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879 lines
27 KiB
EmacsLisp
879 lines
27 KiB
EmacsLisp
;;; calc-sel.el --- data selection functions for Calc
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;; Copyright (C) 1990-1993, 2001-2015 Free Software Foundation, Inc.
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;; Author: David Gillespie <daveg@synaptics.com>
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;; Maintainer: Jay Belanger <jay.p.belanger@gmail.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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;;; Selection commands.
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(defvar calc-keep-selection t)
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(defvar calc-selection-cache-entry nil)
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(defvar calc-selection-cache-num)
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(defvar calc-selection-cache-comp)
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(defvar calc-selection-cache-offset)
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(defvar calc-selection-true-num)
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(defun calc-select-here (num &optional once keep)
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(interactive "P")
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(calc-wrapper
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(calc-prepare-selection)
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(let ((found (calc-find-selected-part))
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(entry calc-selection-cache-entry))
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(or (and keep (nth 2 entry))
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(progn
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(if once (progn
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(setq calc-keep-selection nil)
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(message "(Selection will apply to next command only)")))
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(calc-change-current-selection
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(if found
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(if (and num (> (setq num (prefix-numeric-value num)) 0))
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(progn
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(while (and (>= (setq num (1- num)) 0)
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(not (eq found (car entry))))
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(setq found (calc-find-assoc-parent-formula
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(car entry) found)))
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found)
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(calc-grow-assoc-formula (car entry) found))
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(car entry))))))))
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(defun calc-select-once (num)
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(interactive "P")
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(calc-select-here num t))
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(defun calc-select-here-maybe (num)
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(interactive "P")
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(calc-select-here num nil t))
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(defun calc-select-once-maybe (num)
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(interactive "P")
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(calc-select-here num t t))
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(defun calc-select-additional ()
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(interactive)
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(calc-wrapper
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(let (calc-keep-selection)
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(calc-prepare-selection))
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(let ((found (calc-find-selected-part))
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(entry calc-selection-cache-entry))
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(calc-change-current-selection
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(if found
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(let ((sel (nth 2 entry)))
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(if sel
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(progn
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(while (not (or (eq sel (car entry))
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(calc-find-sub-formula sel found)))
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(setq sel (calc-find-assoc-parent-formula
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(car entry) sel)))
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sel)
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(calc-grow-assoc-formula (car entry) found)))
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(car entry))))))
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(defun calc-select-more (num)
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(interactive "P")
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(calc-wrapper
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(calc-prepare-selection)
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(let ((entry calc-selection-cache-entry))
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(if (nth 2 entry)
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(let ((sel (nth 2 entry)))
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(while (and (not (eq sel (car entry)))
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(>= (setq num (1- (prefix-numeric-value num))) 0))
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(setq sel (calc-find-assoc-parent-formula (car entry) sel)))
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(calc-change-current-selection sel))
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(calc-select-here num)))))
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(defun calc-select-less (num)
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(interactive "p")
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(calc-wrapper
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(calc-prepare-selection)
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(let ((found (calc-find-selected-part))
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(entry calc-selection-cache-entry))
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(calc-change-current-selection
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(and found
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(let ((sel (nth 2 entry))
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old index op)
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(while (and sel
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(not (eq sel found))
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(>= (setq num (1- num)) 0))
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(setq old sel
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index (calc-find-sub-formula sel found))
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(and (setq sel (and index (nth index old)))
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calc-assoc-selections
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(setq op (assq (car-safe sel) calc-assoc-ops))
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(memq (car old) (nth index op))
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(setq num (1+ num))))
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sel))))))
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(defun calc-select-part (num)
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(interactive "P")
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(or num (setq num (- last-command-event ?0)))
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(calc-wrapper
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(calc-prepare-selection)
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(let ((sel (calc-find-nth-part (or (nth 2 calc-selection-cache-entry)
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(car calc-selection-cache-entry))
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num)))
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(if sel
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(calc-change-current-selection sel)
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(error "%d is not a valid sub-formula index" num)))))
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;; The variables calc-fnp-op and calc-fnp-num are local to
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;; calc-find-nth-part (and calc-select-previous) but used by
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;; calc-find-nth-part-rec, which is called by them.
