view libinterp/octave-value/cdef-property.cc @ 31105:670a0d878af1

eliminate WHO arguments from interpreter-private functions * interpreter-private.h, inpterpreter-private.cc (__get_interpreter__, __get_dynamic_loader__, __get_error_system__, __get_gh_manager__, __get_help_system__, __get_input_system__, __get_load_path__, __get_load_save_system__, __get_event_manager__, __get_output_system__, __get_type_info__, __get_symbol_table__, __get_current_scope__, __require_current_scope__, __get_evaluator__, __get_bp_table__, __get_child_list__, __get_cdef_manager__, __get_display_info__, __get_gtk_manager__): Eliminate WHO argument. Previously, it was never displayed by __get_interpreter__. And, as pointed out by Petter Tomner in patch #10216, passing a std::string object could have performance issues. (__get_interpreter__): Eliminate useless call to error. Display message to std::cerr then abort.
author John W. Eaton <jwe@octave.org>
date Wed, 22 Jun 2022 12:48:59 -0400
parents 796f54d4ddbf
children e88a07dec498
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////////////////////////////////////////////////////////////////////////
//
// Copyright (C) 2012-2022 The Octave Project Developers
//
// See the file COPYRIGHT.md in the top-level directory of this
// distribution or <https://octave.org/copyright/>.
//
// 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
// <https://www.gnu.org/licenses/>.
//
////////////////////////////////////////////////////////////////////////

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

#include <algorithm>
#include <iomanip>

#include "cdef-class.h"
#include "cdef-manager.h"
#include "cdef-utils.h"
#include "errwarn.h"
#include "interpreter-private.h"
#include "interpreter.h"
#include "load-path.h"
#include "ov-builtin.h"
#include "ov-classdef.h"
#include "ov-fcn-handle.h"
#include "ov-usr-fcn.h"
#include "parse.h"
#include "pt-assign.h"
#include "pt-classdef.h"
#include "pt-eval.h"
#include "pt-idx.h"
#include "pt-misc.h"
#include "pt-stmt.h"
#include "pt-walk.h"

namespace octave
{
  static bool
  is_method_executing (const octave_value& ov, const cdef_object& obj)
  {
    tree_evaluator& tw = __get_evaluator__ ();

    octave_function *stack_fcn = tw.current_function ();

    octave_function *method_fcn = ov.function_value (true);

    // Does the top of the call stack match our target function?

    if (stack_fcn && stack_fcn == method_fcn)
      {
        octave_user_function *uf = method_fcn->user_function_value (true);

        // We can only check the context object for user-function (not builtin),
        // where we have access to the parameters (arguments and return values).
        // That's ok as there's no need to call this function for builtin
        // methods.

        if (uf)
          {
            // At this point, the method is executing, but we still need to
            // check the context object for which the method is executing.  For
            // methods, it's the first argument of the function; for ctors, it
            // is the first return value.

            tree_parameter_list *pl = uf->is_classdef_constructor ()
                                      ? uf->return_list ()
                                      : uf->parameter_list ();

            if (pl && pl->size () > 0)
              {
                tree_decl_elt *elt = pl->front ();

                octave_value arg0 = tw.evaluate (elt);

                if (arg0.is_defined () && arg0.type_name () == "object")
                  {
                    cdef_object arg0_obj = to_cdef (arg0);

                    return obj.is (arg0_obj);
                  }
              }
          }
      }

    return false;
  }

  octave_value
  cdef_property::cdef_property_rep::get_value (const cdef_object& obj,
                                               bool do_check_access,
                                               const std::string& who) const
  {
    octave_value retval;

    if (do_check_access && ! check_get_access ())
      err_property_access (who, false);

    if (! obj.is_constructed ())
      {
        cdef_class cls (to_cdef (get ("DefiningClass")));

        if (! obj.is_partially_constructed_for (cls))
          error ("cannot reference properties of class '%s' for non-constructed object",
                 cls.get_name ().c_str ());
      }

    octave_value get_fcn = get ("GetMethod");

    // FIXME: should check whether we're already in get accessor method

    if (get_fcn.isempty () || is_method_executing (get_fcn, obj))
      retval = obj.get (get ("Name").string_value ());
    else
      {
        octave_value_list args;

        args(0) = to_ov (obj);

        args = feval (get_fcn, args, 1);

        retval = args(0);
      }

    return retval;
  }

  octave_value
  cdef_property::cdef_property_rep::get_value (bool do_check_access,
                                               const std::string& who) const
  {
    if (do_check_access && ! check_get_access ())
      err_property_access (who, false);

    return get ("DefaultValue");
  }

  bool
  cdef_property::cdef_property_rep::is_recursive_set (const cdef_object& /* obj */) const
  {
    // FIXME: implement
    return false;
  }

  OCTAVE_NORETURN void
  cdef_property::cdef_property_rep::err_property_access
    (const std::string& from, bool is_set) const
  {
    octave_value acc = get (is_set ? "SetAccess" : "GetAccess");
    std::string acc_s;

    if (acc.is_string ())
      acc_s = acc.string_value ();
    else
      acc_s = "class-restricted";

    if (is_set)
      error ("%s: property '%s' has %s access and cannot be set in this context",
             from.c_str (), get_name ().c_str (), acc_s.c_str ());
    else
      error ("%s: property '%s' has %s access and cannot be obtained in this context",
             from.c_str (), get_name ().c_str (), acc_s.c_str ());
  }

  void
  cdef_property::cdef_property_rep::set_value (cdef_object& obj,
                                               const octave_value& val,
                                               bool do_check_access,
                                               const std::string& who)
  {
    if (do_check_access && ! check_set_access ())
      err_property_access (who, true);

    if (! obj.is_constructed ())
      {
        cdef_class cls (to_cdef (get ("DefiningClass")));

        if (! obj.is_partially_constructed_for (cls))
          error ("cannot reference properties of class '%s' for non-constructed object",
                 cls.get_name ().c_str ());
      }

    octave_value set_fcn = get ("SetMethod");

    if (set_fcn.isempty () || is_method_executing (set_fcn, obj))
      obj.put (get ("Name").string_value (), val);
    else
      {
        octave_value_list args;

        args(0) = to_ov (obj);
        args(1) = val;

        if (obj.is_handle_object ())
          feval (set_fcn, args, 0);
        else
          {
            args = feval (set_fcn, args, 1);

            if (args.length () > 0 && args(0).is_defined ())
              {
                if (args(0).is_classdef_object ())
                  {
                    cdef_object new_obj = to_cdef (args(0));

                    obj = new_obj;
                  }
                else
                  ::warning ("set-method of property '%s' returned a non-classdef object",
                             get_name ().c_str ());
              }
          }
      }
  }

  bool
  cdef_property::cdef_property_rep::check_get_access (void) const
  {
    cdef_class cls (to_cdef (get ("DefiningClass")));

    return check_access (cls, get ("GetAccess"), "", get_name (), false);

    return false;
  }

  bool
  cdef_property::cdef_property_rep::check_set_access (void) const
  {
    cdef_class cls (to_cdef (get ("DefiningClass")));

    return check_access (cls, get ("SetAccess"), "", get_name (), true);

    return false;
  }
}