got rid of separate str_s datatype

This commit is contained in:
Irmen de Jong 2020-02-07 20:47:38 +01:00
parent a01a9e76f9
commit b8816a0e2f
26 changed files with 721 additions and 743 deletions

16
.idea/misc.xml generated
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@ -1,5 +1,21 @@
<?xml version="1.0" encoding="UTF-8"?>
<project version="4">
<component name="ANTLRGenerationPreferences">
<option name="perGrammarGenerationSettings">
<list>
<PerGrammarGenerationSettings>
<option name="fileName" value="$PROJECT_DIR$/parser/antlr/prog8.g4" />
<option name="autoGen" value="true" />
<option name="outputDir" value="$PROJECT_DIR$/parser/src/prog8/parser" />
<option name="libDir" value="" />
<option name="encoding" value="" />
<option name="pkg" value="" />
<option name="language" value="" />
<option name="generateListener" value="false" />
</PerGrammarGenerationSettings>
</list>
</option>
</component>
<component name="ProjectRootManager" version="2" languageLevel="JDK_1_8" default="false" project-jdk-name="Kotlin SDK" project-jdk-type="KotlinSDK">
<output url="file://$PROJECT_DIR$/out" />
</component>

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@ -3,7 +3,6 @@ package prog8.ast
import prog8.ast.antlr.escape
import prog8.ast.base.DataType
import prog8.ast.base.NumericDatatypes
import prog8.ast.base.StringDatatypes
import prog8.ast.base.VarDeclType
import prog8.ast.expressions.*
import prog8.ast.processing.IAstVisitor
@ -79,7 +78,7 @@ class AstToSourceCode(val output: (text: String) -> Unit, val program: Program):
private fun datatypeString(dt: DataType): String {
return when(dt) {
in NumericDatatypes -> dt.toString().toLowerCase()
in StringDatatypes -> dt.toString().toLowerCase()
DataType.STR -> dt.toString().toLowerCase()
DataType.ARRAY_UB -> "ubyte["
DataType.ARRAY_B -> "byte["
DataType.ARRAY_UW -> "uword["

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@ -13,7 +13,6 @@ enum class DataType {
WORD, // pass by value
FLOAT, // pass by value
STR, // pass by reference
STR_S, // pass by reference
ARRAY_UB, // pass by reference
ARRAY_B, // pass by reference
ARRAY_UW, // pass by reference
@ -32,8 +31,7 @@ enum class DataType {
UWORD -> targetType in setOf(UWORD, FLOAT)
WORD -> targetType in setOf(WORD, FLOAT)
FLOAT -> targetType == FLOAT
STR -> targetType == STR || targetType==STR_S
STR_S -> targetType == STR || targetType==STR_S
STR -> targetType == STR
in ArrayDatatypes -> targetType == this
else -> false
}
@ -113,10 +111,9 @@ val ByteDatatypes = setOf(DataType.UBYTE, DataType.BYTE)
val WordDatatypes = setOf(DataType.UWORD, DataType.WORD)
val IntegerDatatypes = setOf(DataType.UBYTE, DataType.BYTE, DataType.UWORD, DataType.WORD)
val NumericDatatypes = setOf(DataType.UBYTE, DataType.BYTE, DataType.UWORD, DataType.WORD, DataType.FLOAT)
val StringDatatypes = setOf(DataType.STR, DataType.STR_S)
val ArrayDatatypes = setOf(DataType.ARRAY_UB, DataType.ARRAY_B, DataType.ARRAY_UW, DataType.ARRAY_W, DataType.ARRAY_F)
val IterableDatatypes = setOf(
DataType.STR, DataType.STR_S,
DataType.STR,
DataType.ARRAY_UB, DataType.ARRAY_B,
DataType.ARRAY_UW, DataType.ARRAY_W,
DataType.ARRAY_F)
@ -124,7 +121,6 @@ val PassByValueDatatypes = NumericDatatypes
val PassByReferenceDatatypes = IterableDatatypes.plus(DataType.STRUCT)
val ArrayElementTypes = mapOf(
DataType.STR to DataType.UBYTE,
DataType.STR_S to DataType.UBYTE,
DataType.ARRAY_B to DataType.BYTE,
DataType.ARRAY_UB to DataType.UBYTE,
DataType.ARRAY_W to DataType.WORD,

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@ -197,7 +197,7 @@ class ArrayIndexedExpression(var identifier: IdentifierReference,
val target = identifier.targetStatement(program.namespace)
if (target is VarDecl) {
return when (target.datatype) {
in StringDatatypes -> InferredTypes.knownFor(DataType.UBYTE)
DataType.STR -> InferredTypes.knownFor(DataType.UBYTE)
in ArrayDatatypes -> InferredTypes.knownFor(ArrayElementTypes.getValue(target.datatype))
else -> InferredTypes.unknown()
}
@ -524,7 +524,6 @@ class RangeExpr(var from: Expression,
fromDt istype DataType.UBYTE && toDt istype DataType.UBYTE -> InferredTypes.knownFor(DataType.ARRAY_UB)
fromDt istype DataType.UWORD && toDt istype DataType.UWORD -> InferredTypes.knownFor(DataType.ARRAY_UW)
fromDt istype DataType.STR && toDt istype DataType.STR -> InferredTypes.knownFor(DataType.STR)
fromDt istype DataType.STR_S && toDt istype DataType.STR_S -> InferredTypes.knownFor(DataType.STR_S)
fromDt istype DataType.WORD || toDt istype DataType.WORD -> InferredTypes.knownFor(DataType.ARRAY_W)
fromDt istype DataType.BYTE || toDt istype DataType.BYTE -> InferredTypes.knownFor(DataType.ARRAY_B)
else -> InferredTypes.knownFor(DataType.ARRAY_UB)

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@ -46,7 +46,6 @@ object InferredTypes {
DataType.WORD to InferredType.known(DataType.WORD),
DataType.FLOAT to InferredType.known(DataType.FLOAT),
DataType.STR to InferredType.known(DataType.STR),
DataType.STR_S to InferredType.known(DataType.STR_S),
DataType.ARRAY_UB to InferredType.known(DataType.ARRAY_UB),
DataType.ARRAY_B to InferredType.known(DataType.ARRAY_B),
DataType.ARRAY_UW to InferredType.known(DataType.ARRAY_UW),

