GNU Octave  3.8.0
A high-level interpreted language, primarily intended for numerical computations, mostly compatible with Matlab
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op-scm-cm.cc
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1 /*
2 
3 Copyright (C) 2004-2013 David Bateman
4 Copyright (C) 1998-2004 Andy Adler
5 
6 This file is part of Octave.
7 
8 Octave is free software; you can redistribute it and/or modify it
9 under the terms of the GNU General Public License as published by the
10 Free Software Foundation; either version 3 of the License, or (at your
11 option) any later version.
12 
13 Octave is distributed in the hope that it will be useful, but WITHOUT
14 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
16 for more details.
17 
18 You should have received a copy of the GNU General Public License
19 along with Octave; see the file COPYING. If not, see
20 <http://www.gnu.org/licenses/>.
21 
22 */
23 
24 #ifdef HAVE_CONFIG_H
25 #include <config.h>
26 #endif
27 
28 #include "gripes.h"
29 #include "oct-obj.h"
30 #include "ov.h"
31 #include "ov-typeinfo.h"
32 #include "ov-cx-mat.h"
33 #include "ops.h"
34 #include "xdiv.h"
35 
36 #include "sparse-xpow.h"
37 #include "sparse-xdiv.h"
38 #include "smx-scm-cm.h"
39 #include "smx-cm-scm.h"
40 #include "ov-cx-sparse.h"
41 
42 // sparse complex matrix by complex matrix ops.
43 
44 DEFBINOP_OP (add, sparse_complex_matrix, complex_matrix, +)
45 DEFBINOP_OP (sub, sparse_complex_matrix, complex_matrix, -)
46 
47 DEFBINOP_OP (mul, sparse_complex_matrix, complex_matrix, *)
48 
49 DEFBINOP (div, sparse_complex_matrix, complex_matrix)
50 {
52  const octave_complex_matrix&);
53  MatrixType typ = v2.matrix_type ();
54 
56  v2.complex_matrix_value (), typ);
57 
58  v2.matrix_type (typ);
59  return ret;
60 }
61 
62 DEFBINOPX (pow, sparse_complex_matrix, complex_matrix)
63 {
64  error ("can't do A ^ B for A and B both matrices");
65  return octave_value ();
66 }
67 
68 DEFBINOP (ldiv, sparse_complex_matrix, complex_matrix)
69 {
71  const octave_complex_matrix&);
72 
73  if (v1.rows () == 1 && v1.columns () == 1)
74  {
76 
77  if (d == 0.0)
79 
80  return octave_value (v2.complex_array_value () / d);
81  }
82  else
83  {
84  MatrixType typ = v1.matrix_type ();
85 
87  v2.complex_matrix_value (), typ);
88 
89  v1.matrix_type (typ);
90  return ret;
91  }
92 }
93 
94 DEFBINOP_FN (trans_mul, sparse_complex_matrix, complex_matrix, trans_mul);
95 DEFBINOP_FN (herm_mul, sparse_complex_matrix, complex_matrix, herm_mul);
96 
97 DEFBINOP_FN (lt, sparse_complex_matrix, complex_matrix, mx_el_lt)
98 DEFBINOP_FN (le, sparse_complex_matrix, complex_matrix, mx_el_le)
99 DEFBINOP_FN (eq, sparse_complex_matrix, complex_matrix, mx_el_eq)
100 DEFBINOP_FN (ge, sparse_complex_matrix, complex_matrix, mx_el_ge)
101 DEFBINOP_FN (gt, sparse_complex_matrix, complex_matrix, mx_el_gt)
102 DEFBINOP_FN (ne, sparse_complex_matrix, complex_matrix, mx_el_ne)
103 
104 DEFBINOP_FN (el_mul, sparse_complex_matrix, complex_matrix, product)
105 DEFBINOP_FN (el_div, sparse_complex_matrix, complex_matrix, quotient)
106 
107 DEFBINOP (el_pow, sparse_complex_matrix, complex_matrix)
108 {
110  const octave_complex_matrix&);
111 
112  return octave_value
114  (v2.complex_matrix_value ())));
115 }
116 
117 DEFBINOP (el_ldiv, sparse_complex_matrix, matrix)
118 {
120  const octave_complex_matrix&);
121 
124 }
125 
126 DEFBINOP_FN (el_and, sparse_complex_matrix, complex_matrix, mx_el_and)
127 DEFBINOP_FN (el_or, sparse_complex_matrix, complex_matrix, mx_el_or)
128 
129 DEFCATOP (scm_cm, sparse_complex_matrix, complex_matrix)
130 {
132  const octave_complex_matrix&);
134  return octave_value
135  (v1.sparse_complex_matrix_value (). concat (tmp, ra_idx));
136 }
137 
138 DEFASSIGNOP (assign, sparse_complex_matrix, complex_matrix)
139 {
141  const octave_complex_matrix&);
142 
144  v1.assign (idx, tmp);
145  return octave_value ();
146 }
147 
148 void
150 {
152  octave_complex_matrix, add);
154  octave_complex_matrix, sub);
156  octave_complex_matrix, mul);
158  octave_complex_matrix, div);
162  octave_complex_matrix, ldiv);
180  octave_complex_matrix, el_mul);
182  octave_complex_matrix, el_div);
184  octave_complex_matrix, el_pow);
186  octave_complex_matrix, el_ldiv);
188  octave_complex_matrix, el_and);
190  octave_complex_matrix, el_or);
191 
193  octave_complex_matrix, scm_cm);
194 
197 }