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118 lines
4.5 KiB
Kotlin
118 lines
4.5 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 prog8.ast.expressions.AddressOf
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import prog8.ast.expressions.IdentifierReference
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import prog8.ast.expressions.StringLiteralValue
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import prog8.ast.statements.FunctionCallStatement
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import prog8.ast.statements.Label
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import prog8.codegen.target.Cx16Target
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import prog8tests.helpers.*
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import kotlin.io.path.name
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/**
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* ATTENTION: this is just kludge!
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* They are not really unit tests, but rather tests of the whole process,
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* from source file loading all the way through to running 64tass.
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*/
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class TestCompilerOnImportsAndIncludes: FunSpec({
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context("Import") {
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test("testImportFromSameFolder") {
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val filepath = assumeReadableFile(fixturesDir, "importFromSameFolder.p8")
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assumeReadableFile(fixturesDir, "foo_bar.p8")
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val platform = Cx16Target
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val result = compileFile(platform, optimize = false, fixturesDir, filepath.name)
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.assertSuccess()
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val program = result.program
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val startSub = program.entrypoint
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val strLits = startSub.statements
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.filterIsInstance<FunctionCallStatement>()
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.map { it.args[0] as IdentifierReference }
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.map { it.targetVarDecl(program)!!.value as StringLiteralValue }
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strLits[0].value shouldBe "main.bar"
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strLits[1].value shouldBe "foo.bar"
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strLits[0].definingScope.name shouldBe "main"
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strLits[1].definingScope.name shouldBe "foo"
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}
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}
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context("AsmInclude") {
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test("testAsmIncludeFromSameFolder") {
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val filepath = assumeReadableFile(fixturesDir, "asmIncludeFromSameFolder.p8")
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assumeReadableFile(fixturesDir, "foo_bar.asm")
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val platform = Cx16Target
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val result = compileFile(platform, optimize = false, fixturesDir, filepath.name)
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.assertSuccess()
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val program = result.program
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val startSub = program.entrypoint
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val args = startSub.statements
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.filterIsInstance<FunctionCallStatement>()
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.map { it.args[0] }
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val str0 = (args[0] as IdentifierReference).targetVarDecl(program)!!.value as StringLiteralValue
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str0.value shouldBe "main.bar"
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str0.definingScope.name shouldBe "main"
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val id1 = (args[1] as AddressOf).identifier
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val lbl1 = id1.targetStatement(program) as Label
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lbl1.name shouldBe "foo_bar"
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lbl1.definingScope.name shouldBe "start"
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}
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}
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context("Asmbinary") {
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test("testAsmbinaryDirectiveWithNonExistingFile") {
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val p8Path = assumeReadableFile(fixturesDir, "asmBinaryNonExisting.p8")
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assumeNotExists(fixturesDir, "i_do_not_exist.bin")
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compileFile(Cx16Target, false, p8Path.parent, p8Path.name, outputDir)
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.assertFailure()
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}
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test("testAsmbinaryDirectiveWithNonReadableFile") {
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val p8Path = assumeReadableFile(fixturesDir, "asmBinaryNonReadable.p8")
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assumeDirectory(fixturesDir, "subFolder")
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compileFile(Cx16Target, false, p8Path.parent, p8Path.name, outputDir)
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.assertFailure()
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}
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val tests = listOf(
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Triple("same ", "asmBinaryFromSameFolder.p8", "do_nothing1.bin"),
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Triple("sub", "asmBinaryFromSubFolder.p8", "subFolder/do_nothing2.bin"),
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)
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tests.forEach {
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val (where, p8Str, binStr) = it
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test("%asmbinary from ${where}folder") {
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val p8Path = assumeReadableFile(fixturesDir, p8Str)
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// val binPath = assumeReadableFile(fixturesDir, binStr)
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// the bug we're testing for (#54) was hidden if outputDir == workingDir
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withClue("sanity check: workingDir and outputDir should not be the same folder") {
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outputDir.normalize().toAbsolutePath() shouldNotBe workingDir.normalize().toAbsolutePath()
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}
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compileFile(Cx16Target, false, p8Path.parent, p8Path.name, outputDir)
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.assertSuccess(
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"argument to assembler directive .binary " +
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"should be relative to the generated .asm file (in output dir), " +
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"NOT relative to .p8 neither current working dir"
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)
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}
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}
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}
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})
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