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@ -1,5 +1,3 @@
@file:Suppress("DuplicatedCode")
package prog8.ast.processing
import prog8.ast.IFunctionCall
@ -125,7 +123,7 @@ internal class AstChecker(private val program: Program,
} else {
if (forLoop.loopRegister != null) {
// loop register
if (iterableDt != DataType.ARRAY_UB && iterableDt != DataType.ARRAY_B && iterableDt !in StringDatatypes)
if (iterableDt != DataType.ARRAY_UB && iterableDt != DataType.ARRAY_B && iterableDt != DataType.STR)
checkResult.add(ExpressionError("register can only loop over bytes", forLoop.position))
if(forLoop.loopRegister!=Register.A)
checkResult.add(ExpressionError("it's only possible to use A as a loop register", forLoop.position))
@ -137,11 +135,11 @@ internal class AstChecker(private val program: Program,
} else {
when (loopvar.datatype) {
DataType.UBYTE -> {
if(iterableDt!= DataType.UBYTE && iterableDt!= DataType.ARRAY_UB && iterableDt !in StringDatatypes)
if(iterableDt!= DataType.UBYTE && iterableDt!= DataType.ARRAY_UB && iterableDt != DataType.STR)
checkResult.add(ExpressionError("ubyte loop variable can only loop over unsigned bytes or strings", forLoop.position))
}
DataType.UWORD -> {
if(iterableDt!= DataType.UBYTE && iterableDt!= DataType.UWORD && iterableDt !in StringDatatypes &&
if(iterableDt!= DataType.UBYTE && iterableDt!= DataType.UWORD && iterableDt != DataType.STR &&
iterableDt != DataType.ARRAY_UB && iterableDt!= DataType.ARRAY_UW)
checkResult.add(ExpressionError("uword loop variable can only loop over unsigned bytes, words or strings", forLoop.position))
}
@ -245,7 +243,7 @@ internal class AstChecker(private val program: Program,
}
else if(param.second.registerOrPair in setOf(RegisterOrPair.AX, RegisterOrPair.AY, RegisterOrPair.XY)) {
if (param.first.type != DataType.UWORD && param.first.type != DataType.WORD
&& param.first.type !in StringDatatypes && param.first.type !in ArrayDatatypes && param.first.type != DataType.FLOAT)
&& param.first.type != DataType.STR && param.first.type !in ArrayDatatypes && param.first.type != DataType.FLOAT)
err("parameter '${param.first.name}' should be (u)word/address")
}
else if(param.second.statusflag!=null) {
@ -260,7 +258,7 @@ internal class AstChecker(private val program: Program,
}
else if(ret.second.registerOrPair in setOf(RegisterOrPair.AX, RegisterOrPair.AY, RegisterOrPair.XY)) {
if (ret.first.value != DataType.UWORD && ret.first.value != DataType.WORD
&& ret.first.value !in StringDatatypes && ret.first.value !in ArrayDatatypes && ret.first.value != DataType.FLOAT)
&& ret.first.value != DataType.STR && ret.first.value !in ArrayDatatypes && ret.first.value != DataType.FLOAT)
err("return value #${ret.first.index + 1} should be (u)word/address")
}
else if(ret.second.statusflag!=null) {
@ -411,7 +409,7 @@ internal class AstChecker(private val program: Program,
}
}
val targetDt = assignTarget.inferType(program, assignment).typeOrElse(DataType.STR)
if(targetDt in StringDatatypes || targetDt in ArrayDatatypes)
if(targetDt in IterableDatatypes)
checkResult.add(SyntaxError("cannot assign to a string or array type", assignTarget.position))
if (assignment is Assignment) {
@ -447,7 +445,7 @@ internal class AstChecker(private val program: Program,
if(variable==null)
checkResult.add(ExpressionError("pointer-of operand must be the name of a heap variable", addressOf.position))
else {
if(variable.datatype !in ArrayDatatypes && variable.datatype !in StringDatatypes && variable.datatype!=DataType.STRUCT)
if(variable.datatype !in ArrayDatatypes && variable.datatype != DataType.STR && variable.datatype!=DataType.STRUCT)
checkResult.add(ExpressionError("invalid pointer-of operand type", addressOf.position))
}
super.visit(addressOf)
@ -876,10 +874,10 @@ internal class AstChecker(private val program: Program,
checkResult.add(ExpressionError("swap requires args of numerical type", position))
}
else if(target.name=="all" || target.name=="any") {
if((args[0] as? AddressOf)?.identifier?.targetVarDecl(program.namespace)?.datatype in StringDatatypes) {
if((args[0] as? AddressOf)?.identifier?.targetVarDecl(program.namespace)?.datatype == DataType.STR) {
checkResult.add(ExpressionError("any/all on a string is useless (is always true unless the string is empty)", position))
}
if(args[0].inferType(program).typeOrElse(DataType.STR) in StringDatatypes) {
if(args[0].inferType(program).typeOrElse(DataType.STR) == DataType.STR) {
checkResult.add(ExpressionError("any/all on a string is useless (is always true unless the string is empty)", position))
}
}
@ -896,7 +894,7 @@ internal class AstChecker(private val program: Program,
val argDt=argIDt.typeOrElse(DataType.STRUCT)
if(!(argDt isAssignableTo arg.second.type)) {
// for asm subroutines having STR param it's okay to provide a UWORD (address value)
if(!(target.isAsmSubroutine && arg.second.type in StringDatatypes && argDt == DataType.UWORD))
if(!(target.isAsmSubroutine && arg.second.type == DataType.STR && argDt == DataType.UWORD))
checkResult.add(ExpressionError("subroutine '${target.name}' argument ${arg.first.index + 1} has invalid type $argDt, expected ${arg.second.type}", position))
}
@ -963,7 +961,7 @@ internal class AstChecker(private val program: Program,
val index = (arrayIndexedExpression.arrayspec.index as? NumericLiteralValue)?.number?.toInt()
if(index!=null && (index<0 || index>=arraysize))
checkResult.add(ExpressionError("array index out of bounds", arrayIndexedExpression.arrayspec.position))
} else if(target.datatype in StringDatatypes) {
} else if(target.datatype == DataType.STR) {
if(target.value is StringLiteralValue) {
// check string lengths for non-memory mapped strings
val stringLen = (target.value as StringLiteralValue).value.length
@ -1047,19 +1045,15 @@ internal class AstChecker(private val program: Program,
}
private fun checkValueTypeAndRangeString(targetDt: DataType, value: StringLiteralValue) : Boolean {
fun err(msg: String): Boolean {
checkResult.add(ExpressionError(msg, value.position))
return false
}
return when (targetDt) {
in StringDatatypes -> {
return if (value.value.length > 255)
err("string length must be 0-255")
else
true
return if (targetDt == DataType.STR) {
if (value.value.length > 255) {
checkResult.add(ExpressionError("string length must be 0-255", value.position))
false
}
else -> false
else
true
}
else false
}
private fun checkValueTypeAndRangeArray(targetDt: DataType, struct: StructDecl?,
@ -1069,7 +1063,7 @@ internal class AstChecker(private val program: Program,
return false
}
when (targetDt) {
in StringDatatypes -> return err("string value expected")
DataType.STR -> return err("string value expected")
DataType.ARRAY_UB, DataType.ARRAY_B -> {
// value may be either a single byte, or a byte arraysize (of all constant values), or a range
if(value.type==targetDt) {
@ -1276,7 +1270,6 @@ internal class AstChecker(private val program: Program,
DataType.UWORD -> sourceDatatype== DataType.UBYTE || sourceDatatype== DataType.UWORD
DataType.FLOAT -> sourceDatatype in NumericDatatypes
DataType.STR -> sourceDatatype== DataType.STR
DataType.STR_S -> sourceDatatype== DataType.STR_S
DataType.STRUCT -> {
if(sourceDatatype==DataType.STRUCT) {
val structLv = sourceValue as StructLiteralValue

