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;;; grid-geometry.lisp

(in-package :wheelwork )

(defmacro with-grid-line
    ((x y) (start-x start-y) (end-x end-y) &body body)
  "Execute BODY for X and Y assigned to integer values in a line
connecting the integer point START-X , START-Y and END-X, END-Y. "
  (with-gensyms (sx sy ex ey distance step progress xdiff ydiff)
    `(loop
       with ,sx = ,start-x
       with ,sy = ,start-y
       with ,ex = ,end-x
       with ,ey = ,end-y
       with ,xdiff = (- ,ex ,sx)
       with ,ydiff = (- ,ey, sy)
       with ,distance = (max (abs ,xdiff) (abs ,ydiff))
       for ,step from 0 to ,distance
       for ,progress = (if (zerop ,distance) 0.0 (/ ,step ,distance))
       for ,x = (round (+ ,start-x (* ,progress ,xdiff)))
       for ,y = (round (+ ,start-y (* ,progress ,ydiff)))
       do (progn ,@body))))

(defmacro with-grid-path
    ((x y) (path &key autoclosep interiorp) &body body)
  (with-gensyms (points x1 y1 x2 y2 more perimeter)
    (let* ((perimeter-acc-clause
             (when (and autoclosep interiorp)
               `(pushnew (list ,x ,y) ,perimeter :test #'equalp)))
           (autoclose-clause
             (when autoclosep
               `(destructuring-bind (,x2 ,y2) (first ,points)
                  (with-grid-line (,x2 ,y2) (,x1 ,y1)
                      ,perimeter-acc-clause
                    ,@body))))
           (autofill-clause
             (when (and autoclosep interiorp)
               `(with-grid-poly-interior (,x ,y) ,perimeter ,@body)))) 
      `(let ((,points ,path)
             (,perimeter nil))
         (loop
           for ((,x1 ,y) (,x2 ,y2) . ,more) on ,points
           while ,x2 do
             (with-grid-line (,x ,y) (,x1 ,y1) (,x2 ,y2)
               (progn
                 ,perimeter-acc-clause 
                 ,@body))
           finally (progn
                     ,autoclose-clause
                     ,autofill-clause))))))

(defun grid-bbox-for (poly)
  "POLY is a list of pairs of xy coordinates. Return a pair of
pairs, ((min-x min-y) (max-x max-y)), representing the bottom left and
top right corners of the bounding box for POLY "
  (loop for (x y) in poly
        minimizing x into x-min
        maximizing x into x-max
        minimizing y into y-min
        maximizing y into y-max
        finally (return (list (list x-min y-min)
                              (list x-max y-max)))))

(defmacro with-grid-poly-interior
    ((x y) perimeter &body body)
  "PERMIETER is expected to evaluate to a list of contiguous points,
representing the permimeter a polygon in 2d space. Execute BODY for
each point interior to this polygon."
  (with-gensyms (points bottom left top right inside)
    `(let ((,points ,perimeter)
           (,inside nil))
       (destructuring-bind ((,left ,bottom) (,right ,top)) (grid-bbox-for ,points)
         (loop for ,y from ,bottom to ,top do
           (loop for ,x from ,left to ,right
                 when (member (list ,x ,y) ,points :test #'equalp)
                   do (setf ,inside (not ,inside))
                 when ,inside
                   do (progn ,@body)))))))

(defmacro with-grid-rect ((x y) (left bottom right top) &body body)
  `(loop for ,x from ,left to ,right do
         (loop for ,y from ,bottom to ,top do ,@body )))

(defmacro with-grid-circle
    ((x y) (cx cy radius &key interiorp) &body body)
  (with-gensyms (rad sx sy)
    (let ((comparator
            (if interiorp '>= '=))) 
      `(let ((,sx ,cx) (,sy ,cy) (,rad ,radius)) 
         (with-grid-rect (,x ,y) ((- ,sx ,rad) (- ,sy ,rad) (+ ,sx ,rad) (+ ,sy ,rad))
           (when (,comparator ,rad (round (euclidean-dist ,x ,y ,sx ,sy)))
             ,@body))))))