GNU Octave  4.2.1
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op-cs-sm.cc
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1 /*
2 
3 Copyright (C) 2004-2017 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 #if defined (HAVE_CONFIG_H)
25 # include "config.h"
26 #endif
27 
28 #include "errwarn.h"
29 #include "ovl.h"
30 #include "ov.h"
31 #include "ov-typeinfo.h"
32 #include "ov-complex.h"
33 #include "ops.h"
34 #include "xpow.h"
35 
36 #include "sparse-xpow.h"
37 #include "sparse-xdiv.h"
38 #include "ov-re-sparse.h"
39 #include "ov-cx-sparse.h"
40 #include "smx-cs-sm.h"
41 #include "smx-sm-cs.h"
42 
43 // complex by sparse matrix ops.
44 
45 DEFBINOP_OP (add, complex, sparse_matrix, +)
46 DEFBINOP_OP (sub, complex, sparse_matrix, -)
47 DEFBINOP_OP (mul, complex, sparse_matrix, *)
48 
49 DEFBINOP (div, complex, sparse_matrix)
50 {
51  const octave_complex& v1 = dynamic_cast<const octave_complex&> (a1);
52  const octave_sparse_matrix& v2 = dynamic_cast<const octave_sparse_matrix&> (a2);
53 
54  if (v2.rows () == 1 && v2.columns () == 1)
55  {
56  double d = v2.scalar_value ();
57 
58  if (d == 0.0)
60 
61  return octave_value (SparseComplexMatrix (1, 1, v1.complex_value () / d));
62  }
63  else
64  {
65  MatrixType typ = v2.matrix_type ();
66  ComplexMatrix m1 = ComplexMatrix (1, 1, v1.complex_value ());
68  ComplexMatrix ret = xdiv (m1, m2, typ);
69  v2.matrix_type (typ);
70  return ret;
71  }
72 }
73 
74 DEFBINOP (pow, complex, sparse_matrix)
75 {
76  const octave_complex& v1 = dynamic_cast<const octave_complex&> (a1);
77  const octave_sparse_matrix& v2 = dynamic_cast<const octave_sparse_matrix&> (a2);
78  return xpow (v1.complex_value (), v2.matrix_value ());
79 }
80 
81 DEFBINOP (ldiv, complex, sparse_matrix)
82 {
83  const octave_complex& v1 = dynamic_cast<const octave_complex&> (a1);
84  const octave_sparse_matrix& v2 = dynamic_cast<const octave_sparse_matrix&> (a2);
85 
86  Complex d = v1.complex_value ();
88 
89  if (d == 0.0)
91 
92  retval = octave_value (v2.sparse_matrix_value () / d);
93 
94  return retval;
95 }
96 
97 DEFBINOP_FN (lt, complex, sparse_matrix, mx_el_lt)
98 DEFBINOP_FN (le, complex, sparse_matrix, mx_el_le)
99 DEFBINOP_FN (eq, complex, sparse_matrix, mx_el_eq)
100 DEFBINOP_FN (ge, complex, sparse_matrix, mx_el_ge)
101 DEFBINOP_FN (gt, complex, sparse_matrix, mx_el_gt)
102 DEFBINOP_FN (ne, complex, sparse_matrix, mx_el_ne)
103 
104 DEFBINOP_OP (el_mul, complex, sparse_matrix, *)
105 DEFBINOP_FN (el_div, complex, sparse_matrix, x_el_div)
106 DEFBINOP_FN (el_pow, complex, sparse_matrix, elem_xpow)
107 
108 DEFBINOP (el_ldiv, complex, sparse_matrix)
109 {
110  const octave_complex& v1 = dynamic_cast<const octave_complex&> (a1);
111  const octave_sparse_matrix& v2 = dynamic_cast<const octave_sparse_matrix&> (a2);
112 
113  Complex d = v1.complex_value ();
115 
116  if (d == 0.0)
118 
119  retval = octave_value (v2.sparse_matrix_value () / d);
120 
121  return retval;
122 }
123 
124 DEFBINOP_FN (el_and, complex, sparse_matrix, mx_el_and)
125 DEFBINOP_FN (el_or, complex, sparse_matrix, mx_el_or)
126 
127 DEFCATOP (cs_sm, sparse_matrix, complex)
128 {
129  octave_complex& v1 = dynamic_cast<octave_complex&> (a1);
130  const octave_sparse_matrix& v2 = dynamic_cast<const octave_sparse_matrix&> (a2);
131  SparseComplexMatrix tmp (1, 1, v1.complex_value ());
132  return octave_value (tmp. concat (v2.sparse_matrix_value (), ra_idx));
133 }
134 
135 DEFCONV (sparse_matrix_conv, complex, sparse_matrix)
136 {
137  const octave_complex& v = dynamic_cast<const octave_complex&> (a);
138 
139  return new octave_sparse_matrix
140  (SparseMatrix (v.matrix_value ()));
141 }
142 
143 void
145 {
164 
166 
169 
170  INSTALL_WIDENOP (octave_complex, octave_sparse_matrix, sparse_matrix_conv);
171 }
octave_value xpow(const SparseMatrix &a, double b)
Definition: sparse-xpow.cc:58
#define DEFBINOP(name, t1, t2)
Definition: ops.h:223
SparseMatrix sparse_matrix_value(bool=false) const
Definition: ov-re-sparse.h:127
octave_value op_el_pow(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1531
const octave_base_value const Array< octave_idx_type > & ra_idx
octave_value op_eq(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1524
octave_idx_type columns(void) const
Definition: ov-base.h:319
octave_value op_el_ldiv(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1532
