src/Pure/Thy/thy_syntax.scala
author wenzelm
Fri Apr 06 11:49:08 2012 +0200 (2012-04-06)
changeset 47346 cd3ab7625519
parent 47012 0e246130486b
child 47987 4e9df6ffcc6e
permissions -rw-r--r--
discontinued Document.update_perspective side-entry (cf. 546adfa8a6fc) -- NB: re-assignment is always necessary due to non-monotonic cancel_execution;
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/*  Title:      Pure/Thy/thy_syntax.scala
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    Author:     Makarius
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Superficial theory syntax: tokens and spans.
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*/
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package isabelle
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import scala.collection.mutable
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import scala.annotation.tailrec
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object Thy_Syntax
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{
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  /** nested structure **/
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  object Structure
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  {
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    sealed abstract class Entry { def length: Int }
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    case class Block(val name: String, val body: List[Entry]) extends Entry
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    {
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      val length: Int = (0 /: body)(_ + _.length)
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    }
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    case class Atom(val command: Command) extends Entry
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    {
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      def length: Int = command.length
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    }
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    def parse(syntax: Outer_Syntax, node_name: Document.Node.Name, text: CharSequence): Entry =
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    {
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      /* stack operations */
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      def buffer(): mutable.ListBuffer[Entry] = new mutable.ListBuffer[Entry]
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      var stack: List[(Int, String, mutable.ListBuffer[Entry])] =
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        List((0, "theory " + node_name.theory, buffer()))
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      @tailrec def close(level: Int => Boolean)
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      {
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        stack match {
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          case (lev, name, body) :: (_, _, body2) :: rest if level(lev) =>
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            body2 += Block(name, body.toList)
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            stack = stack.tail
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            close(level)
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          case _ =>
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        }
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      }
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      def result(): Entry =
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      {
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        close(_ => true)
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        val (_, name, body) = stack.head
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        Block(name, body.toList)
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      }
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      def add(command: Command)
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      {
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        syntax.heading_level(command) match {
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          case Some(i) =>
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            close(_ > i)
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            stack = (i + 1, command.source, buffer()) :: stack
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          case None =>
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        }
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        stack.head._3 += Atom(command)
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      }
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      /* result structure */
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      val spans = parse_spans(syntax.scan(text))
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      spans.foreach(span => add(Command(Document.no_id, node_name, span)))
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      result()
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    }
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  }
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  /** parse spans **/
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  def parse_spans(toks: List[Token]): List[List[Token]] =
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  {
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    val result = new mutable.ListBuffer[List[Token]]
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    val span = new mutable.ListBuffer[Token]
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    def flush() { if (!span.isEmpty) { result += span.toList; span.clear } }
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    for (tok <- toks) { if (tok.is_command) flush(); span += tok }
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    flush()
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    result.toList
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  }
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  /** perspective **/
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  def command_perspective(node: Document.Node, perspective: Text.Perspective): Command.Perspective =
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  {
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    if (perspective.is_empty) Command.Perspective.empty
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    else {
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      val result = new mutable.ListBuffer[Command]
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      @tailrec
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      def check_ranges(ranges: List[Text.Range], commands: Stream[(Command, Text.Offset)])
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      {
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        (ranges, commands) match {
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          case (range :: more_ranges, (command, offset) #:: more_commands) =>
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            val command_range = command.range + offset
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            range compare command_range match {
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              case -1 => check_ranges(more_ranges, commands)
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              case 0 =>
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                result += command
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                check_ranges(ranges, more_commands)
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              case 1 => check_ranges(ranges, more_commands)
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            }
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          case _ =>
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        }
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      }
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      check_ranges(perspective.ranges, node.command_range(perspective.range).toStream)
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      Command.Perspective(result.toList)
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    }
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  }
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  /** header edits: structure and outer syntax **/
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  private def header_edits(
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    base_syntax: Outer_Syntax,
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    previous: Document.Version,
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    edits: List[Document.Edit_Text])
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    : (Outer_Syntax, List[Document.Node.Name], Document.Nodes, List[Document.Edit_Command]) =
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  {
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    var rebuild_syntax = previous.is_init
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    var nodes = previous.nodes
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    val doc_edits = new mutable.ListBuffer[Document.Edit_Command]
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    edits foreach {
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      case (name, Document.Node.Header(header)) =>
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        val node = nodes(name)
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        val update_header =
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          (node.header, header) match {
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            case (Exn.Res(deps0), Exn.Res(deps)) => deps0 != deps
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            case _ => true
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          }
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        if (update_header) {
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          val node1 = node.update_header(header)
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          rebuild_syntax = rebuild_syntax || (node.keywords != node1.keywords)
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          nodes += (name -> node1)
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          doc_edits += (name -> Document.Node.Header(header))
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        }
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      case _ =>
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    }
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    val syntax =
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      if (rebuild_syntax)
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        (base_syntax /: nodes.entries)({ case (syn, (_, node)) => (syn /: node.keywords)(_ + _) })
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      else previous.syntax
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    val reparse =
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      if (rebuild_syntax) nodes.descendants(doc_edits.iterator.map(_._1).toList)
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      else Nil
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    (syntax, reparse, nodes, doc_edits.toList)
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  }
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  /** text edits **/
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  /* phase 1: edit individual command source */
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  @tailrec private def edit_text(eds: List[Text.Edit], commands: Linear_Set[Command])
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      : Linear_Set[Command] =
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  {
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    eds match {
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      case e :: es =>
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        Document.Node.command_starts(commands.iterator).find {
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          case (cmd, cmd_start) =>
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            e.can_edit(cmd.source, cmd_start) ||
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              e.is_insert && e.start == cmd_start + cmd.length
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        } match {
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          case Some((cmd, cmd_start)) if e.can_edit(cmd.source, cmd_start) =>
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            val (rest, text) = e.edit(cmd.source, cmd_start)
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            val new_commands = commands.insert_after(Some(cmd), Command.unparsed(text)) - cmd
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            edit_text(rest.toList ::: es, new_commands)
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          case Some((cmd, cmd_start)) =>
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            edit_text(es, commands.insert_after(Some(cmd), Command.unparsed(e.text)))
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          case None =>
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            require(e.is_insert && e.start == 0)
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            edit_text(es, commands.insert_after(None, Command.unparsed(e.text)))
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        }
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      case Nil => commands
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    }
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  }
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  /* phase 2: recover command spans */
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  @tailrec private def recover_spans(
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    syntax: Outer_Syntax,
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    node_name: Document.Node.Name,
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    commands: Linear_Set[Command]): Linear_Set[Command] =
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  {
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    commands.iterator.find(cmd => !cmd.is_defined) match {
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      case Some(first_undefined) =>
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        val first =
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          commands.reverse_iterator(first_undefined).