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@ -103,14 +103,14 @@ internal class VarInitValueAndAddressOfCreator(private val program: Program): IA
private fun addAddressOfExprIfNeeded(subroutine: Subroutine, arglist: MutableList<Expression>, parent: Statement) {
// functions that accept UWORD and are given an array type, or string, will receive the AddressOf (memory location) of that value instead.
for(argparam in subroutine.parameters.withIndex().zip(arglist)) {
if(argparam.first.value.type==DataType.UWORD || argparam.first.value.type in StringDatatypes) {
if(argparam.first.value.type==DataType.UWORD || argparam.first.value.type == DataType.STR) {
if(argparam.second is AddressOf)
continue
val idref = argparam.second as? IdentifierReference
val strvalue = argparam.second as? StringLiteralValue
if(idref!=null) {
val variable = idref.targetVarDecl(program.namespace)
if(variable!=null && (variable.datatype in StringDatatypes || variable.datatype in ArrayDatatypes)) {
if(variable!=null && variable.datatype in IterableDatatypes) {
val pointerExpr = AddressOf(idref, idref.position)
pointerExpr.linkParents(arglist[argparam.first.index].parent)
arglist[argparam.first.index] = pointerExpr

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@ -206,18 +206,9 @@ internal class AsmGen(private val program: Program,
return "$b0, $b1, $b2, $b3, $b4"
}
private fun encodeStr(str: String, dt: DataType): List<Short> {
return when(dt) {
DataType.STR -> {
val bytes = Petscii.encodePetscii(str, true)
bytes.plus(0)
}
DataType.STR_S -> {
val bytes = Petscii.encodeScreencode(str, true)
bytes.plus(0)
}
else -> throw AssemblyError("invalid str type")
}
private fun encodeStr(str: String): List<Short> {
val bytes = Petscii.encodePetscii(str, true)
return bytes.plus(0)
}
private fun zeropagevars2asm(statements: List<Statement>) {
@ -254,10 +245,9 @@ internal class AsmGen(private val program: Program,
DataType.WORD -> out("${decl.name}\t.sint 0")
DataType.FLOAT -> out("${decl.name}\t.byte 0,0,0,0,0 ; float")
DataType.STRUCT -> {} // is flattened
DataType.STR, DataType.STR_S -> {
DataType.STR -> {
val string = (decl.value as StringLiteralValue).value
val encoded = encodeStr(string, decl.datatype)
outputStringvar(decl, encoded)
outputStringvar(decl, encodeStr(string))
}
DataType.ARRAY_UB -> {
val data = makeArrayFillDataUnsigned(decl)
@ -340,8 +330,8 @@ internal class AsmGen(private val program: Program,
// special treatment for string types: merge strings that are identical
val encodedstringVars = normalVars
.filter {it.datatype in StringDatatypes }
.map { it to encodeStr((it.value as StringLiteralValue).value, it.datatype) }
.filter {it.datatype == DataType.STR }
.map { it to encodeStr((it.value as StringLiteralValue).value) }
.groupBy({it.second}, {it.first})
for((encoded, variables) in encodedstringVars) {
variables.dropLast(1).forEach { out(it.name) }
@ -350,7 +340,7 @@ internal class AsmGen(private val program: Program,
}
// non-string variables
normalVars.filter{ it.datatype !in StringDatatypes}.sortedBy { it.datatype }.forEach {
normalVars.filter{ it.datatype != DataType.STR }.sortedBy { it.datatype }.forEach {
if(it.scopedname !in allocatedZeropageVariables)
vardecl2asm(it)
}
@ -510,7 +500,7 @@ internal class AsmGen(private val program: Program,
internal fun readAndPushArrayvalueWithIndexA(arrayDt: DataType, variable: IdentifierReference) {
val variablename = asmIdentifierName(variable)
when (arrayDt) {
DataType.STR, DataType.STR_S, DataType.ARRAY_UB, DataType.ARRAY_B ->
DataType.STR, DataType.ARRAY_UB, DataType.ARRAY_B ->
out(" tay | lda $variablename,y | sta $ESTACK_LO_HEX,x | dex")
DataType.ARRAY_UW, DataType.ARRAY_W ->
out(" asl a | tay | lda $variablename,y | sta $ESTACK_LO_HEX,x | lda $variablename+1,y | sta $ESTACK_HI_HEX,x | dex")

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@ -83,7 +83,7 @@ internal class AssignmentAsmGen(private val program: Program, private val asmgen
val arrayVarName = asmgen.asmIdentifierName(arrayExpr.identifier)
val indexValue = index.number.toInt() * ArrayElementTypes.getValue(arrayDt).memorySize()
when (arrayDt) {
DataType.STR, DataType.STR_S, DataType.ARRAY_UB, DataType.ARRAY_B ->
DataType.STR, DataType.ARRAY_UB, DataType.ARRAY_B ->
asmgen.out(" lda $arrayVarName+$indexValue | sta $ESTACK_LO_HEX,x | dex")
DataType.ARRAY_UW, DataType.ARRAY_W ->
asmgen.out(" lda $arrayVarName+$indexValue | sta $ESTACK_LO_HEX,x | lda $arrayVarName+$indexValue+1 | sta $ESTACK_HI_HEX,x | dex")
@ -730,7 +730,7 @@ internal class AssignmentAsmGen(private val program: Program, private val asmgen
private fun popAndWriteArrayvalueWithIndexA(arrayDt: DataType, variablename: String) {
when (arrayDt) {
DataType.STR, DataType.STR_S, DataType.ARRAY_UB, DataType.ARRAY_B ->
DataType.STR, DataType.ARRAY_UB, DataType.ARRAY_B ->
asmgen.out(" tay | inx | lda $ESTACK_LO_HEX,x | sta $variablename,y")
DataType.ARRAY_UW, DataType.ARRAY_W ->
asmgen.out(" asl a | tay | inx | lda $ESTACK_LO_HEX,x | sta $variablename,y | lda $ESTACK_HI_HEX,x | sta $variablename+1,y")

