src/Pure/PIDE/document.scala
author wenzelm
Fri Aug 12 22:10:49 2011 +0200 (2011-08-12)
changeset 44163 32e0c150c010
parent 44160 8848867501fb
child 44182 ecb51b457064
permissions -rw-r--r--
normalized theory dependencies wrt. file_store;
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/*  Title:      Pure/PIDE/document.scala
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    Author:     Makarius
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Document as collection of named nodes, each consisting of an editable
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list of commands, associated with asynchronous execution process.
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*/
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package isabelle
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import scala.collection.mutable
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object Document
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{
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  /* formal identifiers */
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  type ID = Long
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  val ID = Properties.Value.Long
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  type Version_ID = ID
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  type Command_ID = ID
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  type Exec_ID = ID
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  val no_id: ID = 0
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  val new_id = new Counter
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  /** document structure **/
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  /* named nodes -- development graph */
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  type Edit[A] = (String, Node.Edit[A])
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  type Edit_Text = Edit[Text.Edit]
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  type Edit_Command = Edit[(Option[Command], Option[Command])]
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  type Edit_Command_ID = Edit[(Option[Command_ID], Option[Command_ID])]
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  object Node
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  {
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    sealed abstract class Edit[A]
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    {
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      def map[B](f: A => B): Edit[B] =
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        this match {
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          case Remove() => Remove()
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          case Edits(es) => Edits(es.map(f))
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          case Update_Header(header: Header) => Update_Header(header)
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        }
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    }
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    case class Remove[A]() extends Edit[A]
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    case class Edits[A](edits: List[A]) extends Edit[A]
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    case class Update_Header[A](header: Header) extends Edit[A]
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    sealed case class Header(val master_dir: String, val thy_header: Exn.Result[Thy_Header])
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    {
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      def norm_deps(f: (String, Path) => String): Header =
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        copy(thy_header =
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          thy_header match {
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            case Exn.Res(header) =>
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              Exn.capture { header.norm_deps(name => f(master_dir, Path.explode(name))) }
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            case exn => exn
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          })
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    }
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    val empty_header = Header("", Exn.Exn(ERROR("Bad theory header")))
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    val empty: Node = Node(empty_header, Map(), Linear_Set())
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    def command_starts(commands: Iterator[Command], offset: Text.Offset = 0)
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      : Iterator[(Command, Text.Offset)] =
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    {
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      var i = offset
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      for (command <- commands) yield {
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        val start = i
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        i += command.length
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        (command, start)
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      }
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    }
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  }
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  private val block_size = 1024
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  sealed case class Node(
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    val header: Node.Header,
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    val blobs: Map[String, Blob],
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    val commands: Linear_Set[Command])
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  {
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    /* commands */
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    private lazy val full_index: (Array[(Command, Text.Offset)], Text.Range) =
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    {
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      val blocks = new mutable.ListBuffer[(Command, Text.Offset)]
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      var next_block = 0
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      var last_stop = 0
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      for ((command, start) <- Node.command_starts(commands.iterator)) {
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        last_stop = start + command.length
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        while (last_stop + 1 > next_block) {
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          blocks += (command -> start)
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          next_block += block_size
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        }
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      }
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      (blocks.toArray, Text.Range(0, last_stop))
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    }
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    def full_range: Text.Range = full_index._2
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    def command_range(i: Text.Offset = 0): Iterator[(Command, Text.Offset)] =
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    {
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      if (!commands.isEmpty && full_range.contains(i)) {
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        val (cmd0, start0) = full_index._1(i / block_size)
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        Node.command_starts(commands.iterator(cmd0), start0) dropWhile {
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          case (cmd, start) => start + cmd.length <= i }
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      }
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      else Iterator.empty
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    }
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    def command_range(range: Text.Range): Iterator[(Command, Text.Offset)] =
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      command_range(range.start) takeWhile { case (_, start) => start < range.stop }
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    def command_at(i: Text.Offset): Option[(Command, Text.Offset)] =
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    {
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      val range = command_range(i)
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      if (range.hasNext) Some(range.next) else None
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    }
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    def proper_command_at(i: Text.Offset): Option[Command] =
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      command_at(i) match {
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        case Some((command, _)) =>
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          commands.reverse_iterator(command).find(cmd => !cmd.is_ignored)
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        case None => None
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      }
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    def command_start(cmd: Command): Option[Text.Offset] =
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      command_starts.find(_._1 == cmd).map(_._2)
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    def command_starts: Iterator[(Command, Text.Offset)] =
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      Node.command_starts(commands.iterator)
