[3400] | 1 | ;;----------------------------------------------------------------
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[1201] | 2 | ;;; -*- Mode: Lisp -*-
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[77] | 3 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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| 4 | ;;;
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| 5 | ;;; Copyright (C) 1999, 2002, 2009, 2015 Marek Rychlik <rychlik@u.arizona.edu>
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| 6 | ;;;
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| 7 | ;;; This program is free software; you can redistribute it and/or modify
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| 8 | ;;; it under the terms of the GNU General Public License as published by
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| 9 | ;;; the Free Software Foundation; either version 2 of the License, or
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| 10 | ;;; (at your option) any later version.
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| 11 | ;;;
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| 12 | ;;; This program is distributed in the hope that it will be useful,
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| 13 | ;;; but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 14 | ;;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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| 15 | ;;; GNU General Public License for more details.
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| 16 | ;;;
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| 17 | ;;; You should have received a copy of the GNU General Public License
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| 18 | ;;; along with this program; if not, write to the Free Software
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| 19 | ;;; Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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| 20 | ;;;
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| 21 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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| 22 |
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[431] | 23 | (defpackage "POLYNOMIAL"
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[4325] | 24 | (:use :cl :utils :monom :copy :ring)
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[2596] | 25 | (:export "POLY"
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[3270] | 26 | "POLY-DIMENSION"
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[2596] | 27 | "POLY-TERMLIST"
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[3016] | 28 | "POLY-TERM-ORDER"
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[3509] | 29 | "POLY-INSERT-TERM"
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[4456] | 30 | "POLY-REMOVE-TERM"
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[3690] | 31 | "SCALAR-MULTIPLY-BY"
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| 32 | "SCALAR-DIVIDE-BY"
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[3642] | 33 | "LEADING-TERM"
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[3657] | 34 | "LEADING-MONOMIAL"
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[3642] | 35 | "LEADING-COEFFICIENT"
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[3657] | 36 | "SECOND-LEADING-TERM"
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| 37 | "SECOND-LEADING-MONOMIAL"
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| 38 | "SECOND-LEADING-COEFFICIENT"
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[3642] | 39 | "ADD-TO"
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[3646] | 40 | "ADD"
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[3642] | 41 | "SUBTRACT-FROM"
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[3646] | 42 | "SUBTRACT"
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[3071] | 43 | "CHANGE-TERM-ORDER"
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[3099] | 44 | "STANDARD-EXTENSION"
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[3101] | 45 | "STANDARD-EXTENSION-1"
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[3109] | 46 | "STANDARD-SUM"
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[3094] | 47 | "SATURATION-EXTENSION"
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[3655] | 48 | "ALIST->POLY"
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[4442] | 49 | "POLY->ALIST"
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[3852] | 50 | "->INFIX"
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[3655] | 51 | "UNIVERSAL-EZGCD"
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[3678] | 52 | "S-POLYNOMIAL"
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[3686] | 53 | "POLY-CONTENT"
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[3692] | 54 | "POLY-PRIMITIVE-PART"
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[3714] | 55 | "SATURATION-EXTENSION-1"
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[3737] | 56 | "MAKE-POLY-VARIABLE"
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[3821] | 57 | "MAKE-POLY-CONSTANT"
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[4053] | 58 | "MAKE-ZERO-FOR"
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| 59 | "MAKE-UNIT-FOR"
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[3778] | 60 | "UNIVERSAL-EXPT"
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[3969] | 61 | "UNIVERSAL-EQUALP"
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[4191] | 62 | "UNIVERSAL-ZEROP"
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[3969] | 63 | "POLY-LENGTH"
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[4062] | 64 | "POLY-REVERSE"
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[3900] | 65 | "POLY-P"
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[3901] | 66 | "+LIST-MARKER+"
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[4366] | 67 | "POLY-EVAL"
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| 68 | "*COEFFICIENT-CLASS*")
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[3489] | 69 | (:documentation "Implements polynomials. A polynomial is essentially
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| 70 | a mapping of monomials of the same degree to coefficients. The
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| 71 | momomials are ordered according to a monomial order."))
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[143] | 72 |
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[431] | 73 | (in-package :polynomial)
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| 74 |
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[1927] | 75 | (proclaim '(optimize (speed 3) (space 0) (safety 0) (debug 0)))
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[52] | 76 |
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[4347] | 77 | (defclass poly (ring)
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[4457] | 78 | ((termlist :initform nil :initarg :termlist :accessor poly-termlist
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[3619] | 79 | :documentation "List of terms.")
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[3250] | 80 | (order :initform #'lex> :initarg :order :accessor poly-term-order
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[2697] | 81 | :documentation "Monomial/term order."))
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[4457] | 82 | (:default-initargs :termlist nil :order #'lex>)
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[2695] | 83 | (:documentation "A polynomial with a list of terms TERMLIST, ordered
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[2696] | 84 | according to term order ORDER, which defaults to LEX>."))
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[2442] | 85 |
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[2471] | 86 | (defmethod print-object ((self poly) stream)
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[3241] | 87 | (print-unreadable-object (self stream :type t :identity t)
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[4457] | 88 | (with-accessors ((termlist poly-termlist)
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[3243] | 89 | (order poly-term-order))
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[3237] | 90 | self
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[4457] | 91 | (format stream "TERMLIST=~A ORDER=~A"
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| 92 | termlist order))))
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[2469] | 93 |
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[4114] | 94 | (defmethod copy-instance :around ((object poly) &rest initargs &key &allow-other-keys)
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[4115] | 95 | "Returns a deep copy of the polynomial POLY, by copying the TERMLIST and its terms."
