ColPivHouseholderQR_MKL.h 4.37 KB
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/*
 Copyright (c) 2011, Intel Corporation. All rights reserved.

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   list of conditions and the following disclaimer.
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   be used to endorse or promote products derived from this software without
   specific prior written permission.

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 DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
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 ********************************************************************************
 *   Content : Eigen bindings to Intel(R) MKL
 *    Householder QR decomposition of a matrix with column pivoting based on
 *    LAPACKE_?geqp3 function.
 ********************************************************************************
*/

#ifndef EIGEN_COLPIVOTINGHOUSEHOLDERQR_MKL_H
#define EIGEN_COLPIVOTINGHOUSEHOLDERQR_MKL_H

#include "Eigen/src/Core/util/MKL_support.h"

namespace Eigen { 

/** \internal Specialization for the data types supported by MKL */

#define EIGEN_MKL_QR_COLPIV(EIGTYPE, MKLTYPE, MKLPREFIX, EIGCOLROW, MKLCOLROW) \
template<> inline \
ColPivHouseholderQR<Matrix<EIGTYPE, Dynamic, Dynamic, EIGCOLROW, Dynamic, Dynamic> >& \
ColPivHouseholderQR<Matrix<EIGTYPE, Dynamic, Dynamic, EIGCOLROW, Dynamic, Dynamic> >::compute( \
              const Matrix<EIGTYPE, Dynamic, Dynamic, EIGCOLROW, Dynamic, Dynamic>& matrix) \
\
{ \
  using std::abs; \
  typedef Matrix<EIGTYPE, Dynamic, Dynamic, EIGCOLROW, Dynamic, Dynamic> MatrixType; \
  typedef MatrixType::Scalar Scalar; \
  typedef MatrixType::RealScalar RealScalar; \
  Index rows = matrix.rows();\
  Index cols = matrix.cols();\
  Index size = matrix.diagonalSize();\
\
  m_qr = matrix;\
  m_hCoeffs.resize(size);\
\
  m_colsTranspositions.resize(cols);\
  /*Index number_of_transpositions = 0;*/ \
\
  m_nonzero_pivots = 0; \
  m_maxpivot = RealScalar(0);\
  m_colsPermutation.resize(cols); \
  m_colsPermutation.indices().setZero(); \
\
  lapack_int lda = m_qr.outerStride(), i; \
  lapack_int matrix_order = MKLCOLROW; \
  LAPACKE_##MKLPREFIX##geqp3( matrix_order, rows, cols, (MKLTYPE*)m_qr.data(), lda, (lapack_int*)m_colsPermutation.indices().data(), (MKLTYPE*)m_hCoeffs.data()); \
  m_isInitialized = true; \
  m_maxpivot=m_qr.diagonal().cwiseAbs().maxCoeff(); \
  m_hCoeffs.adjointInPlace(); \
  RealScalar premultiplied_threshold = abs(m_maxpivot) * threshold(); \
  lapack_int *perm = m_colsPermutation.indices().data(); \
  for(i=0;i<size;i++) { \
    m_nonzero_pivots += (abs(m_qr.coeff(i,i)) > premultiplied_threshold);\
  } \
  for(i=0;i<cols;i++) perm[i]--;\
\
  /*m_det_pq = (number_of_transpositions%2) ? -1 : 1;  // TODO: It's not needed now; fix upon availability in Eigen */ \
\
  return *this; \
}

EIGEN_MKL_QR_COLPIV(double,   double,        d, ColMajor, LAPACK_COL_MAJOR)
EIGEN_MKL_QR_COLPIV(float,    float,         s, ColMajor, LAPACK_COL_MAJOR)
EIGEN_MKL_QR_COLPIV(dcomplex, MKL_Complex16, z, ColMajor, LAPACK_COL_MAJOR)
EIGEN_MKL_QR_COLPIV(scomplex, MKL_Complex8,  c, ColMajor, LAPACK_COL_MAJOR)

EIGEN_MKL_QR_COLPIV(double,   double,        d, RowMajor, LAPACK_ROW_MAJOR)
EIGEN_MKL_QR_COLPIV(float,    float,         s, RowMajor, LAPACK_ROW_MAJOR)
EIGEN_MKL_QR_COLPIV(dcomplex, MKL_Complex16, z, RowMajor, LAPACK_ROW_MAJOR)
EIGEN_MKL_QR_COLPIV(scomplex, MKL_Complex8,  c, RowMajor, LAPACK_ROW_MAJOR)

} // end namespace Eigen

#endif // EIGEN_COLPIVOTINGHOUSEHOLDERQR_MKL_H