nil, next operation is Hyperbolic.")
915(defvar calc-keep-args-flag nil
916 "If non-nil, next operation should not remove its arguments from stack.")
917(defvar calc-function-open "("
918 "Open-parenthesis string for function call notation.")
919(defvar calc-function-close ")"
920 "Close-parenthesis string for function call notation.")
921(defvar calc-language-output-filter nil
922 "Function through which to pass strings after formatting.")
923(defvar calc-language-input-filter nil
924 "Function through which to pass strings before parsing.")
925(defvar calc-radix-formatter nil
926 "Formatting function used for non-decimal numbers.")
927(defvar calc-lang-slash-idiv nil
928 "A list of languages in which / might represent integer division.")
929(defvar calc-lang-allow-underscores nil
930 "A list of languages which allow underscores in variable names.")
931(defvar calc-lang-allow-percentsigns nil
932 "A list of languages which allow percent signs in variable names.")
933(defvar calc-lang-c-type-hex nil
934 "Languages in which octal and hex numbers are written with leading 0 and 0x,")
935(defvar calc-lang-brackets-are-subscripts nil
936 "Languages in which subscripts are indicated by brackets.")
937(defvar calc-lang-parens-are-subscripts nil
938 "Languages in which subscripts are indicated by parentheses.")
939
940(defvar calc-last-kill nil
941 "The last number killed in calc-mode.")
942(defvar calc-dollar-values nil
943 "Values to be used for '$'.")
944(defvar calc-dollar-used nil
945 "The highest order of '$' that occurred.")
946(defvar calc-hashes-used nil
947 "The highest order of '#' that occurred.")
948(defvar calc-quick-prev-results nil
949 "Previous results from Quick Calc.")
950(defvar calc-said-hello nil
951 "Non-nil if the welcomd message has been displayed.")
952(defvar calc-executing-macro nil
953 "Non-nil if a keyboard macro is executing from the \"K\" key.")
954(defvar calc-any-selections nil
955 "Non-nil if there are selections present.")
956(defvar calc-help-phase 0
957 "The number of consecutive \"?\" keystrokes.")
958(defvar calc-full-help-flag nil
959 "Non-nil if `calc-full-help' is being executed.")
960(defvar calc-refresh-count 0
961 "The number of `calc-refresh' calls.")
962(defvar calc-display-dirty nil
963 "Non-nil if the stack display might not reflect the latest mode settings.")
964(defvar calc-prepared-composition nil)
965(defvar calc-selection-cache-default-entry nil)
966(defvar calc-embedded-info nil
967 "If non-nil, a vector consisting of information for embedded mode.")
968(defvar calc-embedded-active nil
969 "Alist of buffers with sorted lists of calc-embedded-infos.")
970(defvar calc-standalone-flag nil
971 "Non-nil if Emacs started with standalone Calc.")
972(defvar var-EvalRules nil
973 "User defined rules that Calc will apply automatically.")
974(defvar math-eval-rules-cache-tag t)
975(defvar math-radix-explicit-format t)
976(defvar math-expr-function-mapping nil
977 "Alist of language specific functions with Calc functions.")
978(defvar math-expr-variable-mapping nil
979 "Alist of language specific variables with Calc variables.")
980(defvar math-read-expr-quotes nil)
981(defvar math-working-step nil)
982(defvar math-working-step-2 nil)
983(defvar var-i '(special-const (math-imaginary 1)))
984(defvar var-pi '(special-const (math-pi)))
985(defvar var-e '(special-const (math-e)))
986(defvar var-phi '(special-const (math-phi)))
987(defvar var-gamma '(special-const (math-gamma-const)))
988(defvar var-Modes '(special-const (math-get-modes-vec)))
989
990(mapc (lambda (v) (or (boundp v) (set v nil)))
991 calc-local-var-list)
992
993(defvar calc-mode-map
994 (let ((map (make-keymap)))
995 (suppress-keymap map t)
996 (define-key map "+" 'calc-plus)
997 (define-key map "-" 'calc-minus)
998 (define-key map "*" 'calc-times)
999 (define-key map "/" 'calc-divide)
1000 (define-key map "%" 'calc-mod)
1001 (define-key map "&" 'calc-inv)
1002 (define-key map "^" 'calc-power)
1003 (define-key map "\M-%" 'calc-percent)
1004 (define-key map "e" 'calcDigit-start)
1005 (define-key map "i" 'calc-info)
1006 (define-key map "n" 'calc-change-sign)
1007 (define-key map "q" 'calc-quit)
1008 (define-key map "Y" 'nil)
1009 (define-key map "Y?" 'calc-shift-Y-prefix-help)
1010 (define-key map "?" 'calc-help)
1011 (define-key map " " 'calc-enter)
1012 (define-key map "'" 'calc-algebraic-entry)
1013 (define-key map "$" 'calc-auto-algebraic-entry)
1014 (define-key map "\"" 'calc-auto-algebraic-entry)
1015 (define-key map "\t" 'calc-roll-down)
1016 (define-key map "\M-\t" 'calc-roll-up)
1017 (define-key map "\C-m" 'calc-enter)
1018 (define-key map "\M-\C-m" 'calc-last-args-stub)
1019 (define-key map "\C-j" 'calc-over)
1020 (define-key map "\C-y" 'calc-yank)
1021 (define-key map [mouse-2] 'calc-yank)
1022
1023 (mapc (lambda (x) (define-key map (char-to-string x) 'undefined))
1024 "lOW")
1025 (mapc (lambda (x) (define-key map (char-to-string x) 'calc-missing-key))
1026 (concat "ABCDEFGHIJKLMNPQRSTUVXZabcdfghjkmoprstuvwxyz"
1027 ":\\|!()[]<>{},;=~`\C-k\C-w\C-_"))
1028 (define-key map "\M-w" 'calc-missing-key)
1029 (define-key map "\M-k" 'calc-missing-key)
1030 (define-key map "\M-\C-w" 'calc-missing-key)
1031 (mapc (lambda (x) (define-key map (char-to-string x) 'calcDigit-start))
1032 "_0123456789.#@")
1033 map)
1034 "The key map for Calc.")
1035
1036
1037
1038(defvar calc-digit-map
1039 (let ((map (make-keymap)))
1040 (if (featurep 'xemacs)
1041 (map-keymap (function
1042 (lambda (keys bind)
1043 (define-key map keys
1044 (if (eq bind 'undefined)
1045 'undefined 'calcDigit-nondigit))))
1046 calc-mode-map)
1047 (let ((cmap (nth 1 calc-mode-map))
1048 (dmap (nth 1 map))
1049 (i 0))
1050 (while (< i 128)
1051 (aset dmap i
1052 (if (eq (aref cmap i) 'undefined)
1053 'undefined 'calcDigit-nondigit))
1054 (setq i (1+ i)))))
1055 (mapc (lambda (x) (define-key map (char-to-string x) 'calcDigit-key))
1056 "_0123456789.e+-:n#@oh'\"mspM")
1057 (mapc (lambda (x) (define-key map (char-to-string x) 'calcDigit-letter))
1058 "abcdfgijklqrtuvwxyzABCDEFGHIJKLNOPQRSTUVWXYZ")
1059 (define-key map "'" 'calcDigit-algebraic)
1060 (define-key map "`" 'calcDigit-edit)
1061 (define-key map "\C-g" 'abort-recursive-edit)
1062 map)
1063 "The key map for entering Calc digits.")
1064
1065(mapc (lambda (x)
1066 (condition-case err
1067 (progn
1068 (define-key calc-digit-map x 'calcDigit-backspace)
1069 (define-key calc-mode-map x 'calc-pop)
1070 (define-key calc-mode-map
1071 (if (vectorp x)
1072 (if (featurep 'xemacs)
1073 (if (= (length x) 1)
1074 (vector (if (consp (aref x 0))
1075 (cons 'meta (aref x 0))
1076 (list 'meta (aref x 0))))
1077 "\e\C-d")
1078 (vconcat "\e" x))
1079 (concat "\e" x))
1080 'calc-pop-above))
1081 (error nil)))
1082 (if calc-scan-for-dels
1083 (append (where-is-internal 'delete-backward-char global-map)
1084 (where-is-internal 'backward-delete-char global-map)
1085 (where-is-internal 'backward-delete-char-untabify global-map)
1086 '("\C-d"))
1087 '("\177" "\C-d")))
1088
1089(defvar calc-dispatch-map
1090 (let ((map (make-keymap)))
1091 (mapc (lambda (x)
1092 (let* ((x-chr (car x))
1093 (x-str (char-to-string x-chr))
1094 (x-def (cdr x)))
1095 (define-key map x-str x-def)
1096 (when (string-match "[a-z]" x-str)
1097 ;; Map upper case char to same definition.
1098 (define-key map (upcase x-str) x-def)
1099 (unless (string-match "[gmv]" x-str)
1100 ;; Map control prefixed char to same definition.
1101 (define-key map (vector (list 'control x-chr)) x-def)))
1102 (define-key map (format "\e%c" x-chr) x-def)))
1103 '( ( ?a . calc-embedded-activate )
1104 ( ?b . calc-big-or-small )
1105 ( ?c . calc )
1106 ( ?d . calc-embedded-duplicate )
1107 ( ?e . calc-embedded )
1108 ( ?f . calc-embedded-new-formula )
1109 ( ?g . calc-grab-region )
1110 ( ?h . calc-dispatch-help )
1111 ( ?i . calc-info )
1112 ( ?j . calc-embedded-select )
1113 ( ?k . calc-keypad )
1114 ( ?l . calc-load-everything )
1115 ( ?m . read-kbd-macro )
1116 ( ?n . calc-embedded-next )
1117 ( ?o . calc-other-window )
1118 ( ?p . calc-embedded-previous )
1119 ( ?q . quick-calc )
1120 ( ?r . calc-grab-rectangle )
1121 ( ?s . calc-info-summary )
1122 ( ?t . calc-tutorial )
1123 ( ?u . calc-embedded-update-formula )
1124 ( ?w . calc-embedded-word )
1125 ( ?x . calc-quit )
1126 ( ?y . calc-copy-to-buffer )
1127 ( ?z . calc-user-invocation )
1128 ( ?\' . calc-embedded-new-formula )
1129 ( ?\` . calc-embedded-edit )
1130 ( ?: . calc-grab-sum-down )
1131 ( ?_ . calc-grab-sum-across )
1132 ( ?0 . calc-reset )
1133 ( ?? . calc-dispatch-help )
1134 ( ?# . calc-same-interface )
1135 ( ?& . calc-same-interface )
1136 ( ?\\ . calc-same-interface )
1137 ( ?= . calc-same-interface )
1138 ( ?* . calc-same-interface )
1139 ( ?/ . calc-same-interface )
1140 ( ?+ . calc-same-interface )
1141 ( ?- . calc-same-interface ) ))
1142 map)
1143 "The key map for starting Calc.")
1144
1145
1146;;;; (Autoloads here)
1147(load "calc-loaddefs.el" nil t)
1148
1149;;;###autoload (define-key ctl-x-map "*" 'calc-dispatch)
1150
1151;;;###autoload
1152(defun calc-dispatch (&optional arg)
1153 "Invoke the GNU Emacs Calculator. See `calc-dispatch-help' for details."
1154 (interactive "P")
1155; (sit-for echo-keystrokes)
1156 (condition-case err ; look for other keys bound to calc-dispatch
1157 (let ((keys (this-command-keys)))
1158 (unless (or (not (stringp keys))
1159 (string-match "\\`\C-u\\|\\`\e[-0-9#]\\|`[\M--\M-0-\M-9]" keys)
1160 (eq (lookup-key calc-dispatch-map keys) 'calc-same-interface))
1161 (when (and (string-match "\\`[\C-@-\C-_]" keys)
1162 (symbolp
1163 (lookup-key calc-dispatch-map (substring keys 0 1))))
1164 (define-key calc-dispatch-map (substring keys 0 1) nil))
1165 (define-key calc-dispatch-map keys 'calc-same-interface)))
1166 (error nil))
1167 (calc-do-dispatch arg))
1168
1169(defvar calc-dispatch-help nil)
1170(defun calc-do-dispatch (arg)
1171 "Start the Calculator."
1172 (let ((key (calc-read-key-sequence
1173 (if calc-dispatch-help
1174 "Calc options: Calc, Keypad, Quick, Embed; eXit; Info, Tutorial; Grab; ?=more"
1175 (format "%s (Type ? for a list of Calc options)"
1176 (key-description (this-command-keys))))
1177 calc-dispatch-map)))
1178 (setq key (lookup-key calc-dispatch-map key))
1179 (message "")
1180 (if key
1181 (progn
1182 (or (commandp key) (require 'calc-ext))
1183 (call-interactively key))
1184 (beep))))
1185
1186(defun calc-read-key-sequence (prompt map)
1187 "Read keys, with prompt PROMPT and keymap MAP."
1188 (let ((prompt2 (format "%s " (key-description (this-command-keys))))
1189 (glob (current-global-map))
1190 (loc (current-local-map)))
1191 (or (input-pending-p) (message "%s" prompt))
1192 (let ((key (calc-read-key t)))
1193 (calc-unread-command (cdr key))
1194 (unwind-protect
1195 (progn
1196 (use-global-map map)
1197 (use-local-map nil)
1198 (read-key-sequence nil))
1199 (use-global-map glob)
1200 (use-local-map loc)))))
1201
1202(defvar calc-alg-map) ; Defined in calc-ext.el
1203
1204(defun calc-mode ()
1205 "Calculator major mode.
1206
1207This is an RPN calculator featuring arbitrary-precision integer, rational,
1208floating-point, complex, matrix, and symbolic arithmetic.
1209
1210RPN calculation: 2 RET 3 + produces 5.
1211Algebraic style: ' 2+3 RET produces 5.
1212
1213Basic operators are +, -, *, /, ^, & (reciprocal), % (modulo), n (change-sign).
1214
1215Press ? repeatedly for more complete help. Press `h i' to read the
1216Calc manual on-line, `h s' to read the summary, or `h t' for the tutorial.