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@ -85,7 +85,7 @@ internal class BuiltinFunctionsAsmGen(private val program: Program, private val
outputPushAddressAndLenghtOfArray(fcall.arglist[0])
val dt = fcall.arglist.single().inferType(program)
when (dt.typeOrElse(DataType.STRUCT)) {
DataType.ARRAY_UB, DataType.STR_S, DataType.STR -> asmgen.out(" jsr prog8_lib.func_${functionName}_ub")
DataType.ARRAY_UB, DataType.STR -> asmgen.out(" jsr prog8_lib.func_${functionName}_ub")
DataType.ARRAY_B -> asmgen.out(" jsr prog8_lib.func_${functionName}_b")
DataType.ARRAY_UW -> asmgen.out(" jsr prog8_lib.func_${functionName}_uw")
DataType.ARRAY_W -> asmgen.out(" jsr prog8_lib.func_${functionName}_w")
@ -97,7 +97,7 @@ internal class BuiltinFunctionsAsmGen(private val program: Program, private val
outputPushAddressAndLenghtOfArray(fcall.arglist[0])
val dt = fcall.arglist.single().inferType(program)
when (dt.typeOrElse(DataType.STRUCT)) {
DataType.ARRAY_B, DataType.ARRAY_UB, DataType.STR_S, DataType.STR -> asmgen.out(" jsr prog8_lib.func_${functionName}_b")
DataType.ARRAY_B, DataType.ARRAY_UB, DataType.STR -> asmgen.out(" jsr prog8_lib.func_${functionName}_b")
DataType.ARRAY_UW, DataType.ARRAY_W -> asmgen.out(" jsr prog8_lib.func_${functionName}_w")
DataType.ARRAY_F -> asmgen.out(" jsr c64flt.func_${functionName}_f")
else -> throw AssemblyError("weird type $dt")

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@ -172,12 +172,12 @@ internal class ExpressionsAsmGen(private val program: Program, private val asmge
DataType.UWORD, DataType.WORD -> {
asmgen.out(" lda $varname | sta $ESTACK_LO_HEX,x | lda $varname+1 | sta $ESTACK_HI_HEX,x | dex")
}
in ArrayDatatypes, in StringDatatypes -> {
asmgen.out(" lda #<$varname | sta $ESTACK_LO_HEX,x | lda #>$varname | sta $ESTACK_HI_HEX,x | dex")
}
DataType.FLOAT -> {
asmgen.out(" lda #<$varname | ldy #>$varname| jsr c64flt.push_float")
}
in IterableDatatypes -> {
asmgen.out(" lda #<$varname | sta $ESTACK_LO_HEX,x | lda #>$varname | sta $ESTACK_HI_HEX,x | dex")
}
else -> throw AssemblyError("stack push weird variable type $expr")
}
}

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@ -318,7 +318,7 @@ $endLabel inx""")
val iterableName = asmgen.asmIdentifierName(ident)
val decl = ident.targetVarDecl(program.namespace)!!
when(iterableDt) {
DataType.STR, DataType.STR_S -> {
DataType.STR -> {
if(stmt.loopRegister!=null && stmt.loopRegister!= Register.A)
throw AssemblyError("can only use A")
asmgen.out("""

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@ -228,9 +228,9 @@ internal class FunctionCallAsmGen(private val program: Program, private val asmg
// we have a special rule for some types.
// strings are assignable to UWORD, for example, and vice versa
if(argType in StringDatatypes && paramType==DataType.UWORD)
if(argType==DataType.STR && paramType==DataType.UWORD)
return true
if(argType==DataType.UWORD && paramType in StringDatatypes)
if(argType==DataType.UWORD && paramType == DataType.STR)
return true
return false

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@ -123,7 +123,7 @@ internal class PostIncrDecrAsmGen(private val program: Program, private val asmg
private fun incrDecrArrayvalueWithIndexA(incr: Boolean, arrayDt: DataType, arrayVarName: String) {
asmgen.out(" stx ${C64Zeropage.SCRATCH_REG_X} | tax")
when(arrayDt) {
DataType.STR, DataType.STR_S,
DataType.STR,
DataType.ARRAY_UB, DataType.ARRAY_B -> {
asmgen.out(if(incr) " inc $arrayVarName,x" else " dec $arrayVarName,x")
}

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@ -88,7 +88,7 @@ val BuiltinFunctions = mapOf(
BuiltinFunctionParam("address", IterableDatatypes + DataType.UWORD),
BuiltinFunctionParam("numwords", setOf(DataType.UWORD)),
BuiltinFunctionParam("wordvalue", setOf(DataType.UWORD, DataType.WORD))), null),
"strlen" to FunctionSignature(true, listOf(BuiltinFunctionParam("string", StringDatatypes)), DataType.UBYTE, ::builtinStrlen)
"strlen" to FunctionSignature(true, listOf(BuiltinFunctionParam("string", setOf(DataType.STR))), DataType.UBYTE, ::builtinStrlen)
)
fun builtinMax(array: List<Number>): Number = array.maxBy { it.toDouble() }!!
@ -121,8 +121,7 @@ fun builtinFunctionReturnType(function: String, args: List<Expression>, program:
if(!idt.isKnown)
throw FatalAstException("couldn't determine type of iterable $arglist")
return when(val dt = idt.typeOrElse(DataType.STRUCT)) {
in NumericDatatypes -> dt
in StringDatatypes -> dt
DataType.STR, in NumericDatatypes -> dt
in ArrayDatatypes -> ArrayElementTypes.getValue(dt)
else -> throw FatalAstException("function '$function' requires one argument which is an iterable")
}
@ -145,8 +144,8 @@ fun builtinFunctionReturnType(function: String, args: List<Expression>, program:
}
"max", "min" -> {
when(val dt = datatypeFromIterableArg(args.single())) {
DataType.STR -> InferredTypes.knownFor(DataType.UBYTE)
in NumericDatatypes -> InferredTypes.knownFor(dt)
in StringDatatypes -> InferredTypes.knownFor(DataType.UBYTE)
in ArrayDatatypes -> InferredTypes.knownFor(ArrayElementTypes.getValue(dt))
else -> InferredTypes.unknown()
}
@ -159,7 +158,7 @@ fun builtinFunctionReturnType(function: String, args: List<Expression>, program:
DataType.ARRAY_UB, DataType.ARRAY_UW -> InferredTypes.knownFor(DataType.UWORD)
DataType.ARRAY_B, DataType.ARRAY_W -> InferredTypes.knownFor(DataType.WORD)
DataType.ARRAY_F -> InferredTypes.knownFor(DataType.FLOAT)
in StringDatatypes -> InferredTypes.knownFor(DataType.UWORD)
DataType.STR -> InferredTypes.knownFor(DataType.UWORD)
else -> InferredTypes.unknown()
}
}
@ -232,7 +231,7 @@ private fun builtinStrlen(args: List<Expression>, position: Position, program: P
if (args.size != 1)
throw SyntaxError("strlen requires one argument", position)
val argument = args[0].constValue(program) ?: throw NotConstArgumentException()
if(argument.type !in StringDatatypes)
if(argument.type != DataType.STR)
throw SyntaxError("strlen must have string argument", position)
throw NotConstArgumentException() // this function is not considering the string argument a constant
@ -269,7 +268,7 @@ private fun builtinLen(args: List<Expression>, position: Position, program: Prog
throw CompilerException("array length exceeds byte limit ${target.position}")
NumericLiteralValue.optimalInteger(arraySize, args[0].position)
}
in StringDatatypes -> {
DataType.STR -> {
val refLv = target.value as StringLiteralValue
if(refLv.value.length>255)
throw CompilerException("string length exceeds byte limit ${refLv.position}")

