mirror of
https://github.com/irmen/prog8.git
synced 2024-11-29 17:50:35 +00:00
1087 lines
39 KiB
Kotlin
1087 lines
39 KiB
Kotlin
package prog8tests
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import io.kotest.assertions.withClue
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import io.kotest.core.spec.style.FunSpec
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import io.kotest.matchers.shouldBe
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import io.kotest.matchers.shouldNotBe
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import io.kotest.matchers.string.shouldContain
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import io.kotest.matchers.string.shouldStartWith
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import io.kotest.matchers.types.instanceOf
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import io.kotest.matchers.types.shouldBeSameInstanceAs
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import prog8.ast.ParentSentinel
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import prog8.ast.Program
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import prog8.ast.expressions.*
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import prog8.ast.statements.*
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import prog8.code.ast.PtAssignTarget
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import prog8.code.ast.PtAssignment
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import prog8.code.ast.PtFunctionCall
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import prog8.code.core.DataType
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import prog8.code.core.Position
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import prog8.code.target.C64Target
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import prog8.code.target.Cx16Target
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import prog8.code.target.VMTarget
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import prog8tests.helpers.*
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class TestOptimization: FunSpec({
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test("remove empty subroutine except start") {
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val sourcecode = """
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main {
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sub start() {
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}
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sub empty() {
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; going to be removed
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}
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}
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"""
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val result = compileText(C64Target(), true, sourcecode)!!
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val toplevelModule = result.compilerAst.toplevelModule
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val mainBlock = toplevelModule.statements.single() as Block
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val startSub = mainBlock.statements.single() as Subroutine
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result.compilerAst.entrypoint shouldBeSameInstanceAs startSub
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withClue("only start sub should remain") {
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startSub.name shouldBe "start"
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}
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withClue("compiler has inserted return in empty subroutines") {
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startSub.statements.single() shouldBe instanceOf<Return>()
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}
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}
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test("don't remove empty subroutine if it's referenced") {
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val sourcecode = """
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main {
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sub start() {
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uword xx = &empty
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xx++
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}
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sub empty() {
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; should not be removed
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}
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}
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"""
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val result = compileText(C64Target(), true, sourcecode)!!
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val toplevelModule = result.compilerAst.toplevelModule
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val mainBlock = toplevelModule.statements.single() as Block
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val startSub = mainBlock.statements[0] as Subroutine
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val emptySub = mainBlock.statements[1] as Subroutine
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result.compilerAst.entrypoint shouldBeSameInstanceAs startSub
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startSub.name shouldBe "start"
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emptySub.name shouldBe "empty"
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withClue("compiler has inserted return in empty subroutines") {
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emptySub.statements.single() shouldBe instanceOf<Return>()
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}
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}
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test("don't remove empty subroutine if it's referenced in vardecl") {
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val sourcecode = """
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main {
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ubyte tw = other.width()
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sub start() {
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tw++
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}
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}
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other {
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sub width() -> ubyte {
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cx16.r0++
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return 80
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}
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}"""
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compileText(C64Target(), true, sourcecode, writeAssembly = true) shouldNotBe null
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compileText(VMTarget(), true, sourcecode, writeAssembly = true) shouldNotBe null
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}
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test("generated constvalue from typecast inherits proper parent linkage") {
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val number = NumericLiteral(DataType.UBYTE, 11.0, Position.DUMMY)
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val tc = TypecastExpression(number, DataType.BYTE, false, Position.DUMMY)
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val program = Program("test", DummyFunctions, DummyMemsizer, DummyStringEncoder)
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tc.linkParents(ParentSentinel)
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tc.parent shouldNotBe null
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number.parent shouldNotBe null
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tc shouldBeSameInstanceAs number.parent
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val constvalue = tc.constValue(program)!!
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constvalue shouldBe instanceOf<NumericLiteral>()
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constvalue.number shouldBe 11.0
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constvalue.type shouldBe DataType.BYTE
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constvalue.parent shouldBeSameInstanceAs tc.parent
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}
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test("generated constvalue from prefixexpr inherits proper parent linkage") {
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val number = NumericLiteral(DataType.UBYTE, 11.0, Position.DUMMY)
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val pfx = PrefixExpression("-", number, Position.DUMMY)
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val program = Program("test", DummyFunctions, DummyMemsizer, DummyStringEncoder)
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pfx.linkParents(ParentSentinel)
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pfx.parent shouldNotBe null
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number.parent shouldNotBe null
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pfx shouldBeSameInstanceAs number.parent
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val constvalue = pfx.constValue(program)!!
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constvalue shouldBe instanceOf<NumericLiteral>()
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constvalue.number shouldBe -11.0
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constvalue.type shouldBe DataType.BYTE
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constvalue.parent shouldBeSameInstanceAs pfx.parent
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}
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test("various 'not' operator rewrites even without optimizations") {
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val src = """
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main {
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sub start() {
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bool @shared a1
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bool @shared a2
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a1 = not a1 ; a1 = not a1
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a1 = not not a1 ; a1 = a1, so removed totally
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a1 = not not not a1 ; a1 = not a1
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a1 = not a1 or not a2 ; a1 = not (a1 and a2)
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a1 = not a1 and not a2 ; a1 = not (a1 or a2)
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}
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}
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"""
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val result = compileText(C64Target(), false, src, writeAssembly = true)!!
