Viktor prototype
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@ -4,7 +4,7 @@ import org.jetbrains.kotlin.gradle.tasks.KotlinCompile
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plugins {
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java
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kotlin("jvm")
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kotlin("plugin.allopen") version "1.3.60"
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kotlin("plugin.allopen") version "1.3.61"
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id("kotlinx.benchmark") version "0.2.0-dev-5"
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}
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@ -29,6 +29,7 @@ dependencies {
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implementation(project(":kmath-coroutines"))
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implementation(project(":kmath-commons"))
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implementation(project(":kmath-koma"))
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implementation(project(":kmath-viktor"))
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implementation("com.kyonifer:koma-core-ejml:0.12")
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implementation("org.jetbrains.kotlinx:kotlinx-io-jvm:${Scientifik.ioVersion}")
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@ -4,7 +4,13 @@ import kotlinx.coroutines.GlobalScope
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import scientifik.kmath.operations.RealField
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import kotlin.system.measureTimeMillis
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fun main(args: Array<String>) {
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internal inline fun measureAndPrint(title: String, block: () -> Unit) {
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val time = measureTimeMillis(block)
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println("$title completed in $time millis")
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}
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fun main() {
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val dim = 1000
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val n = 1000
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@ -15,8 +21,7 @@ fun main(args: Array<String>) {
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//A generic boxing field. It should be used for objects, not primitives.
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val genericField = NDField.boxing(RealField, dim, dim)
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val autoTime = measureTimeMillis {
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measureAndPrint("Automatic field addition") {
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autoField.run {
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var res = one
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repeat(n) {
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@ -25,18 +30,14 @@ fun main(args: Array<String>) {
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}
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}
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println("Automatic field addition completed in $autoTime millis")
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val elementTime = measureTimeMillis {
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measureAndPrint("Element addition"){
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var res = genericField.one
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repeat(n) {
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res += 1.0
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}
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}
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println("Element addition completed in $elementTime millis")
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val specializedTime = measureTimeMillis {
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measureAndPrint("Specialized addition") {
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specializedField.run {
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var res: NDBuffer<Double> = one
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repeat(n) {
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@ -45,10 +46,7 @@ fun main(args: Array<String>) {
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}
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}
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println("Specialized addition completed in $specializedTime millis")
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val lazyTime = measureTimeMillis {
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measureAndPrint("Lazy addition") {
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val res = specializedField.one.mapAsync(GlobalScope) {
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var c = 0.0
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repeat(n) {
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@ -60,9 +58,7 @@ fun main(args: Array<String>) {
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res.elements().forEach { it.second }
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}
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println("Lazy addition completed in $lazyTime millis")
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val genericTime = measureTimeMillis {
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measureAndPrint("Generic addition") {
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//genericField.run(action)
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genericField.run {
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var res: NDBuffer<Double> = one
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@ -72,6 +68,4 @@ fun main(args: Array<String>) {
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}
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}
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println("Generic addition completed in $genericTime millis")
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}
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@ -0,0 +1,42 @@
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package scientifik.kmath.structures
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import org.jetbrains.bio.viktor.F64Array
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import scientifik.kmath.operations.RealField
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import scientifik.kmath.viktor.ViktorNDField
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fun main() {
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val dim = 1000
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val n = 400
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// automatically build context most suited for given type.
