| 168 |      1 | // Part 1 about finding and counting Knight's tours
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|  |      2 | //==================================================
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|  |      3 | 
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|  |      4 | object CW7a {
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|  |      5 | 
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|  |      6 | type Pos = (Int, Int)    // a position on a chessboard 
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|  |      7 | type Path = List[Pos]    // a path...a list of positions
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|  |      8 | 
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|  |      9 | def print_board(dim: Int, path: Path): Unit = {
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|  |     10 |   println
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|  |     11 |   for (i <- 0 until dim) {
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|  |     12 |     for (j <- 0 until dim) {
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|  |     13 |       print(f"${path.reverse.indexOf((j, dim - i - 1))}%3.0f ")
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|  |     14 |     }
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|  |     15 |     println
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|  |     16 |   } 
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|  |     17 | }
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|  |     18 | 
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|  |     19 | def add_pair(x: Pos)(y: Pos): Pos = 
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|  |     20 |   (x._1 + y._1, x._2 + y._2)
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|  |     21 | 
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|  |     22 | def is_legal(dim: Int, path: Path)(x: Pos): Boolean = 
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|  |     23 |   0 <= x._1 && 0 <= x._2 && x._1 < dim && x._2 < dim && !path.contains(x)
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|  |     24 | 
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|  |     25 | assert(is_legal(8, Nil)((3,4)) == true)
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|  |     26 | assert(is_legal(8, List((4,1), (1,0)))((4,1)) == false)
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|  |     27 | assert(is_legal(2, Nil)((0,0)) == true)
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|  |     28 | 
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|  |     29 | 
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|  |     30 | 
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|  |     31 | def moves(x: Pos): List[Pos] = 
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|  |     32 |   List(( 1,  2),( 2,  1),( 2, -1),( 1, -2),
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|  |     33 |        (-1, -2),(-2, -1),(-2,  1),(-1,  2)).map(add_pair(x))
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|  |     34 | 
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|  |     35 | def legal_moves(dim: Int, path: Path, x: Pos): List[Pos] = 
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|  |     36 |   moves(x).filter(is_legal(dim, path))
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|  |     37 | 
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|  |     38 | def count_tours(dim: Int, path: Path): Int = {
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|  |     39 |   if (path.length == dim * dim) 1
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|  |     40 |   else 
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|  |     41 |     (for (x <- legal_moves(dim, path, path.head)) yield count_tours(dim, x::path)).sum
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|  |     42 | }
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|  |     43 | 
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|  |     44 | def enum_tours(dim: Int, path: Path): List[Path] = {
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|  |     45 |   if (path.length == dim * dim) List(path)
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|  |     46 |   else 
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|  |     47 |     (for (x <- legal_moves(dim, path, path.head)) yield enum_tours(dim, x::path)).flatten
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|  |     48 | }
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|  |     49 | 
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|  |     50 | def count_all_tours(dim: Int) = {
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|  |     51 |   for (i <- (0 until dim).toList; 
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|  |     52 |        j <- (0 until dim).toList) yield count_tours(dim, List((i, j)))
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|  |     53 | }
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|  |     54 | 
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|  |     55 | def enum_all_tours(dim: Int): List[Path] = {
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|  |     56 |   (for (i <- (0 until dim).toList; 
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|  |     57 |         j <- (0 until dim).toList) yield enum_tours(dim, List((i, j)))).flatten
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|  |     58 | }
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|  |     59 | 
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|  |     60 | /*
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|  |     61 | for (dim <- 1 to 5) {
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|  |     62 |   println(s"${dim} x ${dim} " + count_tours(dim, List((0, 0))))
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|  |     63 | }
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|  |     64 | 
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|  |     65 | for (dim <- 1 to 5) {
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|  |     66 |   println(s"${dim} x ${dim} " + count_all_tours(dim))
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|  |     67 | }
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|  |     68 | 
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|  |     69 | for (dim <- 1 to 5) {
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|  |     70 |   val ts = enum_tours(dim, List((0, 0)))
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|  |     71 |   println(s"${dim} x ${dim} ")   
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|  |     72 |   if (ts != Nil) {
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|  |     73 |     print_board(dim, ts.head)
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|  |     74 |     println(ts.head)
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|  |     75 |   }
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|  |     76 | }
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|  |     77 | */ 
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|  |     78 | 
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|  |     79 | }
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