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(defvar calc-fnp-op)
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(defvar calc-fnp-num)
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(defun calc-find-nth-part (expr calc-fnp-num)
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(if (and calc-assoc-selections
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(assq (car-safe expr) calc-assoc-ops))
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(let (calc-fnp-op)
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(calc-find-nth-part-rec expr))
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(if (eq (car-safe expr) 'intv)
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(and (>= calc-fnp-num 1) (<= calc-fnp-num 2) (nth (1+ calc-fnp-num) expr))
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(and (not (Math-primp expr)) (>= calc-fnp-num 1) (< calc-fnp-num (length expr))
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(nth calc-fnp-num expr)))))
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(defun calc-find-nth-part-rec (expr) ; uses num, op
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(or (if (and (setq calc-fnp-op (assq (car-safe (nth 1 expr)) calc-assoc-ops))
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(memq (car expr) (nth 1 calc-fnp-op)))
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(calc-find-nth-part-rec (nth 1 expr))
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(and (= (setq calc-fnp-num (1- calc-fnp-num)) 0)
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(nth 1 expr)))
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(if (and (setq calc-fnp-op (assq (car-safe (nth 2 expr)) calc-assoc-ops))
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(memq (car expr) (nth 2 calc-fnp-op)))
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(calc-find-nth-part-rec (nth 2 expr))
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(and (= (setq calc-fnp-num (1- calc-fnp-num)) 0)
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(nth 2 expr)))))
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(defun calc-select-next (num)
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(interactive "p")
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(if (< num 0)
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(calc-select-previous (- num))
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(calc-wrapper
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(calc-prepare-selection)
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(let* ((entry calc-selection-cache-entry)
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(sel (nth 2 entry)))
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(if sel
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(progn
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(while (>= (setq num (1- num)) 0)
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(let* ((parent (calc-find-parent-formula (car entry) sel))
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(p parent)
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op)
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(and (eq p t) (setq p nil))
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(while (and (setq p (cdr p))
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(not (eq (car p) sel))))
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(if (cdr p)
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(setq sel (or (and calc-assoc-selections
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(setq op (assq (car-safe (nth 1 p))
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calc-assoc-ops))
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(memq (car parent) (nth 2 op))
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(nth 1 (nth 1 p)))
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(nth 1 p)))
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(if (and calc-assoc-selections
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(setq op (assq (car-safe parent) calc-assoc-ops))
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(consp (setq p (calc-find-parent-formula
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(car entry) parent)))
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(eq (nth 1 p) parent)
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(memq (car p) (nth 1 op)))
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(setq sel (nth 2 p))
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(error "No \"next\" sub-formula")))))
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(calc-change-current-selection sel))
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(if (Math-primp (car entry))
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(calc-change-current-selection (car entry))
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(calc-select-part num)))))))
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(defun calc-select-previous (num)
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(interactive "p")
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(if (< num 0)
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(calc-select-next (- num))
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(calc-wrapper
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(calc-prepare-selection)
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(let* ((entry calc-selection-cache-entry)
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(sel (nth 2 entry)))
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(if sel
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(progn
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(while (>= (setq num (1- num)) 0)
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(let* ((parent (calc-find-parent-formula (car entry) sel))
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(p (cdr-safe parent))
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(prev nil)
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op)
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(if (eq (car-safe parent) 'intv) (setq p (cdr p)))
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(while (and (not (eq (car p) sel))
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(setq prev (car p)
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p (cdr p))))
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(if prev
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(setq sel (or (and calc-assoc-selections
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(setq op (assq (car-safe prev)
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calc-assoc-ops))
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(memq (car parent) (nth 1 op))
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(nth 2 prev))
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prev))
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(if (and calc-assoc-selections
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(setq op (assq (car-safe parent) calc-assoc-ops))
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(consp (setq p (calc-find-parent-formula
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(car entry) parent)))
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(eq (nth 2 p) parent)
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(memq (car p) (nth 2 op)))
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(setq sel (nth 1 p))
