UIRTextReader.scala 26.3 KB
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package uvm.ir.textinput

import org.antlr.v4.runtime._
import org.antlr.v4.runtime.tree.TerminalNode
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import uvm._
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import uvm.comminsts.CommInsts
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import uvm.ir.textinput.gen.UIRParser._
import uvm.ir.textinput.gen._
import uvm.ssavariables._
import uvm.types._
import scala.collection.JavaConversions._
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import scala.collection.mutable.ArrayBuffer
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import scala.collection.immutable.Stream
import java.io.StringWriter
import java.nio.CharBuffer
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import uvm.utils.AntlrHelpers._
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class UIRTextReader(val idFactory: IDFactory) {
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  import UIRTextReader._
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  import uvm.ir.textinput.Later.Laterable
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  def read(ir: String, globalBundle: GlobalBundle): TrantientBundle = {
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    val input = new ANTLRInputStream(ir)
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    read(ir, input, globalBundle)
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  }

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  def read(ir: java.io.Reader, globalBundle: GlobalBundle): TrantientBundle = {
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    val sb = new StringBuilder()
    val cb = new Array[Char](4096)

    var finished = false
    while (!finished) {
      val actualRead = ir.read(cb, 0, 4096)
      if (actualRead > 0) {
        sb.appendAll(cb, 0, actualRead)
      } else {
        finished = true
      }
    }

    read(sb.toString(), globalBundle)
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  }

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  def read(source: String, ais: ANTLRInputStream, globalBundle: GlobalBundle): TrantientBundle = {
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    val ea = new AccumulativeAntlrErrorListener(source)

    val lexer = new UIRLexer(ais)
    lexer.removeErrorListeners()
    lexer.addErrorListener(ea)
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    val tokens = new CommonTokenStream(lexer)
    val parser = new UIRParser(tokens)
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    parser.removeErrorListeners()
    parser.addErrorListener(ea)
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    val ast = parser.ir()
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    if (ea.hasError) {
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      throw new TextIRParsingException("Syntax error:\n" + ea.getMessages)
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    }
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    read(ast, globalBundle)
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  }

  implicit def terminalToString(tn: TerminalNode): String = tn.getText()
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  implicit def nameToString(name: NameContext): String = name.getText()
  implicit def tokenToString(tok: Token): String = tok.getText()

  val IntRe = """([+-]?)(0x|0|)([0-9a-fA-F]*)""".r
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  implicit def IntLiteralToBigInt(il: IntLiteralContext): BigInt = {
    val txt = il.getText()
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    txt match {
      case IntRe(sign, prefix, nums) => {
        val neg = sign match {
          case "+" => false
          case "-" => true
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          case "" => false
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        }
        val abs = prefix match {
          case "0x" => BigInt(nums, 16)
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          case "0" => if (nums == "") BigInt(0) else BigInt(nums, 8)
          case "" => BigInt(nums, 10)
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        }
        return if (neg) -abs else abs
      }
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    }
  }

  implicit def floatLiteralToFloat(fl: FloatLiteralContext): Float = fl match {
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    case num: FloatNumberContext => num.FP_NUM.getText.toFloat
    case fi: FloatInfContext => {
      if (fi.getText.startsWith("-"))
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        java.lang.Float.NEGATIVE_INFINITY
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      else java.lang.Float.POSITIVE_INFINITY
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    }
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    case _: FloatNanContext => java.lang.Float.NaN
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    case bits: FloatBitsContext => java.lang.Float.intBitsToFloat(bits.intLiteral().intValue())
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  }
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  implicit def doubleLiteralToDouble(dl: DoubleLiteralContext): Double = dl match {
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    case num: DoubleNumberContext => num.FP_NUM.getText.toDouble
    case fi: DoubleInfContext => {
      if (fi.getText.startsWith("-"))
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        java.lang.Double.NEGATIVE_INFINITY
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      else java.lang.Double.POSITIVE_INFINITY
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    }
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    case _: DoubleNanContext => java.lang.Double.NaN
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    case bits: DoubleBitsContext => java.lang.Double.longBitsToDouble(bits.intLiteral().longValue())
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  }

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  def cascadeLookup[T <: Identified](name: String, ns1: Namespace[T], ns2: Namespace[T]): T =
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    ns1.get(name).getOrElse(ns2(name))
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  // Printing context information (line, column, near some token)