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            dropWhile(_.newlines == 0).find(_.is_command) getOrElse commands.head
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        val last =
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          commands.iterator(first_undefined).
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            dropWhile(_.newlines == 0).find(_.is_command) getOrElse commands.last
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        val range =
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          commands.iterator(first).takeWhile(_ != last).toList ::: List(last)
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        val spans0 = parse_spans(syntax.scan(range.map(_.source).mkString))
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        val (before_edit, spans1) =
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          if (!spans0.isEmpty && first.is_command && first.span == spans0.head)
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            (Some(first), spans0.tail)
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          else (commands.prev(first), spans0)
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        val (after_edit, spans2) =
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          if (!spans1.isEmpty && last.is_command && last.span == spans1.last)
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            (Some(last), spans1.take(spans1.length - 1))
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          else (commands.next(last), spans1)
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        val inserted = spans2.map(span => Command(Document.new_id(), node_name, span))
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        val new_commands =
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          commands.delete_between(before_edit, after_edit).append_after(before_edit, inserted)
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        recover_spans(syntax, node_name, new_commands)
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      case None => commands
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    }
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  }
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  /* phase 3: full reparsing after syntax change */
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  private def reparse_spans(
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    syntax: Outer_Syntax,
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    node_name: Document.Node.Name,
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    commands: Linear_Set[Command]): Linear_Set[Command] =
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  {
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    val cmds = commands.toList
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    val spans1 = parse_spans(syntax.scan(cmds.map(_.source).mkString))
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    if (cmds.map(_.span) == spans1) commands
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    else Linear_Set(spans1.map(span => Command(Document.new_id(), node_name, span)): _*)
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  }
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  /* main phase */
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  def text_edits(
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      base_syntax: Outer_Syntax,
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      previous: Document.Version,
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      edits: List[Document.Edit_Text])
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    : (List[Document.Edit_Command], Document.Version) =
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  {
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    val (syntax, reparse, nodes0, doc_edits0) = header_edits(base_syntax, previous, edits)
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    val reparse_set = reparse.toSet
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    var nodes = nodes0
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    val doc_edits = new mutable.ListBuffer[Document.Edit_Command]; doc_edits ++= doc_edits0
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    (edits ::: reparse.map((_, Document.Node.Edits(Nil)))) foreach {
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      case (name, Document.Node.Clear()) =>
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        doc_edits += (name -> Document.Node.Clear())
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        nodes += (name -> nodes(name).clear)
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      case (name, Document.Node.Edits(text_edits)) =>
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        val node = nodes(name)
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        val commands0 = node.commands
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        val commands1 = edit_text(text_edits, commands0)
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        val commands2 = recover_spans(syntax, name, commands1)   // FIXME somewhat slow
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        val commands3 =
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          if (reparse_set.contains(name)) reparse_spans(syntax, name, commands2)  // slow
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          else commands2
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        val removed_commands = commands0.iterator.filter(!commands3.contains(_)).toList
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        val inserted_commands = commands3.iterator.filter(!commands0.contains(_)).toList
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        val cmd_edits =
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          removed_commands.reverse.map(cmd => (commands0.prev(cmd), None)) :::
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          inserted_commands.map(cmd => (commands3.prev(cmd), Some(cmd)))
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        doc_edits += (name -> Document.Node.Edits(cmd_edits))
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        nodes += (name -> node.update_commands(commands3))
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      case (name, Document.Node.Header(_)) =>
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      case (name, Document.Node.Perspective(text_perspective)) =>
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        val node = nodes(name)
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        val perspective = command_perspective(node, text_perspective)
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        if (!(node.perspective same perspective)) {
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          doc_edits += (name -> Document.Node.Perspective(perspective))
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          nodes += (name -> node.update_perspective(perspective))
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        }
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    }
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    (doc_edits.toList, Document.Version.make(syntax, nodes))
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  }
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}