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302 lines
9.1 KiB
EmacsLisp
302 lines
9.1 KiB
EmacsLisp
;;; calcsel2.el --- selection functions for Calc
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;; Copyright (C) 1990-1993, 2001-2016 Free Software Foundation, Inc.
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;; Author: David Gillespie <daveg@synaptics.com>
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;; This file is part of GNU Emacs.
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;; GNU Emacs is free software: you can redistribute it and/or modify
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;; it under the terms of the GNU General Public License as published by
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;; the Free Software Foundation, either version 3 of the License, or
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;; (at your option) any later version.
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;; GNU Emacs is distributed in the hope that it will be useful,
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;; but WITHOUT ANY WARRANTY; without even the implied warranty of
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;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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;; GNU General Public License for more details.
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;; You should have received a copy of the GNU General Public License
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;; along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>.
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;;; Commentary:
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;;; Code:
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;; This file is autoloaded from calc-ext.el.
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(require 'calc-ext)
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(require 'calc-macs)
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;; The variable calc-keep-selection is declared and set in calc-sel.el.
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(defvar calc-keep-selection)
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;; The variable calc-sel-reselect is local to the methods below,
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;; but is used by some functions in calc-sel.el which are called
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;; by the functions below.
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(defun calc-commute-left (arg)
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(interactive "p")
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(if (< arg 0)
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(calc-commute-right (- arg))
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(calc-wrapper
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(calc-preserve-point)
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(let ((num (max 1 (calc-locate-cursor-element (point))))
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(calc-sel-reselect calc-keep-selection))
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(if (= arg 0) (setq arg nil))
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(while (or (null arg) (>= (setq arg (1- arg)) 0))
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(let* ((entry (calc-top num 'entry))
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(expr (car entry))
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(sel (calc-auto-selection entry))
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parent new)
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(or (and sel
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(consp (setq parent (calc-find-assoc-parent-formula
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expr sel))))
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(error "No term is selected"))
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(if (and calc-assoc-selections
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(assq (car parent) calc-assoc-ops))
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(let ((outer (calc-find-parent-formula parent sel)))
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(if (eq sel (nth 2 outer))
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(setq new (calc-replace-sub-formula
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parent outer
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(cond
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((memq (car outer)
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(nth 1 (assq (car-safe (nth 1 outer))
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calc-assoc-ops)))
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(let* ((other (nth 2 (nth 1 outer)))
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(new (calc-build-assoc-term
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(car (nth 1 outer))
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(calc-build-assoc-term
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(car outer)
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(nth 1 (nth 1 outer))
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sel)
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other)))
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(setq sel (nth 2 (nth 1 new)))
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new))
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((eq (car outer) '-)
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(calc-build-assoc-term
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'+
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(setq sel (math-neg sel))
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(nth 1 outer)))
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((eq (car outer) '/)
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(calc-build-assoc-term
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'*
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(setq sel (calcFunc-div 1 sel))
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(nth 1 outer)))
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(t (calc-build-assoc-term
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(car outer) sel (nth 1 outer))))))
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(let ((next (calc-find-parent-formula parent outer)))
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(if (not (and (consp next)
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(eq outer (nth 2 next))
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(eq (car next) (car outer))))
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(setq new nil)
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(setq new (calc-build-assoc-term
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(car next)
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sel
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(calc-build-assoc-term
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(car next) (nth 1 next) (nth 2 outer)))
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sel (nth 1 new)
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new (calc-replace-sub-formula
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parent next new))))))
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(if (eq (nth 1 parent) sel)
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(setq new nil)
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(let ((p (nthcdr (1- (calc-find-sub-formula parent sel))
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(setq new (copy-sequence parent)))))
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(setcar (cdr p) (car p))
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(setcar p sel))))
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(if (null new)
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(if arg
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(error "Term is already leftmost")
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(or calc-sel-reselect
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(calc-pop-push-list 1 (list expr) num '(nil)))
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(setq arg 0))
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(calc-pop-push-record-list
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1 "left"
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(list (calc-replace-sub-formula expr parent new))
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num
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(list (and (or (not (eq arg 0)) calc-sel-reselect)
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sel))))))))))
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(defun calc-commute-right (arg)
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(interactive "p")
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(if (< arg 0)
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(calc-commute-left (- arg))
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(calc-wrapper
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(calc-preserve-point)
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(let ((num (max 1 (calc-locate-cursor-element (point))))
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(calc-sel-reselect calc-keep-selection))
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(if (= arg 0) (setq arg nil))
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(while (or (null arg) (>= (setq arg (1- arg)) 0))
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(let* ((entry (calc-top num 'entry))
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(expr (car entry))
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(sel (calc-auto-selection entry))
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parent new)
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(or (and sel
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(consp (setq parent (calc-find-assoc-parent-formula
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expr sel))))
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(error "No term is selected"))
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(if (and calc-assoc-selections
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(assq (car parent) calc-assoc-ops))
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(let ((outer (calc-find-parent-formula parent sel)))
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(if (eq sel (nth 1 outer))
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(setq new (calc-replace-sub-formula
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parent outer
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(if (memq (car outer)
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(nth 2 (assq (car-safe (nth 2 outer))
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calc-assoc-ops)))
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(let ((other (nth 1 (nth 2 outer))))
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(calc-build-assoc-term
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(car outer)
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other