1217
1218Notations: 3.14e6 3.14 * 10^6
1219 _23 negative number -23 (or type `23 n')
1220 17:3 the fraction 17/3
1221 5:2:3 the fraction 5 and 2/3
1222 16#12C the integer 12C base 16 = 300 base 10
1223 8#177:100 the fraction 177:100 base 8 = 127:64 base 10
1224 (2, 4) complex number 2 + 4i
1225 (2; 4) polar complex number (r; theta)
1226 [1, 2, 3] vector ([[1, 2], [3, 4]] is a matrix)
1227 [1 .. 4) semi-open interval, 1 <= x < 4
1228 2 +/- 3 (p key) number with mean 2, standard deviation 3
1229 2 mod 3 (M key) number 2 computed modulo 3
1230 <1 jan 91> Date form (enter using ' key)
1231
1232
1233\\{calc-mode-map}
1234"
1235 (interactive)
1236 (mapc (function
1237 (lambda (v) (set-default v (symbol-value v)))) calc-local-var-list)
1238 (kill-all-local-variables)
1239 (use-local-map (if (eq calc-algebraic-mode 'total)
1240 (progn (require 'calc-ext) calc-alg-map) calc-mode-map))
1241 (mapc (function (lambda (v) (make-local-variable v))) calc-local-var-list)
1242 (make-local-variable 'overlay-arrow-position)
1243 (make-local-variable 'overlay-arrow-string)
1244 (add-hook 'change-major-mode-hook 'font-lock-defontify nil t)
1245 (setq truncate-lines t)
1246 (setq buffer-read-only t)
1247 (setq major-mode 'calc-mode)
1248 (setq mode-name "Calculator")
1249 (setq calc-stack-top (length (or (memq (assq 'top-of-stack calc-stack)
1250 calc-stack)
1251 (setq calc-stack (list (list 'top-of-stack
1252 1 nil))))))
1253 (setq calc-stack-top (- (length calc-stack) calc-stack-top -1))
1254 (or calc-loaded-settings-file
1255 (null calc-settings-file)
1256 (equal calc-settings-file user-init-file)
1257 (progn
1258 (setq calc-loaded-settings-file t)
1259 (load (file-name-sans-extension calc-settings-file) t))) ; t = missing-ok
1260 (let ((p command-line-args))
1261 (while p
1262 (and (equal (car p) "-f")
1263 (string-match "calc" (nth 1 p))
1264 (string-match "full" (nth 1 p))
1265 (setq calc-standalone-flag t))
1266 (setq p (cdr p))))
1267 (require 'calc-menu)
1268 (run-mode-hooks 'calc-mode-hook)
1269 (calc-refresh t)
1270 (calc-set-mode-line)
1271 (calc-check-defines))
1272
1273(defvar calc-check-defines 'calc-check-defines) ; suitable for run-hooks
1274(defun calc-check-defines ()
1275 (if (symbol-plist 'calc-define)
1276 (let ((plist (copy-sequence (symbol-plist 'calc-define))))
1277 (while (and plist (null (nth 1 plist)))
1278 (setq plist (cdr (cdr plist))))
1279 (if plist
1280 (save-excursion
1281 (require 'calc-ext)
1282 (require 'calc-macs)
1283 (set-buffer "*Calculator*")
1284 (while plist
1285 (put 'calc-define (car plist) nil)
1286 (eval (nth 1 plist))
1287 (setq plist (cdr (cdr plist))))
1288 ;; See if this has added any more calc-define properties.
1289 (calc-check-defines))
1290 (setplist 'calc-define nil)))))
1291
1292(defun calc-trail-mode (&optional buf)
1293 "Calc Trail mode.
1294This mode is used by the *Calc Trail* buffer, which records all results
1295obtained by the GNU Emacs Calculator.
1296
1297Calculator commands beginning with the `t' key are used to manipulate
1298the Trail.
1299
1300This buffer uses the same key map as the *Calculator* buffer; calculator
1301commands given here will actually operate on the *Calculator* stack."
1302 (interactive)
1303 (fundamental-mode)
1304 (use-local-map calc-mode-map)
1305 (setq major-mode 'calc-trail-mode)
1306 (setq mode-name "Calc Trail")
1307 (setq truncate-lines t)
1308 (setq buffer-read-only t)
1309 (make-local-variable 'overlay-arrow-position)
1310 (make-local-variable 'overlay-arrow-string)
1311 (when buf
1312 (set (make-local-variable 'calc-main-buffer) buf))
1313 (when (= (buffer-size) 0)
1314 (let ((buffer-read-only nil))
1315 (insert (propertize (concat "Emacs Calculator Trail\n")
1316 'font-lock-face 'italic))))
1317 (run-mode-hooks 'calc-trail-mode-hook))
1318
1319(defun calc-create-buffer ()
1320 "Create and initialize a buffer for the Calculator."
1321 (set-buffer (get-buffer-create "*Calculator*"))
1322 (or (eq major-mode 'calc-mode)
1323 (calc-mode))
1324 (setq max-lisp-eval-depth (max max-lisp-eval-depth 1000))
1325 (when calc-always-load-extensions
1326 (require 'calc-ext))
1327 (when calc-language
1328 (require 'calc-ext)
1329 (calc-set-language calc-language calc-language-option t)))
1330
1331;;;###autoload
1332(defun calc (&optional arg full-display interactive)
1333 "The Emacs Calculator. Full documentation is listed under \"calc-mode\"."
1334 (interactive "P\ni\np")
1335 (if arg
1336 (unless (eq arg 0)
1337 (require 'calc-ext)
1338 (if (= (prefix-numeric-value arg) -1)
1339 (calc-grab-region (region-beginning) (region-end) nil)
1340 (when (= (prefix-numeric-value arg) -2)
1341 (calc-keypad))))
1342 (when (get-buffer-window "*Calc Keypad*")
1343 (calc-keypad)
1344 (set-buffer (window-buffer (selected-window))))
1345 (if (eq major-mode 'calc-mode)
1346 (calc-quit)
1347 (let ((oldbuf (current-buffer)))
1348 (calc-create-buffer)
1349 (setq calc-was-keypad-mode nil)
1350 (if (or (eq full-display t)
1351 (and (null full-display) calc-full-mode))
1352 (switch-to-buffer (current-buffer) t)
1353 (if (get-buffer-window (current-buffer))
1354 (select-window (get-buffer-window (current-buffer)))
1355 (if calc-window-hook
1356 (run-hooks 'calc-window-hook)
1357 (let ((w (get-largest-window)))
1358 (if (and pop-up-windows
1359 (> (window-height w)
1360 (+ window-min-height calc-window-height 2)))
1361 (progn
1362 (setq w (split-window w
1363 (- (window-height w)
1364 calc-window-height 2)
1365 nil))
1366 (set-window-buffer w (current-buffer))
1367 (select-window w))
1368 (pop-to-buffer (current-buffer)))))))
1369 (save-excursion
1370 (set-buffer (calc-trail-buffer))
1371 (and calc-display-trail
1372 (= (window-width) (frame-width))
1373 (calc-trail-display 1 t)))
1374 (message "Welcome to the GNU Emacs Calculator! Press `?' or `h' for help, `q' to quit")
1375 (run-hooks 'calc-start-hook)
1376 (and (windowp full-display)
1377 (window-point full-display)
1378 (select-window full-display))
1379 (calc-check-defines)
1380 (when (and calc-said-hello interactive)
1381 (sit-for 2)
1382 (message ""))
1383 (setq calc-said-hello t)))))
1384
1385;;;###autoload
1386(defun full-calc (&optional interactive)
1387 "Invoke the Calculator and give it a full-sized window."
1388 (interactive "p")
1389 (calc nil t interactive))
1390
1391(defun calc-same-interface (arg)
1392 "Invoke the Calculator using the most recent interface (calc or calc-keypad)."
1393 (interactive "P")
1394 (if (and (equal (buffer-name) "*Gnuplot Trail*")
1395 (> (recursion-depth) 0))
1396 (exit-recursive-edit)
1397 (if (eq major-mode 'calc-edit-mode)
1398 (calc-edit-finish arg)
1399 (if calc-was-keypad-mode
1400 (calc-keypad)
1401 (calc arg calc-full-mode t)))))
1402
1403(defun calc-quit (&optional non-fatal interactive)
1404 "Quit the Calculator in an appropriate manner."
1405 (interactive "i\np")
1406 (and calc-standalone-flag (not non-fatal)
1407 (save-buffers-kill-emacs nil))
1408 (if (and (equal (buffer-name) "*Gnuplot Trail*")
1409 (> (recursion-depth) 0))
1410 (exit-recursive-edit))
1411 (if (eq major-mode 'calc-edit-mode)
1412 (calc-edit-cancel)
1413 (if (and interactive
1414 calc-embedded-info
1415 (eq (current-buffer) (aref calc-embedded-info 0)))
1416 (calc-embedded nil)
1417 (unless (eq major-mode 'calc-mode)
1418 (calc-create-buffer))
1419 (run-hooks 'calc-end-hook)
1420 (setq calc-undo-list nil calc-redo-list nil)
1421 (mapc (function (lambda (v) (set-default v (symbol-value v))))
1422 calc-local-var-list)
1423 (let ((buf (current-buffer))
1424 (win (get-buffer-window (current-buffer)))
1425 (kbuf (get-buffer "*Calc Keypad*")))
1426 (delete-windows-on (calc-trail-buffer))
1427 ;; The next few lines will set `calc-window-height' so that the
1428 ;; next time Calc is called, the window will be the same size
1429 ;; as the current window.
1430 (if (and win
1431 (< (window-height win) (1- (frame-height)))
1432 (window-full-width-p win) ; avoid calc-keypad
1433 (not (get-buffer-window "*Calc Keypad*")))
1434 (setq calc-window-height (- (window-height win) 2)))
1435 (progn
1436 (delete-windows-on buf)
1437 (and kbuf (delete-windows-on kbuf)))
1438 (bury-buffer buf)
1439 (bury-buffer calc-trail-buffer)
1440 (and kbuf (bury-buffer kbuf))))))
1441
1442;;;###autoload
1443(defun quick-calc ()
1444 "Do a quick calculation in the minibuffer without invoking full Calculator."
1445 (interactive)
1446 (calc-do-quick-calc))
1447
1448;;;###autoload
1449(defun calc-eval (str &optional separator &rest args)
1450 "Do a quick calculation and return the result as a string.
1451Return value will either be the formatted result in string form,
1452or a list containing a character position and an error message in string form."
1453 (calc-do-calc-eval str separator args))
1454
1455;;;###autoload
1456(defun calc-keypad (&optional interactive)
1457 "Invoke the Calculator in \"visual keypad\" mode.
1458This is most useful in the X window system.
1459In this mode, click on the Calc \"buttons\" using the left mouse button.
1460Or, position the cursor manually and do M-x calc-keypad-press."
1461 (interactive "p")
1462 (require 'calc-ext)
1463 (calc-do-keypad calc-full-mode interactive))
1464
1465;;;###autoload
1466(defun full-calc-keypad (&optional interactive)
1467 "Invoke the Calculator in full-screen \"visual keypad\" mode.
1468See calc-keypad for details."
1469 (interactive "p")
1470 (require 'calc-ext)
1471 (calc-do-keypad t interactive))
1472
1473
1474(defvar calc-aborted-prefix nil)
1475(defvar calc-start-time nil)
1476(defvar calc-command-flags)
1477(defvar calc-final-point-line)
1478(defvar calc-final-point-column)
1479;;; Note that modifications to this function may break calc-pass-errors.
1480(defun calc-do (do-body &optional do-slow)
1481 (calc-check-defines)
1482 (let* ((calc-command-flags nil)
1483 (calc-start-time (and calc-timing (not calc-start-time)
1484 (require 'calc-ext)
1485 (current-time-string)))
1486 (gc-cons-threshold (max gc-cons-threshold
1487 (if calc-timing 2000000 100000)))
1488 calc-final-point-line calc-final-point-column)
1489 (setq calc-aborted-prefix "")
1490 (unwind-protect
1491 (condition-case err
1492 (save-excursion
1493 (if calc-embedded-info
1494 (calc-embedded-select-buffer)
1495 (calc-select-buffer))
1496 (and (eq calc-algebraic-mode 'total)
1497 (require 'calc-ext)
1498 (use-local-map calc-alg-map))
1499 (when (and do-slow calc-display-working-message)
1500 (message "Working...")