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val stmts = result.compilerAst.entrypoint.statements
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stmts.size shouldBe 9
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val value1 = (stmts[4] as Assignment).value as PrefixExpression
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val value2 = (stmts[5] as Assignment).value as PrefixExpression
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val value3 = (stmts[6] as Assignment).value as PrefixExpression
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val value4 = (stmts[7] as Assignment).value as PrefixExpression
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value1.operator shouldBe "not"
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value2.operator shouldBe "not"
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value3.operator shouldBe "not"
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value4.operator shouldBe "not"
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value1.expression shouldBe instanceOf<IdentifierReference>()
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value2.expression shouldBe instanceOf<IdentifierReference>()
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(value3.expression as BinaryExpression).operator shouldBe "and"
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(value4.expression as BinaryExpression).operator shouldBe "or"
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}
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test("various 'not' operator rewrites with optimizations") {
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val src = """
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main {
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sub start() {
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bool @shared a1
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bool @shared a2
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a1 = not a1 ; a1 = not a1
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a1 = not not a1 ; a1 = a1, so removed totally
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a1 = not not not a1 ; a1 = not a1
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a1 = not a1 or not a2 ; a1 = not (a1 and a2)
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a1 = not a1 and not a2 ; a1 = not (a1 or a2)
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}
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}
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"""
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val result = compileText(C64Target(), true, src, writeAssembly = true)!!
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val stmts = result.compilerAst.entrypoint.statements
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stmts.size shouldBe 9
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val value1 = (stmts[4] as Assignment).value as PrefixExpression
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val value2 = (stmts[5] as Assignment).value as PrefixExpression
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val value3 = (stmts[6] as Assignment).value as PrefixExpression
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val value4 = (stmts[7] as Assignment).value as PrefixExpression
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value1.operator shouldBe "not"
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value2.operator shouldBe "not"
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value3.operator shouldBe "not"
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value4.operator shouldBe "not"
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value1.expression shouldBe instanceOf<IdentifierReference>()
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value2.expression shouldBe instanceOf<IdentifierReference>()
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(value3.expression as BinaryExpression).operator shouldBe "and"
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(value4.expression as BinaryExpression).operator shouldBe "or"
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}
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test("asmgen correctly deals with float typecasting in augmented assignment") {
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val src="""
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%import floats
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main {
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sub start() {
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ubyte ub
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float ff = 1.0
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ff += (ub as float) ; operator doesn't matter
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}
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}
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"""
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val result = compileText(C64Target(), optimize=false, src, writeAssembly = false)!!
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val assignFF = result.compilerAst.entrypoint.statements.last() as Assignment
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assignFF.isAugmentable shouldBe true
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assignFF.target.identifier!!.nameInSource shouldBe listOf("ff")
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val value = assignFF.value as BinaryExpression
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value.operator shouldBe "+"
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(value.left as? IdentifierReference)?.nameInSource shouldBe listOf("ff")
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value.right shouldBe instanceOf<TypecastExpression>()
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compileText(C64Target(), optimize=false, src, writeAssembly = true) shouldNotBe null
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}
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test("unused variable removal") {
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val src="""
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main {
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sub start() {
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ubyte unused ; removed
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ubyte @shared unused_but_shared ; this one should remain
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ubyte usedvar_only_written ; not removed because has multiple assignments
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usedvar_only_written=2
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usedvar_only_written++
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ubyte usedvar ; and this one remains too
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usedvar = msb(usedvar)
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}
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}
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"""
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val result = compileText(C64Target(), optimize=true, src, writeAssembly=false)!!
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result.compilerAst.entrypoint.statements.size shouldBe 7
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val alldecls = result.compilerAst.entrypoint.allDefinedSymbols.toList()
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alldecls.map { it.first } shouldBe listOf("unused_but_shared", "usedvar_only_written", "usedvar")
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}
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test("unused variable removal from subscope") {
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val src="""
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main {
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sub start() {
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if cx16.r0!=0 {
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uword xx ; to be removed
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cx16.r0 = 0
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}
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func2()
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sub func2() {
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uword yy ; to be removed
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yy=99 ; to be removed
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cx16.r0 = 0
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rol(cx16.r0)
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}
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}
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}"""
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val result = compileText(C64Target(), optimize=true, src, writeAssembly=false)!!
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result.compilerAst.entrypoint.statements.size shouldBe 3
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val ifstmt = result.compilerAst.entrypoint.statements[0] as IfElse
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ifstmt.truepart.statements.size shouldBe 1
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(ifstmt.truepart.statements[0] as Assignment).target.identifier!!.nameInSource shouldBe listOf("cx16", "r0")
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val func2 = result.compilerAst.entrypoint.statements[2] as Subroutine
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func2.statements.size shouldBe 2
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(func2.statements[0] as Assignment).target.identifier!!.nameInSource shouldBe listOf("cx16", "r0")
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}
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test("unused subroutine removal") {
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val src="""
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main {
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sub strip() {
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lstrip()
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}
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sub lstrip() {
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lstripped()
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}
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sub lstripped() {
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cx16.r0++
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evenmore()
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cx16.r1++
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}
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sub evenmore() {
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cx16.r1++
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cx16.r2++
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}
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sub start() {
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; nothing
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}
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}"""
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val result = compileText(C64Target(), optimize=true, src, writeAssembly=false)!!