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[4114] | 96 | (declare (ignore object initargs))
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| 97 | (let ((copy (call-next-method)))
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| 98 | (with-slots (termlist)
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| 99 | copy
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| 100 | (setf termlist (mapcar #'copy-instance termlist)))
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| 101 | copy))
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| 102 |
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| 103 |
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[3015] | 104 | (defgeneric change-term-order (self other)
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[3012] | 105 | (:documentation "Change term order of SELF to the term order of OTHER.")
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[3010] | 106 | (:method ((self poly) (other poly))
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| 107 | (unless (eq (poly-term-order self) (poly-term-order other))
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[3620] | 108 | (setf (poly-termlist self) (sort (poly-termlist self) (poly-term-order other))
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[3010] | 109 | (poly-term-order self) (poly-term-order other)))
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[3012] | 110 | self))
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[3010] | 111 |
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[4457] | 112 | (defgeneric poly-dimension (object)
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| 113 | (:documentation "The number of variables in the polynomial OBJECT")
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| 114 | (:method ((object poly))
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| 115 | (monom-dimension (leading-monomial object))))
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| 116 |
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[3621] | 117 | (defgeneric poly-insert-term (self term)
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[3622] | 118 | (:documentation "Insert a term TERM into SELF before all other
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[4329] | 119 | terms. Order is not enforced.")
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[3621] | 120 | (:method ((self poly) (term term))
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[4457] | 121 | (with-slots (termlist)
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| 122 | self
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| 123 | (unless (endp termlist)
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| 124 | (assert (= (monom-dimension (car termlist)) (monom-dimension term)))))
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[3621] | 125 | (push term (poly-termlist self))
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[3510] | 126 | self))
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| 127 |
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[4456] | 128 | (defgeneric poly-remove-term (object)
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| 129 | (:documentation "Remove leading term of polynomial OBJECT. Returns the removed term.")
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| 130 | (:method ((object poly))
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| 131 | (pop (poly-termlist object))))
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| 132 |
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[3622] | 133 | (defgeneric poly-append-term (self term)
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| 134 | (:documentation "Append a term TERM to SELF after all other terms. Order is not enforced.")
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| 135 | (:method ((self poly) (term term))
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[4457] | 136 | (with-slots (termlist)
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| 137 | self
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| 138 | (unless (endp termlist)
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| 139 | (assert (= (monom-dimension (car termlist)) (monom-dimension term))))
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| 140 | (setf (cdr (last (poly-termlist self))) (list term)))
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[3510] | 141 | self))
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| 142 |
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[3095] | 143 | (defun alist->poly (alist &aux (poly (make-instance 'poly)))
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[3126] | 144 | "It reads polynomial from an alist formatted as ( ... (exponents . coeff) ...).
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| 145 | It can be used to enter simple polynomials by hand, e.g the polynomial
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| 146 | in two variables, X and Y, given in standard notation as:
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| 147 |
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| 148 | 3*X^2*Y^3+2*Y+7
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| 149 |
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| 150 | can be entered as
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[4442] | 151 | (ALIST->POLY '(((0 0) . 7) ((0 1) . 2) ((2 3) . 3) )). NOTE: the
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| 152 | terms are entered in the increasing order.
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[3126] | 153 |
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| 154 | NOTE: The primary use is for low-level debugging of the package."
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[3099] | 155 | (dolist (x alist poly)
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[3705] | 156 | (poly-insert-term poly (make-instance 'term :exponents (car x) :coeff (cdr x)))))
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[3092] | 157 |
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[4442] | 158 | (defun poly->alist (p)
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| 159 | "Convert a polynomial P to an association list. Thus, the format of the
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| 160 | returned value is ((MONOM[0] . COEFF[0]) (MONOM[1] . COEFF[1]) ...), where
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| 161 | MONOM[I] is a list of exponents in the monomial and COEFF[I] is the
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| 162 | corresponding coefficient in the ring."
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| 163 | (cond
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| 164 | ((poly-p p)
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| 165 | (mapcar #'->list (poly-termlist p)))
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| 166 | ((and (consp p) (eq (car p) :[))
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| 167 | (cons :[ (mapcar #'poly->alist (cdr p))))))
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| 168 |
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| 169 |
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[4456] | 170 | #+nil
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| 171 | (defmethod shared-initialize :after ((self poly) slot-names
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| 172 | &rest initargs
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| 173 | &key)
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| 174 | "If TERMLIST is supplied and non-empty, and DIMENSION is NIL, set
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| 175 | the dimension to the dimension of the first term in TERMLIST."
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| 176 | (declare (ignore initargs))
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| 177 | (let ((dims (mapcar #'monom-dimension (slot-value self 'termlist))))
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| 178 | (format t "Dimensions: ~A~%" dims)
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| 179 | (assert (apply #'= dims))
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| 180 | (unless (endp dims)
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| 181 | (setf (slot-value self 'dimension) (car dims))))
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| 182 | self)
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[4442] | 183 |
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[3877] | 184 | (defmethod update-instance-for-different-class :after ((old term) (new poly) &key)
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[3786] | 185 | "Converts OLD of class TERM to a NEW of class POLY, by making it into a 1-element TERMLIST."
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[4457] | 186 | (reinitialize-instance new :termlist (list old)))
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[3796] | 187 |
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[3877] | 188 | (defmethod update-instance-for-different-class :after ((old monom) (new poly) &key)
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[3796] | 189 | "Converts OLD of class MONOM to a NEW of class POLY, by making it into a 1-element TERMLIST."
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[4457] | 190 | (reinitialize-instance new :termlist (list (change-class old 'term))))
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[3403] | 191 |
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[3624] | 192 | (defmethod universal-equalp ((self poly) (other poly))
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| 193 | "Implements equality of polynomials."