View File

@ -63,12 +63,6 @@ class ConstantFolding(private val program: Program) : IAstModifyingVisitor {
return super.visit(decl)
}
}
in StringDatatypes -> {
// nothing to do for strings
}
DataType.STRUCT -> {
// struct defintions don't have anything else in them
}
DataType.ARRAY_UB, DataType.ARRAY_B, DataType.ARRAY_UW, DataType.ARRAY_W -> {
val numericLv = decl.value as? NumericLiteralValue
val rangeExpr = decl.value as? RangeExpr
@ -154,6 +148,7 @@ class ConstantFolding(private val program: Program) : IAstModifyingVisitor {
}
else -> {
// nothing to do for this type
// this includes strings and structs
}
}
}

View File

@ -577,13 +577,7 @@ class RuntimeValueString(type: DataType, val str: String, val heapId: Int?): Run
}
}
override fun toString(): String {
return when (type) {
DataType.STR -> "str:$str"
DataType.STR_S -> "str_s:$str"
else -> "???"
}
}
override fun toString(): String = if(type==DataType.STR) "str:$str" else "???"
override fun hashCode(): Int = Objects.hash(type, str)

View File

@ -577,7 +577,6 @@ class AstVm(val program: Program, compilationTarget: String) {
DataType.WORD -> mem.setSWord(address, (value as RuntimeValueNumeric).wordval!!)
DataType.FLOAT -> mem.setFloat(address, (value as RuntimeValueNumeric).floatval!!)
DataType.STR -> mem.setString(address, (value as RuntimeValueString).str)
DataType.STR_S -> mem.setScreencodeString(address, (value as RuntimeValueString).str)
else -> throw VmExecutionException("weird memaddress type $decl")
}
} else
@ -613,7 +612,7 @@ class AstVm(val program: Program, compilationTarget: String) {
if (value.type != DataType.FLOAT)
throw VmExecutionException("new value is of different datatype ${value.type} for $array")
}
DataType.STR, DataType.STR_S -> {
DataType.STR -> {
if (value.type !in ByteDatatypes)
throw VmExecutionException("new value is of different datatype ${value.type} for $array")
}
@ -621,7 +620,7 @@ class AstVm(val program: Program, compilationTarget: String) {
}
if (array.type in ArrayDatatypes)
(array as RuntimeValueArray).array[index.integerValue()] = value.numericValue()
else if (array.type in StringDatatypes) {
else if (array.type == DataType.STR) {
val indexInt = index.integerValue()
val newchr = value.numericValue().toChar().toString()
val newstr = (array as RuntimeValueString).str.replaceRange(indexInt, indexInt + 1, newchr)
@ -783,13 +782,8 @@ class AstVm(val program: Program, compilationTarget: String) {
return result
}
private fun getAsciiStringFromRuntimeVars(heapId: Int): String {
val stringvar = runtimeVariables.getByHeapId(heapId) as RuntimeValueString
return when (stringvar.type) {
DataType.STR, DataType.STR_S -> stringvar.str
else -> throw VmExecutionException("weird string type")
}
}
private fun getAsciiStringFromRuntimeVars(heapId: Int): String =
(runtimeVariables.getByHeapId(heapId) as RuntimeValueString).str
private fun getArrayFromRuntimeVars(heapId: Int): IntArray {
val arrayvar = runtimeVariables.getByHeapId(heapId) as RuntimeValueArray

View File

@ -125,7 +125,6 @@ fun evaluate(expr: Expression, ctx: EvalContext): RuntimeValueBase {
DataType.WORD -> RuntimeValueNumeric(DataType.WORD, ctx.mem.getSWord(address))
DataType.FLOAT -> RuntimeValueNumeric(DataType.FLOAT, ctx.mem.getFloat(address))
DataType.STR -> RuntimeValueString(DataType.STR, ctx.mem.getString(address), null)
DataType.STR_S -> RuntimeValueString(DataType.STR_S, ctx.mem.getScreencodeString(address)!!, null)
else -> throw VmExecutionException("unexpected datatype $variable")
}
}

View File

@ -271,9 +271,8 @@ Strings
Strings are a sequence of characters enclosed in ``"`` quotes. The length is limited to 255 characters.
They're stored and treated much the same as a byte array,
but they have some special properties because they are considered to be *text*.
Strings in your source code files will be encoded (translated from ASCII/UTF-8) into either CBM PETSCII or C-64 screencodes.
PETSCII is the default choice. If you need screencodes (also called 'poke' codes) instead,
you have to use the ``str_s`` variants of the string type identifier.
Strings in your source code files will be encoded (translated from ASCII/UTF-8) into the byte-encoding
that is used on the target platform. For the C-64, this is CBM PETSCII.
You can concatenate two string literals using '+' (not very useful though) or repeat
a string literal a given number of times using '*'::

