Mercurial > hg > octave-thorsten
view src/OPERATORS/op-scm-scm.cc @ 5164:57077d0ddc8e
[project @ 2005-02-25 19:55:24 by jwe]
author | jwe |
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date | Fri, 25 Feb 2005 19:55:28 +0000 |
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children | 7ca77747d680 |
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/* Copyright (C) 2004 David Bateman Copyright (C) 1998-2004 Andy Adler 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 2, 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 this program; see the file COPYING. If not, write to the Free Software Foundation, 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */ #ifdef HAVE_CONFIG_H #include <config.h> #endif #include "gripes.h" #include "oct-obj.h" #include "ov.h" #include "ov-typeinfo.h" #include "ops.h" #include "sparse-xdiv.h" #include "sparse-xpow.h" #include "ov-re-sparse.h" #include "ov-cx-sparse.h" #if defined (__GNUG__) && defined (USE_PRAGMA_INTERFACE_IMPLEMENTATION) #pragma implementation #endif #ifdef HAVE_CONFIG_H #include <config.h> #endif #include "gripes.h" #include "oct-obj.h" #include "ov.h" #include "ov-cx-mat.h" #include "ov-typeinfo.h" #include "ops.h" #include "xdiv.h" #include "xpow.h" // unary sparse complex matrix ops. DEFUNOP_OP (not, sparse_complex_matrix, !) DEFUNOP_OP (uplus, sparse_complex_matrix, /* no-op */) DEFUNOP_OP (uminus, sparse_complex_matrix, -) DEFUNOP (transpose, sparse_complex_matrix) { CAST_UNOP_ARG (const octave_sparse_complex_matrix&); return octave_value (v.sparse_complex_matrix_value().transpose ()); } DEFUNOP (hermitian, sparse_complex_matrix) { CAST_UNOP_ARG (const octave_sparse_complex_matrix&); return octave_value (v.sparse_complex_matrix_value().hermitian ()); } #if 0 DEFUNOP (incr, sparse_complex_matrix) { CAST_UNOP_ARG (const octave_sparse_complex_matrix&); return octave_value (v.complex_matrix_value () .increment ()); } DEFUNOP (decr, sparse_complex_matrix) { CAST_UNOP_ARG (const octave_sparse_complex_matrix&); return octave_value (v.complex_matrix_value () .decrement ()); } #endif // complex matrix by complex matrix ops. DEFBINOP_OP (add, sparse_complex_matrix, sparse_complex_matrix, +) DEFBINOP_OP (sub, sparse_complex_matrix, sparse_complex_matrix, -) DEFBINOP_OP (mul, sparse_complex_matrix, sparse_complex_matrix, *) DEFBINOP_FN (div, sparse_complex_matrix, sparse_complex_matrix, xdiv) DEFBINOPX (pow, sparse_complex_matrix, sparse_complex_matrix) { error ("can't do A ^ B for A and B both matrices"); return octave_value (); } DEFBINOP_FN (ldiv, sparse_complex_matrix, sparse_complex_matrix, xleftdiv) DEFBINOP_FN (lt, sparse_complex_matrix, sparse_complex_matrix, mx_el_lt) DEFBINOP_FN (le, sparse_complex_matrix, sparse_complex_matrix, mx_el_le) DEFBINOP_FN (eq, sparse_complex_matrix, sparse_complex_matrix, mx_el_eq) DEFBINOP_FN (ge, sparse_complex_matrix, sparse_complex_matrix, mx_el_ge) DEFBINOP_FN (gt, sparse_complex_matrix, sparse_complex_matrix, mx_el_gt) DEFBINOP_FN (ne, sparse_complex_matrix, sparse_complex_matrix, mx_el_ne) DEFBINOP_FN (el_mul, sparse_complex_matrix, sparse_complex_matrix, product) DEFBINOP_FN (el_div, sparse_complex_matrix, sparse_complex_matrix, quotient) DEFBINOP_FN (el_pow, sparse_complex_matrix, sparse_complex_matrix, elem_xpow) DEFBINOP (el_ldiv, sparse_complex_matrix, sparse_complex_matrix) { CAST_BINOP_ARGS (const octave_sparse_complex_matrix&, const octave_sparse_complex_matrix&); return octave_value (quotient (v2.sparse_complex_matrix_value (), v1.sparse_complex_matrix_value ())); } DEFBINOP_FN (el_and, sparse_complex_matrix, sparse_complex_matrix, mx_el_and) DEFBINOP_FN (el_or, sparse_complex_matrix, sparse_complex_matrix, mx_el_or) DEFCATOP_FN (scm_scm, sparse_complex_matrix, sparse_complex_matrix, concat) DEFASSIGNOP_FN (assign, sparse_complex_matrix, sparse_complex_matrix, assign) void install_scm_scm_ops (void) { INSTALL_UNOP (op_not, octave_sparse_complex_matrix, not); INSTALL_UNOP (op_uplus, octave_sparse_complex_matrix, uplus); INSTALL_UNOP (op_uminus, octave_sparse_complex_matrix, uminus); INSTALL_UNOP (op_transpose, octave_sparse_complex_matrix, transpose); INSTALL_UNOP (op_hermitian, octave_sparse_complex_matrix, hermitian); #if 0 INSTALL_NCUNOP (op_incr, octave_sparse_complex_matrix, incr); INSTALL_NCUNOP (op_decr, octave_sparse_complex_matrix, decr); #endif INSTALL_BINOP (op_add, octave_sparse_complex_matrix, octave_sparse_complex_matrix, add); INSTALL_BINOP (op_sub, octave_sparse_complex_matrix, octave_sparse_complex_matrix, sub); INSTALL_BINOP (op_mul, octave_sparse_complex_matrix, octave_sparse_complex_matrix, mul); INSTALL_BINOP (op_div, octave_sparse_complex_matrix, octave_sparse_complex_matrix, div); INSTALL_BINOP (op_pow, octave_sparse_complex_matrix, octave_sparse_complex_matrix, pow); INSTALL_BINOP (op_ldiv, octave_sparse_complex_matrix, octave_sparse_complex_matrix, ldiv); INSTALL_BINOP (op_lt, octave_sparse_complex_matrix, octave_sparse_complex_matrix, lt); INSTALL_BINOP (op_le, octave_sparse_complex_matrix, octave_sparse_complex_matrix, le); INSTALL_BINOP (op_eq, octave_sparse_complex_matrix, octave_sparse_complex_matrix, eq); INSTALL_BINOP (op_ge, octave_sparse_complex_matrix, octave_sparse_complex_matrix, ge); INSTALL_BINOP (op_gt, octave_sparse_complex_matrix, octave_sparse_complex_matrix, gt); INSTALL_BINOP (op_ne, octave_sparse_complex_matrix, octave_sparse_complex_matrix, ne); INSTALL_BINOP (op_el_mul, octave_sparse_complex_matrix, octave_sparse_complex_matrix, el_mul); INSTALL_BINOP (op_el_div, octave_sparse_complex_matrix, octave_sparse_complex_matrix, el_div); INSTALL_BINOP (op_el_pow, octave_sparse_complex_matrix, octave_sparse_complex_matrix, el_pow); INSTALL_BINOP (op_el_ldiv, octave_sparse_complex_matrix, octave_sparse_complex_matrix, el_ldiv); INSTALL_BINOP (op_el_and, octave_sparse_complex_matrix, octave_sparse_complex_matrix, el_and); INSTALL_BINOP (op_el_or, octave_sparse_complex_matrix, octave_sparse_complex_matrix, el_or); INSTALL_CATOP (octave_sparse_complex_matrix, octave_sparse_complex_matrix, scm_scm); INSTALL_ASSIGNOP (op_asn_eq, octave_sparse_complex_matrix, octave_sparse_complex_matrix, assign); } /* ;;; Local Variables: *** ;;; mode: C++ *** ;;; End: *** */