1501 (calc-set-command-flag 'clear-message))
1502 (funcall do-body)
1503 (setq calc-aborted-prefix nil)
1504 (when (memq 'renum-stack calc-command-flags)
1505 (calc-renumber-stack))
1506 (when (memq 'clear-message calc-command-flags)
1507 (message "")))
1508 (error
1509 (if (and (eq (car err) 'error)
1510 (stringp (nth 1 err))
1511 (string-match "max-specpdl-size\\|max-lisp-eval-depth"
1512 (nth 1 err)))
1513 (error "Computation got stuck or ran too long. Type `M' to increase the limit")
1514 (setq calc-aborted-prefix nil)
1515 (signal (car err) (cdr err)))))
1516 (when calc-aborted-prefix
1517 (calc-record "<Aborted>" calc-aborted-prefix))
1518 (and calc-start-time
1519 (let* ((calc-internal-prec 12)
1520 (calc-date-format nil)
1521 (end-time (current-time-string))
1522 (time (if (equal calc-start-time end-time)
1523 0
1524 (math-sub
1525 (calcFunc-unixtime (math-parse-date end-time) 0)
1526 (calcFunc-unixtime (math-parse-date calc-start-time)
1527 0)))))
1528 (if (math-lessp 1 time)
1529 (calc-record time "(t)"))))
1530 (or (memq 'no-align calc-command-flags)
1531 (eq major-mode 'calc-trail-mode)
1532 (calc-align-stack-window))
1533 (and (memq 'position-point calc-command-flags)
1534 (if (eq major-mode 'calc-mode)
1535 (progn
1536 (goto-line calc-final-point-line)
1537 (move-to-column calc-final-point-column))
1538 (save-current-buffer
1539 (calc-select-buffer)
1540 (goto-line calc-final-point-line)
1541 (move-to-column calc-final-point-column))))
1542 (unless (memq 'keep-flags calc-command-flags)
1543 (save-excursion
1544 (calc-select-buffer)
1545 (setq calc-inverse-flag nil
1546 calc-hyperbolic-flag nil
1547 calc-keep-args-flag nil)))
1548 (when (memq 'do-edit calc-command-flags)
1549 (switch-to-buffer (get-buffer-create "*Calc Edit*")))
1550 (calc-set-mode-line)
1551 (when calc-embedded-info
1552 (calc-embedded-finish-command))))
1553 (identity nil)) ; allow a GC after timing is done
1554
1555
1556(defun calc-set-command-flag (f)
1557 (unless (memq f calc-command-flags)
1558 (setq calc-command-flags (cons f calc-command-flags))))
1559
1560(defun calc-select-buffer ()
1561 (or (eq major-mode 'calc-mode)
1562 (if calc-main-buffer
1563 (set-buffer calc-main-buffer)
1564 (let ((buf (get-buffer "*Calculator*")))
1565 (if buf
1566 (set-buffer buf)
1567 (error "Calculator buffer not available"))))))
1568
1569(defun calc-cursor-stack-index (&optional index)
1570 (goto-char (point-max))
1571 (forward-line (- (calc-substack-height (or index 1)))))
1572
1573(defun calc-stack-size ()
1574 (- (length calc-stack) calc-stack-top))
1575
1576(defun calc-substack-height (n)
1577 (let ((sum 0)
1578 (stack calc-stack))
1579 (setq n (+ n calc-stack-top))
1580 (while (and (> n 0) stack)
1581 (setq sum (+ sum (nth 1 (car stack)))
1582 n (1- n)
1583 stack (cdr stack)))
1584 sum))
1585
1586(defun calc-set-mode-line ()
1587 (save-excursion
1588 (calc-select-buffer)
1589 (let* ((fmt (car calc-float-format))
1590 (figs (nth 1 calc-float-format))
1591 (new-mode-string
1592 (format "Calc%s%s: %d %s %-14s"
1593 (if calc-embedded-info "Embed" "")
1594 (if (and (> (length (buffer-name)) 12)
1595 (equal (substring (buffer-name) 0 12)
1596 "*Calculator*"))
1597 (substring (buffer-name) 12)
1598 "")
1599 calc-internal-prec
1600 (capitalize (symbol-name calc-angle-mode))
1601 (concat
1602
1603 ;; Input-related modes
1604 (if (eq calc-algebraic-mode 'total) "Alg* "
1605 (if calc-algebraic-mode "Alg "
1606 (if calc-incomplete-algebraic-mode "Alg[( " "")))
1607
1608 ;; Computational modes
1609 (if calc-symbolic-mode "Symb " "")
1610 (cond ((eq calc-matrix-mode 'matrix) "Matrix ")
1611 ((integerp calc-matrix-mode)
1612 (format "Matrix%d " calc-matrix-mode))
1613 ((eq calc-matrix-mode 'sqmatrix) "SqMatrix ")
1614 ((eq calc-matrix-mode 'scalar) "Scalar ")
1615 (t ""))
1616 (if (eq calc-complex-mode 'polar) "Polar " "")
1617 (if calc-prefer-frac "Frac " "")
1618 (cond ((null calc-infinite-mode) "")
1619 ((eq calc-infinite-mode 1) "+Inf ")
1620 (t "Inf "))
1621 (cond ((eq calc-simplify-mode 'none) "NoSimp ")
1622 ((eq calc-simplify-mode 'num) "NumSimp ")
1623 ((eq calc-simplify-mode 'binary)
1624 (format "BinSimp%d " calc-word-size))
1625 ((eq calc-simplify-mode 'alg) "AlgSimp ")
1626 ((eq calc-simplify-mode 'ext) "ExtSimp ")
1627 ((eq calc-simplify-mode 'units) "UnitSimp ")
1628 (t ""))
1629
1630 ;; Display modes
1631 (cond ((= calc-number-radix 10) "")
1632 ((= calc-number-radix 2) "Bin ")
1633 ((= calc-number-radix 8) "Oct ")
1634 ((= calc-number-radix 16) "Hex ")
1635 (t (format "Radix%d " calc-number-radix)))
1636 (if calc-leading-zeros "Zero " "")
1637 (cond ((null calc-language) "")
1638 ((get calc-language 'math-lang-name)
1639 (concat (get calc-language 'math-lang-name) " "))
1640 (t (concat
1641 (capitalize (symbol-name calc-language))
1642 " ")))
1643 (cond ((eq fmt 'float)
1644 (if (zerop figs) "" (format "Norm%d " figs)))
1645 ((eq fmt 'fix) (format "Fix%d " figs))
1646 ((eq fmt 'sci)
1647 (if (zerop figs) "Sci " (format "Sci%d " figs)))
1648 ((eq fmt 'eng)
1649 (if (zerop figs) "Eng " (format "Eng%d " figs))))
1650 (cond ((not calc-display-just)
1651 (if calc-display-origin
1652 (format "Left%d " calc-display-origin) ""))
1653 ((eq calc-display-just 'right)
1654 (if calc-display-origin
1655 (format "Right%d " calc-display-origin)
1656 "Right "))
1657 (t
1658 (if calc-display-origin
1659 (format "Center%d " calc-display-origin)
1660 "Center ")))
1661 (cond ((integerp calc-line-breaking)
1662 (format "Wid%d " calc-line-breaking))
1663 (calc-line-breaking "")
1664 (t "Wide "))
1665
1666 ;; Miscellaneous other modes/indicators
1667 (if calc-assoc-selections "" "Break ")
1668 (cond ((eq calc-mode-save-mode 'save) "Save ")
1669 ((not calc-embedded-info) "")
1670 ((eq calc-mode-save-mode 'local) "Local ")
1671 ((eq calc-mode-save-mode 'edit) "LocEdit ")
1672 ((eq calc-mode-save-mode 'perm) "LocPerm ")
1673 ((eq calc-mode-save-mode 'global) "Global ")
1674 (t ""))
1675 (if calc-auto-recompute "" "Manual ")
1676 (if (and (fboundp 'calc-gnuplot-alive)
1677 (calc-gnuplot-alive)) "Graph " "")
1678 (if (and calc-embedded-info
1679 (> (calc-stack-size) 0)
1680 (calc-top 1 'sel)) "Sel " "")
1681 (if calc-display-dirty "Dirty " "")
1682 (if calc-inverse-flag "Inv " "")
1683 (if calc-hyperbolic-flag "Hyp " "")
1684 (if calc-keep-args-flag "Keep " "")
1685 (if (/= calc-stack-top 1) "Narrow " "")
1686 (apply 'concat calc-other-modes)))))
1687 (if (equal new-mode-string mode-line-buffer-identification)
1688 nil
1689 (setq mode-line-buffer-identification new-mode-string)
1690 (set-buffer-modified-p (buffer-modified-p))
1691 (and calc-embedded-info (calc-embedded-mode-line-change))))))
1692
1693(defun calc-align-stack-window ()
1694 (if (eq major-mode 'calc-mode)
1695 (progn
1696 (let ((win (get-buffer-window (current-buffer))))
1697 (if win
1698 (progn
1699 (calc-cursor-stack-index 0)
1700 (vertical-motion (- 2 (window-height win)))
1701 (set-window-start win (point)))))
1702 (calc-cursor-stack-index 0)
1703 (if (looking-at " *\\.$")
1704 (goto-char (1- (match-end 0)))))
1705 (save-excursion
1706 (calc-select-buffer)
1707 (calc-align-stack-window))))
1708
1709(defun calc-check-stack (n)
1710 (if (> n (calc-stack-size))
1711 (error "Too few elements on stack"))
1712 (if (< n 0)
1713 (error "Invalid argument")))
1714
1715(defun calc-push-list (vals &optional m sels)
1716 (while vals
1717 (if calc-executing-macro
1718 (calc-push-list-in-macro vals m sels)
1719 (save-excursion
1720 (calc-select-buffer)
1721 (let* ((val (car vals))
1722 (entry (list val 1 (car sels)))
1723 (mm (+ (or m 1) calc-stack-top)))
1724 (calc-cursor-stack-index (1- (or m 1)))
1725 (if (> mm 1)
1726 (setcdr (nthcdr (- mm 2) calc-stack)
1727 (cons entry (nthcdr (1- mm) calc-stack)))
1728 (setq calc-stack (cons entry calc-stack)))
1729 (let ((buffer-read-only nil))
1730 (insert (math-format-stack-value entry) "\n"))
1731 (calc-record-undo (list 'push mm))
1732 (calc-set-command-flag 'renum-stack))))
1733 (setq vals (cdr vals)
1734 sels (cdr sels))))
1735
1736(defun calc-pop-push-list (n vals &optional m sels)
1737 (if (and calc-any-selections (null sels))
1738 (calc-replace-selections n vals m)
1739 (calc-pop-stack n m sels)
1740 (calc-push-list vals m sels)))
1741
1742(defun calc-pop-push-record-list (n prefix vals &optional m sels)
1743 (or (and (consp vals)
1744 (or (integerp (car vals))
1745 (consp (car vals))))
1746 (and vals (setq vals (list vals)
1747 sels (and sels (list sels)))))
1748 (calc-check-stack (+ n (or m 1) -1))
1749 (if prefix
1750 (if (cdr vals)
1751 (calc-record-list vals prefix)
1752 (calc-record (car vals) prefix)))
1753 (calc-pop-push-list n vals m sels))
1754
1755(defun calc-enter-result (n prefix vals &optional m)
1756 (setq calc-aborted-prefix prefix)
1757 (if (and (consp vals)
1758 (or (integerp (car vals))
1759 (consp (car vals))))
1760 (setq vals (mapcar 'calc-normalize vals))
1761 (setq vals (calc-normalize vals)))
1762 (or (and (consp vals)
1763 (or (integerp (car vals))
1764 (consp (car vals))))
1765 (setq vals (list vals)))
1766 (if (equal vals '((nil)))
1767 (setq vals nil))
1768 (calc-pop-push-record-list n prefix vals m)
1769 (calc-handle-whys))
1770
1771(defun calc-normalize (val)
1772 (if (memq calc-simplify-mode '(nil none num))
1773 (math-normalize val)
1774 (require 'calc-ext)
1775 (calc-normalize-fancy val)))
1776
1777(defun calc-handle-whys ()
1778 (if calc-next-why
1779 (calc-do-handle-whys)))
1780
1781
1782(defun calc-pop-stack (&optional n m sel-ok) ; pop N objs at level M of stack.
1783 (or n (setq n 1))
1784 (or m (setq m 1))
1785 (or calc-keep-args-flag
1786 (let ((mm (+ m calc-stack-top)))
1787 (if (and calc-any-selections (not sel-ok)
1788 (calc-top-selected n m))
1789 (calc-sel-error))
1790 (if calc-executing-macro
1791 (calc-pop-stack-in-macro n mm)
1792 (calc-record-undo (list 'pop mm (calc-top-list n m 'full)))
1793 (save-excursion
1794 (calc-select-buffer)
1795 (let ((buffer-read-only nil))
1796 (if (> mm 1)
1797 (progn
1798 (calc-cursor-stack-index (1- m))
1799 (let ((bot (point)))
1800 (calc-cursor-stack-index (+ n m -1))
1801 (delete-region (point) bot))
1802 (setcdr (nthcdr (- mm 2) calc-stack)
1803 (nthcdr (+ n mm -1) calc-stack)))
1804 (calc-cursor-stack-index n)
1805 (setq calc-stack (nthcdr n calc-stack))
1806 (delete-region (point) (point-max))))
1807 (calc-set-command-flag 'renum-stack))))))
1808
1809(defvar sel-mode)
1810(defun calc-get-stack-element (x)
1811 (cond ((eq sel-mode 'entry)
1812 x)
1813 ((eq sel-mode 'sel)
1814 (nth 2 x))
1815 ((or (null (nth 2 x))
1816 (eq sel-mode 'full)
1817 (not calc-use-selections))
1818 (car x))
1819 (sel-mode
1820 (calc-sel-error))
1821 (t (nth 2 x))))
1822
1823;; Get the Nth element of the stack (N=1 is the top element).
1824(defun calc-top (&optional n sel-mode)
1825 (or n (setq n 1))
1826 (calc-check-stack n)
1827 (calc-get-stack-element (nth (+ n calc-stack-top -1) calc-stack)))
1828
1829(defun calc-top-n (&optional n sel-mode) ; in case precision has changed
1830 (math-check-complete (calc-normalize (calc-top n sel-mode))))
1831
1832(defun calc-top-list (&optional n m sel-mode)
1833 (or n (setq n 1))
1834 (or m (setq m 1))
1835 (calc-check-stack (+ n m -1))
1836 (and (> n 0)
1837 (let ((top (copy-sequence (nthcdr (+ m calc-stack-top -1)
1838 calc-stack))))
1839 (setcdr (nthcdr (1- n) top) nil)
1840 (nreverse (mapcar 'calc-get-stack-element top)))))
1841
1842(defun calc-top-list-n (&optional n m sel-mode)
1843 (mapcar 'math-check-complete
1844 (mapcar 'calc-normalize (calc-top-list n m sel-mode))))
1845
1846
1847(defun calc-renumber-stack ()
1848 (if calc-line-numbering
1849 (save-excursion
1850 (calc-cursor-stack-index 0)
1851 (let ((lnum 1)
1852 (buffer-read-only nil)
1853 (stack (nthcdr calc-stack-top calc-stack)))
1854 (if (re-search-forward "^[0-9]+[:*]" nil t)
1855 (progn
1856 (beginning-of-line)
1857 (while (re-search-forward "^[0-9]+[:*]" nil t)
1858 (let ((buffer-read-only nil))
1859 (beginning-of-line)
1860 (delete-char 4)
1861 (insert " ")))
1862 (calc-cursor-stack-index 0)))
1863 (while (re-search-backward "^[0-9]+[:*]" nil t)
1864 (delete-char 4)
1865 (if (> lnum 999)
1866 (insert (format "%03d%s" (% lnum 1000)
1867 (if (and (nth 2 (car stack))
1868 calc-use-selections) "*" ":")))
1869 (let ((prefix (int-to-string lnum)))
1870 (insert prefix (if (and (nth 2 (car stack))
1871 calc-use-selections) "*" ":")
1872 (make-string (- 3 (length prefix)) 32))))
1873 (beginning-of-line)
1874 (setq lnum (1+ lnum)
1875 stack (cdr stack))))))
1876 (and calc-embedded-info (calc-embedded-stack-change)))
1877
1878(defvar calc-any-evaltos nil)
1879(defun calc-refresh (&optional align)
1880 (interactive)
1881 (and (eq major-mode 'calc-mode)
1882 (not calc-executing-macro)
1883 (let* ((buffer-read-only nil)
1884 (save-point (point))
1885 (save-mark (condition-case err (mark) (error nil)))
1886 (save-aligned (looking-at "\\.$"))
1887 (thing calc-stack)
1888 (calc-any-evaltos nil))
1889 (setq calc-any-selections nil)
1890 (erase-buffer)
1891 (when calc-show-banner
1892 (insert (propertize "--- Emacs Calculator Mode ---\n"
1893 'font-lock-face 'italic)))
1894 (while thing
1895 (goto-char (point-min))
1896 (when calc-show-banner
1897 (forward-line 1))
1898 (insert (math-format-stack-value (car thing)) "\n")
1899 (setq thing (cdr thing)))
1900 (calc-renumber-stack)
1901 (if calc-display-dirty
1902 (calc-wrapper (setq calc-display-dirty nil)))
1903 (and calc-any-evaltos calc-auto-recompute
1904 (calc-wrapper (calc-refresh-evaltos)))
1905 (if (or align save-aligned)
1906 (calc-align-stack-window)
1907 (goto-char save-point))
1908 (if save-mark (set-mark save-mark))))
1909 (and calc-embedded-info (not (eq major-mode 'calc-mode))
1910 (save-excursion
1911 (set-buffer (aref calc-embedded-info 1))
1912 (calc-refresh align)))
1913 (setq calc-refresh-count (1+ calc-refresh-count)))
1914
1915;;;; The Calc Trail buffer.
