| 
     1 import CW9a._  | 
         | 
     2   | 
         | 
     3 //type Pos = (Int, Int)    // a position on a chessboard   | 
         | 
     4 //type Path = List[Pos]    // a path...a list of positions  | 
         | 
     5   | 
         | 
     6 def add_pair_urban(x: Pos)(y: Pos): Pos =   | 
         | 
     7   (x._1 + y._1, x._2 + y._2)  | 
         | 
     8   | 
         | 
     9 def is_legal_urban(dim: Int, path: Path)(x: Pos): Boolean =   | 
         | 
    10   0 <= x._1 && 0 <= x._2 && x._1 < dim && x._2 < dim && !path.contains(x)  | 
         | 
    11   | 
         | 
    12 def moves_urban(x: Pos): List[Pos] =   | 
         | 
    13   List(( 1,  2),( 2,  1),( 2, -1),( 1, -2),  | 
         | 
    14        (-1, -2),(-2, -1),(-2,  1),(-1,  2)).map(add_pair_urban(x))  | 
         | 
    15   | 
         | 
    16 def legal_moves_urban(dim: Int, path: Path, x: Pos): List[Pos] =   | 
         | 
    17   moves_urban(x).filter(is_legal_urban(dim, path))  | 
         | 
    18   | 
         | 
    19 def correct_urban(dim: Int)(p: Path): Boolean = p match { | 
         | 
    20   case Nil => true  | 
         | 
    21   case x::Nil => true  | 
         | 
    22   case x::y::p => if (legal_moves_urban(dim, p, y).contains(x)) correct_urban(dim)(y::p) else false  | 
         | 
    23 }  | 
         | 
    24   | 
         | 
    25   | 
         | 
    26 val ts00_urban = enum_tours(5, List((0, 0)))  | 
         | 
    27 assert(ts00_urban.map(correct_urban(5)).forall(_ == true) == true)  | 
         | 
    28 assert(ts00_urban.length == 304)    | 
         | 
    29   | 
         | 
    30   | 
         | 
    31 val ts_urban = enum_tours(5, List((0, 2)))  | 
         | 
    32 assert(ts_urban.map(correct_urban(5)).forall(_ == true) == true)  | 
         | 
    33 assert(ts_urban.length == 56)    |