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[4457] | 194 | (and
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| 195 | ;(eql (poly-dimension self) (poly-dimension other))
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| 196 | (every #'universal-equalp (poly-termlist self) (poly-termlist other))
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| 197 | (eq (poly-term-order self) (poly-term-order other))))
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[2650] | 198 |
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[3624] | 199 | (defgeneric leading-term (object)
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[2442] | 200 | (:method ((self poly))
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[2525] | 201 | (car (poly-termlist self)))
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| 202 | (:documentation "The leading term of a polynomial, or NIL for zero polynomial."))
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[52] | 203 |
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[3625] | 204 | (defgeneric second-leading-term (object)
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[2442] | 205 | (:method ((self poly))
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[2525] | 206 | (cadar (poly-termlist self)))
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| 207 | (:documentation "The second leading term of a polynomial, or NIL for a polynomial with at most one term."))
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[52] | 208 |
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[3656] | 209 | (defgeneric leading-monomial (object)
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| 210 | (:method ((self poly))
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| 211 | (change-class (copy-instance (leading-term self)) 'monom))
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| 212 | (:documentation "The leading monomial of a polynomial, or NIL for zero polynomial."))
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| 213 |
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| 214 | (defgeneric second-leading-monomial (object)
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| 215 | (:method ((self poly))
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| 216 | (change-class (copy-instance (second-leading-term self)) 'monom))
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| 217 | (:documentation "The leading monomial of a polynomial, or NIL for zero polynomial."))
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| 218 |
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[3625] | 219 | (defgeneric leading-coefficient (object)
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[2442] | 220 | (:method ((self poly))
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[3642] | 221 | (term-coeff (leading-term self)))
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[2545] | 222 | (:documentation "The leading coefficient of a polynomial. It signals error for a zero polynomial."))
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[52] | 223 |
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[2442] | 224 | (defgeneric second-leading-coefficient (object)
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| 225 | (:method ((self poly))
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[3645] | 226 | (term-coeff (second-leading-term self)))
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[2906] | 227 | (:documentation "The second leading coefficient of a polynomial. It
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| 228 | signals error for a polynomial with at most one term."))
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[52] | 229 |
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[3629] | 230 | (defmethod universal-zerop ((self poly))
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| 231 | "Return T iff SELF is a zero polynomial."
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[3639] | 232 | (null (poly-termlist self)))
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[52] | 233 |
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[3518] | 234 | (defgeneric poly-length (self)
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[3630] | 235 | (:documentation "Return the number of terms.")
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[3518] | 236 | (:method ((self poly))
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| 237 | (length (poly-termlist self))))
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[52] | 238 |
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[3689] | 239 | (defgeneric scalar-multiply-by (self other)
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| 240 | (:documentation "Multiply vector SELF by a scalar OTHER.")
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| 241 | (:method ((self poly) other)
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[4333] | 242 | (mapc #'(lambda (term) (setf (term-coeff term) (multiply-by (term-coeff term) other)))
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[3689] | 243 | (poly-termlist self))
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| 244 | self))
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| 245 |
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| 246 | (defgeneric scalar-divide-by (self other)
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| 247 | (:documentation "Divide vector SELF by a scalar OTHER.")
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| 248 | (:method ((self poly) other)
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[4333] | 249 | (mapc #'(lambda (term) (setf (term-coeff term) (divide-by (term-coeff term) other)))
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[3689] | 250 | (poly-termlist self))
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| 251 | self))
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| 252 |
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[4034] | 253 | (defmethod unary-inverse :before ((self poly))
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[4035] | 254 | "Checks invertibility of a polynomial SELF. To be invertable, the
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| 255 | polynomial must be an invertible, constant polynomial."
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[4034] | 256 | (with-slots (termlist)
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[4035] | 257 | self
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| 258 | (assert (and (= (length termlist) 1) (zerop (total-degree (car termlist))))
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| 259 | nil
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| 260 | "To be invertible, the polynomial must have 1 term of total degree 0.")))
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[4034] | 261 |
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| 262 | (defmethod unary-inverse ((self poly))
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[4035] | 263 | "Returns the unary inverse of a polynomial SELF."
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[4034] | 264 | (with-slots (termlist)
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| 265 | self
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[4035] | 266 | (setf (car termlist) (unary-inverse (car termlist)))
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| 267 | self))
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[4034] | 268 |
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[3663] | 269 | (defmethod multiply-by ((self poly) (other monom))
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[3630] | 270 | "Multiply a polynomial SELF by OTHER."
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| 271 | (mapc #'(lambda (term) (multiply-by term other))
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| 272 | (poly-termlist self))
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| 273 | self)
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[2469] | 274 |
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[3672] | 275 | (defmethod multiply-by ((self poly) (other term))
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| 276 | "Multiply a polynomial SELF by OTHER."
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| 277 | (mapc #'(lambda (term) (multiply-by term other))
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| 278 | (poly-termlist self))
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| 279 | self)
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| 280 |
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[4427] | 281 | #|
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[2761] | 282 | (defmacro fast-add/subtract (p q order-fn add/subtract-fn uminus-fn)
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[2755] | 283 | "Return an expression which will efficiently adds/subtracts two
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| 284 | polynomials, P and Q. The addition/subtraction of coefficients is
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[3878] | 285 | performed by calling ADD/SUBTRACT-FN. If UMINUS-FN is supplied, it is
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| 286 | used to negate the coefficients of Q which do not have a corresponding
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| 287 | coefficient in P. The code implements an efficient algorithm to add
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| 288 | two polynomials represented as sorted lists of terms. The code
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| 289 | destroys both arguments, reusing the terms to build the result."
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[3631] | 290 | `(macrolet ((lc (x) `(term-coeff (car ,x))))
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[2742] | 291 | (do ((p ,p)
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| 292 | (q ,q)
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| 293 | r)
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| 294 | ((or (endp p) (endp q))
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| 295 | ;; NOTE: R contains the result in reverse order. Can it
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| 296 | ;; be more efficient to produce the terms in correct order?
