src/Pure/System/options.scala
author wenzelm
Thu Jan 21 20:50:34 2016 +0100 (2016-01-21)
changeset 62227 6eeaaefcea56
parent 61579 634cd44bb1d3
child 62437 bccad0374407
permissions -rw-r--r--
clarified errors: more explicit treatment of uninitialized state;
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/*  Title:      Pure/System/options.scala
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    Author:     Makarius
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System options with external string representation.
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*/
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package isabelle
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import java.util.Calendar
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object Options
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{
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  type Spec = (String, Option[String])
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  val empty: Options = new Options()
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  /* representation */
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  sealed abstract class Type
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  {
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    def print: String = Word.lowercase(toString)
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  }
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  case object Bool extends Type
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  case object Int extends Type
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  case object Real extends Type
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  case object String extends Type
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  case object Unknown extends Type
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  case class Opt(
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    public: Boolean,
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    pos: Position.T,
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    name: String,
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    typ: Type,
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    value: String,
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    default_value: String,
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    description: String,
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    section: String)
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  {
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    private def print(default: Boolean): String =
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    {
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      val x = if (default) default_value else value
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      "option " + name + " : " + typ.print + " = " +
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        (if (typ == Options.String) quote(x) else x) +
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        (if (description == "") "" else "\n  -- " + quote(description))
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    }
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    def print: String = print(false)
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    def print_default: String = print(true)
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    def title(strip: String = ""): String =
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    {
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      val words = Word.explode('_', name)
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      val words1 =
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        words match {
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          case word :: rest if word == strip => rest
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          case _ => words
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        }
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      Word.implode(words1.map(Word.perhaps_capitalize(_)))
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    }
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    def unknown: Boolean = typ == Unknown
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  }
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  /* parsing */
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  private val SECTION = "section"
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  private val PUBLIC = "public"
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  private val OPTION = "option"
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  private val OPTIONS = Path.explode("etc/options")
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  private val PREFS_DIR = Path.explode("$ISABELLE_HOME_USER/etc")
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  private val PREFS = PREFS_DIR + Path.basic("preferences")
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  lazy val options_syntax =
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    Outer_Syntax.init() + ":" + "=" + "--" + Symbol.comment + Symbol.comment_decoded +
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      (SECTION, Keyword.DOCUMENT_HEADING) + PUBLIC + (OPTION, Keyword.THY_DECL)
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  lazy val prefs_syntax = Outer_Syntax.init() + "="
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  object Parser extends Parse.Parser
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  {
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    val option_name = atom("option name", _.is_xname)
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    val option_type = atom("option type", _.is_ident)
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    val option_value =
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      opt(token("-", tok => tok.is_sym_ident && tok.content == "-")) ~ atom("nat", _.is_nat) ^^
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        { case s ~ n => if (s.isDefined) "-" + n else n } |
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      atom("option value", tok => tok.is_name || tok.is_float)
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    def comment_marker: Parser[String] =
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      $$$("--") | $$$(Symbol.comment) | $$$(Symbol.comment_decoded)
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    val option_entry: Parser[Options => Options] =
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    {
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      command(SECTION) ~! text ^^
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        { case _ ~ a => (options: Options) => options.set_section(a) } |
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      opt($$$(PUBLIC)) ~ command(OPTION) ~! (position(option_name) ~ $$$(":") ~ option_type ~
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      $$$("=") ~ option_value ~ (comment_marker ~! text ^^ { case _ ~ x => x } | success(""))) ^^
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        { case a ~ _ ~ ((b, pos) ~ _ ~ c ~ _ ~ d ~ e) =>
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            (options: Options) => options.declare(a.isDefined, pos, b, c, d, e) }
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    }
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    val prefs_entry: Parser[Options => Options] =
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    {
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      option_name ~ ($$$("=") ~! option_value) ^^
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      { case a ~ (_ ~ b) => (options: Options) => options.add_permissive(a, b) }
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    }
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    def parse_file(syntax: Outer_Syntax, parser: Parser[Options => Options],
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      options: Options, file: Path): Options =
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    {
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      val toks = Token.explode(syntax.keywords, File.read(file))
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      val ops =
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        parse_all(rep(parser), Token.reader(toks, Token.Pos.file(file.implode))) match {
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          case Success(result, _) => result
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          case bad => error(bad.toString)
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        }
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      try { (options.set_section("") /: ops) { case (opts, op) => op(opts) } }
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      catch { case ERROR(msg) => error(msg + Position.here(file.position)) }
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    }
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  }
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  def init_defaults(): Options =
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  {
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    var options = empty
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    for {
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      dir <- Isabelle_System.components()
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      file = dir + OPTIONS if file.is_file
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    } { options = Parser.parse_file(options_syntax, Parser.option_entry, options, file) }
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    options
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  }
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  def init(): Options = init_defaults().load_prefs()
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  /* encode */
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  val encode: XML.Encode.T[Options] = (options => options.encode)
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  /* command line entry point */
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  def main(args: Array[String])
