mirror of
https://github.com/irmen/prog8.git
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220246278a
This greatly simplifies internal handling of builtin functions by always having one fixed return type.
477 lines
18 KiB
Kotlin
477 lines
18 KiB
Kotlin
package prog8tests
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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.string.shouldContain
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import io.kotest.matchers.types.instanceOf
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import prog8.ast.IFunctionCall
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import prog8.ast.Program
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import prog8.ast.expressions.*
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import prog8.ast.statements.Assignment
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import prog8.ast.statements.FunctionCallStatement
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import prog8.ast.statements.Pipe
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import prog8.ast.statements.VarDecl
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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.compiler.astprocessing.AstPreprocessor
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import prog8.parser.Prog8Parser.parseModule
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import prog8.code.core.SourceCode
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import prog8tests.helpers.*
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class TestPipes: FunSpec({
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test("pipe expression parse tree after preprocessing") {
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val text = """
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main {
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sub start() {
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uword xx = 9999 |> func1() |> func2()
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|> func1() |> func2()
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|> func1()
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}
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sub func1(uword arg) -> uword {
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return arg+1111
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}
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sub func2(uword arg) -> uword {
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return arg+2222
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}
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}"""
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val src = SourceCode.Text(text)
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val module = parseModule(src)
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val errors = ErrorReporterForTests()
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val program = Program("test", DummyFunctions, DummyMemsizer, DummyStringEncoder)
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program.addModule(module)
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val preprocess = AstPreprocessor(program, errors, C64Target())
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preprocess.visit(program)
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errors.errors.size shouldBe 0
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preprocess.applyModifications()
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program.entrypoint.statements.size shouldBe 1
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val pipe = (program.entrypoint.statements.single() as VarDecl).value as PipeExpression
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pipe.source shouldBe NumericLiteral(DataType.UWORD, 9999.0, Position.DUMMY)
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pipe.segments.size shouldBe 5
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var call = pipe.segments[0] as IFunctionCall
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call.target.nameInSource shouldBe listOf("func1")
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call.args.size shouldBe 0
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call = pipe.segments[1] as IFunctionCall
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call.target.nameInSource shouldBe listOf("func2")
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call.args.size shouldBe 0
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call = pipe.segments[2] as IFunctionCall
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call.target.nameInSource shouldBe listOf("func1")
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call.args.size shouldBe 0
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call = pipe.segments[3] as IFunctionCall
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call.target.nameInSource shouldBe listOf("func2")
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call.args.size shouldBe 0
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call = pipe.segments[4] as IFunctionCall
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call.target.nameInSource shouldBe listOf("func1")
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call.args.size shouldBe 0
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}
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test("pipe statement parse tree after preprocessing") {
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val text = """
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main {
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sub start() {
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9999 |> func1() |> func2()
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|> func1() |> func2()
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|> func3()
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}
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sub func1(uword arg) -> uword {
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return arg+1111
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}
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sub func2(uword arg) -> uword {
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return arg+2222
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}
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sub func3(uword arg) {
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; nothing
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}
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}"""
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val src = SourceCode.Text(text)
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val module = parseModule(src)
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val errors = ErrorReporterForTests()
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val program = Program("test", DummyFunctions, DummyMemsizer, DummyStringEncoder)
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program.addModule(module)
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val preprocess = AstPreprocessor(program, errors, C64Target())
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preprocess.visit(program)
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errors.errors.size shouldBe 0
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preprocess.applyModifications()
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program.entrypoint.statements.size shouldBe 1
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val pipe = program.entrypoint.statements.single() as Pipe
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pipe.source shouldBe NumericLiteral(DataType.UWORD, 9999.0, Position.DUMMY)
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pipe.segments.size shouldBe 5
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var call = pipe.segments[0] as IFunctionCall
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call.target.nameInSource shouldBe listOf("func1")
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call.args.size shouldBe 0
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call = pipe.segments[1] as IFunctionCall
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call.target.nameInSource shouldBe listOf("func2")
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call.args.size shouldBe 0
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call = pipe.segments[2] as IFunctionCall
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call.target.nameInSource shouldBe listOf("func1")
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call.args.size shouldBe 0
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call = pipe.segments[3] as IFunctionCall
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call.target.nameInSource shouldBe listOf("func2")
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call.args.size shouldBe 0
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call = pipe.segments[4] as IFunctionCall
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call.target.nameInSource shouldBe listOf("func3")
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call.args.size shouldBe 0
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}
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test("correct pipe statements (no opt)") {
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val text = """
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%import floats
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%import textio
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main {
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sub start() {
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1.234 |> addfloat()
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|> floats.print_f()
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startvalue(99) |> addword()
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|> txt.print_uw()
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9999 |> abs() |> txt.print_uw()
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9999 |> txt.print_uw()
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99 |> abs() |> lsb() |> txt.print_ub()
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99 |> txt.print_ub()
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}
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sub startvalue(ubyte arg) -> uword {
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return arg+9999
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}
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sub addfloat(float fl) -> float {
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return fl+2.22
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}
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sub addword(uword ww) -> uword {
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return ww+2222
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}
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}"""
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val result = compileText(C64Target(), optimize = false, text, writeAssembly = true)!!
