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00023 #ifdef HAVE_CONFIG_H
00024 #include <config.h>
00025 #endif
00026
00027 #include <iostream>
00028
00029 #include "lo-ieee.h"
00030 #include "lo-specfun.h"
00031 #include "lo-mappers.h"
00032
00033 #include "oct-obj.h"
00034 #include "oct-stream.h"
00035 #include "ops.h"
00036 #include "ov-complex.h"
00037 #include "ov-flt-complex.h"
00038 #include "ov-base.h"
00039 #include "ov-base-scalar.h"
00040 #include "ov-base-scalar.cc"
00041 #include "ov-cx-mat.h"
00042 #include "ov-scalar.h"
00043 #include "gripes.h"
00044 #include "pr-output.h"
00045 #include "ops.h"
00046
00047 #include "ls-oct-ascii.h"
00048 #include "ls-hdf5.h"
00049
00050 template class octave_base_scalar<Complex>;
00051
00052 DEFINE_OCTAVE_ALLOCATOR (octave_complex);
00053
00054 DEFINE_OV_TYPEID_FUNCTIONS_AND_DATA (octave_complex,
00055 "complex scalar", "double");
00056
00057 static octave_base_value *
00058 default_numeric_demotion_function (const octave_base_value& a)
00059 {
00060 CAST_CONV_ARG (const octave_complex&);
00061
00062 return new octave_float_complex (v.float_complex_value ());
00063 }
00064
00065 octave_base_value::type_conv_info
00066 octave_complex::numeric_demotion_function (void) const
00067 {
00068 return octave_base_value::type_conv_info(default_numeric_demotion_function,
00069 octave_float_complex::static_type_id ());
00070 }
00071
00072 octave_base_value *
00073 octave_complex::try_narrowing_conversion (void)
00074 {
00075 octave_base_value *retval = 0;
00076
00077 double im = std::imag (scalar);
00078
00079 if (im == 0.0)
00080 retval = new octave_scalar (std::real (scalar));
00081
00082 return retval;
00083 }
00084
00085 octave_value
00086 octave_complex::do_index_op (const octave_value_list& idx, bool resize_ok)
00087 {
00088
00089
00090
00091
00092
00093
00094
00095
00096
00097
00098 octave_value tmp (new octave_complex_matrix (complex_matrix_value ()));
00099
00100 return tmp.do_index_op (idx, resize_ok);
00101 }
00102
00103 double
00104 octave_complex::double_value (bool force_conversion) const
00105 {
00106 double retval = lo_ieee_nan_value ();
00107
00108 if (! force_conversion)
00109 gripe_implicit_conversion ("Octave:imag-to-real",
00110 "complex scalar", "real scalar");
00111
00112 retval = std::real (scalar);
00113
00114 return retval;
00115 }
00116
00117 float
00118 octave_complex::float_value (bool force_conversion) const
00119 {
00120 float retval = lo_ieee_float_nan_value ();
00121
00122 if (! force_conversion)
00123 gripe_implicit_conversion ("Octave:imag-to-real",
00124 "complex scalar", "real scalar");
00125
00126 retval = std::real (scalar);
00127
00128 return retval;
00129 }
00130
00131 Matrix
00132 octave_complex::matrix_value (bool force_conversion) const
00133 {
00134 Matrix retval;
00135
00136 if (! force_conversion)
00137 gripe_implicit_conversion ("Octave:imag-to-real",
00138 "complex scalar", "real matrix");
00139
00140 retval = Matrix (1, 1, std::real (scalar));
00141
00142 return retval;
00143 }
00144
00145 FloatMatrix
00146 octave_complex::float_matrix_value (bool force_conversion) const
00147 {
00148 FloatMatrix retval;
00149
00150 if (! force_conversion)
00151 gripe_implicit_conversion ("Octave:imag-to-real",
00152 "complex scalar", "real matrix");
00153
00154 retval = FloatMatrix (1, 1, std::real (scalar));
00155
00156 return retval;
00157 }
00158
00159 NDArray
00160 octave_complex::array_value (bool force_conversion) const
00161 {
00162 NDArray retval;
00163
00164 if (! force_conversion)
00165 gripe_implicit_conversion ("Octave:imag-to-real",
00166 "complex scalar", "real matrix");
00167
00168 retval = NDArray (dim_vector (1, 1), std::real (scalar));