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(error "No \"previous\" sub-formula")))))
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(calc-change-current-selection sel))
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(if (Math-primp (car entry))
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(calc-change-current-selection (car entry))
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(let ((len (if (and calc-assoc-selections
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(assq (car (car entry)) calc-assoc-ops))
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(let (calc-fnp-op (calc-fnp-num 0))
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(calc-find-nth-part-rec (car entry))
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(- 1 calc-fnp-num))
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(length (car entry)))))
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(calc-select-part (- len num)))))))))
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(defun calc-find-parent-formula (expr part)
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(cond ((eq expr part) t)
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((Math-primp expr) nil)
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(t
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(let ((p expr) res)
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(while (and (setq p (cdr p))
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(not (setq res (calc-find-parent-formula
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(car p) part)))))
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(and p
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(if (eq res t) expr res))))))
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(defun calc-find-assoc-parent-formula (expr part)
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(calc-grow-assoc-formula expr (calc-find-parent-formula expr part)))
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(defun calc-grow-assoc-formula (expr part)
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(if calc-assoc-selections
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(let ((op (assq (car-safe part) calc-assoc-ops)))
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(if op
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(let (new)
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(while (and (consp (setq new (calc-find-parent-formula
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expr part)))
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(memq (car new)
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(nth (calc-find-sub-formula new part) op)))
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(setq part new))))
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part)
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part))
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(defun calc-find-sub-formula (expr part)
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(cond ((eq expr part) t)
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((Math-primp expr) nil)
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(t
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(let ((num 1))
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(while (and (setq expr (cdr expr))
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(not (calc-find-sub-formula (car expr) part)))
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(setq num (1+ num)))
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(and expr num)))))
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(defun calc-unselect (num)
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(interactive "P")
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(calc-wrapper
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(calc-prepare-selection num)
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(calc-change-current-selection nil)))
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(defun calc-clear-selections ()
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(interactive)
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(calc-wrapper
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(let ((limit (calc-stack-size))
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(n 1))
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(while (<= n limit)
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(if (calc-top n 'sel)
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(progn
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(calc-prepare-selection n)
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(calc-change-current-selection nil)))
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(setq n (1+ n))))
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(calc-clear-command-flag 'position-point)))
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(defvar calc-highlight-selections-with-faces)
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(defun calc-show-selections (arg)
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(interactive "P")
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(calc-wrapper
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(calc-preserve-point)
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(setq calc-show-selections (if arg
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(> (prefix-numeric-value arg) 0)
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(not calc-show-selections)))
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(let ((p calc-stack))
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(while (and p
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(or (null (nth 2 (car p)))
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(equal (car p) calc-selection-cache-entry)))
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(setq p (cdr p)))
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(or (and p
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(let ((calc-selection-cache-default-entry
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calc-selection-cache-entry))
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(calc-do-refresh)))
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(and calc-selection-cache-entry
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(let ((sel (nth 2 calc-selection-cache-entry)))
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(setcar (nthcdr 2 calc-selection-cache-entry) nil)
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(calc-change-current-selection sel)))))
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(message (if calc-show-selections
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(if calc-highlight-selections-with-faces
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"De-emphasizing all but selected part of formulas"
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"Displaying only selected part of formulas")
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(if calc-highlight-selections-with-faces
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"Emphasizing selected part of formulas"
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"Displaying all but selected part of formulas")))))
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;; The variables calc-final-point-line and calc-final-point-column
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;; are declared in calc.el, and are used throughout.