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val stmts = result.program.entrypoint.statements
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stmts.size shouldBe 7
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val pipef = stmts[0] as Pipe
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pipef.source shouldBe instanceOf<NumericLiteral>()
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pipef.segments.size shouldBe 2
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var call = pipef.segments[0] as IFunctionCall
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call.target.nameInSource shouldBe listOf("addfloat")
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call = pipef.segments[1] as IFunctionCall
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call.target.nameInSource shouldBe listOf("floats", "print_f")
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val pipew = stmts[1] as Pipe
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pipef.source shouldBe instanceOf<NumericLiteral>()
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pipew.segments.size shouldBe 2
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call = pipew.segments[0] as IFunctionCall
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call.target.nameInSource shouldBe listOf("addword")
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call = pipew.segments[1] as IFunctionCall
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call.target.nameInSource shouldBe listOf("txt", "print_uw")
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stmts[2] shouldBe instanceOf<Pipe>()
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stmts[3] shouldBe instanceOf<Pipe>()
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stmts[4] shouldBe instanceOf<Pipe>()
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stmts[5] shouldBe instanceOf<Pipe>()
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}
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test("correct pipe statements (with opt)") {
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val text = """
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%import floats
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%import textio
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main {
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sub start() {
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1.234 |> addfloat()
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|> floats.print_f()
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startvalue(99) |> addword()
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|> txt.print_uw()
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; these should be optimized into just the function calls:
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9999 |> abs() |> txt.print_uw()
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9999 |> txt.print_uw()
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99 |> abs() |> txt.print_ub()
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99 |> txt.print_ub()
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}
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sub startvalue(ubyte arg) -> uword {
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return arg+9999
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}
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sub addfloat(float fl) -> float {
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return fl+2.22
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}
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sub addword(uword ww) -> uword {
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return ww+2222
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}
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}"""
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val result = compileText(C64Target(), optimize = true, text, writeAssembly = true)!!
