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Implementing a Minimax Algorithm in Clojure - conditional function with multiple recursive calls

Here's what I'm trying to accomplish:

  1. Iterate over all of the spots. If it's open, select the spot with the current player's symbol.
  2. If this move causes the game to be won and it's the computer player's turn, add a key-value pair of the spot (an integer) and the score of the spot (an integer, 1 in this case) to the scored-spots hash-map.
  3. Then recurse and call this same function, passing it the new scored-spots hash-map.
  4. If however, the game has not been won, proceed to the next conditional statement and check that.
  5. Proceed with the next conditional statements in the same way, just with different scores (a win with the computer's turn is 1, a win with the human's turn is -1, a tie is 0).
  6. If none of the conditional statements evaluate to true, recurse anyway (the scored-spots hash-map won't be any different in this case).

Here's the code I tried, but this isn't returning the values I'm expecting.

Note:
board is a hash-map like this: {0 "0", 1 "1", 2 "2"} (spot location - spot value)
sym is a symbol, like "X" or "O"
current-player is a keyword, like :computer or :human
scored-spots is a hash-map like this: {}

(defn score-spots [board sym current-player scored-spots]
  (for [spot (keys board)]
    (if (some #(= % (.toString spot)) (filter #(not= "O" %) (filter #(not= "X" %) (vals board))))
      (let [board (assoc board spot sym)]
        (cond
          (and (game-won board) (= current-player :computer))
            (score-spots board sym current-player (assoc scored-spots spot 1))
          (and (game-won board) (= current-player :human))
            (score-spots board sym current-player (assoc scored-spots spot -1))
          (game-tied board)
            (score-spots board (switch-symbol sym) (switch-player current-player) (assoc scored-spots spot 0))
          :else
            (score-spots board (switch-symbol sym) (switch-player current-player) scored-spots)))
  scored-spots))))

What I'm expecting as a return value is a hash-map with each open spot scored. For example, {1 0, 4 1, 5 -1, 6 -1, 8 0}.

Instead, if I pass it this board:
{1 "X" 2 "X" 3 "O" 4 "4" 5 "5" 6 "6" 7 "7" 8 "X" 9 "O"},
I get a return value of:
(nil nil nil {} {} {} {} nil nil).

I'm fairly new to Clojure, so I'm a little confused about what I'm doing wrong here. I read about cond-let when-let and if-let, but I don't really understand them or know if they'd be appropriate here.

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marked as duplicate by George Stocker Nov 13 '12 at 19:43

This question has been asked before and already has an answer. If those answers do not fully address your question, please ask a new question.

    
Nope. This question is about conditionals in Clojure and how best to recurse within a conditional statement (or if it would be better to use something else). That was much higher-level, just a general question about minimax. And unfortunately I didn't understand minimax well enough at that time to articulate my question. I think it was too vague. Now that I understand minimax I'm trying to implement this scoring function. –  rzv Nov 13 '12 at 17:22
    
that's not really true. in both cases you're explaining what your algorithm is trying to do, and asking why it doesn't work. –  Kevin Nov 13 '12 at 17:25
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1 Answer 1

The reason you're getting an empty hash-map is that the code is just returning the empty hash-map that was passed as an argument. Your code is basically:

(defn score-spots [board sym current-player scored-spots]
  (something-complicated ...) #this has no effect on scored-spots
  scored-spots) #this value is returned
share|improve this answer
    
Okay. So if I want this to return the new scored-spots hash-map, where would I place that? I edited my code above and now I get a return of (nil nil nil {} {} {} {} nil nil). So it correctly identifies spots 4, 5, 6, and 7 as needing to be scored, but instead of seeing, for example, {5 1}, I get {}. –  rzv Nov 13 '12 at 17:40
    
Merged here: stackoverflow.com/questions/13278646/… –  rzv Nov 13 '12 at 17:56
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