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  def catchIn[T](ctx: ParserRuleContext, s: String)(func: => T): T = try {
    func
  } catch {
    case e: Exception => throw new TextIRParsingException(inCtx(ctx, s), e)
  }

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  def read(ir: IrContext, globalBundle: GlobalBundle): TrantientBundle = {
    val bundle = new TrantientBundle()
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    // Resolve global entities. (If any resXxxx is not present, that's because it is simply not currently used)
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    implicit def resTy(ctx: TypeContext): Type = catchIn(ctx, "Unable to resolve type") { resTyByName(ctx.getText) }
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    def resTyByName(name: String): Type = cascadeLookup(name, bundle.typeNs, globalBundle.typeNs)
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    implicit def resSig(ctx: FuncSigContext): FuncSig = catchIn(ctx, "Unable to resolve sig") { resSigByName(ctx.getText) }
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    def resSigByName(name: String): FuncSig = cascadeLookup(name, bundle.funcSigNs, globalBundle.funcSigNs)
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    implicit def resConst(ctx: ConstantContext): Constant = catchIn(ctx, "Unable to resolve const") { resConstByName(ctx.getText) }
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    def resConstByName(name: String): Constant = cascadeLookup(name, bundle.constantNs, globalBundle.constantNs)
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    def resGlobalVar(name: String): GlobalVariable = cascadeLookup(name, bundle.globalVarNs, globalBundle.globalVarNs)
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    def resFunc(name: String): Function = cascadeLookup(name, bundle.funcNs, globalBundle.funcNs)

    implicit def convFlag(f: FlagContext): Flag = Flag(f.FLAG().getText)
    implicit def convFlagList(a: FlagListContext): Seq[Flag] = a.flag().map(convFlag)
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    // Resolve global entities from special structures.
    implicit def resTypeList(a: TypeListContext): Seq[Type] = a.`type`.map(resTy)
    implicit def resFuncSigList(a: FuncSigListContext): Seq[FuncSig] = a.funcSig().map(resSig)

    // Resolve special structures

    implicit def resOrd(ord: MemordContext): MemoryOrder.Value = {
      if (ord == null) {
        MemoryOrder.NOT_ATOMIC
      } else {
        MemoryOrder.withName(ord.getText)
      }
    }

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    // Add entities to namespaces.

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    def addTy(obj: Type): Unit = {
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      bundle.typeNs.add(obj)
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    }
    def addSig(obj: FuncSig): Unit = {
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      bundle.funcSigNs.add(obj)
    }
    def addFuncVer(obj: FuncVer): Unit = {
      bundle.funcVerNs.add(obj)
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    }
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    def addConst(obj: Constant): Unit = {
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      bundle.constantNs.add(obj)
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    }
    def addGlobalCell(obj: GlobalCell): Unit = {
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      bundle.globalCellNs.add(obj)
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    }
    def addFunc(obj: Function): Unit = {
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      bundle.funcNs.add(obj)
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    }
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    def addExpFunc(obj: ExposedFunc): Unit = {
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      bundle.expFuncNs.add(obj)
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    }

    // Resolve types, with parse-time checking.

    def needType[E <: Type](tc: TypeContext, expectedType: Class[E], n: String): E = {
      val t = resTy(tc)
      if (!(expectedType.isAssignableFrom(t.getClass))) {
        throw new UnexpectedTypeException(inCtx(tc, "Expected %s, actually %s.".format(n, t)))
      }
      t.asInstanceOf[E]
    }

    def needInt[T <: Type](tc: TypeContext) = needType(tc, classOf[TypeInt], "int")
    def needStruct[T <: Type](tc: TypeContext) = needType(tc, classOf[TypeStruct], "struct")
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    def needAbsStruct[T <: Type](tc: TypeContext) = needType(tc, classOf[AbstractStructType], "struct or hybrid")
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    def needArray[T <: Type](tc: TypeContext) = needType(tc, classOf[TypeArray], "array")
    def needVector[T <: Type](tc: TypeContext) = needType(tc, classOf[TypeVector], "vector")
    def needHybrid[T <: Type](tc: TypeContext) = needType(tc, classOf[TypeHybrid], "hybrid")
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    def needSeq[T <: Type](tc: TypeContext) = needType(tc, classOf[AbstractSeqType], "array or vector")
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    def needConstInt64(ctx: ParserRuleContext, name: String): ConstInt = {
      val c = resConstByName(name)
      if (!c.isInstanceOf[ConstInt]) {
        throw new UnexpectedTypeException(inCtx(ctx, "Expected 64-bit integer constant, actually %s.".format(c.getClass)))
      }
      c.asInstanceOf[ConstInt]
    }