1916
1917(defun calc-check-trail-aligned ()
1918 (save-excursion
1919 (let ((win (get-buffer-window (current-buffer))))
1920 (and win
1921 (pos-visible-in-window-p (1- (point-max)) win)))))
1922
1923(defun calc-trail-buffer ()
1924 (and (or (null calc-trail-buffer)
1925 (null (buffer-name calc-trail-buffer)))
1926 (save-excursion
1927 (setq calc-trail-buffer (get-buffer-create "*Calc Trail*"))
1928 (let ((buf (or (and (not (eq major-mode 'calc-mode))
1929 (get-buffer "*Calculator*"))
1930 (current-buffer))))
1931 (set-buffer calc-trail-buffer)
1932 (or (eq major-mode 'calc-trail-mode)
1933 (calc-trail-mode buf)))))
1934 (or (and calc-trail-pointer
1935 (eq (marker-buffer calc-trail-pointer) calc-trail-buffer))
1936 (save-excursion
1937 (set-buffer calc-trail-buffer)
1938 (goto-line 2)
1939 (setq calc-trail-pointer (point-marker))))
1940 calc-trail-buffer)
1941
1942(defun calc-record (val &optional prefix)
1943 (setq calc-aborted-prefix nil)
1944 (or calc-executing-macro
1945 (let* ((mainbuf (current-buffer))
1946 (buf (calc-trail-buffer))
1947 (calc-display-raw nil)
1948 (calc-can-abbrev-vectors t)
1949 (fval (if val
1950 (if (stringp val)
1951 val
1952 (math-showing-full-precision
1953 (math-format-flat-expr val 0)))
1954 "")))
1955 (save-excursion
1956 (set-buffer buf)
1957 (let ((aligned (calc-check-trail-aligned))
1958 (buffer-read-only nil))
1959 (goto-char (point-max))
1960 (cond ((null prefix) (insert " "))
1961 ((and (> (length prefix) 4)
1962 (string-match " " prefix 4))
1963 (insert (substring prefix 0 4) " "))
1964 (t (insert (format "%4s " prefix))))
1965 (insert fval "\n")
1966 (let ((win (get-buffer-window buf)))
1967 (if (and aligned win (not (memq 'hold-trail calc-command-flags)))
1968 (calc-trail-here))
1969 (goto-char (1- (point-max))))))))
1970 val)
1971
1972
1973(defun calc-trail-display (flag &optional no-refresh interactive)
1974 (interactive "P\ni\np")
1975 (let ((win (get-buffer-window (calc-trail-buffer))))
1976 (if (setq calc-display-trail
1977 (not (if flag (memq flag '(nil 0)) win)))
1978 (if (null win)
1979 (progn
1980 (if calc-trail-window-hook
1981 (run-hooks 'calc-trail-window-hook)
1982 (let ((w (split-window nil (/ (* (window-width) 2) 3) t)))
1983 (set-window-buffer w calc-trail-buffer)))
1984 (calc-wrapper
1985 (setq overlay-arrow-string calc-trail-overlay
1986 overlay-arrow-position calc-trail-pointer)
1987 (or no-refresh
1988 (if interactive
1989 (calc-do-refresh)
1990 (calc-refresh))))))
1991 (if win
1992 (progn
1993 (delete-window win)
1994 (calc-wrapper
1995 (or no-refresh
1996 (if interactive
1997 (calc-do-refresh)
1998 (calc-refresh))))))))
1999 calc-trail-buffer)
2000
2001(defun calc-trail-here ()
2002 (interactive)
2003 (if (eq major-mode 'calc-trail-mode)
2004 (progn
2005 (beginning-of-line)
2006 (if (bobp)
2007 (forward-line 1)
2008 (if (eobp)
2009 (forward-line -1)))
2010 (if (or (bobp) (eobp))
2011 (setq overlay-arrow-position nil) ; trail is empty
2012 (set-marker calc-trail-pointer (point) (current-buffer))
2013 (setq calc-trail-overlay (concat (buffer-substring (point)
2014 (+ (point) 4))
2015 ">")
2016 overlay-arrow-string calc-trail-overlay
2017 overlay-arrow-position calc-trail-pointer)
2018 (forward-char 4)
2019 (let ((win (get-buffer-window (current-buffer))))
2020 (if win
2021 (save-excursion
2022 (forward-line (/ (window-height win) 2))
2023 (forward-line (- 1 (window-height win)))
2024 (set-window-start win (point))
2025 (set-window-point win (+ calc-trail-pointer 4))
2026 (set-buffer calc-main-buffer)
2027 (setq overlay-arrow-string calc-trail-overlay
2028 overlay-arrow-position calc-trail-pointer))))))
2029 (error "Not in Calc Trail buffer")))
2030
2031
2032
2033
2034;;;; The Undo list.
2035
2036(defun calc-record-undo (rec)
2037 (or calc-executing-macro
2038 (if (memq 'undo calc-command-flags)
2039 (setq calc-undo-list (cons (cons rec (car calc-undo-list))
2040 (cdr calc-undo-list)))
2041 (setq calc-undo-list (cons (list rec) calc-undo-list)
2042 calc-redo-list nil)
2043 (calc-set-command-flag 'undo))))
2044
2045
2046
2047
2048;;; Arithmetic commands.
2049
2050(defun calc-binary-op (name func arg &optional ident unary func2)
2051 (setq calc-aborted-prefix name)
2052 (if (null arg)
2053 (calc-enter-result 2 name (cons (or func2 func)
2054 (mapcar 'math-check-complete
2055 (calc-top-list 2))))
2056 (require 'calc-ext)
2057 (calc-binary-op-fancy name func arg ident unary)))
2058
2059(defun calc-unary-op (name func arg &optional func2)
2060 (setq calc-aborted-prefix name)
2061 (if (null arg)
2062 (calc-enter-result 1 name (list (or func2 func)
2063 (math-check-complete (calc-top 1))))
2064 (require 'calc-ext)
2065 (calc-unary-op-fancy name func arg)))
2066
2067
2068(defun calc-plus (arg)
2069 (interactive "P")
2070 (calc-slow-wrapper
2071 (calc-binary-op "+" 'calcFunc-add arg 0 nil '+)))
2072
2073(defun calc-minus (arg)
2074 (interactive "P")
2075 (calc-slow-wrapper
2076 (calc-binary-op "-" 'calcFunc-sub arg 0 'neg '-)))
2077
2078(defun calc-times (arg)
2079 (interactive "P")
2080 (calc-slow-wrapper
2081 (calc-binary-op "*" 'calcFunc-mul arg 1 nil '*)))
2082
2083(defun calc-divide (arg)
2084 (interactive "P")
2085 (calc-slow-wrapper
2086 (calc-binary-op "/" 'calcFunc-div arg 0 'calcFunc-inv '/)))
2087
2088(defun calc-left-divide (arg)
2089 (interactive "P")
2090 (calc-slow-wrapper
2091 (calc-binary-op "ldiv" 'calcFunc-ldiv arg 0 nil nil)))
2092
2093(defun calc-change-sign (arg)
2094 (interactive "P")
2095 (calc-wrapper
2096 (calc-unary-op "chs" 'neg arg)))
2097
2098
2099
2100;;; Stack management commands.
2101
2102(defun calc-enter (n)
2103 (interactive "p")
2104 (calc-wrapper
2105 (cond ((< n 0)
2106 (calc-push-list (calc-top-list 1 (- n))))
2107 ((= n 0)
2108 (calc-push-list (calc-top-list (calc-stack-size))))
2109 (t
2110 (calc-push-list (calc-top-list n))))))
2111
2112
2113(defun calc-pop (n)
2114 (interactive "P")
2115 (calc-wrapper
2116 (let* ((nn (prefix-numeric-value n))
2117 (top (and (null n) (calc-top 1))))
2118 (cond ((and (null n)
2119 (eq (car-safe top) 'incomplete)
2120 (> (length top) (if (eq (nth 1 top) 'intv) 3 2)))
2121 (calc-pop-push-list 1 (let ((tt (copy-sequence top)))
2122 (setcdr (nthcdr (- (length tt) 2) tt) nil)
2123 (list tt))))
2124 ((< nn 0)
2125 (if (and calc-any-selections
2126 (calc-top-selected 1 (- nn)))
2127 (calc-delete-selection (- nn))
2128 (calc-pop-stack 1 (- nn) t)))
2129 ((= nn 0)
2130 (calc-pop-stack (calc-stack-size) 1 t))
2131 (t
2132 (if (and calc-any-selections
2133 (= nn 1)
2134 (calc-top-selected 1 1))
2135 (calc-delete-selection 1)
2136 (calc-pop-stack nn)))))))
2137
2138
2139
2140
2141;;;; Reading a number using the minibuffer.
2142(defvar calc-buffer)
2143(defvar calc-prev-char)
2144(defvar calc-prev-prev-char)
2145(defvar calc-digit-value)
2146(defun calcDigit-start ()
2147 (interactive)
2148 (calc-wrapper
2149 (if (or calc-algebraic-mode
2150 (and (> calc-number-radix 14) (eq last-command-event ?e)))
2151 (calc-alg-digit-entry)
2152 (calc-unread-command)
2153 (setq calc-aborted-prefix nil)
2154 (let* ((calc-digit-value nil)
2155 (calc-prev-char nil)
2156 (calc-prev-prev-char nil)
2157 (calc-buffer (current-buffer))
2158 (buf (if (featurep 'xemacs)
2159 (catch 'calc-foo
2160 (catch 'execute-kbd-macro
2161 (throw 'calc-foo
2162 (read-from-minibuffer
2163 "Calc: " "" calc-digit-map)))
2164 (error "XEmacs requires RET after %s"
2165 "digit entry in kbd macro"))
2166 (let ((old-esc (lookup-key global-map "\e")))
2167 (unwind-protect
2168 (progn
2169 (define-key global-map "\e" nil)
2170 (read-from-minibuffer "Calc: " "" calc-digit-map))
2171 (define-key global-map "\e" old-esc))))))
2172 (or calc-digit-value (setq calc-digit-value (math-read-number buf)))
2173 (if (stringp calc-digit-value)
2174 (calc-alg-entry calc-digit-value)
2175 (if calc-digit-value
2176 (calc-push-list (list (calc-record (calc-normalize
2177 calc-digit-value))))))
2178 (if (eq calc-prev-char 'dots)
2179 (progn
2180 (require 'calc-ext)
2181 (calc-dots)))))))
2182
2183(defsubst calc-minibuffer-size ()
2184 (- (point-max) (minibuffer-prompt-end)))
2185
2186(defun calcDigit-nondigit ()
2187 (interactive)
2188 ;; Exercise for the reader: Figure out why this is a good precaution!
2189 (or (boundp 'calc-buffer)
2190 (use-local-map minibuffer-local-map))
2191 (let ((str (minibuffer-contents)))
2192 (setq calc-digit-value (save-excursion
2193 (set-buffer calc-buffer)
2194 (math-read-number str))))
2195 (if (and (null calc-digit-value) (> (calc-minibuffer-size) 0))
2196 (progn
2197 (beep)
2198 (calc-temp-minibuffer-message " [Bad format]"))
2199 (or (memq last-command-event '(32 13))
2200 (progn (setq prefix-arg current-prefix-arg)
2201 (calc-unread-command (if (and (eq last-command-event 27)
2202 (>= last-input-event 128))
2203 last-input-event
2204 nil))))
2205 (exit-minibuffer)))
2206
2207
2208(defun calc-minibuffer-contains (rex)
2209 (save-excursion
2210 (goto-char (minibuffer-prompt-end))
2211 (looking-at rex)))
2212
2213(defun calcDigit-key ()
2214 (interactive)
2215 (goto-char (point-max))
2216 (if (or (and (memq last-command-event '(?+ ?-))
2217 (> (buffer-size) 0)
2218 (/= (preceding-char) ?e))
2219 (and (memq last-command-event '(?m ?s))
2220 (not (calc-minibuffer-contains "[-+]?[0-9]+\\.?0*[@oh].*"))
2221 (not (calc-minibuffer-contains "[-+]?\\(1[1-9]\\|[2-9][0-9]\\)#.*"))))
2222 (calcDigit-nondigit)
2223 (if (calc-minibuffer-contains "\\([-+]?\\|.* \\)\\'")
2224 (cond ((memq last-command-event '(?. ?@)) (insert "0"))
2225 ((and (memq last-command-event '(?o ?h ?m))
2226 (not (calc-minibuffer-contains ".*#.*"))) (insert "0"))
2227 ((memq last-command-event '(?: ?e)) (insert "1"))
2228 ((eq last-command-event ?#)
2229 (insert (int-to-string calc-number-radix)))))
2230 (if (and (calc-minibuffer-contains "\\([-+]?[0-9]+#\\|[^:]*:\\)\\'")
2231 (eq last-command-event ?:))
2232 (insert "1"))
2233 (if (and (calc-minibuffer-contains "[-+]?[0-9]+#\\'")
2234 (eq last-command-event ?.))
2235 (insert "0"))
2236 (if (and (calc-minibuffer-contains "[-+]?0*\\([2-9]\\|1[0-4]\\)#\\'")
2237 (eq last-command-event ?e))
2238 (insert "1"))
2239 (if (or (and (memq last-command-event '(?h ?o ?m ?s ?p))
2240 (calc-minibuffer-contains ".*#.*"))
2241 (and (eq last-command-event ?e)
2242 (calc-minibuffer-contains "[-+]?\\(1[5-9]\\|[2-9][0-9]\\)#.*"))
2243 (and (eq last-command-event ?n)
2244 (calc-minibuffer-contains "[-+]?\\(2[4-9]\\|[3-9][0-9]\\)#.*")))
2245 (setq last-command-event (upcase last-command-event)))
2246 (cond
2247 ((memq last-command-event '(?_ ?n))
2248 (goto-char (minibuffer-prompt-end))
2249 (if (and (search-forward " +/- " nil t)
2250 (not (search-forward "e" nil t)))
2251 (beep)
2252 (and (not (calc-minibuffer-contains "[-+]?\\(1[5-9]\\|[2-9][0-9]\\)#.*"))
2253 (search-forward "e" nil t))
2254 (if (looking-at "+")
2255 (delete-char 1))
2256 (if (looking-at "-")
2257 (delete-char 1)
2258 (insert "-")))
2259 (goto-char (point-max)))
2260 ((eq last-command-event ?p)
2261 (if (or (calc-minibuffer-contains ".*\\+/-.*")
2262 (calc-minibuffer-contains ".*mod.*")
2263 (calc-minibuffer-contains ".*#.*")
2264 (calc-minibuffer-contains ".*[-+e:]\\'"))
2265 (beep)
2266 (if (not (calc-minibuffer-contains ".* \\'"))
2267 (insert " "))
2268 (insert "+/- ")))
2269 ((and (eq last-command-event ?M)
2270 (not (calc-minibuffer-contains
2271 "[-+]?\\(2[3-9]\\|[3-9][0-9]\\)#.*")))
2272 (if (or (calc-minibuffer-contains ".*\\+/-.*")
2273 (calc-minibuffer-contains ".*mod *[^ ]+")
2274 (calc-minibuffer-contains ".*[-+e:]\\'"))
2275 (beep)
2276 (if (calc-minibuffer-contains ".*mod \\'")
2277 (if calc-previous-modulo
2278 (insert (math-format-flat-expr calc-previous-modulo 0))
2279 (beep))
2280 (if (not (calc-minibuffer-contains ".* \\'"))
2281 (insert " "))
2282 (insert "mod "))))
2283 (t
2284 (insert (char-to-string last-command-event))
2285 (if (or (and (calc-minibuffer-contains "[-+]?\\(.*\\+/- *\\|.*mod *\\)?\\([0-9][0-9]?\\)#[0-9a-zA-Z]*\\(:[0-9a-zA-Z]*\\(:[0-9a-zA-Z]*\\)?\\|.[0-9a-zA-Z]*\\(e[-+]?[0-9]*\\)?\\)?\\'")
2286 (let ((radix (string-to-number
2287 (buffer-substring
2288 (match-beginning 2) (match-end 2)))))
2289 (and (>= radix 2)
2290 (<= radix 36)
2291 (or (memq last-command-event '(?# ?: ?. ?e ?+ ?-))
2292 (let ((dig (math-read-radix-digit
2293 (upcase last-command-event))))
2294 (and dig
2295 (< dig radix)))))))
2296 (calc-minibuffer-contains
2297 "[-+]?\\(.*\\+/- *\\|.*mod *\\)?\\([0-9]+\\.?0*[@oh] *\\)?\\([0-9]+\\.?0*['m] *\\)?[0-9]*\\(\\.?[0-9]*\\(e[-+]?[0-3]?[0-9]?[0-9]?[0-9]?[0-9]?[0-9]?[0-9]?\\)?\\|[0-9]:\\([0-9]+:\\)?[0-9]*\\)?[\"s]?\\'"))
2298 (if (and (memq last-command-event '(?@ ?o ?h ?\' ?m))
2299 (string-match " " calc-hms-format))
2300 (insert " "))
2301 (if (and (eq this-command last-command)
2302 (eq last-command-event ?.))
