forked from kscience/kmath
Add Buffer.asList()
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@ -8,6 +8,7 @@
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- Float32 geometries.
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- New Attributes-kt module that could be used as stand-alone. It declares. type-safe attributes containers.
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- Explicit `mutableStructureND` builders for mutable structures.
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- `Buffer.asList()` zero-copy transformation.
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### Changed
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- Default naming for algebra and buffers now uses IntXX/FloatXX notation instead of Java types.
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@ -101,32 +101,13 @@ public interface Buffer<out T> : WithSize, WithType<T> {
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}
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}
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/**
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* Creates a [Buffer] of given type [T]. If the type is primitive, specialized buffers are used ([Int32Buffer],
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* [Float64Buffer], etc.), [ListBuffer] is returned otherwise.
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*
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* The [size] is specified, and each element is calculated by calling the specified [initializer] function.
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*/
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@Suppress("UNCHECKED_CAST")
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public inline fun <reified T> Buffer(size: Int, initializer: (Int) -> T): Buffer<T> {
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val type = safeTypeOf<T>()
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return when (type.kType) {
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typeOf<Double>() -> MutableBuffer.double(size) { initializer(it) as Double } as Buffer<T>
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typeOf<Short>() -> MutableBuffer.short(size) { initializer(it) as Short } as Buffer<T>
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typeOf<Int>() -> MutableBuffer.int(size) { initializer(it) as Int } as Buffer<T>
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typeOf<Long>() -> MutableBuffer.long(size) { initializer(it) as Long } as Buffer<T>
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typeOf<Float>() -> MutableBuffer.float(size) { initializer(it) as Float } as Buffer<T>
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else -> List(size, initializer).asBuffer(type)
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}
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}
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/**
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* Creates a [Buffer] of given [type]. If the type is primitive, specialized buffers are used ([Int32Buffer],
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* [Float64Buffer], etc.), [ListBuffer] is returned otherwise.
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*
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* The [size] is specified, and each element is calculated by calling the specified [initializer] function.
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*/
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@Suppress("UNCHECKED_CAST")
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@Suppress("UNCHECKED_CAST", "DuplicatedCode")
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public fun <T> Buffer(
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type: SafeType<T>,
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size: Int,
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@ -140,6 +121,26 @@ public fun <T> Buffer(
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else -> List(size, initializer).asBuffer(type)
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}
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/**
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* Creates a [Buffer] of given type [T]. If the type is primitive, specialized buffers are used ([Int32Buffer],
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* [Float64Buffer], etc.), [ListBuffer] is returned otherwise.
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*
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* The [size] is specified, and each element is calculated by calling the specified [initializer] function.
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*/
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@Suppress("UNCHECKED_CAST", "DuplicatedCode")
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public inline fun <reified T> Buffer(size: Int, initializer: (Int) -> T): Buffer<T> {
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//code duplication here because we want to inline initializers
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val type = safeTypeOf<T>()
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return when (type.kType) {
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typeOf<Double>() -> MutableBuffer.double(size) { initializer(it) as Double } as Buffer<T>
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typeOf<Short>() -> MutableBuffer.short(size) { initializer(it) as Short } as Buffer<T>
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typeOf<Int>() -> MutableBuffer.int(size) { initializer(it) as Int } as Buffer<T>
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typeOf<Long>() -> MutableBuffer.long(size) { initializer(it) as Long } as Buffer<T>
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typeOf<Float>() -> MutableBuffer.float(size) { initializer(it) as Float } as Buffer<T>
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else -> List(size, initializer).asBuffer(type)
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}
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}
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/**
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* Returns an [IntRange] of the valid indices for this [Buffer].