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    // Make types and sigs

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    val phase1 = new Later() // Resolve inter-references between types and sigs
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    def mkType(tc: TypeConstructorContext): Type = {
      val ty = tc match {
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        case t: TypeIntContext => TypeInt(t.length.intValue())
        case t: TypeFloatContext => TypeFloat()
        case t: TypeDoubleContext => TypeDouble()
        case t: TypeRefContext => TypeRef(null).later(phase1) { _.ty = t.ty }
        case t: TypeIRefContext => TypeIRef(null).later(phase1) { _.ty = t.ty }
        case t: TypeWeakRefContext => TypeWeakRef(null).later(phase1) { _.ty = t.ty }
        case t: TypeStructContext => TypeStruct(null).later(phase1) { _.fieldTys = t.fieldTys.map(resTy) }
        case t: TypeArrayContext => TypeArray(null, t.length.longValue()).later(phase1) { _.elemTy = t.ty }
        case t: TypeHybridContext => TypeHybrid(null, null).later(phase1) { tt => tt.fieldTys = t.fieldTys.map(resTy); tt.varTy = t.varTy }
        case t: TypeVoidContext => TypeVoid()
        case t: TypeFuncRefContext => TypeFuncRef(null).later(phase1) { _.sig = t.funcSig() }
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        case t: TypeThreadRefContext => TypeThreadRef()
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        case t: TypeStackRefContext => TypeStackRef()
        case t: TypeTagRef64Context => TypeTagRef64()
        case t: TypeVectorContext => TypeVector(null, t.length.longValue()).later(phase1) { _.elemTy = t.ty }
        case t: TypeUPtrContext => TypeUPtr(null).later(phase1) { _.ty = t.ty }
        case t: TypeUFuncPtrContext => TypeUFuncPtr(null).later(phase1) { _.sig = t.funcSig }
        case _ => throw new TextIRParsingException("foo")
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      }
      return ty
    }

    def mkSig(fsc: FuncSigConstructorContext): FuncSig = {
      val sig = FuncSig(null, null).later(phase1) { sig =>
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        sig.retTys = for (t <- fsc.retTys) yield resTy(t)
        sig.paramTys = for (t <- fsc.paramTys) yield resTy(t)
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      }
      return sig
    }

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    ir.topLevelDef.map(_.getChild(0)).foreach {
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      case td: TypeDefContext => {
        val ty = mkType(td.typeConstructor)
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        ty.id = idFactory.getID()
        ty.name = Some(td.nam)
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        addTy(ty)
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      }
      case fsd: FuncSigDefContext => {
        val sig = mkSig(fsd.funcSigConstructor)
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        sig.id = idFactory.getID()
        sig.name = Some(fsd.nam)
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        addSig(sig)
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      }
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      case _ =>
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    }

    phase1.doAll()

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    val phase2 = new Later() // Resolve inter-references from constants to other global variables
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    def mkConst(t: Type, c: ConstConstructorContext): Constant = {
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      val con = c match {
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        case cc: CtorIntContext => ConstInt(t, cc.intLiteral)
        case cc: CtorFloatContext => ConstFloat(t, cc.floatLiteral)
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        case cc: CtorDoubleContext => ConstDouble(t, cc.doubleLiteral)
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        case cc: CtorListContext => ConstSeq(t, null).later(phase2) {
          _.elems = for (gn <- cc.GLOBAL_NAME()) yield resGlobalVar(gn)
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        }
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        case _: CtorNullContext => ConstNull(t)
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      }
      return con
    }

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    def mkGlobalCell(t: Type): GlobalCell = GlobalCell(t)
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    def mkFunc(sig: FuncSig): Function = {
      val func = new Function()
      func.sig = sig
      return func
    }

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    def mkExpo(c: FuncExpDefContext): ExposedFunc = {
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      val efun = ExposedFunc(null, c.callConv, null).later(phase2) { ee =>
        ee.func = resFunc(c.funcName)
        ee.cookie = needConstInt64(c, c.cookie)
      }
      return efun
    }

