diff --git a/src/Numerics/Algorithms/LinearAlgebra/Atlas/AtlasLinearAlgebraProvider.cs b/src/Numerics/Algorithms/LinearAlgebra/Atlas/AtlasLinearAlgebraProvider.cs
index b7d363f0..716747f5 100644
--- a/src/Numerics/Algorithms/LinearAlgebra/Atlas/AtlasLinearAlgebraProvider.cs
+++ b/src/Numerics/Algorithms/LinearAlgebra/Atlas/AtlasLinearAlgebraProvider.cs
@@ -24,7 +24,7 @@
/* This file is automatically generated - do not modify it.
Change NativeLinearAlgebraProvider.include instead.
- Last generated on: 18/05/2010 22:54:23
+ Last generated on: 6/9/2010 7:30:08 AM
*/
namespace MathNet.Numerics.Algorithms.LinearAlgebra.Atlas
{
@@ -2442,61 +2442,5 @@ namespace MathNet.Numerics.Algorithms.LinearAlgebra.Atlas
}
#endregion
-
- ///
- /// Computes the LU factorization of A.
- ///
- /// An m by n matrix. The matrix is overwritten with the
- /// the LU factorization On exit.
- /// The order of
- /// On exit, it contains the pivot indices. The size
- /// of the array must be min(m,n).
- /// This is equivalent to the GETRF LAPACK routine.
- public void LUFactor(double[] a, int order, int[] ipiv)
- {
- throw new NotImplementedException();
- }
-
- ///
- /// Computes the LU factorization of A.
- ///
- /// An m by n matrix. The matrix is overwritten with the
- /// the LU factorization On exit.
- /// The order of
- /// On exit, it contains the pivot indices. The size
- /// of the array must be min(m,n).
- /// This is equivalent to the GETRF LAPACK routine.
- public void LUFactor(float[] a, int order, int[] ipiv)
- {
- throw new NotImplementedException();
- }
-
- ///
- /// Computes the LU factorization of A.
- ///
- /// An m by n matrix. The matrix is overwritten with the
- /// the LU factorization On exit.
- /// The order of
- /// On exit, it contains the pivot indices. The size
- /// of the array must be min(m,n).
- /// This is equivalent to the GETRF LAPACK routine.
- public void LUFactor(Complex[] a, int order, int[] ipiv)
- {
- throw new NotImplementedException();
- }
-
- ///
- /// Computes the LU factorization of A.
- ///
- /// An m by n matrix. The matrix is overwritten with the
- /// the LU factorization On exit.
- /// The order of
- /// On exit, it contains the pivot indices. The size
- /// of the array must be min(m,n).
- /// This is equivalent to the GETRF LAPACK routine.
- public void LUFactor(Complex32[] a, int order, int[] ipiv)
- {
- throw new NotImplementedException();
- }
}
}
\ No newline at end of file
diff --git a/src/Numerics/Algorithms/LinearAlgebra/ManagedLinearAlgebraProvider.cs b/src/Numerics/Algorithms/LinearAlgebra/ManagedLinearAlgebraProvider.cs
index d859b219..3cea55e4 100644
--- a/src/Numerics/Algorithms/LinearAlgebra/ManagedLinearAlgebraProvider.cs
+++ b/src/Numerics/Algorithms/LinearAlgebra/ManagedLinearAlgebraProvider.cs
@@ -3388,47 +3388,5 @@ namespace MathNet.Numerics.Algorithms.LinearAlgebra
}
#endregion
-
- ///
- /// Computes the LU factorization of A.
- ///
- /// An m by n matrix. The matrix is overwritten with the
- /// the LU factorization On exit.
- /// The order of
- /// On exit, it contains the pivot indices. The size
- /// of the array must be min(m,n).
- /// This is equivalent to the GETRF LAPACK routine.
- public void LUFactor(float[] a, int order, int[] ipiv)
- {
- throw new NotImplementedException();
- }
-
- ///
- /// Computes the LU factorization of A.
- ///
- /// An m by n matrix. The matrix is overwritten with the
- /// the LU factorization On exit.
- /// The order of
- /// On exit, it contains the pivot indices. The size
- /// of the array must be min(m,n).
- /// This is equivalent to the GETRF LAPACK routine.
- public void LUFactor(Complex[] a, int order, int[] ipiv)
- {
- throw new NotImplementedException();
- }
-
- ///
- /// Computes the LU factorization of A.
- ///
- /// An m by n matrix. The matrix is overwritten with the
- /// the LU factorization On exit.
- /// The order of
- /// On exit, it contains the pivot indices. The size
- /// of the array must be min(m,n).
- /// This is equivalent to the GETRF LAPACK routine.
- public void LUFactor(Complex32[] a, int order, int[] ipiv)
- {
- throw new NotImplementedException();
- }
}
}
\ No newline at end of file
diff --git a/src/Numerics/Algorithms/LinearAlgebra/Mkl/MklLinearAlgebraProvider.cs b/src/Numerics/Algorithms/LinearAlgebra/Mkl/MklLinearAlgebraProvider.cs
index 998fd41b..8e0cb025 100644
--- a/src/Numerics/Algorithms/LinearAlgebra/Mkl/MklLinearAlgebraProvider.cs
+++ b/src/Numerics/Algorithms/LinearAlgebra/Mkl/MklLinearAlgebraProvider.cs
@@ -24,7 +24,7 @@
/* This file is automatically generated - do not modify it.
Change NativeLinearAlgebraProvider.include instead.
- Last generated on: 18/05/2010 22:54:25
+ Last generated on: 6/9/2010 7:30:14 AM
*/
namespace MathNet.Numerics.Algorithms.LinearAlgebra.Mkl
{
@@ -2441,61 +2441,5 @@ namespace MathNet.Numerics.Algorithms.LinearAlgebra.Mkl
}
#endregion
-
- ///
- /// Computes the LU factorization of A.
- ///
- /// An m by n matrix. The matrix is overwritten with the
- /// the LU factorization On exit.
- /// The order of
- /// On exit, it contains the pivot indices. The size
- /// of the array must be min(m,n).
- /// This is equivalent to the GETRF LAPACK routine.
- public void LUFactor(double[] a, int order, int[] ipiv)
- {
- throw new NotImplementedException();
- }
-
- ///
- /// Computes the LU factorization of A.
- ///
- /// An m by n matrix. The matrix is overwritten with the
- /// the LU factorization On exit.
- /// The order of
- /// On exit, it contains the pivot indices. The size
- /// of the array must be min(m,n).
- /// This is equivalent to the GETRF LAPACK routine.
- public void LUFactor(float[] a, int order, int[] ipiv)
- {
- throw new NotImplementedException();
- }
-
- ///
- /// Computes the LU factorization of A.
- ///
- /// An m by n matrix. The matrix is overwritten with the
- /// the LU factorization On exit.
- /// The order of
- /// On exit, it contains the pivot indices. The size
- /// of the array must be min(m,n).
- /// This is equivalent to the GETRF LAPACK routine.
- public void LUFactor(Complex[] a, int order, int[] ipiv)
- {
- throw new NotImplementedException();
- }
-
- ///
- /// Computes the LU factorization of A.
- ///
- /// An m by n matrix. The matrix is overwritten with the
- /// the LU factorization On exit.
- /// The order of
- /// On exit, it contains the pivot indices. The size
- /// of the array must be min(m,n).
- /// This is equivalent to the GETRF LAPACK routine.
- public void LUFactor(Complex32[] a, int order, int[] ipiv)
- {
- throw new NotImplementedException();
- }
}
}
\ No newline at end of file