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result.compilerAst.entrypoint.statements.size shouldBe 0
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result.compilerAst.entrypoint.definingScope.statements.size shouldBe 1
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}
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test("test simple augmented assignment optimization correctly initializes all variables") {
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val src="""
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main {
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sub start() {
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ubyte @shared z1
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z1 = 10
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ubyte @shared z2
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z2 = ~z2
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bool @shared z3
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z3 = not z3
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uword @shared z4
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z4 = (z4 as ubyte)
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ubyte @shared z5
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z5 = z1+z5+5
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ubyte @shared z6
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z6 = z1+z6-5
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}
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}"""
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val result = compileText(C64Target(), optimize=true, src, writeAssembly=false)!!
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/* expected:
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ubyte z1
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z1 = 10
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ubyte z2
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z2 = 255
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bool z3
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z3 = true
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uword z4
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z4 = 0
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ubyte z5
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z5 = z1 + 5
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ubyte z6
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z6 = z1 - 5
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*/
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val statements = result.compilerAst.entrypoint.statements
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statements.size shouldBe 12
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val z1decl = statements[0] as VarDecl
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val z1init = statements[1] as Assignment
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val z2decl = statements[2] as VarDecl
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val z2init = statements[3] as Assignment
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val z3decl = statements[4] as VarDecl
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val z3init = statements[5] as Assignment
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val z4decl = statements[6] as VarDecl
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val z4init = statements[7] as Assignment
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val z5decl = statements[8] as VarDecl
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val z5init = statements[9] as Assignment
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val z6decl = statements[10] as VarDecl
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val z6init = statements[11] as Assignment
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z1decl.name shouldBe "z1"
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z1init.value shouldBe NumericLiteral(DataType.UBYTE, 10.0, Position.DUMMY)
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z2decl.name shouldBe "z2"
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z2init.value shouldBe NumericLiteral(DataType.UBYTE, 255.0, Position.DUMMY)
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z3decl.name shouldBe "z3"
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z3init.value shouldBe NumericLiteral(DataType.BOOL, 1.0, Position.DUMMY)
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z4decl.name shouldBe "z4"
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z4init.value shouldBe NumericLiteral(DataType.UWORD, 0.0, Position.DUMMY)
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z5decl.name shouldBe "z5"
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(z5init.value as BinaryExpression).operator shouldBe "+"
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(z5init.value as BinaryExpression).right shouldBe NumericLiteral(DataType.UBYTE, 5.0, Position.DUMMY)
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z6decl.name shouldBe "z6"
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(z6init.value as BinaryExpression).operator shouldBe "-"
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(z6init.value as BinaryExpression).right shouldBe NumericLiteral(DataType.UBYTE, 5.0, Position.DUMMY)
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}
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test("force_output option should work with optimizing memwrite assignment") {
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val src="""
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main {
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%option force_output
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sub start() {
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uword @shared aa
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ubyte @shared zz
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@(aa) = zz + 32
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}
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}
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"""
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val result = compileText(C64Target(), optimize=true, src, writeAssembly=false)!!
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val stmts = result.compilerAst.entrypoint.statements
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stmts.size shouldBe 5
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val assign=stmts.last() as Assignment
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(assign.target.memoryAddress?.addressExpression as IdentifierReference).nameInSource shouldBe listOf("aa")
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}
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test("don't optimize memory writes away") {
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val src="""
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main {
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sub start() {
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uword @shared aa
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ubyte @shared zz
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@(aa) = zz + 32 ; do not optimize this away!
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}
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}
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"""
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val result = compileText(C64Target(), optimize=true, src, writeAssembly=false)!!
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val stmts = result.compilerAst.entrypoint.statements
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stmts.size shouldBe 5
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val assign=stmts.last() as Assignment
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(assign.target.memoryAddress?.addressExpression as IdentifierReference).nameInSource shouldBe listOf("aa")
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}
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test("correctly process constant prefix numbers") {
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val src="""
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main {
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sub start() {
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ubyte @shared z1 = 1
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ubyte @shared z2 = + 1
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ubyte @shared z3 = ~ 1
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bool @shared z4 = not 1
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byte @shared z5 = - 1
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}
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}
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"""
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val result = compileText(C64Target(), optimize=true, src, writeAssembly=false)!!
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val stmts = result.compilerAst.entrypoint.statements
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stmts.size shouldBe 10
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stmts.filterIsInstance<VarDecl>().size shouldBe 5
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stmts.filterIsInstance<Assignment>().size shouldBe 5
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}
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test("correctly process constant prefix numbers with type mismatch and give error") {
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val src="""
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main {
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sub start() {
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ubyte @shared z1 = - 200
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}
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}
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"""
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val errors = ErrorReporterForTests()
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compileText(C64Target(), optimize=false, src, writeAssembly=false, errors = errors) shouldBe null
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errors.errors.size shouldBe 2
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errors.errors[0] shouldContain "out of range"
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errors.errors[1] shouldContain "cannot assign word to byte"
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}
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test("out of range cast should give error") {
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val src="""
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main {
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sub start() {
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ubyte @shared z1 = - 200 as ubyte
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}
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}
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"""
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val errors = ErrorReporterForTests()
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compileText(C64Target(), optimize=false, src, writeAssembly=false, errors = errors) shouldBe null
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errors.errors.size shouldBe 1
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errors.errors[0] shouldContain "no cast"
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}
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test("test augmented expression asmgen") {
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val src = """
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main {
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sub start() {
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ubyte c
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ubyte r
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ubyte q
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r = (q+r)-c
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q=r
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r = q+(r-c)
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q=r
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}
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}"""
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val result = compileText(C64Target(), optimize=false, src, writeAssembly=true)!!
