view libinterp/octave-value/ov-flt-complex.cc @ 22407:34ce5be04942

maint: Style check C++ code in libinterp/. * build-env.h, build-env.in.cc, builtins.h, Cell.cc, Cell.h, __contourc__.cc, __dispatch__.cc, __dsearchn__.cc, __ilu__.cc, __lin_interpn__.cc, __luinc__.cc, __magick_read__.cc, __pchip_deriv__.cc, __qp__.cc, balance.cc, base-text-renderer.h, besselj.cc, bitfcns.cc, bsxfun.cc, c-file-ptr-stream.cc, c-file-ptr-stream.h, call-stack.cc, call-stack.h, cdisplay.c, cdisplay.h, cellfun.cc, coct-hdf5-types.c, comment-list.cc, comment-list.h, conv2.cc, daspk.cc, dasrt.cc, dassl.cc, data.cc, data.h, debug.cc, debug.h, defaults.cc, defaults.in.h, defun-dld.h, defun-int.h, defun.h, det.cc, dirfns.cc, dirfns.h, display.cc, display.h, dlmread.cc, dynamic-ld.cc, dynamic-ld.h, eig.cc, error.cc, error.h, errwarn.h, event-queue.cc, event-queue.h, fft.cc, fft2.cc, fftn.cc, file-io.cc, file-io.h, filter.cc, find.cc, ft-text-renderer.cc, ft-text-renderer.h, gammainc.cc, gcd.cc, getgrent.cc, getpwent.cc, givens.cc, gl-render.cc, gl-render.h, gl2ps-print.cc, gl2ps-print.h, graphics.cc, graphics.in.h, gripes.h, gsvd.cc, hash.cc, help.cc, help.h, hess.cc, hex2num.cc, hook-fcn.cc, hook-fcn.h, input.cc, input.h, interpreter.cc, interpreter.h, inv.cc, jit-ir.cc, jit-ir.h, jit-typeinfo.cc, jit-typeinfo.h, jit-util.cc, jit-util.h, kron.cc, load-path.cc, load-path.h, load-save.cc, load-save.h, lookup.cc, ls-ascii-helper.cc, ls-ascii-helper.h, ls-hdf5.cc, ls-hdf5.h, ls-mat-ascii.cc, ls-mat-ascii.h, ls-mat4.cc, ls-mat4.h, ls-mat5.h, ls-oct-binary.cc, ls-oct-binary.h, ls-oct-text.cc, ls-oct-text.h, ls-utils.cc, ls-utils.h, lsode.cc, lu.cc, matrix_type.cc, max.cc, mex.cc, mex.h, mexproto.h, mgorth.cc, mxarray.in.h, nproc.cc, oct-errno.h, oct-errno.in.cc, oct-fstrm.cc, oct-fstrm.h, oct-handle.h, oct-hdf5-types.cc, oct-hdf5-types.h, oct-hdf5.h, oct-hist.cc, oct-hist.h, oct-iostrm.cc, oct-iostrm.h, oct-lvalue.cc, oct-lvalue.h, oct-map.h, oct-obj.h, oct-opengl.h, oct-prcstrm.cc, oct-prcstrm.h, oct-procbuf.cc, oct-procbuf.h, oct-stdstrm.h, oct-stream.cc, 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__osmesa_print__.cc, __voronoi__.cc, amd.cc, audiodevinfo.cc, audioread.cc, ccolamd.cc, chol.cc, colamd.cc, convhulln.cc, dmperm.cc, fftw.cc, gzip.cc, oct-qhull.h, qr.cc, symbfact.cc, symrcm.cc, liboctinterp-build-info.h, liboctinterp-build-info.in.cc, ov-base-diag.h, ov-base-int.cc, ov-base-int.h, ov-base-mat.cc, ov-base-mat.h, ov-base-scalar.h, ov-base-sparse.cc, ov-base-sparse.h, ov-base.cc, ov-base.h, ov-bool-mat.cc, ov-bool-mat.h, ov-bool-sparse.cc, ov-bool-sparse.h, ov-bool.cc, ov-bool.h, ov-builtin.cc, ov-builtin.h, ov-cell.cc, ov-cell.h, ov-ch-mat.cc, ov-ch-mat.h, ov-class.cc, ov-class