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    def findOldFunc(name: String): Option[Function] = {
      globalBundle.funcNs.get(name)
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    }

    def declFunc(n: String, s: FuncSigContext): Function = {
      val sig = resSig(s)
      val func = mkFunc(sig)
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      func.id = idFactory.getID()
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      func.name = Some(n)
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      addFunc(func)
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      func
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    }

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    val funcDefs = new ArrayBuffer[(Function, FuncDefContext)]
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    ir.topLevelDef().map(_.getChild(0)).foreach {
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      case cdctx: ConstDefContext => {
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        val ty = resTy(cdctx.ty)
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        val con = mkConst(ty, cdctx.constConstructor)
        con.id = idFactory.getID()
        con.name = Some(cdctx.nam)
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        addConst(con)
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      }
      case gdctx: GlobalDefContext => {
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        val ty = resTy(gdctx.ty)
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        val gc = mkGlobalCell(ty)
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        gc.id = idFactory.getID()
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        gc.name = Some(gdctx.nam)
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        addGlobalCell(gc)
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      }
      case fdecl: FuncDeclContext => {
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        val name = tokenToString(fdecl.nam)
        findOldFunc(name) match {
          case Some(oldFunc) =>
            throw new TextIRParsingException(inCtx(fdecl, "Function %s already declared in previous bundles. Old func: %s".format(name, oldFunc.repr)))
          case None => declFunc(name, fdecl.funcSig)
        }
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      }
      case fdef: FuncDefContext => {
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        val func = findOldFunc(fdef.nam).getOrElse(declFunc(fdef.nam, fdef.funcSig))
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        //bundle.defFuncNs.add(func)
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        funcDefs += ((func, fdef))
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      }
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      case edef: FuncExpDefContext => {
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        val efun = mkExpo(edef)
        efun.id = idFactory.getID()
        efun.name = Some(edef.nam)
        addExpFunc(efun)
      }
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      case _ => {}
    }

    phase2.doAll()

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    def defFunc(func: Function, fDefCtx: FuncDefContext) {
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      val ver = new FuncVer()
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      val verName = globalize(fDefCtx.ver, func.name.get)
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      ver.id = idFactory.getID()
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      ver.name = Some(verName)
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      addFuncVer(ver)

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      ver.func = func
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      //func.versions = ver :: func.versions  // Don't override here. Let the MicroVM redefine functions.
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      ver.bbNs = bundle.allNs.makeSubSpace[BasicBlock]
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      def globalizeBB(name: String): String = globalize(name, verName)
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      // Resolve function version local entities

      implicit def resBB(ctx: BbContext): BasicBlock = catchIn(ctx, "Unable to resolve basic block") {
        resBBByName(ctx.name.getText)
      }
      def resBBByName(name: String): BasicBlock = {
        val globalName = globalize(name, verName)
        ver.bbNs(globalName)
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      }