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result.compilerAst.entrypoint.statements.size shouldBe 11
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result.compilerAst.entrypoint.statements.last() shouldBe instanceOf<Return>()
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}
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test("keep the value initializer assignment if the next one depends on it") {
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val src="""
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main {
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sub start() {
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uword @shared yy
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yy = 20 ; ok to remove =0 initializer before this
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uword @shared zz
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zz += 60 ; NOT ok to remove initializer, should evaluate to 60
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ubyte @shared xx
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xx = 6+lsb(mkword(xx,22)) ; is not an initializer because it references xx
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}
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}
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"""
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val result = compileText(C64Target(), optimize=true, src, writeAssembly=false)!!
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/* expected result:
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uword yy
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yy = 20
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uword zz
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zz = 60
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ubyte xx
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xx = 0
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xx = abs(xx)
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xx += 6
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*/
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val stmts = result.compilerAst.entrypoint.statements
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stmts.size shouldBe 7
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stmts.filterIsInstance<VarDecl>().size shouldBe 3
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stmts.filterIsInstance<Assignment>().size shouldBe 4
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}
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|
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test("only substitue assignments with 0 after a =0 initializer if it is the same variable") {
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val src="""
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main {
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sub start() {
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uword @shared xx
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xx = xx + 20 ; is same var so can be changed just fine into xx=20
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uword @shared yy
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xx = 20
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yy = 0 ; is other var..
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xx = xx+10 ; so this should not be changed into xx=10
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}
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}"""
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val result = compileText(C64Target(), optimize=true, src, writeAssembly=false)!!
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|
/*
|
|
expected result:
|
|
uword xx
|
|
xx = 20
|
|
uword yy
|
|
yy = 0
|
|
xx = 20
|
|
yy = 0
|
|
xx += 10
|
|
*/
|
|
val stmts = result.compilerAst.entrypoint.statements
|
|
stmts.size shouldBe 7
|
|
stmts.filterIsInstance<VarDecl>().size shouldBe 2
|
|
stmts.filterIsInstance<Assignment>().size shouldBe 5
|
|
val assignXX1 = stmts[1] as Assignment
|
|
assignXX1.target.identifier!!.nameInSource shouldBe listOf("xx")
|
|
assignXX1.value shouldBe NumericLiteral(DataType.UWORD, 20.0, Position.DUMMY)
|
|
val assignXX2 = stmts.last() as Assignment
|
|
assignXX2.target.identifier!!.nameInSource shouldBe listOf("xx")
|
|
val xxValue = assignXX2.value as BinaryExpression
|
|
xxValue.operator shouldBe "+"
|
|
(xxValue.left as? IdentifierReference)?.nameInSource shouldBe listOf("xx")
|
|
xxValue.right shouldBe NumericLiteral(DataType.UWORD, 10.0, Position.DUMMY)
|
|
}
|
|
|
|
test("multi-comparison replaced by containment check") {
|
|
val src="""
|
|
main {
|
|
sub start() {
|
|
ubyte @shared source=99
|
|
ubyte @shared thingy=42
|
|
|
|
if source==3 or source==4 or source==99 or source==1
|
|
thingy++
|
|
}
|
|
}"""
|
|
val result = compileText(C64Target(), optimize=true, src, writeAssembly=false)!!
|
|
/*
|
|
expected result:
|
|
ubyte[] auto_heap_var = [1,4,99,3]
|
|
ubyte source
|
|
source = 99
|
|
ubyte thingy
|
|
thingy = 42
|
|
if source in auto_heap_var
|
|
thingy++
|
|
*/
|
|
val stmts = result.compilerAst.entrypoint.statements
|
|
stmts.size shouldBe 6
|
|
val ifStmt = stmts[5] as IfElse
|
|
val containment = ifStmt.condition as ContainmentCheck
|
|
(containment.element as IdentifierReference).nameInSource shouldBe listOf("source")
|
|
(containment.iterable as IdentifierReference).nameInSource.single() shouldStartWith "auto_heap_value"
|
|
val arrayDecl = stmts[0] as VarDecl
|
|
arrayDecl.isArray shouldBe true
|
|
arrayDecl.arraysize?.constIndex() shouldBe 4
|
|
val arrayValue = arrayDecl.value as ArrayLiteral
|
|
arrayValue.type shouldBe InferredTypes.InferredType.known(DataType.ARRAY_UB)
|
|
arrayValue.value shouldBe listOf(
|
|
NumericLiteral.optimalInteger(1, Position.DUMMY),
|
|
NumericLiteral.optimalInteger(3, Position.DUMMY),
|
|
NumericLiteral.optimalInteger(4, Position.DUMMY),
|
|
NumericLiteral.optimalInteger(99, Position.DUMMY))
|
|
}
|
|
|
|
test("invalid multi-comparison (not all equals) not replaced") {
|
|
val src="""
|
|
main {
|
|
sub start() {
|
|
ubyte @shared source=99
|
|
ubyte @shared thingy=42
|
|
|
|
if source==3 or source==4 or source!=99 or source==1
|
|
thingy++
|
|
}
|
|
}"""
|
|
val result = compileText(C64Target(), optimize=true, src, writeAssembly=false)!!
|
|
val stmts = result.compilerAst.entrypoint.statements
|
|
stmts.size shouldBe 5
|
|
val ifStmt = stmts[4] as IfElse
|
|
ifStmt.condition shouldBe instanceOf<BinaryExpression>()
|
|
}
|
|
|
|
test("invalid multi-comparison (not all same needle) not replaced") {
|
|
val src="""
|
|
main {
|
|
sub start() {
|
|
ubyte @shared source=99
|
|
ubyte @shared thingy=42
|
|
|
|
if source==3 or source==4 or thingy==99 or source==1
|
|
thingy++
|
|
}
|
|
}"""
|
|
val result = compileText(C64Target(), optimize=true, src, writeAssembly=false)!!
