0.3.1-dev-11 #510
@ -1,3 +1,5 @@
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import org.jetbrains.kotlin.gradle.tasks.KotlinJvmCompile
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plugins {
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kotlin("jvm")
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}
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@ -33,6 +35,8 @@ dependencies {
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implementation(project(":kmath-multik"))
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implementation("org.jetbrains.kotlinx:multik-default:$multikVersion")
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//datetime
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implementation("org.jetbrains.kotlinx:kotlinx-datetime:0.4.0")
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implementation("org.nd4j:nd4j-native:1.0.0-beta7")
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@ -46,9 +50,6 @@ dependencies {
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// } else
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implementation("org.nd4j:nd4j-native-platform:1.0.0-beta7")
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// multik implementation
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implementation("org.jetbrains.kotlinx:multik-default:0.1.0")
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implementation("org.slf4j:slf4j-simple:1.7.32")
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// plotting
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implementation("space.kscience:plotlykt-server:0.5.0")
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@ -62,7 +63,7 @@ kotlin.sourceSets.all {
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}
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}
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tasks.withType<org.jetbrains.kotlin.gradle.dsl.KotlinJvmCompile> {
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tasks.withType<KotlinJvmCompile> {
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kotlinOptions {
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jvmTarget = "11"
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freeCompilerArgs = freeCompilerArgs + "-Xjvm-default=all" + "-Xopt-in=kotlin.RequiresOptIn" + "-Xlambdas=indy"
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@ -0,0 +1,19 @@
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/*
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* Copyright 2018-2023 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/LICENSE.txt file.
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*/
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package space.kscience.kmath.stat
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import kotlinx.datetime.Instant
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import space.kscience.kmath.operations.algebra
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import space.kscience.kmath.operations.bufferAlgebra
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import space.kscience.kmath.series.MonotonicSeriesAlgebra
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import space.kscience.kmath.series.SeriesAlgebra
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import kotlin.time.Duration
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fun SeriesAlgebra.Companion.time(zero: Instant, step: Duration) = MonotonicSeriesAlgebra(
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bufferAlgebra = Double.algebra.bufferAlgebra,
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offsetToLabel = { zero + step * it },
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labelToOffset = { (it - zero) / step }
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)
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@ -0,0 +1,47 @@
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/*
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* Copyright 2018-2023 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/LICENSE.txt file.
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*/
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package space.kscience.kmath.series
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import space.kscience.kmath.operations.BufferAlgebra
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import space.kscience.kmath.operations.Ring
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import space.kscience.kmath.structures.Buffer
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import kotlin.math.ceil
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import kotlin.math.floor
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/**
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* A [SeriesAlgebra] with reverse label to index transformation.
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*
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* @param [labelToOffset] returns floating point number that is used for index resolution.
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*/
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public class MonotonicSeriesAlgebra<T, out A : Ring<T>, out BA : BufferAlgebra<T, A>, L : Comparable<L>>(
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bufferAlgebra: BA,
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offsetToLabel: (Int) -> L,
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private val labelToOffset: (L) -> Double,
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) : SeriesAlgebra<T, A, BA, L>(bufferAlgebra, offsetToLabel) {
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public val Buffer<T>.labelRange: ClosedRange<L> get() = offsetToLabel(startOffset)..offsetToLabel(startOffset + size)
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/**
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* An offset of the given [label] rounded down
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*/
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public fun floorOffset(label: L): Int = floor(labelToOffset(label)).toInt()
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/**
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* An offset of the given [label] rounded up
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*/
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public fun ceilOffset(label: L): Int = ceil(labelToOffset(label)).toInt()
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/**
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* Get value by label (rounded down) or return null if the value is outside series boundaries.
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*/
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public fun Buffer<T>.getByLabelOrNull(label: L): T? = getByOffsetOrNull(floorOffset(label))
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/**
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* Get value by label (rounded down) or throw [IndexOutOfBoundsException] if the value is outside series boundaries.
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*/
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public fun Buffer<T>.getByLabel(label: L): T = getByLabelOrNull(label)
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?: throw IndexOutOfBoundsException("Label $label is not in $labelRange")
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}
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@ -24,7 +24,9 @@ internal operator fun IntRange.contains(other: IntRange): Boolean = (other.first
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//TODO add permutation sort
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//TODO check rank statistics
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/**
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* A [Buffer] with an offset relative to the [SeriesAlgebra] zero.
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*/
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public interface Series<T> : Buffer<T> {
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public val origin: Buffer<T>
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@ -54,9 +56,9 @@ private class SeriesImpl<T>(
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/**
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* A scope to operation on series
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*/
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public class SeriesAlgebra<T, out A : Ring<T>, out BA : BufferAlgebra<T, A>, L>(
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public open class SeriesAlgebra<T, out A : Ring<T>, out BA : BufferAlgebra<T, A>, L>(
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override val bufferAlgebra: BA,
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private val labelResolver: (Int) -> L,
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public val offsetToLabel: (Int) -> L,
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) : RingOps<Buffer<T>>, StatisticalAlgebra<T, A, BA> {
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/**
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@ -107,20 +109,22 @@ public class SeriesAlgebra<T, out A : Ring<T>, out BA : BufferAlgebra<T, A>, L>(
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*/
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public val Buffer<T>.startOffset: Int get() = if (this is Series) position else 0
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public val Buffer<T>.startLabel: L get() = offsetToLabel(startOffset)
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/**
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* Build a new series positioned at [startOffset].
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*/
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public fun series(size: Int, startOffset: Int = 0, block: A.(label: L) -> T): Series<T> {
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return elementAlgebra.bufferFactory(size) {
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val index = it + startOffset
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elementAlgebra.block(labelResolver(index))
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elementAlgebra.block(offsetToLabel(index))
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}.moveTo(startOffset)
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}
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/**
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* Get a label buffer for given buffer.
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*/
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public val Buffer<T>.labels: List<L> get() = offsetIndices.map(labelResolver)
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public val Buffer<T>.labels: List<L> get() = offsetIndices.map(offsetToLabel)
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/**
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* Try to resolve element by label and return null if element with a given label is not found
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@ -187,6 +191,8 @@ public class SeriesAlgebra<T, out A : Ring<T>, out BA : BufferAlgebra<T, A>, L>(
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override fun add(left: Buffer<T>, right: Buffer<T>): Series<T> = left.zip(right) { l, r -> l + r }
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override fun multiply(left: Buffer<T>, right: Buffer<T>): Buffer<T> = left.zip(right) { l, r -> l * r }
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public companion object
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}
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public fun <T, A : Ring<T>, BA : BufferAlgebra<T, A>, L> BA.seriesAlgebra(labels: Iterable<L>): SeriesAlgebra<T, A, BA, L> {
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Block a user