Utils.scala 3.57 KB
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package de.tum.workflows

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import de.tum.workflows.blocks._
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import de.tum.workflows.foltl.FOLTL._
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import java.io.File
import java.io.PrintWriter
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import de.tum.workflows.toz3.InvariantChecker
import de.tum.workflows.toz3.InvProperties
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import com.typesafe.scalalogging.LazyLogging
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object Utils extends LazyLogging {
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  val RESULTSFOLDER = "results"
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src  
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  val DEBUG_MODE = true
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  def mkString[T](string: Iterable[T], start: String, mid: String, end: String) = {
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    if (string.isEmpty) "" else string.mkString(start, mid, end)
  }
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  def collectChoices(w: Block): List[Fun] = {
    w match {
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      case Loop(steps)                     => steps.flatMap(collectChoices)
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      case ForallMayBlock(agents, pred, _) => List(Fun(pred, agents))
      case b: ForallBlock                  => List()
      case NondetChoice(l, r)              => l.flatMap(collectChoices) ++ r.flatMap(collectChoices)
    }
  }

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  def allchoices(w: Workflow) = {
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    w.steps flatMap collectChoices toSet
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  }
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  def indentLines(s: String) = {
    s.lines.map("  " + _).mkString("\n")
  }
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  def time[R](block: => R) = {
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    val t0 = System.nanoTime()
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    val result = block // call-by-name
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    val t1 = System.nanoTime()
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    ((t1 - t0) / 1000000, result)
  }

  def clear() {
    def recclear(folder: File) {
      for (fol <- folder.listFiles() if fol.isDirectory()) {
        recclear(fol)
      }

      folder.listFiles().foreach(_.delete())
    }
    val fol = new File(RESULTSFOLDER)
    fol.mkdirs()
    recclear(fol)
  }
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  def write(dir: String, filename:String, prop: String) {
    val file = new File(s"$RESULTSFOLDER/$dir/$filename")
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    if (file.exists()) {
      file.delete()
    }
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    file.getParentFile.mkdirs()
    val writer = new PrintWriter(file)
    writer.print(prop)
    writer.close()
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    logger.info(s"Written $file")
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  }
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  def check(name:String, desc:String, inv:Formula, spec:Spec, properties:InvProperties) = {
    val model = if (properties.stubborn) "stubborn" else "causal"
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    val basename = name.split("/").last
		val filenames = s"${basename}_$model${if (desc.isEmpty()) "" else s"_$desc"}"

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    // do not blow up the formula with auxilliary elimination
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    val (res, graph, labelling, provens, dot, time) =
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      InvariantChecker.checkInvariantFPLabelling(spec, inv, properties)
    for ((s, i) <- dot.zipWithIndex) {
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      Utils.write(name,s"${filenames}_$i.dot", s)
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    }
    val strengthenings = for (List(a, b) <- labelling.sliding(2) if (a != b)) yield {
      true
    }
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    val elabdot = Encoding.toDot(graph, Some(properties, spec))(Map(), Set())
    Utils.write(name, s"${filenames}_elaborated.dot", elabdot)

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    val labels = (for ((node, inv) <- labelling.last) yield {
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      s"Node ${node}:\n${inv.pretty}\n"
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    }).mkString("\n")
    
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    Utils.write(name, s"$filenames.invariants", labels)
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    val wfsize = graph.edges.size - 1
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    val invsizes = labelling.last.map(_._2.opsize)
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    val maxsize = invsizes.max
    val avgsize = invsizes.sum / invsizes.size
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    Utils.write(name, s"$filenames.metrics",
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        s"""Name: $name
         Description: $desc
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         Invariant:
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${inv.pretty.lines.map(s => "            " + s).mkString("\n")}
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         Model: $model
         Result: ${if (!res) "not " else ""}inductive
         WF size: $wfsize
         Time: $time ms
         Proof steps: ${dot.size}
         Strengthenings: ${strengthenings.size}
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         Largest Inv: $maxsize
         Average Inv: $avgsize""")
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    res
  }
  
  def check(name:String, desc:String, inv:Formula, properties:InvProperties):Boolean = {
    val spec = ExampleWorkflows.parseExample(name).get
    check(name, desc, inv, spec, properties)
  }
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}