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(defvar calc-final-point-line)
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(defvar calc-final-point-column)
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(defun calc-preserve-point ()
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(or (looking-at "\\.\n+\\'")
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(progn
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(setq calc-final-point-line (+ (count-lines (point-min) (point))
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(if (bolp) 1 0))
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calc-final-point-column (current-column))
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(calc-set-command-flag 'position-point))))
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(defun calc-enable-selections (arg)
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(interactive "P")
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(calc-wrapper
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(calc-preserve-point)
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(setq calc-use-selections (if arg
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(> (prefix-numeric-value arg) 0)
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(not calc-use-selections)))
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(calc-set-command-flag 'renum-stack)
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(message (if calc-use-selections
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"Commands operate only on selected sub-formulas"
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"Selections of sub-formulas have no effect"))))
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(defun calc-break-selections (arg)
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(interactive "P")
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(calc-wrapper
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(calc-preserve-point)
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(setq calc-assoc-selections (if arg
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(<= (prefix-numeric-value arg) 0)
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(not calc-assoc-selections)))
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(message (if calc-assoc-selections
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"Selection treats a+b+c as a sum of three terms"
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"Selection treats a+b+c as (a+b)+c"))))
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(defun calc-prepare-selection (&optional num)
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(or num (setq num (calc-locate-cursor-element (point))))
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(setq calc-selection-true-num num
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calc-keep-selection t)
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(or (> num 0) (setq num 1))
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;; (if (or (< num 1) (> num (calc-stack-size)))
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;; (error "Cursor must be positioned on a stack element"))
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(let* ((entry (calc-top num 'entry))
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ww w)
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(or (equal entry calc-selection-cache-entry)
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(progn
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(setcar entry (calc-encase-atoms (car entry)))
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(setq calc-selection-cache-entry entry
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calc-selection-cache-num num
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calc-selection-cache-comp
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(let ((math-comp-tagged t))
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(math-compose-expr (car entry) 0))
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calc-selection-cache-offset
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(+ (car (math-stack-value-offset calc-selection-cache-comp))
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(length calc-left-label)
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(if calc-line-numbering 4 0))))))
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(calc-preserve-point))
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;;; The following ensures that no two subformulas will be "eq" to each other!
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(defun calc-encase-atoms (x)
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(if (or (not (consp x))
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(equal x '(float 0 0)))
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(list 'cplx x 0)
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(calc-encase-atoms-rec x)
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x))
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(defun calc-encase-atoms-rec (x)
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(or (Math-primp x)
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(progn
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(if (eq (car x) 'intv)
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(setq x (cdr x)))
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(while (setq x (cdr x))
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(if (or (not (consp (car x)))
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(equal (car x) '(float 0 0)))
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(setcar x (list 'cplx (car x) 0))
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(calc-encase-atoms-rec (car x)))))))
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;; The variable math-comp-sel-tag is local to calc-find-selected-part,
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;; but is used by math-comp-sel-flat-term and math-comp-add-string-sel
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;; in calccomp.el, which are called (indirectly) by calc-find-selected-part.
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(defun calc-find-selected-part ()
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(let* ((math-comp-sel-hpos (- (current-column) calc-selection-cache-offset))
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toppt
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(lcount 0)
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(spaces 0)
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(math-comp-sel-vpos (save-excursion
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(beginning-of-line)
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(let ((line (point)))
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(calc-cursor-stack-index
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calc-selection-cache-num)
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(setq toppt (point))
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(while (< (point) line)
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(forward-line 1)
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(setq spaces (+ spaces
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(current-indentation))
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lcount (1+ lcount)))
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(- lcount (math-comp-ascent
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calc-selection-cache-comp) -1))))
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(math-comp-sel-cpos (- (point) toppt calc-selection-cache-offset
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spaces lcount))
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(math-comp-sel-tag nil))
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(and (>= math-comp-sel-hpos 0)
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(> calc-selection-true-num 0)
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(math-composition-to-string calc-selection-cache-comp 1000000))
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(nth 1 math-comp-sel-tag)))
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(defun calc-change-current-selection (sub-expr)
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(or (eq sub-expr (nth 2 calc-selection-cache-entry))
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(let ((calc-prepared-composition calc-selection-cache-comp)
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(buffer-read-only nil)
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top)
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(calc-set-command-flag 'renum-stack)
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(setcar (nthcdr 2 calc-selection-cache-entry) sub-expr)
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(calc-cursor-stack-index calc-selection-cache-num)
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(setq top (point))
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(calc-cursor-stack-index (1- calc-selection-cache-num))
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(delete-region top (point))
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(let ((calc-selection-cache-default-entry calc-selection-cache-entry))
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(insert (math-format-stack-value calc-selection-cache-entry)
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"\n")))))
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(defun calc-top-selected (&optional n m)
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(and calc-any-selections
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calc-use-selections
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(progn
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(or n (setq n 1))
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(or m (setq m 1))
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(calc-check-stack (+ n m -1))
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(let ((top (nthcdr (+ m calc-stack-top -1) calc-stack))
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(sel nil))
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(while (>= (setq n (1- n)) 0)
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(if (nth 2 (car top))
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(setq sel (if sel t (nth 2 (car top)))))
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(setq top (cdr top)))
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sel))))
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;; The variables calc-rsf-old and calc-rsf-new are local to
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;; calc-replace-sub-formula, but used by calc-replace-sub-formula-rec,
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;; which is called by calc-replace-sub-formula.