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      val phase4 = new Later() // Resolve references from instructions to other variables (global or local) and basic blocks
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      def makeBB(bbCtx: BasicBlockContext): BasicBlock = {
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        val label = bbCtx.label()
        val bbName = globalize(label.name(), verName)
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        val bb = new BasicBlock()
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        bb.id = idFactory.getID()
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        bb.name = Some(bbName)
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        ver.bbNs.add(bb)
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        bb.localVarNs = bundle.allNs.makeSubSpace[LocalVariable]
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        bb.localInstNs = bundle.allNs.makeSubSpace[Instruction]
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        def mkNorParam(ty: Type, name: String): NorParam = {
          val param = NorParam(ty)
          param.id = idFactory.getID()
          param.name = Some(globalize(name, bbName))
          param
        }
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        def mkExcParam(name: String): ExcParam = {
          val param = ExcParam()
          param.id = idFactory.getID()
          param.name = Some(globalize(name, bbName))
          param
        }
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        bb.norParams = label.bbParam.map(p => mkNorParam(p.`type`(), p.name()))
        bb.excParam = Option(label.excParam).map(p => mkExcParam(p.name()))
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        bb.norParams.foreach(bb.localVarNs.add)
        bb.excParam.foreach(bb.localVarNs.add)
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        // Resolve basic block local entities (variables)
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        def resLocalVar(ctx: ValueContext): LocalVariable = catchIn(ctx, "Unable to resolve local variable") {
          resLocalVarByName(ctx.name)
        }
        def resLocalVarByName(name: String): LocalVariable = {
          val globalName = globalize(name, bbName)
          bb.localVarNs(globalName)
        }
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        implicit def resVar(ctx: ValueContext): SSAVariable = catchIn(ctx, "Unable to resolve variable") {
          resVarByName(ctx.name)
        }
        def resVarByName(name: String): SSAVariable = {
          val globalName = globalize(name, bbName)
          bb.localVarNs.get(globalName).getOrElse {
            cascadeLookup(globalName, bundle.globalVarNs, globalBundle.globalVarNs)
          }
        }
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        implicit def resArgList(a: ArgListContext): Seq[SSAVariable] = a.value.map(resVar)
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        implicit def resKA(ka: KeepAliveClauseContext): Seq[LocalVariable] = ka.value.map(resLocalVar)
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        def resFuncCallBody(fcb: FuncCallBodyContext): (FuncSig, SSAVariable, Seq[SSAVariable]) =
          (fcb.funcSig, fcb.callee, fcb.argList)
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        def asgnFuncCallBody(cl: CallLike, fcb: FuncCallBodyContext): Unit = {
          val (sig, callee, argList) = resFuncCallBody(fcb)
          cl.sig = sig; cl.callee = callee; cl.argList = argList
        }
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        implicit def resDestClause(dc: DestClauseContext): DestClause = {
          DestClause(dc.bb, dc.argList())
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        }

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        implicit def resExcClause(ec: ExcClauseContext): Option[ExcClause] =
          if (ec.nor == null) {
            None
          } else {
            Some(ExcClause(ec.nor, ec.exc))
          }
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        implicit def resNewStackClause(nsc: NewStackClauseContext): NewStackAction = {
          nsc match {
            case a: NewStackPassValueContext => PassValues(a.typeList(), a.argList())
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            case a: NewStackThrowExcContext => ThrowExc(a.exc)
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          }
        }

        implicit def resCurStackClause(csc: CurStackClauseContext): CurStackAction = {
          csc match {
            case a: CurStackRetWithContext => RetWith(a.typeList())
            case a: CurStackKillOldContext => KillOld()
          }
        }