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[2774] | 297 | (unless (endp q)
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[2776] | 298 | ;; Upon subtraction, we must change the sign of
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| 299 | ;; all coefficients in q
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[2774] | 300 | ,@(when uminus-fn
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[2775] | 301 | `((mapc #'(lambda (x) (setf x (funcall ,uminus-fn x))) q)))
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[2774] | 302 | (setf r (nreconc r q)))
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[3887] | 303 | (unless (endp p)
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| 304 | (setf r (nreconc r p)))
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| 305 | r)
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[2742] | 306 | (multiple-value-bind
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| 307 | (greater-p equal-p)
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[3632] | 308 | (funcall ,order-fn (car p) (car q))
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[2742] | 309 | (cond
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| 310 | (greater-p
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| 311 | (rotatef (cdr p) r p)
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| 312 | )
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| 313 | (equal-p
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[2766] | 314 | (let ((s (funcall ,add/subtract-fn (lc p) (lc q))))
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[2742] | 315 | (cond
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[3640] | 316 | ((universal-zerop s)
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[2742] | 317 | (setf p (cdr p))
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| 318 | )
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| 319 | (t
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| 320 | (setf (lc p) s)
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| 321 | (rotatef (cdr p) r p))))
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| 322 | (setf q (cdr q))
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| 323 | )
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| 324 | (t
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[2743] | 325 | ;;Negate the term of Q if UMINUS provided, signallig
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| 326 | ;;that we are doing subtraction
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[2908] | 327 | ,(when uminus-fn
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| 328 | `(setf (lc q) (funcall ,uminus-fn (lc q))))
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[3887] | 329 | (rotatef (cdr q) r q))))
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| 330 | ;;(format t "P:~A~%" p)
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| 331 | ;;(format t "Q:~A~%" q)
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| 332 | ;;(format t "R:~A~%" r)
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| 333 | )))
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[4427] | 334 | |#
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[3647] | 335 |
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[4492] | 336 | ;; Shorthand for leading coefficient of a termlist
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| 337 | (defmacro lc (x) `(term-coeff (car ,x)))
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[4432] | 338 |
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[4447] | 339 | (defun slow-add (p q order-fn add-fn)
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[4434] | 340 | (cond
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[4436] | 341 | ((endp p) q)
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| 342 | ((endp q) p)
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[4434] | 343 | (t
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| 344 | (multiple-value-bind
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| 345 | (greater-p equal-p)
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| 346 | (funcall order-fn (car p) (car q))
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| 347 | (cond
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[4442] | 348 | (greater-p ; (> (car p) (car q))
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[4447] | 349 | (cons (car p) (slow-add (cdr p) q order-fn add-fn))
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[4434] | 350 | )
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[4442] | 351 | (equal-p ; (= (car p)) (car q))
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[4434] | 352 | (let ((s (funcall add-fn (lc p) (lc q))))
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| 353 | (cond
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| 354 | ((universal-zerop s)
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[4447] | 355 | (slow-add (cdr p) (cdr q) order-fn add-fn))
|
---|
[4434] | 356 | (t
|
---|
| 357 | ;; Adjust the lc of p
|
---|
| 358 | (setf (lc p) s)
|
---|
[4447] | 359 | (cons (car p) (slow-add (cdr p) (cdr q) order-fn add-fn))
|
---|
[4434] | 360 | ))))
|
---|
[4442] | 361 | (t ;(< (car p) (car q))
|
---|
[4447] | 362 | (cons (car q) (slow-add p (cdr q) order-fn add-fn))
|
---|
[4434] | 363 | ))))))
|
---|
[4432] | 364 |
|
---|
| 365 |
|
---|
[4451] | 366 | (defun fast-and-risky-add (p q order-fn add-fn &aux result result-last)
|
---|
| 367 | (when (and p q (eq p q)) (warn "FAST-AND-RISKY-ADD: ~S is EQ to ~S" p q))
|
---|
| 368 | (flet ((add-to-result (x)
|
---|
| 369 | (assert (consp x))
|
---|
| 370 | (setf (cdr x) nil)
|
---|
| 371 | (if (endp result)
|
---|
| 372 | (setf result x
|
---|
| 373 | result-last x)
|
---|
| 374 | (setf (cdr result-last) x
|
---|
| 375 | result-last (cdr result-last)))))
|
---|
| 376 | (loop
|
---|
| 377 | (cond
|
---|
| 378 | ((endp p) (unless (endp q) (add-to-result q)) (return result))
|
---|
| 379 | ((endp q) (unless (endp p) (add-to-result p)) (return result))
|
---|
| 380 | (t
|
---|
| 381 | (multiple-value-bind
|
---|
| 382 | (greater-p equal-p)
|
---|
| 383 | (funcall order-fn (car p) (car q))
|
---|
| 384 | (cond
|
---|
| 385 | (greater-p ; (> (car p) (car q))
|
---|
| 386 | (let ((tmp (cdr p)))
|
---|
| 387 | (add-to-result p)
|
---|
| 388 | (setf p tmp)))
|
---|
| 389 | (equal-p ; (= (car p)) (car q))
|
---|
| 390 | (let ((s (funcall add-fn (lc p) (lc q))))
|
---|
| 391 | (cond
|
---|
| 392 | ((universal-zerop s)
|
---|
| 393 | ;; Terms cancel, discard both
|
---|
| 394 | (setf p (cdr p)
|
---|
| 395 | q (cdr q)))
|
---|
| 396 | (t
|
---|
| 397 | ;; Terms do not cancel, store the
|
---|
| 398 | ;; sum of coefficients in (lc p)
|
---|
| 399 | (setf (lc p) s)
|
---|
| 400 | (let ((tmp (cdr p)))
|
---|
| 401 | (add-to-result p)
|
---|
| 402 | (setf p tmp
|
---|
| 403 | q (cdr q)))))))
|
---|
| 404 | (t ;(< (car p) (car q))
|
---|
| 405 | (let ((tmp (cdr q)))
|
---|
| 406 | (add-to-result q)
|
---|
| 407 | (setf q tmp))
|
---|
| 408 | ))))))))
|
---|
| 409 |
|
---|
[4447] | 410 | (defun fast-add (p q order-fn add-fn)
|
---|
| 411 | "This version calls SLOW-ADD and is bullet-proof."
