Extended documentation, code refactoring, API consistency changes #125
@ -1,15 +1,62 @@
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package scientifik.kmath.operations
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package scientifik.kmath.operations
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/**
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* Returns the sum of all elements in the iterable in this [Space].
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*
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* @receiver the algebra that provides addition.
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* @param data the collection to sum up.
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* @return the sum.
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*/
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fun <T> Space<T>.sum(data: Iterable<T>): T = data.fold(zero) { left, right -> add(left, right) }
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fun <T> Space<T>.sum(data: Iterable<T>): T = data.fold(zero) { left, right -> add(left, right) }
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/**
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* Returns the sum of all elements in the sequence in this [Space].
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*
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* @receiver the algebra that provides addition.
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* @param data the collection to sum up.
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* @return the sum.
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*/
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fun <T> Space<T>.sum(data: Sequence<T>): T = data.fold(zero) { left, right -> add(left, right) }
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fun <T> Space<T>.sum(data: Sequence<T>): T = data.fold(zero) { left, right -> add(left, right) }
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/**
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* Returns the sum of all elements in the iterable in provided space.
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*
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* @receiver the collection to sum up.
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* @param space the algebra that provides addition.
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* @return the sum.
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*/
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fun <T : Any, S : Space<T>> Iterable<T>.sumWith(space: S): T = space.sum(this)
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fun <T : Any, S : Space<T>> Iterable<T>.sumWith(space: S): T = space.sum(this)
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//TODO optimized power operation
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//TODO optimized power operation
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fun <T> RingOperations<T>.power(arg: T, power: Int): T {
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/**
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* Raises [arg] to the natural power [power].
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*
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* @receiver the algebra to provide multiplication.
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* @param arg the base.
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* @param power the exponent.
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* @return the base raised to the power.
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*/
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fun <T> Ring<T>.power(arg: T, power: Int): T {
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require(power >= 0) { "The power can't be negative." }
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require(power != 0 || arg != zero) { "The $zero raised to $power is not defined." }
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if (power == 0) return one
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var res = arg
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var res = arg
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repeat(power - 1) {
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repeat(power - 1) { res *= arg }
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res *= arg
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}
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return res
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return res
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}
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}
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/**
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* Raises [arg] to the integer power [power].
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*
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* @receiver the algebra to provide multiplication and division.
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* @param arg the base.
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* @param power the exponent.
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* @return the base raised to the power.
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*/
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fun <T> Field<T>.power(arg: T, power: Int): T {
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require(power != 0 || arg != zero) { "The $zero raised to $power is not defined." }
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if (power == 0) return one
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if (power < 0) return one / (this as Ring<T>).power(arg, -power)
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return (this as Ring<T>).power(arg, power)
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}
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@ -143,7 +143,11 @@ interface PowerOperations<T> : Algebra<T> {
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}
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}
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/**
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/**
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* Raises [arg] to the power [pow].
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* Raises this element to the power [pow].
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*
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* @receiver the base.
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* @param power the exponent.
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* @return the base raised to the power.
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*/
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*/
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infix fun <T : MathElement<out PowerOperations<T>>> T.pow(power: Double): T = context.power(this, power)
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infix fun <T : MathElement<out PowerOperations<T>>> T.pow(power: Double): T = context.power(this, power)
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@ -4,13 +4,22 @@ import scientifik.kmath.operations.Complex
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import scientifik.kmath.operations.complex
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import scientifik.kmath.operations.complex
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import kotlin.reflect.KClass
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import kotlin.reflect.KClass
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/**
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* Function that produces [Buffer] from its size and function that supplies values.
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*
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* @param T the type of buffer.
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*/
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typealias BufferFactory<T> = (Int, (Int) -> T) -> Buffer<T>
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typealias BufferFactory<T> = (Int, (Int) -> T) -> Buffer<T>
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typealias MutableBufferFactory<T> = (Int, (Int) -> T) -> MutableBuffer<T>
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/**
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/**
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* A generic random access structure for both primitives and objects
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* Function that produces [MutableBuffer] from its size and function that supplies values.