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        // Make instruction

        def mkInst(bb: BasicBlock, instDef: InstContext): Instruction = {

          val inst: Instruction = instDef.instBody match {
            case ii: InstBinOpContext =>
              InstBinOp(BinOptr.withName(ii.binop.getText), ii.`type`, null, null, null).later(phase4) { i =>
                i.op1 = ii.op1; i.op2 = ii.op2; i.excClause = ii.excClause
              }
            case ii: InstCmpContext =>
              InstCmp(CmpOptr.withName(ii.cmpop.getText), ii.`type`, null, null).later(phase4) { i =>
                i.op1 = ii.op1; i.op2 = ii.op2
              }
            case ii: InstConversionContext =>
              InstConv(ConvOptr.withName(ii.convop.getText), ii.fromTy, ii.toTy, null).later(phase4) { i =>
                i.opnd = ii.opnd
              }
            case ii: InstSelectContext =>
              InstSelect(ii.condTy, ii.resTy, null, null, null).later(phase4) { i =>
                i.cond = ii.cond; i.ifTrue = ii.ifTrue; i.ifFalse = ii.ifFalse
              }
            case ii: InstBranchContext =>
              InstBranch(null).later(phase4) { i =>
                i.dest = ii.dest
              }
            case ii: InstBranch2Context =>
              InstBranch2(null, null, null).later(phase4) { i =>
                i.cond = ii.cond; i.ifTrue = ii.ifTrue; i.ifFalse = ii.ifFalse
              }
            case ii: InstSwitchContext =>
              InstSwitch(ii.`type`, null, null, null).later(phase4) { i =>
                i.opnd = ii.opnd; i.defDest = ii.defDest
                i.cases = for ((v, d) <- ii.caseVal.zip(ii.caseDest)) yield (resVar(v), resDestClause(d))
              }
            case ii: InstCallContext =>
              InstCall(null, null, null, null, null).later(phase4) { i =>
                asgnFuncCallBody(i, ii.funcCallBody)
                i.excClause = ii.excClause; i.keepAlives = ii.keepAliveClause
              }
            case ii: InstTailCallContext =>
              InstTailCall(null, null, null).later(phase4) { i =>
                asgnFuncCallBody(i, ii.funcCallBody)
              }
            case ii: InstRetContext =>
              InstRet(ver, null).later(phase4) { i =>
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                i.retVals = ii.retVals.vals.map(resVar)
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              }
            case ii: InstThrowContext =>
              InstThrow(null).later(phase4) { i =>
                i.excVal = ii.exc
              }
            case ii: InstExtractValueContext =>
              InstExtractValue(needStruct(ii.`type`), ii.intLiteral.intValue, null).later(phase4) { i =>
                i.opnd = ii.opnd
              }
            case ii: InstInsertValueContext =>
              InstInsertValue(needStruct(ii.`type`), ii.intLiteral.intValue, null, null).later(phase4) { i =>
                i.opnd = ii.opnd; i.newVal = ii.newVal
              }
            case ii: InstExtractElementContext =>
              InstExtractElement(needSeq(ii.seqTy), needInt(ii.indTy), null, null).later(phase4) { i =>
                i.opnd = ii.opnd; i.index = ii.index
              }
            case ii: InstInsertElementContext =>
              InstInsertElement(needSeq(ii.seqTy), needInt(ii.indTy), null, null, null).later(phase4) { i =>
                i.opnd = ii.opnd; i.index = ii.index; i.newVal = ii.newVal
              }
            case ii: InstShuffleVectorContext =>
              InstShuffleVector(needVector(ii.vecTy), needVector(ii.maskTy), null, null, null).later(phase4) { i =>
                i.vec1 = ii.vec1; i.vec2 = ii.vec2; i.mask = ii.mask
              }
            case ii: InstNewContext =>
              InstNew(ii.allocTy, null).later(phase4) { i =>
                i.excClause = ii.excClause
              }
            case ii: InstNewHybridContext =>
              InstNewHybrid(needHybrid(ii.allocTy), needInt(ii.lenTy), null, null).later(phase4) { i =>
                i.length = ii.length; i.excClause = ii.excClause
              }
            case ii: InstAllocaContext =>
              InstAlloca(ii.allocTy, null).later(phase4) { i =>
                i.excClause = ii.excClause
              }
            case ii: InstAllocaHybridContext =>
              InstAllocaHybrid(needHybrid(ii.allocTy), needInt(ii.lenTy), null, null).later(phase4) { i =>
                i.length = ii.length; i.excClause = ii.excClause
              }
            case ii: InstGetIRefContext =>
              InstGetIRef(ii.refTy, null).later(phase4) { i =>
                i.opnd = ii.opnd
              }
            case ii: InstGetFieldIRefContext =>
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              InstGetFieldIRef(ii.ptr != null, needAbsStruct(ii.refTy), ii.intLiteral.intValue, null).later(phase4) { i =>
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                i.opnd = ii.opnd
              }
            case ii: InstGetElemIRefContext =>
              InstGetElemIRef(ii.ptr != null, needSeq(ii.refTy), needInt(ii.indTy), null, null).later(phase4) { i =>
                i.opnd = ii.opnd; i.index = ii.index
              }
            case ii: InstShiftIRefContext =>
              InstShiftIRef(ii.ptr != null, ii.refTy, needInt(ii.offTy), null, null).later(phase4) { i =>
                i.opnd = ii.opnd; i.offset = ii.offset
              }
            case ii: InstGetVarPartIRefContext =>
              InstGetVarPartIRef(ii.ptr != null, needHybrid(ii.refTy), null).later(phase4) { i =>
                i.opnd = ii.opnd
              }
            case ii: InstLoadContext =>
              InstLoad(ii.ptr != null, ii.memord, ii.`type`, null, null).later(phase4) { i =>
                i.loc = ii.loc
                i.excClause = ii.excClause
              }
            case ii: InstStoreContext =>
              InstStore(ii.ptr != null, ii.memord, ii.`type`, null, null, null).later(phase4) { i =>
                i.loc = ii.loc; i.newVal = ii.newVal
                i.excClause = ii.excClause
              }
            case ii: InstCmpXchgContext =>