00169
00170 return retval;
00171 }
00172
00173 FloatNDArray
00174 octave_complex::float_array_value (bool force_conversion) const
00175 {
00176 FloatNDArray retval;
00177
00178 if (! force_conversion)
00179 gripe_implicit_conversion ("Octave:imag-to-real",
00180 "complex scalar", "real matrix");
00181
00182 retval = FloatNDArray (dim_vector (1, 1), std::real (scalar));
00183
00184 return retval;
00185 }
00186
00187 Complex
00188 octave_complex::complex_value (bool) const
00189 {
00190 return scalar;
00191 }
00192
00193 FloatComplex
00194 octave_complex::float_complex_value (bool) const
00195 {
00196 return static_cast<FloatComplex> (scalar);
00197 }
00198
00199 ComplexMatrix
00200 octave_complex::complex_matrix_value (bool) const
00201 {
00202 return ComplexMatrix (1, 1, scalar);
00203 }
00204
00205 FloatComplexMatrix
00206 octave_complex::float_complex_matrix_value (bool) const
00207 {
00208 return FloatComplexMatrix (1, 1, static_cast<FloatComplex> (scalar));
00209 }
00210
00211 ComplexNDArray
00212 octave_complex::complex_array_value (bool ) const
00213 {
00214 return ComplexNDArray (dim_vector (1, 1), scalar);
00215 }
00216
00217 FloatComplexNDArray
00218 octave_complex::float_complex_array_value (bool ) const
00219 {
00220 return FloatComplexNDArray (dim_vector (1, 1), static_cast<FloatComplex> (scalar));
00221 }
00222
00223 octave_value
00224 octave_complex::resize (const dim_vector& dv, bool fill) const
00225 {
00226 if (fill)
00227 {
00228 ComplexNDArray retval (dv, ComplexNDArray::resize_fill_value ());
00229
00230 if (dv.numel ())
00231 retval(0) = scalar;
00232
00233 return retval;
00234 }
00235 else
00236 {
00237 ComplexNDArray retval (dv);
00238
00239 if (dv.numel ())
00240 retval(0) = scalar;
00241
00242 return retval;
00243 }
00244 }
00245
00246 bool
00247 octave_complex::save_ascii (std::ostream& os)
00248 {
00249 Complex c = complex_value ();
00250
00251 octave_write_complex (os, c);
00252
00253 os << "\n";
00254
00255 return true;
00256 }
00257
00258 bool
00259 octave_complex::load_ascii (std::istream& is)
00260 {
00261 scalar = octave_read_value<Complex> (is);
00262
00263 if (!is)
00264 {
00265 error ("load: failed to load complex scalar constant");
00266 return false;
00267 }
00268
00269 return true;
00270 }
00271
00272
00273 bool
00274 octave_complex::save_binary (std::ostream& os, bool& )
00275 {
00276 char tmp = static_cast<char> (LS_DOUBLE);
00277 os.write (reinterpret_cast<char *> (&tmp), 1);
00278 Complex ctmp = complex_value ();
00279 os.write (reinterpret_cast<char *> (&ctmp), 16);
00280
00281 return true;
00282 }
00283
00284 bool
00285 octave_complex::load_binary (std::istream& is, bool swap,
00286 oct_mach_info::float_format fmt)
00287 {
00288 char tmp;
00289 if (! is.read (reinterpret_cast<char *> (&tmp), 1))
00290 return false;
00291
00292 Complex ctmp;
00293 read_doubles (is, reinterpret_cast<double *> (&ctmp),
00294 static_cast<save_type> (tmp), 2, swap, fmt);
00295 if (error_state || ! is)
00296 return false;
00297
00298 scalar = ctmp;
00299 return true;
00300 }
00301
00302 #if defined (HAVE_HDF5)
00303
00304 bool
00305 octave_complex::save_hdf5 (hid_t loc_id, const char *name,
00306 bool )
00307 {
00308 hsize_t dimens[3];
00309 hid_t space_hid = -1, type_hid = -1, data_hid = -1;
00310 bool retval = true;
00311
00312 space_hid = H5Screate_simple (0, dimens, 0);
00313 if (space_hid < 0)
00314 return false;
00315
00316 type_hid = hdf5_make_complex_type (H5T_NATIVE_DOUBLE);
00317 if (type_hid < 0)
00318 {
00319 H5Sclose (space_hid);
00320 return false;
00321 }
00322 #if HAVE_HDF5_18
00323 data_hid = H5Dcreate (loc_id, name, type_hid, space_hid,
