forked from kscience/kmath
Update KDoc comments, optimize imports
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@ -18,6 +18,7 @@ import kotlin.reflect.KClass
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* @param T the type of AsmExpression to unwrap.
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* @param T the type of AsmExpression to unwrap.
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* @param algebra the algebra the applied AsmExpressions use.
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* @param algebra the algebra the applied AsmExpressions use.
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* @param className the unique class name of new loaded class.
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* @param className the unique class name of new loaded class.
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* @param invokeLabel0Visitor the function to apply to this object when generating invoke method, label 0.
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*/
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*/
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internal class AsmBuilder<T> internal constructor(
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internal class AsmBuilder<T> internal constructor(
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private val classOfT: KClass<*>,
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private val classOfT: KClass<*>,
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@ -37,8 +38,19 @@ internal class AsmBuilder<T> internal constructor(
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*/
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*/
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private val classLoader: ClassLoader = ClassLoader(javaClass.classLoader)
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private val classLoader: ClassLoader = ClassLoader(javaClass.classLoader)
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/**
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* ASM Type for [algebra]
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*/
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private val tAlgebraType: Type = algebra::class.asm
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private val tAlgebraType: Type = algebra::class.asm
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/**
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* ASM type for [T]
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*/
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internal val tType: Type = classOfT.asm
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internal val tType: Type = classOfT.asm
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/**
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* ASM type for new class
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*/
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private val classType: Type = Type.getObjectType(className.replace(oldChar = '.', newChar = '/'))!!
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private val classType: Type = Type.getObjectType(className.replace(oldChar = '.', newChar = '/'))!!
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/**
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/**
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@ -60,14 +72,30 @@ internal class AsmBuilder<T> internal constructor(
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* Method visitor of `invoke` method of the subclass.
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* Method visitor of `invoke` method of the subclass.
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*/
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*/
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private lateinit var invokeMethodVisitor: InstructionAdapter
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private lateinit var invokeMethodVisitor: InstructionAdapter
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/**
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* State if [T] a primitive type, so [AsmBuilder] may generate direct primitive calls.
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*/
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internal var primitiveMode = false
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internal var primitiveMode = false
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@Suppress("PropertyName")
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/**
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internal var PRIMITIVE_MASK: Type = OBJECT_TYPE
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* Primitive type to apple for specific primitive calls. Use [OBJECT_TYPE], if not in [primitiveMode].
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*/
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internal var primitiveMask: Type = OBJECT_TYPE
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@Suppress("PropertyName")
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/**
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internal var PRIMITIVE_MASK_BOXED: Type = OBJECT_TYPE
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* Boxed primitive type to apple for specific primitive calls. Use [OBJECT_TYPE], if not in [primitiveMode].
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*/
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internal var primitiveMaskBoxed: Type = OBJECT_TYPE
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/**
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* Stack of useful objects types on stack to verify types.
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*/
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private val typeStack = Stack<Type>()
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private val typeStack = Stack<Type>()
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/**
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* Stack of useful objects types on stack expected by algebra calls.
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*/
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internal val expectationStack: Stack<Type> = Stack<Type>().apply { push(tType) }
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internal val expectationStack: Stack<Type> = Stack<Type>().apply { push(tType) }
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/**
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/**
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@ -86,8 +114,8 @@ internal class AsmBuilder<T> internal constructor(
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if (SIGNATURE_LETTERS.containsKey(classOfT)) {
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if (SIGNATURE_LETTERS.containsKey(classOfT)) {
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primitiveMode = true
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primitiveMode = true
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PRIMITIVE_MASK = SIGNATURE_LETTERS.getValue(classOfT)
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primitiveMask = SIGNATURE_LETTERS.getValue(classOfT)
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PRIMITIVE_MASK_BOXED = tType
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primitiveMaskBoxed = tType
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}
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}
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val classWriter = ClassWriter(ClassWriter.COMPUTE_FRAMES) {
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val classWriter = ClassWriter(ClassWriter.COMPUTE_FRAMES) {
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@ -238,34 +266,43 @@ internal class AsmBuilder<T> internal constructor(
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}
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}
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/**
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/**
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* Loads a constant from
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* Loads a [T] constant from [constants].
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*/
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*/
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internal fun loadTConstant(value: T) {
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internal fun loadTConstant(value: T) {
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if (classOfT in INLINABLE_NUMBERS) {
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if (classOfT in INLINABLE_NUMBERS) {
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val expectedType = expectationStack.pop()!!
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val expectedType = expectationStack.pop()!!
