[1201] | 1 | ;;; -*- Mode: Lisp -*-
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[78] | 2 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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| 3 | ;;;
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| 4 | ;;; Copyright (C) 1999, 2002, 2009, 2015 Marek Rychlik <rychlik@u.arizona.edu>
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| 5 | ;;;
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| 6 | ;;; This program is free software; you can redistribute it and/or modify
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| 7 | ;;; it under the terms of the GNU General Public License as published by
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| 8 | ;;; the Free Software Foundation; either version 2 of the License, or
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| 9 | ;;; (at your option) any later version.
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| 10 | ;;;
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| 11 | ;;; This program is distributed in the hope that it will be useful,
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| 12 | ;;; but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 13 | ;;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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| 14 | ;;; GNU General Public License for more details.
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| 15 | ;;;
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| 16 | ;;; You should have received a copy of the GNU General Public License
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| 17 | ;;; along with this program; if not, write to the Free Software
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| 18 | ;;; Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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| 19 | ;;;
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| 20 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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| 21 |
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[397] | 22 | (defpackage "TERM"
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[1605] | 23 | (:use :cl :monom :ring)
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[3219] | 24 | (:export "TERM")
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[2702] | 25 | (:documentation "This package implements class TERM. A term is a
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| 26 | product of a scalar and powers of some variables, such as
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| 27 | 5*X^2*Y^3. The part of the term without the coefficient is a monomial
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| 28 | X^2*Y^3, which is represented by class MONOM, provided by the :MONOM
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| 29 | package. In this implementation, a TERM specializes MONOL. Also, a
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| 30 | monomial can be considered a TERM whose coefficient is the unit
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| 31 | element (1) of the underlying ring. The generic method CHANGE-CLASS
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| 32 | can be used to convert between a MONOM and a TERM, observing this
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[2703] | 33 | convention."))
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[78] | 34 |
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[420] | 35 | (in-package :term)
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| 36 |
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[1926] | 37 | (proclaim '(optimize (speed 3) (space 0) (safety 0) (debug 0)))
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| 38 |
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[3132] | 39 | (defclass term (monom scalar)
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[3140] | 40 | ()
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[3204] | 41 | (:default-initargs :dimension nil :exponents nil :coeff nil)
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[3142] | 42 | (:documentation "Implements a term, i.e. a product of a scalar
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[2704] | 43 | and powers of some variables, such as 5*X^2*Y^3."))
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[766] | 44 |
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[3211] | 45 | (defmethod print-object ((self term) stream)
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| 46 | (print-unreadable-object (self stream :type t :identity t)
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[3215] | 47 | (with-accessors ((dimension monom-dimension)
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| 48 | (exponents monom-exponents)
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| 49 | (coeff scalar-coeff))
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| 50 | self
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| 51 | (format stream "DIMENSION=~A EXPONENTS=~A COEFF=~A"
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| 52 | dimension exponents coeff))))
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[3211] | 53 |
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| 54 |
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[3151] | 55 | (defmethod r-equalp ((term1 term) (term2 term))
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| 56 | (and (r-equalp (scalar-coeff term1) (scalar-coeff term2))
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[3152] | 57 | (= (monom-dimension term1) (monom-dimension term2))
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| 58 | (equalp (monom-exponents term1) (monom-exponents term2))))
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[3151] | 59 |
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[3195] | 60 | (defmethod update-instance-for-different-class :after ((old monom) (new scalar) &key)
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[3194] | 61 | (setf (scalar-coeff new) 1))
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[3164] | 62 |
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[2946] | 63 | (defmethod multiply-by :before ((self term) (other term))
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[2833] | 64 | "Destructively multiply terms SELF and OTHER and store the result into SELF.
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[2805] | 65 | It returns SELF."
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[3143] | 66 | (setf (scalar-coeff self) (multiply-by (scalar-coeff self) (scalar-coeff other))))
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[2477] | 67 |
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[3031] | 68 | (defmethod left-tensor-product-by ((self term) (other term))
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[3143] | 69 | (setf (scalar-coeff self) (multiply-by (scalar-coeff self) (scalar-coeff other)))
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[3031] | 70 | (call-next-method))
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[3027] | 71 |
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[3038] | 72 | (defmethod right-tensor-product-by ((self term) (other term))
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[3143] | 73 | (setf (scalar-coeff self) (multiply-by (scalar-coeff self) (scalar-coeff other)))
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[3038] | 74 | (call-next-method))
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| 75 |
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[3059] | 76 | (defmethod left-tensor-product-by ((self term) (other monom))
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| 77 | (call-next-method))
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| 78 |
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| 79 | (defmethod right-tensor-product-by ((self term) (other monom))
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| 80 | (call-next-method))
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| 81 |
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[2832] | 82 | (defmethod divide-by ((self term) (other term))
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[2833] | 83 | "Destructively divide term SELF by OTHER and store the result into SELF.
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[2832] | 84 | It returns SELF."
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[3143] | 85 | (setf (scalar-coeff self) (divide-by (scalar-coeff self) (scalar-coeff other)))
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[2832] | 86 | (call-next-method))
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| 87 |
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[2685] | 88 | (defmethod unary-minus ((self term))
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[3135] | 89 | (setf (scalar-coeff self) (unary-minus (scalar-coeff self)))
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[2685] | 90 | self)
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| 91 |
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[2938] | 92 | (defmethod r* ((term1 term) (term2 term))
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| 93 | "Non-destructively multiply TERM1 by TERM2."
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[2967] | 94 | (multiply-by (copy-instance term1) (copy-instance term2)))
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[2938] | 95 |
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[2942] | 96 | (defmethod r-zerop ((self term))
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[3135] | 97 | (r-zerop (scalar-coeff self)))
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[2938] | 98 |
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[2352] | 99 | #|
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[1147] | 100 |
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| 101 | (defun term->cons (term)
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[1154] | 102 | "A human-readable representation of a term as a cons (MONOM . COEFF)."
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[1902] | 103 | (declare (type term term))
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[3135] | 104 | (cons (monom->list (term-monom term)) (scalar-coeff term)))
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[1147] | 105 |
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[2288] | 106 | |#
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