00324 H5P_DEFAULT, H5P_DEFAULT, H5P_DEFAULT);
00325 #else
00326 data_hid = H5Dcreate (loc_id, name, type_hid, space_hid, H5P_DEFAULT);
00327 #endif
00328 if (data_hid < 0)
00329 {
00330 H5Sclose (space_hid);
00331 H5Tclose (type_hid);
00332 return false;
00333 }
00334
00335 Complex tmp = complex_value ();
00336 retval = H5Dwrite (data_hid, type_hid, H5S_ALL, H5S_ALL, H5P_DEFAULT,
00337 &tmp) >= 0;
00338
00339 H5Dclose (data_hid);
00340 H5Tclose (type_hid);
00341 H5Sclose (space_hid);
00342
00343 return retval;
00344 }
00345
00346 bool
00347 octave_complex::load_hdf5 (hid_t loc_id, const char *name)
00348 {
00349 bool retval = false;
00350 #if HAVE_HDF5_18
00351 hid_t data_hid = H5Dopen (loc_id, name, H5P_DEFAULT);
00352 #else
00353 hid_t data_hid = H5Dopen (loc_id, name);
00354 #endif
00355 hid_t type_hid = H5Dget_type (data_hid);
00356
00357 hid_t complex_type = hdf5_make_complex_type (H5T_NATIVE_DOUBLE);
00358
00359 if (! hdf5_types_compatible (type_hid, complex_type))
00360 {
00361 H5Tclose (complex_type);
00362 H5Dclose (data_hid);
00363 return false;
00364 }
00365
00366 hid_t space_id = H5Dget_space (data_hid);
00367 hsize_t rank = H5Sget_simple_extent_ndims (space_id);
00368
00369 if (rank != 0)
00370 {
00371 H5Tclose (complex_type);
00372 H5Sclose (space_id);
00373 H5Dclose (data_hid);
00374 return false;
00375 }
00376
00377
00378 Complex ctmp;
00379 if (H5Dread (data_hid, complex_type, H5S_ALL, H5S_ALL, H5P_DEFAULT,
00380 &ctmp) >= 0)
00381 {
00382 retval = true;
00383 scalar = ctmp;
00384 }
00385
00386 H5Tclose (complex_type);
00387 H5Sclose (space_id);
00388 H5Dclose (data_hid);
00389
00390 return retval;
00391 }
00392
00393 #endif
00394
00395 mxArray *
00396 octave_complex::as_mxArray (void) const
00397 {
00398 mxArray *retval = new mxArray (mxDOUBLE_CLASS, 1, 1, mxCOMPLEX);
00399
00400 double *pr = static_cast<double *> (retval->get_data ());
00401 double *pi = static_cast<double *> (retval->get_imag_data ());
00402
00403 pr[0] = std::real (scalar);
00404 pi[0] = std::imag (scalar);
00405
00406 return retval;
00407 }
00408
00409 octave_value
00410 octave_complex::map (unary_mapper_t umap) const
00411 {
00412 switch (umap)
00413 {
00414 #define SCALAR_MAPPER(UMAP, FCN) \
00415 case umap_ ## UMAP: \
00416 return octave_value (FCN (scalar))
00417
00418 SCALAR_MAPPER (abs, std::abs);
00419 SCALAR_MAPPER (acos, ::acos);
00420 SCALAR_MAPPER (acosh, ::acosh);
00421 SCALAR_MAPPER (angle, std::arg);
00422 SCALAR_MAPPER (arg, std::arg);
00423 SCALAR_MAPPER (asin, ::asin);
00424 SCALAR_MAPPER (asinh, ::asinh);
00425 SCALAR_MAPPER (atan, ::atan);
00426 SCALAR_MAPPER (atanh, ::atanh);
00427 SCALAR_MAPPER (ceil, ::ceil);
00428 SCALAR_MAPPER (conj, std::conj);
00429 SCALAR_MAPPER (cos, std::cos);
00430 SCALAR_MAPPER (cosh, std::cosh);
00431 SCALAR_MAPPER (exp, std::exp);
00432 SCALAR_MAPPER (expm1, ::expm1);
00433 SCALAR_MAPPER (fix, ::fix);
00434 SCALAR_MAPPER (floor, ::floor);
00435 SCALAR_MAPPER (imag, std::imag);
00436 SCALAR_MAPPER (log, std::log);
00437 SCALAR_MAPPER (log2, xlog2);
00438 SCALAR_MAPPER (log10, std::log10);
00439 SCALAR_MAPPER (log1p, ::log1p);
00440 SCALAR_MAPPER (real, std::real);
00441 SCALAR_MAPPER (round, xround);
00442 SCALAR_MAPPER (roundb, xroundb);
00443 SCALAR_MAPPER (signum, ::signum);
00444 SCALAR_MAPPER (sin, std::sin);
00445 SCALAR_MAPPER (sinh, std::sinh);
00446 SCALAR_MAPPER (sqrt, std::sqrt);
00447 SCALAR_MAPPER (tan, std::tan);
00448 SCALAR_MAPPER (tanh, std::tanh);
00449 SCALAR_MAPPER (finite, xfinite);
00450 SCALAR_MAPPER (isinf, xisinf);
00451 SCALAR_MAPPER (isna, octave_is_NA);
00452 SCALAR_MAPPER (isnan, xisnan);
00453
00454 default:
00455 return octave_base_value::map (umap);
00456 }
00457 }