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val mustBeBoxed = expectedType.sort == Type.OBJECT
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val mustBeBoxed = expectedType.sort == Type.OBJECT
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loadNumberConstant(value as Number, mustBeBoxed)
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loadNumberConstant(value as Number, mustBeBoxed)
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if (mustBeBoxed) typeStack.push(tType) else typeStack.push(PRIMITIVE_MASK)
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if (mustBeBoxed) typeStack.push(tType) else typeStack.push(primitiveMask)
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return
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return
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}
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}
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loadConstant(value as Any, tType)
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loadConstant(value as Any, tType)
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}
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}
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/**
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* Boxes the current value and pushes it.
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*/
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private fun box(): Unit = invokeMethodVisitor.invokestatic(
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private fun box(): Unit = invokeMethodVisitor.invokestatic(
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tType.internalName,
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tType.internalName,
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"valueOf",
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"valueOf",
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Type.getMethodDescriptor(tType, PRIMITIVE_MASK),
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Type.getMethodDescriptor(tType, primitiveMask),
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false
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false
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)
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)
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/**
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* Unboxes the current boxed value and pushes it.
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*/
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private fun unbox(): Unit = invokeMethodVisitor.invokevirtual(
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private fun unbox(): Unit = invokeMethodVisitor.invokevirtual(
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NUMBER_TYPE.internalName,
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NUMBER_TYPE.internalName,
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NUMBER_CONVERTER_METHODS.getValue(PRIMITIVE_MASK),
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NUMBER_CONVERTER_METHODS.getValue(primitiveMask),
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Type.getMethodDescriptor(PRIMITIVE_MASK),
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Type.getMethodDescriptor(primitiveMask),
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false
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false
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)
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)
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/**
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* Loads [java.lang.Object] constant from constants.
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*/
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private fun loadConstant(value: Any, type: Type): Unit = invokeMethodVisitor.run {
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private fun loadConstant(value: Any, type: Type): Unit = invokeMethodVisitor.run {
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val idx = if (value in constants) constants.indexOf(value) else constants.apply { add(value) }.lastIndex
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val idx = if (value in constants) constants.indexOf(value) else constants.apply { add(value) }.lastIndex
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loadThis()
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loadThis()
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@ -275,6 +312,9 @@ internal class AsmBuilder<T> internal constructor(
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checkcast(type)
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checkcast(type)
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}
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}
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/**
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* Loads this variable.
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*/
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private fun loadThis(): Unit = invokeMethodVisitor.load(invokeThisVar, classType)
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private fun loadThis(): Unit = invokeMethodVisitor.load(invokeThisVar, classType)
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/**
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/**
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@ -344,7 +384,7 @@ internal class AsmBuilder<T> internal constructor(
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typeStack.push(tType)
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typeStack.push(tType)
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else {
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else {
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unbox()
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unbox()
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typeStack.push(PRIMITIVE_MASK)
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typeStack.push(primitiveMask)
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}
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}
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}
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}
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@ -393,7 +433,7 @@ internal class AsmBuilder<T> internal constructor(
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typeStack.push(tType)
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typeStack.push(tType)
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else {
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else {
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unbox()
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unbox()
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typeStack.push(PRIMITIVE_MASK)
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typeStack.push(primitiveMask)
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}
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}
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}
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}
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@ -404,7 +444,7 @@ internal class AsmBuilder<T> internal constructor(
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internal companion object {
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internal companion object {
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/**
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/**
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* Maps JVM primitive numbers boxed types to their letters of JVM signature convention.
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* Maps JVM primitive numbers boxed types to their primitive ASM types.
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*/
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*/
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private val SIGNATURE_LETTERS: Map<KClass<out Any>, Type> by lazy {
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private val SIGNATURE_LETTERS: Map<KClass<out Any>, Type> by lazy {
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hashMapOf(
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hashMapOf(
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@ -417,8 +457,14 @@ internal class AsmBuilder<T> internal constructor(
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)
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)
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}
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}
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/**
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* Maps JVM primitive numbers boxed ASM types to their primitive ASM types.
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*/
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private val BOXED_TO_PRIMITIVES: Map<Type, Type> by lazy { SIGNATURE_LETTERS.mapKeys { (k, _) -> k.asm } }
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private val BOXED_TO_PRIMITIVES: Map<Type, Type> by lazy { SIGNATURE_LETTERS.mapKeys { (k, _) -> k.asm } }
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/**
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* Maps primitive ASM types to [Number] functions unboxing them.
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*/
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private val NUMBER_CONVERTER_METHODS: Map<Type, String> by lazy {
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private val NUMBER_CONVERTER_METHODS: Map<Type, String> by lazy {
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hashMapOf(
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hashMapOf(
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Type.BYTE_TYPE to "byteValue",
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Type.BYTE_TYPE to "byteValue",
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@ -434,14 +480,41 @@ internal class AsmBuilder<T> internal constructor(
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* Provides boxed number types values of which can be stored in JVM bytecode constant pool.