|
---|
[4455] | 412 | (slow-add p q order-fn add-fn)
|
---|
| 413 | ;;(fast-and-risky-add p q order-fn add-fn)
|
---|
[4494] | 414 | ;;(f-add p q order-fn add-fn)
|
---|
| 415 | ;;(s-add p q order-fn add-fn)
|
---|
[4451] | 416 | )
|
---|
[4447] | 417 |
|
---|
[3884] | 418 | #|
|
---|
[4385] | 419 | ;; NOTE: The stuff below works, but may not be worth the trouble.
|
---|
| 420 |
|
---|
[3750] | 421 | (defmacro def-add/subtract-method (add/subtract-method-name
|
---|
[4452] | 422 | uminus-method-name
|
---|
| 423 | &optional
|
---|
| 424 | (doc-string nil doc-string-supplied-p))
|
---|
[3647] | 425 | "This macro avoids code duplication for two similar operations: ADD-TO and SUBTRACT-FROM."
|
---|
[2749] | 426 | `(defmethod ,add/subtract-method-name ((self poly) (other poly))
|
---|
[2615] | 427 | ,@(when doc-string-supplied-p `(,doc-string))
|
---|
[2769] | 428 | ;; Ensure orders are compatible
|
---|
[3015] | 429 | (change-term-order other self)
|
---|
[2772] | 430 | (setf (poly-termlist self) (fast-add/subtract
|
---|
| 431 | (poly-termlist self) (poly-termlist other)
|
---|
| 432 | (poly-term-order self)
|
---|
| 433 | #',add/subtract-method-name
|
---|
| 434 | ,(when uminus-method-name `(function ,uminus-method-name))))
|
---|
[3748] | 435 | self))
|
---|
[3908] | 436 |
|
---|
| 437 | (eval-when (:load-toplevel :execute)
|
---|
| 438 |
|
---|
| 439 | (def-add/subtract-method add-to nil
|
---|
| 440 | "Adds to polynomial SELF another polynomial OTHER.
|
---|
| 441 | This operation destructively modifies both polynomials.
|
---|
| 442 | The result is stored in SELF. This implementation does
|
---|
| 443 | no consing, entirely reusing the sells of SELF and OTHER.")
|
---|
| 444 |
|
---|
| 445 | (def-add/subtract-method subtract-from unary-minus
|
---|
| 446 | "Subtracts from polynomial SELF another polynomial OTHER.
|
---|
| 447 | This operation destructively modifies both polynomials.
|
---|
| 448 | The result is stored in SELF. This implementation does
|
---|
| 449 | no consing, entirely reusing the sells of SELF and OTHER.")
|
---|
| 450 | )
|
---|
| 451 |
|
---|
[3884] | 452 | |#
|
---|
[2487] | 453 |
|
---|
[3880] | 454 | (defmethod unary-minus ((self poly))
|
---|
| 455 | "Destructively modifies the coefficients of the polynomial SELF,
|
---|
| 456 | by changing their sign."
|
---|
| 457 | (mapc #'unary-minus (poly-termlist self))
|
---|
| 458 | self)
|
---|
| 459 |
|
---|
| 460 | (defun add-termlists (p q order-fn)
|
---|
| 461 | "Destructively adds two termlists P and Q ordered according to ORDER-FN."
|
---|
[4395] | 462 | (fast-add p q order-fn #'add-to))
|
---|
[3880] | 463 |
|
---|
[3881] | 464 | (defun subtract-termlists (p q order-fn)
|
---|
[3885] | 465 | "Destructively subtracts two termlists P and Q ordered according to ORDER-FN."
|
---|
[4395] | 466 | (setf q (mapc #'unary-minus q))
|
---|
| 467 | (add-termlists p q order-fn))
|
---|
[3881] | 468 |
|
---|
[4452] | 469 | (defmethod add-to ((self poly) (other poly))
|
---|
[3879] | 470 | "Adds to polynomial SELF another polynomial OTHER.
|
---|
[2610] | 471 | This operation destructively modifies both polynomials.
|
---|
| 472 | The result is stored in SELF. This implementation does
|
---|
[3879] | 473 | no consing, entirely reusing the sells of SELF and OTHER."
|
---|
[4452] | 474 | (change-term-order other self)
|
---|
[3879] | 475 | (setf (poly-termlist self) (add-termlists
|
---|
[4452] | 476 | (poly-termlist self) (poly-termlist other)
|
---|
[3883] | 477 | (poly-term-order self)))
|
---|
| 478 | self)
|
---|
[3879] | 479 |
|
---|
[2609] | 480 |
|
---|
[4451] | 481 | (defmethod subtract-from ((self poly) (other poly))
|
---|
[4215] | 482 | "Subtracts from polynomial SELF another polynomial OTHER.
|
---|
[2610] | 483 | This operation destructively modifies both polynomials.
|
---|
| 484 | The result is stored in SELF. This implementation does
|
---|
[3879] | 485 | no consing, entirely reusing the sells of SELF and OTHER."
