Mercurial > hg > octave-lyh
view libinterp/operators/op-fs-fcs.cc @ 17514:96cf8ee3440e
text.m: Match variable names to documentation.
* scripts/plot/text.m: Improve docstring. Rename variable 'label' to 'string'
to match docstring.
author | Rik <rik@octave.org> |
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date | Wed, 25 Sep 2013 17:21:31 -0700 |
parents | 2fc554ffbc28 |
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/* Copyright (C) 1996-2012 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 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/>. */ #ifdef HAVE_CONFIG_H #include <config.h> #endif #include "gripes.h" #include "oct-obj.h" #include "ov.h" #include "ov-scalar.h" #include "ov-float.h" #include "ov-flt-complex.h" #include "ov-complex.h" #include "ov-cx-mat.h" #include "ov-flt-cx-mat.h" #include "ov-typeinfo.h" #include "ops.h" #include "xdiv.h" #include "xpow.h" // scalar by complex scalar ops. DEFBINOP_OP (add, float_scalar, float_complex, +) DEFBINOP_OP (sub, float_scalar, float_complex, -) DEFBINOP_OP (mul, float_scalar, float_complex, *) DEFBINOP (div, float_scalar, float_complex) { CAST_BINOP_ARGS (const octave_float_scalar&, const octave_float_complex&); FloatComplex d = v2.float_complex_value (); if (d == static_cast<float>(0.0)) gripe_divide_by_zero (); return octave_value (v1.float_value () / d); } DEFBINOP_FN (pow, float_scalar, float_complex, xpow) DEFBINOP (ldiv, float_scalar, float_complex) { CAST_BINOP_ARGS (const octave_float_scalar&, const octave_float_complex&); float d = v1.float_value (); if (d == 0.0) gripe_divide_by_zero (); return octave_value (v2.float_complex_value () / d); } DEFCMPLXCMPOP_OP (lt, float_scalar, float_complex, <) DEFCMPLXCMPOP_OP (le, float_scalar, float_complex, <=) DEFCMPLXCMPOP_OP (eq, float_scalar, float_complex, ==) DEFCMPLXCMPOP_OP (ge, float_scalar, float_complex, >=) DEFCMPLXCMPOP_OP (gt, float_scalar, float_complex, >) DEFCMPLXCMPOP_OP (ne, float_scalar, float_complex, !=) DEFBINOP_OP (el_mul, float_scalar, float_complex, *) DEFBINOP (el_div, float_scalar, float_complex) { CAST_BINOP_ARGS (const octave_float_scalar&, const octave_float_complex&); FloatComplex d = v2.float_complex_value (); if (d == static_cast<float>(0.0)) gripe_divide_by_zero (); return octave_value (v1.float_value () / d); } DEFBINOP_FN (el_pow, float_scalar, float_complex, xpow) DEFBINOP (el_ldiv, float_scalar, float_complex) { CAST_BINOP_ARGS (const octave_float_scalar&, const octave_float_complex&); float d = v1.float_value (); if (d == 0.0) gripe_divide_by_zero (); return octave_value (v2.float_complex_value () / d); } DEFBINOP (el_and, float_scalar, float_complex) { CAST_BINOP_ARGS (const octave_float_scalar&, const octave_float_complex&); return octave_value (v1.float_scalar_value () && (v2.float_complex_value () != static_cast<float>(0.0))); } DEFBINOP (el_or, float_scalar, float_complex) { CAST_BINOP_ARGS (const octave_float_scalar&, const octave_float_complex&); return octave_value (v1.float_scalar_value () || (v2.float_complex_value () != static_cast<float>(0.0))); } DEFNDCATOP_FN (fs_fcs, float_scalar, float_complex, float_array, float_complex_array, concat) DEFNDCATOP_FN (s_fcs, scalar, float_complex, float_array, float_complex_array, concat) DEFNDCATOP_FN (fs_cs, float_scalar, complex, float_array, float_complex_array, concat) void install_fs_fcs_ops (void) { INSTALL_BINOP (op_add, octave_float_scalar, octave_float_complex, add); INSTALL_BINOP (op_sub, octave_float_scalar, octave_float_complex, sub); INSTALL_BINOP (op_mul, octave_float_scalar, octave_float_complex, mul); INSTALL_BINOP (op_div, octave_float_scalar, octave_float_complex, div); INSTALL_BINOP (op_pow, octave_float_scalar, octave_float_complex, pow); INSTALL_BINOP (op_ldiv, octave_float_scalar, octave_float_complex, ldiv); INSTALL_BINOP (op_lt, octave_float_scalar, octave_float_complex, lt); INSTALL_BINOP (op_le, octave_float_scalar, octave_float_complex, le); INSTALL_BINOP (op_eq, octave_float_scalar, octave_float_complex, eq); INSTALL_BINOP (op_ge, octave_float_scalar, octave_float_complex, ge); INSTALL_BINOP (op_gt, octave_float_scalar, octave_float_complex, gt); INSTALL_BINOP (op_ne, octave_float_scalar, octave_float_complex, ne); INSTALL_BINOP (op_el_mul, octave_float_scalar, octave_float_complex, el_mul); INSTALL_BINOP (op_el_div, octave_float_scalar, octave_float_complex, el_div); INSTALL_BINOP (op_el_pow, octave_float_scalar, octave_float_complex, el_pow); INSTALL_BINOP (op_el_ldiv, octave_float_scalar, octave_float_complex, el_ldiv); INSTALL_BINOP (op_el_and, octave_float_scalar, octave_float_complex, el_and); INSTALL_BINOP (op_el_or, octave_float_scalar, octave_float_complex, el_or); INSTALL_CATOP (octave_float_scalar, octave_float_complex, fs_fcs); INSTALL_CATOP (octave_scalar, octave_float_complex, s_fcs); INSTALL_CATOP (octave_float_scalar, octave_complex, fs_cs); INSTALL_ASSIGNCONV (octave_float_scalar, octave_float_complex, octave_float_complex_matrix); INSTALL_ASSIGNCONV (octave_scalar, octave_float_complex, octave_complex_matrix); }