forked from kscience/kmath
Apply new interfaces structure to ASM Expression Field/Space
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@ -4,8 +4,9 @@ import scientifik.kmath.operations.Field
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import scientifik.kmath.operations.Space
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import scientifik.kmath.operations.Space
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import scientifik.kmath.operations.invoke
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import scientifik.kmath.operations.invoke
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open class AsmExpressionSpace<T>(private val space: Space<T>) : Space<AsmExpression<T>>,
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open class AsmExpressionSpace<T>(private val space: Space<T>) :
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ExpressionSpace<T, AsmExpression<T>> {
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Space<AsmExpression<T>>,
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ExpressionContext<T, AsmExpression<T>> {
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override val zero: AsmExpression<T> = AsmConstantExpression(space.zero)
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override val zero: AsmExpression<T> = AsmConstantExpression(space.zero)
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override fun const(value: T): AsmExpression<T> = AsmConstantExpression(value)
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override fun const(value: T): AsmExpression<T> = AsmConstantExpression(value)
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override fun variable(name: String, default: T?): AsmExpression<T> = AsmVariableExpression(name, default)
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override fun variable(name: String, default: T?): AsmExpression<T> = AsmVariableExpression(name, default)
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@ -17,12 +18,14 @@ open class AsmExpressionSpace<T>(private val space: Space<T>) : Space<AsmExpress
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operator fun T.minus(arg: AsmExpression<T>): AsmExpression<T> = arg - this
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operator fun T.minus(arg: AsmExpression<T>): AsmExpression<T> = arg - this
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}
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}
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class AsmExpressionField<T>(private val field: Field<T>) : ExpressionField<T, AsmExpression<T>>,
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class AsmExpressionField<T>(private val field: Field<T>) :
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ExpressionContext<T, AsmExpression<T>>,
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Field<AsmExpression<T>>,
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AsmExpressionSpace<T>(field) {
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AsmExpressionSpace<T>(field) {
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override val one: AsmExpression<T>
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override val one: AsmExpression<T>
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get() = const(this.field.one)
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get() = const(this.field.one)
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override fun number(value: Number): AsmExpression<T> = const(field { one * value })
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fun number(value: Number): AsmExpression<T> = const(field { one * value })
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override fun multiply(a: AsmExpression<T>, b: AsmExpression<T>): AsmExpression<T> =
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override fun multiply(a: AsmExpression<T>, b: AsmExpression<T>): AsmExpression<T> =
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AsmProductExpression(field, a, b)
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AsmProductExpression(field, a, b)
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@ -39,7 +39,7 @@ internal class DivExpession<T>(val context: Field<T>, val expr: Expression<T>, v
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open class FunctionalExpressionSpace<T>(
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open class FunctionalExpressionSpace<T>(
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val space: Space<T>
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val space: Space<T>
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) : Space<Expression<T>>, ExpressionContext<T,Expression<T>> {
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) : Space<Expression<T>>, ExpressionContext<T, Expression<T>> {
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override val zero: Expression<T> = ConstantExpression(space.zero)
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override val zero: Expression<T> = ConstantExpression(space.zero)
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@ -61,12 +61,12 @@ open class FunctionalExpressionSpace<T>(
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open class FunctionalExpressionField<T>(
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open class FunctionalExpressionField<T>(
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val field: Field<T>
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val field: Field<T>
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) : Field<Expression<T>>, ExpressionContext<T,Expression<T>>, FunctionalExpressionSpace<T>(field) {
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) : Field<Expression<T>>, ExpressionContext<T, Expression<T>>, FunctionalExpressionSpace<T>(field) {
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override val one: Expression<T>
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override val one: Expression<T>
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get() = const(this.field.one)
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get() = const(this.field.one)
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fun const(value: Double): Expression<T> = const(field.run { one*value})
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fun number(value: Number): Expression<T> = const(field.run { one * value })
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override fun multiply(a: Expression<T>, b: Expression<T>): Expression<T> = ProductExpression(field, a, b)
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override fun multiply(a: Expression<T>, b: Expression<T>): Expression<T> = ProductExpression(field, a, b)
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