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  {
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    Command_Line.tool0 {
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      args.toList match {
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        case get_option :: export_file :: more_options =>
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          val options = (Options.init() /: more_options)(_ + _)
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          if (get_option != "")
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            Console.println(options.check_name(get_option).value)
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          if (export_file != "")
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            File.write(Path.explode(export_file), YXML.string_of_body(options.encode))
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          if (get_option == "" && export_file == "")
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            Console.println(options.print)
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        case _ => error("Bad arguments:\n" + cat_lines(args))
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      }
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    }
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  }
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}
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final class Options private(
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  val options: Map[String, Options.Opt] = Map.empty,
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  val section: String = "")
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{
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  override def toString: String = options.iterator.mkString("Options (", ",", ")")
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  private def print_opt(opt: Options.Opt): String =
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    if (opt.public) "public " + opt.print else opt.print
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  def print: String = cat_lines(options.toList.sortBy(_._1).map(p => print_opt(p._2)))
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  def description(name: String): String = check_name(name).description
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  /* check */
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  def check_name(name: String): Options.Opt =
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    options.get(name) match {
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      case Some(opt) if !opt.unknown => opt
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      case _ => error("Unknown option " + quote(name))
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    }
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  private def check_type(name: String, typ: Options.Type): Options.Opt =
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  {
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    val opt = check_name(name)
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    if (opt.typ == typ) opt
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    else error("Ill-typed option " + quote(name) + " : " + opt.typ.print + " vs. " + typ.print)
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  }
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  /* basic operations */
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  private def put[A](name: String, typ: Options.Type, value: String): Options =
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  {
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    val opt = check_type(name, typ)
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    new Options(options + (name -> opt.copy(value = value)), section)
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  }
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  private def get[A](name: String, typ: Options.Type, parse: String => Option[A]): A =
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  {
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    val opt = check_type(name, typ)
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    parse(opt.value) match {
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      case Some(x) => x
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      case None =>
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        error("Malformed value for option " + quote(name) +
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          " : " + typ.print + " =\n" + quote(opt.value))
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    }
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  }
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  /* internal lookup and update */
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  class Bool_Access
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  {
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    def apply(name: String): Boolean = get(name, Options.Bool, Properties.Value.Boolean.unapply)
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    def update(name: String, x: Boolean): Options =
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      put(name, Options.Bool, Properties.Value.Boolean(x))
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  }
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  val bool = new Bool_Access
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  class Int_Access
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  {
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    def apply(name: String): Int = get(name, Options.Int, Properties.Value.Int.unapply)
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    def update(name: String, x: Int): Options =
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      put(name, Options.Int, Properties.Value.Int(x))
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  }
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  val int = new Int_Access
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  class Real_Access
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  {
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    def apply(name: String): Double = get(name, Options.Real, Properties.Value.Double.unapply)
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    def update(name: String, x: Double): Options =
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      put(name, Options.Real, Properties.Value.Double(x))
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  }
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  val real = new Real_Access
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  class String_Access
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  {
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    def apply(name: String): String = get(name, Options.String, s => Some(s))
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    def update(name: String, x: String): Options = put(name, Options.String, x)
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  }
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  val string = new String_Access
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  class Seconds_Access
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  {
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    def apply(name: String): Time = Time.seconds(real(name))
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  }
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  val seconds = new Seconds_Access
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  /* external updates */
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  private def check_value(name: String): Options =
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  {
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    val opt = check_name(name)
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    opt.typ match {
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      case Options.Bool => bool(name); this
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      case Options.Int => int(name); this
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      case Options.Real => real(name); this
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      case Options.String => string(name); this
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      case Options.Unknown => this
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    }
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  }
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  def declare(
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    public: Boolean,
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    pos: Position.T,
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    name: String,
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    typ_name: String,
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    value: String,
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    description: String): Options =
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  {
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    options.get(name) match {
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      case Some(other) =>
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        error("Duplicate declaration of option " + quote(name) + Position.here(pos) +
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          Position.here(other.pos))
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      case None =>
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        val typ =
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          typ_name match {
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            case "bool" => Options.Bool
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            case "int" => Options.Int
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            case "real" => Options.Real
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            case "string" => Options.String
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            case _ =>