|
|
val stmts = result.compilerAst.entrypoint.statements
|
|
stmts.size shouldBe 5
|
|
val ifStmt = stmts[4] as IfElse
|
|
ifStmt.condition shouldBe instanceOf<BinaryExpression>()
|
|
}
|
|
|
|
test("invalid multi-comparison (not all or) not replaced") {
|
|
val src="""
|
|
main {
|
|
sub start() {
|
|
ubyte @shared source=99
|
|
ubyte @shared thingy=42
|
|
|
|
if source==3 or source==4 and source==99 or source==1
|
|
thingy++
|
|
}
|
|
}"""
|
|
val result = compileText(C64Target(), optimize=true, src, writeAssembly=false)!!
|
|
val stmts = result.compilerAst.entrypoint.statements
|
|
stmts.size shouldBe 5
|
|
val ifStmt = stmts[4] as IfElse
|
|
ifStmt.condition shouldBe instanceOf<BinaryExpression>()
|
|
}
|
|
|
|
test("pointer indexing inside other expression ok") {
|
|
val src="""
|
|
main{
|
|
sub start () {
|
|
uword @shared eRef
|
|
if eRef[3] & 10 ==0 {
|
|
return
|
|
}
|
|
}
|
|
}"""
|
|
val result = compileText(C64Target(), optimize=true, src, writeAssembly=false)!!
|
|
val stmts = result.compilerAst.entrypoint.statements
|
|
stmts.size shouldBe 3
|
|
}
|
|
|
|
test("repeated assignments to IO register should remain") {
|
|
val srcX16="""
|
|
main {
|
|
sub start() {
|
|
ubyte @shared xx
|
|
xx = 42
|
|
xx = 42 ; removed
|
|
xx = 42 ; removed
|
|
cx16.VERA_DATA0 = 0
|
|
cx16.VERA_DATA0 = 0
|
|
cx16.VERA_DATA0 = 0
|
|
@($9fff) = 0
|
|
@($9fff) = 0
|
|
@($9fff) = 0
|
|
return
|
|
}
|
|
}"""
|
|
var result = compileText(Cx16Target(), true, srcX16, writeAssembly = true)!!
|
|
var statements = result.compilerAst.entrypoint.statements
|
|
statements.size shouldBe 9
|
|
(statements[1] as Assignment).target.identifier!!.nameInSource shouldBe listOf("xx")
|
|
(statements[2] as Assignment).target.identifier!!.nameInSource shouldBe listOf("cx16", "VERA_DATA0")
|
|
(statements[3] as Assignment).target.identifier!!.nameInSource shouldBe listOf("cx16", "VERA_DATA0")
|
|
(statements[4] as Assignment).target.identifier!!.nameInSource shouldBe listOf("cx16", "VERA_DATA0")
|
|
(statements[5] as Assignment).target.memoryAddress!!.addressExpression.constValue(result.compilerAst)!!.number shouldBe 0x9fff
|
|
(statements[6] as Assignment).target.memoryAddress!!.addressExpression.constValue(result.compilerAst)!!.number shouldBe 0x9fff
|
|
(statements[7] as Assignment).target.memoryAddress!!.addressExpression.constValue(result.compilerAst)!!.number shouldBe 0x9fff
|
|
|
|
val srcC64="""
|
|
main {
|
|
sub start() {
|
|
ubyte @shared xx
|
|
xx = 42
|
|
xx = 42 ;removed
|
|
xx = 42 ;removed
|
|
c64.EXTCOL = 0
|
|
c64.EXTCOL = 0
|
|
c64.EXTCOL = 0
|
|
@(53281) = 0
|
|
@(53281) = 0
|
|
@(53281) = 0
|
|
return
|
|
}
|
|
}"""
|
|
result = compileText(C64Target(), true, srcC64, writeAssembly = true)!!
