forked from kscience/kmath
Refactoring
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@ -26,6 +26,9 @@ public class DerivativeStructureField(
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public inner class DerivativeStructureSymbol(symbol: Symbol, value: Double) :
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DerivativeStructure(bindings.size, order, bindings.keys.indexOf(symbol), value), Symbol {
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override val identity: String = symbol.identity
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override fun toString(): String = identity
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override fun equals(other: Any?): Boolean = this.identity == (other as? Symbol)?.identity
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override fun hashCode(): Int = identity.hashCode()
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}
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/**
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@ -0,0 +1,21 @@
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package kscience.kmath.expressions
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/**
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* And object that could be differentiated
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*/
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public interface Differentiable<T> {
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public fun derivative(orders: Map<Symbol, Int>): T
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}
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public interface DifferentiableExpression<T> : Differentiable<Expression<T>>, Expression<T>
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public fun <T> DifferentiableExpression<T>.derivative(vararg orders: Pair<Symbol, Int>): Expression<T> =
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derivative(mapOf(*orders))
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public fun <T> DifferentiableExpression<T>.derivative(symbol: Symbol): Expression<T> = derivative(symbol to 1)
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public fun <T> DifferentiableExpression<T>.derivative(name: String): Expression<T> = derivative(StringSymbol(name) to 1)
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//public interface DifferentiableExpressionBuilder<T, E, A : ExpressionAlgebra<T, E>>: ExpressionBuilder<T,E,A> {
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// public override fun expression(block: A.() -> E): DifferentiableExpression<T>
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//}
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@ -56,21 +56,6 @@ public operator fun <T> Expression<T>.invoke(vararg pairs: Pair<Symbol, T>): T =
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public operator fun <T> Expression<T>.invoke(vararg pairs: Pair<String, T>): T =
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invoke(mapOf(*pairs).mapKeys { StringSymbol(it.key) })
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/**
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* And object that could be differentiated
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*/
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public interface Differentiable<T> {
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public fun derivative(orders: Map<Symbol, Int>): T
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}
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public interface DifferentiableExpression<T> : Differentiable<Expression<T>>, Expression<T>
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public fun <T> DifferentiableExpression<T>.derivative(vararg orders: Pair<Symbol, Int>): Expression<T> =
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derivative(mapOf(*orders))
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public fun <T> DifferentiableExpression<T>.derivative(symbol: Symbol): Expression<T> = derivative(symbol to 1)
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public fun <T> DifferentiableExpression<T>.derivative(name: String): Expression<T> = derivative(StringSymbol(name) to 1)
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/**
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* A context for expression construction
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@ -96,6 +81,10 @@ public interface ExpressionAlgebra<in T, E> : Algebra<E> {
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public fun const(value: T): E
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}
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//public interface ExpressionBuilder<T, E, A : ExpressionAlgebra<T, E>> {
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// public fun expression(block: A.() -> E): Expression<T>
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//}
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/**
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* Bind a given [Symbol] to this context variable and produce context-specific object.
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*/
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@ -7,8 +7,9 @@ import kscience.kmath.operations.*
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*
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* @param algebra The algebra to provide for Expressions built.
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*/
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public abstract class FunctionalExpressionAlgebra<T, A : Algebra<T>>(public val algebra: A) :
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ExpressionAlgebra<T, Expression<T>> {
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public abstract class FunctionalExpressionAlgebra<T, A : Algebra<T>>(
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public val algebra: A,
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) : ExpressionAlgebra<T, Expression<T>> {
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/**
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* Builds an Expression of constant expression which does not depend on arguments.
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*/
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@ -15,11 +15,11 @@ import kotlin.contracts.contract
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public open class AutoDiffValue<out T>(public val value: T)
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/**
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* Represents result of [withAutoDiff] call.
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* Represents result of [simpleAutoDiff] call.
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*
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* @param T the non-nullable type of value.
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* @param value the value of result.
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* @property withAutoDiff The mapping of differentiated variables to their derivatives.
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* @property simpleAutoDiff The mapping of differentiated variables to their derivatives.
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* @property context The field over [T].
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*/
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public class DerivationResult<T : Any>(
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@ -62,7 +62,7 @@ public fun <T : Any> DerivationResult<T>.grad(vararg variables: Symbol): Point<T
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* @param body the action in [AutoDiffField] context returning [AutoDiffVariable] to differentiate with respect to.
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* @return the result of differentiation.
