2006-11-12 22:02:23 +00:00
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;; -*- mode: scheme -*-
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;;
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;; basic layout attmepts
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;;
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;; copyright (C) 2004 FoAM vzw
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;; You are granted the rights to distribute and use this software
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;; under the terms of the GNU Lesser General Public License as
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;; published by the Free Software Foundation; either version 2.1 of
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;; the License, or (at your option) any later version. The LGPL is
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;; distributed with this code (see: LICENCE) and available online
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;; at http://www.gnu.org/copyleft/lesser.html
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;; authors
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;; - nik gaffney <nik@fo.am>
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;; requirements
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;; -
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;; commentary
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;; - wobble -> heirarchical rectangular spread
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;; - shuffle -> randomise positions
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;; - relax -> pseudo stabilisation using edge lengths
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;; - shadowpi -> variation on circular parent-centric splay
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;; changes
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;; 2006-09-11
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;; - scraped into coherence from various sources
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;; 2006-11-12
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;; - mottled shadows, multiple beginings
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(module layout mzscheme
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(require (lib "misc.ss" "swindle")
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(lib "class.ss")
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(lib "list.ss")
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(lib "math.ss")
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"scritch.scm"
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"snipets.scm"
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"graph.scm")
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(provide wobble-tree
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shuffle-tree
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relax-tree
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shadowpi-tree)
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;;;;;; ; ; ;; ;;;; ;; ; ;;
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;;
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;; traverse from a node, and s p r e a d
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;;
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;;;;; ; ; ; ; ;
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(define (wobble-tree node pb)
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(let* ([parents (reverse (send node get-parents))]
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[n (length parents)]
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[x1 50]
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[y1 30])
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(debug 2 "~% node.~a " node)
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(debug 2 "~% parents.~a " parents)
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(send pb move node x1 y1)
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(do ((i 0 (+ i 1)))
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((= i n))
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(debug 2 ".~a." i)
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(let* ([parent (list-ref parents i)]
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[nx (box 0)]
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[ny (box 0)]
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[loco (send pb get-snip-location node nx ny)])
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(debug 2 ".[~a,~a]." (unbox nx) (unbox ny))
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(send pb move-to parent
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(+ (* i x1) (/ (unbox nx) n))
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(+ y1 (unbox ny)))
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(wobble-tree parent pb)))))
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;;;;;;;;;;; ;; ; ;; ;
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;;
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;; autoslonk
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;;
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;;;;; ; ;; ;; ; ;
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(define (shuffle-tree node pb x y)
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(let ([parents (send node get-parents)]
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[x1 200]
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[y1 200])
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(debug 2 "shuffling: ~a ~%" parents)
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(send pb move node (random x1) (random y1))
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(cond
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((= 1 (length parents))
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(shuffle-tree (car parents) pb (random x1) (random y1)))
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((< 1 (length parents))
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(for-each
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(lambda (parent)
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(shuffle-tree parent pb (random x1) (random y1)))
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parents)))))
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;;;;; ;;;;;; ;; ; ;; ;
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;;
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;; energy stabilisation
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;; - single itteration only, call as reqd.