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(defvar calc-rsf-old)
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(defvar calc-rsf-new)
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(defun calc-replace-sub-formula (expr calc-rsf-old calc-rsf-new)
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(setq calc-rsf-new (calc-encase-atoms calc-rsf-new))
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(calc-replace-sub-formula-rec expr))
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(defun calc-replace-sub-formula-rec (expr)
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(cond ((eq expr calc-rsf-old) calc-rsf-new)
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((Math-primp expr) expr)
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(t
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(cons (car expr)
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(mapcar 'calc-replace-sub-formula-rec (cdr expr))))))
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(defun calc-sel-error ()
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(error "Invalid operation on sub-formulas"))
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(defun calc-replace-selections (n vals m)
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(if (calc-top-selected n m)
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(let ((num (length vals)))
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(calc-preserve-point)
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(cond
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((= n num)
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(let* ((old (calc-top-list n m 'entry))
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(new nil)
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(sel nil)
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val)
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(while old
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(if (nth 2 (car old))
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(setq val (calc-encase-atoms (car vals))
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new (cons (calc-replace-sub-formula (car (car old))
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(nth 2 (car old))
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val)
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new)
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sel (cons val sel))
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(setq new (cons (car vals) new)
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sel (cons nil sel)))
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(setq vals (cdr vals)
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old (cdr old)))
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(calc-pop-stack n m t)
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(calc-push-list (nreverse new)
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m (and calc-keep-selection (nreverse sel)))))
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((= num 1)
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(let* ((old (calc-top-list n m 'entry))
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more)
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(while (and old (not (nth 2 (car old))))
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(setq old (cdr old)))
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(setq more old)
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(while (and (setq more (cdr more)) (not (nth 2 (car more)))))
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(and more
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(calc-sel-error))
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(calc-pop-stack n m t)
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(if old
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(let ((val (calc-encase-atoms (car vals))))
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(calc-push-list (list (calc-replace-sub-formula
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(car (car old))
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(nth 2 (car old))
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val))
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m (and calc-keep-selection (list val))))
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(calc-push-list vals))))
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(t (calc-sel-error))))
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(calc-pop-stack n m t)
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(calc-push-list vals m)))
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(defun calc-delete-selection (n)
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(let ((entry (calc-top n 'entry)))
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(if (nth 2 entry)
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(if (eq (nth 2 entry) (car entry))
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(progn
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(calc-pop-stack 1 n t)
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(calc-push-list '(0) n))
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(let ((parent (calc-find-parent-formula (car entry) (nth 2 entry)))
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(repl nil))
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(calc-preserve-point)
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(calc-pop-stack 1 n t)
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(cond ((or (memq (car parent) '(* / %))
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(and (eq (car parent) '^)
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(eq (nth 2 parent) (nth 2 entry))))
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(setq repl 1))
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((memq (car parent) '(vec calcFunc-min calcFunc-max)))
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((and (assq (car parent) calc-tweak-eqn-table)
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(= (length parent) 3))
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(setq repl 'del))
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|
(t
|
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(setq repl 0)))
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(cond
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((eq repl 'del)
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(calc-push-list (list
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|
(calc-normalize
|
|
(calc-replace-sub-formula
|
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(car entry)
|
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parent
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(if (eq (nth 2 entry) (nth 1 parent))
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(nth 2 parent)
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(nth 1 parent)))))
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n))
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(repl
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(calc-push-list (list
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(calc-normalize
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(calc-replace-sub-formula (car entry)
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(nth 2 entry)
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repl)))
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n))
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(t
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(calc-push-list (list
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(calc-normalize
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(calc-replace-sub-formula (car entry)
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parent
|
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(delq (nth 2 entry)
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(copy-sequence
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parent)))))
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n)))))
|
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(calc-pop-stack 1 n t))))
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(defun calc-roll-down-with-selections (n m)
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(let ((vals (append (calc-top-list m 1)
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(calc-top-list (- n m) (1+ m))))
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(sels (append (calc-top-list m 1 'sel)
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(calc-top-list (- n m) (1+ m) 'sel))))
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(calc-pop-push-list n vals 1 sels)))
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(defun calc-roll-up-with-selections (n m)
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(let ((vals (append (calc-top-list (- n m) 1)
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(calc-top-list m (- n m -1))))
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(sels (append (calc-top-list (- n m) 1 'sel)
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(calc-top-list m (- n m -1) 'sel))))
|
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(calc-pop-push-list n vals 1 sels)))
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;; The variable calc-sel-reselect is local to several functions
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;; which call calc-auto-selection.