.h, ov-classdef.cc, ov-classdef.h, ov-colon.cc, ov-colon.h, ov-complex.cc, ov-complex.h, ov-cs-list.h, ov-cx-diag.cc, ov-cx-diag.h, ov-cx-mat.cc, ov-cx-mat.h, ov-cx-sparse.cc, ov-cx-sparse.h, ov-dld-fcn.cc, ov-dld-fcn.h, ov-fcn-handle.cc, ov-fcn-handle.h, ov-fcn-inline.cc, ov-fcn-inline.h, ov-fcn.cc, ov-fcn.h, ov-float.cc, ov-float.h, ov-flt-complex.cc, ov-flt-complex.h, ov-flt-cx-diag.cc, ov-flt-cx-diag.h, ov-flt-cx-mat.cc, ov-flt-cx-mat.h, ov-flt-re-diag.cc, ov-flt-re-diag.h, ov-flt-re-mat.cc, ov-flt-re-mat.h, ov-int-traits.h, ov-int16.cc, ov-int16.h, ov-int32.cc, ov-int32.h, ov-int64.cc, ov-int64.h, ov-int8.cc, ov-int8.h, ov-intx.h, ov-java.cc, ov-java.h, ov-lazy-idx.cc, ov-lazy-idx.h, ov-mex-fcn.cc, ov-mex-fcn.h, ov-null-mat.cc, ov-null-mat.h, ov-oncleanup.cc, ov-oncleanup.h, ov-perm.cc, ov-perm.h, ov-range.cc, ov-range.h, ov-re-diag.cc, ov-re-diag.h, ov-re-mat.cc, ov-re-mat.h, ov-re-sparse.cc, ov-re-sparse.h, ov-scalar.cc, ov-scalar.h, ov-str-mat.cc, ov-str-mat.h, ov-struct.cc, ov-struct.h, ov-typeinfo.cc, ov-typeinfo.h, ov-uint16.cc, ov-uint16.h, ov-uint32.cc, ov-uint32.h, ov-uint64.cc, ov-uint64.h, ov-uint8.cc, ov-uint8.h, ov-usr-fcn.cc, ov-usr-fcn.h, ov.h, ovl.cc, ovl.h, octave.cc, octave.h, op-b-b.cc, op-b-bm.cc, op-b-sbm.cc, op-bm-b.cc, op-bm-bm.cc, op-bm-sbm.cc, op-cdm-cdm.cc, op-cell.cc, op-chm.cc, op-class.cc, op-cm-cm.cc, op-cm-cs.cc, op-cm-m.cc, 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op-sm-cm.cc, op-sm-cs.cc, op-sm-m.cc, op-sm-s.cc, op-sm-scm.cc, op-sm-sm.cc, op-str-m.cc, op-str-s.cc, op-str-str.cc, op-struct.cc, op-ui16-ui16.cc, op-ui32-ui32.cc, op-ui64-ui64.cc, op-ui8-ui8.cc, ops.h, options-usage.h, lex.h, parse.h, pt-all.h, pt-arg-list.cc, pt-arg-list.h, pt-array-list.h, pt-assign.cc, pt-assign.h, pt-binop.cc, pt-binop.h, pt-bp.cc, pt-bp.h, pt-cbinop.cc, pt-cbinop.h, pt-cell.cc, pt-cell.h, pt-check.cc, pt-check.h, pt-classdef.cc, pt-classdef.h, pt-cmd.cc, pt-cmd.h, pt-colon.cc, pt-colon.h, pt-const.cc, pt-const.h, pt-decl.cc, pt-decl.h, pt-eval.cc, pt-eval.h, pt-except.cc, pt-except.h, pt-exp.cc, pt-exp.h, pt-fcn-handle.cc, pt-fcn-handle.h, pt-funcall.cc, pt-funcall.h, pt-id.cc, pt-id.h, pt-idx.cc, pt-idx.h, pt-jump.cc, pt-jump.h, pt-loop.cc, pt-loop.h, pt-mat.cc, pt-mat.h, pt-misc.cc, pt-misc.h, pt-pr-code.cc, pt-pr-code.h, pt-select.cc, pt-select.h, pt-stmt.cc, pt-stmt.h, pt-unop.cc, pt-unop.h, pt-walk.h, pt.cc, pt.h, token.cc, token.h, Array-jit.cc, Array-tc.cc, version.cc, version.in.h: Style check C++ code in libinterp/
author Rik <rik@octave.org>
date Tue, 30 Aug 2016 21:46:47 -0700
parents bac0d6f07a3e
children 6bf1cbb90705
line wrap: on
line source

/*

Copyright (C) 1996-2016 John W. Eaton

This file is part of Octave.

