Mercurial > hg > octave-nkf
view liboctave/numeric/SparseQR.h @ 20685:7fa1970a655d
pkg.m: drop check of nargout value, the interpreter already does that.
* scripts/pkg/pkg.m: the interpreter already checks if there was any variable
that got no value assigned, there's no need to make the code more
complicated to cover that. Also, there's no point in calling describe()
with different nargout since it doesn't check nargout.
author | Carnë Draug <carandraug@octave.org> |
---|---|
date | Thu, 03 Sep 2015 16:21:08 +0100 |
parents | 4197fc428c7d |
children |
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/* Copyright (C) 2005-2015 David Bateman This file is part of Octave. Octave is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 3 of the License, or (at your option) any later version. Octave is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with Octave; see the file COPYING. If not, see <http://www.gnu.org/licenses/>. */ #if !defined (octave_SparseQR_h) #define octave_SparseQR_h 1 #include <iosfwd> #include "dMatrix.h" #include "CMatrix.h" #include "dSparse.h" #include "CSparse.h" #include "oct-sparse.h" #ifdef USE_64_BIT_IDX_T #define CXSPARSE_DNAME(name) cs_dl ## name #else #define CXSPARSE_DNAME(name) cs_di ## name #endif class OCTAVE_API SparseQR { protected: class SparseQR_rep { public: SparseQR_rep (const SparseMatrix& a, int order); ~SparseQR_rep (void); #ifdef HAVE_CXSPARSE bool ok (void) const { return (N && S); } #else bool ok (void) const { return false; } #endif SparseMatrix V (void) const; ColumnVector Pinv (void) const; ColumnVector P (void) const; SparseMatrix R (const bool econ) const; Matrix C (const Matrix &b) const; Matrix Q (void) const; octave_refcount<int> count; octave_idx_type nrows; #ifdef HAVE_CXSPARSE CXSPARSE_DNAME (s) *S; CXSPARSE_DNAME (n) *N; #endif private: // No copying! SparseQR_rep (const SparseQR_rep&); SparseQR_rep& operator = (const SparseQR_rep&); }; private: SparseQR_rep *rep; public: SparseQR (void) : rep (new SparseQR_rep (SparseMatrix (), 0)) { } SparseQR (const SparseMatrix& a, int order = 0) : rep (new SparseQR_rep (a, order)) { } SparseQR (const SparseQR& a) : rep (a.rep) { rep->count++; } ~SparseQR (void) { if (--rep->count == 0) delete rep; } SparseQR& operator = (const SparseQR& a) { if (this != &a) { if (--rep->count == 0) delete rep; rep = a.rep; rep->count++; } return *this; } bool ok (void) const { return rep->ok (); } SparseMatrix V (void) const { return rep->V (); } ColumnVector Pinv (void) const { return rep->P (); } ColumnVector P (void) const { return rep->P (); } SparseMatrix R (const bool econ = false) const { return rep->R(econ); } Matrix C (const Matrix &b) const { return rep->C(b); } Matrix Q (void) const { return rep->Q (); } friend Matrix qrsolve (const SparseMatrix &a, const Matrix &b, octave_idx_type &info); friend SparseMatrix qrsolve (const SparseMatrix &a, const SparseMatrix &b, octave_idx_type &info); friend ComplexMatrix qrsolve (const SparseMatrix &a, const ComplexMatrix &b, octave_idx_type &info); friend SparseComplexMatrix qrsolve (const SparseMatrix &a, const SparseComplexMatrix &b, octave_idx_type &info); protected: #ifdef HAVE_CXSPARSE CXSPARSE_DNAME (s) * S (void) { return rep->S; } CXSPARSE_DNAME (n) * N (void) { return rep->N; } #endif }; // Publish externally used friend functions. extern Matrix qrsolve (const SparseMatrix &a, const Matrix &b, octave_idx_type &info); extern Matrix qrsolve (const SparseMatrix &a, const MArray<double> &b, octave_idx_type &info); extern SparseMatrix qrsolve (const SparseMatrix &a, const SparseMatrix &b, octave_idx_type &info); extern ComplexMatrix qrsolve (const SparseMatrix &a, const ComplexMatrix &b, octave_idx_type &info); extern ComplexMatrix qrsolve (const SparseMatrix &a, const MArray<Complex> &b, octave_idx_type &info); extern SparseComplexMatrix qrsolve (const SparseMatrix &a, const SparseComplexMatrix &b, octave_idx_type &info); #endif