view libinterp/parse-tree/pt-stmt.h @ 27261:dccdc3b001a2

eliminate static functions from octave_link class * octave-link.h, octave-link. (class octave_link): Convert all static data and functions to normal data members and member functions. Change all uses. * interpreter-private.h, interpreter-private.cc (__get_octave_link__): New function. * interpreter.h, interpreter.cc (interpreter::m_octave_link): New data member. (interpreter::get_octave_link): New function.
author John W. Eaton <jwe@octave.org>
date Wed, 17 Jul 2019 14:09:20 -0400
parents fff643eb3514
children 99aa1bcb8848
line wrap: on
line source

/*

Copyright (C) 1996-2019 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
<https://www.gnu.org/licenses/>.

*/

#if ! defined (octave_pt_stmt_h)
#define octave_pt_stmt_h 1

#include "octave-config.h"

class octave_value_list;

#include <deque>

#include "base-list.h"
#include "bp-table.h"
#include "pt.h"
#include "pt-walk.h"

class octave_link;

namespace octave
{
  class comment_list;
  class tree_command;
  class tree_evaluator;
  class tree_expression;

  // A statement is either a command to execute or an expression to
  // evaluate.

  class tree_statement : public tree
  {
  public:

    tree_statement (void)
      : m_command (nullptr), m_expression (nullptr),
        m_comment_list (nullptr) { }

    tree_statement (tree_command *c, comment_list *cl)
      : m_command (c), m_expression (nullptr), m_comment_list (cl) { }

    tree_statement (tree_expression *e, comment_list *cl)
      : m_command (nullptr), m_expression (e), m_comment_list (cl) { }

    // No copying!

    tree_statement (const tree_statement&) = delete;

    tree_statement& operator = (const tree_statement&) = delete;

    ~tree_statement (void);

    void set_print_flag (bool print_flag);

    bool print_result (void);

    bool is_command (void) const { return m_command != nullptr; }

    bool is_expression (void) const { return m_expression != nullptr; }

    void set_breakpoint (const std::string& condition);

    void delete_breakpoint (void);

    bool is_breakpoint (void) const;

    bool is_active_breakpoint (tree_evaluator& tw) const;

    std::string bp_cond () const;

    int line (void) const;
    int column (void) const;

    void set_location (int l, int c);

    void echo_code (const std::string& prefix);

    tree_command * command (void) { return m_command; }

    tree_expression * expression (void) { return m_expression; }

    comment_list * comment_text (void) { return m_comment_list; }

    bool is_null_statement (void) const
    {
      return ! (m_command || m_expression || m_comment_list);
    }

    bool is_end_of_fcn_or_script (void) const;

    bool is_end_of_file (void) const;

    // Allow modification of this statement.  Note that there is no
    // checking.  If you use these, are you sure you knwo what you are
    // doing?

    void set_command (tree_command *c) { m_command = c; }

    void set_expression (tree_expression *e) { m_expression = e; }

    void accept (tree_walker& tw)
    {
      tw.visit_statement (*this);
    }

  private:

    // Only one of cmd or expr can be valid at once.

    // Command to execute.
    tree_command *m_command;

    // Expression to evaluate.
    tree_expression *m_expression;

    // Comment associated with this statement.
    comment_list *m_comment_list;
  };

  // A list of statements to evaluate.

  class tree_statement_list : public base_list<tree_statement *>
  {
  public:

    tree_statement_list (void)
      : m_function_body (false), m_anon_function_body (false),
        m_script_body (false) { }

    tree_statement_list (tree_statement *s)
      : m_function_body (false), m_anon_function_body (false),
        m_script_body (false) { append (s); }

    // No copying!

    tree_statement_list (const tree_statement_list&) = delete;

    tree_statement_list& operator = (const tree_statement_list&) = delete;

    ~tree_statement_list (void)
    {
      while (! empty ())
        {
          auto p = begin ();
          delete *p;
          erase (p);
        }
    }

    void mark_as_function_body (void) { m_function_body = true; }

    void mark_as_anon_function_body (void) { m_anon_function_body = true; }

    void mark_as_script_body (void) { m_script_body = true; }

    bool is_function_body (void) const { return m_function_body; }

    bool is_anon_function_body (void) const { return m_anon_function_body; }

    bool is_script_body (void) const { return m_script_body; }

    int set_breakpoint (int line, const std::string& condition);

    void delete_breakpoint (int line);

    octave_value_list list_breakpoints (void);

    std::list<bp_type> breakpoints_and_conds (void);

    bp_table::intmap add_breakpoint (octave_link& olnk,
                                     const std::string& file,
                                     const bp_table::intmap& line,
                                     const std::string& condition);

    bp_table::intmap remove_all_breakpoints (octave_link& olnk,
                                             const std::string& file);

    void accept (tree_walker& tw)
    {
      tw.visit_statement_list (*this);
    }

  private:

    // Does this list of statements make up the body of a function?
    bool m_function_body;

    // Does this list of statements make up the body of a function?
    bool m_anon_function_body;

    // Does this list of statements make up the body of a script?
    bool m_script_body;
  };
}

#endif