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val stmts = result.program.entrypoint.statements
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stmts.size shouldBe 7
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val pipef = stmts[0] as Pipe
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pipef.source shouldBe instanceOf<FunctionCallExpression>()
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(pipef.source as IFunctionCall).target.nameInSource shouldBe listOf("addfloat")
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pipef.segments.size shouldBe 1
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val callf = pipef.segments[0] as IFunctionCall
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callf.target.nameInSource shouldBe listOf("floats", "print_f")
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val pipew = stmts[1] as Pipe
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pipef.source shouldBe instanceOf<FunctionCallExpression>()
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(pipew.source as IFunctionCall).target.nameInSource shouldBe listOf("startvalue")
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pipew.segments.size shouldBe 2
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val callw = pipew.segments[1] as IFunctionCall
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callw.target.nameInSource shouldBe listOf("txt", "print_uw")
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var stmt = stmts[2] as FunctionCallStatement
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stmt.target.nameInSource shouldBe listOf("txt", "print_uw")
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stmt = stmts[3] as FunctionCallStatement
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stmt.target.nameInSource shouldBe listOf("txt", "print_uw")
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stmt = stmts[4] as FunctionCallStatement
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stmt.target.nameInSource shouldBe listOf("txt", "print_ub")
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stmt = stmts[5] as FunctionCallStatement
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stmt.target.nameInSource shouldBe listOf("txt", "print_ub")
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}
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test("incorrect type in pipe statement") {
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val text = """
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%option enable_floats
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main {
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sub start() {
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1.234 |> addfloat()
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|> addword() |> addword()
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}
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sub addfloat(float fl) -> float {
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return fl+2.22
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}
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sub addword(uword ww) -> uword {
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return ww+2222
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}
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}"""
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val errors = ErrorReporterForTests()
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compileText(C64Target(), false, text, errors=errors) shouldBe null
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errors.errors.size shouldBe 1
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errors.errors[0] shouldContain "incompatible"
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}
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test("correct pipe expressions (no opt)") {
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val text = """
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%import floats
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%import textio
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main {
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sub start() {
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float @shared fl = 1.234 |> addfloat()
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|> addfloat()
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uword @shared ww = startvalue(99) |> addword()
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|> addword()
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ubyte @shared cc = 30 |> abs() |> sqrt16()
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cc = cc |> abs() |> sqrt16()
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}
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sub startvalue(ubyte arg) -> uword {
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return arg+9999
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}
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sub addfloat(float fl) -> float {
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return fl+2.22
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}
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sub addword(uword ww) -> uword {
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return ww+2222
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}
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}"""
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val result = compileText(C64Target(), optimize = false, text, writeAssembly = true)!!
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val stmts = result.program.entrypoint.statements
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stmts.size shouldBe 8
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val assignf = stmts[1] as Assignment
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val pipef = assignf.value as PipeExpression
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pipef.source shouldBe instanceOf<NumericLiteral>()
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pipef.segments.size shouldBe 2
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var call = pipef.segments[0] as IFunctionCall
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call.target.nameInSource shouldBe listOf("addfloat")
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call = pipef.segments[1] as IFunctionCall
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call.target.nameInSource shouldBe listOf("addfloat")
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val assignw = stmts[3] as Assignment
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val pipew = assignw.value as PipeExpression
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pipew.source shouldBe instanceOf<IFunctionCall>()
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pipew.segments.size shouldBe 2
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call = pipew.segments[0] as IFunctionCall
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call.target.nameInSource shouldBe listOf("addword")
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call = pipew.segments[1] as IFunctionCall
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call.target.nameInSource shouldBe listOf("addword")
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var assigncc = stmts[5] as Assignment
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val value = assigncc.value as PipeExpression
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value.source shouldBe NumericLiteral(DataType.UBYTE, 30.0, Position.DUMMY)
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value.segments.size shouldBe 2
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call = value.segments[0] as IFunctionCall
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call.target.nameInSource shouldBe listOf("abs")
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call = value.segments[1] as IFunctionCall
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call.target.nameInSource shouldBe listOf("sqrt16")
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assigncc = stmts[6] as Assignment
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val pipecc = assigncc.value as PipeExpression
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pipecc.source shouldBe instanceOf<IdentifierReference>()
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pipecc.segments.size shouldBe 2
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pipecc.segments[0] shouldBe instanceOf<BuiltinFunctionCall>()
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pipecc.segments[1] shouldBe instanceOf<BuiltinFunctionCall>()
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}
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test("correct pipe expressions (with opt)") {
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val text = """
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%import floats
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%import textio
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main {
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sub start() {
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float @shared fl = 1.234 |> addfloat()
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|> addfloat()
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uword @shared ww = startvalue(99) |> addword()
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|> addword()
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ubyte @shared cc = 80 |> abs() |> sqrt16() ; will be optimized away into a const number
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cc = cc |> abs() |> sqrt16()
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}
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sub startvalue(ubyte arg) -> uword {
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return arg+9999
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}
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sub addfloat(float fl) -> float {
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return fl+2.22
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}
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sub addword(uword ww) -> uword {
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return ww+2222
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}
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}
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"""
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val result = compileText(C64Target(), optimize = true, text, writeAssembly = true)!!