View File

@ -268,8 +268,6 @@ type identifier type storage size example var declara
``float[]`` floating-point array depends on value ``float[] myvar = [1.1, 2.2, 3.3, 4.4]``
``str`` string (petscii) varies ``str myvar = "hello."``
implicitly terminated by a 0-byte
``str_s`` string (screencodes) varies ``str_s myvar = "hello."``
implicitly terminated by a 0-byte
=============== ======================= ================= =========================================
**arrays:** you can split an array initializer list over several lines if you want. When an initialization

26
examples/screencodes.p8 Normal file
View File

@ -0,0 +1,26 @@
%import c64lib
%import c64utils
%zeropage basicsafe
main {
sub start() {
c64.VMCSB |= 2 ; switch to lowercase charset
str s1 = "HELLO hello 1234 @[/]\n"
str s2 = "HELLO hello 1234 @[/]\n" ; TODO as c64scr
c64scr.print("\n\n\n\nString output via print:\n")
c64scr.print(s1)
c64scr.print(s2)
c64scr.print("\nThe top two screen lines are set via screencodes.\n")
ubyte i
for i in 0 to len(s1)-1 {
@($0400+i) = s1[i]
@($0400+40+i) = s2[i]
}
}
}

View File

@ -11,8 +11,9 @@ main {
c64scr.print("this is only a parser/compiler test\n")
return
str s1 = "irmen"
str_s s2 = "hello"
str s1 = "hello"
str s2 = "screencodes" ; TODO as c64sc
&str ms1 = $c000
@ -37,7 +38,6 @@ main {
; read array
A=s1[2]
ub=s1[2]
ub=s2[2]
bb=barray[2]
ub=ubarray[2]
ww=warray[2]
@ -52,8 +52,7 @@ main {
fl=mflarray[2]
A=s1[A]
ub=s2[A]
ub=s2[A]
ub=s1[A]
bb=barray[A]
ub=ubarray[A]
ww=warray[A]
@ -69,7 +68,6 @@ main {
A=s1[bb]
ub=s1[bb]
ub=s2[bb]
bb=barray[bb]
ub=ubarray[bb]
ww=warray[bb]
@ -85,7 +83,6 @@ main {
A=s1[bb*3]
ub=s1[bb*3]
ub=s2[bb*3]
bb=barray[bb*3]
ub=ubarray[bb*3]
ww=warray[bb*3]
@ -104,7 +101,6 @@ main {
barray[2]--
s1[2] = A
s1[2] = ub
s2[2] = ub
barray[2] = bb
ubarray[2] = ub
warray[2] = ww
@ -121,7 +117,6 @@ main {
mflarray[2] = fl
s1[A] = ub
s2[A] = ub
barray[A] = bb
ubarray[A] = ub
warray[A] = ww
@ -129,7 +124,6 @@ main {
flarray[A] = fl
s1[bb] = ub
s2[bb] = ub
barray[bb] = bb
ubarray[bb] = ub
warray[bb] = ww
@ -137,7 +131,6 @@ main {
flarray[bb] = fl
s1[bb*3] = ub
s2[bb*3] = ub
barray[bb*3] = bb
ubarray[bb*3] = ub
warray[bb*3] = ww

View File

@ -126,7 +126,7 @@ memoryvardecl: ADDRESS_OF varinitializer;
structdecl: 'struct' identifier '{' EOL vardecl ( EOL vardecl)* EOL? '}' EOL;
datatype: 'ubyte' | 'byte' | 'uword' | 'word' | 'float' | 'str' | 'str_s' ;
datatype: 'ubyte' | 'byte' | 'uword' | 'word' | 'float' | 'str' ;
arrayindex: '[' expression ']' ;