2303 (progn
2304 (require 'calc-ext)
2305 (calc-digit-dots))
2306 (delete-backward-char 1)
2307 (beep)
2308 (calc-temp-minibuffer-message " [Bad format]"))))))
2309 (setq calc-prev-prev-char calc-prev-char
2310 calc-prev-char last-command-event))
2311
2312
2313(defun calcDigit-backspace ()
2314 (interactive)
2315 (goto-char (point-max))
2316 (cond ((calc-minibuffer-contains ".* \\+/- \\'")
2317 (backward-delete-char 5))
2318 ((calc-minibuffer-contains ".* mod \\'")
2319 (backward-delete-char 5))
2320 ((calc-minibuffer-contains ".* \\'")
2321 (backward-delete-char 2))
2322 ((eq last-command 'calcDigit-start)
2323 (erase-buffer))
2324 (t (backward-delete-char 1)))
2325 (if (= (calc-minibuffer-size) 0)
2326 (progn
2327 (setq last-command-event 13)
2328 (calcDigit-nondigit))))
2329
2330
2331
2332
2333(defconst math-bignum-digit-length
2334 (truncate (/ (log10 (/ most-positive-fixnum 2)) 2))
2335 "The length of a \"digit\" in Calc bignums.
2336If a big integer is of the form (bigpos N0 N1 ...), this is the
2337length of the allowable Emacs integers N0, N1,...
2338The value of 2*10^(2*MATH-BIGNUM-DIGIT-LENGTH) must be less than the
2339largest Emacs integer.")
2340
2341(defconst math-bignum-digit-size
2342 (expt 10 math-bignum-digit-length)
2343 "An upper bound for the size of the \"digit\"s in Calc bignums.")
2344
2345(defconst math-small-integer-size
2346 (expt math-bignum-digit-size 2)
2347 "An upper bound for the size of \"small integer\"s in Calc.")
2348
2349
2350;;;; Arithmetic routines.
2351;;;
2352;;; An object as manipulated by one of these routines may take any of the
2353;;; following forms:
2354;;;
2355;;; integer An integer. For normalized numbers, this format
2356;;; is used only for
2357;;; negative math-small-integer-size + 1 to
2358;;; math-small-integer-size - 1
2359;;;
2360;;; (bigpos N0 N1 N2 ...) A big positive integer,
2361;;; N0 + N1*math-bignum-digit-size
2362;;; + N2*(math-bignum-digit-size)^2 ...
2363;;; (bigneg N0 N1 N2 ...) A big negative integer,
2364;;; - N0 - N1*math-bignum-digit-size ...
2365;;; Each digit N is in the range
2366;;; 0 ... math-bignum-digit-size -1.
2367;;; Normalized, always at least three N present,
2368;;; and the most significant N is nonzero.
2369;;;
2370;;; (frac NUM DEN) A fraction. NUM and DEN are small or big integers.
2371;;; Normalized, DEN > 1.
2372;;;
2373;;; (float NUM EXP) A floating-point number, NUM * 10^EXP;
2374;;; NUM is a small or big integer, EXP is a small int.
2375;;; Normalized, NUM is not a multiple of 10, and
2376;;; abs(NUM) < 10^calc-internal-prec.
2377;;; Normalized zero is stored as (float 0 0).
2378;;;
2379;;; (cplx REAL IMAG) A complex number; REAL and IMAG are any of above.
2380;;; Normalized, IMAG is nonzero.
2381;;;
2382;;; (polar R THETA) Polar complex number. Normalized, R > 0 and THETA
2383;;; is neither zero nor 180 degrees (pi radians).
2384;;;
2385;;; (vec A B C ...) Vector of objects A, B, C, ... A matrix is a
2386;;; vector of vectors.
2387;;;
2388;;; (hms H M S) Angle in hours-minutes-seconds form. All three
2389;;; components have the same sign; H and M must be
2390;;; numerically integers; M and S are expected to
2391;;; lie in the range [0,60).
2392;;;
2393;;; (date N) A date or date/time object. N is an integer to
2394;;; store a date only, or a fraction or float to
2395;;; store a date and time.
2396;;;
2397;;; (sdev X SIGMA) Error form, X +/- SIGMA. When normalized,
2398;;; SIGMA > 0. X is any complex number and SIGMA
2399;;; is real numbers; or these may be symbolic
2400;;; expressions where SIGMA is assumed real.
2401;;;
2402;;; (intv MASK LO HI) Interval form. MASK is 0=(), 1=(], 2=[), or 3=[].
2403;;; LO and HI are any real numbers, or symbolic
2404;;; expressions which are assumed real, and LO < HI.
2405;;; For [LO..HI], if LO = HI normalization produces LO,
2406;;; and if LO > HI normalization produces [LO..LO).
2407;;; For other intervals, if LO > HI normalization
2408;;; sets HI equal to LO.
2409;;;
2410;;; (mod N M) Number modulo M. When normalized, 0 <= N < M.
2411;;; N and M are real numbers.
2412;;;
2413;;; (var V S) Symbolic variable. V is a Lisp symbol which
2414;;; represents the variable's visible name. S is
2415;;; the symbol which actually stores the variable's
2416;;; value: (var pi var-pi).
2417;;;
2418;;; In general, combining rational numbers in a calculation always produces
2419;;; a rational result, but if either argument is a float, result is a float.
2420
2421;;; In the following comments, [x y z] means result is x, args must be y, z,
2422;;; respectively, where the code letters are:
2423;;;
2424;;; O Normalized object (vector or number)
2425;;; V Normalized vector
2426;;; N Normalized number of any type
2427;;; N Normalized complex number
2428;;; R Normalized real number (float or rational)
2429;;; F Normalized floating-point number
2430;;; T Normalized rational number
2431;;; I Normalized integer
2432;;; B Normalized big integer
2433;;; S Normalized small integer
2434;;; D Digit (small integer, 0..999)
2435;;; L Normalized bignum digit list (without "bigpos" or "bigneg" symbol)
2436;;; or normalized vector element list (without "vec")
2437;;; P Predicate (truth value)
2438;;; X Any Lisp object
2439;;; Z "nil"
2440;;;
2441;;; Lower-case letters signify possibly un-normalized values.
2442;;; "L.D" means a cons of an L and a D.
2443;;; [N N; n n] means result will be normalized if argument is.
2444;;; Also, [Public] marks routines intended to be called from outside.
2445;;; [This notation has been neglected in many recent routines.]
2446
2447(defvar math-eval-rules-cache)
2448(defvar math-eval-rules-cache-other)
2449;;; Reduce an object to canonical (normalized) form. [O o; Z Z] [Public]
2450
2451(defvar math-normalize-a)
2452(defun math-normalize (math-normalize-a)
2453 (cond
2454 ((not (consp math-normalize-a))
2455 (if (integerp math-normalize-a)
2456 (if (or (>= math-normalize-a math-small-integer-size)
2457 (<= math-normalize-a (- math-small-integer-size)))
2458 (math-bignum math-normalize-a)
2459 math-normalize-a)
2460 math-normalize-a))
2461 ((eq (car math-normalize-a) 'bigpos)
2462 (if (eq (nth (1- (length math-normalize-a)) math-normalize-a) 0)
2463 (let* ((last (setq math-normalize-a
2464 (copy-sequence math-normalize-a))) (digs math-normalize-a))
2465 (while (setq digs (cdr digs))
2466 (or (eq (car digs) 0) (setq last digs)))
2467 (setcdr last nil)))
2468 (if (cdr (cdr (cdr math-normalize-a)))
2469 math-normalize-a
2470 (cond
2471 ((cdr (cdr math-normalize-a)) (+ (nth 1 math-normalize-a)
2472 (* (nth 2 math-normalize-a)
2473 math-bignum-digit-size)))
2474 ((cdr math-normalize-a) (nth 1 math-normalize-a))
2475 (t 0))))
2476 ((eq (car math-normalize-a) 'bigneg)
2477 (if (eq (nth (1- (length math-normalize-a)) math-normalize-a) 0)
2478 (let* ((last (setq math-normalize-a (copy-sequence math-normalize-a)))
2479 (digs math-normalize-a))
2480 (while (setq digs (cdr digs))
2481 (or (eq (car digs) 0) (setq last digs)))
2482 (setcdr last nil)))
2483 (if (cdr (cdr (cdr math-normalize-a)))
2484 math-normalize-a
2485 (cond
2486 ((cdr (cdr math-normalize-a)) (- (+ (nth 1 math-normalize-a)
2487 (* (nth 2 math-normalize-a)
2488 math-bignum-digit-size))))
2489 ((cdr math-normalize-a) (- (nth 1 math-normalize-a)))
2490 (t 0))))
2491 ((eq (car math-normalize-a) 'float)
2492 (math-make-float (math-normalize (nth 1 math-normalize-a))
2493 (nth 2 math-normalize-a)))
2494 ((or (memq (car math-normalize-a)
2495 '(frac cplx polar hms date mod sdev intv vec var quote
2496 special-const calcFunc-if calcFunc-lambda
2497 calcFunc-quote calcFunc-condition
2498 calcFunc-evalto))
2499 (integerp (car math-normalize-a))
2500 (and (consp (car math-normalize-a))
2501 (not (eq (car (car math-normalize-a)) 'lambda))))
2502 (require 'calc-ext)
2503 (math-normalize-fancy math-normalize-a))
2504 (t
2505 (or (and calc-simplify-mode
2506 (require 'calc-ext)
2507 (math-normalize-nonstandard))
2508 (let ((args (mapcar 'math-normalize (cdr math-normalize-a))))
2509 (or (condition-case err
2510 (let ((func
2511 (assq (car math-normalize-a) '( ( + . math-add )
2512 ( - . math-sub )
2513 ( * . math-mul )
2514 ( / . math-div )
2515 ( % . math-mod )
2516 ( ^ . math-pow )
2517 ( neg . math-neg )
2518 ( | . math-concat ) ))))
2519 (or (and var-EvalRules
2520 (progn
2521 (or (eq var-EvalRules math-eval-rules-cache-tag)
2522 (progn
2523 (require 'calc-ext)
2524 (math-recompile-eval-rules)))
2525 (and (or math-eval-rules-cache-other
2526 (assq (car math-normalize-a)
2527 math-eval-rules-cache))
2528 (math-apply-rewrites
2529 (cons (car math-normalize-a) args)
2530 (cdr math-eval-rules-cache)
2531 nil math-eval-rules-cache))))
2532 (if func
2533 (apply (cdr func) args)
2534 (and (or (consp (car math-normalize-a))
2535 (fboundp (car math-normalize-a))
2536 (and (not (featurep 'calc-ext))
2537 (require 'calc-ext)
2538 (fboundp (car math-normalize-a))))
2539 (apply (car math-normalize-a) args)))))
2540 (wrong-number-of-arguments
2541 (calc-record-why "*Wrong number of arguments"
2542 (cons (car math-normalize-a) args))
2543 nil)
2544 (wrong-type-argument
2545 (or calc-next-why
2546 (calc-record-why "Wrong type of argument"
2547 (cons (car math-normalize-a) args)))
2548 nil)
2549 (args-out-of-range
2550 (calc-record-why "*Argument out of range"
2551 (cons (car math-normalize-a) args))
2552 nil)
2553 (inexact-result
2554 (calc-record-why "No exact representation for result"
2555 (cons (car math-normalize-a) args))
2556 nil)
2557 (math-overflow
2558 (calc-record-why "*Floating-point overflow occurred"
2559 (cons (car math-normalize-a) args))
2560 nil)
2561 (math-underflow
2562 (calc-record-why "*Floating-point underflow occurred"
2563 (cons (car math-normalize-a) args))
2564 nil)
2565 (void-variable
2566 (if (eq (nth 1 err) 'var-EvalRules)
2567 (progn
2568 (setq var-EvalRules nil)
2569 (math-normalize (cons (car math-normalize-a) args)))
2570 (calc-record-why "*Variable is void" (nth 1 err)))))
2571 (if (consp (car math-normalize-a))
2572 (math-dimension-error)
2573 (cons (car math-normalize-a) args))))))))
2574
2575
2576
2577;;; True if A is a floating-point real or complex number. [P x] [Public]
2578(defun math-floatp (a)
2579 (cond ((eq (car-safe a) 'float) t)
2580 ((memq (car-safe a) '(cplx polar mod sdev intv))
2581 (or (math-floatp (nth 1 a))
2582 (math-floatp (nth 2 a))
2583 (and (eq (car a) 'intv) (math-floatp (nth 3 a)))))
2584 ((eq (car-safe a) 'date)
2585 (math-floatp (nth 1 a)))))
2586
2587
2588
2589;;; Verify that A is a complete object and return A. [x x] [Public]
2590(defun math-check-complete (a)
2591 (cond ((integerp a) a)
2592 ((eq (car-safe a) 'incomplete)
2593 (calc-incomplete-error a))
2594 ((consp a) a)
2595 (t (error "Invalid data object encountered"))))
2596
2597
2598
2599;;; Coerce integer A to be a bignum. [B S]
2600(defun math-bignum (a)
2601 (if (>= a 0)
2602 (cons 'bigpos (math-bignum-big a))
2603 (cons 'bigneg (math-bignum-big (- a)))))
2604
2605(defun math-bignum-big (a) ; [L s]
2606 (if (= a 0)
2607 nil
2608 (cons (% a math-bignum-digit-size)
2609 (math-bignum-big (/ a math-bignum-digit-size)))))
2610
2611
2612;;; Build a normalized floating-point number. [F I S]
2613(defun math-make-float (mant exp)
2614 (if (eq mant 0)
2615 '(float 0 0)
