1 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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2 | ;;
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3 | ;; Maxima expression parsing
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4 | ;;
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5 | ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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6 |
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7 | (defun equal-test-p (expr1 expr2)
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8 | (alike1 expr1 expr2))
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9 |
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10 | (defun coerce-maxima-list (expr)
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11 | "convert a maxima list to lisp list."
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12 | (cond
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13 | ((and (consp (car expr)) (eql (caar expr) 'mlist)) (cdr expr))
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14 | (t expr)))
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15 |
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16 | (defun free-of-vars (expr vars) (apply #'$freeof `(,@vars ,expr)))
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17 |
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18 | (defun parse-poly (expr vars &aux (vars (coerce-maxima-list vars)))
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19 | "Convert a maxima polynomial expression EXPR in variables VARS to internal form."
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20 | (labels ((parse (arg) (parse-poly arg vars))
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21 | (parse-list (args) (mapcar #'parse args)))
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22 | (cond
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23 | ((eql expr 0) (make-poly-zero))
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24 | ((member expr vars :test #'equal-test-p)
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25 | (let ((pos (position expr vars :test #'equal-test-p)))
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26 | (make-variable *maxima-ring* (length vars) pos)))
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27 | ((free-of-vars expr vars)
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28 | ;;This means that variable-free CRE and Poisson forms will be converted
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29 | ;;to coefficients intact
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30 | (coerce-coeff *maxima-ring* expr vars))
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31 | (t
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32 | (case (caar expr)
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33 | (mplus (reduce #'(lambda (x y) (poly-add *maxima-ring* x y)) (parse-list (cdr expr))))
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34 | (mminus (poly-uminus *maxima-ring* (parse (cadr expr))))
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35 | (mtimes
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36 | (if (endp (cddr expr)) ;unary
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37 | (parse (cdr expr))
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38 | (reduce #'(lambda (p q) (poly-mul *maxima-ring* p q)) (parse-list (cdr expr)))))
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39 | (mexpt
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40 | (cond
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41 | ((member (cadr expr) vars :test #'equal-test-p)
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42 | ;;Special handling of (expt var pow)
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43 | (let ((pos (position (cadr expr) vars :test #'equal-test-p)))
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44 | (make-variable *maxima-ring* (length vars) pos (caddr expr))))
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45 | ((not (and (integerp (caddr expr)) (plusp (caddr expr))))
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46 | ;; Negative power means division in coefficient ring
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47 | ;; Non-integer power means non-polynomial coefficient
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48 | (mtell "~%Warning: Expression ~%~M~%contains power which is not a positive integer. Parsing as coefficient.~%"
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49 | expr)
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50 | (coerce-coeff *maxima-ring* expr vars))
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51 | (t (poly-expt *maxima-ring* (parse (cadr expr)) (caddr expr)))))
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52 | (mrat (parse ($ratdisrep expr)))
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53 | (mpois (parse ($outofpois expr)))
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54 | (otherwise
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55 | (coerce-coeff *maxima-ring* expr vars)))))))
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56 |
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57 | (defun parse-poly-list (expr vars)
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58 | (case (caar expr)
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59 | (mlist (mapcar #'(lambda (p) (parse-poly p vars)) (cdr expr)))
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60 | (t (merror "Expression ~M is not a list of polynomials in variables ~M."
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61 | expr vars))))
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62 | (defun parse-poly-list-list (poly-list-list vars)
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63 | (mapcar #'(lambda (g) (parse-poly-list g vars)) (coerce-maxima-list poly-list-list)))
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