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val stmts = result.program.entrypoint.statements
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stmts.size shouldBe 8
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val assignf = stmts[1] as Assignment
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val pipef = assignf.value as PipeExpression
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pipef.source shouldBe instanceOf<FunctionCallExpression>()
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pipef.segments.size shouldBe 1
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pipef.segments[0] shouldBe instanceOf<FunctionCallExpression>()
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val assignw = stmts[3] as Assignment
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val pipew = assignw.value as PipeExpression
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pipew.source shouldBe instanceOf<FunctionCallExpression>()
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pipew.segments.size shouldBe 2
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pipew.segments[0] shouldBe instanceOf<FunctionCallExpression>()
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pipew.segments[1] shouldBe instanceOf<FunctionCallExpression>()
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var assigncc = stmts[5] as Assignment
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val value = assigncc.value as NumericLiteral
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value.number shouldBe 8.0
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assigncc = stmts[6] as Assignment
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val pipecc = assigncc.value as PipeExpression
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pipecc.source shouldBe instanceOf<BuiltinFunctionCall>()
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(pipecc.source as BuiltinFunctionCall).target.nameInSource shouldBe listOf("abs")
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pipecc.segments.size shouldBe 1
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pipecc.segments[0] shouldBe instanceOf<BuiltinFunctionCall>()
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(pipecc.segments[0] as BuiltinFunctionCall).target.nameInSource shouldBe listOf("sqrt16")
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}
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test("incorrect type in pipe expression") {
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val text = """
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%option enable_floats
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main {
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sub start() {
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uword result = 1.234 |> addfloat()
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|> addword() |> addword()
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}
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sub addfloat(float fl) -> float {
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return fl+2.22
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}
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sub addword(uword ww) -> uword {
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return ww+2222
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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(), false, text, errors=errors) shouldBe null
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errors.errors.size shouldBe 1
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errors.errors[0] shouldContain "incompatible"
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}
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test("correct pipe statement with builtin expression") {
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val text = """
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%import textio
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main {
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sub start() {
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uword ww = 9999
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ubyte bb = 99
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ww |> abs() |> txt.print_uw()
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bb |> abs() |> lsb() |> txt.print_ub()
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}
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}
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"""
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val result = compileText(C64Target(), true, text, writeAssembly = true)!!
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val stmts = result.program.entrypoint.statements
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stmts.size shouldBe 7
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val pipeww = stmts[4] as Pipe
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pipeww.source shouldBe instanceOf<BuiltinFunctionCall>()
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pipeww.segments.size shouldBe 1
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pipeww.segments[0] shouldBe instanceOf<IFunctionCall>()
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val pipebb = stmts[5] as Pipe
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pipebb.source shouldBe instanceOf<BuiltinFunctionCall>()
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pipebb.segments.size shouldBe 2
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pipebb.segments[0] shouldBe instanceOf<IFunctionCall>()
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pipebb.segments[1] shouldBe instanceOf<IFunctionCall>()
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}
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test("pipe statement with type errors") {
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val text = """
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%import textio
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main {
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sub start() {
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uword ww = 9999
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9999 |> abs() |> txt.print_ub()
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ww |> abs() |> txt.print_ub()
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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, text, writeAssembly = true, errors=errors) shouldBe null
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errors.errors.size shouldBe 2
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errors.errors[0] shouldContain "UWORD incompatible"
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errors.errors[1] shouldContain "UWORD incompatible"
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}
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test("pipe detects invalid number of args") {
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val text = """
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main {
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sub start() {
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uword ww = startvalue() |> addword()
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|> addword()
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ubyte cc = 30 |> abs(99) |> sqrt16(22)
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}
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sub startvalue(ubyte arg) -> uword {
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return arg+9999
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}
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sub addword(uword ww) -> uword {
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return ww+2222
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}
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}"""
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val errors = ErrorReporterForTests()
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compileText(C64Target(), optimize = false, text, writeAssembly = false, errors=errors) shouldBe null
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errors.errors.size shouldBe 3
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errors.errors[0] shouldContain ":4:32: invalid number of arguments"
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errors.errors[1] shouldContain ":7:42: invalid number of arguments"
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errors.errors[2] shouldContain ":7:56: invalid number of arguments"
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}
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})
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