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val autoField = NDField.auto(RealField, dim, dim)
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val viktorField = ViktorNDField(intArrayOf(dim, dim))
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measureAndPrint("Automatic field addition") {
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autoField.run {
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var res = one
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repeat(n) {
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res += 1.0
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}
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}
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}
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measureAndPrint("Raw Viktor") {
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val one = F64Array.full(init = 1.0, shape = *intArrayOf(dim, dim))
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var res = one
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repeat(n) {
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res = res + one
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}
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}
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measureAndPrint("Viktor field addition") {
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viktorField.run {
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var res = one
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repeat(n) {
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res += 1.0
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}
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}
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}
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}
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@ -9,6 +9,4 @@ dependencies {
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api(project(":kmath-coroutines"))
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api(project(":kmath-prob"))
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api("org.apache.commons:commons-math3:3.6.1")
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testImplementation("org.jetbrains.kotlin:kotlin-test")
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testImplementation("org.jetbrains.kotlin:kotlin-test-junit")
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}
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@ -2,7 +2,6 @@ package scientifik.kmath.structures
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import scientifik.kmath.operations.*
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interface ExtendedNDField<T : Any, F, N : NDStructure<T>> :
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NDField<T, F, N>,
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TrigonometricOperations<N>,
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10
kmath-viktor/build.gradle.kts
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10
kmath-viktor/build.gradle.kts
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@ -0,0 +1,10 @@
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plugins {
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id("scientifik.jvm")
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}
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description = "Binding for https://github.com/JetBrains-Research/viktor"
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dependencies {
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api(project(":kmath-core"))
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api("org.jetbrains.bio:viktor:1.0.1")
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}
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@ -0,0 +1,20 @@
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package scientifik.kmath.viktor
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import org.jetbrains.bio.viktor.F64FlatArray
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import scientifik.kmath.structures.MutableBuffer
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@Suppress("NOTHING_TO_INLINE", "OVERRIDE_BY_INLINE")
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inline class ViktorBuffer(val flatArray: F64FlatArray) : MutableBuffer<Double> {
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override val size: Int get() = flatArray.size
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override inline fun get(index: Int): Double = flatArray[index]
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override inline fun set(index: Int, value: Double) {
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flatArray[index] = value
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}
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override fun copy(): MutableBuffer<Double> {
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return ViktorBuffer(flatArray.copy().flatten())
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}
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override fun iterator(): Iterator<Double> = flatArray.data.iterator()
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}
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@ -0,0 +1,73 @@
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package scientifik.kmath.viktor
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import org.jetbrains.bio.viktor.F64Array
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import scientifik.kmath.operations.RealField
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import scientifik.kmath.structures.DefaultStrides
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import scientifik.kmath.structures.MutableNDStructure
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import scientifik.kmath.structures.NDField
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inline class ViktorNDStructure(val f64Buffer: F64Array) : MutableNDStructure<Double> {
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override val shape: IntArray get() = f64Buffer.shape
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override fun get(index: IntArray): Double = f64Buffer.get(*index)
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override fun set(index: IntArray, value: Double) {
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f64Buffer.set(value = value, indices = *index)
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}
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override fun elements(): Sequence<Pair<IntArray, Double>> {
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return DefaultStrides(shape).indices().map { it to get(it) }
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}
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}
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fun F64Array.asStructure(): ViktorNDStructure = ViktorNDStructure(this)
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class ViktorNDField(override val shape: IntArray) : NDField<Double, RealField, ViktorNDStructure> {
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override val zero: ViktorNDStructure
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get() = F64Array.full(init = 0.0, shape = *shape).asStructure()
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override val one: ViktorNDStructure
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get() = F64Array.full(init = 1.0, shape = *shape).asStructure()
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val strides = DefaultStrides(shape)
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override val elementContext: RealField get() = RealField
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override fun produce(initializer: RealField.(IntArray) -> Double): ViktorNDStructure = F64Array(*shape).apply {
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this@ViktorNDField.strides.indices().forEach { index ->
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set(value = RealField.initializer(index), indices = *index)
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}
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}.asStructure()
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override fun map(arg: ViktorNDStructure, transform: RealField.(Double) -> Double): ViktorNDStructure =
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F64Array(*shape).apply {
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this@ViktorNDField.strides.indices().forEach { index ->
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set(value = RealField.transform(arg[index]), indices = *index)
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}
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}.asStructure()
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override fun mapIndexed(
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arg: ViktorNDStructure,
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transform: RealField.(index: IntArray, Double) -> Double
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): ViktorNDStructure = F64Array(*shape).apply {
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this@ViktorNDField.strides.indices().forEach { index ->
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set(value = RealField.transform(index, arg[index]), indices = *index)
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}
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}.asStructure()
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override fun combine(
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a: ViktorNDStructure,
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b: ViktorNDStructure,
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transform: RealField.(Double, Double) -> Double
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): ViktorNDStructure = F64Array(*shape).apply {
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this@ViktorNDField.strides.indices().forEach { index ->
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set(value = RealField.transform(a[index], b[index]), indices = *index)
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}
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}.asStructure()
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override fun ViktorNDStructure.plus(b: ViktorNDStructure): ViktorNDStructure =
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(f64Buffer + b.f64Buffer).asStructure()
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override fun ViktorNDStructure.minus(b: ViktorNDStructure): ViktorNDStructure =
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(f64Buffer - b.f64Buffer).asStructure()
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}
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":kmath-coroutines",
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":kmath-histograms",
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":kmath-commons",
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":kmath-viktor",
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":kmath-koma",
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":kmath-prob",
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":kmath-io",
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