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 3 of the License, 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 Octave; see the file COPYING.  If not, see
<http://www.gnu.org/licenses/>.

*/

#if defined (HAVE_CONFIG_H)
#  include "config.h"
#endif

#include <iostream>

#include "lo-ieee.h"
#include "lo-specfun.h"
#include "lo-mappers.h"

#include "mxarray.h"
#include "ovl.h"
#include "oct-hdf5.h"
#include "oct-stream.h"
#include "ops.h"
#include "ov-complex.h"
#include "ov-base.h"
#include "ov-base-scalar.h"
#include "ov-base-scalar.cc"
#include "ov-flt-cx-mat.h"
#include "ov-float.h"
#include "ov-flt-complex.h"
#include "errwarn.h"
#include "pr-output.h"
#include "ops.h"

#include "ls-oct-text.h"
#include "ls-hdf5.h"

// Prevent implicit instantiations on some systems (Windows, others?)
// that can lead to duplicate definitions of static data members.

extern template class OCTINTERP_API octave_base_scalar<float>;

template class octave_base_scalar<FloatComplex>;

DEFINE_OV_TYPEID_FUNCTIONS_AND_DATA (octave_float_complex,
                                     "float complex scalar", "single");

octave_base_value *
octave_float_complex::try_narrowing_conversion (void)
{
  octave_base_value *retval = 0;

  float im = scalar.imag ();

  if (im == 0.0)
    retval = new octave_float_scalar (scalar.real ());

  return retval;
}

octave_value
octave_float_complex::do_index_op (const octave_value_list& idx, bool resize_ok)
{
  // FIXME: this doesn't solve the problem of
  //
  //   a = i; a([1,1], [1,1], [1,1])
  //
  // and similar constructions.  Hmm...

  // FIXME: using this constructor avoids narrowing the
  // 1x1 matrix back to a scalar value.  Need a better solution
  // to this problem.

  octave_value tmp (new octave_float_complex_matrix (
                      float_complex_matrix_value ()));

  return tmp.do_index_op (idx, resize_ok);
}

double
octave_float_complex::double_value (bool force_conversion) const
{
  double retval;

  if (! force_conversion)
    warn_implicit_conversion ("Octave:imag-to-real",
                              "complex scalar", "real scalar");

  retval = scalar.real ();

  return retval;
}

float
octave_float_complex::float_value (bool force_conversion) const
{
  float retval;

  if (! force_conversion)
    warn_implicit_conversion ("Octave:imag-to-real",
                              "complex scalar", "real scalar");

  retval = scalar.real ();

  return retval;
}

Matrix
octave_float_complex::matrix_value (bool force_conversion) const
{
  Matrix retval;

  if (! force_conversion)
    warn_implicit_conversion ("Octave:imag-to-real",
                              "complex scalar", "real matrix");

  retval = Matrix (1, 1, scalar.real ());

  return retval;
}

FloatMatrix
octave_float_complex::float_matrix_value (bool force_conversion) const
{
  FloatMatrix retval;

  if (! force_conversion)
    warn_implicit_conversion ("Octave:imag-to-real",
                              "complex scalar", "real matrix");

  retval = FloatMatrix (1, 1, scalar.real ());

  return retval;
}

NDArray
octave_float_complex::array_value (bool force_conversion) const
{
  NDArray retval;

  if (! force_conversion)
    warn_implicit_conversion ("Octave:imag-to-real",
                              "complex scalar", "real matrix");

  retval = NDArray (dim_vector (1, 1), scalar.real ());

  return retval;
}

FloatNDArray
octave_float_complex::float_array_value (bool force_conversion) const
{
  FloatNDArray retval;

  if (! force_conversion)
    warn_implicit_conversion ("Octave:imag-to-real",
                              "complex scalar", "real matrix");

  retval = FloatNDArray (dim_vector (1, 1), scalar.real ());

  return retval;
}

Complex
octave_float_complex::complex_value (bool) const
{
  return scalar;
}

FloatComplex
octave_float_complex::float_complex_value (bool) const
{
  return static_cast<FloatComplex> (scalar);
}

ComplexMatrix
octave_float_complex::complex_matrix_value (bool) const
{
  return ComplexMatrix (1, 1, scalar);
}

FloatComplexMatrix
octave_float_complex::float_complex_matrix_value (bool) const
{
  return FloatComplexMatrix (1, 1, scalar);
}