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*
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* @param T the type of buffer.
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*/
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typealias MutableBufferFactory<T> = (Int, (Int) -> T) -> MutableBuffer<T>
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/**
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* A generic random-access structure for both primitives and objects.
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*/
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*/
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interface Buffer<T> {
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interface Buffer<T> {
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@ -69,12 +78,24 @@ interface Buffer<T> {
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}
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}
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}
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}
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/**
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* Creates a sequence that returns all elements from this [Buffer].
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*/
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fun <T> Buffer<T>.asSequence(): Sequence<T> = Sequence(::iterator)
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fun <T> Buffer<T>.asSequence(): Sequence<T> = Sequence(::iterator)
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/**
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* Creates an iterable that returns all elements from this [Buffer].
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*/
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fun <T> Buffer<T>.asIterable(): Iterable<T> = Iterable(::iterator)
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fun <T> Buffer<T>.asIterable(): Iterable<T> = Iterable(::iterator)
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val Buffer<*>.indices: IntRange get() = IntRange(0, size - 1)
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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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val Buffer<*>.indices: IntRange get() = 0 until size
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/**
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* A generic mutable random-access structure for both primitives and objects.
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*/
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interface MutableBuffer<T> : Buffer<T> {
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interface MutableBuffer<T> : Buffer<T> {
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operator fun set(index: Int, value: T)
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operator fun set(index: Int, value: T)
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@ -1,5 +1,10 @@
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package scientifik.kmath.structures
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package scientifik.kmath.structures
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/**
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* Specialized [MutableBuffer] implementation over [IntArray].
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*
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* @property array the underlying array.
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*/
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inline class IntBuffer(val array: IntArray) : MutableBuffer<Int> {
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inline class IntBuffer(val array: IntArray) : MutableBuffer<Int> {
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override val size: Int get() = array.size
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override val size: Int get() = array.size
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@ -16,4 +21,10 @@ inline class IntBuffer(val array: IntArray) : MutableBuffer<Int> {
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}
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}
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/**
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* Returns [IntBuffer] over this array.
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*
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* @receiver the array.
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* @return the new buffer.
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*/
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fun IntArray.asBuffer(): IntBuffer = IntBuffer(this)
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fun IntArray.asBuffer(): IntBuffer = IntBuffer(this)
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@ -5,7 +5,7 @@ import java.math.BigInteger
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import java.math.MathContext
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import java.math.MathContext
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/**
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/**
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* A field wrapper for Java [BigInteger]
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* A field over [BigInteger].
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*/
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*/
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object JBigIntegerField : Field<BigInteger> {
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object JBigIntegerField : Field<BigInteger> {
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override val zero: BigInteger
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override val zero: BigInteger
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@ -24,7 +24,9 @@ object JBigIntegerField : Field<BigInteger> {
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}
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}
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/**
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/**
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* A Field wrapper for Java [BigDecimal]
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* An abstract field over [BigDecimal].
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*
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* @property mathContext the [MathContext] to use.
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*/
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*/
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abstract class JBigDecimalFieldBase internal constructor(val mathContext: MathContext = MathContext.DECIMAL64) :
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abstract class JBigDecimalFieldBase internal constructor(val mathContext: MathContext = MathContext.DECIMAL64) :
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Field<BigDecimal>,
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Field<BigDecimal>,
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@ -50,6 +52,9 @@ abstract class JBigDecimalFieldBase internal constructor(val mathContext: MathCo
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}
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}
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/**
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* A field over [BigDecimal].
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*/
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class JBigDecimalField(mathContext: MathContext = MathContext.DECIMAL64) : JBigDecimalFieldBase(mathContext) {
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class JBigDecimalField(mathContext: MathContext = MathContext.DECIMAL64) : JBigDecimalFieldBase(mathContext) {
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companion object : JBigDecimalFieldBase()
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companion object : JBigDecimalFieldBase()
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}
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}
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