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As an exercise for myself (I'm learning clojure). I wanted to implement the Depth-first search algorithm.

How I did it

Using recursion

(def graph 
  {:s {:a 3 :d 4}
   :a {:s 3 :d 5 :b 4}
   :b {:a 4 :e 5 :c 4} 
   :c {:b 4} 
   :d {:s 4 :a 5 :e 2} 
   :e {:d 2 :b 5 :f 4} 
   :f {:e 4 :g 1}})

(def stack [[:s]])

(def goal :g)

(defn cost [Graph start goal]
  (goal (start Graph)))

(defn hasloop? [path]
  (not (= (count path) (count (set path)))))

(defn atgoal? [path]
  (= goal (last path)))

(defn solved? [stack]
  (some true? (map atgoal? stack)))

(defn addtopath [path node]
    (conj path node))

(defn pop* [stack]
    (last stack))

(defn findpath [stack]
    (if (not (solved? stack))
        (let [first* (pop* stack) l (last first*) ] 
                (findpath (drop-last 
                    (remove hasloop?  (lazy-cat
                                            (map #(addtopath first* %) 
                                            (keys (l graph))) stack)))))
        [(first stack)]))

How to use

(findpath stack)


I'm really really interested in how this code can be improved. Both in readability, efficiency and performance.

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This is probably a better fit for codereview.stackexchange.com –  James Allardice Sep 26 '12 at 19:17
Thanks! I will move my question to there –  tgoossens Sep 26 '12 at 19:17

1 Answer 1

Do not use lazy-cat, your seq is realized if you do drop-last on it.

Recursion in Clojure should be done using loop/recur to avoid stack overflows.

Do not put several lets on a single line:

(let [first* (pop* stack)
      l      (last first*)]

Use (if-not instead of (if (not. Same for (not=

Use lower-case var names (graph, not Graph). Keep capitalization to classes, records and protocols.

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