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source: branches/f4grobner/term.lisp@ 3293

Last change on this file since 3293 was 3287, checked in by Marek Rychlik, 9 years ago

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[1201]1;;; -*- Mode: Lisp -*-
[78]2;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
3;;;
4;;; Copyright (C) 1999, 2002, 2009, 2015 Marek Rychlik <rychlik@u.arizona.edu>
5;;;
6;;; This program is free software; you can redistribute it and/or modify
7;;; it under the terms of the GNU General Public License as published by
8;;; the Free Software Foundation; either version 2 of the License, or
9;;; (at your option) any later version.
10;;;
11;;; This program is distributed in the hope that it will be useful,
12;;; but WITHOUT ANY WARRANTY; without even the implied warranty of
13;;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14;;; GNU General Public License for more details.
15;;;
16;;; You should have received a copy of the GNU General Public License
17;;; along with this program; if not, write to the Free Software
18;;; Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
19;;;
20;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
21
[397]22(defpackage "TERM"
[1605]23 (:use :cl :monom :ring)
[3219]24 (:export "TERM")
[2702]25 (:documentation "This package implements class TERM. A term is a
26product of a scalar and powers of some variables, such as
275*X^2*Y^3. The part of the term without the coefficient is a monomial
28X^2*Y^3, which is represented by class MONOM, provided by the :MONOM
29package. In this implementation, a TERM specializes MONOL. Also, a
30monomial can be considered a TERM whose coefficient is the unit
31element (1) of the underlying ring. The generic method CHANGE-CLASS
32can be used to convert between a MONOM and a TERM, observing this
[2703]33convention."))
[78]34
[420]35(in-package :term)
36
[1926]37(proclaim '(optimize (speed 3) (space 0) (safety 0) (debug 0)))
38
[3287]39;; NOTE: Since term does not have slots of its own,
40;; INITIALIZE-INSTANCE is not called by MAKE-INSTANCE.
[3132]41(defclass term (monom scalar)
[3140]42 ()
[3204]43 (:default-initargs :dimension nil :exponents nil :coeff nil)
[3142]44 (:documentation "Implements a term, i.e. a product of a scalar
[2704]45and powers of some variables, such as 5*X^2*Y^3."))
[766]46
[3211]47(defmethod print-object ((self term) stream)
48 (print-unreadable-object (self stream :type t :identity t)
[3215]49 (with-accessors ((dimension monom-dimension)
50 (exponents monom-exponents)
51 (coeff scalar-coeff))
52 self
53 (format stream "DIMENSION=~A EXPONENTS=~A COEFF=~A"
54 dimension exponents coeff))))
[3211]55
56
[3151]57(defmethod r-equalp ((term1 term) (term2 term))
[3277]58 (when (r-equalp (scalar-coeff term1) (scalar-coeff term2))
59 (call-next-method)))
[3151]60
[3195]61(defmethod update-instance-for-different-class :after ((old monom) (new scalar) &key)
[3194]62 (setf (scalar-coeff new) 1))
[3164]63
[2946]64(defmethod multiply-by :before ((self term) (other term))
[2833]65 "Destructively multiply terms SELF and OTHER and store the result into SELF.
[2805]66It returns SELF."
[3143]67 (setf (scalar-coeff self) (multiply-by (scalar-coeff self) (scalar-coeff other))))
[2477]68
[3031]69(defmethod left-tensor-product-by ((self term) (other term))
[3143]70 (setf (scalar-coeff self) (multiply-by (scalar-coeff self) (scalar-coeff other)))
[3031]71 (call-next-method))
[3027]72
[3038]73(defmethod right-tensor-product-by ((self term) (other term))
[3143]74 (setf (scalar-coeff self) (multiply-by (scalar-coeff self) (scalar-coeff other)))
[3038]75 (call-next-method))
76
[3059]77(defmethod left-tensor-product-by ((self term) (other monom))
78 (call-next-method))
79
80(defmethod right-tensor-product-by ((self term) (other monom))
81 (call-next-method))
82
[2832]83(defmethod divide-by ((self term) (other term))
[2833]84 "Destructively divide term SELF by OTHER and store the result into SELF.
[2832]85It returns SELF."
[3143]86 (setf (scalar-coeff self) (divide-by (scalar-coeff self) (scalar-coeff other)))
[2832]87 (call-next-method))
88
[2685]89(defmethod unary-minus ((self term))
[3135]90 (setf (scalar-coeff self) (unary-minus (scalar-coeff self)))
[2685]91 self)
92
[2938]93(defmethod r* ((term1 term) (term2 term))
94 "Non-destructively multiply TERM1 by TERM2."
[2967]95 (multiply-by (copy-instance term1) (copy-instance term2)))
[2938]96
[2942]97(defmethod r-zerop ((self term))
[3135]98 (r-zerop (scalar-coeff self)))
[2938]99
[2352]100#|
[1147]101
102(defun term->cons (term)
[1154]103 "A human-readable representation of a term as a cons (MONOM . COEFF)."
[1902]104 (declare (type term term))
[3135]105 (cons (monom->list (term-monom term)) (scalar-coeff term)))
[1147]106
[2288]107|#
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