2616 (let* ((ldiff (- calc-internal-prec (math-numdigs mant))))
2617 (if (< ldiff 0)
2618 (setq mant (math-scale-rounding mant ldiff)
2619 exp (- exp ldiff))))
2620 (if (consp mant)
2621 (let ((digs (cdr mant)))
2622 (if (= (% (car digs) 10) 0)
2623 (progn
2624 (while (= (car digs) 0)
2625 (setq digs (cdr digs)
2626 exp (+ exp math-bignum-digit-length)))
2627 (while (= (% (car digs) 10) 0)
2628 (setq digs (math-div10-bignum digs)
2629 exp (1+ exp)))
2630 (setq mant (math-normalize (cons (car mant) digs))))))
2631 (while (= (% mant 10) 0)
2632 (setq mant (/ mant 10)
2633 exp (1+ exp))))
2634 (if (and (<= exp -4000000)
2635 (<= (+ exp (math-numdigs mant) -1) -4000000))
2636 (signal 'math-underflow nil)
2637 (if (and (>= exp 3000000)
2638 (>= (+ exp (math-numdigs mant) -1) 4000000))
2639 (signal 'math-overflow nil)
2640 (list 'float mant exp)))))
2641
2642(defun math-div10-bignum (a) ; [l l]
2643 (if (cdr a)
2644 (cons (+ (/ (car a) 10) (* (% (nth 1 a) 10)
2645 (expt 10 (1- math-bignum-digit-length))))
2646 (math-div10-bignum (cdr a)))
2647 (list (/ (car a) 10))))
2648
2649;;; Coerce A to be a float. [F N; V V] [Public]
2650(defun math-float (a)
2651 (cond ((Math-integerp a) (math-make-float a 0))
2652 ((eq (car a) 'frac) (math-div (math-float (nth 1 a)) (nth 2 a)))
2653 ((eq (car a) 'float) a)
2654 ((memq (car a) '(cplx polar vec hms date sdev mod))
2655 (cons (car a) (mapcar 'math-float (cdr a))))
2656 (t (math-float-fancy a))))
2657
2658
2659(defun math-neg (a)
2660 (cond ((not (consp a)) (- a))
2661 ((eq (car a) 'bigpos) (cons 'bigneg (cdr a)))
2662 ((eq (car a) 'bigneg) (cons 'bigpos (cdr a)))
2663 ((memq (car a) '(frac float))
2664 (list (car a) (Math-integer-neg (nth 1 a)) (nth 2 a)))
2665 ((memq (car a) '(cplx vec hms date calcFunc-idn))
2666 (cons (car a) (mapcar 'math-neg (cdr a))))
2667 (t (math-neg-fancy a))))
2668
2669
2670;;; Compute the number of decimal digits in integer A. [S I]
2671(defun math-numdigs (a)
2672 (if (consp a)
2673 (if (cdr a)
2674 (let* ((len (1- (length a)))
2675 (top (nth len a)))
2676 (+ (* (1- len) math-bignum-digit-length) (math-numdigs top)))
2677 0)
2678 (cond ((>= a 100) (+ (math-numdigs (/ a 1000)) 3))
2679 ((>= a 10) 2)
2680 ((>= a 1) 1)
2681 ((= a 0) 0)
2682 ((> a -10) 1)
2683 ((> a -100) 2)
2684 (t (math-numdigs (- a))))))
2685
2686;;; Multiply (with truncation toward 0) the integer A by 10^N. [I i S]
2687(defun math-scale-int (a n)
2688 (cond ((= n 0) a)
2689 ((> n 0) (math-scale-left a n))
2690 (t (math-normalize (math-scale-right a (- n))))))
2691
2692(defun math-scale-left (a n) ; [I I S]
2693 (if (= n 0)
2694 a
2695 (if (consp a)
2696 (cons (car a) (math-scale-left-bignum (cdr a) n))
2697 (if (>= n math-bignum-digit-length)
2698 (if (or (>= a math-bignum-digit-size)
2699 (<= a (- math-bignum-digit-size)))
2700 (math-scale-left (math-bignum a) n)
2701 (math-scale-left (* a math-bignum-digit-size)
2702 (- n math-bignum-digit-length)))
2703 (let ((sz (expt 10 (- (* 2 math-bignum-digit-length) n))))
2704 (if (or (>= a sz) (<= a (- sz)))
2705 (math-scale-left (math-bignum a) n)
2706 (* a (expt 10 n))))))))
2707
2708(defun math-scale-left-bignum (a n)
2709 (if (>= n math-bignum-digit-length)
2710 (while (>= (setq a (cons 0 a)
2711 n (- n math-bignum-digit-length))
2712 math-bignum-digit-length)))
2713 (if (> n 0)
2714 (math-mul-bignum-digit a (expt 10 n) 0)
2715 a))
2716
2717(defun math-scale-right (a n) ; [i i S]
2718 (if (= n 0)
2719 a
2720 (if (consp a)
2721 (cons (car a) (math-scale-right-bignum (cdr a) n))
2722 (if (<= a 0)
2723 (if (= a 0)
2724 0
2725 (- (math-scale-right (- a) n)))
2726 (if (>= n math-bignum-digit-length)
2727 (while (and (> (setq a (/ a math-bignum-digit-size)) 0)
2728 (>= (setq n (- n math-bignum-digit-length))
2729 math-bignum-digit-length))))
2730 (if (> n 0)
2731 (/ a (expt 10 n))
2732 a)))))
2733
2734(defun math-scale-right-bignum (a n) ; [L L S; l l S]
2735 (if (>= n math-bignum-digit-length)
2736 (setq a (nthcdr (/ n math-bignum-digit-length) a)
2737 n (% n math-bignum-digit-length)))
2738 (if (> n 0)
2739 (cdr (math-mul-bignum-digit a (expt 10 (- math-bignum-digit-length n)) 0))
2740 a))
2741
2742;;; Multiply (with rounding) the integer A by 10^N. [I i S]
2743(defun math-scale-rounding (a n)
2744 (cond ((>= n 0)
2745 (math-scale-left a n))
2746 ((consp a)
2747 (math-normalize
2748 (cons (car a)
2749 (let ((val (if (< n (- math-bignum-digit-length))
2750 (math-scale-right-bignum
2751 (cdr a)
2752 (- (- math-bignum-digit-length) n))
2753 (if (< n 0)
2754 (math-mul-bignum-digit
2755 (cdr a)
2756 (expt 10 (+ math-bignum-digit-length n)) 0)
2757 (cdr a))))) ; n = -math-bignum-digit-length
2758 (if (and val (>= (car val) (/ math-bignum-digit-size 2)))
2759 (if (cdr val)
2760 (if (eq (car (cdr val)) (1- math-bignum-digit-size))
2761 (math-add-bignum (cdr val) '(1))
2762 (cons (1+ (car (cdr val))) (cdr (cdr val))))
2763 '(1))
2764 (cdr val))))))
2765 (t
2766 (if (< a 0)
2767 (- (math-scale-rounding (- a) n))
2768 (if (= n -1)
2769 (/ (+ a 5) 10)
2770 (/ (+ (math-scale-right a (- -1 n)) 5) 10))))))
2771
2772
2773;;; Compute the sum of A and B. [O O O] [Public]
2774(defun math-add (a b)
2775 (or
2776 (and (not (or (consp a) (consp b)))
2777 (progn
2778 (setq a (+ a b))
2779 (if (or (<= a (- math-small-integer-size)) (>= a math-small-integer-size))
2780 (math-bignum a)
2781 a)))
2782 (and (Math-zerop a) (not (eq (car-safe a) 'mod))
2783 (if (and (math-floatp a) (Math-ratp b)) (math-float b) b))
2784 (and (Math-zerop b) (not (eq (car-safe b) 'mod))
2785 (if (and (math-floatp b) (Math-ratp a)) (math-float a) a))
2786 (and (Math-objvecp a) (Math-objvecp b)
2787 (or
2788 (and (Math-integerp a) (Math-integerp b)
2789 (progn
2790 (or (consp a) (setq a (math-bignum a)))
2791 (or (consp b) (setq b (math-bignum b)))
2792 (if (eq (car a) 'bigneg)
2793 (if (eq (car b) 'bigneg)
2794 (cons 'bigneg (math-add-bignum (cdr a) (cdr b)))
2795 (math-normalize
2796 (let ((diff (math-sub-bignum (cdr b) (cdr a))))
2797 (if (eq diff 'neg)
2798 (cons 'bigneg (math-sub-bignum (cdr a) (cdr b)))
2799 (cons 'bigpos diff)))))
2800 (if (eq (car b) 'bigneg)
2801 (math-normalize
2802 (let ((diff (math-sub-bignum (cdr a) (cdr b))))
2803 (if (eq diff 'neg)
2804 (cons 'bigneg (math-sub-bignum (cdr b) (cdr a)))
2805 (cons 'bigpos diff))))
2806 (cons 'bigpos (math-add-bignum (cdr a) (cdr b)))))))
2807 (and (Math-ratp a) (Math-ratp b)
2808 (require 'calc-ext)
2809 (calc-add-fractions a b))
2810 (and (Math-realp a) (Math-realp b)
2811 (progn
2812 (or (and (consp a) (eq (car a) 'float))
2813 (setq a (math-float a)))
2814 (or (and (consp b) (eq (car b) 'float))
2815 (setq b (math-float b)))
2816 (math-add-float a b)))
2817 (and (require 'calc-ext)
2818 (math-add-objects-fancy a b))))
2819 (and (require 'calc-ext)
2820 (math-add-symb-fancy a b))))
2821
2822(defun math-add-bignum (a b) ; [L L L; l l l]
2823 (if a
2824 (if b
2825 (let* ((a (copy-sequence a)) (aa a) (carry nil) sum)
2826 (while (and aa b)
2827 (if carry
2828 (if (< (setq sum (+ (car aa) (car b)))
2829 (1- math-bignum-digit-size))
2830 (progn
2831 (setcar aa (1+ sum))
2832 (setq carry nil))
2833 (setcar aa (- sum (1- math-bignum-digit-size))))
2834 (if (< (setq sum (+ (car aa) (car b))) math-bignum-digit-size)
2835 (setcar aa sum)
2836 (setcar aa (- sum math-bignum-digit-size))
2837 (setq carry t)))
2838 (setq aa (cdr aa)
2839 b (cdr b)))
2840 (if carry
2841 (if b
2842 (nconc a (math-add-bignum b '(1)))
2843 (while (eq (car aa) (1- math-bignum-digit-size))
2844 (setcar aa 0)
2845 (setq aa (cdr aa)))
2846 (if aa
2847 (progn
2848 (setcar aa (1+ (car aa)))
2849 a)
2850 (nconc a '(1))))
2851 (if b
2852 (nconc a b)
2853 a)))
2854 a)
2855 b))
2856
2857(defun math-sub-bignum (a b) ; [l l l]
2858 (if b
2859 (if a
2860 (let* ((a (copy-sequence a)) (aa a) (borrow nil) sum diff)
2861 (while (and aa b)
2862 (if borrow
2863 (if (>= (setq diff (- (car aa) (car b))) 1)
2864 (progn
2865 (setcar aa (1- diff))
2866 (setq borrow nil))
2867 (setcar aa (+ diff (1- math-bignum-digit-size))))
2868 (if (>= (setq diff (- (car aa) (car b))) 0)
2869 (setcar aa diff)
2870 (setcar aa (+ diff math-bignum-digit-size))
2871 (setq borrow t)))
2872 (setq aa (cdr aa)
2873 b (cdr b)))
2874 (if borrow
2875 (progn
2876 (while (eq (car aa) 0)
2877 (setcar aa (1- math-bignum-digit-size))
2878 (setq aa (cdr aa)))
2879 (if aa
2880 (progn
2881 (setcar aa (1- (car aa)))
2882 a)
2883 'neg))
2884 (while (eq (car b) 0)
2885 (setq b (cdr b)))
2886 (if b
2887 'neg
2888 a)))
2889 (while (eq (car b) 0)
2890 (setq b (cdr b)))
2891 (and b
2892 'neg))
2893 a))
2894
2895(defun math-add-float (a b) ; [F F F]
2896 (let ((ediff (- (nth 2 a) (nth 2 b))))
2897 (if (>= ediff 0)
2898 (if (>= ediff (+ calc-internal-prec calc-internal-prec))
2899 a
2900 (math-make-float (math-add (nth 1 b)
2901 (if (eq ediff 0)
2902 (nth 1 a)
2903 (math-scale-left (nth 1 a) ediff)))
2904 (nth 2 b)))
2905 (if (>= (setq ediff (- ediff))
2906 (+ calc-internal-prec calc-internal-prec))
2907 b
2908 (math-make-float (math-add (nth 1 a)
2909 (math-scale-left (nth 1 b) ediff))
2910 (nth 2 a))))))
2911
2912;;; Compute the difference of A and B. [O O O] [Public]
2913(defun math-sub (a b)
2914 (if (or (consp a) (consp b))
2915 (math-add a (math-neg b))
2916 (setq a (- a b))
2917 (if (or (<= a (- math-small-integer-size)) (>= a math-small-integer-size))
2918 (math-bignum a)
2919 a)))
2920
2921(defun math-sub-float (a b) ; [F F F]
2922 (let ((ediff (- (nth 2 a) (nth 2 b))))
2923 (if (>= ediff 0)
2924 (if (>= ediff (+ calc-internal-prec calc-internal-prec))
2925 a
2926 (math-make-float (math-add (Math-integer-neg (nth 1 b))
2927 (if (eq ediff 0)
2928 (nth 1 a)
2929 (math-scale-left (nth 1 a) ediff)))
2930 (nth 2 b)))
2931 (if (>= (setq ediff (- ediff))
2932 (+ calc-internal-prec calc-internal-prec))
2933 b
2934 (math-make-float (math-add (nth 1 a)
2935 (Math-integer-neg
2936 (math-scale-left (nth 1 b) ediff)))
2937 (nth 2 a))))))
2938
2939
2940;;; Compute the product of A and B. [O O O] [Public]
2941(defun math-mul (a b)
2942 (or
2943 (and (not (consp a)) (not (consp b))
2944 (< a math-bignum-digit-size) (> a (- math-bignum-digit-size))
2945 (< b math-bignum-digit-size) (> b (- math-bignum-digit-size))
2946 (* a b))
2947 (and (Math-zerop a) (not (eq (car-safe b) 'mod))
2948 (if (Math-scalarp b)
2949 (if (and (math-floatp b) (Math-ratp a)) (math-float a) a)
2950 (require 'calc-ext)
2951 (math-mul-zero a b)))
2952 (and (Math-zerop b) (not (eq (car-safe a) 'mod))
2953 (if (Math-scalarp a)
2954 (if (and (math-floatp a) (Math-ratp b)) (math-float b) b)
2955 (require 'calc-ext)
2956 (math-mul-zero b a)))
2957 (and (Math-objvecp a) (Math-objvecp b)
2958 (or
2959 (and (Math-integerp a) (Math-integerp b)
2960 (progn
2961 (or (consp a) (setq a (math-bignum a)))
2962 (or (consp b) (setq b (math-bignum b)))
2963 (math-normalize
2964 (cons (if (eq (car a) (car b)) 'bigpos 'bigneg)
2965 (if (cdr (cdr a))
2966 (if (cdr (cdr b))
2967 (math-mul-bignum (cdr a) (cdr b))
2968 (math-mul-bignum-digit (cdr a) (nth 1 b) 0))
2969 (math-mul-bignum-digit (cdr b) (nth 1 a) 0))))))
2970 (and (Math-ratp a) (Math-ratp b)
2971 (require 'calc-ext)
2972 (calc-mul-fractions a b))
2973 (and (Math-realp a) (Math-realp b)
2974 (progn
2975 (or (and (consp a) (eq (car a) 'float))
2976 (setq a (math-float a)))
