Add nd add benchmarks
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@ -36,6 +36,7 @@ kotlin {
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implementation(project(":kmath-dimensions"))
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implementation(project(":kmath-dimensions"))
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implementation(project(":kmath-for-real"))
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implementation(project(":kmath-for-real"))
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implementation(project(":kmath-jafama"))
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implementation(project(":kmath-jafama"))
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implementation(project(":kmath-tensors"))
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implementation("org.jetbrains.kotlinx:kotlinx-benchmark-runtime:0.3.1")
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implementation("org.jetbrains.kotlinx:kotlinx-benchmark-runtime:0.3.1")
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}
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}
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}
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}
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@ -81,6 +82,11 @@ benchmark {
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include("BufferBenchmark")
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include("BufferBenchmark")
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}
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}
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configurations.register("nd") {
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commonConfiguration()
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include("NDFieldBenchmark")
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}
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configurations.register("dot") {
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configurations.register("dot") {
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commonConfiguration()
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commonConfiguration()
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include("DotBenchmark")
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include("DotBenchmark")
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@ -12,44 +12,63 @@ import kotlinx.benchmark.State
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import space.kscience.kmath.nd.StructureND
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import space.kscience.kmath.nd.StructureND
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import space.kscience.kmath.nd.autoNdAlgebra
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import space.kscience.kmath.nd.autoNdAlgebra
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import space.kscience.kmath.nd.ndAlgebra
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import space.kscience.kmath.nd.ndAlgebra
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import space.kscience.kmath.nd4j.nd4j
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import space.kscience.kmath.operations.DoubleField
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import space.kscience.kmath.operations.DoubleField
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import space.kscience.kmath.structures.Buffer
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import space.kscience.kmath.structures.Buffer
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import space.kscience.kmath.tensors.core.DoubleTensor
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import space.kscience.kmath.tensors.core.ones
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import space.kscience.kmath.tensors.core.tensorAlgebra
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@State(Scope.Benchmark)
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@State(Scope.Benchmark)
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internal class NDFieldBenchmark {
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internal class NDFieldBenchmark {
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@Benchmark
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@Benchmark
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fun autoFieldAdd(blackhole: Blackhole) {
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fun autoFieldAdd(blackhole: Blackhole) = with(autoField) {
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with(autoField) {
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var res: StructureND<Double> = one
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var res: StructureND<Double> = one
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repeat(n) { res += one }
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repeat(n) { res += one }
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blackhole.consume(res)
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blackhole.consume(res)
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}
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}
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}
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@Benchmark
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@Benchmark
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fun specializedFieldAdd(blackhole: Blackhole) {
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fun specializedFieldAdd(blackhole: Blackhole) = with(specializedField) {
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with(specializedField) {
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var res: StructureND<Double> = one
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var res: StructureND<Double> = one
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repeat(n) { res += 1.0 }
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repeat(n) { res += 1.0 }
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blackhole.consume(res)
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blackhole.consume(res)
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}
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}
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}
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@Benchmark
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@Benchmark
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fun boxingFieldAdd(blackhole: Blackhole) {
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fun boxingFieldAdd(blackhole: Blackhole) = with(genericField) {
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with(genericField) {
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var res: StructureND<Double> = one
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var res: StructureND<Double> = one
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repeat(n) { res += 1.0 }
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repeat(n) { res += 1.0 }
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blackhole.consume(res)
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blackhole.consume(res)
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}
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}
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}
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@Benchmark
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fun tensorAdd(blackhole: Blackhole) = with(Double.tensorAlgebra) {
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var res: DoubleTensor = ones(dim, dim)
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repeat(n) { res = res + 1.0 }
