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libinterp
operators
op-cm-m.cc
Go to the documentation of this file.
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/*
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Copyright (C) 1996-2013 John W. Eaton
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This file is part of Octave.
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Octave is free software; you can redistribute it and/or modify it
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under the terms of the GNU General Public License as published by the
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Free Software Foundation; either version 3 of the License, or (at your
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option) any later version.
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Octave is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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for more details.
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You should have received a copy of the GNU General Public License
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along with Octave; see the file COPYING. If not, see
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<http://www.gnu.org/licenses/>.
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*/
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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#include "
mx-cm-m.h
"
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#include "
mx-m-cm.h
"
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#include "
mx-cnda-nda.h
"
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#include "
mx-nda-cnda.h
"
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#include "
gripes.h
"
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#include "
oct-obj.h
"
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#include "
ov.h
"
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#include "
ov-cx-mat.h
"
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#include "
ov-re-mat.h
"
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#include "
ov-typeinfo.h
"
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#include "
ops.h
"
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#include "
xdiv.h
"
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#include "
xpow.h
"
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// complex matrix by matrix ops.
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DEFNDBINOP_OP
(add, complex_matrix, matrix, complex_array, array, +)
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DEFNDBINOP_OP
(sub, complex_matrix, matrix, complex_array, array, -)
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DEFBINOP_OP
(mul, complex_matrix, matrix, *)
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DEFBINOP
(
mul_trans
, complex_matrix, matrix)
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{
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CAST_BINOP_ARGS
(
const
octave_complex_matrix
&,
const
octave_matrix
&);
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ComplexMatrix
m1 =
v1
.
complex_matrix_value
();
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Matrix
m2 =
v2
.
matrix_value
();
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return
ComplexMatrix
(
xgemm
(
real
(m1), m2,
blas_no_trans
,
blas_trans
),
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xgemm
(
imag
(m1), m2,
blas_no_trans
,
blas_trans
));
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}
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DEFBINOP
(div, complex_matrix, matrix)
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{
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CAST_BINOP_ARGS
(
const
octave_complex_matrix
&,
const
octave_matrix
&);
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MatrixType
typ =
v2
.
matrix_type
();
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ComplexMatrix
ret =
xdiv
(
v1
.
complex_matrix_value
(),
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v2
.
matrix_value
(), typ);
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v2
.
matrix_type
(typ);
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return
ret;
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}
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DEFBINOPX
(
pow
, complex_matrix, matrix)
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{
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error
(
"can't do A ^ B for A and B both matrices"
);
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return
octave_value
();
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}
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DEFBINOP
(ldiv, complex_matrix, matrix)
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{
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CAST_BINOP_ARGS
(
const
octave_complex_matrix
&,
const
octave_matrix
&);
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MatrixType
typ =
v1
.
matrix_type
();
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ComplexMatrix
ret =
xleftdiv
(
v1
.
complex_matrix_value
(),
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v2
.
matrix_value
(), typ);
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v1
.
matrix_type
(typ);
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return
ret;
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}
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DEFNDCMPLXCMPOP_FN
(lt, complex_matrix, matrix, complex_array, array,
mx_el_lt
)
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DEFNDCMPLXCMPOP_FN
(le, complex_matrix, matrix, complex_array, array,
mx_el_le
)
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DEFNDCMPLXCMPOP_FN
(eq, complex_matrix, matrix, complex_array, array,
mx_el_eq
)
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DEFNDCMPLXCMPOP_FN
(ge, complex_matrix, matrix, complex_array, array,
mx_el_ge
)
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DEFNDCMPLXCMPOP_FN
(gt, complex_matrix, matrix, complex_array, array,
mx_el_gt
)
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DEFNDCMPLXCMPOP_FN
(ne, complex_matrix, matrix, complex_array, array,
mx_el_ne
)
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DEFNDBINOP_FN
(el_mul, complex_matrix, matrix, complex_array, array,
product
)
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DEFNDBINOP_FN
(el_div, complex_matrix, matrix, complex_array, array,
quotient
)
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DEFNDBINOP_FN
(el_pow, complex_matrix, matrix, complex_array, array,
elem_xpow
)
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DEFBINOP
(el_ldiv, complex_matrix, matrix)
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{
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CAST_BINOP_ARGS
(
const
octave_complex_matrix
&,
const
octave_matrix
&);
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return
quotient
(
v2
.
array_value
(),
v1
.
complex_array_value
());
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}
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DEFNDBINOP_FN
(el_and, complex_matrix, matrix, complex_array, array,
mx_el_and
)
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DEFNDBINOP_FN
(el_or, complex_matrix, matrix, complex_array, array,
mx_el_or
)
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DEFNDCATOP_FN
(cm_m, complex_matrix, matrix, complex_array, array,
concat
)
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DEFNDASSIGNOP_FN
(
assign
, complex_matrix, matrix, complex_array, assign)
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void
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install_cm_m_ops
(
void
)
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{
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INSTALL_BINOP
(
op_add
,
octave_complex_matrix
,
octave_matrix
, add);
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INSTALL_BINOP
(
op_sub
,
octave_complex_matrix
,
octave_matrix
, sub);
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INSTALL_BINOP
(
op_mul
,
octave_complex_matrix
,
octave_matrix
, mul);
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INSTALL_BINOP
(
op_div
,
octave_complex_matrix
,
octave_matrix
, div);
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INSTALL_BINOP
(
op_pow
,
octave_complex_matrix
,
octave_matrix
,
pow
);
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INSTALL_BINOP
(
op_ldiv
,
octave_complex_matrix
,
octave_matrix
, ldiv);
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INSTALL_BINOP
(
op_lt
,
octave_complex_matrix
,
octave_matrix
, lt);
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INSTALL_BINOP
(
op_le
,
octave_complex_matrix
,
octave_matrix
, le);
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INSTALL_BINOP
(
op_eq
,
octave_complex_matrix
,
octave_matrix
, eq);
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INSTALL_BINOP
(
op_ge
,
octave_complex_matrix
,
octave_matrix
, ge);
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INSTALL_BINOP
(
op_gt
,
octave_complex_matrix
,
octave_matrix
, gt);
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INSTALL_BINOP
(
op_ne
,
octave_complex_matrix
,
octave_matrix
, ne);
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INSTALL_BINOP
(
op_el_mul
,
octave_complex_matrix
,
octave_matrix
, el_mul);
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INSTALL_BINOP
(
op_el_div
,
octave_complex_matrix
,
octave_matrix
, el_div);
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INSTALL_BINOP
(
op_el_pow
,
octave_complex_matrix
,
octave_matrix
, el_pow);
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INSTALL_BINOP
(
op_el_ldiv
,
octave_complex_matrix
,
octave_matrix
, el_ldiv);
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INSTALL_BINOP
(
op_el_and
,
octave_complex_matrix
,
octave_matrix
, el_and);
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INSTALL_BINOP
(
op_el_or
,
octave_complex_matrix
,
octave_matrix
, el_or);
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INSTALL_BINOP
(
op_mul_trans
,
octave_complex_matrix
,
octave_matrix
,
mul_trans
);
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INSTALL_BINOP
(
op_mul_herm
,
octave_complex_matrix
,
octave_matrix
,
mul_trans
);
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INSTALL_CATOP
(
octave_complex_matrix
,
octave_matrix
, cm_m);
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INSTALL_ASSIGNOP
(
op_asn_eq
,
octave_complex_matrix
,
octave_matrix
, assign);
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}
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