|
|
statements = result.compilerAst.entrypoint.statements
|
|
statements.size shouldBe 9
|
|
(statements[1] as Assignment).target.identifier!!.nameInSource shouldBe listOf("xx")
|
|
(statements[2] as Assignment).target.identifier!!.nameInSource shouldBe listOf("c64", "EXTCOL")
|
|
(statements[3] as Assignment).target.identifier!!.nameInSource shouldBe listOf("c64", "EXTCOL")
|
|
(statements[4] as Assignment).target.identifier!!.nameInSource shouldBe listOf("c64", "EXTCOL")
|
|
(statements[5] as Assignment).target.memoryAddress!!.addressExpression.constValue(result.compilerAst)!!.number shouldBe 53281.0
|
|
(statements[6] as Assignment).target.memoryAddress!!.addressExpression.constValue(result.compilerAst)!!.number shouldBe 53281.0
|
|
(statements[7] as Assignment).target.memoryAddress!!.addressExpression.constValue(result.compilerAst)!!.number shouldBe 53281.0
|
|
}
|
|
|
|
test("no crash on sorting unused array") {
|
|
val text="""
|
|
main {
|
|
ubyte[5] cards = [ 14, 6, 29, 16, 3 ]
|
|
|
|
sub start() {
|
|
sort(cards)
|
|
}
|
|
}"""
|
|
compileText(C64Target(), true, text, writeAssembly = false) shouldNotBe null
|
|
}
|
|
|
|
test("no string error when inlining") {
|
|
val text="""
|
|
main {
|
|
sub start() {
|
|
test()
|
|
}
|
|
|
|
sub test() {
|
|
cx16.r0 = "abc"
|
|
}
|
|
}"""
|
|
compileText(C64Target(), true, text, writeAssembly = false) shouldNotBe null
|
|
}
|
|
|
|
test("replacing string print by chrout with referenced string elsewhere shouldn't give string symbol error") {
|
|
val text="""
|
|
%import textio
|
|
|
|
main {
|
|
sub start() {
|
|
str key = "test"
|
|
txt.print(":")
|
|
if key != ":" {
|
|
cx16.r0++
|
|
}
|
|
}
|
|
}
|
|
"""
|
|
compileText(VMTarget(), true, text, writeAssembly = false) shouldNotBe null
|
|
}
|
|
|
|
test("sub only called by asm should not be optimized away") {
|
|
val src="""
|
|
main {
|
|
sub start() {
|
|
%asm{{
|
|
jsr p8s_test
|
|
}}
|
|
}
|
|
|
|
sub test() {
|
|
cx16.r0++
|
|
}
|
|
}"""
|
|
compileText(Cx16Target(), true, src, writeAssembly = true) shouldNotBe null
|
|
}
|
|
|
|
test("no crash for making var in removed/inlined subroutine fully scoped") {
|
|
val src="""
|
|
main {
|
|
sub start() {
|
|
test()
|
|
}
|
|
|
|
sub test() {
|
|
sub nested() {
|
|
ubyte counter
|
|
counter++
|
|
}
|
|
test2(main.test.nested.counter)
|
|
}
|
|
|
|
sub test2(ubyte value) {
|
|
value++
|
|
}
|
|
}"""
|
|
val errors = ErrorReporterForTests()
|
|
compileText(Cx16Target(), true, src, writeAssembly = false, errors = errors) shouldNotBe null
|
|
}
|
|
|
|
test("var to const") {
|
|
val src="""
|
|
main {
|
|
sub start() {
|
|
ubyte xx=10 ; to const
|
|
ubyte @shared yy=20 ; remain var
|
|
cx16.r0L = xx+yy
|
|
}
|
|
}"""
|
|
val errors = ErrorReporterForTests()
|
|
val result = compileText(Cx16Target(), true, src, writeAssembly = false, errors = errors)!!
|
|
val st = result.compilerAst.entrypoint.statements
|
|
st.size shouldBe 4
|
|
val xxConst = st[0] as VarDecl
|
|
xxConst.type shouldBe VarDeclType.CONST
|
|
xxConst.name shouldBe "xx"
|
|
(xxConst.value as? NumericLiteral)?.number shouldBe 10.0
|
|
(st[1] as VarDecl).type shouldBe VarDeclType.VAR
|
|
val expr = (st[3] as Assignment).value as BinaryExpression
|
|
(expr.left as? IdentifierReference)?.nameInSource shouldBe listOf("yy")
|
|
(expr.right as? NumericLiteral)?.number shouldBe 10.0
|
|
}
|
|
|
|
test("var to const inside typecast") {
|
|
val src="""
|
|
main {
|
|
uword variable ; will be made a const
|
|
|
|
sub start() {
|
|
cx16.r0 = msb(variable) as uword
|
|
}
|
|
}"""
|
|
compileText(VMTarget(), true, src, writeAssembly = false) shouldNotBe null
|
|
}
|
|
|
|
test("De Morgan's laws") {
|
|
val src="""
|
|
main {
|
|
sub start() {
|
|
bool @shared a1
|
|
bool @shared a2
|
|
|
|
if not a1 or not a2
|
|
cx16.r0++
|
|
if not a1 and not a2
|
|
cx16.r0++
|
|
|
|
if cx16.r0L==42 or not a2
|
|
cx16.r0L++
|
|
if not a2 or cx16.r0L==42
|
|
cx16.r0L++
|
|
|
|
}
|
|
}"""
|
|
val result = compileText(Cx16Target(), true, src, writeAssembly = false)!!
|
|
val st = result.compilerAst.entrypoint.statements
|
|
st.size shouldBe 8
|
|
val if1c = (st[4] as IfElse).condition as PrefixExpression
|
|
val if2c = (st[5] as IfElse).condition as PrefixExpression
|
|
val if3c = (st[6] as IfElse).condition as PrefixExpression
|
|
val if4c = (st[7] as IfElse).condition as PrefixExpression
|
|
if1c.operator shouldBe "not"
|
|
if2c.operator shouldBe "not"
|
|
if3c.operator shouldBe "not"
|
|
if4c.operator shouldBe "not"
|
|
(if1c.expression as BinaryExpression).operator shouldBe "and"
|
|
(if2c.expression as BinaryExpression).operator shouldBe "or"
|
|
(if3c.expression as BinaryExpression).operator shouldBe "and"
|
|
(if4c.expression as BinaryExpression).operator shouldBe "and"
|
|
}
|
|
|
|
test("absorption laws") {
|
|
val src="""
|
|
main {
|
|
sub start() {
|
|
bool @shared a
|
|
bool @shared b
|
|
|
|
if a or (a and b)
|
|
cx16.r0 ++
|
|
if a or (b and a)
|
|
cx16.r0 ++
|
|
if a and (a or b)
|
|
cx16.r0 ++
|
|
if a and (b or a)
|
|
cx16.r0 ++
|
|
|
|
if a and (b and a)
|
|
cx16.r0 ++
|
|
if a or (b or a)
|
|
cx16.r0 ++
|
|
if (b and a) and b
|
|
cx16.r0 ++
|
|
if (b or a) or b
|
|
cx16.r0 ++
|
|
}
|
|
}"""
|
|
val result = compileText(Cx16Target(), true, src, writeAssembly = false)!!