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  }
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  /** versioning **/
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  /* particular document versions */
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  object Version
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  {
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    val init: Version = Version(no_id, Map().withDefaultValue(Node.empty))
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  }
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  sealed case class Version(val id: Version_ID, val nodes: Map[String, Node])
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  /* changes of plain text, eventually resulting in document edits */
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  object Change
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  {
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    val init = Change(Future.value(Version.init), Nil, Future.value(Version.init))
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  }
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  sealed case class Change(
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    val previous: Future[Version],
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    val edits: List[Edit_Text],
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    val version: Future[Version])
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  {
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    def is_finished: Boolean = previous.is_finished && version.is_finished
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  }
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  /* history navigation */
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  object History
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  {
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    val init = new History(List(Change.init))
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  }
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  // FIXME pruning, purging of state
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  class History(val undo_list: List[Change])
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  {
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    require(!undo_list.isEmpty)
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    def tip: Change = undo_list.head
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    def +(change: Change): History = new History(change :: undo_list)
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  }
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  /** global state -- document structure, execution process, editing history **/
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  abstract class Snapshot
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  {
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    val version: Version
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    val node: Node
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    val is_outdated: Boolean
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    def lookup_command(id: Command_ID): Option[Command]
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    def state(command: Command): Command.State
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    def convert(i: Text.Offset): Text.Offset
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    def convert(range: Text.Range): Text.Range
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    def revert(i: Text.Offset): Text.Offset
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    def revert(range: Text.Range): Text.Range
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    def select_markup[A](range: Text.Range)(result: Markup_Tree.Select[A])
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      : Stream[Text.Info[Option[A]]]
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  }
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  object State
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  {
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    class Fail(state: State) extends Exception
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    val init = State().define_version(Version.init, Map()).assign(Version.init.id, Nil)._2
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    case class Assignment(
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      val assignment: Map[Command, Exec_ID],
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      val is_finished: Boolean = false)
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    {
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      def get_finished: Map[Command, Exec_ID] = { require(is_finished); assignment }
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      def assign(command_execs: List[(Command, Exec_ID)]): Assignment =
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      {
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        require(!is_finished)
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        Assignment(assignment ++ command_execs, true)
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      }
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    }
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  }
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  sealed case class State(
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    val versions: Map[Version_ID, Version] = Map(),
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    val commands: Map[Command_ID, Command.State] = Map(),
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    val execs: Map[Exec_ID, (Command.State, Set[Version])] = Map(),
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    val assignments: Map[Version_ID, State.Assignment] = Map(),
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    val disposed: Set[ID] = Set(),  // FIXME unused!?
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    val history: History = History.init)
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  {
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    private def fail[A]: A = throw new State.Fail(this)
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    def define_version(version: Version, former_assignment: Map[Command, Exec_ID]): State =
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    {
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      val id = version.id
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      if (versions.isDefinedAt(id) || disposed(id)) fail
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      copy(versions = versions + (id -> version),
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        assignments = assignments + (id -> State.Assignment(former_assignment)))
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    }
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    def define_command(command: Command): State =
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    {
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      val id = command.id
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      if (commands.isDefinedAt(id) || disposed(id)) fail
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      copy(commands = commands + (id -> command.empty_state))
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    }
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    def lookup_command(id: Command_ID): Option[Command] = commands.get(id).map(_.command)
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    def the_version(id: Version_ID): Version = versions.getOrElse(id, fail)
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    def the_command(id: Command_ID): Command.State = commands.getOrElse(id, fail)
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    def the_exec_state(id: Exec_ID): Command.State = execs.getOrElse(id, fail)._1
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    def the_assignment(version: Version): State.Assignment =
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      assignments.getOrElse(version.id, fail)
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    def accumulate(id: ID, message: XML.Elem): (Command.State, State) =
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      execs.get(id) match {
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        case Some((st, occs)) =>
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          val new_st = st.accumulate(message)
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          (new_st, copy(execs = execs + (id -> (new_st, occs))))
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        case None =>
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          commands.get(id) match {
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            case Some(st) =>
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              val new_st = st.accumulate(message)
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              (new_st, copy(commands = commands + (id -> new_st)))
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            case None => fail
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          }
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      }
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    def assign(id: Version_ID, edits: List[(Command_ID, Exec_ID)]): (List[Command], State) =
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    {
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      val version = the_version(id)
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      val occs = Set(version)  // FIXME unused (!?)