View File

@ -34,10 +34,10 @@ public class prog8Lexer extends Lexer {
T__87=88, T__88=89, T__89=90, T__90=91, T__91=92, T__92=93, T__93=94,
T__94=95, T__95=96, T__96=97, T__97=98, T__98=99, T__99=100, T__100=101,
T__101=102, T__102=103, T__103=104, T__104=105, T__105=106, T__106=107,
T__107=108, T__108=109, T__109=110, LINECOMMENT=111, COMMENT=112, WS=113,
EOL=114, NAME=115, DEC_INTEGER=116, HEX_INTEGER=117, BIN_INTEGER=118,
ADDRESS_OF=119, FLOAT_NUMBER=120, STRING=121, INLINEASMBLOCK=122, SINGLECHAR=123,
ZEROPAGE=124, ARRAYSIG=125;
T__107=108, T__108=109, LINECOMMENT=110, COMMENT=111, WS=112, EOL=113,
NAME=114, DEC_INTEGER=115, HEX_INTEGER=116, BIN_INTEGER=117, ADDRESS_OF=118,
FLOAT_NUMBER=119, STRING=120, INLINEASMBLOCK=121, SINGLECHAR=122, ZEROPAGE=123,
ARRAYSIG=124;
public static String[] channelNames = {
"DEFAULT_TOKEN_CHANNEL", "HIDDEN"
};
@ -61,8 +61,8 @@ public class prog8Lexer extends Lexer {
"T__81", "T__82", "T__83", "T__84", "T__85", "T__86", "T__87", "T__88",
"T__89", "T__90", "T__91", "T__92", "T__93", "T__94", "T__95", "T__96",
"T__97", "T__98", "T__99", "T__100", "T__101", "T__102", "T__103", "T__104",
"T__105", "T__106", "T__107", "T__108", "T__109", "LINECOMMENT", "COMMENT",
"WS", "EOL", "NAME", "DEC_INTEGER", "HEX_INTEGER", "BIN_INTEGER", "ADDRESS_OF",
"T__105", "T__106", "T__107", "T__108", "LINECOMMENT", "COMMENT", "WS",
"EOL", "NAME", "DEC_INTEGER", "HEX_INTEGER", "BIN_INTEGER", "ADDRESS_OF",
"FLOAT_NUMBER", "FNUMBER", "STRING_ESCAPE_SEQ", "STRING", "INLINEASMBLOCK",
"SINGLECHAR", "ZEROPAGE", "ARRAYSIG"
};
@ -74,19 +74,19 @@ public class prog8Lexer extends Lexer {
null, "':'", "'goto'", "'%output'", "'%launcher'", "'%zeropage'", "'%zpreserved'",
"'%address'", "'%import'", "'%breakpoint'", "'%asminclude'", "'%asmbinary'",
"'%option'", "','", "'='", "'const'", "'struct'", "'{'", "'}'", "'ubyte'",
"'byte'", "'uword'", "'word'", "'float'", "'str'", "'str_s'", "'['",
"']'", "'+='", "'-='", "'/='", "'*='", "'**='", "'&='", "'|='", "'^='",
"'%='", "'<<='", "'>>='", "'++'", "'--'", "'+'", "'-'", "'~'", "'**'",
"'*'", "'/'", "'%'", "'<<'", "'>>'", "'<'", "'>'", "'<='", "'>='", "'=='",
"'!='", "'^'", "'|'", "'to'", "'step'", "'and'", "'or'", "'xor'", "'not'",
"'('", "')'", "'as'", "'@'", "'return'", "'break'", "'continue'", "'.'",
"'A'", "'X'", "'Y'", "'AX'", "'AY'", "'XY'", "'Pc'", "'Pz'", "'Pn'",
"'Pv'", "'.w'", "'true'", "'false'", "'%asm'", "'sub'", "'->'", "'asmsub'",
"'stack'", "'clobbers'", "'if'", "'else'", "'if_cs'", "'if_cc'", "'if_eq'",
"'if_z'", "'if_ne'", "'if_nz'", "'if_pl'", "'if_pos'", "'if_mi'", "'if_neg'",
"'if_vs'", "'if_vc'", "'for'", "'in'", "'while'", "'repeat'", "'until'",
"'when'", null, null, null, null, null, null, null, null, "'&'", null,
null, null, null, "'@zp'", "'[]'"
"'byte'", "'uword'", "'word'", "'float'", "'str'", "'['", "']'", "'+='",
"'-='", "'/='", "'*='", "'**='", "'&='", "'|='", "'^='", "'%='", "'<<='",
"'>>='", "'++'", "'--'", "'+'", "'-'", "'~'", "'**'", "'*'", "'/'", "'%'",
"'<<'", "'>>'", "'<'", "'>'", "'<='", "'>='", "'=='", "'!='", "'^'",
"'|'", "'to'", "'step'", "'and'", "'or'", "'xor'", "'not'", "'('", "')'",
"'as'", "'@'", "'return'", "'break'", "'continue'", "'.'", "'A'", "'X'",
"'Y'", "'AX'", "'AY'", "'XY'", "'Pc'", "'Pz'", "'Pn'", "'Pv'", "'.w'",
"'true'", "'false'", "'%asm'", "'sub'", "'->'", "'asmsub'", "'stack'",
"'clobbers'", "'if'", "'else'", "'if_cs'", "'if_cc'", "'if_eq'", "'if_z'",
"'if_ne'", "'if_nz'", "'if_pl'", "'if_pos'", "'if_mi'", "'if_neg'", "'if_vs'",
"'if_vc'", "'for'", "'in'", "'while'", "'repeat'", "'until'", "'when'",
null, null, null, null, null, null, null, null, "'&'", null, null, null,
null, "'@zp'", "'[]'"
};
}
private static final String[] _LITERAL_NAMES = makeLiteralNames();
@ -101,7 +101,7 @@ public class prog8Lexer extends Lexer {
null, null, null, null, null, null, null, null, null, null, null, null,
null, null, null, null, null, null, null, null, null, null, null, null,
null, null, null, null, null, null, null, null, null, null, null, null,
null, null, null, "LINECOMMENT", "COMMENT", "WS", "EOL", "NAME", "DEC_INTEGER",
null, null, "LINECOMMENT", "COMMENT", "WS", "EOL", "NAME", "DEC_INTEGER",
"HEX_INTEGER", "BIN_INTEGER", "ADDRESS_OF", "FLOAT_NUMBER", "STRING",
"INLINEASMBLOCK", "SINGLECHAR", "ZEROPAGE", "ARRAYSIG"
};
@ -167,13 +167,13 @@ public class prog8Lexer extends Lexer {
@Override
public void action(RuleContext _localctx, int ruleIndex, int actionIndex) {
switch (ruleIndex) {
case 122:
case 121:
STRING_action((RuleContext)_localctx, actionIndex);