              InstCmpXchg(ii.ptr != null, ii.isWeak != null, ii.ordSucc, ii.ordFail, ii.`type`, null, null, null, null).later(phase4) { i =>
                i.loc = ii.loc; i.expected = ii.expected; i.desired = ii.desired
                i.excClause = ii.excClause
              }
            case ii: InstAtomicRMWContext =>
              InstAtomicRMW(ii.ptr != null, ii.memord, AtomicRMWOptr.withName(ii.atomicrmwop.getText), ii.`type`, null, null, null).later(phase4) { i =>
                i.loc = ii.loc; i.opnd = ii.opnd
                i.excClause = ii.excClause
              }
            case ii: InstFenceContext =>
              InstFence(ii.memord)
            case ii: InstTrapContext =>
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              InstTrap(ii.typeList(), null, null).later(phase4) { i =>
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                i.excClause = ii.excClause; i.keepAlives = ii.keepAliveClause
              }
            case ii: InstWatchPointContext =>
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              InstWatchPoint(ii.wpid.intValue(), ii.typeList(), null, null, null, null).later(phase4) { i =>
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                i.dis = ii.dis; i.ena = ii.ena; i.exc = Option(ii.wpExc).map(resDestClause); i.keepAlives = ii.keepAliveClause
              }
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            case ii: InstWPBranchContext =>
              InstWPBranch(ii.wpid.intValue(), null, null).later(phase4) { i =>
                i.dis = ii.dis; i.ena = ii.ena
              }
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            case ii: InstCCallContext =>
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              InstCCall(ii.callConv, ii.funcTy, ii.funcSig, null, null, null, null).later(phase4) { i =>
                i.callee = ii.callee; i.argList = ii.argList; i.excClause = ii.excClause; i.keepAlives = ii.keepAliveClause
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              }
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            case ii: InstNewThreadContext =>
              InstNewThread(null, null, null).later(phase4) { i =>
                i.stack = ii.stack
                i.newStackAction = ii.newStackClause
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                i.excClause = ii.excClause
              }
            case ii: InstSwapStackContext =>
              InstSwapStack(null, null, null, null, null).later(phase4) { i =>
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                i.swappee = ii.swappee
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                i.curStackAction = ii.curStackClause
                i.newStackAction = ii.newStackClause
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                i.excClause = ii.excClause; i.keepAlives = ii.keepAliveClause
              }
            case ii: InstCommInstContext =>
              InstCommInst(CommInsts(ii.nam), Option(ii.flagList()).map(convFlagList).getOrElse(Seq()), null, null, null, null, null).later(phase4) { i =>
                i.typeList = Option(ii.typeList).map(resTypeList).getOrElse(Seq())
                i.funcSigList = Option(ii.funcSigList).map(resFuncSigList).getOrElse(Seq())
                i.argList = Option(ii.argList).map(resArgList).getOrElse(Seq())
                i.excClause = ii.excClause; i.keepAlives = ii.keepAliveClause
              }
          }
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          inst.id = idFactory.getID()
          inst.name = Option(instDef.name).map(n => globalize(n.getText, bbName))
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          bb.localInstNs.add(inst)

          val instRess: Seq[InstResult] = Option(instDef.instResults) match {
            case None => Seq()
            case Some(r) => for ((instResDef, index) <- r.results.zipWithIndex) yield {
              val resName = globalize(instResDef.getText, bbName)

              val instRes = InstResult(inst, index)
              instRes.id = idFactory.getID()
              instRes.name = Some(resName)
              bb.localVarNs.add(instRes)
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              instRes
            }
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          }

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          inst.results = instRess
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          return inst
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        }

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        bb.insts = bbCtx.inst.map(i => mkInst(bb, i))
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        return bb
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      }

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      val bbs = fDefCtx.funcBody.basicBlock().map(makeBB)
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      ver.bbs = bbs
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      ver.entry = bbs.head
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      phase4.doAll()
    }

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    for ((func, fDefCtx) <- funcDefs) {
      defFunc(func, fDefCtx)
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    }

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    return bundle
  }
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}

object UIRTextReader {
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  def globalize(name: String, parentName: String): String = {
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    val sigil = name.charAt(0)
    sigil match {
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      case '@' => name
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      case '%' => parentName + "." + name.substring(1)
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      case _ => throw new UvmException("Illegal name '%s'. Name must begin with either '@' or '%%'".format(name))
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    }
  }
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}