ComplexNDArray concat(NDArray &ra, ComplexNDArray &rb, const Array< octave_idx_type > &ra_idx)
Definition: CNDArray.cc:655
boolMatrix mx_el_le(const boolMatrix &m1, const boolMatrix &m2)
Definition: boolMatrix.cc:90
#define INSTALL_WIDENOP(t1, t2, f)
Definition: ops.h:70
octave_value op_pow(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1519
F77_RET_T F77_REAL &F77_RET_T F77_DBLE &F77_RET_T F77_REAL &F77_RET_T F77_DBLE &F77_RET_T F77_REAL &F77_RET_T F77_DBLE &F77_RET_T const F77_REAL const F77_REAL F77_REAL &F77_RET_T const F77_DBLE const F77_DBLE F77_DBLE &F77_RET_T F77_REAL &F77_RET_T F77_DBLE &F77_RET_T F77_DBLE &F77_RET_T F77_REAL &F77_RET_T F77_REAL &F77_RET_T F77_DBLE &F77_RET_T const F77_DBLE F77_DBLE &F77_RET_T const F77_REAL F77_REAL &F77_RET_T F77_REAL F77_REAL &F77_RET_T F77_DBLE F77_DBLE &F77_RET_T const F77_DBLE const F77_DBLE F77_DBLE * d
#define DEFBINOP_OP(name, t1, t2, op)
Definition: ops.h:228
const octave_base_value & a2
calling an anonymous function involves an overhead quite comparable to the overhead of an m file function Passing a handle to a built in function is because the interpreter is not involved in the internal loop For a
Definition: cellfun.cc:398
octave_value op_div(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1517
octave_value op_el_or(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1534
#define INSTALL_BINOP(op, t1, t2, f)
Definition: ops.h:48
boolMatrix mx_el_ge(const boolMatrix &m1, const boolMatrix &m2)
Definition: boolMatrix.cc:90
Matrix x_el_div(double a, const SparseMatrix &b)
Definition: sparse-xdiv.cc:371
boolMatrix mx_el_gt(const boolMatrix &m1, const boolMatrix &m2)
Definition: boolMatrix.cc:90
Matrix matrix_value(bool=false) const
Definition: ov-complex.cc:169
octave_value elem_xpow(double a, const SparseMatrix &b)
Definition: sparse-xpow.cc:247
octave_value op_el_and(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1533
octave_int< T > pow(const octave_int< T > &a, const octave_int< T > &b)
double tmp
Definition: data.cc:6300
octave_value retval
Definition: data.cc:6294
void install_cs_sm_ops(void)
Definition: op-cs-sm.cc:144
boolMatrix mx_el_ne(const boolMatrix &m1, const boolMatrix &m2)
Definition: boolMatrix.cc:90
void warn_divide_by_zero(void)
Definition: errwarn.cc:320
octave_value op_le(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1523
octave_value op_lt(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1522
#define INSTALL_CATOP(t1, t2, f)
Definition: ops.h:53
octave_value op_el_div(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1530
#define DEFCATOP(name, t1, t2)
Definition: ops.h:321
const octave_char_matrix & v2
boolMatrix mx_el_or(const boolMatrix &m1, const boolMatrix &m2)
Definition: boolMatrix.cc:87
Matrix xdiv(const Matrix &a, const SparseMatrix &b, MatrixType &typ)
Definition: sparse-xdiv.cc:133
octave_value op_ne(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1527
Matrix matrix_value(bool=false) const
double scalar_value(bool frc_str_conv=false) const
Definition: ov-re-sparse.h:110
boolMatrix mx_el_and(const boolMatrix &m1, const boolMatrix &m2)
Definition: boolMatrix.cc:87
MatrixType matrix_type(void) const
octave_value op_add(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1514
octave_value op_ldiv(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1520
octave_value op_sub(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1515
#define DEFCONV(name, a_dummy, b_dummy)
Definition: ops.h:165
boolMatrix mx_el_lt(const boolMatrix &m1, const boolMatrix &m2)
Definition: boolMatrix.cc:90
octave_value op_el_mul(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1529
#define DEFBINOP_FN(name, t1, t2, f)
Definition: ops.h:283
std::complex< double > Complex
Definition: oct-cmplx.h:31
#define INSTALL_ASSIGNCONV(t1, t2, tr)
Definition: ops.h:66
octave_value op_ge(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1525
boolMatrix mx_el_eq(const boolMatrix &m1, const boolMatrix &m2)
Definition: boolMatrix.cc:90
octave_value op_mul(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1516
Complex complex_value(bool=false) const
Definition: ov-complex.cc:225
octave_idx_type rows(void) const
Definition: ov-base.h:312
octave_value op_gt(const octave_value &a1, const octave_value &a2)
Definition: ov.h:1526
return octave_value(v1.char_array_value().concat(v2.char_array_value(), ra_idx),((a1.is_sq_string()||a2.is_sq_string())? '\'': '"'))