|
---|
[4451] | 486 | (change-term-order other self)
|
---|
[3879] | 487 | (setf (poly-termlist self) (subtract-termlists
|
---|
[4451] | 488 | (poly-termlist self) (poly-termlist other)
|
---|
[3883] | 489 | (poly-term-order self)))
|
---|
| 490 | self)
|
---|
[2777] | 491 |
|
---|
[4103] | 492 |
|
---|
[4452] | 493 | (defmethod add-to ((self poly) (other term))
|
---|
[4105] | 494 | "Adds to a polynomial SELF a term OTHER. The term OTHER is not
|
---|
| 495 | modified."
|
---|
[4452] | 496 | (add-to self (change-class other 'poly)))
|
---|
[4103] | 497 |
|
---|
[4452] | 498 | (defmethod subtract-from ((self poly) (other term))
|
---|
[4105] | 499 | "Subtracts from a polynomial SELF a term OTHER. The term OTHER is not
|
---|
| 500 | modified."
|
---|
[4452] | 501 | (subtract-from self (change-class other 'poly)))
|
---|
[4103] | 502 |
|
---|
| 503 |
|
---|
[2800] | 504 | (defmacro multiply-term-by-termlist-dropping-zeros (term termlist
|
---|
[2927] | 505 | &optional (reverse-arg-order-P nil))
|
---|
[2799] | 506 | "Multiplies term TERM by a list of term, TERMLIST.
|
---|
[2792] | 507 | Takes into accound divisors of zero in the ring, by
|
---|
[2927] | 508 | deleting zero terms. Optionally, if REVERSE-ARG-ORDER-P
|
---|
[2928] | 509 | is T, change the order of arguments; this may be important
|
---|
[2927] | 510 | if we extend the package to non-commutative rings."
|
---|
[2800] | 511 | `(mapcan #'(lambda (other-term)
|
---|
[3633] | 512 | (let ((prod (multiply
|
---|
[2923] | 513 | ,@(cond
|
---|
[2930] | 514 | (reverse-arg-order-p
|
---|
[2925] | 515 | `(other-term ,term))
|
---|
| 516 | (t
|
---|
| 517 | `(,term other-term))))))
|
---|
[2800] | 518 | (cond
|
---|
[3633] | 519 | ((universal-zerop prod) nil)
|
---|
[2800] | 520 | (t (list prod)))))
|
---|
| 521 | ,termlist))
|
---|
[2790] | 522 |
|
---|
[2796] | 523 | (defun multiply-termlists (p q order-fn)
|
---|
[3127] | 524 | "A version of polynomial multiplication, operating
|
---|
| 525 | directly on termlists."
|
---|
[2787] | 526 | (cond
|
---|
[2917] | 527 | ((or (endp p) (endp q))
|
---|
| 528 | ;;p or q is 0 (represented by NIL)
|
---|
| 529 | nil)
|
---|
[2789] | 530 | ;; If p= p0+p1 and q=q0+q1 then p*q=p0*q0+p0*q1+p1*q
|
---|
[2787] | 531 | ((endp (cdr p))
|
---|
[2918] | 532 | (multiply-term-by-termlist-dropping-zeros (car p) q))
|
---|
| 533 | ((endp (cdr q))
|
---|
[2919] | 534 | (multiply-term-by-termlist-dropping-zeros (car q) p t))
|
---|
| 535 | (t
|
---|
[4101] | 536 | (cons (multiply (car p) (car q))
|
---|
[2949] | 537 | (add-termlists
|
---|
| 538 | (multiply-term-by-termlist-dropping-zeros (car p) (cdr q))
|
---|
| 539 | (multiply-termlists (cdr p) q order-fn)
|
---|
| 540 | order-fn)))))
|
---|
[2793] | 541 |
|
---|
[4331] | 542 | (defmethod multiply-by ((self poly) (other poly) &aux (other-copy (copy-instance other)))
|
---|
| 543 | (change-term-order other-copy self)
|
---|
[2803] | 544 | (setf (poly-termlist self) (multiply-termlists (poly-termlist self)
|
---|
[4331] | 545 | (poly-termlist other-copy)
|
---|
[2803] | 546 | (poly-term-order self)))
|
---|
| 547 | self)
|
---|
| 548 |
|
---|
[3062] | 549 | (defmethod left-tensor-product-by ((self poly) (other monom))
|
---|
| 550 | (setf (poly-termlist self)
|
---|
| 551 | (mapcan #'(lambda (term)
|
---|
| 552 | (let ((prod (left-tensor-product-by term other)))
|
---|
| 553 | (cond
|
---|
[3640] | 554 | ((universal-zerop prod) nil)
|
---|
[3062] | 555 | (t (list prod)))))
|
---|
| 556 | (poly-termlist self)))
|
---|
| 557 | self)
|
---|
[3044] | 558 |
|
---|
[3062] | 559 | (defmethod right-tensor-product-by ((self poly) (other monom))
|
---|
| 560 | (setf (poly-termlist self)
|
---|
| 561 | (mapcan #'(lambda (term)
|
---|
| 562 | (let ((prod (right-tensor-product-by term other)))
|
---|
| 563 | (cond
|
---|
[3640] | 564 | ((universal-zerop prod) nil)
|
---|
[3062] | 565 | (t (list prod)))))
|
---|
| 566 | (poly-termlist self)))
|
---|
| 567 | self)
|
---|
| 568 |
|
---|
| 569 |
|
---|
[3084] | 570 | (defun standard-extension (plist &aux (k (length plist)) (i 0))
|
---|
[2716] | 571 | "Calculate [U1*P1,U2*P2,...,UK*PK], where PLIST=[P1,P2,...,PK]
|
---|
[3060] | 572 | is a list of polynomials. Destructively modifies PLIST elements."