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blackhole.consume(res)
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}
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@Benchmark
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fun tensorInPlaceAdd(blackhole: Blackhole) = with(Double.tensorAlgebra) {
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val res: DoubleTensor = ones(dim, dim)
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repeat(n) { res += 1.0 }
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blackhole.consume(res)
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}
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// @Benchmark
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// fun nd4jAdd(blackhole: Blackhole) = with(nd4jField) {
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// var res: StructureND<Double> = one
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// repeat(n) { res += 1.0 }
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// blackhole.consume(res)
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// }
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private companion object {
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private companion object {
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private const val dim = 1000
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private const val dim = 1000
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private const val n = 100
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private const val n = 100
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private val autoField = DoubleField.autoNdAlgebra(dim, dim)
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private val autoField = DoubleField.autoNdAlgebra(dim, dim)
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private val specializedField = DoubleField.ndAlgebra(dim, dim)
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private val specializedField = DoubleField.ndAlgebra(dim, dim)
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private val genericField = DoubleField.ndAlgebra(Buffer.Companion::boxing, dim, dim)
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private val genericField = DoubleField.ndAlgebra(Buffer.Companion::boxing, dim, dim)
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private val nd4jField = DoubleField.nd4j(dim, dim)
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}
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}
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}
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}
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@ -9,7 +9,7 @@ dependencies {
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api(project(":kmath-tensors"))
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api(project(":kmath-tensors"))
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api("org.nd4j:nd4j-api:1.0.0-M1")
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api("org.nd4j:nd4j-api:1.0.0-M1")
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testImplementation("org.nd4j:nd4j-native-platform:1.0.0-M1")
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testImplementation("org.nd4j:nd4j-native-platform:1.0.0-M1")
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testImplementation("org.slf4j:slf4j-simple:1.7.31")
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testImplementation("org.slf4j:slf4j-simple:1.7.32")
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}
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}
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readme {
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readme {
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@ -45,7 +45,6 @@ public sealed interface Nd4jArrayAlgebra<T, out C : Algebra<T>> : AlgebraND<T, C
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return struct
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return struct
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}
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}
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@PerformancePitfall
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override fun StructureND<T>.map(transform: C.(T) -> T): Nd4jArrayStructure<T> {
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override fun StructureND<T>.map(transform: C.(T) -> T): Nd4jArrayStructure<T> {
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val newStruct = ndArray.dup().wrap()
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val newStruct = ndArray.dup().wrap()
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newStruct.elements().forEach { (idx, value) -> newStruct[idx] = elementContext.transform(value) }
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newStruct.elements().forEach { (idx, value) -> newStruct[idx] = elementContext.transform(value) }
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@ -265,6 +264,8 @@ public class DoubleNd4jArrayField(override val shape: IntArray) : Nd4jArrayExten
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}
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}
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}
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}
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public fun DoubleField.nd4j(vararg shape: Int): DoubleNd4jArrayField = DoubleNd4jArrayField(intArrayOf(*shape))
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/**
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/**
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* Represents [FieldND] over [Nd4jArrayStructure] of [Float].
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* Represents [FieldND] over [Nd4jArrayStructure] of [Float].
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*/
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*/
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@ -158,7 +158,6 @@ public object DoubleNd4jTensorAlgebra : Nd4jTensorAlgebra<Double> {
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if (shape contentEquals intArrayOf(1)) ndArray.getDouble(0) else null
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if (shape contentEquals intArrayOf(1)) ndArray.getDouble(0) else null
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// TODO rewrite
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// TODO rewrite
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@PerformancePitfall
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override fun diagonalEmbedding(
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override fun diagonalEmbedding(
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diagonalEntries: Tensor<Double>,
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diagonalEntries: Tensor<Double>,
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offset: Int,
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offset: Int,
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@ -0,0 +1,8 @@
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/*
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* Copyright 2018-2021 KMath contributors.
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* Use of this source code is governed by the Apache 2.0 license that can be found in the LICENSE file.
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*/
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package space.kscience.kmath.tensors.core
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public fun DoubleTensorAlgebra.ones(vararg shape: Int): DoubleTensor = ones(intArrayOf(*shape))
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