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(defvar calc-sel-reselect)
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|
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(defun calc-auto-selection (entry)
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(or (nth 2 entry)
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|
(progn
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(setq calc-sel-reselect nil)
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(calc-prepare-selection)
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(calc-grow-assoc-formula (car entry) (calc-find-selected-part)))))
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|
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(defun calc-copy-selection ()
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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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(entry (calc-top num 'entry)))
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(calc-push (or (calc-auto-selection entry) (car entry))))))
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|
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(defun calc-del-selection ()
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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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(entry (calc-top num 'entry))
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(sel (calc-auto-selection entry)))
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(setcar (nthcdr 2 entry) (and (not (eq sel (car entry))) sel))
|
|
(calc-delete-selection num))))
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(defvar calc-selection-history nil
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"History for calc selections.")
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(defun calc-enter-selection ()
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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))
|
|
(sel (or (calc-auto-selection entry) expr))
|
|
alg)
|
|
(let ((calc-dollar-values (list sel))
|
|
(calc-dollar-used 0))
|
|
(setq alg (calc-do-alg-entry "" "Replace selection with: " nil
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|
'calc-selection-history))
|
|
(and alg
|
|
(progn
|
|
(setq alg (calc-encase-atoms (car alg)))
|
|
(calc-pop-push-record-list 1 "repl"
|
|
(list (calc-replace-sub-formula
|
|
expr sel alg))
|
|
num
|
|
(list (and calc-sel-reselect alg))))))
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|
(calc-handle-whys))))
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|
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(defun calc-edit-selection ()
|
|
(interactive)
|
|
(calc-wrapper
|
|
(calc-preserve-point)
|
|
(let* ((num (max 1 (calc-locate-cursor-element (point))))
|
|
(calc-sel-reselect calc-keep-selection)
|
|
(entry (calc-top num 'entry))
|
|
(expr (car entry))
|
|
(sel (or (calc-auto-selection entry) expr))
|
|
alg)
|
|
(let ((str (math-showing-full-precision
|
|
(math-format-nice-expr sel (frame-width)))))
|
|
(calc-edit-mode (list 'calc-finish-selection-edit
|
|
num (list 'quote sel) calc-sel-reselect))
|
|
(insert str "\n"))))
|
|
(calc-show-edit-buffer))
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|
|
|
(defvar calc-original-buffer)
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|
|
|
;; The variable calc-edit-disp-trail is local to calc-edit-finish,
|
|
;; in calc-yank.el.
