pre-0.0.3 #46
@ -1,20 +1,7 @@
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package scientifik.kmath.operations
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/**
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* A general interface representing linear context of some kind.
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* The context defines sum operation for its elements and multiplication by real value.
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* One must note that in some cases context is a singleton class, but in some cases it
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* works as a context for operations inside it.
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*
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* TODO do we need non-commutative context?
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*/
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interface Space<T> {
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/**
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* Neutral element for sum operation
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*/
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val zero: T
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interface SpaceOperations<T> {
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/**
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* Addition operation for two context elements
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*/
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@ -35,21 +22,39 @@ interface Space<T> {
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operator fun Number.times(b: T) = b * this
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}
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/**
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* The same as {@link Space} but with additional multiplication operation
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*/
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interface Ring<T> : Space<T> {
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/**
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* neutral operation for multiplication
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*/
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val one: T
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/**
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* A general interface representing linear context of some kind.
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* The context defines sum operation for its elements and multiplication by real value.
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* One must note that in some cases context is a singleton class, but in some cases it
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* works as a context for operations inside it.
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*
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* TODO do we need non-commutative context?
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*/
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interface Space<T> : SpaceOperations<T> {
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/**
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* Neutral element for sum operation
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*/
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val zero: T
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}
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interface RingOperations<T> : SpaceOperations<T> {
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/**
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* Multiplication for two field elements
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*/
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fun multiply(a: T, b: T): T
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operator fun T.times(b: T): T = multiply(this, b)
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}
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/**
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* The same as {@link Space} but with additional multiplication operation
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*/
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interface Ring<T> : Space<T>, RingOperations<T> {
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/**
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* neutral operation for multiplication
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*/
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val one: T
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// operator fun T.plus(b: Number) = this.plus(b * one)
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// operator fun Number.plus(b: T) = b + this
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@ -59,11 +64,17 @@ interface Ring<T> : Space<T> {
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}
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/**
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* Four operations algebra
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* All ring operations but without neutral elements
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*/
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interface Field<T> : Ring<T> {
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interface FieldOperations<T> : RingOperations<T> {
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fun divide(a: T, b: T): T
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operator fun T.div(b: T): T = divide(this, b)
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}
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/**
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* Four operations algebra
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*/
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interface Field<T> : Ring<T>, FieldOperations<T> {
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operator fun Number.div(b: T) = this * divide(one, b)
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}
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