Cholesky decomp tests and checks - det to be fixed
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@ -67,9 +67,10 @@ public class DoubleLinearOpsTensorAlgebra :
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}
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override fun DoubleTensor.cholesky(): DoubleTensor {
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//positive definite check
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checkSymmetric(this)
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checkSquareMatrix(shape)
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//TODO("Andrei the det routine has bugs")
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//checkPositiveDefinite(this)
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val n = shape.last()
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val lTensor = zeroesLike()
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@ -62,3 +62,10 @@ internal inline fun DoubleTensorAlgebra.checkSymmetric(tensor: DoubleTensor, eps
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check(tensor.eq(tensor.transpose(), epsilon)) {
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"Tensor is not symmetric about the last 2 dimensions at precision $epsilon"
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}
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internal inline fun DoubleLinearOpsTensorAlgebra.checkPositiveDefinite(tensor: DoubleTensor): Unit {
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for( mat in tensor.matrixSequence())
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check(mat.asTensor().detLU().value() > 0.0){
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"Tensor contains matrices which are not positive definite ${mat.asTensor().detLU().value()}"
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}
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}
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@ -112,6 +112,19 @@ class TestDoubleLinearOpsTensorAlgebra {
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assertTrue((p dot tensor).eq(l dot u))
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}
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@Test
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fun testCholesky() = DoubleLinearOpsTensorAlgebra {
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val tensor = randNormal(intArrayOf(2, 5, 5), 0)
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val sigma = (tensor dot tensor.transpose()) + diagonalEmbedding(
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fromArray(intArrayOf(2, 5), DoubleArray(10) { 0.1 })
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)
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//checkPositiveDefinite(sigma) sigma must be positive definite
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val low = sigma.cholesky()
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val sigmChol = low dot low.transpose()
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assertTrue(sigma.eq(sigmChol))
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}
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@Test
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fun testSVD1D() = DoubleLinearOpsTensorAlgebra {
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val tensor2 = fromArray(intArrayOf(2, 3), doubleArrayOf(1.0, 2.0, 3.0, 4.0, 5.0, 6.0))
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