break;
case 123:
case 122:
INLINEASMBLOCK_action((RuleContext)_localctx, actionIndex);
break;
case 124:
case 123:
SINGLECHAR_action((RuleContext)_localctx, actionIndex);
break;
}
@ -213,297 +213,294 @@ public class prog8Lexer extends Lexer {
}
public static final String _serializedATN =
"\3\u608b\ua72a\u8133\ub9ed\u417c\u3be7\u7786\u5964\2\177\u036e\b\1\4\2"+
"\t\2\4\3\t\3\4\4\t\4\4\5\t\5\4\6\t\6\4\7\t\7\4\b\t\b\4\t\t\t\4\n\t\n\4"+
"\13\t\13\4\f\t\f\4\r\t\r\4\16\t\16\4\17\t\17\4\20\t\20\4\21\t\21\4\22"+
"\t\22\4\23\t\23\4\24\t\24\4\25\t\25\4\26\t\26\4\27\t\27\4\30\t\30\4\31"+
"\t\31\4\32\t\32\4\33\t\33\4\34\t\34\4\35\t\35\4\36\t\36\4\37\t\37\4 \t"+
" \4!\t!\4\"\t\"\4#\t#\4$\t$\4%\t%\4&\t&\4\'\t\'\4(\t(\4)\t)\4*\t*\4+\t"+
"+\4,\t,\4-\t-\4.\t.\4/\t/\4\60\t\60\4\61\t\61\4\62\t\62\4\63\t\63\4\64"+
"\t\64\4\65\t\65\4\66\t\66\4\67\t\67\48\t8\49\t9\4:\t:\4;\t;\4<\t<\4=\t"+
"=\4>\t>\4?\t?\4@\t@\4A\tA\4B\tB\4C\tC\4D\tD\4E\tE\4F\tF\4G\tG\4H\tH\4"+
"I\tI\4J\tJ\4K\tK\4L\tL\4M\tM\4N\tN\4O\tO\4P\tP\4Q\tQ\4R\tR\4S\tS\4T\t"+
"T\4U\tU\4V\tV\4W\tW\4X\tX\4Y\tY\4Z\tZ\4[\t[\4\\\t\\\4]\t]\4^\t^\4_\t_"+
"\4`\t`\4a\ta\4b\tb\4c\tc\4d\td\4e\te\4f\tf\4g\tg\4h\th\4i\ti\4j\tj\4k"+
"\tk\4l\tl\4m\tm\4n\tn\4o\to\4p\tp\4q\tq\4r\tr\4s\ts\4t\tt\4u\tu\4v\tv"+
"\4w\tw\4x\tx\4y\ty\4z\tz\4{\t{\4|\t|\4}\t}\4~\t~\4\177\t\177\4\u0080\t"+
"\u0080\3\2\3\2\3\3\3\3\3\3\3\3\3\3\3\4\3\4\3\4\3\4\3\4\3\4\3\4\3\4\3\5"+
"\3\5\3\5\3\5\3\5\3\5\3\5\3\5\3\5\3\5\3\6\3\6\3\6\3\6\3\6\3\6\3\6\3\6\3"+
"\6\3\6\3\7\3\7\3\7\3\7\3\7\3\7\3\7\3\7\3\7\3\7\3\7\3\7\3\b\3\b\3\b\3\b"+
"\3\b\3\b\3\b\3\b\3\b\3\t\3\t\3\t\3\t\3\t\3\t\3\t\3\t\3\n\3\n\3\n\3\n\3"+
"\n\3\n\3\n\3\n\3\n\3\n\3\n\3\n\3\13\3\13\3\13\3\13\3\13\3\13\3\13\3\13"+
"\3\13\3\13\3\13\3\13\3\f\3\f\3\f\3\f\3\f\3\f\3\f\3\f\3\f\3\f\3\f\3\r\3"+
"\r\3\r\3\r\3\r\3\r\3\r\3\r\3\16\3\16\3\17\3\17\3\20\3\20\3\20\3\20\3\20"+
"\3\20\3\21\3\21\3\21\3\21\3\21\3\21\3\21\3\22\3\22\3\23\3\23\3\24\3\24"+
"\3\24\3\24\3\24\3\24\3\25\3\25\3\25\3\25\3\25\3\26\3\26\3\26\3\26\3\26"+
"\3\26\3\27\3\27\3\27\3\27\3\27\3\30\3\30\3\30\3\30\3\30\3\30\3\31\3\31"+
"\3\31\3\31\3\32\3\32\3\32\3\32\3\32\3\32\3\33\3\33\3\34\3\34\3\35\3\35"+
"\3\35\3\36\3\36\3\36\3\37\3\37\3\37\3 \3 \3 \3!\3!\3!\3!\3\"\3\"\3\"\3"+
"#\3#\3#\3$\3$\3$\3%\3%\3%\3&\3&\3&\3&\3\'\3\'\3\'\3\'\3(\3(\3(\3)\3)\3"+
")\3*\3*\3+\3+\3,\3,\3-\3-\3-\3.\3.\3/\3/\3\60\3\60\3\61\3\61\3\61\3\62"+
"\3\62\3\62\3\63\3\63\3\64\3\64\3\65\3\65\3\65\3\66\3\66\3\66\3\67\3\67"+
"\3\67\38\38\38\39\39\3:\3:\3;\3;\3;\3<\3<\3<\3<\3<\3=\3=\3=\3=\3>\3>\3"+
">\3?\3?\3?\3?\3@\3@\3@\3@\3A\3A\3B\3B\3C\3C\3C\3D\3D\3E\3E\3E\3E\3E\3"+
"E\3E\3F\3F\3F\3F\3F\3F\3G\3G\3G\3G\3G\3G\3G\3G\3G\3H\3H\3I\3I\3J\3J\3"+
"K\3K\3L\3L\3L\3M\3M\3M\3N\3N\3N\3O\3O\3O\3P\3P\3P\3Q\3Q\3Q\3R\3R\3R\3"+
"S\3S\3S\3T\3T\3T\3T\3T\3U\3U\3U\3U\3U\3U\3V\3V\3V\3V\3V\3W\3W\3W\3W\3"+
"X\3X\3X\3Y\3Y\3Y\3Y\3Y\3Y\3Y\3Z\3Z\3Z\3Z\3Z\3Z\3[\3[\3[\3[\3[\3[\3[\3"+
"[\3[\3\\\3\\\3\\\3]\3]\3]\3]\3]\3^\3^\3^\3^\3^\3^\3_\3_\3_\3_\3_\3_\3"+
"`\3`\3`\3`\3`\3`\3a\3a\3a\3a\3a\3b\3b\3b\3b\3b\3b\3c\3c\3c\3c\3c\3c\3"+
"d\3d\3d\3d\3d\3d\3e\3e\3e\3e\3e\3e\3e\3f\3f\3f\3f\3f\3f\3g\3g\3g\3g\3"+
"g\3g\3g\3h\3h\3h\3h\3h\3h\3i\3i\3i\3i\3i\3i\3j\3j\3j\3j\3k\3k\3k\3l\3"+
"l\3l\3l\3l\3l\3m\3m\3m\3m\3m\3m\3m\3n\3n\3n\3n\3n\3n\3o\3o\3o\3o\3o\3"+
"p\3p\7p\u02f4\np\fp\16p\u02f7\13p\3p\3p\3p\3p\3q\3q\7q\u02ff\nq\fq\16"+
"q\u0302\13q\3q\3q\3r\3r\3r\3r\3s\6s\u030b\ns\rs\16s\u030c\3t\3t\7t\u0311"+
"\nt\ft\16t\u0314\13t\3u\3u\3u\6u\u0319\nu\ru\16u\u031a\5u\u031d\nu\3v"+
"\3v\6v\u0321\nv\rv\16v\u0322\3w\3w\6w\u0327\nw\rw\16w\u0328\3x\3x\3y\3"+
"y\3y\5y\u0330\ny\3y\5y\u0333\ny\3z\6z\u0336\nz\rz\16z\u0337\3z\3z\6z\u033c"+
"\nz\rz\16z\u033d\5z\u0340\nz\3{\3{\3{\3{\5{\u0346\n{\3|\3|\3|\7|\u034b"+
"\n|\f|\16|\u034e\13|\3|\3|\3|\3}\3}\3}\3}\6}\u0357\n}\r}\16}\u0358\3}"+
"\3}\3}\3}\3}\3~\3~\3~\5~\u0363\n~\3~\3~\3~\3\177\3\177\3\177\3\177\3\u0080"+
"\3\u0080\3\u0080\3\u0358\2\u0081\3\3\5\4\7\5\t\6\13\7\r\b\17\t\21\n\23"+
"\13\25\f\27\r\31\16\33\17\35\20\37\21!\22#\23%\24\'\25)\26+\27-\30/\31"+
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"\2\u035f\u0360\7B\2\2\u0360\u0361\7|\2\2\u0361\u0362\7r\2\2\u0362\u00fc"+
"\3\2\2\2\u0363\u0364\7]\2\2\u0364\u0365\7_\2\2\u0365\u00fe\3\2\2\2\26"+
"\2\u02ed\u02f8\u0304\u030a\u0312\u0314\u0318\u031a\u0320\u0327\u032a\u032f"+
"\u0335\u0337\u033d\u0342\u0344\u0350\u035a\7\2\3\2\b\2\2\3{\2\3|\3\3}"+
"\4";
public static final ATN _ATN =
new ATNDeserializer().deserialize(_serializedATN.toCharArray());
static {

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