GNU Octave  3.8.0
A high-level interpreted language, primarily intended for numerical computations, mostly compatible with Matlab
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op-fs-fcm.cc
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1 /*
2 
3 Copyright (C) 1996-2013 John W. Eaton
4 
5 This file is part of Octave.
6 
7 Octave is free software; you can redistribute it and/or modify it
8 under the terms of the GNU General Public License as published by the
9 Free Software Foundation; either version 3 of the License, or (at your
10 option) any later version.
11 
12 Octave is distributed in the hope that it will be useful, but WITHOUT
13 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15 for more details.
16 
17 You should have received a copy of the GNU General Public License
18 along with Octave; see the file COPYING. If not, see
19 <http://www.gnu.org/licenses/>.
20 
21 */
22 
23 #ifdef HAVE_CONFIG_H
24 #include <config.h>
25 #endif
26 
27 #include "mx-fs-fcm.h"
28 #include "mx-fcm-fs.h"
29 #include "mx-fs-fcnda.h"
30 #include "mx-fcnda-fs.h"
31 
32 #include "gripes.h"
33 #include "oct-obj.h"
34 #include "ov.h"
35 #include "ov-scalar.h"
36 #include "ov-float.h"
37 #include "ov-cx-mat.h"
38 #include "ov-flt-cx-mat.h"
39 #include "ov-flt-re-mat.h"
40 #include "ov-typeinfo.h"
41 #include "ops.h"
42 #include "xdiv.h"
43 #include "xpow.h"
44 
45 // scalar by complex matrix ops.
46 
47 DEFNDBINOP_OP (add, float_scalar, float_complex_matrix, float_scalar,
48  float_complex_array, +)
49 DEFNDBINOP_OP (sub, float_scalar, float_complex_matrix, float_scalar,
50  float_complex_array, -)
51 DEFNDBINOP_OP (mul, float_scalar, float_complex_matrix, float_scalar,
52  float_complex_array, *)
53 
54 DEFBINOP (div, float_scalar, float_complex_matrix)
55 {
58 
61  MatrixType typ = v2.matrix_type ();
62 
63  FloatComplexMatrix ret = xdiv (m1, m2, typ);
64 
65  v2.matrix_type (typ);
66  return ret;
67 }
68 
69 DEFBINOP_FN (pow, float_scalar, float_complex_matrix, xpow)
70 
71 DEFBINOP (ldiv, float_scalar, float_complex_matrix)
72 {
75 
76  float d = v1.float_value ();
77 
78  if (d == 0.0)
80 
82 }
83 
84 DEFNDCMPLXCMPOP_FN (lt, float_scalar, float_complex_matrix, float_scalar,
85  float_complex_array, mx_el_lt)
86 DEFNDCMPLXCMPOP_FN (le, float_scalar, float_complex_matrix, float_scalar,
87  float_complex_array, mx_el_le)
88 DEFNDCMPLXCMPOP_FN (eq, float_scalar, float_complex_matrix, float_scalar,
89  float_complex_array, mx_el_eq)
90 DEFNDCMPLXCMPOP_FN (ge, float_scalar, float_complex_matrix, float_scalar,
91  float_complex_array, mx_el_ge)
92 DEFNDCMPLXCMPOP_FN (gt, float_scalar, float_complex_matrix, float_scalar,
93  float_complex_array, mx_el_gt)
94 DEFNDCMPLXCMPOP_FN (ne, float_scalar, float_complex_matrix, float_scalar,
95  float_complex_array, mx_el_ne)
96 
97 DEFNDBINOP_OP (el_mul, float_scalar, float_complex_matrix, float_scalar,
98  float_complex_array, *)
99 DEFNDBINOP_FN (el_div, float_scalar, float_complex_matrix, float_scalar,
100  float_complex_array, x_el_div)
101 DEFNDBINOP_FN (el_pow, float_scalar, float_complex_matrix, float_scalar,
102  float_complex_array, elem_xpow)
103 
104 DEFBINOP (el_ldiv, float_scalar, float_complex_matrix)
105 {
108 
109  float d = v1.float_value ();
110 
111  if (d == 0.0)
113 
115 }
116 
117 DEFNDBINOP_FN (el_and, float_scalar, float_complex_matrix, float_scalar,
118  float_complex_array, mx_el_and)
119 DEFNDBINOP_FN (el_or, float_scalar, float_complex_matrix, float_scalar,
120  float_complex_array, mx_el_or)
121 
122 DEFNDCATOP_FN (fs_fcm, float_scalar, float_complex_matrix, float_array,
123  float_complex_array, concat)
124 
125 DEFNDCATOP_FN (s_fcm, scalar, float_complex_matrix, float_array,
126  float_complex_array, concat)
127 
128 DEFNDCATOP_FN (fs_cm, float_scalar, complex_matrix, float_array,
129  float_complex_array, concat)
130 
131 DEFCONV (float_complex_matrix_conv, float_scalar, float_complex_matrix)
132 {
134 
136  (v.float_matrix_value ()));
137 }
138 
139 void
141 {
162  octave_float_complex_matrix, el_ldiv);
167 
171 
176 
178  float_complex_matrix_conv);
179 }