Mercurial > hg > octave-nkf
view src/ov-re-nd-array.cc @ 3836:b8c1cb5b9fd9
[project @ 2001-05-31 19:30:49 by jwe]
author | jwe |
---|---|
date | Thu, 31 May 2001 19:30:52 +0000 |
parents | 0689afb1d001 |
children | 6e86256e9c54 |
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/* Copyright (C) 2000 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 (__GNUG__) #pragma implementation #endif #ifdef HAVE_CONFIG_H #include <config.h> #endif #include <iostream> #include "lo-ieee.h" #include "lo-utils.h" #include "mx-base.h" #include "gripes.h" #include "oct-obj.h" #include "oct-lvalue.h" #include "ops.h" #include "ov-base.h" #include "ov-base-nd-array.h" #include "ov-base-nd-array.cc" #include "ov-re-nd-array.h" #include "pr-output.h" #include "variables.h" template class octave_base_nd_array<ArrayN<double> >; DEFINE_OCTAVE_ALLOCATOR (octave_double_nd_array); DEFINE_OV_TYPEID_FUNCTIONS_AND_DATA (octave_double_nd_array, "double-nd-array"); #if 0 octave_value * octave_matrix::try_narrowing_conversion (void) { octave_value *retval = 0; int nr = matrix.rows (); int nc = matrix.cols (); if (nr == 1 && nc == 1) retval = new octave_scalar (matrix (0, 0)); return retval; } void octave_matrix::assign (const octave_value_list& idx, const Matrix& rhs) { int len = idx.length (); switch (len) { case 2: { idx_vector i = idx (0).index_vector (); idx_vector j = idx (1).index_vector (); matrix.set_index (i); matrix.set_index (j); ::assign (matrix, rhs); } break; case 1: { idx_vector i = idx (0).index_vector (); matrix.set_index (i); ::assign (matrix, rhs); } break; default: error ("invalid number of indices (%d) for indexed matrix assignment", len); break; } } bool octave_matrix::valid_as_scalar_index (void) const { // XXX FIXME XXX return false; } double octave_matrix::double_value (bool) const { double retval = octave_NaN; // XXX FIXME XXX -- maybe this should be a function, valid_as_scalar() if ((rows () == 1 && columns () == 1) || (Vdo_fortran_indexing && rows () > 0 && columns () > 0)) retval = matrix (0, 0); else gripe_invalid_conversion ("real matrix", "real scalar"); return retval; } Complex octave_matrix::complex_value (bool) const { Complex retval (octave_NaN, octave_NaN); if ((rows () == 1 && columns () == 1) || (Vdo_fortran_indexing && rows () > 0 && columns () > 0)) retval = matrix (0, 0); else gripe_invalid_conversion ("real matrix", "complex scalar"); return retval; } #endif /* ;;; Local Variables: *** ;;; mode: C++ *** ;;; End: *** */