|
|
(defvar calc-edit-disp-trail)
|
|
(defvar calc-edit-top)
|
|
|
|
(defun calc-finish-selection-edit (num sel reselect)
|
|
(let ((buf (current-buffer))
|
|
(str (buffer-substring calc-edit-top (point-max)))
|
|
(start (point)))
|
|
(switch-to-buffer calc-original-buffer)
|
|
(let ((val (math-read-expr str)))
|
|
(if (eq (car-safe val) 'error)
|
|
(progn
|
|
(switch-to-buffer buf)
|
|
(goto-char (+ start (nth 1 val)))
|
|
(error (nth 2 val))))
|
|
(calc-wrapper
|
|
(calc-preserve-point)
|
|
(if calc-edit-disp-trail
|
|
(calc-trail-display 1 t))
|
|
(setq val (calc-encase-atoms (calc-normalize val)))
|
|
(let ((expr (calc-top num 'full)))
|
|
(if (calc-find-sub-formula expr sel)
|
|
(calc-pop-push-record-list 1 "edit"
|
|
(list (calc-replace-sub-formula
|
|
expr sel val))
|
|
num
|
|
(list (and reselect val)))
|
|
(calc-push val)
|
|
(error "Original selection has been lost")))))))
|
|
|
|
(defun calc-sel-evaluate (arg)
|
|
(interactive "p")
|
|
(calc-slow-wrapper
|
|
(calc-preserve-point)
|
|
(let* ((num (max 1 (calc-locate-cursor-element (point))))
|
|
(calc-sel-reselect calc-keep-selection)
|
|
(entry (calc-top num 'entry))
|
|
(sel (or (calc-auto-selection entry) (car entry))))
|
|
(calc-with-default-simplification
|
|
(let ((math-simplify-only nil))
|
|
(calc-modify-simplify-mode arg)
|
|
(let ((val (calc-encase-atoms (calc-normalize sel))))
|
|
(calc-pop-push-record-list 1 "jsmp"
|
|
(list (calc-replace-sub-formula
|
|
(car entry) sel val))
|
|
num
|
|
(list (and calc-sel-reselect val))))))
|
|
(calc-handle-whys))))
|
|
|
|
(defun calc-sel-expand-formula (arg)
|
|
(interactive "p")
|
|
(calc-slow-wrapper
|
|
(calc-preserve-point)
|
|
(let* ((num (max 1 (calc-locate-cursor-element (point))))
|
|
(calc-sel-reselect calc-keep-selection)
|
|
(entry (calc-top num 'entry))
|
|
(sel (or (calc-auto-selection entry) (car entry))))
|
|
(calc-with-default-simplification
|
|
(let ((math-simplify-only nil))
|
|
(calc-modify-simplify-mode arg)
|
|
(let* ((math-expand-formulas (> arg 0))
|
|
(val (calc-normalize sel))
|
|
top)
|
|
(and (<= arg 0)
|
|
(setq top (math-expand-formula val))
|
|
(setq val (calc-normalize top)))
|
|
(setq val (calc-encase-atoms val))
|
|
(calc-pop-push-record-list 1 "jexf"
|
|
(list (calc-replace-sub-formula
|
|
(car entry) sel val))
|
|
num
|
|
(list (and calc-sel-reselect val))))))
|
|
(calc-handle-whys))))
|
|
|
|
(defun calc-sel-mult-both-sides (arg &optional divide)
|
|
(interactive "P")
|
|
(calc-wrapper
|
|
(calc-preserve-point)
|
|
(let* ((no-simp (consp arg))
|
|
(num (max 1 (calc-locate-cursor-element (point))))
|
|
(calc-sel-reselect calc-keep-selection)
|
|
(entry (calc-top num 'entry))
|
|
(expr (car entry))
|
|
(sel (or (calc-auto-selection entry) expr))
|
|
(func (car-safe sel))
|
|
alg lhs rhs)
|
|
(setq alg (calc-with-default-simplification
|
|
(car (calc-do-alg-entry ""
|
|
(if divide
|
|
"Divide both sides by: "
|
|
"Multiply both sides by: ")
|
|
nil 'calc-selection-history))))
|
|
(and alg
|
|
(progn
|
|
(if (and (or (eq func '/)
|
|
(assq func calc-tweak-eqn-table))
|
|