|
---|
[3061] | 573 | (mapc #'(lambda (poly)
|
---|
[3085] | 574 | (left-tensor-product-by
|
---|
| 575 | poly
|
---|
| 576 | (prog1
|
---|
| 577 | (make-monom-variable k i)
|
---|
| 578 | (incf i))))
|
---|
[3061] | 579 | plist))
|
---|
[52] | 580 |
|
---|
[3087] | 581 | (defun standard-extension-1 (plist
|
---|
| 582 | &aux
|
---|
[3096] | 583 | (plist (standard-extension plist))
|
---|
[3087] | 584 | (nvars (poly-dimension (car plist))))
|
---|
[3081] | 585 | "Calculate [U1*P1-1,U2*P2-1,...,UK*PK-1], where PLIST=[P1,P2,...,PK].
|
---|
[3087] | 586 | Firstly, new K variables U1, U2, ..., UK, are inserted into each
|
---|
| 587 | polynomial. Subsequently, P1, P2, ..., PK are destructively modified
|
---|
[3105] | 588 | tantamount to replacing PI with UI*PI-1. It assumes that all
|
---|
[3106] | 589 | polynomials have the same dimension, and only the first polynomial
|
---|
| 590 | is examined to determine this dimension."
|
---|
[3089] | 591 | ;; Implementation note: we use STANDARD-EXTENSION and then subtract
|
---|
| 592 | ;; 1 from each polynomial; since UI*PI has no constant term,
|
---|
| 593 | ;; we just need to append the constant term at the end
|
---|
| 594 | ;; of each termlist.
|
---|
[3064] | 595 | (flet ((subtract-1 (p)
|
---|
[3641] | 596 | (poly-append-term p (make-instance 'term :dimension nvars :coeff -1))))
|
---|
[3083] | 597 | (setf plist (mapc #'subtract-1 plist)))
|
---|
[3077] | 598 | plist)
|
---|
[52] | 599 |
|
---|
| 600 |
|
---|
[3107] | 601 | (defun standard-sum (plist
|
---|
| 602 | &aux
|
---|
| 603 | (plist (standard-extension plist))
|
---|
| 604 | (nvars (poly-dimension (car plist))))
|
---|
[3087] | 605 | "Calculate the polynomial U1*P1+U2*P2+...+UK*PK-1, where PLIST=[P1,P2,...,PK].
|
---|
| 606 | Firstly, new K variables, U1, U2, ..., UK, are inserted into each
|
---|
| 607 | polynomial. Subsequently, P1, P2, ..., PK are destructively modified
|
---|
| 608 | tantamount to replacing PI with UI*PI, and the resulting polynomials
|
---|
[3117] | 609 | are added. Finally, 1 is subtracted. It should be noted that the term
|
---|
| 610 | order is not modified, which is equivalent to using a lexicographic
|
---|
| 611 | order on the first K variables."
|
---|
[3107] | 612 | (flet ((subtract-1 (p)
|
---|
[3641] | 613 | (poly-append-term p (make-instance 'term :dimension nvars :coeff -1))))
|
---|
[3108] | 614 | (subtract-1
|
---|
| 615 | (make-instance
|
---|
| 616 | 'poly
|
---|
[3115] | 617 | :termlist (apply #'nconc (mapcar #'poly-termlist plist))))))
|
---|
[52] | 618 |
|
---|
[3655] | 619 | (defgeneric s-polynomial (object1 object2)
|
---|
[3651] | 620 | (:documentation "Yields the S-polynomial of OBJECT1 and OBJECT2.")
|
---|
| 621 | (:method ((f poly) (g poly))
|
---|
| 622 | (let* ((lcm (universal-lcm (leading-monomial f) (leading-monomial g)))
|
---|
| 623 | (mf (divide lcm (leading-monomial f)))
|
---|
| 624 | (mg (divide lcm (leading-monomial g))))
|
---|
| 625 | (multiple-value-bind (c cf cg)
|
---|
[3652] | 626 | (universal-ezgcd (leading-coefficient f) (leading-coefficient g))
|
---|
[3651] | 627 | (declare (ignore c))
|
---|
| 628 | (subtract
|
---|
[4444] | 629 | (multiply f mf cg)
|
---|
| 630 | (multiply g mg cf))))))
|
---|
[3651] | 631 |
|
---|
[3676] | 632 | (defgeneric poly-content (object)
|
---|
| 633 | (:documentation "Greatest common divisor of the coefficients of the polynomial object OBJECT.")
|
---|
[3677] | 634 | (:method ((self poly))
|
---|
| 635 | (reduce #'universal-gcd
|
---|
[3679] | 636 | (mapcar #'term-coeff (rest (poly-termlist self)))
|
---|
| 637 | :initial-value (leading-coefficient self))))
|
---|
[3676] | 638 |
|
---|
[4334] | 639 | (defun poly-primitive-part (self)
|
---|
| 640 | "Divide polynomial SELF by gcd of its
|
---|
[3684] | 641 | coefficients. Return the resulting polynomial."
|
---|
[4334] | 642 | (scalar-divide-by self (poly-content self)))
|
---|
[3682] | 643 |
|
---|
[3700] | 644 | (defun poly-insert-variables (self k)
|
---|
[3697] | 645 | (left-tensor-product-by self (make-instance 'monom :dimension k)))
|
---|
| 646 |
|
---|
[3698] | 647 | (defun saturation-extension (f plist &aux (k (length plist)))
|
---|
[3708] | 648 | "Calculate [F', U1*P1-1,U2*P2-1,...,UK*PK-1], where
|
---|
| 649 | PLIST=[P1,P2,...,PK] and F' is F with variables U1,U2,...,UK inserted
|
---|
[3711] | 650 | as first K variables. It destructively modifies F and PLIST."
