More tests in kmath-for-real and fix for Double.plus #90
@ -57,7 +57,7 @@ operator fun Double.times(matrix: Matrix<Double>) = MatrixContext.real.produce(m
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}
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operator fun Double.plus(matrix: Matrix<Double>) = MatrixContext.real.produce(matrix.rowNum, matrix.colNum) {
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row, col -> this * matrix[row, col]
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row, col -> this + matrix[row, col]
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}
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operator fun Double.minus(matrix: Matrix<Double>) = MatrixContext.real.produce(matrix.rowNum, matrix.colNum) {
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@ -1,8 +1,9 @@
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package scientific.kmath.real
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import scientifik.kmath.real.average
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import scientifik.kmath.real.realMatrix
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import scientifik.kmath.real.sum
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import scientifik.kmath.real.*
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import scientifik.kmath.linear.VirtualMatrix
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import scientifik.kmath.linear.build
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import scientifik.kmath.structures.Matrix
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import kotlin.test.Test
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import kotlin.test.assertEquals
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@ -13,4 +14,144 @@ class RealMatrixTest {
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assertEquals(m.sum(), 900.0)
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assertEquals(m.average(), 9.0)
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}
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@Test
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fun testSequenceToMatrix() {
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val m = Sequence<DoubleArray> {
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listOf(
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DoubleArray(10) { 10.0 },
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DoubleArray(10) { 20.0 },
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DoubleArray(10) { 30.0 }).iterator()
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}.toMatrix()
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assertEquals(m.sum(), 20.0 * 30)
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}
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@Test
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fun testRepeatStackVertical() {
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val matrix1 = Matrix.build<Double>(2, 3)(
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1.0, 0.0, 0.0,
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0.0, 1.0, 2.0
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)
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val matrix2 = Matrix.build<Double>(6, 3)(
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1.0, 0.0, 0.0,
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0.0, 1.0, 2.0,
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1.0, 0.0, 0.0,
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0.0, 1.0, 2.0,
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1.0, 0.0, 0.0,
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0.0, 1.0, 2.0
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)
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assertEquals(VirtualMatrix.wrap(matrix2), matrix1.repeatStackVertical(3))
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}
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@Test
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fun testMatrixAndDouble() {
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val matrix1 = Matrix.build<Double>(2, 3)(
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1.0, 0.0, 3.0,
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4.0, 6.0, 2.0
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)
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val matrix2 = (matrix1 * 2.5 + 1.0 - 2.0) / 2.0
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val expectedResult = Matrix.build<Double>(2, 3)(
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0.75, -0.5, 3.25,
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4.5, 7.0, 2.0
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)
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assertEquals(matrix2, expectedResult)
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}
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@Test
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fun testDoubleAndMatrix() {
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val matrix1 = Matrix.build<Double>(2, 3)(
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1.0, 0.0, 3.0,
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4.0, 6.0, 2.0
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)
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val matrix2 = 20.0 - (10.0 + (5.0 * matrix1))
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//val matrix2 = 10.0 + (5.0 * matrix1)
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val expectedResult = Matrix.build<Double>(2, 3)(
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5.0, 10.0, -5.0,
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-10.0, -20.0, 0.0
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)
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assertEquals(matrix2, expectedResult)
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}
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@Test
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fun testSquareAndPower() {
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val matrix1 = Matrix.build<Double>(2, 3)(
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-1.0, 0.0, 3.0,
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4.0, -6.0, -2.0
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)
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val matrix2 = Matrix.build<Double>(2, 3)(
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1.0, 0.0, 9.0,
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16.0, 36.0, 4.0
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)
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val matrix3 = Matrix.build<Double>(2, 3)(
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-1.0, 0.0, 27.0,
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64.0, -216.0, -8.0
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)
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assertEquals(matrix1.square(), matrix2)
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assertEquals(matrix1.pow(3), matrix3)
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}
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@Test
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fun testTwoMatrixOperations() {
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val matrix1 = Matrix.build<Double>(2, 3)(
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-1.0, 0.0, 3.0,
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4.0, -6.0, 7.0
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)
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val matrix2 = Matrix.build<Double>(2, 3)(
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1.0, 0.0, 3.0,
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4.0, 6.0, -2.0
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)
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val result = matrix1 * matrix2 + matrix1 - matrix2
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val expectedResult = Matrix.build<Double>(2, 3)(
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-3.0, 0.0, 9.0,
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16.0, -48.0, -5.0
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)
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assertEquals(result, expectedResult)
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}
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@Test
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fun testColumnOperations() {
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val matrix1 = Matrix.build<Double>(2, 4)(
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-1.0, 0.0, 3.0, 15.0,
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4.0, -6.0, 7.0, -11.0
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)
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val matrix2 = Matrix.build<Double>(2, 5)(
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-1.0, 0.0, 3.0, 15.0, -1.0,
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4.0, -6.0, 7.0, -11.0, 4.0
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)
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val col1 = Matrix.build<Double>(2, 1)(0.0, -6.0)
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val cols1to2 = Matrix.build<Double>(2, 2)(
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0.0, 3.0,
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-6.0, 7.0
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)
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assertEquals(matrix1.appendColumn { it[0] }, matrix2)
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assertEquals(matrix1.extractColumn(1), col1)
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assertEquals(matrix1.extractColumns(1..2), cols1to2)
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assertEquals(matrix1.sumByColumn(), Matrix.build<Double>(4, 1)(3.0, -6.0, 10.0, 4.0))
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assertEquals(matrix1.minByColumn(), Matrix.build<Double>(4, 1)(-1.0, -6.0, 3.0, -11.0))
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assertEquals(matrix1.maxByColumn(), Matrix.build<Double>(4, 1)(4.0, 0.0, 7.0, 15.0))
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assertEquals(matrix1.averageByColumn(), Matrix.build<Double>(4, 1)(1.5, -3.0, 5.0, 2.0))
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}
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@Test
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fun testAllElementOperations() {
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val matrix1 = Matrix.build<Double>(2, 4)(
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-1.0, 0.0, 3.0, 15.0,
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4.0, -6.0, 7.0, -11.0
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)
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assertEquals(matrix1.sum(), 11.0)
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assertEquals(matrix1.min(), -11.0)
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assertEquals(matrix1.max(), 15.0)
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assertEquals(matrix1.average(), 1.375)
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}
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// fun printMatrix(m: Matrix<Double>) {
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// for (row in 0 until m.shape[0]) {
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// for (col in 0 until m.shape[1]) {
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// print(m[row, col])
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// print(" ")
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// }
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// println()
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// }
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// }
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}
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Loading…
Reference in New Issue
Block a user