ComplexNDArray
octave_float_complex::complex_array_value (bool /* force_conversion */) const
{
  return ComplexNDArray (dim_vector (1, 1), scalar);
}

FloatComplexNDArray
octave_float_complex::float_complex_array_value (bool /* force_conversion */) const
{
  return FloatComplexNDArray (dim_vector (1, 1), scalar);
}

octave_value
octave_float_complex::resize (const dim_vector& dv, bool fill) const
{
  if (fill)
    {
      FloatComplexNDArray retval (dv, FloatComplex (0));

      if (dv.numel ())
        retval(0) = scalar;

      return retval;
    }
  else
    {
      FloatComplexNDArray retval (dv);

      if (dv.numel ())
        retval(0) = scalar;

      return retval;
    }
}

octave_value
octave_float_complex::as_double (void) const
{
  return Complex (scalar);
}

octave_value
octave_float_complex::as_single (void) const
{
  return scalar;
}

octave_value
octave_float_complex::diag (octave_idx_type m, octave_idx_type n) const
{
  return
    FloatComplexDiagMatrix (Array<FloatComplex> (dim_vector (1, 1), scalar),
                            m, n);
}

bool
octave_float_complex::save_ascii (std::ostream& os)
{
  FloatComplex c = float_complex_value ();

  octave_write_float_complex (os, c);

  os << "\n";

  return true;
}

bool
octave_float_complex::load_ascii (std::istream& is)
{
  scalar = octave_read_value<FloatComplex> (is);

  if (! is)
    error ("load: failed to load complex scalar constant");

  return true;
}

bool
octave_float_complex::save_binary (std::ostream& os, bool& /* save_as_floats */)
{
  char tmp = static_cast<char> (LS_FLOAT);
  os.write (reinterpret_cast<char *> (&tmp), 1);
  FloatComplex ctmp = float_complex_value ();
  os.write (reinterpret_cast<char *> (&ctmp), 8);

  return true;
}

bool
octave_float_complex::load_binary (std::istream& is, bool swap,
                                   octave::mach_info::float_format fmt)
{
  char tmp;
  if (! is.read (reinterpret_cast<char *> (&tmp), 1))
    return false;

  FloatComplex ctmp;
  read_floats (is, reinterpret_cast<float *> (&ctmp),
               static_cast<save_type> (tmp), 2, swap, fmt);

  if (! is)
    return false;

  scalar = ctmp;
  return true;
}

bool
octave_float_complex::save_hdf5 (octave_hdf5_id loc_id, const char *name,
                                 bool /* save_as_floats */)
{
  bool retval = false;

#if defined (HAVE_HDF5)

  hsize_t dimens[3];
  hid_t space_hid, type_hid, data_hid;
  space_hid = type_hid = data_hid = -1;

  space_hid = H5Screate_simple (0, dimens, 0);
  if (space_hid < 0)
    return false;

  type_hid = hdf5_make_complex_type (H5T_NATIVE_FLOAT);
  if (type_hid < 0)
    {
      H5Sclose (space_hid);
      return false;
    }
#if defined (HAVE_HDF5_18)
  data_hid = H5Dcreate (loc_id, name, type_hid, space_hid,
                        octave_H5P_DEFAULT, octave_H5P_DEFAULT, octave_H5P_DEFAULT);
#else
  data_hid = H5Dcreate (loc_id, name, type_hid, space_hid, octave_H5P_DEFAULT);
#endif
  if (data_hid < 0)
    {
      H5Sclose (space_hid);
      H5Tclose (type_hid);
      return false;
    }

  FloatComplex tmp = float_complex_value ();
  retval = H5Dwrite (data_hid, type_hid, octave_H5S_ALL, octave_H5S_ALL,
                     octave_H5P_DEFAULT, &tmp) >= 0;

  H5Dclose (data_hid);
  H5Tclose (type_hid);
  H5Sclose (space_hid);

#else
  octave_unused_parameter (loc_id);
  octave_unused_parameter (name);

  warn_save ("hdf5");
#endif

  return retval;
}

bool
octave_float_complex::load_hdf5 (octave_hdf5_id loc_id, const char *name)
{
  bool retval = false;

#if defined (HAVE_HDF5)

