solve_1.ml 1.8 KB

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  1. open Stdio
  2. open Str
  3. let input_info =
  4. let rec one_string inp nb_rows nb_columns =
  5. let line = In_channel.input_line In_channel.stdin in
  6. match line with
  7. | None -> (inp, (nb_rows, nb_columns))
  8. | Some x -> one_string (inp ^ x) (nb_rows + 1) (String.length x)
  9. in one_string "" 0 0
  10. ;;
  11. let input = fst input_info;;
  12. let nb_rows = (fst (snd input_info));;
  13. let nb_columns = (snd (snd input_info));;
  14. let rec run_guard pos direction l_pos =
  15. if (pos < 0 || pos >= (nb_rows*nb_columns)) then (List.tl l_pos) else
  16. match direction with
  17. | '^' -> let new_pos = (pos - nb_columns) in
  18. if (new_pos >= 0 && input.[new_pos] == '#') then run_guard pos '>' l_pos else run_guard new_pos '^' (new_pos::l_pos)
  19. | 'v' -> let new_pos = (pos + nb_columns) in
  20. if (new_pos < (nb_rows*nb_columns) && input.[new_pos] == '#') then run_guard pos '<' l_pos else run_guard new_pos 'v' (new_pos::l_pos)
  21. | '<' -> let new_pos = (pos - 1) in
  22. if (new_pos >= 0 && input.[new_pos] == '#') then run_guard pos '^' l_pos else run_guard new_pos '<' (new_pos::l_pos)
  23. | '>' -> let new_pos = (pos + 1) in
  24. if (new_pos < (nb_rows*nb_columns) && input.[new_pos] == '#') then run_guard pos 'v' l_pos else run_guard new_pos '>' (new_pos::l_pos)
  25. | _ -> [] (*Not supposed to happen*)
  26. let rec eliminate_duplicates = function
  27. | a :: (b :: _ as t) -> if a = b then eliminate_duplicates t else a :: eliminate_duplicates t
  28. | smaller -> smaller;;
  29. let solve =
  30. let initial_pos = search_forward (regexp {|\^\|<\|>\|v|}) input 0 in
  31. let guard_direction = input.[initial_pos] in
  32. let list_of_positions = (List.sort compare (run_guard initial_pos guard_direction [initial_pos]))in
  33. List.length (eliminate_duplicates list_of_positions);;
  34. let () = printf "Total: %d\n" solve;;