Mercurial > hg > octave-nkf
view liboctave/dNDArray.h @ 4806:d3bd9c04147f
[project @ 2004-03-02 05:12:32 by jwe]
author | jwe |
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date | Tue, 02 Mar 2004 05:12:33 +0000 |
parents | ccfbd6047a54 |
children | 9f7ef92b50b0 |
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/* Copyright (C) 1996, 1997 John W. Eaton 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 2, 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, write to the Free Software Foundation, 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */ #if !defined (octave_NDArray_h) #define octave_NDArray_h 1 #if defined (__GNUG__) && defined (USE_PRAGMA_INTERFACE_IMPLEMENTATION) #pragma interface #endif #include "MArrayN.h" #include "dMatrix.h" #include "mx-defs.h" #include "mx-op-defs.h" #include "data-conv.h" #include "mach-info.h" class NDArray : public MArrayN<double> { public: NDArray (void) : MArrayN<double> () { } NDArray (const dim_vector& dv) : MArrayN<double> (dv) { } NDArray (const dim_vector& dv, double val) : MArrayN<double> (dv, val) { } NDArray (const NDArray& a) : MArrayN<double> (a) { } NDArray (const Matrix& a) : MArrayN<double> (a) { } NDArray (const MArrayN<double>& a) : MArrayN<double> (a) { } NDArray (const ArrayN<double>& a) : MArrayN<double> (a) { } explicit NDArray (const boolNDArray& a); explicit NDArray (const charNDArray& a); NDArray& operator = (const NDArray& a) { MArrayN<double>::operator = (a); return *this; } // unary operations boolNDArray operator ! (void) const; bool any_element_is_negative (bool = false) const; bool any_element_is_inf_or_nan (void) const; bool all_elements_are_int_or_inf_or_nan (void) const; bool all_integers (double& max_val, double& min_val) const; bool too_large_for_float (void) const; // XXX FIXME XXX -- this is not quite the right thing. boolNDArray all (int dim = -1) const; boolNDArray any (int dim = -1) const; NDArray cumprod (int dim = -1) const; NDArray cumsum (int dim = -1) const; NDArray prod (int dim = -1) const; NDArray sum (int dim = -1) const; NDArray sumsq (int dim = -1) const; int cat (const NDArray& ra_arg, int dim, int iidx, int move); NDArray abs (void) const; ComplexNDArray fourier (int dim = 1) const; ComplexNDArray ifourier (int dim = 1) const; ComplexNDArray fourier2d (void) const; ComplexNDArray ifourier2d (void) const; ComplexNDArray fourierNd (void) const; ComplexNDArray ifourierNd (void) const; friend NDArray real (const ComplexNDArray& a); friend NDArray imag (const ComplexNDArray& a); Matrix matrix_value (void) const; NDArray squeeze (void) const { return ArrayN<double>::squeeze (); } static void increment_index (Array<int>& ra_idx, const dim_vector& dimensions, int start_dimension = 0); static int compute_index (Array<int>& ra_idx, const dim_vector& dimensions); // i/o friend std::ostream& operator << (std::ostream& os, const NDArray& a); friend std::istream& operator >> (std::istream& is, NDArray& a); static double resize_fill_value (void) { return 0; } private: NDArray (double *d, const dim_vector& dv) : MArrayN<double> (d, dv) { } }; NDS_CMP_OP_DECLS (NDArray, double) NDS_BOOL_OP_DECLS (NDArray, double) SND_CMP_OP_DECLS (double, NDArray) SND_BOOL_OP_DECLS (double, NDArray) NDND_CMP_OP_DECLS (NDArray, NDArray) NDND_BOOL_OP_DECLS (NDArray, NDArray) MARRAY_FORWARD_DEFS (MArrayN, NDArray, double) #endif /* ;;; Local Variables: *** ;;; mode: C++ *** ;;; End: *** */