2977 (or (and (consp b) (eq (car b) 'float))
2978 (setq b (math-float b)))
2979 (math-make-float (math-mul (nth 1 a) (nth 1 b))
2980 (+ (nth 2 a) (nth 2 b)))))
2981 (and (require 'calc-ext)
2982 (math-mul-objects-fancy a b))))
2983 (and (require 'calc-ext)
2984 (math-mul-symb-fancy a b))))
2985
2986(defun math-infinitep (a &optional undir)
2987 (while (and (consp a) (memq (car a) '(* / neg)))
2988 (if (or (not (eq (car a) '*)) (math-infinitep (nth 1 a)))
2989 (setq a (nth 1 a))
2990 (setq a (nth 2 a))))
2991 (and (consp a)
2992 (eq (car a) 'var)
2993 (memq (nth 2 a) '(var-inf var-uinf var-nan))
2994 (if (and undir (eq (nth 2 a) 'var-inf))
2995 '(var uinf var-uinf)
2996 a)))
2997
2998;;; Multiply digit lists A and B. [L L L; l l l]
2999(defun math-mul-bignum (a b)
3000 (and a b
3001 (let* ((sum (if (<= (car b) 1)
3002 (if (= (car b) 0)
3003 (list 0)
3004 (copy-sequence a))
3005 (math-mul-bignum-digit a (car b) 0)))
3006 (sump sum) c d aa ss prod)
3007 (while (setq b (cdr b))
3008 (setq ss (setq sump (or (cdr sump) (setcdr sump (list 0))))
3009 d (car b)
3010 c 0
3011 aa a)
3012 (while (progn
3013 (setcar ss (% (setq prod (+ (+ (car ss) (* (car aa) d))
3014 c)) math-bignum-digit-size))
3015 (setq aa (cdr aa)))
3016 (setq c (/ prod math-bignum-digit-size)
3017 ss (or (cdr ss) (setcdr ss (list 0)))))
3018 (if (>= prod math-bignum-digit-size)
3019 (if (cdr ss)
3020 (setcar (cdr ss) (+ (/ prod math-bignum-digit-size) (car (cdr ss))))
3021 (setcdr ss (list (/ prod math-bignum-digit-size))))))
3022 sum)))
3023
3024;;; Multiply digit list A by digit D. [L L D D; l l D D]
3025(defun math-mul-bignum-digit (a d c)
3026 (if a
3027 (if (<= d 1)
3028 (and (= d 1) a)
3029 (let* ((a (copy-sequence a)) (aa a) prod)
3030 (while (progn
3031 (setcar aa
3032 (% (setq prod (+ (* (car aa) d) c))
3033 math-bignum-digit-size))
3034 (cdr aa))
3035 (setq aa (cdr aa)
3036 c (/ prod math-bignum-digit-size)))
3037 (if (>= prod math-bignum-digit-size)
3038 (setcdr aa (list (/ prod math-bignum-digit-size))))
3039 a))
3040 (and (> c 0)
3041 (list c))))
3042
3043
3044;;; Compute the integer (quotient . remainder) of A and B, which may be
3045;;; small or big integers. Type and consistency of truncation is undefined
3046;;; if A or B is negative. B must be nonzero. [I.I I I] [Public]
3047(defun math-idivmod (a b)
3048 (if (eq b 0)
3049 (math-reject-arg a "*Division by zero"))
3050 (if (or (consp a) (consp b))
3051 (if (and (natnump b) (< b math-bignum-digit-size))
3052 (let ((res (math-div-bignum-digit (cdr a) b)))
3053 (cons
3054 (math-normalize (cons (car a) (car res)))
3055 (cdr res)))
3056 (or (consp a) (setq a (math-bignum a)))
3057 (or (consp b) (setq b (math-bignum b)))
3058 (let ((res (math-div-bignum (cdr a) (cdr b))))
3059 (cons
3060 (math-normalize (cons (if (eq (car a) (car b)) 'bigpos 'bigneg)
3061 (car res)))
3062 (math-normalize (cons (car a) (cdr res))))))
3063 (cons (/ a b) (% a b))))
3064
3065(defun math-quotient (a b) ; [I I I] [Public]
3066 (if (and (not (consp a)) (not (consp b)))
3067 (if (= b 0)
3068 (math-reject-arg a "*Division by zero")
3069 (/ a b))
3070 (if (and (natnump b) (< b math-bignum-digit-size))
3071 (if (= b 0)
3072 (math-reject-arg a "*Division by zero")
3073 (math-normalize (cons (car a)
3074 (car (math-div-bignum-digit (cdr a) b)))))
3075 (or (consp a) (setq a (math-bignum a)))
3076 (or (consp b) (setq b (math-bignum b)))
3077 (let* ((alen (1- (length a)))
3078 (blen (1- (length b)))
3079 (d (/ math-bignum-digit-size (1+ (nth (1- blen) (cdr b)))))
3080 (res (math-div-bignum-big (math-mul-bignum-digit (cdr a) d 0)
3081 (math-mul-bignum-digit (cdr b) d 0)
3082 alen blen)))
3083 (math-normalize (cons (if (eq (car a) (car b)) 'bigpos 'bigneg)
3084 (car res)))))))
3085
3086
3087;;; Divide a bignum digit list by another. [l.l l L]
3088;;; The following division algorithm is borrowed from Knuth vol. II, sec. 4.3.1
3089(defun math-div-bignum (a b)
3090 (if (cdr b)
3091 (let* ((alen (length a))
3092 (blen (length b))
3093 (d (/ math-bignum-digit-size (1+ (nth (1- blen) b))))
3094 (res (math-div-bignum-big (math-mul-bignum-digit a d 0)
3095 (math-mul-bignum-digit b d 0)
3096 alen blen)))
3097 (if (= d 1)
3098 res
3099 (cons (car res)
3100 (car (math-div-bignum-digit (cdr res) d)))))
3101 (let ((res (math-div-bignum-digit a (car b))))
3102 (cons (car res) (list (cdr res))))))
3103
3104;;; Divide a bignum digit list by a digit. [l.D l D]
3105(defun math-div-bignum-digit (a b)
3106 (if a
3107 (let* ((res (math-div-bignum-digit (cdr a) b))
3108 (num (+ (* (cdr res) math-bignum-digit-size) (car a))))
3109 (cons
3110 (cons (/ num b) (car res))
3111 (% num b)))
3112 '(nil . 0)))
3113
3114(defun math-div-bignum-big (a b alen blen) ; [l.l l L]
3115 (if (< alen blen)
3116 (cons nil a)
3117 (let* ((res (math-div-bignum-big (cdr a) b (1- alen) blen))
3118 (num (cons (car a) (cdr res)))
3119 (res2 (math-div-bignum-part num b blen)))
3120 (cons
3121 (cons (car res2) (car res))
3122 (cdr res2)))))
3123
3124(defun math-div-bignum-part (a b blen) ; a < b*math-bignum-digit-size [D.l l L]
3125 (let* ((num (+ (* (or (nth blen a) 0) math-bignum-digit-size)
3126 (or (nth (1- blen) a) 0)))
3127 (den (nth (1- blen) b))
3128 (guess (min (/ num den) (1- math-bignum-digit-size))))
3129 (math-div-bignum-try a b (math-mul-bignum-digit b guess 0) guess)))
3130
3131(defun math-div-bignum-try (a b c guess) ; [D.l l l D]
3132 (let ((rem (math-sub-bignum a c)))
3133 (if (eq rem 'neg)
3134 (math-div-bignum-try a b (math-sub-bignum c b) (1- guess))
3135 (cons guess rem))))
3136
3137
3138;;; Compute the quotient of A and B. [O O N] [Public]
3139(defun math-div (a b)
3140 (or
3141 (and (Math-zerop b)
3142 (require 'calc-ext)
3143 (math-div-by-zero a b))
3144 (and (Math-zerop a) (not (eq (car-safe b) 'mod))
3145 (if (Math-scalarp b)
3146 (if (and (math-floatp b) (Math-ratp a)) (math-float a) a)
3147 (require 'calc-ext)
3148 (math-div-zero a b)))
3149 (and (Math-objvecp a) (Math-objvecp b)
3150 (or
3151 (and (Math-integerp a) (Math-integerp b)
3152 (let ((q (math-idivmod a b)))
3153 (if (eq (cdr q) 0)
3154 (car q)
3155 (if calc-prefer-frac
3156 (progn
3157 (require 'calc-ext)
3158 (math-make-frac a b))
3159 (math-div-float (math-make-float a 0)
3160 (math-make-float b 0))))))
3161 (and (Math-ratp a) (Math-ratp b)
3162 (require 'calc-ext)
3163 (calc-div-fractions a b))
3164 (and (Math-realp a) (Math-realp b)
3165 (progn
3166 (or (and (consp a) (eq (car a) 'float))
3167 (setq a (math-float a)))
3168 (or (and (consp b) (eq (car b) 'float))
3169 (setq b (math-float b)))
3170 (math-div-float a b)))
3171 (and (require 'calc-ext)
3172 (math-div-objects-fancy a b))))
3173 (and (require 'calc-ext)
3174 (math-div-symb-fancy a b))))
3175
3176(defun math-div-float (a b) ; [F F F]
3177 (let ((ldiff (max (- (1+ calc-internal-prec)
3178 (- (math-numdigs (nth 1 a)) (math-numdigs (nth 1 b))))
3179 0)))
3180 (math-make-float (math-quotient (math-scale-int (nth 1 a) ldiff) (nth 1 b))
3181 (- (- (nth 2 a) (nth 2 b)) ldiff))))
3182
3183
3184
3185
3186(defvar calc-selection-cache-entry)
3187;;; Format the number A as a string. [X N; X Z] [Public]
3188(defun math-format-stack-value (entry)
3189 (setq calc-selection-cache-entry calc-selection-cache-default-entry)
3190 (let* ((a (car entry))
3191 (math-comp-selected (nth 2 entry))
3192 (c (cond ((null a) "<nil>")
3193 ((eq calc-display-raw t) (format "%s" a))
3194 ((stringp a) a)
3195 ((eq a 'top-of-stack) (propertize "." 'font-lock-face 'bold))
3196 (calc-prepared-composition
3197 calc-prepared-composition)
3198 ((and (Math-scalarp a)
3199 (memq calc-language '(nil flat unform))
3200 (null math-comp-selected))
3201 (math-format-number a))
3202 (t (require 'calc-ext)
3203 (math-compose-expr a 0))))
3204 (off (math-stack-value-offset c))
3205 s w)
3206 (and math-comp-selected (setq calc-any-selections t))
3207 (setq w (cdr off)
3208 off (car off))
3209 (when (> off 0)
3210 (setq c (math-comp-concat (make-string off ?\s) c)))
3211 (or (equal calc-left-label "")
3212 (setq c (math-comp-concat (if (eq a 'top-of-stack)
3213 (make-string (length calc-left-label) ?\s)
3214 calc-left-label)
3215 c)))
3216 (when calc-line-numbering
3217 (setq c (math-comp-concat (if (eq calc-language 'big)
3218 (if math-comp-selected
3219 '(tag t "1: ")
3220 "1: ")
3221 " ")
3222 c)))
3223 (unless (or (equal calc-right-label "")
3224 (eq a 'top-of-stack))
3225 (require 'calc-ext)
3226 (setq c (list 'horiz c
3227 (make-string (max (- w (math-comp-width c)
3228 (length calc-right-label)) 0) ?\s)
3229 '(break -1)
3230 calc-right-label)))
3231 (setq s (if (stringp c)
3232 (if calc-display-raw
3233 (prin1-to-string c)
3234 c)
3235 (math-composition-to-string c w)))
3236 (when calc-language-output-filter
3237 (setq s (funcall calc-language-output-filter s)))
3238 (if (eq calc-language 'big)
3239 (setq s (concat s "\n"))
3240 (when calc-line-numbering
3241 (setq s (concat "1:" (substring s 2)))))
3242 (setcar (cdr entry) (calc-count-lines s))
3243 s))
3244
3245;; The variables math-svo-c, math-svo-wid and math-svo-off are local
3246;; to math-stack-value-offset, but are used by math-stack-value-offset-fancy
3247;; in calccomp.el.
3248
3249(defun math-stack-value-offset (math-svo-c)
3250 (let* ((num (if calc-line-numbering 4 0))
3251 (math-svo-wid (calc-window-width))
3252 math-svo-off)
3253 (if calc-display-just
3254 (progn
3255 (require 'calc-ext)
3256 (math-stack-value-offset-fancy))
3257 (setq math-svo-off (or calc-display-origin 0))
3258 (when (integerp calc-line-breaking)
3259 (setq math-svo-wid calc-line-breaking)))
3260 (cons (max (- math-svo-off (length calc-left-label)) 0)
3261 (+ math-svo-wid num))))
3262
3263(defun calc-count-lines (s)
3264 (let ((pos 0)
3265 (num 1))
3266 (while (setq pos (string-match "\n" s pos))
3267 (setq pos (1+ pos)
3268 num (1+ num)))
3269 num))
3270
3271(defun math-format-value (a &optional w)
3272 (if (and (Math-scalarp a)
3273 (memq calc-language '(nil flat unform)))
3274 (math-format-number a)
3275 (require 'calc-ext)
3276 (let ((calc-line-breaking nil))
3277 (math-composition-to-string (math-compose-expr a 0) w))))
3278
3279(defun calc-window-width ()
3280 (if calc-embedded-info
3281 (let ((win (get-buffer-window (aref calc-embedded-info 0))))
3282 (1- (if win (window-width win) (frame-width))))
3283 (- (window-width (get-buffer-window (current-buffer)))
3284 (if calc-line-numbering 5 1))))
3285
3286(defun math-comp-concat (c1 c2)
3287 (if (and (stringp c1) (stringp c2))
3288 (concat c1 c2)
3289 (list 'horiz c1 c2)))
3290
3291
3292
3293;;; Format an expression as a one-line string suitable for re-reading.
3294
3295(defun math-format-flat-expr (a prec)
3296 (cond
3297 ((or (not (or (consp a) (integerp a)))
3298 (eq calc-display-raw t))
3299 (let ((print-escape-newlines t))
3300 (concat "'" (prin1-to-string a))))
3301 ((Math-scalarp a)
3302 (let ((calc-group-digits nil)
3303 (calc-point-char ".")
3304 (calc-frac-format (if (> (length (car calc-frac-format)) 1)
3305 '("::" nil) '(":" nil)))
3306 (calc-complex-format nil)
3307 (calc-hms-format "%s@ %s' %s\"")
3308 (calc-language nil))
3309 (math-format-number a)))
3310 (t
3311 (require 'calc-ext)
3312 (math-format-flat-expr-fancy a prec))))
3313
3314
3315
3316;;; Format a number as a string.