|
|
val st = result.compilerAst.entrypoint.statements
|
|
st.size shouldBe 12
|
|
val if1 = st[4] as IfElse
|
|
val if2 = st[5] as IfElse
|
|
val if3 = st[6] as IfElse
|
|
val if4 = st[7] as IfElse
|
|
(if1.condition as IdentifierReference).nameInSource shouldBe listOf("a")
|
|
(if2.condition as IdentifierReference).nameInSource shouldBe listOf("a")
|
|
(if3.condition as IdentifierReference).nameInSource shouldBe listOf("a")
|
|
(if4.condition as IdentifierReference).nameInSource shouldBe listOf("a")
|
|
val if5 = st[8] as IfElse
|
|
val if6 = st[9] as IfElse
|
|
val if7 = st[10] as IfElse
|
|
val if8 = st[11] as IfElse
|
|
val if5bc = if5.condition as BinaryExpression
|
|
val if6bc = if6.condition as BinaryExpression
|
|
val if7bc = if7.condition as BinaryExpression
|
|
val if8bc = if8.condition as BinaryExpression
|
|
if5bc.left shouldBe instanceOf<IdentifierReference>()
|
|
if5bc.right shouldBe instanceOf<IdentifierReference>()
|
|
if6bc.left shouldBe instanceOf<IdentifierReference>()
|
|
if6bc.right shouldBe instanceOf<IdentifierReference>()
|
|
if7bc.left shouldBe instanceOf<IdentifierReference>()
|
|
if7bc.right shouldBe instanceOf<IdentifierReference>()
|
|
if8bc.left shouldBe instanceOf<IdentifierReference>()
|
|
if8bc.right shouldBe instanceOf<IdentifierReference>()
|
|
}
|
|
|
|
test("funky bitshifts") {
|
|
val src="""
|
|
main {
|
|
sub start() {
|
|
const uword one = 1
|
|
const uword two = 2
|
|
uword @shared answer = one * two >> 8
|
|
funcw(one * two >> 8)
|
|
|
|
const uword uw1 = 99
|
|
const uword uw2 = 22
|
|
uword @shared answer2 = uw1 * uw2 >> 8 ; optimized into msb(uw1*uw2) as uword
|
|
funcw(uw1 * uw2 >> 8)
|
|
|
|
uword @shared uw3 = 99
|
|
uword @shared uw4 = 22
|
|
uword @shared answer3 = uw3 * uw4 >> 8 ; optimized into msb(uw1*uw2) as uword
|
|
funcw(uw3 * uw4 >> 8)
|
|
}
|
|
|
|
sub funcw(uword ww) {
|
|
cx16.r0++
|
|
}
|
|
|
|
}"""
|
|
|
|
val result = compileText(Cx16Target(), true, src, writeAssembly = false)!!
|
|
val st = result.compilerAst.entrypoint.statements
|
|
st.size shouldBe 17
|
|
|
|
val answerValue = (st[3] as Assignment).value
|
|
answerValue shouldBe NumericLiteral(DataType.UWORD, 0.0, Position.DUMMY)
|
|
|
|
val funcarg1 = (st[4] as FunctionCallStatement).args.single()
|
|
funcarg1 shouldBe NumericLiteral(DataType.UWORD, 0.0, Position.DUMMY)
|
|
|
|
val answer2Value = (st[8] as Assignment).value
|
|
answer2Value shouldBe NumericLiteral(DataType.UWORD, 8.0, Position.DUMMY)
|
|
|
|
val funcarg2 = (st[9] as FunctionCallStatement).args.single()
|
|
funcarg2 shouldBe NumericLiteral(DataType.UWORD, 8.0, Position.DUMMY)
|
|
|
|
val answer3ValueTc = (st[15] as Assignment).value as TypecastExpression
|
|
answer3ValueTc.type shouldBe DataType.UWORD
|
|
val answer3Value = answer3ValueTc.expression as FunctionCallExpression
|
|
answer3Value.target.nameInSource shouldBe listOf("msb")
|
|
answer3Value.args.single() shouldBe instanceOf<BinaryExpression>()
|
|
|
|
val funcarg3tc = (st[16] as FunctionCallStatement).args.single() as TypecastExpression
|
|
funcarg3tc.type shouldBe DataType.UWORD
|
|
val funcarg3 = funcarg3tc.expression as FunctionCallExpression
|
|
funcarg3.target.nameInSource shouldBe listOf("msb")
|
|
funcarg3.args.single() shouldBe instanceOf<BinaryExpression>()
|
|
}
|
|
|
|
test("no operand swap on logical expressions with shortcircuit evaluation") {
|
|
val src="""
|
|
%import diskio
|
|
%zeropage basicsafe
|
|
%option no_sysinit
|
|
|
|
main {
|
|
str scanline_buf = "?"* 20
|
|
|
|
sub start() {
|
|
if diskio.f_open("test.prg") and diskio.f_read(scanline_buf, 2)==2
|
|
cx16.r0++
|
|
|
|
if diskio.f_open("test.prg") or diskio.f_read(scanline_buf, 2)==2
|
|
cx16.r0++
|
|
|
|
if diskio.f_open("test.prg") xor diskio.f_read(scanline_buf, 2)==2
|
|
cx16.r0++
|
|
}
|
|
}"""
|
|
val result = compileText(Cx16Target(), true, src, writeAssembly = false)!!