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      var new_execs = execs
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      val assigned_execs =
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        for ((cmd_id, exec_id) <- edits) yield {
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          val st = the_command(cmd_id)
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          if (new_execs.isDefinedAt(exec_id) || disposed(exec_id)) fail
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          new_execs += (exec_id -> (st, occs))
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          (st.command, exec_id)
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        }
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      val new_assignment = the_assignment(version).assign(assigned_execs)
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      val new_state = copy(assignments = assignments + (id -> new_assignment), execs = new_execs)
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      (assigned_execs.map(_._1), new_state)
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    }
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    def is_assigned(version: Version): Boolean =
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      assignments.get(version.id) match {
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        case Some(assgn) => assgn.is_finished
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        case None => false
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      }
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    def extend_history(previous: Future[Version],
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        edits: List[Edit_Text],
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        version: Future[Version]): (Change, State) =
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    {
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      val change = Change(previous, edits, version)
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      (change, copy(history = history + change))
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    }
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    // persistent user-view
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    def snapshot(name: String, pending_edits: List[Text.Edit]): Snapshot =
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    {
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      val found_stable = history.undo_list.find(change =>
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        change.is_finished && is_assigned(change.version.get_finished))
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      require(found_stable.isDefined)
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      val stable = found_stable.get
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      val latest = history.undo_list.head
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      // FIXME proper treatment of removed nodes
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      val edits =
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        (pending_edits /: history.undo_list.takeWhile(_ != stable))((edits, change) =>
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            (for ((a, Node.Edits(es)) <- change.edits if a == name) yield es).flatten ::: edits)
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      lazy val reverse_edits = edits.reverse
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      new Snapshot
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      {
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        val version = stable.version.get_finished
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        val node = version.nodes(name)
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        val is_outdated = !(pending_edits.isEmpty && latest == stable)
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        def lookup_command(id: Command_ID): Option[Command] = State.this.lookup_command(id)
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        def state(command: Command): Command.State =
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          try { the_exec_state(the_assignment(version).get_finished.getOrElse(command, fail)) }
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          catch { case _: State.Fail => command.empty_state }
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        def convert(offset: Text.Offset) = (offset /: edits)((i, edit) => edit.convert(i))
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        def revert(offset: Text.Offset) = (offset /: reverse_edits)((i, edit) => edit.revert(i))
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        def convert(range: Text.Range) = (range /: edits)((r, edit) => edit.convert(r))
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        def revert(range: Text.Range) = (range /: reverse_edits)((r, edit) => edit.revert(r))
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        def select_markup[A](range: Text.Range)(result: Markup_Tree.Select[A])
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          : Stream[Text.Info[Option[A]]] =
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        {
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          val former_range = revert(range)
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          for {
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            (command, command_start) <- node.command_range(former_range).toStream
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            Text.Info(r0, x) <- state(command).markup.
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              select((former_range - command_start).restrict(command.range)) {
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                case Text.Info(r0, info)
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                if result.isDefinedAt(Text.Info(convert(r0 + command_start), info)) =>
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                  result(Text.Info(convert(r0 + command_start), info))
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              }
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          } yield Text.Info(convert(r0 + command_start), x)
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        }
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      }
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    }
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  }
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}
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