#if defined (HAVE_HDF5_18)
  hid_t data_hid = H5Dopen (loc_id, name, octave_H5P_DEFAULT);
#else
  hid_t data_hid = H5Dopen (loc_id, name);
#endif
  hid_t type_hid = H5Dget_type (data_hid);

  hid_t complex_type = hdf5_make_complex_type (H5T_NATIVE_FLOAT);

  if (! hdf5_types_compatible (type_hid, complex_type))
    {
      H5Tclose (complex_type);
      H5Dclose (data_hid);
      return false;
    }

  hid_t space_id = H5Dget_space (data_hid);
  hsize_t rank = H5Sget_simple_extent_ndims (space_id);

  if (rank != 0)
    {
      H5Tclose (complex_type);
      H5Sclose (space_id);
      H5Dclose (data_hid);
      return false;
    }

  // complex scalar:
  FloatComplex ctmp;
  if (H5Dread (data_hid, complex_type, octave_H5S_ALL, octave_H5S_ALL,
               octave_H5P_DEFAULT, &ctmp)
      >= 0)
    {
      retval = true;
      scalar = ctmp;
    }

  H5Tclose (complex_type);
  H5Sclose (space_id);
  H5Dclose (data_hid);

#else
  octave_unused_parameter (loc_id);
  octave_unused_parameter (name);

  warn_load ("hdf5");
#endif

  return retval;
}

mxArray *
octave_float_complex::as_mxArray (void) const
{
  mxArray *retval = new mxArray (mxSINGLE_CLASS, 1, 1, mxCOMPLEX);

  float *pr = static_cast<float *> (retval->get_data ());
  float *pi = static_cast<float *> (retval->get_imag_data ());

  pr[0] = scalar.real ();
  pi[0] = scalar.imag ();

  return retval;
}

octave_value
octave_float_complex::map (unary_mapper_t umap) const
{
  switch (umap)
    {
#define SCALAR_MAPPER(UMAP, FCN)              \
    case umap_ ## UMAP:                       \
      return octave_value (FCN (scalar))

    SCALAR_MAPPER (abs, std::abs);
    SCALAR_MAPPER (acos, octave::math::acos);
    SCALAR_MAPPER (acosh, octave::math::acosh);
    SCALAR_MAPPER (angle, std::arg);
    SCALAR_MAPPER (arg, std::arg);
    SCALAR_MAPPER (asin, octave::math::asin);
    SCALAR_MAPPER (asinh, octave::math::asinh);
    SCALAR_MAPPER (atan, octave::math::atan);
    SCALAR_MAPPER (atanh, octave::math::atanh);
    SCALAR_MAPPER (erf, octave::math::erf);
    SCALAR_MAPPER (erfc, octave::math::erfc);
    SCALAR_MAPPER (erfcx, octave::math::erfcx);
    SCALAR_MAPPER (erfi, octave::math::erfi);
    SCALAR_MAPPER (dawson, octave::math::dawson);
    SCALAR_MAPPER (ceil, octave::math::ceil);
    SCALAR_MAPPER (conj, std::conj);
    SCALAR_MAPPER (cos, std::cos);
    SCALAR_MAPPER (cosh, std::cosh);
    SCALAR_MAPPER (exp, std::exp);
    SCALAR_MAPPER (expm1, octave::math::expm1);
    SCALAR_MAPPER (fix, octave::math::fix);
    SCALAR_MAPPER (floor, octave::math::floor);
    SCALAR_MAPPER (imag, std::imag);
    SCALAR_MAPPER (log, std::log);
    SCALAR_MAPPER (log2, octave::math::log2);
    SCALAR_MAPPER (log10, std::log10);
    SCALAR_MAPPER (log1p, octave::math::log1p);
    SCALAR_MAPPER (real, std::real);
    SCALAR_MAPPER (round, octave::math::round);
    SCALAR_MAPPER (roundb, octave::math::roundb);
    SCALAR_MAPPER (signum, octave::math::signum);
    SCALAR_MAPPER (sin, std::sin);
    SCALAR_MAPPER (sinh, std::sinh);
    SCALAR_MAPPER (sqrt, std::sqrt);
    SCALAR_MAPPER (tan, std::tan);
    SCALAR_MAPPER (tanh, std::tanh);
    SCALAR_MAPPER (isfinite, octave::math::finite);
    SCALAR_MAPPER (isinf, octave::math::isinf);
    SCALAR_MAPPER (isna, octave::math::is_NA);
    SCALAR_MAPPER (isnan, octave::math::isnan);

    default:
      return octave_base_value::map (umap);
    }
}