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*/
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@ -0,0 +1,81 @@
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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.structures
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import kotlin.jvm.JvmInline
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@JvmInline
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private value class BufferList<T>(val buffer: Buffer<T>) : List<T> {
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override val size: Int get() = buffer.size
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override fun get(index: Int): T = buffer[index]
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override fun isEmpty(): Boolean = buffer.size == 0
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override fun iterator(): Iterator<T> = buffer.iterator()
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override fun listIterator(index: Int): ListIterator<T> = object : ListIterator<T> {
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var currentIndex = index
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override fun hasNext(): Boolean = currentIndex < buffer.size - 1
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override fun hasPrevious(): Boolean = currentIndex > 0
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override fun next(): T {
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if (!hasNext()) throw NoSuchElementException()
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return get(currentIndex++)
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}
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override fun nextIndex(): Int = currentIndex
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override fun previous(): T {
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if (!hasPrevious()) throw NoSuchElementException()
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return get(--currentIndex)
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}
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override fun previousIndex(): Int = currentIndex - 1
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}
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override fun listIterator(): ListIterator<T> = listIterator(0)
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override fun subList(fromIndex: Int, toIndex: Int): List<T> =
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buffer.slice(fromIndex..toIndex).asList()
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override fun lastIndexOf(element: T): Int {
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for (i in buffer.indices.reversed()) {
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if (buffer[i] == element) return i
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}
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return -1
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}
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override fun indexOf(element: T): Int {
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for (i in buffer.indices) {
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if (buffer[i] == element) return i
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}
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return -1
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}
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override fun containsAll(elements: Collection<T>): Boolean {
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val remainingElements = HashSet(elements)
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for (e in buffer) {
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if (e in remainingElements) {
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remainingElements.remove(e)
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}
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if (remainingElements.isEmpty()) {
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return true
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}
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}
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return false
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}
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override fun contains(element: T): Boolean = indexOf(element) >= 0
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}
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/**
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* Returns a zero-copy list that reflects the content of the buffer.
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*/
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public fun <T> Buffer<T>.asList(): List<T> = BufferList(this)
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@ -24,8 +24,6 @@ import space.kscience.attributes.safeTypeOf
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import space.kscience.kmath.UnstableKMathAPI
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import space.kscience.kmath.linear.*
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import space.kscience.kmath.linear.Matrix
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import space.kscience.kmath.nd.Structure2D
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import space.kscience.kmath.nd.StructureAttribute
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import space.kscience.kmath.nd.StructureFeature
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import space.kscience.kmath.operations.Float32Field
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import space.kscience.kmath.operations.Float64Field
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@ -80,6 +78,7 @@ public class EjmlFloatMatrix<out M : FMatrix>(override val origin: M) : EjmlMatr
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}
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/**
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* [EjmlLinearSpace] implementation based on [CommonOps_DDRM], [DecompositionFactory_DDRM] operations and
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* [DMatrixRMaj] matrices.
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@ -218,18 +217,6 @@ public object EjmlLinearSpaceDDRM : EjmlLinearSpace<Double, Float64Field, DMatri
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override fun Double.times(v: Point<Double>): EjmlDoubleVector<DMatrixRMaj> = v * this
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override fun <V, A : StructureAttribute<V>> computeAttribute(structure: Structure2D<Double>, attribute: A): V? {
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val origin = structure.toEjml().origin
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return when(attribute){
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Inverted -> {
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val res = origin.copy()
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CommonOps_DDRM.invert(res)
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res.wrapMatrix()
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}
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else->
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}
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}
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@UnstableKMathAPI
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override fun <F : StructureFeature> computeFeature(structure: Matrix<Double>, type: KClass<out F>): F? {
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structure.getFeature(type)?.let { return it }
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@ -330,7 +317,7 @@ public object EjmlLinearSpaceDDRM : EjmlLinearSpace<Double, Float64Field, DMatri
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}
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}
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import org.checkerframework.checker.guieffect.qual.SafeType
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/**
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* [EjmlLinearSpace] implementation based on [CommonOps_FDRM], [DecompositionFactory_FDRM] operations and
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@ -570,7 +557,7 @@ public object EjmlLinearSpaceFDRM : EjmlLinearSpace<Float, Float32Field, FMatrix
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}
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}
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import org.checkerframework.checker.guieffect.qual.SafeType
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/**
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* [EjmlLinearSpace] implementation based on [CommonOps_DSCC], [DecompositionFactory_DSCC] operations and
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@ -805,7 +792,7 @@ public object EjmlLinearSpaceDSCC : EjmlLinearSpace<Double, Float64Field, DMatri
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}
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}
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import org.checkerframework.checker.guieffect.qual.SafeType
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/**
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* [EjmlLinearSpace] implementation based on [CommonOps_FSCC], [DecompositionFactory_FSCC] operations and
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