(= (length sel) 3))
|
|
(progn
|
|
(or (memq func '(/ calcFunc-eq calcFunc-neq))
|
|
(if (math-known-nonposp alg)
|
|
(progn
|
|
(setq func (nth 1 (assq func
|
|
calc-tweak-eqn-table)))
|
|
(or (math-known-negp alg)
|
|
(message "Assuming this factor is nonzero")))
|
|
(or (math-known-posp alg)
|
|
(if (math-known-nonnegp alg)
|
|
(message "Assuming this factor is nonzero")
|
|
(message "Assuming this factor is positive")))))
|
|
(setq lhs (list (if divide '/ '*) (nth 1 sel) alg)
|
|
rhs (list (if divide '/ '*) (nth 2 sel) alg))
|
|
(or no-simp
|
|
(progn
|
|
(setq lhs (math-simplify lhs)
|
|
rhs (math-simplify rhs))
|
|
(and (eq func '/)
|
|
(or (Math-equal (nth 1 sel) 1)
|
|
(Math-equal (nth 1 sel) -1))
|
|
; (and (memq (car-safe (nth 2 sel)) '(+ -))
|
|
; (memq (car-safe alg) '(+ -))))
|
|
(unless arg
|
|
(setq rhs (math-expand-term rhs))))))
|
|
(if (and arg (not no-simp))
|
|
(setq rhs (math-simplify
|
|
(calcFunc-expand rhs (unless (= arg 0) arg)))))
|
|
(setq alg (calc-encase-atoms
|
|
(calc-normalize (list func lhs rhs)))))
|
|
(setq rhs (list (if divide '* '/) sel alg))
|
|
(or no-simp
|
|
(setq rhs (math-simplify rhs)))
|
|
(setq alg (calc-encase-atoms
|
|
(calc-normalize (if divide
|
|
(list '/ rhs alg)
|
|
(list '* alg rhs))))))
|
|
(calc-pop-push-record-list 1 (if divide "div" "mult")
|
|
(list (calc-replace-sub-formula
|
|
expr sel alg))
|
|
num
|
|
(list (and calc-sel-reselect alg)))))
|
|
(calc-handle-whys))))
|
|
|
|
(defun calc-sel-div-both-sides (no-simp)
|
|
(interactive "P")
|
|
(calc-sel-mult-both-sides no-simp t))
|
|
|
|
(defun calc-sel-add-both-sides (no-simp &optional subtract)
|
|
(interactive "P")
|
|
(calc-wrapper
|
|
(calc-preserve-point)
|
|
(let* ((num (max 1 (calc-locate-cursor-element (point))))
|
|
(calc-sel-reselect calc-keep-selection)
|
|
(entry (calc-top num 'entry))
|
|
(expr (car entry))
|
|
(sel (or (calc-auto-selection entry) expr))
|
|
(func (car-safe sel))
|
|
alg lhs rhs)
|
|
(setq alg (calc-with-default-simplification
|
|
(car (calc-do-alg-entry ""
|
|
(if subtract
|
|
"Subtract from both sides: "
|
|
"Add to both sides: ")
|
|
nil 'calc-selection-history))))
|
|
(and alg
|
|
(progn
|
|
(if (and (assq func calc-tweak-eqn-table)
|
|
(= (length sel) 3))
|
|
(progn
|
|
(setq lhs (list (if subtract '- '+) (nth 1 sel) alg)
|
|
rhs (list (if subtract '- '+) (nth 2 sel) alg))
|
|
(or no-simp
|
|
(setq lhs (math-simplify lhs)
|
|
rhs (math-simplify rhs)))
|
|
(setq alg (calc-encase-atoms
|
|
(calc-normalize (list func lhs rhs)))))
|
|
(setq rhs (list (if subtract '+ '-) sel alg))
|
|
(or no-simp
|
|
(setq rhs (math-simplify rhs)))
|
|
(setq alg (calc-encase-atoms
|
|
(calc-normalize (list (if subtract '- '+) alg rhs)))))
|
|
(calc-pop-push-record-list 1 (if subtract "sub" "add")
|
|
(list (calc-replace-sub-formula
|
|
expr sel alg))
|
|
num
|
|
(list (and calc-sel-reselect alg)))))
|
|
(calc-handle-whys))))
|
|
|
|
(defun calc-sel-sub-both-sides (no-simp)
|
|
(interactive "P")
|
|
(calc-sel-add-both-sides no-simp t))
|
|
|
|
(provide 'calc-sel)
|
|
|
|
;;; calc-sel.el ends here
|