object HuffmanCode {
private abstract sealed class Tree[A] {
val freq: Int
def toCode: List[(A, String)] = toCodePrefixed("")
def toCodePrefixed(prefix: String): List[(A, String)]
}
private final case class InternalNode[A](left: Tree[A], right: Tree[A]) extends Tree[A] {
val freq: Int = left.freq + right.freq
override def toCodePrefixed(prefix: String): List[(A, String)] =
left.toCodePrefixed(prefix + "0") ::: right.toCodePrefixed(prefix + "1")
}
private final case class LeafNode[A](element: A, freq: Int) extends Tree[A] {
override def toCodePrefixed(prefix: String): List[(A, String)] = List((element, prefix))
}
//维护两个有序队列, 一个是子节点,一个是生成的节点
def huffman[A](xs: List[(A, Int)]): List[(A, String)] = {
import collection.immutable.Queue
def dequeueSmallest(q1: Queue[Tree[A]], q2: Queue[Tree[A]]): (Tree[A], Queue[Tree[A]], Queue[Tree[A]]) = {
if (q2.isEmpty) (q1.front, q1.dequeue._2, q2)
else if (q1.isEmpty || q2.front.freq < q1.front.freq) (q2.front, q1, q2.dequeue._2)
else (q1.front, q1.dequeue._2, q2)
}
def huffmanR(q1: Queue[Tree[A]], q2: Queue[Tree[A]]): List[(A, String)] = {
if (q1.length + q2.length == 1) (if (q1.isEmpty) q2.front else q1.front).toCode
else {
val (v1, q3, q4) = dequeueSmallest(q1, q2)
val (v2, q5, q6) = dequeueSmallest(q3, q4)
huffmanR(q5, q6.enqueue(InternalNode(v1, v2)))
}
}
huffmanR(Queue.empty.enqueue(xs sortBy (r => r._2)) map (e => LeafNode(e._1, e._2)), Queue.empty)
}
def main(args: Array[String]): Unit = {
huffman(List(("a", 45), ("b", 13), ("c", 12), ("d", 16), ("e", 9), ("f", 5))) foreach(println)
}
}