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(calc-build-assoc-term
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(car (nth 2 outer))
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sel
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(nth 2 (nth 2 outer)))))
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(let ((new (cond
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((eq (car outer) '-)
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(calc-build-assoc-term
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'+
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(math-neg (nth 2 outer))
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sel))
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((eq (car outer) '/)
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(calc-build-assoc-term
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'*
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(calcFunc-div 1 (nth 2 outer))
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sel))
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(t (calc-build-assoc-term
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(car outer)
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(nth 2 outer)
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sel)))))
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(setq sel (nth 2 new))
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new))))
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(let ((next (calc-find-parent-formula parent outer)))
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(if (not (and (consp next)
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(eq outer (nth 1 next))))
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(setq new nil)
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(setq new (calc-build-assoc-term
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(car outer)
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(calc-build-assoc-term
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(car next) (nth 1 outer) (nth 2 next))
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sel)
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sel (nth 2 new)
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new (calc-replace-sub-formula
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parent next new))))))
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(if (eq (nth (1- (length parent)) parent) sel)
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(setq new nil)
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(let ((p (nthcdr (calc-find-sub-formula parent sel)
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(setq new (copy-sequence parent)))))
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(setcar p (nth 1 p))
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(setcar (cdr p) sel))))
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(if (null new)
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(if arg
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(error "Term is already rightmost")
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(or calc-sel-reselect
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(calc-pop-push-list 1 (list expr) num '(nil)))
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(setq arg 0))
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(calc-pop-push-record-list
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1 "rght"
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(list (calc-replace-sub-formula expr parent new))
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num
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(list (and (or (not (eq arg 0)) calc-sel-reselect)
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sel))))))))))
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(defun calc-build-assoc-term (op lhs rhs)
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(cond ((and (eq op '+) (or (math-looks-negp rhs)
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(and (eq (car-safe rhs) 'cplx)
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(math-negp (nth 1 rhs))
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(eq (nth 2 rhs) 0))))
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(list '- lhs (math-neg rhs)))
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((and (eq op '-) (or (math-looks-negp rhs)
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(and (eq (car-safe rhs) 'cplx)
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(math-negp (nth 1 rhs))
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(eq (nth 2 rhs) 0))))
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(list '+ lhs (math-neg rhs)))
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((and (eq op '*) (and (eq (car-safe rhs) '/)
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(or (math-equal-int (nth 1 rhs) 1)
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(equal (nth 1 rhs) '(cplx 1 0)))))
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(list '/ lhs (nth 2 rhs)))
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((and (eq op '/) (and (eq (car-safe rhs) '/)
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(or (math-equal-int (nth 1 rhs) 1)
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(equal (nth 1 rhs) '(cplx 1 0)))))
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(list '/ lhs (nth 2 rhs)))
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(t (list op lhs rhs))))
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(defun calc-sel-unpack ()
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(interactive)
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(calc-wrapper
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(calc-preserve-point)
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(let* ((num (max 1 (calc-locate-cursor-element (point))))
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(calc-sel-reselect calc-keep-selection)
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(entry (calc-top num 'entry))
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(expr (car entry))
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(sel (or (calc-auto-selection entry) expr)))
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(or (and (not (math-primp sel))
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(= (length sel) 2))
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(error "Selection must be a function of one argument"))
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(calc-pop-push-record-list 1 "unpk"
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(list (calc-replace-sub-formula
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expr sel (nth 1 sel)))
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num
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(list (and calc-sel-reselect (nth 1 sel)))))))
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(defun calc-sel-isolate ()
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(interactive)
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(calc-slow-wrapper
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(calc-preserve-point)
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(let* ((num (max 1 (calc-locate-cursor-element (point))))
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(calc-sel-reselect calc-keep-selection)
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(entry (calc-top num 'entry))
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(expr (car entry))
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(sel (or (calc-auto-selection entry) (error "No selection")))
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(eqn sel)
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soln)
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(while (and (or (consp (setq eqn (calc-find-parent-formula expr eqn)))
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(error "Selection must be a member of an equation"))
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(not (assq (car eqn) calc-tweak-eqn-table))))
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(setq soln (math-solve-eqn eqn sel calc-hyperbolic-flag))
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(or soln
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(error "No solution found"))
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(setq soln (calc-encase-atoms
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(if (eq (not (calc-find-sub-formula (nth 2 eqn) sel))
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(eq (nth 1 soln) sel))
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soln
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(list (nth 1 (assq (car soln) calc-tweak-eqn-table))
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(nth 2 soln)
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(nth 1 soln)))))
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(calc-pop-push-record-list 1 "isol"
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(list (calc-replace-sub-formula
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expr eqn soln))
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num
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(list (and calc-sel-reselect sel)))
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(calc-handle-whys))))
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(defun calc-sel-commute (many)
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(interactive "P")
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(let ((calc-assoc-selections nil))
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(calc-rewrite-selection "CommuteRules" many "cmut"))
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(calc-set-mode-line))
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(defun calc-sel-jump-equals (many)
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(interactive "P")
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(calc-rewrite-selection "JumpRules" many "jump"))
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(defun calc-sel-distribute (many)
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(interactive "P")
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(calc-rewrite-selection "DistribRules" many "dist"))
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(defun calc-sel-merge (many)
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(interactive "P")
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(calc-rewrite-selection "MergeRules" many "merg"))
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(defun calc-sel-negate (many)
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(interactive "P")
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(calc-rewrite-selection "NegateRules" many "jneg"))
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(defun calc-sel-invert (many)
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(interactive "P")
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(calc-rewrite-selection "InvertRules" many "jinv"))
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(provide 'calcsel2)
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;;; calcsel2.el ends here
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