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*/
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public fun <T : Any, F : Field<T>> F.withAutoDiff(
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public fun <T : Any, F : Field<T>> F.simpleAutoDiff(
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bindings: Map<Symbol, T>,
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body: AutoDiffField<T, F>.() -> AutoDiffValue<T>,
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): DerivationResult<T> {
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@ -71,10 +71,10 @@ public fun <T : Any, F : Field<T>> F.withAutoDiff(
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return AutoDiffContext(this, bindings).derivate(body)
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}
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public fun <T : Any, F : Field<T>> F.withAutoDiff(
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public fun <T : Any, F : Field<T>> F.simpleAutoDiff(
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vararg bindings: Pair<Symbol, T>,
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body: AutoDiffField<T, F>.() -> AutoDiffValue<T>,
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): DerivationResult<T> = withAutoDiff(bindings.toMap(), body)
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): DerivationResult<T> = simpleAutoDiff(bindings.toMap(), body)
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/**
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* Represents field in context of which functions can be derived.
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@ -136,7 +136,7 @@ private class AutoDiffContext<T : Any, F : Field<T>>(
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override val one: AutoDiffValue<T> get() = const(context.one)
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/**
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* Differentiable variable with value and derivative of differentiation ([withAutoDiff]) result
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* Differentiable variable with value and derivative of differentiation ([simpleAutoDiff]) result
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* with respect to this variable.
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*
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* @param T the non-nullable type of value.
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@ -148,6 +148,8 @@ private class AutoDiffContext<T : Any, F : Field<T>>(
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var d: T,
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) : AutoDiffValue<T>(value), Symbol{
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override fun toString(): String = identity
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override fun equals(other: Any?): Boolean = this.identity == (other as? Symbol)?.identity
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override fun hashCode(): Int = identity.hashCode()
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}
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private val bindings: Map<String, AutoDiffVariableWithDeriv<T>> = bindings.entries.associate {
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@ -10,21 +10,17 @@ import kotlin.test.assertEquals
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import kotlin.test.assertTrue
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class SimpleAutoDiffTest {
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fun d(
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vararg bindings: Pair<Symbol, Double>,
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body: AutoDiffField<Double, RealField>.() -> AutoDiffValue<Double>,
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): DerivationResult<Double> = RealField.withAutoDiff(bindings = bindings, body)
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fun dx(
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xBinding: Pair<Symbol, Double>,
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body: AutoDiffField<Double, RealField>.(x: AutoDiffValue<Double>) -> AutoDiffValue<Double>,
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): DerivationResult<Double> = RealField.withAutoDiff(xBinding) { body(bind(xBinding.first)) }
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): DerivationResult<Double> = RealField.simpleAutoDiff(xBinding) { body(bind(xBinding.first)) }
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fun dxy(
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xBinding: Pair<Symbol, Double>,
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yBinding: Pair<Symbol, Double>,
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body: AutoDiffField<Double, RealField>.(x: AutoDiffValue<Double>, y: AutoDiffValue<Double>) -> AutoDiffValue<Double>,
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): DerivationResult<Double> = RealField.withAutoDiff(xBinding, yBinding) {
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): DerivationResult<Double> = RealField.simpleAutoDiff(xBinding, yBinding) {
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body(bind(xBinding.first), bind(yBinding.first))
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}
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@ -38,7 +34,7 @@ class SimpleAutoDiffTest {
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@Test
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fun testPlusX2() {
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val y = d(x to 3.0) {
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val y = RealField.simpleAutoDiff(x to 3.0) {
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// diff w.r.t this x at 3
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val x = bind(x)
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x + x
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@ -47,10 +43,21 @@ class SimpleAutoDiffTest {
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assertEquals(2.0, y.derivative(x)) // dy/dx = 2
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}
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@Test
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fun testPlusX2Expr() {
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val expr = diff{
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val x = bind(x)
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x + x
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}
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assertEquals(6.0, expr(x to 3.0)) // y = x + x = 6
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assertEquals(2.0, expr.derivative(x)(x to 3.0)) // dy/dx = 2
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}
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@Test
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fun testPlus() {
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// two variables
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val z = d(x to 2.0, y to 3.0) {
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val z = RealField.simpleAutoDiff(x to 2.0, y to 3.0) {
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val x = bind(x)
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val y = bind(y)
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x + y
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@ -63,7 +70,7 @@ class SimpleAutoDiffTest {
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@Test
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fun testMinus() {
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// two variables
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val z = d(x to 7.0, y to 3.0) {
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val z = RealField.simpleAutoDiff(x to 7.0, y to 3.0) {
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val x = bind(x)
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val y = bind(y)
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