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* Provides boxed number types values of which can be stored in JVM bytecode constant pool.
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*/
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*/
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private val INLINABLE_NUMBERS: Set<KClass<out Any>> by lazy { SIGNATURE_LETTERS.keys }
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private val INLINABLE_NUMBERS: Set<KClass<out Any>> by lazy { SIGNATURE_LETTERS.keys }
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/**
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* ASM type for [Expression].
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*/
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internal val EXPRESSION_TYPE: Type by lazy { Expression::class.asm }
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internal val EXPRESSION_TYPE: Type by lazy { Expression::class.asm }
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/**
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* ASM type for [java.lang.Number].
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*/
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internal val NUMBER_TYPE: Type by lazy { java.lang.Number::class.asm }
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internal val NUMBER_TYPE: Type by lazy { java.lang.Number::class.asm }
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/**
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* ASM type for [java.util.Map].
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*/
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internal val MAP_TYPE: Type by lazy { java.util.Map::class.asm }
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internal val MAP_TYPE: Type by lazy { java.util.Map::class.asm }
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/**
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* ASM type for [java.lang.Object].
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*/
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internal val OBJECT_TYPE: Type by lazy { java.lang.Object::class.asm }
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internal val OBJECT_TYPE: Type by lazy { java.lang.Object::class.asm }
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/**
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* ASM type for array of [java.lang.Object].
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*/
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@Suppress("PLATFORM_CLASS_MAPPED_TO_KOTLIN", "RemoveRedundantQualifierName")
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@Suppress("PLATFORM_CLASS_MAPPED_TO_KOTLIN", "RemoveRedundantQualifierName")
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internal val OBJECT_ARRAY_TYPE: Type by lazy { Array<java.lang.Object>::class.asm }
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internal val OBJECT_ARRAY_TYPE: Type by lazy { Array<java.lang.Object>::class.asm }
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/**
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* ASM type for [Algebra].
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*/
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internal val ALGEBRA_TYPE: Type by lazy { Algebra::class.asm }
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internal val ALGEBRA_TYPE: Type by lazy { Algebra::class.asm }
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/**
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* ASM type for [java.lang.String].
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*/
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internal val STRING_TYPE: Type by lazy { java.lang.String::class.asm }
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internal val STRING_TYPE: Type by lazy { java.lang.String::class.asm }
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}
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}
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}
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}
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@ -2,7 +2,6 @@ package scientifik.kmath.asm.internal
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import org.objectweb.asm.ClassWriter
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import org.objectweb.asm.ClassWriter
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import org.objectweb.asm.FieldVisitor
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import org.objectweb.asm.FieldVisitor
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import org.objectweb.asm.MethodVisitor
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internal inline fun ClassWriter(flags: Int, block: ClassWriter.() -> Unit): ClassWriter =
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internal inline fun ClassWriter(flags: Int, block: ClassWriter.() -> Unit): ClassWriter =
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ClassWriter(flags).apply(block)
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ClassWriter(flags).apply(block)
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@ -22,7 +22,7 @@ internal fun <T> AsmBuilder<T>.buildExpectationStack(context: Algebra<T>, name:
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val aName = methodNameAdapters[name] ?: name
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val aName = methodNameAdapters[name] ?: name
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val hasSpecific = context.javaClass.methods.find { it.name == aName && it.parameters.size == arity } != null
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val hasSpecific = context.javaClass.methods.find { it.name == aName && it.parameters.size == arity } != null
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val t = if (primitiveMode && hasSpecific) PRIMITIVE_MASK else tType
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val t = if (primitiveMode && hasSpecific) primitiveMask else tType
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repeat(arity) { expectationStack.push(t) }
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repeat(arity) { expectationStack.push(t) }
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return hasSpecific
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return hasSpecific
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@ -52,7 +52,7 @@ internal fun <T> AsmBuilder<T>.tryInvokeSpecific(context: Algebra<T>, name: Stri
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invokeAlgebraOperation(
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invokeAlgebraOperation(
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owner = owner,
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owner = owner,
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method = aName,
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method = aName,
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descriptor = Type.getMethodDescriptor(PRIMITIVE_MASK_BOXED, *Array(arity) { PRIMITIVE_MASK }),
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descriptor = Type.getMethodDescriptor(primitiveMaskBoxed, *Array(arity) { primitiveMask }),
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tArity = arity,
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tArity = arity,
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opcode = Opcodes.INVOKEVIRTUAL
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opcode = Opcodes.INVOKEVIRTUAL
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)
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)
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