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;; - local epsilon & delta only
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;;
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;;;;; ; ;;; ; ;
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(define (relax-tree node pb x y)
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(let ([parents (send node get-parents)])
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(debug 2 "minimising: ~a ~%" node)
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;; move given node
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(send pb move node x y)
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;; stabilise distance between siblings
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(if (not (empty? parents))
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(for-each
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(lambda (parent)
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(let ([siblings (send parent get-children)])
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(if(< 1 (length siblings))
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(send pb move node
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(shuffle-x node (random-ref siblings))
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(shuffle-y node (random-ref siblings)))))) parents))
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;; stabilise distance betwen node and parents
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(cond
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((= 1 (length parents))
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(debug 1 "distance between ~a and ~a is ~a~%"
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node (car parents) (distance node (car parents)))
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(let ([parent (car parents)])
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(relax-tree parent pb
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(shuffle-x node parent)
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(shuffle-y node parent))))
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((< 1 (length parents))
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(for-each
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(lambda (parent)
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(debug 1 "distance between ~a and ~a is ~a~%" node parent (distance node parent))
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(relax-tree parent pb
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(shuffle-x node parent)
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(shuffle-y node parent))) parents)))))
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(define (random-ref l)
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(list-ref l (random (length l))))
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(define (shuffle-x n1 n2)
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(let ([x1 (snip-x n1)]
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[x2 (snip-x n2)]
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[epsilon 100]
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[d 10])
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(if (> epsilon (distance n1 n2))
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(if (= x2 (max x1 x2)) ;; move outward
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(random d)
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(-ve (random d)))
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(if (= x2 (max x1 x2)) ;; move inward
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(-ve (random d))
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(random d)))))
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(define (shuffle-y n1 n2)
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(let ([y1 (snip-y n1)]
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[y2 (snip-y n2)]
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[epsilon 100]
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[d 10])
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(if (> epsilon (distance n1 n2))
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(if (= y2 (max y1 y2)) ;; move outward
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(random d)
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(-ve (random d)))
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(if (= y2 (max y1 y2)) ;; move inward
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(-ve (random d))
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(random d)))))
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(define (distance n1 n2)
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(let ([x1 (snip-x n1)]
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[x2 (snip-x n2)]
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[y1 (snip-y n1)]
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[y2 (snip-y n2)])
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(sqrt (+ (sq (abs (- x1 x2)))
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(sq (abs (- y1 y2)))))))
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(define (sq n)
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(* n n))
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(define (-ve n)
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(- 0 n))
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;;;;;;;;;;; ;; ; ;; ;
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;;
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;; circular parent centric layout, in the shade of twopi
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;;
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;; ref: arxiv:cs.HC/0606007 v1 -> "A parent-centered radial layout algorithm
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;; for interactive graph visualization and animation" by Andrew Pavlo,
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;; Christopher Homan & Jonathan Schull
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;;
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;; - since each node may have any number of parents, yet only a single child,
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;; thi sinterpretation of the algorithm is essentially the same, if 'children'
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;; is read as 'parents'
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;;
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;;;;; ; ;;; ; ;
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(define twopi (* 2 pi))
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2006-11-13 20:50:58 +00:00
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2006-11-12 22:02:23 +00:00
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2006-11-13 20:50:58 +00:00
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(define (shadowpi-tree node pb x y t1 t2 r)
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;; node from whcih to draw the layout, centred at x,y on the containment arc
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;; given by t1->t2 with radius, r
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(let* ([parents (reverse (send node get-parents))]
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[n (length parents)]
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[xi (snip-x node)]
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[yi (snip-y node)]
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2006-11-13 20:50:58 +00:00
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(phi 0.75))
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2006-11-12 22:02:23 +00:00
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2006-11-13 20:50:58 +00:00
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;; distribute parents of given node evenly along a containment circle
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;; centered on the node.
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2006-11-13 20:50:58 +00:00
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(dotimes (i n)
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(let ((parent (list-ref parents i))
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(x1 (* r (cos (* (* (+ t1 (- t2 t1)) (/ i n))))))
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(y1 (* r (sin (* (* (+ t1 (- t2 t1)) (/ i n)))))))
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(send pb move-to parent
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(+ xi x1) (+ yi y1))
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2006-11-12 22:02:23 +00:00
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2006-11-13 20:50:58 +00:00
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;; draw circles around the node’s parents and evenly distribute their
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;; parents along containment arcs.
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2006-11-12 22:02:23 +00:00
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2006-11-13 20:50:58 +00:00
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(shadowpi-tree parent pb
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(+ xi x1) (+ yi y1) ;; centred on
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(atan (/ (- y1 yi) (- x1 xi)))
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(+ pi (atan (/ (- y1 yi) (- x1 xi))))
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(* r phi)) ;; radius
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2006-11-13 20:50:58 +00:00
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;; this proceeds recursively, so that successively distant descendants of
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;; the goven node are positioned on successively smaller containment arcs.
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2006-11-12 22:02:23 +00:00
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2006-11-13 20:50:58 +00:00
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))))
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2006-11-12 22:02:23 +00:00
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) ;; end of module
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