|
|
val st = result.compilerAst.entrypoint.statements
|
|
st.size shouldBe 3
|
|
val ifCond1 = (st[0] as IfElse).condition as BinaryExpression
|
|
val ifCond2 = (st[1] as IfElse).condition as BinaryExpression
|
|
val ifCond3 = (st[2] as IfElse).condition as BinaryExpression
|
|
(ifCond1.left as FunctionCallExpression).target.nameInSource shouldBe listOf("diskio", "f_open")
|
|
(ifCond2.left as FunctionCallExpression).target.nameInSource shouldBe listOf("diskio", "f_open")
|
|
(ifCond3.left as FunctionCallExpression).target.nameInSource shouldBe listOf("diskio", "f_open")
|
|
val right1 = ifCond1.right as BinaryExpression
|
|
val right2 = ifCond2.right as BinaryExpression
|
|
val right3 = ifCond3.right as BinaryExpression
|
|
(right1.left as FunctionCallExpression).target.nameInSource shouldBe listOf("diskio", "f_read")
|
|
(right2.left as FunctionCallExpression).target.nameInSource shouldBe listOf("diskio", "f_read")
|
|
(right3.left as FunctionCallExpression).target.nameInSource shouldBe listOf("diskio", "f_read")
|
|
}
|
|
|
|
test("eliminate same target register assignments") {
|
|
val src="""
|
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%zeropage basicsafe
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%option no_sysinit
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main {
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romsub ${'$'}2000 = func1() clobbers(X) -> ubyte @A, word @R0, byte @R1
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romsub ${'$'}3000 = func2() clobbers(X) -> ubyte @A, uword @R0, uword @R1
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romsub ${'$'}4000 = func3() clobbers(X) -> ubyte @R0
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sub start() {
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bool flag
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void cbm.GETIN()
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flag, cx16.r1L = cbm.GETIN()
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void, cx16.r0s, cx16.r1sL = func1()
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void, cx16.r2, cx16.r1 = func2()
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cx16.r0L = func3()
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cx16.r0H = func3()
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}
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}"""
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val result = compileText(C64Target(), true, src, writeAssembly = true)!!
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val st = result.codegenAst!!.entrypoint()!!.children
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st.size shouldBe 9
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(st[2] as PtFunctionCall).name shouldBe "cbm.GETIN"
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(st[2] as PtFunctionCall).void shouldBe true
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val a1 = st[3] as PtAssignment
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(a1.value as PtFunctionCall).name shouldBe "cbm.GETIN"
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a1.multiTarget shouldBe true
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a1.children.size shouldBe 3
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(a1.children[0] as PtAssignTarget).void shouldBe false
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(a1.children[0] as PtAssignTarget).identifier!!.name shouldBe "p8b_main.p8s_start.p8v_flag"
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(a1.children[1] as PtAssignTarget).void shouldBe false
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(a1.children[1] as PtAssignTarget).identifier!!.name shouldBe "cx16.r1L"
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(st[4] as PtFunctionCall).name shouldBe "p8b_main.p8s_func1"
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(st[4] as PtFunctionCall).void shouldBe true
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val a2 = st[5] as PtAssignment
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(a2.value as PtFunctionCall).name shouldBe "p8b_main.p8s_func2"
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a2.multiTarget shouldBe true
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a2.children.size shouldBe 4
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(a2.children[0] as PtAssignTarget).void shouldBe true
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(a2.children[1] as PtAssignTarget).void shouldBe false
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(a2.children[1] as PtAssignTarget).identifier!!.name shouldBe "cx16.r2"
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(a2.children[2] as PtAssignTarget).void shouldBe true
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(st[6] as PtFunctionCall).name shouldBe "p8b_main.p8s_func3"
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(st[6] as PtFunctionCall).void shouldBe true
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val a3 = st[7] as PtAssignment
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(a3.value as PtFunctionCall).name shouldBe "p8b_main.p8s_func3"
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a3.multiTarget shouldBe false
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a3.children.size shouldBe 2
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(a3.children[0] as PtAssignTarget).void shouldBe false
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(a3.children[0] as PtAssignTarget).identifier!!.name shouldBe "cx16.r0H"
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}
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test("symbol table correct in asmgen after earlier optimization steps") {
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val src="""
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main {
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sub start() {
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uword @shared bulletRef, enemyRef
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const ubyte BD_Y = 10
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const ubyte EN_Y = 11
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if bulletRef[BD_Y] == enemyRef[EN_Y] or bulletRef[BD_Y] == enemyRef[EN_Y] + 1 {
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cx16.r0++
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}
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}
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}"""
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compileText(VMTarget(), true, src, writeAssembly = true) shouldNotBe null
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compileText(C64Target(), true, src, writeAssembly = true) shouldNotBe null
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}
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xtest("optimizing inlined functions must reference proper scopes") {
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val src="""
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main {
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sub start() {
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other.sub1()
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}
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}
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other {
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sub sub2() {
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cx16.r0++
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cx16.r1++
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}
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sub sub1() {
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sub2()
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}
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}"""
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compileText(VMTarget(), true, src, writeAssembly = true) shouldNotBe null
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compileText(C64Target(), true, src, writeAssembly = true) shouldNotBe null
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}
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})
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