3317(defun math-format-number (a &optional prec) ; [X N] [Public]
3318 (cond
3319 ((eq calc-display-raw t) (format "%s" a))
3320 ((and (nth 1 calc-frac-format) (Math-integerp a))
3321 (require 'calc-ext)
3322 (math-format-number (math-adjust-fraction a)))
3323 ((integerp a)
3324 (if (not (or calc-group-digits calc-leading-zeros))
3325 (if (= calc-number-radix 10)
3326 (int-to-string a)
3327 (if (< a 0)
3328 (concat "-" (math-format-number (- a)))
3329 (require 'calc-ext)
3330 (if math-radix-explicit-format
3331 (if calc-radix-formatter
3332 (funcall calc-radix-formatter
3333 calc-number-radix
3334 (if (= calc-number-radix 2)
3335 (math-format-binary a)
3336 (math-format-radix a)))
3337 (format "%d#%s" calc-number-radix
3338 (if (= calc-number-radix 2)
3339 (math-format-binary a)
3340 (math-format-radix a))))
3341 (math-format-radix a))))
3342 (math-format-number (math-bignum a))))
3343 ((stringp a) a)
3344 ((not (consp a)) (prin1-to-string a))
3345 ((eq (car a) 'bigpos) (math-format-bignum (cdr a)))
3346 ((eq (car a) 'bigneg) (concat "-" (math-format-bignum (cdr a))))
3347 ((and (eq (car a) 'float) (= calc-number-radix 10))
3348 (if (Math-integer-negp (nth 1 a))
3349 (concat "-" (math-format-number (math-neg a)))
3350 (let ((mant (nth 1 a))
3351 (exp (nth 2 a))
3352 (fmt (car calc-float-format))
3353 (figs (nth 1 calc-float-format))
3354 (point calc-point-char)
3355 str)
3356 (if (and (eq fmt 'fix)
3357 (or (and (< figs 0) (setq figs (- figs)))
3358 (> (+ exp (math-numdigs mant)) (- figs))))
3359 (progn
3360 (setq mant (math-scale-rounding mant (+ exp figs))
3361 str (if (integerp mant)
3362 (int-to-string mant)
3363 (math-format-bignum-decimal (cdr mant))))
3364 (if (<= (length str) figs)
3365 (setq str (concat (make-string (1+ (- figs (length str))) ?0)
3366 str)))
3367 (if (> figs 0)
3368 (setq str (concat (substring str 0 (- figs)) point
3369 (substring str (- figs))))
3370 (setq str (concat str point)))
3371 (when calc-group-digits
3372 (require 'calc-ext)
3373 (setq str (math-group-float str))))
3374 (when (< figs 0)
3375 (setq figs (+ calc-internal-prec figs)))
3376 (when (> figs 0)
3377 (let ((adj (- figs (math-numdigs mant))))
3378 (when (< adj 0)
3379 (setq mant (math-scale-rounding mant adj)
3380 exp (- exp adj)))))
3381 (setq str (if (integerp mant)
3382 (int-to-string mant)
3383 (math-format-bignum-decimal (cdr mant))))
3384 (let* ((len (length str))
3385 (dpos (+ exp len)))
3386 (if (and (eq fmt 'float)
3387 (<= dpos (+ calc-internal-prec calc-display-sci-high))
3388 (>= dpos (+ calc-display-sci-low 2)))
3389 (progn
3390 (cond
3391 ((= dpos 0)
3392 (setq str (concat "0" point str)))
3393 ((and (<= exp 0) (> dpos 0))
3394 (setq str (concat (substring str 0 dpos) point
3395 (substring str dpos))))
3396 ((> exp 0)
3397 (setq str (concat str (make-string exp ?0) point)))
3398 (t ; (< dpos 0)
3399 (setq str (concat "0" point
3400 (make-string (- dpos) ?0) str))))
3401 (when calc-group-digits
3402 (require 'calc-ext)
3403 (setq str (math-group-float str))))
3404 (let* ((eadj (+ exp len))
3405 (scale (if (eq fmt 'eng)
3406 (1+ (math-mod (+ eadj 300002) 3))
3407 1)))
3408 (if (> scale (length str))
3409 (setq str (concat str (make-string (- scale (length str))
3410 ?0))))
3411 (if (< scale (length str))
3412 (setq str (concat (substring str 0 scale) point
3413 (substring str scale))))
3414 (when calc-group-digits
3415 (require 'calc-ext)
3416 (setq str (math-group-float str)))
3417 (setq str (format (if (memq calc-language '(math maple))
3418 (if (and prec (> prec 191))
3419 "(%s*10.^%d)" "%s*10.^%d")
3420 "%se%d")
3421 str (- eadj scale)))))))
3422 str)))
3423 (t
3424 (require 'calc-ext)
3425 (math-format-number-fancy a prec))))
3426
3427(defun math-format-bignum (a) ; [X L]
3428 (if (and (= calc-number-radix 10)
3429 (not calc-leading-zeros)
3430 (not calc-group-digits))
3431 (math-format-bignum-decimal a)
3432 (require 'calc-ext)
3433 (math-format-bignum-fancy a)))
3434
3435(defun math-format-bignum-decimal (a) ; [X L]
3436 (if a
3437 (let ((s ""))
3438 (while (cdr (cdr a))
3439 (setq s (concat
3440 (format
3441 (concat "%0"
3442 (number-to-string (* 2 math-bignum-digit-length))
3443 "d")
3444 (+ (* (nth 1 a) math-bignum-digit-size) (car a))) s)
3445 a (cdr (cdr a))))
3446 (concat (int-to-string
3447 (+ (* (or (nth 1 a) 0) math-bignum-digit-size) (car a))) s))
3448 "0"))
3449
3450
3451
3452;;; Parse a simple number in string form. [N X] [Public]
3453(defun math-read-number (s &optional decimal)
3454 "Convert the string S into a Calc number."
3455 (math-normalize
3456 (cond
3457
3458 ;; Integers (most common case)
3459 ((string-match "\\` *\\([0-9]+\\) *\\'" s)
3460 (let ((digs (math-match-substring s 1)))
3461 (if (and (memq calc-language calc-lang-c-type-hex)
3462 (> (length digs) 1)
3463 (eq (aref digs 0) ?0)
3464 (null decimal))
3465 (math-read-number (concat "8#" digs))
3466 (if (<= (length digs) (* 2 math-bignum-digit-length))
3467 (string-to-number digs)
3468 (cons 'bigpos (math-read-bignum digs))))))
3469
3470 ;; Clean up the string if necessary
3471 ((string-match "\\`\\(.*\\)[ \t\n]+\\([^\001]*\\)\\'" s)
3472 (math-read-number (concat (math-match-substring s 1)
3473 (math-match-substring s 2))))
3474
3475 ;; Plus and minus signs
3476 ((string-match "^[-_+]\\(.*\\)$" s)
3477 (let ((val (math-read-number (math-match-substring s 1))))
3478 (and val (if (eq (aref s 0) ?+) val (math-neg val)))))
3479
3480 ;; Forms that require extensions module
3481 ((string-match "[^-+0-9eE.]" s)
3482 (require 'calc-ext)
3483 (math-read-number-fancy s))
3484
3485 ;; Decimal point
3486 ((string-match "^\\([0-9]*\\)\\.\\([0-9]*\\)$" s)
3487 (let ((int (math-match-substring s 1))
3488 (frac (math-match-substring s 2)))
3489 (let ((ilen (length int))
3490 (flen (length frac)))
3491 (let ((int (if (> ilen 0) (math-read-number int t) 0))
3492 (frac (if (> flen 0) (math-read-number frac t) 0)))
3493 (and int frac (or (> ilen 0) (> flen 0))
3494 (list 'float
3495 (math-add (math-scale-int int flen) frac)
3496 (- flen)))))))
3497
3498 ;; "e" notation
3499 ((string-match "^\\(.*\\)[eE]\\([-+]?[0-9]+\\)$" s)
3500 (let ((mant (math-match-substring s 1))
3501 (exp (math-match-substring s 2)))
3502 (let ((mant (if (> (length mant) 0) (math-read-number mant t) 1))
3503 (exp (if (<= (length exp) (if (memq (aref exp 0) '(?+ ?-)) 8 7))
3504 (string-to-number exp))))
3505 (and mant exp (Math-realp mant) (> exp -4000000) (< exp 4000000)
3506 (let ((mant (math-float mant)))
3507 (list 'float (nth 1 mant) (+ (nth 2 mant) exp)))))))
3508
3509 ;; Syntax error!
3510 (t nil))))
3511
3512;;; Parse a very simple number, keeping all digits.
3513(defun math-read-number-simple (s)
3514 "Convert the string S into a Calc number.
3515S is assumed to be a simple number (integer or float without an exponent)
3516and all digits are kept, regardless of Calc's current precision."
3517 (cond
3518 ;; Integer
3519 ((string-match "^[0-9]+$" s)
3520 (if (string-match "^\\(0+\\)" s)
3521 (setq s (substring s (match-end 0))))
3522 (if (<= (length s) (* 2 math-bignum-digit-length))
3523 (string-to-number s)
3524 (cons 'bigpos (math-read-bignum s))))
3525 ;; Minus sign
3526 ((string-match "^-[0-9]+$" s)
3527 (if (<= (length s) (1+ (* 2 math-bignum-digit-length)))
3528 (string-to-number s)
3529 (cons 'bigneg (math-read-bignum (substring s 1)))))
3530 ;; Decimal point
3531 ((string-match "^\\(-?[0-9]*\\)\\.\\([0-9]*\\)$" s)
3532 (let ((int (math-match-substring s 1))
3533 (frac (math-match-substring s 2)))
3534 (list 'float (math-read-number-simple (concat int frac))
3535 (- (length frac)))))
3536 ;; Syntax error!
3537 (t nil)))
3538
3539(defun math-match-substring (s n)
3540 (if (match-beginning n)
3541 (substring s (match-beginning n) (match-end n))
3542 ""))
3543
3544(defun math-read-bignum (s) ; [l X]
3545 (if (> (length s) math-bignum-digit-length)
3546 (cons (string-to-number (substring s (- math-bignum-digit-length)))
3547 (math-read-bignum (substring s 0 (- math-bignum-digit-length))))
3548 (list (string-to-number s))))
3549
3550(defconst math-standard-opers
3551 '( ( "_" calcFunc-subscr 1200 1201 )
3552 ( "%" calcFunc-percent 1100 -1 )
3553 ( "u!" calcFunc-lnot -1 1000 )
3554 ( "mod" mod 400 400 185 )
3555 ( "+/-" sdev 300 300 185 )
3556 ( "!!" calcFunc-dfact 210 -1 )
3557 ( "!" calcFunc-fact 210 -1 )
3558 ( "^" ^ 201 200 )
3559 ( "**" ^ 201 200 )
3560 ( "u+" ident -1 197 )
3561 ( "u-" neg -1 197 )
3562 ( "/" / 190 191 )
3563 ( "%" % 190 191 )
3564 ( "\\" calcFunc-idiv 190 191 )
3565 ( "+" + 180 181 )
3566 ( "-" - 180 181 )
3567 ( "|" | 170 171 )
3568 ( "<" calcFunc-lt 160 161 )
3569 ( ">" calcFunc-gt 160 161 )
3570 ( "<=" calcFunc-leq 160 161 )
3571 ( ">=" calcFunc-geq 160 161 )
3572 ( "=" calcFunc-eq 160 161 )
3573 ( "==" calcFunc-eq 160 161 )
3574 ( "!=" calcFunc-neq 160 161 )
3575 ( "&&" calcFunc-land 110 111 )
3576 ( "||" calcFunc-lor 100 101 )
3577 ( "?" (math-read-if) 91 90 )
3578 ( "!!!" calcFunc-pnot -1 85 )
3579 ( "&&&" calcFunc-pand 80 81 )
3580 ( "|||" calcFunc-por 75 76 )
3581 ( ":=" calcFunc-assign 51 50 )
3582 ( "::" calcFunc-condition 45 46 )
3583 ( "=>" calcFunc-evalto 40 41 )
3584 ( "=>" calcFunc-evalto 40 -1 )))
3585
3586(defun math-standard-ops ()
3587 (if calc-multiplication-has-precedence
3588 (cons
3589 '( "*" * 196 195 )
3590 (cons
3591 '( "2x" * 196 195 )
3592 math-standard-opers))
3593 (cons
3594 '( "*" * 190 191 )
3595 (cons
3596 '( "2x" * 190 191 )
3597 math-standard-opers))))
3598
3599(defvar math-expr-opers (math-standard-ops))
3600
3601(defun math-standard-ops-p ()
3602 (let ((meo (caar math-expr-opers)))
3603 (and (stringp meo)
3604 (string= meo "*"))))
3605
3606(defun math-expr-ops ()
3607 (if (math-standard-ops-p)
3608 (math-standard-ops)
3609 math-expr-opers))
3610
3611;;;###autoload
3612(defun calc-grab-region (top bot arg)
3613 "Parse the region as a vector of numbers and push it on the Calculator stack."
3614 (interactive "r\nP")
3615 (require 'calc-ext)
3616 (calc-do-grab-region top bot arg))
3617
3618;;;###autoload
3619(defun calc-grab-rectangle (top bot arg)
3620 "Parse a rectangle as a matrix of numbers and push it on the Calculator stack."
3621 (interactive "r\nP")
3622 (require 'calc-ext)
3623 (calc-do-grab-rectangle top bot arg))
3624
3625(defun calc-grab-sum-down (top bot arg)
3626 "Parse a rectangle as a matrix of numbers and sum its columns."
3627 (interactive "r\nP")
3628 (require 'calc-ext)
3629 (calc-do-grab-rectangle top bot arg 'calcFunc-reduced))
3630
3631(defun calc-grab-sum-across (top bot arg)
3632 "Parse a rectangle as a matrix of numbers and sum its rows."
3633 (interactive "r\nP")
3634 (require 'calc-ext)
3635 (calc-do-grab-rectangle top bot arg 'calcFunc-reducea))
3636
3637
3638;;;###autoload
3639(defun calc-embedded (arg &optional end obeg oend)
3640 "Start Calc Embedded mode on the formula surrounding point."
3641 (interactive "P")
3642 (require 'calc-ext)
3643 (calc-do-embedded arg end obeg oend))
3644
3645;;;###autoload
3646(defun calc-embedded-activate (&optional arg cbuf)
3647 "Scan the current editing buffer for all embedded := and => formulas.
3648Also looks for the equivalent TeX words, \\gets and \\evalto."
3649 (interactive "P")
3650 (calc-do-embedded-activate arg cbuf))
3651
3652(defun calc-user-invocation ()
3653 (interactive)
3654 (unless calc-invocation-macro
3655 (error "Use `Z I' inside Calc to define a `C-x * Z' keyboard macro"))
3656 (execute-kbd-macro calc-invocation-macro nil))
3657
3658;;; User-programmability.
3659
3660;;;###autoload
3661(defmacro defmath (func args &rest body) ; [Public]
3662 "Define Calc function.
3663
3664Like `defun' except that code in the body of the definition can
3665make use of the full range of Calc data types and the usual
3666arithmetic operations are converted to their Calc equivalents.
3667
3668The prefix `calcFunc-' is added to the specified name to get the
3669actual Lisp function name.
3670
3671See Info node `(calc)Defining Functions'."
3672 (declare (doc-string 3))
3673 (require 'calc-ext)
3674 (math-do-defmath func args body))
3675
3676;;; Functions needed for Lucid Emacs support.
3677
3678(defun calc-read-key (&optional optkey)
3679 (cond ((featurep 'xemacs)
3680 (let ((event (next-command-event)))
3681 (let ((key (event-to-character event t t)))
3682 (or key optkey (error "Expected a plain keystroke"))
3683 (cons key event))))
3684 (t
3685 (let ((key (read-event)))
3686 (cons key key)))))
3687
3688(defun calc-unread-command (&optional input)
3689 (if (featurep 'xemacs)
3690 (setq unread-command-event
3691 (if (integerp input) (character-to-event input)
3692 (or input last-command-event)))
3693 (push (or input last-command-event) unread-command-events)))
3694
3695(defun calc-clear-unread-commands ()
3696 (if (featurep 'xemacs)
3697 (setq unread-command-event nil)
3698 (setq unread-command-events nil)))
3699
3700(when calc-always-load-extensions
3701 (require 'calc-ext)
3702 (calc-load-everything))
3703
3704
3705(run-hooks 'calc-load-hook)
3706
3707(provide 'calc)
3708
3709;; arch-tag: 0c3b170c-4ce6-4eaf-8d9b-5834d1fe938f
3710;;; calc.el ends here