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              error("Unknown type for option " + quote(name) + " : " + quote(typ_name) +
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                Position.here(pos))
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          }
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        val opt = Options.Opt(public, pos, name, typ, value, value, description, section)
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        (new Options(options + (name -> opt), section)).check_value(name)
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    }
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  }
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  def add_permissive(name: String, value: String): Options =
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  {
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    if (options.isDefinedAt(name)) this + (name, value)
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    else {
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      val opt = Options.Opt(false, Position.none, name, Options.Unknown, value, value, "", "")
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      new Options(options + (name -> opt), section)
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    }
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  }
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  def + (name: String, value: String): Options =
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  {
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    val opt = check_name(name)
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    (new Options(options + (name -> opt.copy(value = value)), section)).check_value(name)
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  }
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  def + (name: String, opt_value: Option[String]): Options =
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  {
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    val opt = check_name(name)
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    opt_value match {
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      case Some(value) => this + (name, value)
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      case None if opt.typ == Options.Bool => this + (name, "true")
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      case None => error("Missing value for option " + quote(name) + " : " + opt.typ.print)
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    }
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  }
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  def + (str: String): Options =
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  {
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    str.indexOf('=') match {
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      case -1 => this + (str, None)
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      case i => this + (str.substring(0, i), str.substring(i + 1))
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    }
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  }
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  def ++ (specs: List[Options.Spec]): Options =
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    (this /: specs)({ case (x, (y, z)) => x + (y, z) })
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  /* sections */
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  def set_section(new_section: String): Options =
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    new Options(options, new_section)
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  def sections: List[(String, List[Options.Opt])] =
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    options.groupBy(_._2.section).toList.map({ case (a, opts) => (a, opts.toList.map(_._2)) })
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  /* encode */
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  def encode: XML.Body =
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  {
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    val opts =
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      for ((_, opt) <- options.toList; if !opt.unknown)
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        yield (opt.pos, (opt.name, (opt.typ.print, opt.value)))
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    import XML.Encode.{string => string_, _}
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    list(pair(properties, pair(string_, pair(string_, string_))))(opts)
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  }
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  /* user preferences */
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  def load_prefs(): Options =
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    if (Options.PREFS.is_file)
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      Options.Parser.parse_file(
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        Options.prefs_syntax, Options.Parser.prefs_entry, this, Options.PREFS)
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    else this
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  def save_prefs()
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  {
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    val defaults = Options.init_defaults()
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    val changed =
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      (for {
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        (name, opt2) <- options.iterator
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        opt1 = defaults.options.get(name)
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        if opt1.isEmpty || opt1.get.value != opt2.value
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      } yield (name, opt2.value, if (opt1.isEmpty) "  (* unknown *)" else "")).toList
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    val prefs =
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      changed.sortBy(_._1)
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        .map({ case (x, y, z) => x + " = " + Outer_Syntax.quote_string(y) + z + "\n" }).mkString
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    Isabelle_System.mkdirs(Options.PREFS_DIR)
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    File.write_backup(Options.PREFS,
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      "(* generated by Isabelle " + Calendar.getInstance.getTime + " *)\n\n" + prefs)
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  }
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}
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class Options_Variable
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{
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  private var options: Option[Options] = None
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  def store(new_options: Options): Unit = synchronized { options = Some(new_options) }
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  def value: Options = synchronized {
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    options match {
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      case Some(opts) => opts
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      case None => error("Uninitialized Isabelle system options")
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    }
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  }
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  private def upd(f: Options => Options): Unit = synchronized { options = Some(f(value)) }
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  def + (name: String, x: String): Unit = upd(opts => opts + (name, x))
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  class Bool_Access
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  {
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    def apply(name: String): Boolean = value.bool(name)
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    def update(name: String, x: Boolean): Unit = upd(opts => opts.bool.update(name, x))
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  }
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  val bool = new Bool_Access
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  class Int_Access
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  {
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    def apply(name: String): Int = value.int(name)
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    def update(name: String, x: Int): Unit = upd(opts => opts.int.update(name, x))
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  }
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  val int = new Int_Access
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  class Real_Access
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  {
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    def apply(name: String): Double = value.real(name)
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    def update(name: String, x: Double): Unit = upd(opts => opts.real.update(name, x))
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  }
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  val real = new Real_Access
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  class String_Access
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  {
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    def apply(name: String): String = value.string(name)
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    def update(name: String, x: String): Unit = upd(opts => opts.string.update(name, x))
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  }
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  val string = new String_Access
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  class Seconds_Access
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  {
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    def apply(name: String): Time = value.seconds(name)
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  }
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  val seconds = new Seconds_Access
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}