progs/comb1.scala
author Christian Urban <christian dot urban at kcl dot ac dot uk>
Sun, 03 Nov 2013 00:41:24 +0000
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import scala.language.implicitConversions
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import scala.language.reflectiveCalls
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abstract class Parser[I <% Seq[_], T] {
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  def parse(ts: I): Set[(T, I)]
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    aaa dcjefoivhwefihvefhiv def parse_all(ts: I) : Set[T] =
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    for ((head, tail) <- parse(ts); if (tail.isEmpty)) yield head
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}
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class SeqParser[I <% Seq[_], T, S](p: => Parser[I, T], q: => Parser[I, S]) extends Parser[I, (T, S)] {
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  def parse(sb: I) = 
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    for ((head1, tail1) <- p.parse(sb); 
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         (head2, tail2) <- q.parse(tail1)) yield ((head1, head2), tail2)
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}
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class AltParser[I <% Seq[_], T](p: => Parser[I, T], q: => Parser[I, T]) extends Parser[I, T] {
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  def parse(sb: I) = p.parse(sb) ++ q.parse(sb)   
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}
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class FunParser[I <% Seq[_], T, S](p: => Parser[I, T], f: T => S) extends Parser[I, S] {
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  def parse(sb: I) = 
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    for ((head, tail) <- p.parse(sb)) yield (f(head), tail)
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}
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// atomic parsers
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case class CharParser(c: Char) extends Parser[String, Char] {
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  def parse(sb: String) = 
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    if (sb.head == c) Set((c, sb.tail)) else Set()
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}
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case class StringParser(s: String) extends Parser[String, String] {
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  def parse(sb: String) = {
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    val (prefix, suffix) = sb.splitAt(s.length)
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    if (prefix == s) Set((prefix, suffix)) else Set()
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  }
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}
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case object NumParser extends Parser[String, String] {
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  val reg = "[0-9]+".r
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  def parse(sb: String) = reg.findPrefixOf(sb) match {
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    case None => Set()
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    case Some(s) => Set(sb.splitAt(s.length)) 
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  }
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}
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implicit def string2parser(s : String) = StringParser(s)
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implicit def ParserOps[I<% Seq[_], T](p: Parser[I, T]) = new {
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  def || (q : => Parser[I, T]) = new AltParser[I, T](p, q)
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  def ==>[S] (f: => T => S) = new FunParser[I, T, S](p, f)
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  def ~[S] (q : => Parser[I, S]) = new SeqParser[I, T, S](p, q)
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}
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implicit def StringOps(s: String) = new {
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  def || (q : => Parser[String, String]) = new AltParser[String, String](s, q)
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  def || (r: String) = new AltParser[String, String](s, r)
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  def ==>[S] (f: => String => S) = new FunParser[String, String, S](s, f)
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  def ~[S] (q : => Parser[String, S]) = 
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    new SeqParser[String, String, S](s, q)
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  def ~ (r: String) = 
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    new SeqParser[String, String, String](s, r)
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}
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lazy val Pal : Parser[String, String] = 
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  (("a" ~ Pal ~ "a") ==> { case ((x, y), z) => x + y + z } ||
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   ("b" ~ Pal ~ "b") ==> { case ((x, y), z) => x + y + z } || "")
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Pal.parse_all("ababbaba")
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lazy val P : Parser[String, String] = 
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  "(" ~ P ~ ")" ~ P ==> { case (((u, x), y), z) => "{" + x + "}" + z } || ""
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P.parse_all("(((()()))())")
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P.parse_all("(((()()))()))")
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P.parse_all(")(")
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lazy val E: Parser[String, String] = 
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  (F ~ "*" ~ F) ==> { case ((x, y), z) => x + y + z } || F  
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lazy val F: Parser[String, String] = 
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  ((T ~ "+" ~ T) ==> { case ((x, y), z) => x + y + z } ||
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   (T ~ "-" ~ T) ==> { case ((x, y), z) => x + y + z } || T)
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lazy val T: Parser[String, String] = 
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  ("(" ~ E ~ ")") ==> { case ((x, y), z) => x + y + z } || NumParser
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println(E.parse_all("1+2+3"))
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// non-ambiguous vs ambiguous
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lazy val U : Parser[String, String] =
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  ("1" ~ U) ==> { case (x, y) => x + y } || ""
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U.parse_all("1" * 100 + "0")
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lazy val S : Parser[String, String] =
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  ("1" ~ S ~ S) ==> { case ((x, y), z) => x + y + z } || ""
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S.parse_all("1" * 15)