Minor refactor and encapsulation
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@ -11,7 +11,7 @@ interface AsmExpression<T> {
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fun invoke(gen: AsmGenerationContext<T>)
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fun invoke(gen: AsmGenerationContext<T>)
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}
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}
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internal val methodNameAdapters = mapOf("+" to "add", "*" to "multiply", "/" to "divide")
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private val methodNameAdapters: Map<String, String> = mapOf("+" to "add", "*" to "multiply", "/" to "divide")
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internal fun <T> hasSpecific(context: Algebra<T>, name: String, arity: Int): Boolean {
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internal fun <T> hasSpecific(context: Algebra<T>, name: String, arity: Int): Boolean {
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val aName = methodNameAdapters[name] ?: name
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val aName = methodNameAdapters[name] ?: name
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@ -137,7 +137,9 @@ internal class AsmConstProductExpression<T>(
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gen.visitAlgebraOperation(
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gen.visitAlgebraOperation(
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owner = AsmGenerationContext.SPACE_OPERATIONS_CLASS,
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owner = AsmGenerationContext.SPACE_OPERATIONS_CLASS,
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method = "multiply",
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method = "multiply",
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descriptor = "(L${AsmGenerationContext.OBJECT_CLASS};L${AsmGenerationContext.NUMBER_CLASS};)L${AsmGenerationContext.OBJECT_CLASS};"
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descriptor = "(L${AsmGenerationContext.OBJECT_CLASS};" +
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"L${AsmGenerationContext.NUMBER_CLASS};)" +
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"L${AsmGenerationContext.OBJECT_CLASS};"
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)
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)
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}
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}
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}
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}
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@ -2,7 +2,7 @@ package scientifik.kmath.expressions
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import scientifik.kmath.operations.*
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import scientifik.kmath.operations.*
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internal class FunctionalUnaryOperation<T>(val context: Algebra<T>, val name: String, val expr: Expression<T>) :
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internal class FunctionalUnaryOperation<T>(val context: Algebra<T>, val name: String, private val expr: Expression<T>) :
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Expression<T> {
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Expression<T> {
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override fun invoke(arguments: Map<String, T>): T = context.unaryOperation(name, expr.invoke(arguments))
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override fun invoke(arguments: Map<String, T>): T = context.unaryOperation(name, expr.invoke(arguments))
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}
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}
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