|
---|
[3700] | 651 | (nconc (mapc #'(lambda (x) (poly-insert-variables x k)) f)
|
---|
[3699] | 652 | (standard-extension-1 plist)))
|
---|
[3694] | 653 |
|
---|
[3699] | 654 | (defun polysaturation-extension (f plist &aux (k (length plist)))
|
---|
[3708] | 655 | "Calculate [F', U1*P1+U2*P2+...+UK*PK-1], where PLIST=[P1,P2,...,PK]
|
---|
| 656 | and F' is F with variables U1,U2,...,UK inserted as first K
|
---|
[3711] | 657 | variables. It destructively modifies F and PLIST."
|
---|
[3700] | 658 | (nconc (mapc #'(lambda (x) (poly-insert-variables x k)) f)
|
---|
[3703] | 659 | (list (standard-sum plist))))
|
---|
[3694] | 660 |
|
---|
[3691] | 661 | (defun saturation-extension-1 (f p)
|
---|
[3712] | 662 | "Given family of polynomials F and a polynomial P, calculate [F',
|
---|
| 663 | U*P-1], where F' is F with variable inserted as the first variable. It
|
---|
| 664 | destructively modifies F and P."
|
---|
[3693] | 665 | (polysaturation-extension f (list p)))
|
---|
[3713] | 666 |
|
---|
[4305] | 667 | (defmethod multiply-by ((self poly) (other ring))
|
---|
[4306] | 668 | (scalar-multiply-by self other))
|
---|
[4068] | 669 |
|
---|
[3781] | 670 | (defun make-poly-variable (nvars pos &optional (power 1))
|
---|
| 671 | (change-class (make-monom-variable nvars pos power) 'poly))
|
---|
[3736] | 672 |
|
---|
[3821] | 673 | (defun make-poly-constant (nvars coeff)
|
---|
| 674 | (change-class (make-term-constant nvars coeff) 'poly))
|
---|
| 675 |
|
---|
[3713] | 676 | (defgeneric universal-expt (x y)
|
---|
[3721] | 677 | (:documentation "Raises X to power Y.")
|
---|
[3713] | 678 | (:method ((x number) (y integer)) (expt x y))
|
---|
| 679 | (:method ((x t) (y integer))
|
---|
| 680 | (declare (type fixnum y))
|
---|
| 681 | (cond
|
---|
| 682 | ((minusp y) (error "universal-expt: Negative exponent."))
|
---|
| 683 | ((universal-zerop x) (if (zerop y) 1))
|
---|
| 684 | (t
|
---|
| 685 | (do ((k 1 (ash k 1))
|
---|
| 686 | (q x (multiply q q)) ;keep squaring
|
---|
[4119] | 687 | (p (make-unit-for x) (if (not (zerop (logand k y))) (multiply p q) p)))
|
---|
[3713] | 688 | ((> k y) p)
|
---|
[3778] | 689 | (declare (fixnum k)))))))
|
---|
| 690 |
|
---|
| 691 | (defgeneric poly-p (object)
|
---|
| 692 | (:documentation "Checks if an object is a polynomial.")
|
---|
[3779] | 693 | (:method ((self poly)) t)
|
---|
[3778] | 694 | (:method ((self t)) nil))
|
---|
[3830] | 695 |
|
---|
[4021] | 696 | (defmethod ->sexp :before ((self poly) &optional vars)
|
---|
[3905] | 697 | "Ensures that the number of variables in VARS maches the polynomial dimension of the
|
---|
| 698 | polynomial SELF."
|
---|
[4463] | 699 | (unless (endp (poly-termlist self))
|
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| 700 | (let ((dimension (poly-dimension self)))
|
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| 701 | (assert (= (length vars) dimension)
|
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| 702 | nil
|
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| 703 | "Number of variables ~S does not match the dimension ~S"
|
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| 704 | vars dimension))))
|
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[3904] | 705 |
|
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[4021] | 706 | (defmethod ->sexp ((self poly) &optional vars)
|
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[3905] | 707 | "Converts a polynomial SELF to a sexp."
|
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[4396] | 708 | (let ((m (mapcar #'(lambda (trm) (->sexp trm vars))
|
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[3830] | 709 | (poly-termlist self))))
|
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[4053] | 710 | (cond ((endp m) 0)
|
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[4036] | 711 | ((endp (cdr m)) (car m))
|
---|
| 712 | (t (cons '+ m)))))
|
---|
[3899] | 713 |
|
---|
[4363] | 714 | (defconstant +list-marker+ :[
|
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[3903] | 715 | "A sexp with this head is considered a list of polynomials.")
|
---|
| 716 |
|
---|
[4021] | 717 | (defmethod ->sexp ((self cons) &optional vars)
|
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[3906] | 718 | (assert (eql (car self) +list-marker+))
|
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[4021] | 719 | (cons +list-marker+ (mapcar #'(lambda (p) (->sexp p vars)) (cdr self))))
|
---|
[3906] | 720 |
|
---|
[4277] | 721 | (defmethod make-zero-for ((self poly))
|
---|
[4457] | 722 | (make-instance 'poly))
|
---|
[4053] | 723 |
|
---|
[4277] | 724 | (defmethod make-unit-for ((self poly))
|
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| 725 | (make-poly-constant (poly-dimension self) 1))
|
---|
[4057] | 726 |
|
---|
[4068] | 727 | (defgeneric poly-reverse (self)
|
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[4061] | 728 | (:documentation "Reverse the order of terms in a polynomial SELF.")
|
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[4057] | 729 | (:method ((self poly))
|
---|
| 730 | (with-slots (termlist)
|
---|
| 731 | self
|
---|
[4060] | 732 | (setf termlist (nreverse termlist)))
|
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[4057] | 733 | self))
|
---|
| 734 |
|
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| 735 |
|
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[4053] | 736 |
|
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